|
Articles 1 | Modeling of Complex Fabric Structures by Methods of Computer Simulation
DOI: 10.7216/130075992015229801
Authors : Güngör BAŞER
Article Detail | Abstract | Full Text | References | 2 | A National Sampling Loom Designed and Improved as Computer Controlled and Semi-Automatic
DOI: 10.7216/130075992015229802
Authors : Deniz Mutlu ALA, Nihat ÇELİK
Article Detail | Abstract | Full Text | References | 3 | The Evaluation of Stiffness and Drape Behaviour of Wool Fabrics
DOI: 10.7216/130075992015229803
Authors : Selin Hanife ERYÜRÜK, Fatma KALAOĞLU, Senem Kurşun BAHADIR, Canan SARIÇAM, Simona JEVSNIK
Article Detail | Abstract | Full Text | References | 4 | The Productivity Improvement Studies with Process Analysis Methods in a Clothing Company
DOI: 10.7216/130075992015229804
Authors : Mehmet KÜÇÜK, Mücella GÜNER
Article Detail | Abstract | Full Text | References | 5 | Dress Preferences of Working Women According to Body Shapes
DOI: 10.7216/130075992015229805
Authors : Emine ERYAZICI, Esen ÇORUH
Article Detail | Abstract | Full Text | References | 6 | The Effect of in-Service Training Given in Ready-Made Clothing Sector on Views of the Employees Regarding Quality
DOI: 10.7216/130075992015229806
Authors : Meyrem Arga ŞAHİNOĞLU, Semiha AYDIN
Article Detail | Abstract | Full Text | References | 7 | High Performance PBO (poly-p-phenylene benzobisoxazole) Fibers
DOI: 10.7216/130075992015229807
Authors : Ece KALAYCI, O. Ozan AVİNÇ, Arzu YAVAŞ
Article Detail | Abstract | Full Text | References | 8 | Textiles Used for Balistic Protection, Their Properties and Balistic Performance Tests
DOI: 10.7216/130075992015229808
Authors : Faruk BOZDOĞAN, Sacide ÜNGÜN, Emrah TEMEL, Gamze SÜPÜREN MENGÜÇ
Article Detail | Abstract | Full Text | References |
References
1.
Başer, G., (2004), Dokuma Tekniği ve Sanatı, Cilt I: Temel Dokuma
Tekniği ve Kumaş Yapıları, Punto Yayıncılık Ltd. Şti., İzmir. |
|
2. Peirce, F. T. (1937). The Geometry of Cloth Structure, Journal of the Textile Institute, Vol. 28, No.3, T 45-96. |
|
3. Kemp.A., (1948), Journal of the Textile Institute, Vol. 49, T44. http://dx.doi.org/10.1080/19447025808660119 |
|
4. Grosberg, P., 1964, J. Text. Inst, 55, T 18. |
|
5.
Hearle, J.W.S., Grosberg, P., Backer, S., (1969), Structural Mechanics
of Fibers, Yarns and Fabrics, Wiley- Interscience, New
York.London.Sydney.Toronto. |
|
6.
Peirce, F.T., (1947), Geometrical Principles Applicable to the Design
of Functional Fabrics, Textile Research Journal, 17, 3, 123-147. http://dx.doi.org/10.1177/004051754701700301 |
|
7.
Olofsson, E., (1964), General Model of a Fabric as a Geometric-Mechanic
Structure, Journal of the Textile Institute, Vol. 55, T 541. |
|
8.
Grosberg, P., Kedia, S., (1966), The Mechanical Properties of Woven
Fabrics: Part I: The Initial Load Extension Modulus of Woven Fabrics,
Textile Research Journal, 36, 71-79. http://dx.doi.org/10.1177/004051756603600109 |
|
9.
Başer, G., (1989), A Mechanical Approach to the Determination of the
Geometry of Woven Cloth and to the Analysis of Subsequent Changes in
This Geometry, Part I: A Theory for the Crimping of the Weft Yarn During
Weaving, Journal of the Textile Institute, Vol. 80, No. 4, p 507- 520. http://dx.doi.org/10.1080/00405008908658303 |
|
10. Leaf, G.A.V., (1960), Models of the Plain- Knitted Loop, Journal of the Textile Institute, 51, T 49. |
|
11. Munden, D.L., (1961), The Geometry of a Knitted Fabric in its Relaxed Condition, Hosiery Times, April, p 43. |
|
12. Law. W., (1922), Wool Record and Textile World, Vol. 21, 968. |
|
13.
Hepworth, B., Leaf, G.A.V., (1976), The Mechanics of An Idealized
Weft-Knitted Structure, Journal of the Textile Institute, 67, 7/8,
241-248. http://dx.doi.org/10.1080/00405007608630578 |
|
14.
De Jong, S., Postle,R., (1977), An Energy Analysis of the Mechanics of
Weft-Knitted Fabrics by Means of Optimal- Control Theory Part III: The
1X1 Rib-Knitted Structure, Journal of the Textile Institute, 68, 10,
324-329. http://dx.doi.org/10.1080/00405007708631405 |
|
15. Kurbak, A., (1988), Düz Örgülerin Geometrik Özellikleri Üzerine Bazı Araştırmalar, Tekstil ve Makine, Y 2, Sayı:11, s 238. |
|
16.
Love, L., (1954), Graphical Relationships in Cloth Geometry for Plain,
Twill, and Sateen Weaves, Textile Research Journal, 24, 12, 1073-1083. http://dx.doi.org/10.1177/004051755402401208 |
|
17. Hamilton, J.B., (1964), A General System of Fabric Geometry, Journal of the Textile Institute,Vol. 55, No.1, 66-82. http://dx.doi.org/10.1080/19447026408660209 |
|
18. Berkowitsch, N. J., (1963), Zur Frage der Bestimmung des Fülligkeitskoeffizienten von Geweben, Textil Praxis, Januar, 25-28. |
|
19.
Başer, G., Kırtay, E., Önder, E., (1986), Makina Halısı Yapılarının
Bilgisayar Destekli Analizi ve Tasarımı, 2. Ulusal Bilgisayar Destekli
Tasarım Sempozyumu Bildiri Kitabı, Cilt I, s 404-420. |
|
20. Başer, G., (2013), Tekstil Mekaniğinin Temelleri: Kumaş Geometrisi ve Mekaniği, Meta Basım Matbaacılık Hizmetleri, İzmir. |
|
21.
Smirfith, J.A, (1965), Worsted 1x1 Rib Fabrics Part I: Dimensional
Properties, Journal of the Textile Institute, 56, 5, 248-256. http://dx.doi.org/10.1080/19447026508662282 |
|
22.
Kurbak, A. (1988), 1x1Rib Örme Kumaş İlmeği İçin Bir Model Tasarımı,
Tekstil ve Makine, IV. Tekstil Sempozyumu, 25-27 Ekim 1988 Bursa özel
sayısı. |
|
23.
Soyheptemiz, F.,(2007), Karmaşık Dokuma Yapılarının Bilgisayarda
Simülasyonu Yöntemi ile Tasarımı, Dokuz Eylül Üniversitesi, Fen
Bilimleri Enstitüsü, Y.Lisans Tezi, İzmir. |
|
24. Ashenhurst, T.R., (1884), A Treatise on Textile Calculations and the Structure of Fabrics, J. Broadbent and Co., London. |
|
25.
Kurbak, A., Ekmen, Ö., (2008), Basic Studies for Modelling Complex Weft
Knitted Fabric Structures Part I: A geometrical Model for Widthwise
Curlings of Plain Knitted Fabrics, Textile Research Journal, 78, 3,
198-208. http://dx.doi.org/10.1177/0040517507082352 |
|
26.
Kurbak, A., Soydan, A.S., (2010), Geometrical Models for Balanced Rib
Knitted Fabrics Part III: 2x2, 3x3, 4x4, 5x5 Rib Fabrics, Textile
Research Journal, 79, 618-625 http://dx.doi.org/10.1177/0040517508096218 |
References
1. http://www.uibargeprojepazari.com, 2012, Türkiye Tekstil ve Konfeksiyon Sektöründe Ar-Ge Proje Pazarı web sitesi
2. http://www.itkib.org.tr, 2013, İstanbul Tekstil ve Konfeksiyon İhracatçı Birlikleri web sitesi 3. Eren, R., (2009), Dokuma Hazırlık Teknolojisi, MKM Yayınları, Bursa 4. Kadolph S., J., Langford, A. L., Hollen, N., Saddler, J., (1993), Textiles, Macmillan Publishing Company, New York, U.S. 5. http://www.avlusa.com, 2012, AVL Looms web sitesi 6. http://www.tongyuan-fj.com, 2012, Jiangyin-Tongyuan web sitesi 7. http://www.ccitk.com, 2012, CCI Tech Inc. web sitesi 8. http://www.booria.com, 2012, Booria CAD/CAM Systems web sitesi 9. http://www.wilcom.com.au, 2012, Wilcom web sitesi 10. http://www.koppermann.com, 2012, Koppermann Computersysteme GmbH web sitesi 11. http://www.arahne.si, 2012, Arahne CAD/CAM web sitesi 12. http://www.designscopecompany.com, 2012, EAT Designscope Company web sitesi 13. http://ng.nedsense.com, 2012, Nedsense NedGraphics B.V. web sitesi 14. http://www.bonas.be, 2012, Bonas Textile Machinery NV web sitesi 15. http://www.infotex.es, 2012, Informà tica Tèxtil web sitesi 16. http://pointcarre.com, 2012, Pointcarre Textile Software web sitesi 17. http://www.scotweave.com, 2012, ScotCad Textiles Limited web sitesi 18. http://www.textronic.com, 2012, Textronics CAD/CAM Solutions for Textiles web sitesi 19. Akelma, Y., (2007), Döner Gücü Sistemi ve Eğitim Amaçlı Armürlü Dokuma Tezgahlarına Uygulanabilirliği, Gazi Üniversitesi Eğitim Bilimleri Enstitüsü El Sanatları Anabilim Dalı-Yüksek Lisans Tezi, Ankara 20. http://www.gulasmakina.com.tr, 2012, Gülas Makina web sitesi 21. MEB, 2011, Megep Ana Örgülü Numune Kumaş Dokuma, Ankara 22. 2011-ÖSYS Yükseköğretim Programları ve Kontenjanları Kılavuzu 23. http://www.meb.gov.tr, 2012, T.C. Milli Eğitim Bakanlığı web sitesi 24. http://www.adaso.org.tr, 2012, Adana Sanayi Odası web sitesi 25. http://www.btso.org.tr, 2012, Bursa Ticaret ve Sanayi Odası web sitesi 26. http://.tobb.org.tr, 2012, Türkiye Odalar ve Borsalar Birliği web sitesi 27. http://www.kmtso.org.tr, 2012, Kahramanmaraş Ticaret ve Sanayi Odası web sitesi 28. http://www.gto.org.tr, 2012, Gaziantep Ticaret Odası web sitesi 29. http://www.ebso.org.tr, 2012, Ege Bölgesi Sanayi Odası web sitesi 30. http://www.iso.org.tr, 2012, ô€ƒ¸stanbul Sanayi Odası web sitesi 31. Saatçi, K. D., (1996), Dokuma Projeleri İçin Bir Bilgisayarlı Yönetim Modeli Hazırlanmasô€ƒ•, Uludağ Üniversitesi Tekstil Mühendisliği Ana Bilim Dalı- Yüksek Lisans Tezi, Bursa 32. Şardağ S., (2002), Armürlü Dokuma Makinelerinde Dokunabilecek Çift Katlı Desenlerin Araştırılması, Uludağ Üniversitesi Tekstil Mühendisliği Ana Bilim Dalı- Yüksek Lisans Tezi, Bursa 33. Türker, E., (2006), Dokuma Kumaş Yapılarının Bilgisayarda Tasarımı, Tekstil ve Konfeksiyon Dergisi, 2006/2, 110-117.
References
1.
Cusick, G.E., (1965), The Dependence of Fabric Drape on Bending and
Shear Stiffness, Journal of Textile Institute, 56, 596-606. http://dx.doi.org/10.1080/19447026508662319 |
|
2. Hu, J. and Chan,Y.F., (1998), Effect of Fabric Mechanical Properties on Drape, Textile Research Journal, 68, 1, 57-64. http://dx.doi.org/10.1177/004051759806800107 |
|
3.
ASTM International, Designation D 4032 – 94: Standard Test method for
Stiffness of fabric by the Circular Bend methods, (2001). |
|
4. Pierce, F.T., (1930), The Handle of Cloth as a Measurable Quantity, Journal of Textile Institute, 21, 377-417. http://dx.doi.org/10.1080/19447023008661529 |
|
5.
Chu, C.C., Cummings, C.L. and Teixeira, N.A., (1950), Factors Affecting
the Drape Meter, Mechanics of Elastic Performance of Textile Materials,
Textile Research Journal, 20, 539-548. http://dx.doi.org/10.1177/004051755002000802 |
|
6.
Chu, C.C., Platt, M.M. and Hamburger, W.J., (1960), Investigation of
the Factors Affecting the Drapeability of Fabrics, Textile Research
Journal, 30, 66-67. http://dx.doi.org/10.1177/004051756003000109 |
|
7.
Vangheluwe, L. and Kiekens, P., (1993), Time Dependence of the Drape
Coefficient of Fabrics, International J. Clothing Sci. Technology, 5,
5-8. http://dx.doi.org/10.1108/eb003022 |
|
8.
Shyr, T.W., Wang, P.N. and Cheng, K.B., (2007), A Comparison of the Key
Parameters Affecting the Dynamic and Static Drape Coefficients of
Natural-Fibre Woven Fabrics by a Newly Devised Dynamic Drape Automatic
Mesuring System, Fibers&Textiles in Eastern Europe, 15, 3(62),
81-86. |
|
9.
Shyr, T.W., Wang, P.N. and Lin, J.Y., (2009), Subjective and Objective
Evaluation Methods to Determine the Peak-trough Threshold of the Drape
Fabric Node, Textile Research Journal, 79, 13, 1223-1234. http://dx.doi.org/10.1177/0040517508100725 |
|
10.
Sun, M.N., (2008), A New Tester and Method for Measuring Fabric
Stiffness and Drape, Textile Research Journal, 78, 9, 761-770. http://dx.doi.org/10.1177/0040517507084284 |
|
11.
Mizutani, C., Amano, T. and Sakaguchi, Y.,(2005), A New Apparatus for
the Study of Fabric Drape, Textile Research Journal, 75, 1, 81-87. http://dx.doi.org/10.1177/004051750507500115 |
|
12.
Moore, C.L., Gurel, L.M. and Lentner, M.,(1995), Effects of Fabric
Skewness on the Drape of Four-Gore Skirts, Clothing and Textiles
Research Journal, 13, 2,131-138. http://dx.doi.org/10.1177/0887302X9501300208 |
|
13.
Lin, J.Y., Wang, P.N. and Shyr, T.W., (2008), Comparing and Modeling
the Dynamic Drape of Four Natural-fiber Fabrics, Textile Research
Journal, 78, 10, 911-921. http://dx.doi.org/10.1177/0040517507083547 |
|
14.
Uçar, N., Kalao lu, F. Bahtiyar, D. and Bilaç, O.E., (2004),
Investigating the Drape Behavior of Seamed Knit Fabrics with Image
Analysis, Textile Research Journal, 74, 2 166- 171. |
|
15.
Pattanayak, A.K., Luximon, A. and Khandual, A., (2011), Prediction of
drape profile of cotton woven fabrics using artificial neural network
and multiple regression method, Textile Research Journal, 81, 6:
559-566. http://dx.doi.org/10.1177/0040517510380783 |
|
16.
Guthrie, J. C., Morton, D. H., and Oliver, P. H.,(1954), An
Investigation Into Bending and Torsional Rigidities of Some Fibers,
Journal of Textile Institute, T912-T928. http://dx.doi.org/10.1080/19447027.1954.10807293 |
|
17. Cooper, D. N. E., (1965), The Stiffness of Woven Textiles, Journal of Textile Institute, T317-T335. |
|
18.
McGregor B.A. and Postle R., (2008), Mechanical Properties of Cashmere
Single Jersey Knitted Fabrics Blended with High and Low Crimp Superfine
Merine Wool, Textile Research Journal, 78, 5, 399-411. http://dx.doi.org/10.1177/0040517507087675 |
References
1. Erarslan, S. (2008), Süreç Yönetimi, Grup Peryod Entegre Yönetim Bilgi Sistemleri A.Ş. |
|
2.
Güner, M. (2009), Konfeksiyon İşletmelerinde Örgütsel Zaman Yönetimi
İçin ABC Analizinin Uygulanması, Teksti ve Konfeksyion Dergisi, 2,
163-168. |
|
3. Zengin E. ve Erdal A., (2000), Hizmet Sektöründe Toplam Kalite Yönetimi, Journal of Qafqaz University, 3, 1. |
|
4. Belgin Ö., "Hizmet Sektöründe Verimlilik", www.bilisimdergisi.org/s127, Erişim Tarihi: 20.12.2012. |
|
5. Verimlilik ve MPM: Verim, Verimlilik ve Verimlilik Artışı Hakkında, www.hasmendi.net, Erişim Tarihi: 08.11.2012. |
|
6.
Özbek Ç., (2007), Verimlilik Artırma Teknikleri, Yıldız Teknik
Üniversitesi Sosyal Bilimler Enstitüsü İşletme Ana Bilim Dalı, Yüksek
Lisans Tezi. |
|
7. Güner M. Konfeksiyon Organizasyon ve Planlama, Ege Üniversitesi Mühendislik Fakültesi Tekstil Mühendisliği Bölümü. |
References
1.
Kılıç, D., Öztürk, S., (2014), Türkiye'de Kadınların İşgücüne Katılımı
Önündeki Engeller ve Çözüm Yolları: Bir Ampirik Uygulama, Amme İdaresi
Dergisi, 47(1), 107-130. |
|
2.
Lee, J.Y., Istook, C.L., Nam, Y.J., Park, S.M., (2007), Comparison of
Body Shape Between USA and Korean Women, International Journal of
Clothing Science and Technology, 19(5), 374-391. http://dx.doi.org/10.1108/09556220710819555 |
|
3.
Ujevié, D., Petrak, S., Hrastinski, M., Mahnié, M., (2012), Development
of The Garment Size System and Computer- Based Body Models, Tekstil ve
Mühendis, 19(85), 35-40. http://dx.doi.org/10.7216/130075992012198508 |
|
4.
Hasler, N., Stoll, C., Rosenhahn, B., Thormahlen, T., Seidel, H.P.,
(2009), Estimating Body Shape of Dressed Humans, Computers &
Graphics, 33 (3), 211-216. http://dx.doi.org/10.1016/j.cag.2009.03.026 |
|
5.
Song, H.K., Ashdown, S.P., (2011), Categorization of Lower Body Shapes
for Adult Females Based on Multiple View Analysis, Textile Research
Journal, 81(9), 914-931. http://dx.doi.org/10.1177/0040517510392448 |
|
6.
Connell, L.J., Ulrich, P., Knox, A., Hutton, G., Bruner, D., Ashdown,
S., (2003), Body Scan Analysis for Fit Models Based on Body Shape and
Posture Analysis, National Textile Center Annual Report: November, 1-10. |
|
7.
Çileroğlu, B., (2010), Body Shapes of Turkish Women: In Terms of The
Ready-to-Wear Industry, Journal of Textile and Apparel, 2, 130-136. |
|
8. Vuruşkan, A., Bulgun, E., (2013), Kişiye Özel Giysiler İçin Vücuda Uygunluk Analizi, Tekstil ve Mühendis, 20(90), 42- 53 http://dx.doi.org/10.7216/130075992013209005 |
|
9.
Connell, L.J., Ulrich, P.V., Brannon, E.L., Alexander, M., Presley,
A.B., (2006), Body Shape Assessment Scale: Instrument Development for
Analyzing Female Figures, Clothing and Textile Research Journal, 24(2),
81-95. http://dx.doi.org/10.1177/0887302X0602400203 |
|
10.
Tama, D., Öndoğan, Z., (2014), Fitting Evaluation of Pattern Making
Systems According to Female Body Shapes, Fibres & Textiles in
Eastern Europe, 4(106), 107-111. |
|
11.
Allen, B., Curless, B., Popovic, Z., (2003), The Space of Human Body
Shapes: Reconstruction and Parameterization From Range Scans, The
World's Largest Marketplace of Computer Graphics and Interactive
Techniques Conference, 7-31 July, 587-594. |
|
12.
Bauser, D.A.S., Suchan, B., Daum, I., (2011), Differences Between
Perception of Human Faces and Body Shapes: Evidence From The Composite
Illusion, Vision Research, 51, 195-202. http://dx.doi.org/10.1016/j.visres.2010.11.007 |
|
13.
Olaru, S., Niculescu, C., Mocenco, A., Salistean, A., Teodorescu, M.,
(2011), Shape Categories for The Romanian Female Population and Specific
Clothing Recommendations, Industria Textila, 62(3), 155-160. |
|
14.
Büyüköztürk, Ş., Kılıç Çakmak, E., Akgün, Ö. E., Karadeniz, Ş.,
Demirel, F., (2013), Bilimsel Araştırma Yöntemleri, Pegem Akademi,
Ankara. |
|
15. Spillane, M., (1991), The Complete Style Guide, Piatkus, UK. |
|
16.
Eryazıcı, E., (2014), Çalışan Kadınların Vücut Şekillerine Göre Giysi
Tercihlerinin Belirlenmesi, Gazi Üniversitesi Eğitim Bilimleri Enstitüsü
Giyim Endüstrisi ve Giyim Sanatları Eğitimi Anabilim Dalı Yüksek Lisans
Tezi, Ankara. |
|
17.
Simmons, K., Istook, C.L., Devarajan, P., (2004), Female Figure
Identification Technique (FFIT) for Apparel Part I: Describing Female
Shapes, Journal of Textile and Apparel, Technology and Management, 4(1),
1-16. |
|
18.
Mesleki Eğitim ve Öğretim Sisteminin Güçlendirilmesi Projesi- MEGEP,
(2007), Giyim Üretim Teknolojisi- Giysi Teknik Çizimleri II, TC Milli
Eğitim Bakanlığı, Ankara. |
|
19.
Göksel, İ., (2013), Female Labor Force Participation in Turkey: The
Role of Conservatism, Women's Studies International Forum, 41, 45-54. http://dx.doi.org/10.1016/j.wsif.2013.04.006 |
|
20.Kılınçarslan,
S., (2011), İş Hayatındaki Kadının Giysi Seçiminde Renk Tercihi:
Giresun Üniversitesi Örneği, Yayınlanmış Yüksek Lisans Tezi, Selçuk
Üniversitesi Sosyal Bilimleri Enstitüsü, Konya. |
|
21.
Koca, E., Koç, F., (2008), Çalışan Kadınların Giysi Seçimleri ve Renk
Tercihleri, Elektronik Sosyal Bilimleri Dergisi, 7(24), 171-200. |
References
1.
İraz, R., (2004), İnsan Kaynakları Eğitiminin Çalışanların
Verimliliklerine Olan Etkileri Ve Karaman KOBİ'lerinde Bir Uygulama, 1.
KOBİ'ler ve Verimlilik Kongre Kitabı. 11-12 Aralık, İstanbul. |
|
2.
Gül, H., (2000), Türkiye'de Kamu Yönetiminde Hizmet İçi Eğitim, Dokuz
Eylül Üniversitesi Sosyal Bilimler Enstitüsü Dergisi, Cilt:2, Sayı:3,
Sayfa:1-14, İzmir. |
|
3. Tınaz, P., (2000), Organizasyonlarda Etkili Öğrenme Stratejileri, MESS Yayınları, İstanbul. |
|
4. Doğan, A., (1993), Sanayileşmede Yetişmiş İnsan Gücü ve Verimlilik Eğitimi. MPM Yayını, Ankara. |
|
5.
Fer, S., (1999), Hazır Giyim Endüstrisinde Modelist, Makastar, Makineci
ve Ütücü Mesleklerinde Çalışan İşgücünün Meslekî Yeterliklerinin
Belirlenmesi ve Meslekî Yeterliklere Dayalı Bir Program Modeli. Doktora
Tezi, Gazi Üniversitesi Sosyal Bilimler Enstitüsü, Ankara. |
|
6.
Şenel, A. ve Açıkgöz, A., (2004), İşletmelerde İşgücü Verimliliğinin
Artırılmasında Eğitimin Önemi, Standart Dergisi, Yıl:43, Sayı:512,
Ağustos Sayısı, S.56-58, Ajans- Türk Matbaacılık, Ankara. |
|
7. Canman, D., (2000), Insan Kaynakları Yönetimi, Yargı Basım Yayım, Ankara. |
|
8. Türkel, A., (1999). Globalleşen Dünyanın Lider Yöneticilerine, Türkmen Kitabevi, İstanbul. |
|
9. Yüksel, Ö., (1998), İnsan Kaynakları Yönetimi, Gazi Kitabevi, Ankara. |
|
10. Balcı, A., (2005), Sosyal Bilimlerde Araştırma Yöntem Teknik ve İlkeler, Pegem A Yayıncılık, Ankara. |
|
11. Fraenkel, J. R. ve Walken, N. E., (2006), How to Design and Evaluate Research in Education, Mc-Graw-Hill, New York. |
|
12.
Sabuncuoğlu, Z. ve Sayılar, Y., (2002), Eğitim Etkinliği ve Eğitim
Sonrası Davranışsal Değişimlerin Ölçümlenmesine Yönelik Bir Uygulama,
İşletmelerde Çağdaş Yaklaşımlar. (Ed. Zeyyat Sabuncuoğlu), Ezgi
Kitabevi, Bursa. |
|
13. Anonim. http://www.bursa-smmmo.org.tr/yazarlar/makaleler/124MMU.pdf Erişim Tarihi:28.05.2014 |
|
14.
Aydınlı, İ. Ve Halis, M., (2004), Eğitimin İşletme Etkinliğindeki Yeri
ve Önemi, Mevzuat Dergisi, Yıl:7, Sayı:74, Şubat Sayısı,
http://www.mevzuatdergisi.com/2004/02a/02.htm Erişim Tarihi:09.02.2015 |
References
1.
Erdoğan Ü.H., (2012), Yüksek Mukavemetli Lifler Ve øplikler, TSE
Standard Ekonomik ve Teknik Dergi, 51, (602), 57-65. |
|
2. Hearle J.W., (2001), High-Performance Fibres, CRC Press, Cambridge. |
|
3. Horrocks A.R., (2005), Tekstilde Yeni Ufuklar " Teknik Tekstiller", İstanbul Ticaret Odası, İstanbul. |
|
4.
Kitagawa T., Yabuki K., Young R., (2001), An
Investigation into the Relationship between Processing, Structure
and Properties for High-Modulus PBO Fibres. Part 1. Raman Band Shifts
and Broadening in Tension and Compression, Polymer, 42, (5), 2101-2112. http://dx.doi.org/10.1016/S0032-3861(00)00571-1 |
|
5.
Sikkema D.J., Northolt M.G., Pourdeyhimi B., (2003), Assessment
of New High-Performance Fibers for Advanced Applications, MRS bulletin,
28, (08), 579-584. http://dx.doi.org/10.1557/mrs2003.169 |
|
6.
Cunniff P.M., The Performance of Poly (Para-Phenylene Benzobizoxazole)
(PBO) Fabric for Fragmentation Protective Body Armor, Proceedings
of the 18th International Symposium on Ballistics, 814-821, 1999. |
|
7.
Bourbigot S., Flambard X., (2002), Heat Resistance and Flammability of
High Performance Fibres: A Review, Fire and Materials, 26, (4-5),
155-168. http://dx.doi.org/10.1002/fam.799 |
|
8.
Kuroki T., Tanaka Y., Hokudoh T., Yabuki K., (1997), Heat
Resistance Properties of Poly (P-Phenylene-2,6- Benzobisoxazole)
Fiber, Journal of Applied Polymer Science, 65, (5), 1031-1036. http://dx.doi.org/10.1002/(SICI)1097-4628(19970801)65:5<1031::AID-APP21>3.0.CO;2-3 |
|
9.
Kitagawa T., Murase H., Yabuki K., (1998), Morphological Study on
Poly-P-Phenylenebenzobisoxazole (PBO) Fiber, Journal of Polymer Science
Part B: Polymer Physics, 36, (1), 39-48. http://dx.doi.org/10.1002/(SICI)1099-0488(19980115)36:1<39::AID-POLB5>3.0.CO;2-P |
|
10.
Bunsell A.R., (2009), Handbook of Tensile Properties of Textile and
Technical Fibres, Woodhead Publishing Limted, Cambridge. http://dx.doi.org/10.1533/9781845696801 |
|
11. Houcks M.M., (2009), Identification of Textile Fibers, Woodhead Publishing Limited, Oxford. http://dx.doi.org/10.1533/9781845695651 |
|
12. Scott R.A., (2005), Textiles for Protection, CRC Press, Cambridge. |
|
13. Meyers R.A., (1987), Encyclopedia of Physical Science and Technology, Academic Press, Orlando. |
|
14. Hongu T., Takigami M., Phillips G., (2005), New Millennium Fibers, Woodhead Publishing Limited, Cambridge. http://dx.doi.org/10.1533/9781845690793 |
|
15.
Orndoff E., (1995), Development and Evaluation of
Polybenzoxazole Fibrous Structures, National Aeronautics and Space
Administration. |
|
16. Chae H.G., Kumar S., (2006), Rigid-Rod Polymeric Fibers, Journal of Applied Polymer Science, 100, (1), 791-802. http://dx.doi.org/10.1002/app.22680 |
|
17.
O'Neil J.M., (2006), Factors Contributing to the
Degradation of Poly (P-Phenylene Benzobisoxazole)(PBO) Fibers under
Elevated Temperature and Humidity Conditions, master, Texas
A&M University, |
|
18.
Afshari M., Sikkema D.J., Lee K., Bogle M., (2008), High Performance
Fibers Based on Rigid and Flexible Polymers, Polymer Reviews, 48, (2),
230-274. http://dx.doi.org/10.1080/15583720802020129 |
|
19.
Hu X., Lesser A.J., Post-Treatment of Poly-P-
Phenylenebenzobisoxazole (PBO) Fibers Using
Supercritical Carbon Dioxide, 227th American Chemical Society National
Meeting, Anaheim, CA, 2004. |
|
20.
PBO Fiber Zylon, (2005), Toyobo Co., LTD.
http://www.toyoboglobal.com/seihin/kc/pbo/Technical_
Information_2005.pdf, Ağustos 2014 |
|
21. Elsasser V.H., (2005), Textiles: Concepts and Principles, Fairchild Publications, Inc., New York. |
|
22.
Ward D.T., (2001), Techtextil: World's Biggest Technical Textiles
Event, International Textile Bulletin: Nonwovens, Industrial Textiles,
47, (3), 37-42. |
|
23.
Jacobs M., (1999), Creep of Gel-Spun Polyethylene Fibres, Ph. D.
Thesis, Eindhoven University of Technology, Eindhoven, |
|
24. Hearle J.W., Morton W.E., (2008), Physical Properties of Textile Fibres, CRC Press, Cambridge. |
|
25. Wilusz E., (2008), Military Textiles, Woodhead Publishing Limited, Cambridge. |
|
26. Chapman R., (2010), Applications of Nonwovens in Technical Textiles, Elsevier Science, Burlington. http://dx.doi.org/10.1533/9781845699741 |
|
27. Zylon (PBO), http://www.formula1-dictionary.net/zylon. html, Eylül 2014 |
|
28.
Mizuno T., Nakai T., Mihara M., Ito T., (2012), Facile Sulfur-Assisted
Carbonylation of Diaminoresorcinol with Carbon Monoxide,
Heteroatom Chemistry, 23, (1), 111-116. http://dx.doi.org/10.1002/hc.20746 |
|
29.
Wu G., Shyng Y., (2006), Surface Modification of PBO Fiber by
Electrostatic Discharge for Composites, Journal of Achievements in
Materials and Manufacturing Engineering,17, (1-2). |
|
30.
Lee Rainwater E., McLaughlin J., Seely L.G., The Effects of Oxygen Upon
Strength Degradation of PBO Cordage, AIAA's 3rd Annual Aviation
Technology, Integration, and Operations (ATIO) Forum 2003, November
17, 2003 - November 19, 2003, 2003, Denver, CO, United states.
AIAA's 3rd Annual Aviation Technology, Integration, and Operations
(ATIO) Forum, American Institute of Aeronautics and
Astronautics Inc. |
|
31.
Young R., Day R., Zakikhani M., (1990), The Structure and Deformation
Behaviour of Poly (P-Phenylene Benzobisoxazole) Fibres, Journal of
materials science, 25, (1), 127-136. http://dx.doi.org/10.1007/BF00544197 |
|
32.
Benga G., (2005), 10 Th Cluj-Napoca International Symposium
of 2 Molecular Medicine, Society and Public Health Celebrating
Professor Claude Matasa, Dce, Dsc, Dhc (USA). |
|
33.
Ran S., Burger C., Fang D., Cookson D., Yabuki K., Teramoto
Y., Cunniff P., Viccaro P., Hsiao B., Chu B., (2001), Structure
Formation in High-Performance PBO Fibers, NSLS Activity Report,
2-147. |
|
34. Journee M.J.G., (2012), Foam of Polymers, US Patent US 20120165423A1. |
|
35. Lewin M., (2010), Handbook of Fiber Chemistry, CRC Press, New York. |
|
36. Collier B.J., Tortora, Q.C., (2001), Understanding Textiles, Prentice Hall, New Jersey. |
|
37. PBO Cable and Zylon Manufacturing, http://www.applied- fiber.com/pbo-cable-and-zylon-manufacturing, Ağustos 2014
38.
Krause S.J., Haddock T.B., Vezie D.L., Lenhert P.G., Hwang
W.F., Price G.E., Helminiak T.E., O'Brien J.F., Adams W.W.,
(1988), Morphology and Properties of Rigid- Rod Poly(P-Phenylene
Benzobisoxazole) (PBO) and Stiff- Chain Poly(2,5(6)-Benzoxazole)
(Abpbo) Fibres, Polymer, 29, (8), 1354-1364. http://dx.doi.org/10.1016/0032-3861(88)90297-2 |
|
39. Mark J.E., (2007), Physical Properties of Polymers Handbook, Springer, New York. http://dx.doi.org/10.1007/978-0-387-69002-5 |
|
40. http://www.toyobo-global.com/seihin/kc/pbo/,Ağustos 2014 |
|
41.
Pan N., Sun, G., (2011), Functional Textiles for Improved Performance,
Protection and Health, Woodhead Publishing Limited, Cambridge. http://dx.doi.org/10.1533/9780857092878 |
|
42.
Abe Y., Yabuki K., (2012), 5.19 - Lyotropic Polycondensation Including
Fibers, In: Möller KM (ed) Polymer Science: A Comprehensive Reference.
Elsevier, Amsterdam, 469-495. http://dx.doi.org/10.1016/B978-0-444-53349-4.00150-3 |
|
43.
Choe E.W., Kim S.N., (1981), Synthesis, Spinning, and Fiber
Mechanical Properties of Poly(P-Phenylenebenzobisoxazole),
Macromolecules, 14, (4), 920-924. http://dx.doi.org/10.1021/ma50005a006 |
|
44. Sperling L.H., (2005), Introduction to Physical Polymer Science, John Wiley & Sons. http://dx.doi.org/10.1002/0471757128 |
|
45.
Wolfe J.F., Arnold F., (1981), Rigid-Rod Polymers. 1.Synthesis
and Thermal Properties of Para-Aromatic Polymers with 2,
6-Benzobisoxazole Units in the Main Chain, Macromolecules, 14, (4),
909-915. http://dx.doi.org/10.1021/ma50005a004 |
|
46.
Chenevey E.C., Helminiak T.E., (1986), Process for
Preparing Shaped Articles of Rigid Rod Heterocyclic Liquid
Crystalline Polymers, Google Patents. |
|
47.
Rosenberg S., Quarderer G.J., Sen A., Nakagawa M., Faley T.L., Serrano
M., Teramoto Y., Chau C.C., (1994), Method for Rapid Spinning of a
Polybenzazole Fiber, Google Patents. |
|
48.
Kitagawa T., Yabuki K., (2000), An Investigation into the Relationship
between Internal Stress Distribution and a Change of
Poly-P-Phenylenebenzobisoxazole (PBO) Fiber Structure, Journal of
Polymer Science Part B: Polymer Physics, 38, (22), 2901-2911. http://dx.doi.org/10.1002/1099-0488(20001115)38:22<2901::AID-POLB50>3.0.CO;2-# |
|
49.
Kitagawa T., Yabuki K., (2000), A Relationship between the Stress
Distribution and the Peak Profile Broadening of Meridional X-Ray
Diffraction from Poly-P- Phenylenebenzobisoxazole
(PBO) Fiber, Journal of Polymer Science Part B: Polymer
Physics, 38, (22), 2937-2942. http://dx.doi.org/10.1002/1099-0488(20001115)38:22<2937::AID-POLB90>3.0.CO;2-B |
|
50.
Özdoğan E., Demir A., Seventekin N.,
(2006),Nanoteknolojø Ve Tekstøl Uygulamalari, Tekstil ve
Konfeksiyon, 16, (3), 160-168. |
|
51.
Jeong Y.G., Baik D.H., Jang J.W., Min B.G., Yoon K.H., (2014),
Preparation, Structure and Properties of Poly (P- Phenylene
Benzobisoxazole) Composite Fibers Reinforced with Graphene,
Macromolecular Research, 22, (3), 279-286. http://dx.doi.org/10.1007/s13233-014-2043-8 |
|
52.
Barron A.R., Yan Z., Characterization of Graphene by Raman
Spectroscopy, http://cnx.org/contents/f06226c5-
c2a4-4798-9c75-b016acea73cd@2/characterization-of-
graphene-by-raman-spectroscopy, Eylül 2014 |
|
53.
Shishoo R., (2002), Recent Developments in Materials for Use in
Protective Clothing, International Journal of Clothing Science
and Technology, 14, (3/4), 201-215. http://dx.doi.org/10.1108/09556220210437167 |
|
54.
Jayaraman S., Kiekens P., Grancaric A.M., (2006), Intelligent Textiles
for Personal Protection and Safety, IOS press, Zadar. |
|
55. Shishoo R., (2008), Textile Advances in the Automotive Industry, Woodhead Publishing Limited, Cambridge. |
|
56.
Doyle B., (2000), Aramid, Carbon, and PBO Fibers/Yarns in Engineered
Fabrics or Membranes, Journal of Industrial Textiles, 30, (1), 42-49. http://dx.doi.org/10.1106/MYGL-XAUV-16D2-QBXV |
|
57. Shishoo R., (2005), Textiles in Sport, Woodhead Publishing Limited, Cambridge. |
|
58. Bower D.I., (2002), An Introduction to Polymer Physics, Cambridge University Press. http://dx.doi.org/10.1017/CBO9780511801280 |
|
59.
Future Fibres-Tomorrow's Innovation, http://www. futurefibres. com/
Rigging/Technology/Core-Technology/ Core-Fibres/ PBO.html, A÷ustos
2014 |
|
60. Products, http://www.toyobo-global.com/seihin/kc/pbo/meigara. htm, Eylül 2014 |
|
61. Ruredil X Mesh Gold, (2006), Ruredil X Mesh Gold, Eylül 2014 |
|
62.
Huang Y.K., Frings P.H., Hennes E., (2002), Mechanical Properties of
Zylon/Epoxy Composite, Composites Part B:Engineering, 33, (2),
109-115. http://dx.doi.org/10.1016/S1359-8368(01)00064-6 |
|
63. Horrocks A.R., Anand S.C., (2000), Handbook of Technical Textiles, Woodhead Publishing Limited, Cambridge. |
|
64.
Cunniff P.M., Auerbach M.A., Vetter E., Sikkema D.J., High
Performance "M5" Fiber for Ballistics/Structural Composites, 23rd.
Army Science Conference, 2002. Citeseer. |
|
65.
Davies P., Bunsell A.R., Chailleux E., (2010), Tensile Fatigue
Behaviour of PBO Fibres, Journal of materials science, 45, (23),
6395-6400. http://dx.doi.org/10.1007/s10853-010-4721-z |
|
66.
Sorensen K., (2003), Momentum Exchange Electrodynamic Reboost (Mxer)
Tether Technology Assessment Group Final Report, NASA/MSFC
In-Space Propulsion Technology Office, Huntsville, AL, 4. |
|
67.
Çay A., Süpüren G., Kanat Z.E., Gülümser T., TarakçıoğluI., (2007),
Balistik Lifler (Bölüm 1), Tekstil & Konfeksiyon, 17, (4), 232-237. |
|
68.
Zhai H., Euler A., Material Challenges for Lighter-Than-Air Systems
in High Altitude Applications, AIAA 5th Aviation, Technology,
Integration, and Operations Conference, 2005, Virginia. |
|
69.
Rice B., Quinzi J., Lund L., Ulreich J., Shoup M., (2014), Measurement
of Young's Modulus and Damping of Fibers at Cryogenic Temperatures,
Cryogenics, 63, (0), 43-48. http://dx.doi.org/10.1016/j.cryogenics.2014.06.010 |
|
70.
Yamashita Y., Kawabata S., Okada S., Tanaka A., (2003), Mechanical
Characteristics of PBO Single Fiber, Carbon (T-300, PAN), 234, (6.03),
18.12. |
71.
Lobodzinski S., Laks M., (2009), New Material for
Implantable Cardiac Leads, Journal of electrocardiology, 42, (6),
566-573. http://dx.doi.org/10.1016/j.jelectrocard.2009.07.019 |
|
72.
Purkayastha S., Timble N.B., Shah N.A., (2009), Insight to Probable
Mechanism of Hydrolytic Degradation of PBO Fiber, Chemical Fibers
International, 59, (1), 30-32. |
|
73. PBI Vs. PBO Thermal Conductivity Explained, (2013), http://www.youtube.com/watch?v=eO-4NuAfGRg, Eylül 2014 |
|
74.
Albrecht W., Fuchs H., Kittelmann W., (2006), Nonwoven Fabrics: Raw
Materials, Manufacture, Applications, Characteristics, Testing
Processes, John Wiley & Sons, Weinheim. |
|
75. Buckley R.W., (2003), Polymer Enhancement of Technical Textiles, Rapra Technology Limited. |
|
76. Hu J., (2008), Fabric Testing, Woodhead Publishing Limited, Cambridge. |
|
77. KalaycÕ E., Avinç O., Yavaú A., (2014), Polibenzimidazol (PBI) Lifleri, 2014 (Cilt: 21), 96. |
|
78.
Bourbigot S., Flambard X., Ferreira M., Devaux E., Poutch F.,
Characterisation and Reaction to Fire of "M5" Rigid Rod Polymer Fibres,
2187-2194, 2003. Journal of Materials Science, Kluwer Academic
Publishers. |
|
79.
Chin J., Forster A., Clerici C., Sung L., Oudina M., Rice K., (2007),
Temperature and Humidity Aging of Poly(P-
Phenylene-2,6-Benzobisoxazole) Fibers: Chemical and Physical
Characterization, Polymer Degradation and Stability, 92, (7),
1234-1246. http://dx.doi.org/10.1016/j.polymdegradstab.2007.03.030 |
|
80. Mittal V., (2011), High Performance Polymers and Engineering Plastics, John Wiley & Sons, New Jersey. http://dx.doi.org/10.1002/9781118171950 |
|
81.
Yumak N., Pekbey Y., Aslantağ K., (2013), ZÕrh TasarÕmÕnda KullanÕlan
Kompozit Malzemelerin Deformasyon Karakteristi÷inin
Araştırılması, Makine Teknolojileri Elektronik Dergisi, 10, (4),
1-21. |
|
82.
Liu X., Yu W., The Degradation of PBO Fiber by Heat and Light, 2005
International Conference on Advanced Fibers and Polymer Materials,
ICAFPM 2005, October 19, 2005 - October 21, 2005, 343-348, 2005,
Shanghai, China. "New Century, New Materials and New Life" -
Proceedings of 2005 International Conference on Advanced Fibers
and Polymer Materials, ICAFPM 2005, China Press. |
|
83.
Said M., Dingwall B., Gupta A., Seyam A., Mock G., Theyson
T., (2006), Investigation of Ultra Violet (Uv) Resistance for High
Strength Fibers, Advances in space research, 37, (11), 2052-2058. http://dx.doi.org/10.1016/j.asr.2005.04.098 |
|
84.
Mäder E., Melcher S., Liu J.-W., Gao S.-L., Bianchi A., Zherlitsyn S.,
Wosnitza J., (2007), Adhesion of PBO Fiber in Epoxy Composites, Journal
of materials science, 42, (19), 8047-8052. http://dx.doi.org/10.1007/s10853-006-1311-1 |
|
85.
Hua Y., Ni Q.-Q., Yamanaka A., Natsuki T., Development of High
Performance Fiber Reinforced Composite with Negative Thermal
Expansion Property, Multi-functional Materials and Structures -
International Conference on Multifunctional Materials and Structures,
July 28, 2008 - July 31, 2008, 89-92, 2008, Hong Kong, P.R.,
China. Advanced Materials Research, Trans Tech Publications. |
|
86.
Larsson F., Svensson L., (2002), Carbon, Polyethylene and PBO Hybrid
Fibre Composites for Structural Lightweight Armour, Composites Part
A: Applied Science and Manufacturing, 33, (2), 221-231. http://dx.doi.org/10.1016/S1359-835X(01)00095-1 |
|
87.
Butler N., (2002), Techtextil North America - Fibres, Transport
and Protection, Technical Textiles International, 11, (7), 19-26. |
|
88.
Wang B., Jin Z., Qiu Z., Liu M., (2001), Experimental Study of
Basic Properties of PBO Organic Fiber, Hsi-An Chiao Tung Ta
Hsueh/Journal of Xi'an Jiaotong University, 35, (11), 1189-1192. |
|
89.
Syscom Introduces Amberstrand Fiber,
http://www.textileworld.com/Issues/2005/January/Fiber_World/Syscom_Introduces_AmberStrand_Fiber,
A÷ustos 2014 |
|
90. Çerkez ø., Ulcay Y., Kolloidal Silika Dispersiyonunun Polietilen Dokusuz Yüzeyin Enerji Absorbsiyonuna Olan Etkisi. |
|
91.
Chae H.G., Kumar S., Next Generation Ballistic Materials, 50th
International SAMPE Symposium and Exhibition, May 1, 2005 - May 5,
2005, 2623-2633, 2005, Long Beach, CA, United states. International
SAMPE Symposium and Exhibition (Proceedings), Soc. for the
Advancement of Material and Process Engineering. |
|
92.
Işık H., Değirmenci E., Evci C., (2013), Örgülü Kumaşların Balistik
Darbe Enerji Sönümleme Mekanizmalarının incelenmesi, Savunma
Bilimleri Dergisi, 12, (2), 145-162. |
|
93.
Frame B.J., Hansen J.G.R., Fire Resistant Composite Materials
for Energy Absorption Applications, 47th International SAMPE
Symposium and Exhibition, May 12, 2002 - May 16, 2002, 542-555, 2002,
Long Beach, CA, United states. International SAMPE Symposium
and Exhibition (Proceedings), Soc. for the Advancement of Material
and Process Engineering. |
|
94.
Cheeseman B.A., Bogetti T.A., (2003), Ballistic Impact into
Fabric and Compliant Composite Laminates, Composite
Structures, 61, (1–2), 161-173. http://dx.doi.org/10.1016/S0263-8223(03)00029-1 |
|
95.
Behera B., Dash B., (2013), An Experimental Investigation into
Structure and Properties of 3d-Woven Aramid and PBO Fabrics, The
Journal of The Textile Institute, 104, (12), 1337-1344. http://dx.doi.org/10.1080/00405000.2013.805873 |
|
96.
Shin H.-S., Erlich D.C., Shockey D.A., (2003), Test for Measuring Cut
Resistance of Yarns, Journal of Materials Science, 38, (17), 3603-3610. http://dx.doi.org/10.1023/A:1025673213604 |
|
97. The Next Generation Super Fiber for Firefighter Ppe, http://www.toyobo-global.com/seihin/kc/pbo2/, Ağustos 2014 |
|
98.
Olakçıoğlu N., Ertekin G., Marmaralı A., (2014), Yüksek Performanslı
ipliklerden Üretilen Örme Kumaşların Mekanik Etkilere Karşı
Dayanımlarının İncelenmesi, 2014 (Cilt: 21), 95. |
|
99. Zylon, http://en.wikipedia.org/wiki/Zylon, Ağustos 2014
100.
Second Chance Body Armor to Replace Bulletproof Vests Containing Zylon,
http://news.softpedia.com/news/Second-
Chance-Body-Armor-to-Replace-Bulletproof-Vests-
Containing-Zylon-3592.shtml, Ağustos 2014 |
|
101.
Cunniff P.M., Auerbach M.A., (2003), High Performance" M5, Fiber
For Ballisic/Structural Composites, Entire Article, Published
Prior to Sep, 17. |
|
102.
Shockey D.A., Erlich D.C., Simons J.W., Lightweight Fragment
Barriers for Commercial Aircraft, Proceedings of the 18th
International Symposium on Ballistics, San Antonio, Texas, 1999. |
|
103.
Simons J., Erlich D., Shockey D., (2001), Finite Element Design Model
for Ballistic Response of Woven Fabrics, SRI International, 9. |
|
104. Helmer G., (2002), Military News, http://www. combatsim. com/cnews/arch1/cnews-arc361.htm, Eylül 2014 |
|
105.
(Auto123.com) A.c., (2013), F1: Max Chilton Saved by the Zylon
Visor in Germany,
http://www.auto123.com/en/racing-news/f1-max-chilton-
saved-by-the-zylon-visor-in-germany?artid=157666, Ağustos 2014 |
|
106.
For Those of You with a Taste for the Finer Things in Life, There Is
Kushitani, (2000), http://www.motorcycle.com/
products/kushitani-gpr-ii-2968.html, Ağustos 2014 |
|
107. Kushitani Zylon Jeans, (2006), http://www.advrider.com/forums/showthread.php?t=75066&page=7, Eylül 2014 |
|
108.
The World's Strongest and Lightest Outer Shell, (2014),
http://www.tencate.com/emea/Images/EN_MI918028-24336.pdf, Eylül 2014 |
|
109. Polybenzimidazole Fibers, http://en.wikipedia.org/wiki/ Polybenzimidazole_fiber, Ağustos 2014 |
|
110. La Corda-High Performance Fiber Strings, http://www. powercordz.com/lacorda-1/lacorda-Zylon-18-half-set, Ağustos 2014 |
|
111.
Babolat: Pure Power Zylon 360,
http://www.wabango.com/OnlineCatalog/displayitem?currentComponentID=46&offset=0&type=Tennis&mfg=Babolat,
Ağustos 2014 |
|
112.
Babolat Pure Control Zylon 360 Tennis Racquet Review,
http://www.tennis-warehouse.com/REVIEWS/BPCZ/BPCZReview.html, Ağustos
2014 |
|
113.
Adidas Adizero Pro Badminton Racket,
http://www.sweatband.com/adidas-adizero-pro-badminton-racket.html,
Ağustos 2014 |
|
114.
Zl/PBO Fiber Sanwei Yew Wood Gold Dragon L1 Table Tennis Blade / Ping
Pong Blade , 5 Plywood + 2 Zl Fiber Off,
http://www.aliexpress.com/item/ZL-PBO-Fiber-
SANWEI-Yew-Wood-Gold-Dragon-L1-Table-Tennis-
Blade-ping-pong-blade/958537029.html, Ağustos 2014 |
|
115. Kinetic Supreme, http://www.gotabletennis.com/Andro_Kinetic_Supreme_Zy lon_Kiso_Hinoki_OFF_p/10225100.htm, Ağustos 2014 |
|
116. , http://www.extremecarving.com/forum, Eylül 2014 |
|
117. Weiss D., (2002), Golf Equipment, http://www.worldgolf. com/products/zevo-driver.htm, Eylül 2014 |
|
118.
Sportex Zylon 3.0lb 12' 0" 2 Piece Carp Rod,
http://www.ebay.com/itm/SPORTEX-ZYLON-3-0lb-12-0-2-piece-Carp-Rod-/300555225650,
Eylül 2014 |
|
119. Kyudo, http://sagajet.com/leisure/cultural-pursuits/, Eylül 2014 |
|
120.
Mecit D., Ilgaz S., Duran D., Baúal D., Gülümser T.,
Tarakçıoğlu I., (2007), Teknik Tekstiller Ve Kullanım Alanları
(Bölüm 2), Tekstil ve Konfeksiyon, 17, (3), 154-161. |
|
121. Canbolat M.F., (2011), Parachute Industry & Its Dynamics, Tekstil Teknolojileri Elektronik Dergisi, 5, (1), 72-83. |
|
122.
, (2008),
http://clearstreamwood.com/WordPress/projects/200801-azure-njord-nh/azure-njord-laminating-the-inside-
with-zylon-and-s-glass, Ağustos 2014 |
|
123.
Nakadate M., Maekawa S., Kurose T., Kitada T.,
Investigation of Long Term Weathering Characteristics on High Strength
and Light Weight Envelope Material Zylon, 11th AIAA Aviation
Technology, Integration, and Operations (ATIO) Conference,
including the AIAA Balloon Systems Conference and 19th AIAA
Lighter-Than- Air Technology Conference 2011, September 20, 2011 -
September 22, 2011, 2011, Virginia Beach, VA, United states.
11th AIAA Aviation Technology, Integration,and Operations (ATIO)
Conference, including the AIAA Balloon Systems Conference and
19th AIAA Lighter-Than- Air Technology Conference, American
Institute of Aeronautics and Astronautics Inc. |
|
124.
Hall J.L., Pauken M.T., Kerzhanovich V.V., Walsh G.J., Fairbrother D.,
Shreves C., Lachenmeier T., Flight Test Results for Aerially
Deployed Mars Balloons, AIAA Balloon Systems Conference, 2007,
May 21, 2007 – May 24, 2007, 262-274, 2007, Williamsburg, VA, United
states. http://dx.doi.org/10.2514/6.2007-2626 |
|
125.
Seely L., Zimmerman M., McLaughlin J., (2004), The Use of Zylon
Fibers in Uldb Tendons, Advances in Space Research, 33, (10),
1736-1740. http://dx.doi.org/10.1016/j.asr.2003.07.046 |
|
126.
Kerzhanovich V.V., Cutts J.A., Cooper H.W., Hall J.L.,McDonald
B.A., Pauken M.T., White C.V., Yavrouian A.H., Castano A., Cathey
Jr H.M., Fairbrother D.A., Smith I.S., Shreves C.M., Lachenmeier T.,
Rainwater E., Smith M., (2004), Breakthrough in Mars Balloon
Technology, Advances in Space Research, 33, (10), 1836-1841. http://dx.doi.org/10.1016/j.asr.2003.05.023 |
|
127.
Bonkers & Knockoffs, (2004),
http://www.ybw.com/forums/showthread.php?38026-Motor-Sailer-Macgregor-26X/page7,
Eylül 2014 |
|
128. Yacth Fitters, http://yachtfitters.com/products/hampidjan/, Eylül 2014 |
|
129. http://www.ara.com/Projects/SVO/model.htm, |
130.
Ruredil X Mesh Gold: PBO (
Poliparafenilenbenzobisoxazolo) Mesh in a Stabilised Inorganic
Matrix for Flexural and Shear Strength Reinforcement of
Concrete, (2012), http://english.
ruredil.it/SchedeProdottoENG/RuredilXMeshGOLD_ing_1.pdf, Ağustos 2014 |
|
131.
Fallis G.J., (2009), International Concrete Abstracts Portal the
International Concrete Abstracts Portal Is an Aci Led Collaboration with
Leading Technical Organizations from within the International Concrete
Industry and Offers the Most Comprehensive Collection of Published
Concrete Abstracts. Title: Innovation for Renovation,
Concrete international, 31, (04), 62-64. |
|
132.
Ombres L., (2012), Debonding Analysis of Reinforced Concrete
Beams Strengthened with Fibre Reinforced Cementitious Mortar,
Engineering Fracture Mechanics, 81, (0), 94-109. http://dx.doi.org/10.1016/j.engfracmech.2011.06.012 |
|
133.
Paliga C., Real M., Campos Filho A., (2013), Numerical Analysis of
Reinforced Concrete Beams Strengthened with High Strength Cement-Based
Composite Material, Revista IBRACON de Estruturas e Materiais, 6, (2),
211-226. http://dx.doi.org/10.1590/S1983-41952013000200004 |
|
134.
Textile Reinforced Mortar Structural Strengthening Systems at Elevated
Temperature, http://trmstrengtheningsystems. weebly.com/frcm.html,
A÷ustos 2014 |
|
135.
Ultra High Mechanical Performance Polyparaphenylene Benzobisoxazole
(PBO) Fibre Mesh, with a Stabilised Inorganic Matrix, for
Structural Reinforcement of Concrete, (2006),
http://www.bob-fr.com/Doko/8cf032a0- ce97-4e8a-87f4-885dae215984.pdf,
Ağustos 2014 |
|
136.
PBO Reinforcing Mesh, http://www.archiproducts.com/en/
products/71449/pbo-reinforcing-mesh-ruregold-ruredil. html, Ağustos
2014 |
|
137.
Swenson C.A., Marshall W.S., Gavrilin A.V., Han K., Schillig J.,
Sims Jr J.R., Schneider-Muntau H.J., (2004), Progress of the Insert
Coil for the Us-Nhmfl 100 T Multi-Shot Pulse Magnet, Physica B:
Condensed Matter, 346–347, (0), 561-565. http://dx.doi.org/10.1016/j.physb.2004.01.082 |
|
138.
Rosseel K., Herlach F., Boon W., Bruynseraede Y., (2001),
Zylon-Reinforced High Magnetic Field Coils for the K.U. Leuven Pulsed
Field Laboratory, Physica B: Condensed Matter, 294-295, 657-660. http://dx.doi.org/10.1016/S0921-4526(00)00738-9 |
|
139.
Zherlitsyn S., Bianchi A.D., Herrmannsdoerfer T., Pobell F., Skourski
Y., Sytcheva A., Zvyagin S., Wosnitza J., (2006), Coil Design for
Non-Destructive Pulsed-Field Magnets Targeting 100 T, Applied
Superconductivity, IEEE Transactions on, 16, (2), 1660-1663. |
|
140.
Herlach F., Peng T., Vanacken J., Elements of Pulsed Magnet Design,
Journal of Physics: Conference Series, 599, 2006. vol 1, IOP Publishing. |
|
141. Biwako-Roll®, http://www.toho-yogyo.co.jp/biwako_e.html, Eylül 2014 |
|
142. PBO Rollers, http://www.northerninnovations.net/about.html, Eylül 2014 |
|
143.
Matsuo T., (2001), Overview and Trend of Technical Textile Technologies
in Japan, International Textile Bulletin: Nonwovens, Industrial
Textiles, 47, (1), 46-48. |
|
144.
Tamargo-MartÃnez K., Villar-Rodil S., Paredes J.I., MartÃnez-Alonso A.,
Tascón J.M., Montes-Morán M.A.,(2003), Surface Characterization of PBO
Fibers, Macromolecules, 36, (23), 8662-8672. http://dx.doi.org/10.1021/ma034522l |
|
145.
Chen L., Hu Z., Liu L., Huang Y., (2013), A Facile Method to Prepare
Multifunctional PBO Fibers: Simultaneously Enhanced Interfacial
Properties and Uv Resistance, RSC Advances, 3, (46), 24664-24670. http://dx.doi.org/10.1039/c3ra44876b |
|
146.
Liu D., Hu J., Zhao Y., Zhou X., Ning P., Wang Y., (2006), Surface
Modification of PBO Fibers by Argon Plasma and Argon Plasma Combined
with Coupling Agents, Journal of Applied Polymer Science, 102, (2),
1428-1435. http://dx.doi.org/10.1002/app.24287 |
|
147.
Zhang C.H., Huang Y.D., Zhao Y.D., (2005), Surface Analysis of -Ray
Irradiation Modified PBO Fiber, Materials Chemistry and Physics, 92,
(1), 245-250. http://dx.doi.org/10.1016/j.matchemphys.2005.01.025 |
|
148.
Wu Z., Iwashita K., Hayashi K., Higuchi T., Murakami S., Koseki Y.,
(2003), Strengthening Prestressed-Concrete Girders with Externally
Prestressed PBO Fiber Reinforced Polymer Sheets, Journal of reinforced
plastics and composites, 22, (14), 1269-1286. http://dx.doi.org/10.1177/0731684403035572 |
|
149.
Zhang C.H., Huang Y.D., Yuan W.J., Zhang J.N., (2011), Uv Aging
Resistance Properties of PBO
References
1. History of Body Armor, http://www.leonuniform.com/BodyArmor_History.htm, Erişim tarihi: 06.03.2014 |
|
2. Henderson, J., (2008), Ballistic Body Armor Protecting The Protectors, Strategic Standardization, 0-18p. |
|
3.
Bajaj, Pushpa, Sriram, (1997), Ballistic Protective Clothing: An
Overview, Indian Journal of Fibre & Textile Research, Vol. 22,
Decembre, pp 274-291 |
|
4. Sgt. Stanley Muszynski, (2004), Body Armor, Eastern Michigan University, School of Staff and Command. |
|
5.
Chen, X., Sun, D., Wang, Y., Zhou, Y., (2012), 2D/3D Woven Fabrics for
Ballistic Protection, School of Materials, University of Manchester. |
|
6.
Cerit, A.A., (2004), Partikül ve Fiber Takviyeli Alüminyum Matrisli
Kompozitin Balistik Performansının İncelenmesi, Erciyes Üniversitesi,
Fen Bilimleri Enstitüsü, Mühendislik Fakültesi, Makine Mühendisliği
Anabilim Dal, Yüksek Lisans Tezi, Kayseri. |
|
7.
Akman, Y., (2012), Eskitmeye Tabi Tutulan Kompozit Başlıkların Balistik
Testlerinin Yapılması ve Analizi, Balıkesir Üniversitesi, Fen Bilimleri
Enstitüsü, Mühendislik Fakültesi, Makina Mühendisliği Anabilim Dalı,
Yüksek Lisans Tezi, Bal kesir. |
|
8.
Çay, A., Süpüren, G., Kanat, Z.E., Gülümser, T. ve Tarakçıoğlu, I.,
(2007), Balistik Lifler (Bölüm 1), Tekstil Ve Konfeksiyon, Sayı:4, 232-
236p. |
|
9.
Balistik Çalışmalarda Kullanılan Hammadde Ve Kompozitler,
http://www.acarerugur.com/FileUpload/op
325540/File/balistik__calismalarda__kullanilan__hammadde__ve__kompositler.pdf,
Erişim Tarihi: 13.05.2014. |
|
10. Turan, M., (2007), Tabakal Kompozit Malzemelerde Yüksek Hızlı Darbe Hasarı, Mühendis ve Makina, Cilt: 48, Sayı:575, 3- 8s. |
|
11.
Karakan, G., (2009), Teknik Tekstillerin Koruyucu Yapılarda Kullanımı,
Tekstil Teknolojileri Elektronik Dergisi, Cilt:3 No:1, 65-70s. |
|
12.
Çerkez, İ. ve Ulcay, Y., (2007), Kolloidal Silika Dispersiyonunun
Polietilen Dokusuz Yüzeyin Enerji Absorbsiyonuna Olan Etkisi, Uludağ
Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, Cilt 12, Sayı 2,
71-84s. |
|
13.
Işık, H., Değirmenci, E. ve Evci, C., (2013), Örgülü Kumaşların
Balistik Darbe Enerji Sönümleme Mekanizmalarının İncelenmesi, Savunma
Bilimleri Dergisi, Cilt: 12, Sayı: 2, 145-162s. |
|
14. http://www.auxetix.com/defence.htm, Erişim tarihi:06.04.2014. |
|
15.
Zetix Blast Resistant Fabric Has Other Uses,
http://www.technovelgy.com/ct/Science-Fiction-News.asp?NewsNum=1340,
Erişim tarihi: 06.04.2014. |
|
16.
Karakan, G., (2008), Yüksek Performanslı Liflerin Balistik Amaçlı
Kullanımı, Tekstil Teknolojileri Elektronik Dergisi, Cilt: 2, Sayı: 2,
67-73s. |
|
17.
Ataman, A., (2013), İşlenmiş Ti-Bazlı Alaşımlarda Gözlenen Hatalar ve
Bu Hataların Azaltılması için İşlem Parametrelerinin Geliştirilmesi,
Proje Fuarı 2013,
Eskişehir,http://mf.anadolu.edu.tr/sites/mf.anadolu.edu.tr/files/files/mlz.pdf. |
|
18.
Özşahin, E. ve Tolun, S., (2010), Yüzey Kaplaması ve Destek Katman
İlavesinin Alüminyum Levhaların Balistik Performansına Etkileri,
Havacılık Ve Uzay Teknolojileri Dergisi, Cilt:4, Sayı:4, 41-50s. |
|
19.
Özşahin, E. ve Tolun, S., (2009), Polietilen Destekli AA 7075 T651
Levhalarda Katman Sıralamasının Balistik Dayanıma Etkisi, İTÜ DERGİSİ/d,
Cilt: 8, Sayı: 2, 72-80s. |
|
20.
Akman, Y., Candan, C., Akdaş, D., Demircioğlu, T.K. ve Pekdur, Ö.,
(2012), Para-aramid Malzeme Kullanılarak Üretilmiş Kompozit Zırh
Tabakasının Üzerinden Kademeli Olarak Talaş Kaldırmanın Terminal
Balistik Performansta Meydana Getirdiği Değişimin İncelenmesi, 14th
International Materials Symposium (IMSP'2012), 944-952s, 10-12 October
2012, Pamukkale University, Denizli, |
|
21. Bilişik, A., (1997), Property-Structure Relations at Ballistic Fabrics, Tekstil ve Konfeksiyon, Cilt:14, 220-222p. |
|
22.
Cheeseman, B.A., Bogetti, T.A., (2003), Balistic Impact into Fabric and
Compliant Composite Laminates, Composite Structure, 61, 161-173p. http://dx.doi.org/10.1016/S0263-8223(03)00029-1 |
|
23.
Temiz, S., (2005), Balistik Kumaş ve Test Yöntemleri Üzerine Bir
Araştırma, Dokuz Eylül Üniversitesi, Fen Bilimler Enstitüsü, Mühendislik
Fakültesi, Tekstil Mühendisliği Anabilim Dalı, Yüksek Lisans Tezi,
zmir. |
|
24.
Bogdan, A., Marszalek, A., Majchrzycka, K., Brochocka, A., Luczak, A.,
(2012), Aspects of Applying Ergonomic Tests in The Evaluation of
Ballistic Body Armours Using the Example of Ballistic Vests, Textile
Science & Engineering, Volume 2, Issue 7, 2-7p. |
|
25.
Çerkez, İ., (2007b), Kolloidal Silika Dispersiyonunun Polietilen
Kumaşların Balistik Performansına Etkisi, Uludağ Üniversitesi, Fen
Bilimleri Enstitüsü, Mühendislik Fakültesi, Tekstil Mühendisliği
Anabilim Dal, Yüksek Lisans Tezi, Bursa. |
|
26.
Naik, N.K., Shrirao, P., Reddy, B.C.K., (2006), Ballistic impact
behaviour of woven fabric composites: Formulation, International Journal
of Impact Engineering 32,1521–1552p. http://dx.doi.org/10.1016/j.ijimpeng.2005.01.004 |
|
27.
Grujicic, M., Glomski, P.S., He T., Arakere, G., Bell, W.C. and
Cheeseman, B.A., (2009), Material Modeling and Ballistic-Resistance
Analysis of Armor-Grade Composites Reinforced with High-Performance
Fibers, Journal of Materials Engineering and Performance, Volume 18(9),
1169-1182p. http://dx.doi.org/10.1007/s11665-009-9370-5 |
|
28.
Hazell, P.J. and Appleby, G., (2009), A Study on the Energy Dissipation
of Several Different CFRP-Based Targets Completely Penetrated by a High
Velocity Projectile, Composite Structures, 91, 103-109p. http://dx.doi.org/10.1016/j.compstruct.2009.04.036 |
|
29.
Özer, S., (2004), Balistik Koruma Amacıyla Kullanılan Malzemeler ve bu
Malzemelerin Balistik Deformasyonuna Etki Eden Faktörler, Yıldız Teknik
Üniversitesi, Fen Bilimleri Enstitüsü, Mühendislik Fakültesi, Makine
Mühendisliği Anabilim Dalı, Yüksek Lisans Tezi, İstanbul. |
|
30.
Korkmaz, M., (2009), Aramid Kumaş Özelliklerine Bağlı İplik Çekme (Yarn
Pull-Out) Testi İle Çok Katlı Dikişli Yapıların Balistik Performansının
Deneysel Belirlenmesi, Erciyes Üniversitesi, Fen Bilimleri Enstitüsü,
Mühendislik Fakültesi, Tekstil Mühendisliği Anabilim Dal, Kayseri. |
|
31. Military, http://www.globalsecurity.org/military/systems/munitions/bullets.htm, Erişim tarihi: 15.04.2014. |
|
32.
Performance Standards for Ballistic Resistance of Body Armor,
http://www.nitracoeprotech.org/pdf/June2013Bullet Testing.pdf, Erişim
tarihi: 06.04.2014. |
|
33. TS 11164 - Balistik koruyucu vücut zırhı. |
|
34. TS 13349 - Askerî zırhlar - V50 balistik hız deneyi |
|
35.
Candan, C., 2007, Hafif Silahlara Karşı Preslenerek ve Preslenmeden
Üretilen Yüksek Yoğunluklu Polietilen (UHMW-PE) Zırh Plakalarının
Terminal Balistik Özelliklerinin İncelenmesi, 8. Uluslar Arası Kırılma
Konferansı Bildiriler Kitabı, 7 – 9 Kasım 2007, İstanbul. |
|
36. NIJ-STD-0101.04 - Ballistic Resistance of Personal Body Armor. |
|
37. NIJ Standard-01.01.06 - Ballistic Resistance of Personal Body Armor. |
|
38.
Yılmaz, H., (2012), Üç Fazlı Elyaf Tabakalı Karma Kompozit Yapının
Balistik Özelliklerinin İncelenmesi, Süleyman Demirel Üniversitesi,
Mühendislik Fakültesi, Fen Bilimleri Enstitüsü, Makine Mühendisliği
Anabilim Dalı,Doktora Tezi, Isparta. |
|
39.
Rice. K., (2011), Ballistic-Resistant Body Armor Selected Research
Initiatives Body Armor Workshop, November 29, National Institute of
Standards and Technology (NIST) Gaithersburg, Maryland |
|
40.
The NEW Body Armor Standard from NIJ: The FOP Perspective,
http://www.fop.net/legislative/BodyArmor Standard.pdf, Erişim tarihi:
19.05.2014. |
|
41.
Erdem, M., Türker, M., (2011), 7039 Alüminyum Alaşımının Kaynak Öncesi
ve Sonrası Mekanik ve Balistik Özelliklerinin Araştırılması, Gazi
Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, Cilt 26, No 1,
17-26s. |
|
42.
Aly, S.Y. and Li, Q.M., (2008), Critical Impact Energy for the
Perforation of Metallic Plates, Nuclear Engineering and Design, Volume
238, Issue 10, October 2008, 2521–2528p. http://dx.doi.org/10.1016/j.nucengdes.2008.04.006 |
|
43. Zukas, A.J., (1992), Impact Dynamics, Kringer Publishing Comp., Florida, 155-214p. |
|
44.
Karagöz, Ş., Atapek, Ş.H. ve Yılmaz, A., (2010), Su Verilmiş ve
Temperlenmiş Beynitik Bir Zırh Çeliğinin Balistik Davranışı: Hasar
Üzerine Modelleme ve İncelemeler, Savunma teknolojileri dergisi, Sayı:
053, 62-66s. |
|
45.
International Standards for Personal Armor,
http://www.bodyarmornews.com/wp-content/uploads/2013/10/DSM_Ballistic_
Standard.pdf, Eri im Tarihi:15.05.2014. |
|
46.
Barauskas, R. and Abreitiene, A., (2007), Computational Analysis of
Impact of a Bullet Agfainst the Multilayer Fabrics in LS-DYNA,
International Journal of Impact Engineering, 34, 1286–1305p. http://dx.doi.org/10.1016/j.ijimpeng.2006.06.002 |
|
47.
Novotny, W.R., Cepuš, E., Shahkarami, A., Vaziri, R., Poursartip, A.,
(2007), Numerical Investigation of the Ballistic Efficiency of Multi-Ply
Fabric Armours During the Early Stages of Impact, Internetional Journal
Impact Engineering, 34, 71-78p. http://dx.doi.org/10.1016/j.ijimpeng.2006.07.001 |
|
48.
Roylance, D., Chammas, P., Ting, J., Chi, H. and Scott, B., (1995),
Numerical Modeling of Fabric Impact, Procedings of the National Meeting
of the American Society of Mechanical Engineers (ASME), San Francisco. |
|
Journal of Textiles and Engineer - Copyright © 2012 |
| | |