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NTIS 바로가기Textile research journal : publication of Textile Research Institute, Inc. and the Textile Foundation, v.80 no.17, 2010년, pp.1759 - 1767
Hong Wang, (Key Laboratory of Textile Science & Technology, Ministry of Education, Donghua University, 201620, China,) , Xiangyu Jin, (Key Laboratory of Textile Science & Technology, Ministry of Education, Donghua University, 201620, China) , Ningtao Mao, (Centre for Technical Textiles, University of Leeds, Leeds LS2 9JT, UK) , Russell, S.J. (Centre for Technical Textiles, University of Leeds, Leeds LS2 9JT, UK)
The tensile failure mechanism in thermally point-bonded bicomponent spunbonds is elucidated based on core/sheath PP/PE filaments. These fabrics exhibit high extension and low tensile strength. In contrast to 100% PP spunbonds, where there is limited bond deformation prior to failure of the fabric, ...
Polymer-laid web formation, in "Handbook of Nonwovens" Bhat, G.S. 2007
"Handbook of Nonwoven Filter Media" Hutten, I.M. 1 2007
Genis, A. V., Usov, V. V., Razboeva, V. N.. Status of production and use of polypropylene spunbond in Russia and abroad. Fibre chemistry, vol.39, no.1, 1-6.
Shi, X.Q., Ito, H., Kikutani, T.. Structure development and properties of high-speed melt spun poly(butylene terephthalate)/poly(butylene adipate-co-terephthalate) bicomponent fibers. Polymer, vol.47, no.2, 611-616.
Hada, Yoshiaki, Shikuma, Haruo, Ito, Hiroshi, Kikutani, Takeshi. High‐Speed Melt Spinning of Syndiotactic‐Polystyrene; Improvement of Spinnability and Fiber Structure Development Via Bicomponent Spinning with Atactic‐Polystyrene. Journal of macromolecular science. Part B : Physics, vol.44, no.4, 549-571.
El-Salmawy, Ahmed, Miyamoto, Masatoshi, Kimura, Yoshiharu. Preparing a Core-Sheath Bicomponent Fiber of Poly(butylene Terephthalate)/Poly(butylene Succinate-co-L-lactate). Textile research journal : publication of Textile Research Institute, Inc. and the Textile Foundation, vol.70, no.11, 1011-1018.
Tech. Text You, J. 12 7 2007
Michielsen, Stephen, Pourdeyhimi, Behnam, Desai, Prashant. Review of thermally point-bonded nonwovens: Materials, processes, and properties. Journal of applied polymer science, vol.99, no.5, 2489-2496.
J. Eng. Fibers Fabr Fedorova, N. 38 2 1 2007
Bhat, Gajanan S., Malkan, Sanjiv R.. Extruded continuous filament nonwovens: Advances in scientific aspects. Journal of applied polymer science, vol.83, no.3, 572-585.
Int. Nonwovens J Chidambaram, A. 27 9 3 2000
Textile Sci. Technol Yang, G. 12 34 5 2006
Winchester, S.C., Whitwell, J.C.. Studies of Nonwovens : Part I : A Multivariable Approach. Textile research journal : publication of Textile Research Institute, Inc. and the Textile Foundation, vol.40, no.5, 458-471.
Bhat, Gajanan S., Jangala, Praveen K., Spruiell, Joseph E.. Thermal bonding of polypropylene nonwovens: Effect of bonding variables on the structure and properties of the fabrics. Journal of applied polymer science, vol.92, no.6, 3593-3600.
Souza, A.M.C., Demarquette, N.R.. Influence of coalescence and interfacial tension on the morphology of PP/HDPE compatibilized blends. Polymer, vol.43, no.14, 3959-3967.
Yuan, B.‐L., Wool, Richard P.. Strength development at incompatible semicrystalline polymer interfaces. Polymer engineering and science, vol.30, no.22, 1454-1464.
Kim, H.S., Pourdeyhimi, B., Abhiraman, A.S., Desai, P.. Effect of Bonding Temperature on Load-Deformation Structural Changes in Point-Bonded Nonwoven Fabrics. Textile research journal : publication of Textile Research Institute, Inc. and the Textile Foundation, vol.72, no.7, 645-653.
Xueqin Wang,, Michielsen, Stephen. Morphology Gradients in Thermally Point-Bonded Poly(ethylene Terephthalate) Nonwovens. Textile research journal : publication of Textile Research Institute, Inc. and the Textile Foundation, vol.72, no.5, 394-398.
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