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Titlebook: High-Performance and Specialty Fibers; Concepts, Technology Japan The Society of Fiber Science and Techno Book 2016 Springer Japan 2016 Dyn

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Microscopically Viewed Relationship Between Structure and Mechanical Property of Crystalline PolymerRaman band shift caused by the application of tensile stress are measured to detect the mechanical deformation of crystalline region, but the data analysis must be performed by taking the heterogeneous distribution into account. The quantum mechanical prediction of the ultimate strength of polymer c
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Dyneema®: Super Fiber Produced by the Gel Spinning of a Flexible Polymertions of Dyneema. are presented. Especially, the reasons, why we can achieve the superior mechanical properties of the UHMWPE fibers with the gel-spinning method, are described by focusing on the microstructures of the fibers.
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Overview of Functional and Speciality Fibersthat consist of the trinity of polymer, fiber and yarn, and post-processing modifications, together with biomimetic approaches, to learn the structure and functions of living organisms in the natural world. In this chapter, the key production technologies of functional and speciality fibers are pres
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Moisture and Water Control Man-Made Fibers have been developed and used for sports and inner wears. Specifically, perspiration-absorbent and quick-drying materials, polyacrylate fibers which have 3.5 times larger moisture absorption ability than that of cotton, man-made fibers with improved moisture-absorbing and moisture-releasing abilitie
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Heat-Controllable Man-Made Fibers temperature change to keep the temperature within clothing constant using the heat energy of phase-change materials. The important policies to enhance the thermal retention ability are explained by specific examples of newly developed materials by some companies.
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