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首页> 外文期刊>Journal of Applied Polymer Science >Comfort, Chemical, Mechanical, and Structural Properties of Natural and Synthetic Leathers Used for Apparel
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Comfort, Chemical, Mechanical, and Structural Properties of Natural and Synthetic Leathers Used for Apparel

机译:服装用天然皮革和合成皮革的舒适度,化学,机械和结构性能

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摘要

Natural leather is processed from hides and skins of animals. Synthetic leathers are becoming popular as an alternative material owing to limited availability and varying size of natural leathers. There is a need to understand the properties of natural and synthetic leathers to select proper material for an application. In this study, materials used for apparel application such as natural sheep nappy leather and synthetic polyurethane (PU)-based leather have been chosen and analyzed for comfort, chemical, physical, and structural properties. It was found that natural sheep nappa leather has enhanced water vapor permeability whereas other comfort properties such as softness and drape ability are comparable to synthetic PU leather. Whereas synthetic PU leather dominated most of the physical properties, especially percentage elongation and stitch tear strength, in specific directions on account of polyester knitted base fabric. Chemical properties of natural sheep nappa leather and synthetic PU leather depended on the individual material composition and characteristics. Scanning electron microscopic (SEM) analysis provided convincing evidence for some of the quantified comfort and physical properties. The results of this study would be useful in selection of proper material for apparel application as well as in providing directions for future research in synthetic leather manufacture.
机译:天然皮革是用动物的皮和毛皮制成的。由于天然皮革的有限供应和尺寸的变化,合成皮革正成为替代材料的流行。需要了解天然皮革和合成皮革的特性,以便为应用选择合适的材料。在这项研究中,已经选择并分析了用于服装应用的材料,例如天然羊尿布和合成聚氨酯(PU)基皮革,并对其舒适性,化学,物理和结构特性进行了分析。发现天然绵羊纳帕革具有增强的水蒸气渗透性,而其他舒适性如柔软性和悬垂性可与合成PU皮革相比。然而,由于聚酯编织底布,在特定方向上合成PU皮革占大多数物理性能,尤其是伸长率和缝线撕裂强度的百分比最高。天然绵羊纳帕革和合成PU革的化学性质取决于各自的材料组成和特性。扫描电子显微镜(SEM)分析为某些量化的舒适度和物理性能提供了令人信服的证据。这项研究的结果将有助于选择适合服装应用的材料,并为合成革制造的未来研究提供指导。

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