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首页> 外文期刊>Journal of Polymer Research >Structure and mechanical behaviors of thermoplastic polyurethane thin film coated polyamide 6 fibers part II. A solution coating method
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Structure and mechanical behaviors of thermoplastic polyurethane thin film coated polyamide 6 fibers part II. A solution coating method

机译:热塑性聚氨酯薄膜涂覆的聚酰胺6纤维的结构和力学性能,第二部分。溶液涂布法

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摘要

Thermoplastic polyurethane thin film (TPU) coated PA6 fibers were prepared by dipping fibers into a TPU solution. The thickness of the thin film coating was 20 μ m. A series of polymer glycols which include polycarbonate, polyether and polyester were used for the preparation of the TPU. Both tensile strength and elongation at break of the TPU coated fibers increased although both magnitudes of the TPUs are much lower than for the original PA6 fibers. Also there was a significant improvement in the abrasion resistance TPU coated PA6 fibers. The PA6 fibers are prone to micro-cracks when under mechanical stress but the TPU thin film coating delayed the formation of the micro-cracks, thereby improving the mechanical properties of PA6 fibers. The theoretical investigation on the effect of interface interaction region using the viscous flow model described could clearly explain the effect of the same on the mechanical performance of TPU coated PA6 fibers.
机译:热塑性聚氨酯薄膜(TPU)涂层的PA6纤维是通过将纤维浸入TPU溶液中制备的。薄膜涂层的厚度为20μm。包括聚碳酸酯,聚醚和聚酯的一系列聚合物二醇用于制备TPU。 TPU涂层纤维的抗张强度和断裂伸长率均增加,尽管两个TPU的幅度均远低于原始PA6纤维。 TPU涂层的PA6耐磨性也得到了显着改善。当在机械应力下,PA6纤维容易产生微裂纹,但是TPU薄膜涂层延迟了微裂纹的形成,从而改善了PA6纤维的机械性能。使用所描述的粘性流模型对界面相互作用区域的影响进行理论研究,可以清楚地说明界面相互作用区域对TPU包覆的PA6纤维的机械性能的影响。

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