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首页> 外文期刊>International Journal of Polymeric Materials >Investigation of Properties of Polymer/Textile Fiber Composites
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Investigation of Properties of Polymer/Textile Fiber Composites

机译:聚合物/纺织纤维复合材料的性能研究

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摘要

Polymer-based composite structures have advantages over other materials. The most important advantage is the higher mechanical properties obtained from the composites when supported by fiber reinforcement. The mechanical and thermal properties of fiber-reinforced composite structures are affected by the amount of fibers in the structures, orientation of the fiber and fiber length. Silk and cotton fibers are used in many fields but especially in clothing and textiles. However, there is not enough research on their usage as reinforcement fibers in composite structures. Silk fibers as a textile material have better physical and mechanic properties than other animal fibers. It is very important that the improvement of the mechanical and physical properties of the composite structures allows them to be used in many areas. From economical, technological and environmental points of view, the improved the mechanical and physical properties of polymeric materials are receiving much attention in the recent studies. In this study, various lengths (1mm-2.5mm and 5 mm) of waste silk and waste cotton fibers were added to high-density polyethylene (HDPE) and polypropylene (PP) polymer in the mixing ratios of (polymenfiber) 100%:0%, 97%:3%, and 94%:6% to produce composite structures. On the other hand, known lengths (1-2.5-5 mm) of waste silk and waste cotton fibers were added to recycled polyamide-6 (PA6) and polycarbonate (PC) polymers in mixing quantities of 100%-0%, 97%-3%. A twin-screw extruder was employed for the production of composites. Tensile strength, % elongation, yield strength, elasticity modulus, Izod impact strength, melt flow index (MFI), heat deflection temperature (HDT), and Vicat softening temperature properties were determined. In order to determine the materials' thermal transition and microstrueture properties, differential scanning calorimetry (DSC) and scanning electron microscopy (SEM) were used. Results have shown that cotton and silk fibers behave differently than in the composite structure. Waste silk fiber composites give better mechanical properties than waste cotton fiber.
机译:聚合物基复合材料结构优于其他材料。最重要的优点是在纤维增强的支持下,复合材料具有更高的机械性能。纤维增强复合结构的机械和热性能受结构中纤维数量,纤维取向和纤维长度的影响。丝绸和棉纤维被用于许多领域,但特别是在服装和纺织品中。但是,对其在复合结构中用作增强纤维的用途的研究不足。蚕丝纤维作为纺织材料比其他动物纤维具有更好的物理和机械性能。非常重要的是,复合结构的机械和物理性能的改善使其可以在许多领域中使用。从经济,技术和环境的角度来看,聚合物材料的机械和物理性能的改善在最近的研究中受到了广泛的关注。在这项研究中,将各种长度(1mm-2.5mm和5mm)的废丝和废棉纤维添加到高密度聚乙烯(HDPE)和聚丙烯(PP)聚合物中,混合比例为(polymenfiber)100%:0 %,97%:3%和94%:6%来生产复合结构。另一方面,将已知长度(1-2.5-5毫米)的废丝和废棉纤维添加到回收的聚酰胺6(PA6)和聚碳酸酯(PC)聚合物中,混合量为100%-0%,97% -3%。使用双螺杆挤出机生产复合材料。测定拉伸强度,伸长率%,屈服强度,弹性模量,悬臂梁式冲击强度,熔体流动指数(MFI),热变形温度(HDT)和维卡软化温度性质。为了确定材料的热转变和微观结构性质,使用了差示扫描量热法(DSC)和扫描电子显微镜(SEM)。结果表明,棉和丝纤维的行为与复合结构不同。废丝纤维复合材料比废棉纤维具有更好的机械性能。

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