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首页> 外文期刊>Journal of Polymers and the Environment >Molding Method, Thermal and Mechanical Properties of Jute/PLA Injection Molding
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Molding Method, Thermal and Mechanical Properties of Jute/PLA Injection Molding

机译:黄麻/ PLA注射成型的成型方法,热力学性能

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摘要

Natural composites have been important materials system due to preservation of earth environments. Natural fibers such as jute, hemp, bagasse and so on are very good candidate of natural composites as reinforcements. On the other hand regarding matrix parts thermosetting polymer and thermoplastic polymer deliver form petrochemical products are not environmental friendly material, even if thermoplastic polymer can be recycled. In order to create fully environmental friendly material (FEFM) biodegradable polymer which can be deliver from natural resources is needed. Therefore poly(lactic acid) (PLA) polymer is very good material for the FEFM. In this paper jute fiber filled PLA resin (jute/PLA) composites was fabricated by injection moldings and mechanical properties were measured. It is believable that industries will have much attention to FEFM, so that injection molding was adopted to fabricate the composites. Long fiber pellet fabricated by pultrusion technique was adopted to prepare jute/PLA pellet. Because it is able to fabricate composite pellets with relative long length fibers for injection molding process, where, jute yarns were continuously pulled and coated with PLA resin. Here two kinds of PLA materials were used including the one with mold releasing agent and the other without it. After pass through a heated die whereby PLA resin impregnates into the jute yarns and sufficient cooling, the impregnated jute yarns were cut into pellets. Then jute/PLA pellets were fed into injection machine to make dumbbell shape specimens. In current study, the effects of temperature of PLA melting temperature i.e. impregnation temperature and the kinds of PLA were focused to get optimum molding condition. The volume fractions of jute fiber in pellet were measured by several measuring method including image analyzing, density measurement and dissolution methods. Additionally, thermal and mechanical properties were investigated. It is found that 250° is much suitable for jute/ PLA long fiber pultrusion process because of its less heat degradation of jute, better impregnation, acceptable mechanical property and higher production efficiency. Additionally the jute fibers seem much effective to increase deflection temperature under load, tensile modulus and Izod strength.
机译:由于保护地球环境,天然复合材料已成为重要的材料系统。天然纤维,例如黄麻,大麻,甘蔗渣等,是天然复合材料增强材料的很好选择。另一方面,就基体零件而言,即使可回收热塑性聚合物,从石化产品中交付的热固性聚合物和热塑性聚合物也不是环保材料。为了产生完全环保的材料(FEFM),需要可从自然资源中提取的可生物降解的聚合物。因此,聚乳酸(PLA)聚合物对于FEFM是非常好的材料。本文通过注射成型制备了黄麻纤维填充的PLA树脂(黄麻/ PLA)复合材料,并测量了其机械性能。可以相信,工业将对FEFM给予极大的关注,因此采用注塑成型法来制造复合材料。采用拉挤成型工艺制备的长纤维粒料制备黄麻/ PLA粒料。因为它能够制造具有相对较长长度的纤维的复合颗粒,用于注塑成型工艺,所以黄麻纱线会被连续牵拉并涂上PLA树脂。这里使用了两种PLA材料,一种是带有脱模剂的材料,另一种是没有脱模剂的材料。通过加热的模头,使PLA树脂浸入黄麻纱并充分冷却后,将浸渗的黄麻纱切成粒料。然后将黄麻/ PLA粒料送入注射机中,制成哑铃状样品。在当前的研究中,着重研究了PLA熔融温度(即浸渍温度)和PLA种类的影响,以获得最佳的成型条件。粒料中黄麻纤维的体积分数通过几种测量方法进行测量,包括图像分析,密度测量和溶解方法。另外,研究了热和机械性能。发现250°非常适合黄麻/ PLA长纤维拉挤成型工艺,因为它对黄麻的热降解较小,浸渍效果更好,可接受的机械性能和更高的生产效率。另外,黄麻纤维似乎在增加载荷,拉伸模量和悬臂梁强度下的挠曲温度方面非常有效。

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