Kevlar® 复合材料的平面内机械特性分析

Fibers Pub Date : 2024-04-25 DOI:10.3390/fib12050038
Rene Alejandro Canceco de la Cruz, Caleb Carreño Gallardo, Alberto Díaz Díaz, Luis Adrian Zuñiga Aviles, Gabriel Plascencia Barrera, Jose Martin Herrera Ramirez
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引用次数: 0

摘要

聚合物基复合材料广泛应用于汽车、安全、航空和航天等行业。这是因为它们具有良好的机械性能,与金属相似,但重量更轻。Kevlar® 因其良好的弹道特性而被广泛用作安全行业的加固材料。本研究利用通用测试系统对 Kevlar® 29/酚醛树脂与聚乙烯醇缩丁醛复合材料进行平面内准静态拉伸测试,从而对其机械特性进行分析。制备试样的方法基于压力、温度和时间。结果获得了弹性模量(EL 和 ET)、泊松比(νLT)、剪切模量(GLT)和强度(XT、YT、S)。值得一提的是,文献中很少或根本没有对这种材料进行表征,而那些对其进行表征的研究也没有介绍试样的热成型条件或试样尺寸(宽度、长度和厚度)的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-Plane Mechanical Characterization of a Kevlar® Composite
Polymer-based composites are widely used in the automotive, security, aeronautical and space industries, to mention a few. This is because of their good mechanical properties, which are similar to those of metals but with the attraction of being lightweight. Kevlar® is extensively used as a reinforcement in the security industry owing to its good ballistic properties. This investigation presents a mechanical characterization based on in-plane quasi-static tensile testing of Kevlar® 29/phenolic resin with a polyvinyl butyral composite using a universal testing system. The methodology developed for the preparation of the coupons is based on pressure, temperature and time. As a result of this work, elastic moduli (EL and ET), Poisson’s ratio (νLT), shear modulus (GLT) and strengths (XT, YT, S) were obtained. It is worth mentioning that there is scarce or no characterization of this material in the literature, and those studies that do characterize it do not present the coupons’ thermoforming conditions or the reasons for the coupons’ dimensions (width, length and thickness).
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