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Effect of impact velocity and impactor mass on the low velocity impact response of liquid molding vinyl ester-350 resin and fiber-reinforced plaques

机译:冲击速度和冲击质量对液态模压乙烯基酯-350树脂和纤维增强板的低速冲击响应的影响

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The influence of test conditions on the low velocity impact (LVI response and damage evolution in neat resin plaques was investigated and documented. Specifically, the effect of impactor mass, velocity, and corresponding impact energy on the LVI response and damage evolution unreinforced DERAKANE vinyl ester 411-350-resin system was studied. An instrumented drop weigh test machine was used to conduct the low velocity impact tests. The room temperature response of the material to impact loading and damage evolution was investigated using the impact load histories, impact plots and fractography analysis. This study is built upon previous work by the authors on LVI of neat resin systems, particularly those that have e merged as a new class of resins in liquid molding process. The study was motivated by the need for data and understanding of the failure characteristics of the individual constituents of a composite material such as in modeling of damage propagation and failure criteria analysis.
机译:研究并记录了测试条件对低速冲击(LVI响应和纯树脂斑块中的损伤演变)的影响,特别是冲击器质量,速度和相应的冲击能量对未增强的DERAKANE乙烯基酯的LVI响应和损伤演变的影响对411-350树脂系统进行了研究,使用仪器跌落称重试验机进行了低速冲击试验,利用冲击载荷的历史,冲击图和断口图,研究了材料在室温下对冲击载荷和损伤演变的响应。这项研究是建立在作者以前对纯树脂体系的LVI(特别是那些已在液态成型过程中合并为一类新型树脂的LVI)所做的工作的基础上进行的,该研究的动机是需要数据和对失效的理解复合材料各个成分的特性,例如在损伤传播和破坏准则的建模中,肛门ysis。

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