首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >FATIGUE DAMAGE AND RESIDUAL STRENGTH EVALUATION OF RESIN TRANSFER MOLDED (RTM) COMPOSITES UNDER REVERSED CYCLIC LOADING
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FATIGUE DAMAGE AND RESIDUAL STRENGTH EVALUATION OF RESIN TRANSFER MOLDED (RTM) COMPOSITES UNDER REVERSED CYCLIC LOADING

机译:逆转循环载荷下树脂转移模塑(RTM)复合材料的疲劳损伤及残余强度评价

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The fatigue loading in composite materials causes cumulative damages and therefore degrades the stiffness of the materials before ultimate failure. A comprehensive study has been conducted to characterize the fatigue damage for two different material systems under reversed fatigue (R= -1). Hercules' IM7 6K plain weave fabric reinforced composites with two different epoxy based resin systems namely, PR 500 and PR 520 with laminate sequence of [+45,-45,0,90]{sub}(2s) were chosen. Static compression tests have been performed with open-hole notch specimens to determine the strength, modulus and failure strain. Series of fatigue tests with a frequency of 2 Hz at various stress levels have been conducted, and the fatigue life distributions are shown using the conventional S-N diagram. In order to determine the residual strengths and stiffnesses, the specimens were subjected to fatigue loading at various predetermined number of cycles of its fatigue life at a particular stress level. The fatigued specimens were then tested to failure under compression. The edge replica technique has been used to investigate the progressive damage due to fatigue loading. Weibull analysis has been performed to determine the statistical information for the static, fatigue and residual tests. The progressive damage due to fatigue loading has also been studied through ultrasonic C-scan, optical microscope (OM) and scanning electron microscope (SEM), and the failure mechanisms under both static and cyclic loading are discussed in this paper.
机译:复合材料中的疲劳负载导致累积损坏,因此在最终失败之前降低了材料的刚度。已经进行了全面的研究,以表征两种不同材料系统的疲劳损伤(R = -1)。 HERCULES'IM7 6K平纯的织物增强复合材料,其具有两种不同的环氧树脂系统,包括[+ 45,-45,0,90] {sub}(2s)的层压序列的Pr 500和Pr 520。已经用张开孔凹口标本进行了静态压缩试验,以确定强度,模量和失效应变。已经进行了在各种应力​​水平下具有2 Hz的频率的疲劳试验系列,并且使用传统的S-N图示出疲​​劳寿命分布。为了确定残留的强度和刚度,在特定应力水平处以各种预定数量的疲劳寿命的疲劳循环进行疲劳负载。然后在压制下测试疲劳标本以失效。边缘复制品技术已被用于研究由于疲劳负荷引起的渐进损坏。已经进行了Weibull分析以确定静态,疲劳和剩余测试的统计信息。还通过超声C扫描,光学显微镜(OM)和扫描电子显微镜(SEM)研究了由于疲劳负载引起的渐进损伤,并在本文中讨论了静电和循环负载下的故障机制。

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