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The Impact Collapse Characteristics of Al/CFRP Members for Light-weight

机译:al / CFRP成员对轻抗重的抗冲击特性

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摘要

In this study, the impact collapse tests were performed to investigate collapse characteristics of Al/CFRP member which were composed of aluminum members wrapped with CFRP (Carbon Fiber Reinforced Plastics) outside aluminum member. Aluminum members absorb energy by stable plastic deformation, while CFRP members absorb energy by unstable brittle failure with higher specific strength and stiffness than those in the aluminum member. In an attempt to achieve a synergy effect by combing the two members, Al/CFRP members were manufactured and impact collapse tests were performed for the members. Based on the respective collapse characteristics of aluminum and CFRP members, the collapse modes and energy absorption capability were analyzed for Al/CFRP member which have different fiber orientation angle of CFRP. Test results showed that the collapse of the Al/CFRP member complemented unstable brittle failure of the CFRP member due to ductile nature of the inner aluminum member and the fiber orientation angle of Al/CFRP members influence energy absorption capability and collapse mode.
机译:在该研究中,进行了冲击塌陷试验以研究由铝构件外包裹的铝构件组成的Al / CFRP成员的塌陷特性。铝构件通过稳定的塑性变形吸收能量,而CFRP构件通过不稳定的脆性故障吸收能量,其比铝构件中具有更高的比强度和刚度。为了通过梳理两名成员来实现协同效应效果,al / CFRP成员制造,对成员进行了冲击塌陷测试。基于铝和CFRP部件的各个崩溃特性,崩溃模式和能量吸收能力进行了分析,其具有碳纤维不同的纤维取向角的Al / CFRP构件。试验结果表明,在Al / CFRP构件的崩溃由于内铝构件和Al的纤维取向角的韧性性质补充CFRP部件的不稳定脆性破坏/ CFRP成员影响能量吸收能力和破坏模式。

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