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首页> 外文期刊>International journal of impact engineering >Influence of thickness of composite layers on failure behaviors of carbon fiber reinforced plastics/aluminum alloy electromagnetic riveted lap joints under high-speed loading
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Influence of thickness of composite layers on failure behaviors of carbon fiber reinforced plastics/aluminum alloy electromagnetic riveted lap joints under high-speed loading

机译:复合层厚度​​对高速载荷下碳纤维增强塑料/铝合金电磁铆接搭接接头失效行为的影响

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摘要

Electromagnetic riveting (EMR) has the better riveting quality and more suitable for joining composite materials than traditional riveting. In this work, the failure process of electromagnetic riveted joints was investigated during high speed loading. Mechanical properties of sheet thickness specimens were tested by a high speed tensile machine with a loading speed of 5 m/s. The failure process and fracture mechanism was revealed using digital image correlation (DIC) and scanning electron microscope (SEM). With the increase of CFRP sheet thickness, strain cloud maps demonstrated that the deformation of aluminum alloy plate was more and more severe until the rivet broke from. The failure position of the specimens was transferred from CFRP sheet to aluminum alloy sheet and rivet. The failure modes of specimens were that the carbon fibers were cut off, or forcibly stripped and stratified. The riveted hole of the aluminum alloy plate was turned outward, and the rivet was cut and broken down under the high speed loading.
机译:电磁铆接(EMR)具有比传统铆接更好的铆接质量,更适合于连接复合材料。在这项工作中,研究了在高速加载过程中电磁铆接接头的失效过程。用高速拉伸机以5 m / s的加载速度测试板厚样本的机械性能。使用数字图像关联(DIC)和扫描电子显微镜(SEM)揭示了失效过程和断裂机理。随着CFRP板厚度的增加,应变云图显示铝合金板的变形越来越严重,直到铆钉破裂为止。试样的失效位置从CFRP板转移到铝合金板和铆钉。标本的失效模式是碳纤维被切断或被强行剥离和分层。将铝合金板的铆钉孔向外旋转,并在高速载荷下将铆钉切割和分解。

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