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Dynamic strength evaluations for self-piercing rivets and resistance spot welds joining similar and dissimilar metals

机译:连接类似和不同金属的自穿孔铆钉和电阻点焊的动态强度评估

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摘要

This paper summarizes the dynamic joint strength evaluation procedures and the measured dynamic strength data for 13 joint populations of self-piercing rivets (SPR) and resistance spot welds (RSWs) joining similar and dissimilar metals. A state-of-the-art review of the current practice for conducting dynamic tensile/compressive strength tests in different strain rate regimes is first presented, and the generic issues associated with dynamic strength test are addressed. Then, the joint strength testing procedures and fixture designs used in the current study are described, and the typical load versus displacement curves under different loading configurations are presented. Uniqueness of the current data compared with data in the open literature is discussed. The majority of experimental results indicate that joint strength increases with increasing loading rate. However, the strength increase from 4.47 m/s (10mph) to 8.94 m/s (20mph) is not as significant as the strength increase from static to 4.47 m/s. It is also found that with increasing loading velocity, displacement to failure decreases for all the joint samples. Therefore, 'brittleness' of the joint sample increases with impact velocity. Detailed static and dynamic strength data and the associated energy absorption levels for all the samples in the 13 joint populations are also included.
机译:本文总结了13种相似和不同金属的自穿孔铆钉(SPR)和电阻点焊(RSW)接头的动态接头强度评估程序和测得的动态强度数据。首先介绍了在不同应变率范围内进行动态拉伸/压缩强度测试的当前实践的最新进展,并讨论了与动态强度测试相关的一般性问题。然后,描述了当前研究中使用的接头强度测试程序和夹具设计,并给出了不同载荷配置下的典型载荷与位移曲线。讨论了当前数据与开放文献中的数据相比的唯一性。大多数实验结果表明,接头强度随着加载速率的增加而增加。但是,强度从4.47 m / s(10英里/小时)增加到8.94 m / s(20英里/小时)并不像强度从静态增加到4.47 m / s那样重要。还发现,随着加载速度的增加,所有关节样品的破坏位移都会减小。因此,接头样品的“脆性”随冲击速度而增加。还包括13个联合种群中所有样本的详细静态和动态强度数据以及相关的能量吸收水平。

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