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Fatigue strength of self-piercing riveted joints in lap-shear specimens of aluminium and steel sheets

机译:铝和钢板搭接剪切试样中自冲铆接接头的疲劳强度

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The self-piercing riveting (SPR) process is gaining popularity because of its many advantages. This study investigated the fatigue strength of SPR joints in tensile-shear specimens with dissimilar Al-5052 and steel sheets. A structural analysis of the specimen was conducted. For this specimen, the upper steel sheet withstood applied load in a mono-tonic test and played a major role in the low-cycle region. In the high-cycle region, however, the harder surface of the upper steel sheet reduced the fatigue strength by enhancing fretting crack initiation on the opposite softer aluminium surface. Therefore, the fatigue endurance of the specimen was reduced. The fatigue endurance of a SPR joint with the combination of steel and aluminium sheets was found to be governed by the strength of the lower sheet, which is more vulnerable to the applied loading. Thus, it is desirable to use a stronger metal sheet as the lower sheet with regard to the fatigue performance. Scanning acoustic microscopy was effectively used to reveal and prove the formation and growth of subsurface cracks in SPR joints. The structural stress can predict the fatigue lifetimes of the SPR joint specimens within a factor of three.
机译:自冲铆接(SPR)工艺由于其许多优点而越来越受欢迎。本研究调查了Al-5052和钢板不同的拉伸剪切试样中SPR接头的疲劳强度。对样品进行结构分析。对于该试样,上部钢板在单调试验中承受了施加的载荷,并且在低周波区域起着重要作用。然而,在高循环区域,上钢板的较硬表面通过增强在相对较软的铝表面上的微动裂纹萌生而降低了疲劳强度。因此,降低了样品的疲劳强度。发现钢板和铝板组合的SPR接头的疲劳强度受下层板的强度支配,下层板的强度更容易受到外加载荷的影响。因此,就疲劳性能而言,期望使用强度更高的金属板作为下部板。扫描声显微镜被有效地用来揭示和证明SPR接头中地下裂纹的形成和增长。结构应力可以预测SPR接头试样的疲劳寿命在三倍之内。

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