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Experimental and numerical investigations of aluminium-steel self-piercing riveted joints under quasi-static and dynamic loadings

机译:准静态和动态载荷下铝钢自刺穿铆接接头的实验性和数值研究

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The mechanical response of aluminium-steel self-piercing riveted (SPR) joints is investigated under quasi static and dynamic loadings using experimental and numerical methods separately. First, a 2D axisymmetric numerical model is constructed based on r-adaptivity method to simulate the SPR process and is subsequently validated by tests. Second, a novel generation method of 3D finite element (FE) model of SPR joints, of which the stress-strain field is mapped from the 2D axisymmetric model, is proposed to simulate the mechanical response of aluminium-steel SPR joints. The mechanical response of SPR joints under quasistatic and dynamic loadings are compared in detail by experimental tests and numerical simulation. The results reveal that the established 3D FE model can accurately simulate the quasi-static and dynamic strength of SPR joints. It is observed that the peak force of the SPR joints is larger under dynamic loading than under quasi-static loading; while the energy absorption by peeling and cross-tension SPR joints is lower under dynamic loading than quasistatic loading. Finally, the relationships between process parameters, process quality indexes and mechanical response of SPR joints are parametrically investigated under quasi-static and dynamic loadings, in which (1) increasing the rivet length reduces the minimum thickness, increases undercut, and increases energy absorption; (2) increasing the rivet length increases the peak force within a limited range for shear joints and cross-tension joints under dynamic loading; (3) the total effect of process parameters on the mechanical response of SPR joints under dynamic loading are similar to the effect observed under quasi-static loading.
机译:使用实验和数值方法在准静态和动态载体下进行铝钢自刺穿铆接(SPR)接头的机械响应。首先,基于R-Adaptivity方法构建了2D轴对称数值模型来模拟SPR过程,随后通过测试验证。其次,提出了一种从2D轴对称模型映射应力 - 应变场的3D有限元(FE)模型的新一代生成方法,其中应力 - 应变场映射,以模拟铝 - 钢SPR接头的机械响应。通过实验测试和数值模拟详细比较了Quasistatic和动态载荷下SPR接头的机械响应。结果表明,建立的3D FE模型可以准确模拟SPR接头的准静态和动态强度。观察到,SPR接头的峰值力在动态载荷下比在准静态负载下更大;虽然通过剥离和交叉张力SPR接头的能量吸收比动态载荷低于Quasistatic载荷。最后,在准静态和动态载荷下参数研究了过程参数,工艺质量指标和SPR接头机械响应的关系,其中(1)增加铆钉长度降低最小厚度,增加底切,并增加能量吸收; (2)增加铆钉长度在动态负荷下增加剪切接头和交叉张力接头的有限范围内的峰值; (3)动态载荷下SPR接头机械响应的过程参数的总效果类似于在准静态负载下观察到的效果。

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