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The application of equivalent modeling of joints for bending simulation of hybrid aluminum/high strength steel thin-walled sections joined by clinching

机译:铆接加工型混合铝/高强度钢薄壁段弯曲仿真的相等建模

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摘要

Fuel economy and stringent environmental regulations have forced the automotive industry to adopt lightweight materials for car bodies. Utilization of multi-materials is an effective approach for lightweight design of the automotive body structure. Introducing such lightweighting solutions faces the automotive industry with challenges in terms of joining methods. Clinching is a cost-effective alternative of conventional spot welding which enables joining of similar and dissimilar materials by local plastic deformation. This study undertakes the experimental and numerical investigation of the bending energy absorption of a multi-material aluminum alloy Al 5052/SPFC 390 high strength steel clinched beam by means of a quasi-static three-point bending test. Connector elements with six degrees of freedom are employed as simplified equivalent models of the beam clinched joints in software ABAQUS. The elastic and plastic behaviors of the connector are calibrated using experimental shear lap and pull-out tests. The calibrated clinch joint model is then used in the bending test simulation of the hybrid clinched beam and the numerical results are validated with experiments. The simulations results are found to be in good agreement with experiments and it is shown that the employed equivalent model can successfully predict the bending behavior of the hybrid material clinched beam.
机译:燃油经济性和严格的环境法规已迫使汽车行业采用汽车机构的轻质材料。多材料的利用是汽车车身结构的轻质设计的有效方法。介绍这种轻量化解决方案面临汽车行业,在加入方法方面面临挑战。 Clinching是传统点焊的经济效益替代方案,可通过局部塑性变形连接相似和异种材料。本研究采用通过准静态三点弯曲试验对多材料铝合金Al 5052 / SPFC 390高强度钢夹持梁的弯曲能量吸收的实验性和数值研究。具有六个自由度的连接器元件被用作软件ABAQUS中梁夹带接头的简化等效模型。使用实验剪切圈和拉出测试校准连接器的弹性和塑料行为。然后使用校准的铆接接头模型在杂交刺束的弯曲试验模拟中,用实验验证了数值结果。发现模拟结果与实验良好,结果表明,所用的等效模型可以成功预测混合材料铆接光束的弯曲行为。

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