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Improvement on the fatigue performance of BIW by using mechanical clinching joining method

机译:利用机械铆接加入方法改善BIW的疲劳性能

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The stiffness of autobody largely depend on the joint strength of welding spots. Weak welding joints lead to inferior stiffness, which lowers vehicle performance such as ride and handling and NVH (noise vibration harshness). Resistance spot welding, major joining method of autobody, produces superior joint strength but its fatigue limit (fatigue strength at 107cycle) is inferior, which implies that joint strength may be greatly affected by the fatigue. Mechanical clinching, on the other hand, has lower joint strength but its fatigue limit is higher than that of spot welding. This paper focused on the behavior of joint strength under cyclic loading in both resistance spot welding and mechanical clinching. The deterioration of joint strength during fatigue testing was examined by measuring monotonic shear tension force as a function of fatigue cycles at a given cyclic load. It was found that the joint strength of spot welding decreased with fatigue cycles but the mechanical clinching showed no signs of deterioration at all. Thus the mechanical clinching is found to be a very effective method to improve the durability of the body under low cyclic load level which is expected to emerge during normal driving conditions.
机译:自动侵为的刚度很大程度上取决于焊点的关节强度。弱焊接接头导致较差的刚度,降低了车辆性能,例如乘坐和处理和NVH(噪音振动刺耳)。电阻点焊,自动侵害的主要连接方法产生优异的关节强度,但其疲劳极限(107鲸尾的疲劳强度)差异,这意味着接合强度可能受到疲劳的大大影响。另一方面,机械铆接具有较低的关节强度,但其疲劳极限高于点焊。本文集中于电阻点焊和机械铆接循环加载下的关节强度的行为。通过测量单调剪切张力作为给定环状负载下的疲劳循环的函数来检查疲劳测试期间的关节强度的劣化。结果发现,点焊的关节强度随着疲劳循环降低,但机械铆接显示出根本没有劣化的迹象。因此,机械铆接被发现是在低循环载荷水平下提高身体耐久性的非常有效的方法,这预计在正常的驾驶条件下会出现。

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