Influence of the Welding Process on Changes in the S460MC Fine-grained Steel Joints Fatigue life

J. Moravec, Jan Novák, J. Sobotka, I. Nováková
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Abstract

Structural designs of the dynamically loaded welded structures are currently based primarily on the values of the parent base material fatigue life. Although it tries to capture the influence of the given process by using the safety constants of the notch effect both of the weld and the thermal influence, it is only a theoretical estimation. Due to that, it very often results in large oversizing and, in worse cases, in under-sizing of the engineering design. As a result, there is either an overly robust and heavy construction, which is unacceptable (especially when applied in the automotive industry) or on the contrary, there is failure of parts due to cracks earlier than their planned service life is reached. The paper shows the effect of MAG welding method on the fatigue life of fillet and butt welds made of the fine-grained structural steel S460MC. The comparison of such influence is performed via using experimentally determined Wöhler curves of the parent material and both types of welded joints.
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焊接工艺对S460MC细晶钢接头疲劳寿命变化的影响
目前,动载焊接结构的结构设计主要基于母材疲劳寿命值。虽然它试图通过使用缺口效应和热影响的安全常数来捕捉给定过程的影响,但它只是一个理论估计。由于这个原因,它经常导致过大的尺寸,在更糟糕的情况下,在工程设计的尺寸不足。因此,要么是过于坚固和沉重的结构,这是不可接受的(特别是在汽车工业中应用时),要么相反,在达到计划使用寿命之前,由于裂纹而导致零件失效。研究了MAG焊接方法对细晶结构钢S460MC角焊缝和对接焊缝疲劳寿命的影响。通过实验确定的母材和两种焊接接头Wöhler曲线对这种影响进行了比较。
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