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Experimental and modeling investigation of the failure resistance of Advanced High Strength Steels spot welds

机译:高强度高强度钢点焊的抗破坏性实验与模型研究

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摘要

Damage of Advanced High Strength Steel resistance spot welds is investigated in Cross Tension by means of coupled microtomography, metallography and fractography. Three main failure mechanisms and failure zones are identified: (i) strain localization in the base metal/sub-critical Heat Affected Zone (HAZ), (ii) ductile shear around the weld and (iii) semi-brittle fracture in the weld nugget. A finite element model is developed in order to illustrate how the mechanisms compete and lead to a given failure type. The local constitutive behavior is obtained from tensile tests on simulated HAZ microstructures. The model enables capturing the main trends in the transition between failure types as a function of weld geometry as well as a reliable estimation of the load bearing capacity.
机译:先进的高强度钢电阻点焊的损伤是通过结合显微断层照相术,金相学和分形照相术在交叉拉伸中进行的。确定了三个主要的失效机理和失效区:(i)母材/亚临界热影响区(HAZ)中的应变局部化;(ii)焊缝周围的韧性剪切;(iii)焊核中的半脆性断裂。为了说明机制如何竞争并导致给定的故障类型,开发了有限元模型。局部本构行为是通过在模拟的HAZ微结构上进行拉伸试验获得的。该模型能够捕获故障类型之间过渡的主要趋势,这些趋势是焊接几何形状的函数,以及对承载能力的可靠估计。

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