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首页> 外文期刊>Journal of Materials Processing Technology >Plasticity and fracture modeling of the heat-affected zone in resistance spot welded tailor hardened boron steel
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Plasticity and fracture modeling of the heat-affected zone in resistance spot welded tailor hardened boron steel

机译:电阻点焊特制淬火硼钢热影响区的塑性和断裂模型

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Five hardness grades of 22MnB5 are considered, covering the full strength-range from 600 MPa in the ferritic/pearlitic range to 1500 MPa in the fully hardened, martensitic state. These five grades form the basis for a hardness-based material model for the heat-affected zone found around resistance spot welds in tailor hardened boron steel. Microhardness measurements of resistance spot welds in all five grades are used to determine the location and shape of the heat-affected zone and for mapping of the hardness distributions into FE-models of the specimens used for model calibration. For calibration of the strain hardening of the heat-affected zone, a specially designed asymmetric uni-axial tensile specimen is used that features a well-defined strain field up to fracture initiation. Both the measured force-displacement curves and the strain fields are used as input for an inverse FEM optimization algorithm that identifies suitable strain hardening model parameters by minimizing the differences between experimental and simulated results. A strain-based fracture model is calibrated using a hybrid experimentalumerical approach, featuring two additional specimens in which fracture initiates in the HAZ under different stress states. Strain hardening and fracture strains are assumed to be linearly related to the as-welded material hardness. The calibration and modeling approach are validated by comparing measured and predicted force-displacement curves and strain fields of welded coupon tensile tests. (C) 2016 Elsevier B.V. All rights reserved.
机译:考虑了22MnB5的五个硬度等级,覆盖了整个强度范围,从铁素体/珠光体范围的600 MPa到完全硬化的马氏体状态的1500 MPa。这五个等级构成了基于硬度的材料模型的基础,该材料模型针对定制硬化硼钢中电阻点焊周围的热影响区。所有五个等级的电阻点焊的显微硬度测量结果用于确定热影响区的位置和形状,并将硬度分布映射到用于模型校准的试样的FE模型中。为了校准热影响区的应变硬化,使用了专门设计的非对称单轴拉伸试样,该试样具有直至断裂开始为止的明确的应变场。测得的力-位移曲线和应变场都用作反有限元优化算法的输入,该算法通过最小化实验结果与模拟结果之间的差异来识别合适的应变硬化模型参数。使用混合实验/数值方法对基于应变的断裂模型进行校准,该模型具有两个额外的样本,其中在不同的应力状态下,HAZ中会发生断裂。假定应变硬化和断裂应变与焊接材料的硬度线性相关。通过比较测得的和预测的力-位移曲线以及焊接试样拉伸试验的应变场,可以验证校准和建模方法的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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