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DYNAMIC MATERIAL PROPERTIES OFTHE HEAT-AFFECTED ZONE (HAZ) IN RESISTANCE SPOT WELDING

机译:电阻点焊中热影响区(HAZ)的动态材料特性

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This paper is concerned with a methodology to identify the dynamic material properties of the heat-affected zone (HAZ) near the base metal in a resistance spot weld process at various strain rates. In order to obtain the dynamic material properties of the HAZ in the spot-welded steel sheet, specimens are prepared to have similar material properties, hardness and microstructure to the actual HAZ. Such thermally simulated specimens are fabricated with the material thermal cycle simulator (MTCS) and compared with the real one for the hardness and microstructure. Dynamic tensile tests are then conducted with a high speed material testing machine. Stress—strain curves of the thermally simulated HAZ are obtained at various strain rates ranged from 0.001/sec to 100/sec. Obtained material properties are applied to the finite element analysis of the spot-welded tensile-shear specimen in order to verify validity of the proposed testing methodology and obtained results. Analysis results demonstrate that the material properties obtained are appropriate for the FE analysis of spot-welded specimens.
机译:本文涉及一种在不同应变速率下识别电阻点焊过程中基础金属附近的热影响区(HAZ)的动态材料特性的方法。为了获得点焊钢板中HAZ的动态材料特性,制备样品以具有与实际HAZ类似的材料性质,硬度和微观结构。这种热模拟标本用材料热周期模拟器(MTC)制造,并与真实的用于硬度和微观结构进行比较。然后用高速材料试验机进行动态拉伸试验。以0.001 /秒至100 /秒的各种应变速率获得热模拟HAZ的应力 - 应变曲线。获得的材料特性应用于点焊拉伸剪切样本的有限元分析,以验证所提出的测试方法的有效性和获得的结果。分析结果表明,所获得的材料特性适用于点焊试样的Fe分析。

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