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Numerical and Experimental Investigation of Tensile Behavior of Laser Beam Welded TRIP700 Steel

机译:激光焊接TRIP700钢拉伸行为的数值和实验研究

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This paper aims to evaluate and simulate the mechanical behavior of laser beam welded TRIP700 steel sheet under uniaxial tensile loading. In this work TRIP700 steel sheets with thickness of 1.2 mm were butt welded by CO_(2) laser beam welding using 4.5 kW as a laser beam power and 0 mm as a focus position. The welding speed was ranged from 2.1 to 3.9 m/min. Microhardness measurements and transverse tensile testing were carried out to characterize the welds. Numerical simulation with the finite element analysis code ABAQUS/CAE v6.9-1 was used to describe the elastoplastic behavior of the welded sheets. In a perpendicular tensile test to the weld line, all specimens were fractured at the base metal and the strengths were somewhat higher than those of base metal. The numerical results of the tensile testing had a good agreement with the experimental results.
机译:本文旨在评估和模拟激光束焊接的TRIP700钢板在单轴拉伸载荷下的力学行为。在这项工作中,厚度为1.2 mm的TRIP700钢板通过CO_(2)激光束对接焊接,激光束功率为4.5 kW,聚焦位置为0 mm。焊接速度为2.1至3.9m / min。进行了显微硬度测量和横向拉伸测试,以表征焊缝。用有限元分析代码ABAQUS / CAE v6.9-1进行了数值模拟,以描述焊接板的弹塑性行为。在垂直于焊接线的拉伸试验中,所有试样均在母材处断裂,强度略高于母材。拉伸试验的数值结果与实验结果吻合良好。

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