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Predictive modeling and experimental results for residual stresses in laser hardening of AISI 4140 steel by a high power diode laser

机译:大功率二极管激光器对AISI 4140钢进行激光淬火时残余应力的预测建模和实验结果

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摘要

A predictive model for residual stresses induced in a laser hardened workpiece of AISI 4140 steel with no melting has been developed and experimentally verified. A transient three-dimensional thermal and kinetic model is first solved to obtain the temperature and solid phase history of the workpiece, which is then sequentially coupled to a three-dimensional stress model to predict residual stresses. The phase transformation strains are added to the thermal strains at each time step during the heating and cooling cycles to obtain the resultant residual stresses in the workpiece. The importance of considering phase transformation has been explained through the comparison of the magnitudes of residual stresses with and without the inclusion of phase transformation kinetics. The model predicted strong compressive residual stresses of about 200 MPa in the heat affected zone due to austenite-to-martensite transformation. The predictions matched well with the X-ray diffraction measurements.
机译:已开发并通过实验验证了AISI 4140钢在未熔化的激光硬化工件中引起的残余应力的预测模型。首先求解瞬态三维热力学模型,以获取工件的温度和固相历史,然后将其顺序耦合至三维应力模型,以预测残余应力。在加热和冷却循环的每个时间步骤中,将相变应变添加到热应变中,以获得工件中产生的残余应力。通过比较残余应力的大小(包括和不包括相变动力学),已经解释了考虑相变的重要性。该模型预测,由于奥氏体到马氏体的转变,热影响区将产生约200 MPa的强压缩残余应力。这些预测与X射线衍射测量结果非常吻合。

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