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FE modeling of the cooling and tempering steps of bimetallic rolling mill rolls

机译:双金属轧机轧辊冷却和回火步骤的FE造型

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摘要

Numerical simulations enable the analysis of the stress and strain histories of bimetallic rolling mill rolls. The history of rolling mill rolls is simulated by thermo-mechanical metallurgical finite element code while considering two steps: post-casting cooling and subsequent tempering heat treatment. The model requires a notably large set of material parameters. For different phases and temperatures, Young modulus, yield limit and tangent plastic modulus are determined through compression tests. Rupture stresses and strains are obtained by tensile tests. Thermo-physical parameters are measured by such experimental methods as dilatometry, DSC (Differential Scanning Calorimetry) and Laser Flash methods. Such parameters as the transformation plasticity coefficients for the ferrite, pearlite and martensite phases are identified through an inverse method. From the simulation results, the profile of the stresses evolution at different critical times is presented. An analysis of the potential damage is proposed by comparing the predicted axial stress with rupture stresses. The perspective of the Ghosh and McClintock damage criteria is also investigated.
机译:数值模拟能够分析双金属轧机辊的应力和应变历史。轧机辊的历史通过热机械冶金有限元代码模拟,同时考虑到两个步骤:铸造后冷却和随后的回火热处理。该模型需要一个值得注意的大量材料参数。对于不同的相和温度,通过压缩测试确定幼模,产量极限和切线塑料模量。通过拉伸试验获得破裂应力和菌株。通过这种实验方法测量热物理参数作为膨胀测定,DSC(差示扫描量热法)和激光闪光方法。通过逆方法确定作为铁氧体,珠光体和马氏体相的转化塑性系数的参数。从仿真结果来看,提出了不同关键时间的应力演化的轮廓。通过将预测的轴向应力与破裂应力进行比较,提出了对潜在损坏的分析。还研究了GHOSH和MCCLINTOCK损伤标准的角度。

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