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3D processing maps and a modified constitutive model of 16Cr-5Ni-Mo supermartensitic stainless steel

机译:3D处理地图和16Cr-5ni-Mo超散晶不锈钢改进的本构模型

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The hot deformation behavior of 16Cr-5NrMo supermartensitic stainless steel was investigated using a Gleeble-1500D thermo-mechanical simulator in the temperature range of 850 to 1150°C and strain rate range of 0.01 to 10 s~(-1).The hot deformation apparent activation energy of the steel was obtained as 424.173 kJ/mol.Arrhenius type constitutive equation was established according to flow stress data to describe the flow behavior.Meanwhile,the 3D maps of power dissipation and processing based on dynamic materials mode(DMM)were developed for the typical strains of 0.2,0.4,0.6 and 0.8,respectively.The results show that with the high deformation temperature(1000-1150°C)and low strain rate(0.01-0.1 s~(-1)),it is dominated by the dynamic recrystallization(DRX)for the softening mechanism.And the critical strains for the onset of DRX at different conditions are obtained.The optimized processing parameters for hot working of 16Cr-5NrMo supermartensitic stainless steel are in the temperature range of 980-1150°C and strain rate range of 0.02-0.36 s~(-1)at strains of 0.6 and 0.8.
机译:使用的温度范围内的0.01 850〜1150℃和应变速率范围的GLEEBLE-1500D热机械模拟器16Cr作为-5NrMo supermartensitic不锈钢的热变形行为进行了研究,以10秒〜(-1)。该热变形获得了钢的表观活化能为424.173千焦耳/ mol.Arrhenius键入构方程根据流动应力数据到描述流behavior.Meanwhile成立时,3D功耗的映射和基于动态材料模式(DMM)的处理是为0.2,0.4,0.6和0.8的典型菌株开发。结果表明,与高变形温度(1000年至1150年℃)和低应变速率(0.01-0.1 S〜(-1)),它是通过动态再结晶(DRX)为软化主导mechanism.And用于DRX的在不同条件下开始时的临界应变是obtained.The优化工艺为16Cr作为-5NrMo supermartensitic不锈钢的热加工参数在温度响在0.6和0.8菌株0.02-0.36 S〜(-1)中的980-1150℃的e和应变速率范围。

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