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Deformation Behavior of Micro-Alloyed Steel by Using Thermo Mechanical Simulator and Finite Element Method

机译:使用热机械模拟器和有限元法测定微合金钢的变形行为

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Micro-alloyed (MA) forging steels are becoming increasingly important economic alternative to the traditional quenched and tempered steels. MA steels do not require heat treatment after they are shaped into parts, as the required mechanical properties are obtained directly at the end of the process and save the cost and energy by reducing the number of operations. Also, these steels have achieved very good characteristics of toughness and weldability. These beneficial properties have been achieved by a careful control of chemical composition and by adopting suitably controlled thermo-mechanical processes. In this study, hot compression test on a medium carbon vanadium micro-alloyed steel grade 38MnVS6 has been performed on Gleeble-Thermo mechanical Simulator (TMS) in order to study the effect of forging temperature and strain rate on flow stress. Also the proposed process has been simulated using a forging process simulation software tool, DEFORM~(TM) 3D V6.1.
机译:微合金(MA)锻造钢正在成为传统淬火和钢化钢的越来越重要的经济替代品。 Ma钢在成形为零件后,不需要热处理,因为在过程结束时直接获得所需的机械性能,通过减少操作数来节省成本和能量。此外,这些钢已经实现了韧性和可焊性的非常好的特性。通过仔细控制化学成分和采用适当控制的热机械方法,已经实现了这些有益的特性。在该研究中,在GLEEBLE-Thermo机械模拟器(TMS)上进行了中碳钒微合金钢级38MNVS6的热压缩试验,以研究锻造温度和应变率对流量应力的影响。此外,还使用锻造过程仿真软件工具,变形〜(TM)3D V6.1进行了模拟所提出的过程。

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