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Simulation of the Forging Process Incorporating Strain-Induced Phase Transformation Using the Finite Volume Method (Part II; Effects of Strain Rate on Structural Change and Mechanical Behavior)

机译:有限体积法模拟结合应变诱导相变的锻造过程(第二部分;应变率对结构变化和力学行为的影响)

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摘要

In part I, based on the framework of metallo-thermo-mechanics, a finite volume method formulated in the Eulerian description has been set up to simulate the forging process and corresponding strain-induced austenitic martensite phase transformation. The approach has been developed and implemented in the commercial computer program MSC. SuperForge. In this paper, numerical simulations for SUS304 stainless steel on backward and forward extrusions are carried out in order to verify the method proposed in Part I. Furthermore, the effects of strain rate on the austenitic-martensite phase transformation and the aggregate flow stress are studied.
机译:在第一部分中,基于金属热力学的框架,建立了以欧拉描述为基础的有限体积方法,以模拟锻造过程和应变诱发的奥氏体马氏体相变。该方法已经在商用计算机程序MSC中开发和实现。 SuperForge。为了验证第一部分中提出的方法,本文对SUS304不锈钢在前后挤压过程中进行了数值模拟。此外,还研究了应变速率对奥氏体-马氏体相变和骨料流动应力的影响。 。

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