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A tensorial description of the transformation kinetics of the martensitic phase transformation

机译:马氏体相变动力学的张量描述

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Based on a local examination of the phase transition front, a macroscopic second order tensor describing the thermodynamic force for the phase transformation is proposed. Consequently, an associated thermodynamic flux is introduced. These tensorial variables are embedded into a material law which describes the behavior of steels during the austenite-martensite phase transformation. The material law is implemented into a finite element formulation. Homogeneous tests in pure tension/compression and torsion are performed to verify the behavior of the material law. Due to the independent modeling of the behavior of the phases, the influence of the yield stress of the austenite on the transformation kinetics can be verified. A classical example is presented to show the ability of the model to calculate large structural problems. (C) 2004 Elsevier Ltd. All rights reserved.
机译:基于对相变前沿的局部检验,提出了描述相变热力学力的宏观二阶张量。因此,引入了相关的热力学通量。这些张量变量被嵌入材料定律中,该定律描述了奥氏体-马氏体相变过程中钢的行为。物质定律被实施为有限元公式。进行纯拉伸/压缩和扭转的均质测试以验证材料定律的行为。由于对相行为的独立建模,可以验证奥氏体屈服应力对相变动力学的影响。给出了一个经典的例子来说明模型计算大型结构问题的能力。 (C)2004 Elsevier Ltd.保留所有权利。

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