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Functional Gradation of Low Alloy Steel by Differentially Controlled Phase Transformation

机译:低合金钢的微分控制相变功能梯度

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In the present study, the phase transformation behaviour of 51 CrV4 steel was investigated both in an actual flange forming process and under idealized isothermal bainitic transformation conditions. The results demonstrated that superimposed external stresses have only a minor effect on the kinetics of the phase transformation, whereas strains resulting from transformation plasticity were significant. Transmission electron microscopy revealed a preferential alignment of the bainite with respect to the external loading direction. This selection of favourably oriented variants in turn causes macroscopic strains. Understanding and minimizing these strains are a key factor in designing functionally graded components with minimum distortion.
机译:在本研究中,研究了51 CrV4钢在实际的法兰成形过程中和理想的等温贝氏体转变条件下的相变行为。结果表明,叠加的外部应力对相变动力学的影响很小,而由相变可塑性引起的应变却很明显。透射电子显微镜显示贝氏体相对于外部加载方向的优先排列。选择有利定向的变体又引起宏观应变。了解和最小化这些应变是设计具有最小失真的功能渐变组件的关键因素。

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