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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Martensite Volume Fraction on Forming Limit Diagrams of Dual-Phase Steel
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Effect of Martensite Volume Fraction on Forming Limit Diagrams of Dual-Phase Steel

机译:马氏体体积分数对双相钢成形极限图的影响

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摘要

Prediction of the onset of failure due to localized necking has an important role on the determination of the formability of sheet metal, especially dual-phase steels, because of their increasing applications in the automotive industry. In the present study, a new application of the M-K model and theoretical forming limit diagram has been proposed. It is shown that this model can be useful in predicting the effect of microstructural aspects on the formability of dual-phase steels. For this purpose, the limiting strains of the dual-phase (ferrite-martensite) steel under different martensite volume fractions have been calculated. Furthermore, the effect of the heating rate on the formability of the DP samples has been predicted. To solve the non-linear system of equations, the modified Newton-Raphson method has been used. The results show that the limiting strains decrease by increasing the amount of martensite volume fractions. Furthermore, by increasing the heating rate, the dependence of the forming limit curves on the martensite volume fraction will be decreased.
机译:由于在汽车工业中的应用越来越多,因此预测由于局部颈缩而引起的失效起着决定金属板尤其是双相钢成形性的重要作用。在本研究中,提出了M-K模型和理论形成极限图的新应用。结果表明,该模型可用于预测微观结构对双相钢成形性的影响。为此,已经计算了在不同马氏体体积分数下的双相(铁素体-马氏体)钢的极限应变。此外,已经预测了加热速率对DP样品的可成形性的影响。为了解决非线性方程组,已使用改进的牛顿-拉夫森方法。结果表明,极限应变随马氏体体积分数的增加而减小。此外,通过提高加热速率,将减小成形极限曲线对马氏体体积分数的依赖性。

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