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首页> 外文期刊>Journal of Materials Engineering and Performance >Micromechanical Modeling and Investigating the Effect of Particle Size and the Interface of Phases on the Mechanical Behavior of Dual-Phase Steels
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Micromechanical Modeling and Investigating the Effect of Particle Size and the Interface of Phases on the Mechanical Behavior of Dual-Phase Steels

机译:微机械建模和调查粒度的效果和阶段界面对双相钢的力学行为

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摘要

Dual-phase (DP) ferrite-martensite steels have a fine microstructure that consist of martensite islands, dispersed in a ferrite matrix. In the present work, a micromechanical-based finite element (FE) analysis is carried out in order to investigate the mechanical properties of this type of steels, such as yield stress and tensile strength. The step forward contribution of the present study is to insert the effect of the presence of the interface of the constituting phases in the FE model. In order to do so, a micromechanical FE model is developed in which the effect of the interface of the constituting phases is taken into account by means of cohesive elements. The required parameters of the cohesive elements are determined by a trial and error procedure which compares the numerical results to the experimental ones. Experimental data is used to verify the created FE model. This model is then used to investigate the effect of martensite volume fraction and small-to-large particle size ratio of martensite on the deformation behavior of the DP steel. This study shows that considering the interface of the constituting phases greatly affects the numerical results on stress and strain distributions and produces more realistic findings in agreement with experiments. The results show that applying cohesive elements between two phases have reduced tensile strength, yield stress, and the amount of uniform elongation.
机译:双相(DP)铁氧体 - 马氏体钢具有精细的微观结构,由马氏体岛组成,分散在铁氧体基质中。在本作工作中,进行微机械的有限元(Fe)分析,以研究这种钢的机械性能,例如屈服应力和拉伸强度。本研究的前进贡献是插入在Fe模型中的构成相界面的存在的效果。为此,开发了微机械Fe模型,其中通过粘性元素考虑构成相的界面的界面的效果。粘结元件的所需参数由试验和误差程序确定,该试验和误差程序将数值结果与实验结果进行比较。实验数据用于验证创建的FE模型。然后使用该模型来研究马氏体的效果和马氏体小于大于大于大于大于大于大于大的粒度比对DP钢的变形行为。本研究表明,考虑构成阶段的界面极大地影响了应力和应变分布的数值结果,并与实验一致地产生更现实的发现。结果表明,在两相之间施加粘结元素具有降低的拉伸强度,屈服应力和均匀伸长的量。

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