MMC残余热应力的数值研究

Q3 Engineering
Tayeb Nehari
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引用次数: 1

摘要

摘要本文对含双裂纹碳化硅颗粒增强铝基体的残余热应力进行了数值研究分析。研究了在冷却过程中不同温度梯度影响下的热机械行为。为了更真实地模拟这些材料在不同载荷下的微观结构,可以使用代表性的体积元素。本文提出了三种不同类型的裂纹宽度a=5μm、10μm和15μm。通过考虑0.1、0.2和0.5μm颗粒附近不同贯穿件的大范围裂纹来计算热残余应力。关于应力沿裂纹平面和颗粒附近的分布,结果表明,裂纹在基体中的渗透导致了不对称性。裂纹和颗粒之间的间距对残余应力的产生起着重要作用。间距越小,σzz法向残余应力的内应力越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Study of Residual Thermal Stresses in MMC
Abstract In this paper, numerical study analysis of residual thermal stresses in aluminum matrix reinforced with silicon carbide particles with double-crack has been carried out. is studied in order to determine the thermo-mechanical behavior under the effect of different temperature gradients during cooling. For a more realistic simulation of the microstructure of these materials subjected to different loadings, a representative volume element may be used. In this paper, three different types of crack width a = 5 μm, 10 μm, 15 μm, has been carried. The thermal residual stresses are calculated by considering a wide range of cracks of different penetrations proximity to particle of 0.1, 0.2 and 0.5 μm. regarding the distribution of the stresses along the plane of the crack and in vicinity of the particle, results show that the penetration of the crack in the matrix causes an asymmetry. The inter-distance between crack and particle plays an important role regarding the generation of residual stresses. The lower the inter-distance, the higher the internal stresses of normal residual stresses of σzz.
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来源期刊
Mechanics and Mechanical Engineering
Mechanics and Mechanical Engineering Engineering-Automotive Engineering
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