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Transverse creep and stress relaxation induced by interface diffusion in unidirectional metal matrix composites

机译:单向金属基复合材料界面扩散引起的横向蠕变和应力松弛

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摘要

An analytical solution is developed to predict the transverse creep rate induced by interface diffusion in unidirectional fiber-reinforced composites. The driving force for the interface diffusion is the normal stress acting on the interface, which is obtained from rigorous Eshelby inclusion theory. The closed-form solution is an explicit function of the applied stress, volume fraction and radius of the fiber, as well as the modulus ratio between the fiber and the matrix. It is interesting that the solution is formally similar to that of Coble creep in polycrystalline materials. For the application of the present solution in the realistic composites, the scale effect is taken into account by finite element analysis based on a unit cell. Based on the solution, a closed-form solution is also given as a description of stress relaxation induced by interfa-cial diffusion under constant strain. In addition, the analytical solution for the interface stress presented in this study gives some insight into the relationship between the interface diffusion and interface slip.
机译:开发了一种分析解决方案,以预测单向纤维增强复合材料中界面扩散引起的横向蠕变速率。界面扩散的驱动力是作用在界面上的法向应力,这是从严格的Eshelby包含理论获得的。封闭形式的解决方案是所施加的应力,纤维的体积分数和半径以及纤维与基体之间的模量比的明确函数。有趣的是,该溶液在形式上与多晶材料中的Coble蠕变相似。对于本解决方案在实际复合材料中的应用,通过基于晶胞的有限元分析考虑了比例效应。基于该解,还给出了封闭形式的解,作为在恒定应变下界面扩散引起的应力松弛的描述。此外,本研究中提出的界面应力解析解决方案使人们对界面扩散和界面滑移之间的关系有了一定的了解。

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