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Influence of residual thermal stresses on fatigue crack growth life of discontinuous reinforcements in metal matrix composites

机译:残余热应力对金属基复合材料中不连续增强材料疲劳裂纹扩展寿命的影响

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摘要

The fatigue life prediction model based on crack propagation from micro-structural features is derived and presented for planar and randomly oriented Discontinuous Reinforced Metal Matrix Composites (DRMMCs). The model contains the influence of micro-structural properties such as aspect ratio, volume fraction of particle/fibre and constraint between particle and the matrix. The effect of residual thermal stresses generated within the matrix during development of composite is considered. The particle/fibre plays a dominant role in the development of the cyclic plastic zone size ahead of the crack tip; moreover, it enhances the cyclic plastic deformation characteristics of DRMMC. The theoretical model-based evaluations for low cycle fatigue in DRMMCs are within the proximity of the experimental results.
机译:推导并提出了基于裂纹扩展的微观结构特征的疲劳寿命预测模型,该模型用于平面和随机取向的不连续增强金属基复合材料(DRMMC)。该模型包含微观结构特性的影响,例如长宽比,颗粒/纤维的体积分数以及颗粒与基质之间的约束。考虑了在复合材料开发过程中在基体内产生的残余热应力的影响。颗粒/纤维在裂纹尖端之前的循环塑性区尺寸的发展中起着主导作用。此外,它增强了DRMMC的循环塑性变形特性。基于理论模型的DRMMC低循环疲劳评估与实验结果接近。

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