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首页> 外文期刊>Acta Metallurgica et Materialia >THERMOELASTIC ANALYSIS OF MATRIX CRACK GROWTH IN PARTICULATE COMPOSITES
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THERMOELASTIC ANALYSIS OF MATRIX CRACK GROWTH IN PARTICULATE COMPOSITES

机译:颗粒状复合材料基体裂纹扩展的热弹性分析

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We examine the conditions under which differences in thermal expansion between a particle and the matrix lead to crack growth within the matrix. Using linear elasticity fracture machanics, we obtain closed-form, analytical results for the case of a penny shaped crack present in the matrix interacting with a spherical inclusion which is misfitting with respect to the matrix. A simple and direct relationship is established between the strain energy release rate, the crack size, the crack orientation with respect to the inclusion, the crack/inclusion separation, the degree of thermal expansion mismatch and the elastic properties of the medium. We also analyze the size to which these cracks can grow and find that for a given misfit strain and material properties, crack growth is inhibited beyond a certain critical crack size. We find that beyond this critical size, the elastic strain energy released upon crack growth is no longer sufficient to compensate for the energy expended in extending the crack, since the crack is growing into the rapidly decreasing stress field. The modification of the above conditions for crack growth due to the superposition of an external stress field has also been analyzed. The preferred orientation of these cracks as a function of misfit strain is predicted. The implication of these results for thermal cycling are analyzed.
机译:我们研究了粒子与基体之间热膨胀差异导致基体内裂纹扩展的条件。使用线性弹性断裂力学,我们获得了存在于基体中的便士形裂纹与球形夹杂物相互作用的闭合形式的分析结果,球形夹杂物相对于基体不适合。在应变能释放速率,裂纹尺寸,相对于夹杂物的裂纹取向,裂纹/夹杂物的分离,热膨胀失配程度和介质的弹性之间建立了简单直接的关系。我们还分析了这些裂纹可扩展到的尺寸,发现对于给定的失配应变和材料特性,超过一定的临界裂纹尺寸,裂纹扩展受到抑制。我们发现,超出此临界尺寸时,裂纹扩展时释放的弹性应变能不再足以补偿扩展裂纹时所消耗的能量,因为裂纹正逐渐增长到应力场迅速减小的过程中。还分析了由于外部应力场的叠加而导致的上述裂纹扩展条件的变化。预测了这些裂纹的优选取向与失配应变的函数关系。分析了这些结果对热循环的影响。

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