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Spontaneous fracture of growing precipitates with large misfit strain

机译:失配应变大的生长沉淀物的自发破裂

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Precipitates that form as a result of phase transformation are studied with regard to mechanical behaviour and initiation of internal cracks. The focus is on precipitates occupying a larger volume than the surrounding matrix. Further the study is restricted to precipitates growing by incorporating material transformed from being matrix material to the phase of the precipitate. The phase transformation is here treated as a simple homogeneous swelling. The classical solutions for expanding inclusions predict that the inclusion becomes subjected to a constant homogeneous hydrostatic compression. During the process analysed here, added transformed material progressively relieve the compressive stress in the interior of the precipitate. As the process continues the stresses change from compression to tension in both radial and tangential directions in the centre of the precipitate. Further, growth of cracks in precipitates with poor fracture mechanical properties are studied. To simplify the analysis it is assumed that the fracture toughness is insignificant. The prediction is that around a third of the precipitate will fracture. The presence of a crack only has an insignificant effect on the load exerted by the swelling precipitate on the matrix.
机译:研究了由于相变而形成的沉淀物的力学行为和内部裂纹的产生。重点是沉淀物比周围的基质占据更大的体积。此外,该研究仅限于通过结合从基质材料转变为沉淀物相的物质来生长沉淀物。在此,相变被视为简单的均匀溶胀。扩展夹杂物的经典解决方案预测,夹杂物会受到恒定的均匀静水压力。在此处分析的过程中,添加的转化材料逐渐释放了沉淀内部的压缩应力。随着过程的继续,应力在沉淀中心的径向和切线方向上都从压缩变为拉伸。另外,研究了断裂机械性能差的析出物中的裂纹扩展。为了简化分析,假定断裂韧性是微不足道的。预测是大约三分之一的沉淀物会破裂。裂纹的存在对膨胀沉淀物在基体上施加的载荷仅具有微不足道的影响。

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