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Numerical Investigation of Stress Singularities in Cracked Bimaterial Body

机译:裂纹自体体压力奇异性的数值研究

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Composite materials or generally materials with interfaces are nowadays used in many varied engineering applications. In comparison with classical engineering materials the existence of material interface causes locally different stress distribution, which can strongly influence behaviour of whole structure and can have an important influence on failure mechanisms of such materials. The paper presented is devoted to the investigation of stress singularity exponents of a crack growing in a bimaterial body perpendicularly to the interface and touching the material interface. Discrepancies between value of stress singularity exponent in the centre of bimaterial body and on the free surface were found. The assumptions of linear elastic fracture mechanics (LEFM) and small scale yielding (SSY) are considered. For numerical calculations finite element analysis was used. Results obtained can contribute to a better understanding of failure of materials with interfaces.
机译:现在,复合材料或通常具有接口的材料在许多各种工程应用中使用。与古典工程材料相比,材料界面的存在导致局部不同的应力分布,这可能强烈影响整个结构的行为,并且可以对这种材料的失效机制产生重要影响。提出的纸张垂直于界面垂直于自体体内生长的裂缝的应力奇异性指数研究并触摸材料界面。发现了自由体内和自由表面中心的应力奇点指数之间的值差异。考虑了线性弹性骨折力学(LEFM)和小规模屈服(SSY)的假设。对于数值计算,使用了有限元分析。所获得的结果可以有助于更好地理解具有界面的材料失效。

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