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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Energy Release Rate Approximation for Small Surface Cracks in Three-Dimensional Domains Using the Topological Derivative
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Energy Release Rate Approximation for Small Surface Cracks in Three-Dimensional Domains Using the Topological Derivative

机译:使用拓扑衍生物的三维域中小表面裂缝的能量释放速率近似

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摘要

The topological derivative describes the variation of a response functional with respect to infinitesimal changes in topology, such as the introduction of an infinitesimal crack or hole. In this three-dimensional fracture mechanics work, we propose an approximation of the energy release rate field associated with a small surface crack of any boundary location, direction, and orientation combination using the topological derivative. This work builds on the work of Silva et al. ("Energy Release Rate Approximation for Small Surface-Breaking Cracks Using the Topological Derivative," J. Mech. Phys. Solids 59(5), pp. 925-939), in which the authors proposed an approximation of the energy release rate field which was limited to two-dimensional domains. The proposed method is computationally advantageous because it only requires a single analysis. By contrast, current boundary element and finite element-based methods require an analysis for each crack length-location-direction-orientation combination. Furthermore, the proposed method is evaluated on the non-cracked domain, obviating the need for refined meshes in the crack tip region.
机译:拓扑衍生物描述了关于拓扑中无限变化的响应功能的变化,例如引入无限裂缝或孔。在该三维裂缝力学工作中,我们提出了使用拓扑衍生物的任何边界位置,方向和方向组合的小表面裂纹相关的能量释放率场的近似。这项工作建立在Silva等人的工作。 (“使用拓扑衍生物的小表面破裂裂缝的能量释放速率近似”J. Mech。物理。实体59(5),pp.925-939),其中作者提出了能量释放率场的近似值这仅限于二维域。该方法是计算上有利的,因为它只需要单一分析。相反,当前边界元素和基于有限元的方法需要对每个裂缝长度定位方向方向组合进行分析。此外,在非裂纹结构域中评估所提出的方法,避免了在裂纹尖端区域中对精制网格的需求。

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