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Fracture mechanical analysis of open cell ceramic foams under multi-axial mechanical loading

机译:开孔陶瓷泡沫在多轴机械载荷下的断裂力学分析

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摘要

Ceramic foams made by replica techniques contain sharp edged cavities, which are potential crack initiators. This paper presents an approach to analyse such structures with respect to their fracture mechanical properties. A fundamental domain of an open cell Kelvin foam is used to model the geometry including the cavities and to generate a finite element model of the structure. Sub-models containing crack tip elements are used to resolve the local stress fields at the vicinity of the sharp-edged cavities. The interaction integral is used to compute the local stress intensity factors under multi-axial loading. Using a homogenization approach, a criterion for brittle failure based on the effective stress state is presented. The failure criteria can be extended to account for the anisotropic behaviour of the foam structure.
机译:通过仿制技术制造的陶瓷泡沫包含尖锐的边缘型腔,这是潜在的裂纹引发剂。本文提出了一种分析此类结构断裂力学性能的方法。开孔开尔文泡沫的基本域用于建模包括空腔的几何形状,并生成结构的有限元模型。包含裂纹尖端元素的子模型用于解析锋利型腔附近的局部应力场。相互作用积分用于计算多轴载荷下的局部应力强度因子。使用均质化方法,提出了基于有效应力状态的脆性破坏判据。可以将破坏准则扩展为考虑泡沫结构的各向异性行为。

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