Simulation of crack nucleation in materials with regularly arranged spherical pores under multiaxial loading conditions

A. V. Zabolotsky, A. O. Migashkin, A. Grigor’ev, A. Dmitriev, M. Turchin, V. Khadyev, E. V. Shil’ko
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Abstract

A numerical study of the initial stage of crack growth in a material containing spherical pores under multiaxial compression (constrained conditions) has been carried out using the finite element method. The influence of the pore spacing and the mechanical properties of the material on the fracture localization and the direction of crack growth has been analyzed. Both brittle and ductile materials were studied. It has been established that material  properties and the mutual arrangement of defects have a significant influence on the  direction  of  propagation  of  cracks arising  on  the  stress  concentrators  (structure  defects), up to mutually perpendicular directions (for uniaxial of the characteristic sizes of the region of influence of spherical pores on each other, beyond which the stress fields of the neighboring elements of the structure do not overlap. The dependences of the sizes of this area on the elastic characteristics of the matrix material are shown. The obtained results are relevant for obtaining numerical estimates of the duration of the initial stages of quasi- brittle fracture of ceramic-based heterophase materials, refractories in particular. Ill. 6. Ref. 26. Tab. 1.
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多轴加载条件下具有规则排列的球形孔隙材料裂纹形核的模拟
采用有限元方法对含球形孔隙材料在多轴压缩(约束条件)下裂纹扩展的初始阶段进行了数值研究。分析了孔隙间距和材料力学性能对断裂局部化和裂纹扩展方向的影响。对脆性材料和韧性材料进行了研究。确定了材料性能和缺陷的相互排列对应力集中点(结构缺陷)上产生的裂纹的扩展方向有显著影响,直至球形孔影响区域特征尺寸的单轴方向相互垂直,超过该方向,相邻结构单元的应力场不重叠。显示了该区域的大小与基体材料弹性特性的关系。所得结果与获得陶瓷基异相材料,特别是耐火材料的准脆性断裂初始阶段持续时间的数值估计有关。生病了。6。Ref。26岁。选项卡。1。
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