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New Analytical Model Of Expansion Of Spherical Cavity In Brittle Material Based On The Concepts Of Mechanics Of Compressible Porous And Powder Materials

机译:基于可压缩多孔和粉状材料力学概念的脆性材料球腔扩展新解析模型

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In this paper, the concepts of mechanics of porous and powder media are applied for development of new analytical model of expansion of spherical cavity in brittle materials. The model is based on the approach that recognizes the existence of three regions with different rheology: region of comminuted and compacted material; region of pore formation formed by radial cracks; elastically deformed region. Strain-stress state in each region is determined and analyzed. Cavity expansion pressure is determined. Energy losses on elastic deformation, fracture and compaction of material are calculated and compared for a number of ceramic materials. It is shown that the contribution of compaction and fracture in total energy losses is considerable. The presented model avoids the use of rheological characteristics that are difficult to determine and uses instead the porosity of the material.
机译:本文将多孔介质和粉末介质的力学概念应用于新的脆性材料球腔膨胀分析模型的开发。该模型基于识别存在三个不同流变区的方法的基础:粉碎和压实材料的区域;由径向裂纹形成的孔形成区域;弹性变形区域。确定并分析每个区域的应力状态。确定腔膨胀压力。计算并比较了多种陶瓷材料在材料的弹性变形,断裂和压实方面的能量损失。结果表明,压实和断裂对总能量损失的贡献是可观的。提出的模型避免了使用难以确定的流变特性,而是使用了材料的孔隙率。

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