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首页> 外文期刊>International Journal of Fracture >Irreversible growth of a spherical cavity in rubber-like material: A fracture mechanics description
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Irreversible growth of a spherical cavity in rubber-like material: A fracture mechanics description

机译:橡胶状材料中球形空腔的不可逆生长:断裂力学描述

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摘要

A fracture mechanics analysis is performed to get a criterion for irreversible growth of cavities in rubber-like materials. The limit of reversible growth of a hole is calculated using the Griffith fracture criterion for a hyperelastic incompressible material (neo-Hookean behavior law) submitted to a hydrostatic tension under the assumptions of large deformations. It leads to an expression of the energy released rate G for the crack-like hole. This expression is shown to he different from results obtained by other authors. The reversible deformation of the cavity under finite triaxiality is also examined by considering a particular field of kinematically admissible displacements. The so obtained approached solution is used to extend the expression of the energy released rate G to various triaxial tension loadings.
机译:进行断裂力学分析以获得橡胶状材料中空腔不可逆生长的判据。孔的可逆生长极限是根据格里菲斯断裂准则计算的,该准则针对的是在大变形假设下承受静水压力的超弹性不可压缩材料(新胡克行为定律)。这导致了裂纹状孔的能量释放速率G的表达。这种表达方式与其他作者的结果不同。还通过考虑运动学上允许的位移的特定区域来研究在有限三轴性下腔体的可逆变形。如此获得的逼近解用于将能量释放速率G的表达式扩展到各种三轴张力载荷。

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