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首页> 外文期刊>International Journal of Fracture >On the Fracture Models Determined by the Continuum-strong Discontinuity Approach
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On the Fracture Models Determined by the Continuum-strong Discontinuity Approach

机译:连续-强间断法确定的断裂模型

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The paper focuses on the Continuum Strong Discontinuity Approach (CSDA) to fracture mechanics, and the traction-separation cohesive laws induced from continuum dissipative models as their projections onto the failure interface. They are compared with the cohesive laws commonly used for the fracture simulation in quasi-brittle materials, typically concrete. Emphasis is placed in the analysis of the mechanical stress-strain states induced by the CSDA into the fracture process zone: first when the damage mechanism is initiated and, after, when the cohesive model determines the crack response. The influence of the material parameters, particularly the fracture energy and the initial continuum softening modulus, in the obtained phenomenological responses is also analyzed. Representative numerical solutions of fracture problems are finally presented.
机译:本文将重点放在断裂力学的连续强不连续性方法(CSDA)上,以及从连续性耗散模型推导的牵引力-分离内聚规律作为它们在破坏界面上的投影。将它们与准脆性材料(通常为混凝土)中通常用于断裂模拟的内聚规律进行比较。着重分析CSDA引起的进入断裂过程区域的机械应力-应变状态:首先是启动损伤机制,然后是内聚模型确定裂纹响应。还分析了材料参数的影响,特别是断裂能和初始连续软化模量在获得的现象学响应中的影响。最后给出了断裂问题的代表性数值解。

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