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Mesomechanical Investigation of the Relationship between the Length of the Fracture Process Zone and Crack Extensions in Concrete

机译:混凝土裂缝处理区长度与混凝土裂缝延伸关系的疏松关系

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This paper deals with a mesomechanical modeling of fracture in concrete like quasi-brittle materials. The paper seeks to provide insight regarding the variation of the fracture process zone (FPZ) length during the cracking process. The correlation between the FPZ length and the crack extension is also investigated. The FPZ variation is investigated through the evolution of cohesive tangential stresses along the crack path of different notched beams under three-point bending tests. The concept of equivalent linear elastic fracture mechanics is then employed to compute the crack extensions. The mesoscale investigation shows that the relationship between the FPZ length and the crack length is non linear. Furthermore, the numerical crack extensions are used to investigate the R-curve. It is shown that the R-curve is size-dependent and notch-sensitive.
机译:本文涉及混凝土中骨折的骨折模型,如准脆性材料。本文旨在提供关于裂缝过程中骨折处理区(FPZ)长度的变化的洞察力。还研究了FPZ长度与裂缝延伸之间的相关性。通过在三点弯曲试验下沿着不同缺口梁的裂纹路径的粘性切向应力的演化来研究FPZ变化。然后采用等效线性弹性断裂力学的概念来计算裂缝延伸部。 Messcale调查表明,FPZ长度与裂缝长度之间的关系是非线性的。此外,使用数值裂缝延伸部用于研究R曲线。结果表明,R曲线是尺寸依赖性和缺口敏感的。

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