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A New LEFM Based Description of Concrete Fracture and Size Effects

机译:基于LEFM的混凝土断裂和尺寸效应的新描述。

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Concrete is a so called quasi-brittle material which,despite predominantly elastic material response,exhibits in tension loading a stable non-linear fracture response,when tested under displacement control.The reason for the non-linearity is the development of a fracture process zone,in front of the crack,due to micro-cracking and crack bridging.It has become increasingly popular to model the fracture process zone with different cohesive zone models.However,their use requires sophisticated finite element modeling and their success is directly related to the correctness of the assumed stress relaxation in the fracture process zone.An alternative is to use LEFM combined with an effective crack length.The effect of the fracture process zone is to make the specimen sense the crack as being longer than a0+Δa.The fracture process zone causes thus an effective increase in the crack driving force but also the apparent fracture resistance increases since the fracture process zone effectively "blunts" the crack tip.This simple method,that does not require any finite element modeling,can be used as an aid to select the proper cohesive zone model for more sophisticated modeling.
机译:混凝土是一种所谓的准脆性材料,尽管主要是弹性材料,但在位移控制下进行测试时,在拉伸载荷下表现出稳定的非线性断裂响应。非线性的原因是断裂过程区的发展在裂缝前,由于微裂纹和裂缝桥接,用不同的内聚力区域模型对断裂过程区域进行建模已变得越来越普遍。但是,它们的使用需要复杂的有限元建模,其成功与否直接取决于裂缝的形成。断裂过程区假定应力松弛的正确性;另一种方法是使用LEFM结合有效裂纹长度。断裂过程区的作用是使试样感觉到裂纹的长度大于a0 +Δa。加工区因此导致裂纹驱动力的有效增加,但由于断裂加工区有效地“ b这种简单的方法不需要任何有限元建模,可以用来帮助选择合适的内聚区模型以进行更复杂的建模。

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