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Theoretical characterization of mesoscopic dynamic fracture behaviors of concrete based on an extended self-consistent finite stress model (XSFSM)

机译:基于扩展自洽有限应力模型的混凝土介面动态断裂行为的理论表征(XSFSM)

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摘要

This study presents a theoretical approach to characterize the mesoscopic dynamic fracture behaviors of concrete. Firstly, different fracture behaviors are determined from energy criteria. Secondly, by considering the energy equivalence principle, the Saint-Venant's principle and the Newton's laws of motion, an extended self-consistent finite stress model (XSFSM) is established for dynamic fracture analysis of concrete-like cementitious materials. The XSFSM is validated and modified by comparing with the existing models in design codes and the curve fitting models in literatures. Thirdly, the XSFSM is utilized to propose the meso-level fracture criterion of concrete based on a morphological material model. Parametric study illustrates that the criterion can predict the transgranular and intergranular failure modes of concrete under quasi-static to dynamic loading. At last, assumptions and limitations of the present theoretical approach and its prospects in computational methods are discussed.
机译:本研究提出了一种鉴于混凝土思科动态断裂行为的理论方法。首先,从能量标准确定不同的断裂行为。其次,通过考虑能量等效原则,圣文会的原则和牛顿的运动定律,建立了一种延长的自我一致的有限应力模型(XSFSM),用于混凝土样胶质材料的动态断裂分析。通过与设计代码中的现有模型和文献中的曲线拟合模型进行比较,验证和修改XSFSM。第三,XSFSM用于基于形态材料模型提出混凝土的中间级断裂标准。参数研究说明标准可以预测准静态下的混凝土的跨晶和晶间失效模式,以动态负载。最后,讨论了本理论方法的假设和局限及其在计算方法中的前景。

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