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Tension-Compression Damage Model with Consistent Crack Bandwidths for Concrete Materials

机译:张力压缩损伤模型,用于混凝土材料的一致裂缝带宽

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摘要

This paper proposes a tension-compression damage model for concrete materials, formulated within the framework of thermodynamics of irreversible processes. The aim of this work is to solve the following problems: the premature divergence of numerical solutions under general loading conditions due to the conflict of tensile and compressive damage bounding surfaces, which is a result of the application of the spectral decomposition method to distinguish tension and compression, and the unsatisfactory reproduction of distinct tension-compression behaviors of concrete by strain-driven damage models. The former is solved by the sign of the volumetric deformation, while the latter is solved via two separated dissipation mechanisms. Moreover, of specific interest is an improved solution to the problem of mesh-size dependency using consistent crack bandwidths, which takes into account situations with irregular meshes and arbitrary crack directions in the context of the crack band approach. The performance of the model is validated by the well-documented experimental data. The simplicity and the explicit integration of the constitutive equations render the model well suitable for large-scale computations.
机译:本文提出了一种用于混凝土材料的张力压缩损伤模型,其在不可逆过程的热力学框架内配制。这项工作的目的是解决以下问题:由于拉伸和压缩损伤损伤的冲突,一般装载条件下的数值解决方案过早发散,这是应用光谱分解方法来区分张力和伸张张力的结果应变驱动损伤模型,压缩,以及混凝土不同张力压缩行为的不令人满意的再现。前者通过体积变形的迹象来解决,而后者通过两个分离的耗散机制解决。此外,特定兴趣是使用一致裂纹带宽对网格尺寸依赖性问题的改进解决方案,这在裂缝带方法的上下文中考虑了具有不规则网格和任意裂缝方向的情况。通过良好地记录了良好的实验数据验证了模型的性能。本构方程的简单性和显式集成使得模型适用于大规模计算。

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