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首页> 外文期刊>International Journal of Damage Mechanics >Dynamic localization of damage and microstructural length influence
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Dynamic localization of damage and microstructural length influence

机译:损伤的动态定位和微观结构长度影响

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摘要

>In the present contribution a localization analysis is performed for a two-scale dynamic damage model. The damage evolution law considered here results by homogenization from micro-crack propagation criteria and involve a characteristic length of the microstructure. For the one-dimensional dynamic system, we study the localization of strain and damage using analytical and numerical methods. An instability analysis based on harmonic perturbations of a homogeneous state for the linearized equations reveals wave dispersion properties and an intrinsic length of the model is deduced in the high frequency regime. The explicit dependence of this intrinsic length on the microstructural length and the damage level is obtained. Numerical simulations of dynamic tests illustrate the localization of damage, strain-rate sensitivity of the tensile strength and the influence of the size of the microstructure. The model predictions are compared with experimental results for spalling tests on concrete specimens. It is shown that the damage model is able to reproduce the observed influences of the strain rate and the size of the microstructure on the dynamic tensile strength.
机译:在本贡献中,对双级动态损伤模型进行定位分析。这里考虑的损伤演化法通过从微裂纹传播标准均化并涉及微观结构的特征长度来导致。对于一维动态系统,我们研究了使用分析和数值方法的应变和损伤的定位。基于线性化方程的均匀状态的谐波扰动的不稳定性分析揭示了波分散性质,并且在高频状态下推导了模型的内在长度。获得这种固有长度对微观结构长度和损伤水平的显式依赖性。动态测试的数值模拟说明了抗拉强度的损伤,应变率灵敏度的定位和微观结构的尺寸的影响。将模型预测与实验结果进行了比较,以便在混凝土试样上剥落试验。结果表明,损伤模型能够再现所观察到的应变速率和微观结构的尺寸对动态拉伸强度的影响。

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