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首页> 外文期刊>Frattura e Integrita Strutturale >Numerical simulation of crack propagation behavior of a semi-cylindrical specimen under dynamic loading
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Numerical simulation of crack propagation behavior of a semi-cylindrical specimen under dynamic loading

机译:动态载荷作用下半圆柱试样裂纹扩展行为的数值模拟

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摘要

To design and evaluate the analytical crack propagation of a specimen under dynamic load, measurement of dynamic fracture parameters is necessary. However, analytical methods have significant complexity, and experimental methods are also time-consuming that require high precision and considerable funding. Therefore, numerical methods can be used to solve these problems. The Extended Finite Element Method (X-FEM) as a powerful and efficient tool can be used for this purpose. In this paper, X-FEM code in ABAQUS software was used in order to simulate crack growth in a semi-circular specimen with pre-existed crack and also intact specimen to determine dynamic stress intensity factor (DSIF) using displacement extrapolation method. To verify the numerical modeling output, the curve of crack surface opening displacement (CSOD) in X-FEM model has been compared with the experimental curve. Moreover, concrete damage plastic (CDP) model was used to validate X-FEM simulation results. The results show that the DSIF for a cracked sample under a maximum dynamic load 3000 N is equal to 0.5 Mpa . Comparison between the CDP and X-FEM results showed that in both approaches, the same area for crack propagation was also determined.
机译:为了设计和评估在动态载荷下试样的分析裂纹扩展,必须测量动态断裂参数。但是,分析方法非常复杂,实验方法也很耗时,需要高精度和大量资金。因此,可以使用数值方法来解决这些问题。扩展有限元方法(X-FEM)作为强大而有效的工具可用于此目的。本文使用ABAQUS软件中的X-FEM代码来模拟具有预先存在的裂纹的半圆形试样中的裂纹扩展,并使用位移外推法对完整的试样进行模拟,以确定动应力强度因子(DSIF)。为了验证数值模拟输出,将X-FEM模型中的裂纹表面张开位移(CSOD)曲线与实验曲线进行了比较。此外,使用混凝土破坏塑料(CDP)模型来验证X-FEM仿真结果。结果表明,最大动载荷为3000 N时,裂纹样品的DSIF等于0.5 Mpa。 CDP和X-FEM结果之间的比较表明,在两种方法中,都确定了相同的裂纹扩展区域。

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