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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Experimental and numerical studies on dynamic crack growth in layered slate rock under wedge impact loads: part Ⅰ—plane strain problem
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Experimental and numerical studies on dynamic crack growth in layered slate rock under wedge impact loads: part Ⅰ—plane strain problem

机译:楔形冲击载荷作用下层状板岩动态裂纹扩展的实验和数值研究:第一部分—平面应变问题

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摘要

The experimental and numerical investigations presented in this paper were carried out to determine the splitting forces and crack propagation scenarios of naturally bedded layered slate rock. Splitting loads were determined by impact splitting of regular-sized slate blocks under plane strain test loading conditions, using a hydraulic actuator with a wedge-shaped indenter. The mechanical properties of slate blocks required for numerical analyses were obtained from detailed experimental testing. The velocity of dynamic crack propagation in slate blocks under indenting wedge impact loading was determined using a series of strain gauge sensors. Numerical studies were carried out using ABAQUS, a general purpose, finite element analysis (FEA) program. Mode I dynamic crack propagation was simulated numerically by the gradual releasing of the restrained node on the symmetric plane of the specimens. Mode I stress intensity factors were computed for different crack lengths and the results were compared with the plane strain material fracture toughness obtained from earlier experiments/FEA. Very good agreement was obtained between analysis results and the measured fracture toughness value of slate, for the applied impact splitting load. Using the equation derived from a parametric study, of results obtained from the numerical analysis of different sizes of slate blocks, the maximum theoretical impact splitting force was determined using the plane strain fracture toughness value obtained from FEA. The difference between the loads obtained from the experimental studies and the derived empirical equation, varied between + 4.96% and —32.34%.
机译:本文进行了实验和数值研究,以确定天然层状板岩的劈裂力和裂纹扩展情况。通过使用带有楔形压头的液压致动器,在平面应变测试载荷条件下,通过对常规尺寸的板岩块进行冲击分裂来确定分裂载荷。数值分析所需的板岩块的机械性能是通过详细的实验测试获得的。使用一系列应变仪传感器确定了在压入楔形冲击载荷作用下板块中动态裂纹扩展的速度。使用ABAQUS(一种通用的有限元分析程序)进行了数值研究。通过逐渐释放试样对称面上的约束节点,对I型动态裂纹扩展进行了数值模拟。计算了不同裂纹长度下的I型应力强度因子,并将结果与​​早期实验/ FEA获得的平面应变材料的断裂韧性进行了比较。对于施加的冲击劈裂载荷,分析结果与测量的板岩断裂韧性值之间取得了很好的一致性。使用从参数研究得出的方程式,通过对不同尺寸的板岩块进行数值分析获得的结果,使用从FEA获得的平面应变断裂韧性值确定最大理论冲击劈裂力。从实验研究获得的载荷与导出的经验公式之间的差在+ 4.96%和-32.34%之间变化。

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