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Dynamic Fracture Evolution and Mechanical Behavior of Sandstone Containing Noncoplanar Elliptical Flaws under Impact Loading

机译:冲击载荷作用下含非共面椭圆形缺陷砂岩的动态断裂演化和力学行为

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To investigate the effects of preexisting flaws with different geometries, including flaw inclination angle and ligament angle on dynamic strength, deformation properties, and fracture evolution of rock materials, a series of dynamic impact tests were conducted on green sandstone specimens containing double elliptical flaws using a 75 mm diameter split Hopkinson pressure bar (SHPB) testing device with a high-speed camera recording in real time. The experimental results show that dynamic strength of specimens with different flaw angles is reduced between 5.91% and 39.92% but from 18.50% to 28.44% for specimens with different ligament angles, indicating that the effect of the flaw angle on the dynamic strength is more significant than that of the ligament angle. However, the dynamic deformation properties are influenced greatly by the ligament angle. Macroscale cracks mostly initiate at or near the flaw tips and then propagate in different paths with varying flaw geometries, leading to the ultimate failure in five typical modes based on the crack coalescence. Shear crack coalescence and tensile crack coalescence are identified through both macroscopic fracturing photos taken by the high-speed camera and microscopic surface morphology obtained by the scanning electron microscope (SEM).
机译:为了研究预先存在的具有不同几何形状的缺陷(包括缺陷倾斜角和韧带角)对岩石材料的动态强度,变形特性和断裂演化的影响,使用双椭圆缺陷对包含双重椭圆形缺陷的绿色砂岩样品进行了一系列动态冲击试验。直径75毫米的霍普金森压力分离式压力测试仪(SHPB),具有高速摄像机实时记录功能。实验结果表明,不同韧度角试样的动态强度降低了5.91%〜39.92%,但从不同韧度角试样的动态强度降低了18.50%至28.44%,表明缺陷角对动态强度的影响更为显着。比韧带角大。但是,动态变形特性受韧带角度的影响很大。宏观裂纹主要在裂纹尖端处或附近开始,然后以不同的裂纹几何形状以不同的路径传播,从而导致基于裂纹合并的五种典型模式的最终破坏。剪切裂纹合并和拉伸裂纹合并通过高速相机拍摄的宏观断裂照片和扫描电子显微镜(SEM)获得的微观表面形态来识别。

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