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Experimental Investigations on Crack Propagation Characteristics of Granite Rectangle Plate with a Crack (GRPC) under Different Blast Loading Rates

机译:不同爆破率下裂纹(GRPC)花岗岩矩形板裂纹传播特性的实验研究

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摘要

The experimental system of 3D digital image correlation (3D-DIC) is set up to eliminate a certain extent of out-of-plane motion for accurate measuring the full-field strain field during crack propagation, and the effect of blast loading rates of fracture behavior of granite rectangle plate with a crack (GRPC) is investigated. The experimental results indicated that the maximum values of the strain concentration zone do not fully represent the crack tip during the whole process of crack propagation. The axial strain threshold value tip (ASTVT) plotting with lines and coordinate contours corresponding with the actual crack at the shooting area can be used to describe the position of the crack. The axial strain 1.3% is more practical to obtain crack velocity and average crack velocity, and the average crack velocity decreases as the blast loading rates increase. Through observing the relationship between crack width and time, it can be found that there are three stages, and the crack width increases as the blast loading rates increase.
机译:建立3D数字图像相关(3D-DIC)的实验系统,以消除一定程度的外平面运动,以便在裂纹传播期间精确测量全场应变场,以及爆破裂缝裂缝率的效果研究了裂缝(GRPC)的花岗岩矩形板的行为。实验结果表明应变浓度区的最大值在整个裂纹繁殖过程中没有完全代表裂纹尖端。用线条和坐标轮廓绘制的轴向应变阈值尖端(ASTVT)可以使用与拍摄区域的实际裂缝相对应的坐标轮廓来描述裂缝的位置。轴向菌株1.3%更实用,以获得裂缝速度和平均裂纹速度,并且随着喷砂加载率的增加,平均裂纹速度降低。通过观察裂缝宽度和时间之间的关系,可以发现存在三个阶段,并且随着爆破加载率的增加,裂缝宽度增加。

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