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Effect of holes on in-plane shear (Mode Ⅱ) crack sub-critical propagation of rock

机译:孔对平面内剪切(MODEⅡ)裂纹岩体的影响

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Shear-box (i.e. Compression-shear) test and newly designed electrically conductive adhesive method were used to measure shear crack sub-critical propagation time and rate of sandstone specimen. Different cubic specimens with and without holes were tested to study the effect of holes on the shear crack sub-critical propagation. Numerical and experimental results show that three independent variables of hole, the interval distance S, the distance between the center of hole and the crack tip L, and hole radius R,have different contribution to the ratio of stress intensity factor of the specimen with holes to that of the specimen without hole,KⅡ/KⅡ0. Increasing S and decreasing L and R will result in the decrease of KⅡ/KⅡ0 and help crack arrest. The weight relation of the independent variables for KⅡ/KⅡ0 is S>L>R. The specimen DH3 with the largest value of S and the smallest values of L and R has the longest sub-critical crack propagation time and the smallest sub-critical crack propagation rate. Adding two suitable holes symmetrically to the original crack plane in rock specimen is considered to be a potential method for crack arrest of rock.
机译:剪切盒(即压缩剪切)试验和新设计的导电粘合方法用于测量剪切裂纹亚临界传播时间和砂岩样本速率。测试具有和不具有孔的不同立方体样本,以研究孔对剪切裂纹亚临界传播的影响。数值和实验结果表明,三个独立的孔变量,间隔距离S,孔中心之间的距离和裂纹尖端L,孔半径R,对具有孔的标本的应力强度因子的比率具有不同的贡献对于没有孔的标本,KⅡ/KⅡ0。增加的S和降低L和R将导致kⅡ/kⅡ0减少,并有助于裂缝。 KⅡ/KⅡ0的独立变量的重量关系是S> L> R。具有最大值的标本DH3和L和R的最小值具有最长的亚临界裂纹传播时间和最小的子临界裂纹传播速率。将两个合适的孔对称地向岩石标本中的原始裂缝平面加入,被认为是岩石裂缝的潜在方法。

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