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Effect of the Preexisting Fissure with Different Fillings in PMMA on Blast-Induced Crack Propagation

机译:PMMA对不同填充物的预先存在的裂缝对爆炸诱导裂纹繁殖的影响

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摘要

In order to study the dynamic crack propagation law in fissured rock under the different fillings, a borehole with 7 mm diameter was processed in the center of a polymethyl methacrylate (PMMA) specimen. The preexisting fissure with different angles (θ = 0°, 45°, and 90°) and different distances (L = 20, 30, 40, 50, and 60 mm) was prefabricated around the borehole. Air, soil, and water were employed as fillings in the fissure, respectively. The experiment of explosive loading was carried out by a single detonator, and the dynamic crack propagation process of the experimental specimens was simulated by nonlinear dynamics software AUTODYN. The results show that the blast-induced cracks are the most favorable and unfavorable to propagate when θ = 0° and θ = 45°, respectively. The length of the far-end wing crack decreases with the increase of the distance L, and the length of the far-end wing crack in the air-filled specimens is larger than those in soil-filled and water-filled specimens. The damage-pressure curve of the far-end wing crack initiation point shows “S”-type change, and the damage-pressure curve shows two obvious damage evolution processes of initial nonlinear and later linear stages. With the increase of the angle, the distance from the borehole to the crack initiation point decreases and the compressive stress wave peak value should increase, but the tensile force peak value decreases. Meanwhile, the relationships between pressure and average velocity of the initiation point and L, θ, and fillings are established, respectively. The numerical simulation agrees with the experimental results well. It can be seen that the fillings types, angle, and distance have a mutual restraint relationship with the reflected and absorbed stress wave energy. The phenomenon of crack propagation under different fillings can be explained well from the viewpoint of discontinuity degree and stress wave energy, which reveals the general law of blast-induced crack propagation.
机译:为了在不同填充物下的裂纹岩石中的动态裂纹繁殖规律,在聚甲基丙烯酸甲酯(PMMA)样本的中心加工具有7mm直径的钻孔。具有不同角度(θ= 0°,45°和90°)的预先存在的裂缝和不同的距离(L = 20,30,40,50和60mm)在钻孔周围预制。空气,土壤和水分别作为裂隙中的填充物。爆炸载荷的实验是通过单个雷管进行的,并且通过非线性动力学软件自动模拟实验标本的动态裂纹传播过程。结果表明,当分别θ= 0°和θ= 45°时,爆炸诱导的裂缝是最有利的,并且不利于传播。远端翼裂缝的长度随着距离L的增加而降低,充气样品中的远端翼裂纹的长度大于土壤填充和填充充水样品的长度。远端翼裂裂纹启动点的损伤压力曲线显示“S”型变化,损伤压力曲线显示了初始非线性和后续线性级的两个明显的损伤演化过程。随着角度的增加,从钻孔到裂纹起始点的距离降低,并且压缩应力波峰值应该增加,但拉伸力峰值减小。同时,分别建立了发起点和L,θ和填充物的压力和平均速度之间的关系。数值模拟与实验结果相一致。可以看出,填充类型,角度和距离具有与反射和吸收的应力波能的相互约束关系。从不连续程度和应力波能的观点来看,可以很好地解释不同填充物下的裂纹传播现象,这揭示了爆炸诱导裂纹繁殖的一般规律。

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