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Experimental Study of Effects of Joint on Rock Fragmentation Mechanism by TBM Cutters

机译:TBM切割器关节关节对岩石碎片机制的影响的实验研究

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To study the effect of rock joint parameters, the joint orientation, the filling situation of joint and the distance between the center of joint and the position of penetration on rock fragmentation mechanism by tunnel boring machines (TBM) cutters, a series of penetration tests were conducted on rock-like specimens using the modified triaxial testing machine. Data of indentation load and penetration depth during the loading process were record and analyzed. Results show that the filling situation of joint can significantly influence the resistance of rock to penetration. The joint interface closer to the position of penetration plays a more positive role in rock fragmentation than that farther to the position of penetration. The joint orientation can greatly affect the peak indentation load, the anti-invasive factor, the crushing work as well as modes of rock fragmentation. With the increase of joint orientation, the peak indentation load, anti-invasive factor and crushing work decrease firstly, and then increase. When joint orientation equals to 60° and 90°, they reach the minimum and maximum values, respectively.
机译:为研究岩石关节参数的影响,联合取向,关节的填充情况和接头中心之间的距离和隧道镗床(TBM)切割器对岩石碎片机制的渗透位置,一系列渗透试验使用改进的三轴试验机在岩石状标本上进行。缩进负载和装载过程中的渗透深度的数据进行了记录和分析。结果表明,关节的填充情况会显着影响岩石的抗渗。接近穿透位置的关节界面在岩石碎片中起比渗透的位置更加积极的作用。联合取向可以极大地影响峰值压痕载荷,防侵入因子,破碎工作以及岩石碎片模式。随着联合取向的增加,峰值压痕载荷,防侵入因子和破碎工作首先减少,然后增加。当接头取向等于60°和90°时,它们分别达到最小值和最大值。

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