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Rock breaking of conical cutter with assistance of front and rear water jet

机译:借助前后喷水器将圆锥形切割机打碎

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During the excavation of roadway or tunnel excavation in hard and abrasive rock, the conical cutter is subjected to high cutting forces and serious wear. Therefore, different combinations of water jet and cutter were put forward for this issue, and the damage models of rock breaking with a conical cutter under the assistance of front and rear water jet were established based on the SPH and Lagrange algorithm. By analyzing the dynamic processes of rock breaking with a single cutter under different cutting depths, the cutting force curves were established and compared with the experimental data, the simulation were proved feasible and effective. Then, the effects of rock breaking with the assistance of water jets at different positions and pressures were analyzed, and comparisons were conducted with the effect of rock breaking with a single conical cutter without water jet. The results show that: the numerical cutting force of rock breaking with a single conical cutter coincides well with the theoretical and experimental data. Compared with the peak cutting force of cutter without water jet, the peak cutting force of cutter with the assistance of the front water jet (FWJ) reduces by about 14-30%, and the reduction percentage decreases with the cutting depth, while, the peak cutting force of cutter with the assistance of the rear water jet (RWJ) reduces by about 28-40%, and the reduction percentage is almost not affected by the cutting depth. The effect of rock breaking with the RWJ is better than the FWJ, and the RWJ with the incline angle 5° is the best, the peak cutting force of cutter reduces by about 31%, 39%, 43%, 45% with the water jet at different pressures of 20 MPa, 40 MPa, 60 MPa, 80 MPa, respectively. The effect of rock breaking can be improved by increasing the pressure of water jet.
机译:在坚硬和磨蚀性的岩石中进行巷道开挖或隧道开挖时,圆锥形切刀承受高切削力和严重磨损。因此,针对该问题提出了不同的喷水刀组合,并基于SPH和Lagrange算法,建立了在前后喷水的帮助下采用圆锥形刀具破碎岩石的破坏模型。通过分析不同切削深度下单刀岩石破碎的动力学过程,建立了切削力曲线,并与实验数据进行了比较,证明了该模拟的可行性和有效性。然后,分析了在不同位置和压力​​下借助喷水器进行岩石破碎的效果,并与不带喷水器的单个锥形切割机对岩石破碎的效果进行了比较。结果表明:单圆锥刀破岩的数值切削力与理论和实验数据吻合良好。与没有水刀的刀具的最大切削力相比,借助前刀水刀(FWJ)的刀具的最大切削力降低约14-30%,且降低的百分比随着切削深度的增加而降低,而借助后喷水(RWJ),刀具的最大切削力降低了约28-40%,降低的百分比几乎不受切削深度的影响。 RWJ的破岩效果优于FWJ,倾斜角为5°的RWJ效果最好,用水时刀具的峰值切削力降低约31%,39%,43%,45%分别在20 MPa,40 MPa,60 MPa,80 MPa的不同压力下喷射。可以通过增加喷水的压力来改善岩石破碎的效果。

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