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Hard Rock Disintegration Process and its Numerical Solution

机译:硬岩崩解过程及其数值解

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This paper is focused on a numerical analysis of the hard rock (ore) disintegration process. There is discussed the possibility of using computational modelling for the mechanical contact problem between the hard rock and a cutting bit. The bit (i.e. an excavation tool with a flat frontal side and a conical edge) moves and sinks into the hard rock and subsequently disintegrates it. The whole problem of the hard rock disintegration process (i.e. stress-strain relationship, contact forces, reaction forces and fracture of the ore) is solved via Finite Element Method (MSC.MARC/MENTAT software). The rock disintegration process was solved via deactivation of finite elements which satisfy conditions of fracture. Some results (i.e. reaction forces in the cutting bit) are also compared with experiments.
机译:本文着重于硬岩(矿石)崩解过程的数值分析。讨论了将计算模型用于硬岩石和切削头之间的机械接触问题的可能性。钻头(即具有平坦前侧和圆锥形边缘的挖掘工具)移动并沉入硬岩中,随后将其分解。硬岩崩解过程的整个问题(即应力-应变关系,接触力,反作用力和矿石的破裂)通过有限元方法(MSC.MARC / MENTAT软件)解决。岩石的崩解过程是通过使满足断裂条件的有限元失活来解决的。还将一些结果(即切削头中的反作用力)与实验进行了比较。

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