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首页> 外文期刊>Arabian journal of geosciences >Simulating the effect of disc erosion in TBM disc cutters by a semi-infinite DDM
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Simulating the effect of disc erosion in TBM disc cutters by a semi-infinite DDM

机译:使用半无限DDM模拟TBM盘式切割机中盘的腐蚀效果

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摘要

Underground excavation in rocks can be accomplished in several steps. The cutting action of mechanical tools such as disc cutters used in tunnel boring machines (TBM) is one of the most basic steps. Indentation of TBM disc cutters into the rock can produce rock chips in different scales. This phenomenon involves the production of micro cracks, their propagating, and coalescing process to form macro cracks. The present research focuses on the concepts of linear elastic fracture mechanics (LEFM) and maximum tangential stress criterion to investigate the micro crack propagation and its direction of growth in rocks underneath the TBM disc cutters. A modified higher order semi-infinite displacement discontinuity method (HSDDM) with third order displacement discontinuity elements (cubic elements) is used to estimate the stress intensity factor in the fractured rocks underneath a single disc cutter. To reduce the errors caused by stress and displacement singularities near the crack tip, three special crack tip elements have been implemented in the HSDDM2D computer code. TBM disc cutters will be eroded after a period of working. Therefore, the numerical simulation of eroded and not eroded discs has been proposed in this study. To simulate the eroded disc, four small elements have been modeled to generate the curvature of the cutter tip, which in turn reduces the cutting efficiency and increases required specific energy for a typical disc cutter.
机译:岩石中的地下开挖可以通过几个步骤完成。诸如隧道掘进机(TBM)中使用的圆盘切割机之类的机械工具的切割动作是最基本的步骤之一。将TBM圆盘铣刀切入岩石中会产生不同比例的碎石。这种现象涉及微裂纹的产生,它们的传播以及聚结过程以形成大裂纹。本研究集中于线性弹性断裂力学(LEFM)和最大切向应力准则的概念,以研究TBM圆盘切刀下方岩石中的微裂纹扩展及其生长方向。一种改进的具有三阶位移不连续元素(立方元素)的高阶半无限位移不连续方法(HSDDM)被用于估计单盘刀具下方裂隙岩石中的应力强度因子。为了减少裂纹尖端附近的应力和位移奇异性引起的误差,在HSDDM2D计算机代码中实现了三个特殊的裂纹尖端元素。工作一段时间后,TBM盘式切割机将被腐蚀。因此,本研究提出了腐蚀的和未腐蚀的盘的数值模拟。为了模拟腐蚀的圆盘,已对四个小元素进行了建模以生成刀头的曲率,从而降低了切割效率,并增加了典型的圆盘切刀所需的比能。

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