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首页> 外文期刊>Arabian journal of geosciences >Simulating the crack propagation and cracks coalescence underneath TBM disc cutters
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Simulating the crack propagation and cracks coalescence underneath TBM disc cutters

机译:模拟TBM盘形铣刀下的裂纹扩展和裂纹合并

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摘要

A coupled numerical-experimental analysis of crack propagation, cracks coalescence produced during the cutting action of TBM disc cutters has been studied. A numerical code is developed based on the higher order semi-infinite displacement discontinuity method (HSDDM) for the numerical simulation of rock-cutting process. Aquadratic displacement discontinuity variation along each boundary element is assumed to evaluate the mode I and mode II stress intensity factors (SIFs). Based on the linear elastic fracture mechanics (LEFM) theory, the maximum tangential stress criterion is implemented in the HSDDM2D code for predicting the crack initiation and its direction of propagation (cracks propagation path). Some experiments were done to evaluate the final breakage path during the cutting process of disc cutters in rock-like specimens. The same experimental specimens have been numerically modeled by a higher order semi-infinite indirect boundary element method. The numerical and experimental results are in good agreement and demonstrate the accuracy and effectiveness of the proposed numerical method. Rock-cutting mechanisms under single and double type discs are simulated by HSDDM2D. Effects of some specific disc parameters, i.e., penetration depth (P-d) and S/P-d ratio (ratio of disc spacing (S) to penetration depth (P-d)) on the specific energy (E-S) are also investigated.
机译:研究了TBM圆盘铣刀切割过程中产生的裂纹扩展和裂纹合并的数值实验耦合分析。基于高阶半无限位移不连续性方法(HSDDM),开发了一种用于岩石切削过程数值模拟的数字代码。假设沿每个边界单元的水生位移不连续性变化可评估模式I和模式II应力强度因子(SIF)。基于线性弹性断裂力学(LEFM)理论,在HSDDM2D代码中实现了最大切向应力准则,以预测裂纹的萌生及其传播方向(裂纹传播路径)。进行了一些实验,以评估盘状刀具在岩样中切割过程中的最终破损路径。通过高阶半无限间接边界元方法对相同的实验样本进行了数值建模。数值结果与实验结果吻合良好,证明了所提方法的准确性和有效性。 HSDDM2D模拟了单盘和双盘下的切石机理。还研究了某些特定的圆盘参数,即穿透深度(P-d)和S / P-d比率(圆盘间距(S)与穿透深度(P-d)的比)对比能量(E-S)的影响。

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