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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >A 3D FEM methodology for simulating the impact in rock-drilling hammers
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A 3D FEM methodology for simulating the impact in rock-drilling hammers

机译:用于模拟凿岩锤冲击的3D有限元方法

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摘要

A three-dimensional (3D) finite element approach for modeling impact as it occurs in impact tools used in rock drilling is presented. The model permits one to simulate the energy transmission to the rock, the bit-rock interaction, and the process of rock fragmentation, all of which are important in the study and evaluation of such tools. The finite elements method (FEM) analysis allows one to simulate the impact in 3D stress-strain problems, to consider linear material properties, and to include post failure fracture propagation.Anisotropic elements have been used to model the rock post failure behavior. Infinite domain elements have been used to characterize boundary conditions far away from bit-rock interaction. The accuracy of the model has been evaluated both theoretically by comparing the result to those obtained with a model based on impulse-momentum principle as well as experimentally.
机译:提出了一种三维(3D)有限元方法,用于对在凿岩机中使用的冲击工具中发生的冲击进行建模。该模型允许模拟到岩石的能量传输,钻头-岩石相互作用以及岩石破碎的过程,所有这些对于研究和评估此类工具都很重要。有限元方法(FEM)分析可以模拟3D应力-应变问题的影响,考虑线性材料特性并包括破坏后裂缝的传播。各向异性元素已被用来模拟岩石破坏后的行为。无限域元素已被用来表征远离位-岩相互作用的边界条件。从理论上通过将结果与使用基于冲量动量原理的模型获得的结果进行比较,以及通过实验对模型的准确性进行了评估。

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