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3-D Finite element modelling of diamond pull-out failure in impregnated diamond bits

机译:浸渍金刚石位的金刚石拉出失效的3-D有限元建模

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In this study, the finite element and cohesive zone technique are used to analyse the failure mechanisms of impregnated diamond bits. The bit consists of diamond particles randomly distributed within a metal matrix. Investigations are carried out using a three-dimensional numerical model of a single diamond particle embedded in a metal matrix. This study is mainly focused on the interfacial debonding behaviour between the diamond particle and the matrix for an assessment of diamond retention capacity of these drilling bits. A zero thickness surface based cohesive zone modelling technique is used to simulate the failure at the interface. In order to validate the present model, few example problems are solved by the model and the results obtained are compared with the published results which show a good performance of the model. The effects of diamond particle shapes, orientations and the interface properties on the retention capacity of diamond particles in the bit are studied by conducting a parametric study. (C) 2016 Elsevier B.V. All rights reserved.
机译:在该研究中,有限元和粘性区域技术用于分析浸渍金刚石比特的故障机制。该位由随机分布在金属基质内的金刚石颗粒组成。使用嵌入金属基质中的单个金刚石颗粒的三维数值模型进行研究。本研究主要集中在金刚石颗粒与基质之间的界面剥离行为上,用于评估这些钻孔的钻石保持能力。零厚度表面的粘性区建模技术用于模拟界面处的故障。为了验证本模型,使用模型解决了一些示例问题,并将获得的结果与发布结果进行比较,其显示模型的良好性能。通过进行参数研究,研究了金刚石颗粒形​​状,取向和界面性质对钻头中金刚石颗粒的保持容量的影响。 (c)2016年Elsevier B.v.保留所有权利。

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