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Chipping and crushing mechanisms in orthogonal rock cutting

机译:正交岩石切割中的碎屑和粉碎机制

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摘要

The understanding of rock removal mechanisms, as one of the essential elements for advancing the cutting performance of polycrystalline diamond compact (PDC) cutters, is still incomplete. This paper is seeking to formulate a cutting theory to analytically explain how rock interacts with PDC cutters in a simple cutting configuration linear cutting. In the proposed approach, a rock crushing zone is introduced at the rock-cutter interface beneath the cutter's rake face, namely the Tip Crushing Zone (TCZ), which, as a destruction kernel, is responsible for both the crushing and chipping phenomena occurring in the cutting process. The physical aspects of these two disparate chip formation mechanisms are discussed. Moreover, closed form expressions for the cutting and thrust forces are derived based on the equilibrium of moments and on the minimum chipping energy principle. To evaluate the force model, comprehensive linear rock cutting tests were conducted on a newly developed rock cutting facility. Both the chip formation phenomena and force responses are in good agreement with the newly proposed theory.
机译:作为提高多晶金刚石复合片(PDC)刀具切削性能的基本要素之一,对除石机理的理解仍然不完整。本文寻求制定一种切割理论,以分析方式解释岩石如何在简单的切割配置线性切割中与PDC切割机相互作用。在提出的方法中,在碎石机前刀面下方的碎石机界面处引入了一个碎石区,即顶部碎石区(TCZ),它作为破坏核,负责在碎石机中发生的碎石和碎裂现象。切割过程。讨论了这两种不同的芯片形成机制的物理方面。此外,基于力矩的平衡和最小碎屑能原理,得出了切削力和推力的闭合形式表达式。为了评估力模型,在新开发的岩石切割设备上进行了全面的线性岩石切割测试。切屑形成现象和力响应都与新提出的理论非常吻合。

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