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Experimental measurement on friction performance of PDC bearings for oil drilling under different working conditions

机译:不同工作条件下油井PDC轴承摩擦性能的实验测量

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As a kind of superhard material, the polycrystalline diamond compact (PDC) has been extensively used in engineering with its high strength and high wear resistance. Meanwhile, PDC has been increasingly used in bearing design to improve bearing capacity and service life. However, as a bearing material, its friction coefficient under different working conditions is not clear although it is a very important parameter. In this paper, the authors proposed a theoretical model of friction measurement and design a set of measurement rig to investigate the friction characteristics of the PDC bearing. The measurement equipment is developed based on the Coulomb friction model, with the three measurement environments taken into consideration: dry, water and drilling mud. A pair of thrust ball bearing was used in the measurement equipment to equilibrium axial load. But the friction coefficient of thrust ball bearing is proved far less than that of the PDC bearing in the experiment. The frictional coefficient of PDC bearings can be stabilized at about 0.12 under dry friction or water lubrication conditions and increase to 0.2 when tested under drilling fluid environment. Measuring the friction coefficient of PDC bearing -especially under drilling fluid environment can not only provide support for the design of the downhole tool where the bearing friction coefficient obviously affects the feasibility and agility of the tool but also help people to deepen the understanding of PDC materials. (C) 2020 Elsevier Ltd. All rights reserved.
机译:作为一种超硬材料,多晶金刚石紧凑型(PDC)已广泛用于工程,具有高强度和高耐磨性。同时,PDC越来越多地用于轴承设计,以提高承载力和使用寿命。然而,作为轴承材料,在不同的工作条件下的摩擦系数尚不清楚,尽管它是一个非常重要的参数。在本文中,作者提出了一种摩擦测量和设计一组测量钻机的理论模型,以研究PDC轴承的摩擦特性。测量设备是基于库仑摩擦模型开发的,考虑三种测量环境:干燥,水和钻井泥浆。在测量设备中使用一对推力滚珠轴承以平衡轴向载荷。但是,推力滚珠轴承的摩擦系数远低于实验中的PDC轴承的摩擦系数。在干摩擦或水润滑条件下,PDC轴承的摩擦系数可以在约0.12处稳定,并在钻井液环境下测试时增加至0.2。测量PDC轴承的摩擦系数 - 一致性地在钻井液中不仅提供了对井下工具的设计的支持,其中轴承摩擦系数明显影响工具的可行性和灵活性,而且帮助人们加深对PDC材料的理解。 (c)2020 elestvier有限公司保留所有权利。

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