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Water-lubricated behaviour of AISI 440C stainless steel and a DLC coating for an orbital hydraulic motor application

机译:AISI 440C不锈钢的水润滑行为和用于轨道液压马达应用的DLC涂层

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The low-speed, high-torque, orbital hydraulic motor is a component that often uses mineral oil to convert hydraulic energy into the rotational motion of a shaft. The main purpose of our research was to investigate the possibility of using water, which is a much less environmentally damaging working fluid than oil. The limitations of water lubrication were overcome with an appropriate surface-engineering approach. The surface coated with diamond-like carbon (DLC) significantly reduced both the friction and the wear. The lowest coefficients of friction in this study, taking into account all the tested parameters, were obtained when the stainless-steel/DLC (SS/DLC) contact was tested in water. The friction of the SS/DLC in water was even lower than the friction of the SS/DLC or SS/SS contact in oil. Furthermore, the wear coefficient of the SS/DLC in water was comparable to the wear coefficient of the SS/SS in oil. The surface hardness, surface roughness and applied force were also varied, but they did not play such an important role as employing the DLC coating. The SS/DLC contact can thus be considered as a very promising solution for an orbital hydraulic motor from the tribological and environmental points of view.
机译:低速,高扭矩,轨道液压马达是通常使用矿物油来将液压能转换为轴的旋转运动的组件。我们的研究的主要目的是调查使用水的可能性,这是比石油更少的环境损害的工作流体。用适当的表面工程方法克服了水润滑的局限性。涂有金刚石碳(DLC)的表面显着降低了摩擦和磨损。考虑到在水中测试不锈钢/ DLC(SS / DLC)触点时,获得了本研究中的最低系数,考虑到所有测试的参数。 SS / DLC在水中的摩擦甚至低于油的SS / DLC或SS / SS接触的摩擦。此外,水中SS / DLC的磨损系数与油中SS / SS的磨损系数相当。表面硬度,表面粗糙度和施加的力也变化,但它们没有在使用DLC涂层中发挥如此重要的作用。因此,SS / DLC触点可以被认为是来自摩擦学和环境观点的轨道液压电动机的非常有希望的解决方案。

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