首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Improving the performance of a proportional 4/3 water-hydraulic valve by using a diamond-like-carbon coating
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Improving the performance of a proportional 4/3 water-hydraulic valve by using a diamond-like-carbon coating

机译:通过使用类金刚石碳涂层改善比例4/3液压阀的性能

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摘要

Today, there are several water-hydraulic, power-control systems already available on the market. Their components are usually made of stainless steel, which ensures satisfactory performance under mild, conventional operating conditions. However, for more demanding operating conditions and long-term, low-friction and low-wear performance, they do not provide the required performance. One of the possible ways to improve the performance of stainless-steel components in water-hydraulic systems is to coat them with diamond-like carbon (DLC), since this material is well known for its excellent low-friction and low-wear characteristics and also provides very good performance under water-lubrication conditions. In this study, real-scale lifetime tests with 2.3 million cycles were performed on a hydraulic test rig with a proportional 4/3 directional control water-hydraulic valve. Two types of contacts in the valve were tested: the steel-spool/steel-sleeve and the DLC-spool/steel-sleeve. The wear behaviour of the valve was evaluated with a scanning electron microscope (SEM) and internal leakage measurements. In the real-scale lifetime tests the wear and the damage on the DLC-coated spool were significantly lower than on the steel spool. Furthermore, in agreement with this, the internal leakage in the DLC-spool/steel-sleeve valve was almost constant throughout the tests, while in the steel-spool/steel-sleeve valve the leakage slowly, but steadily, increased. The steel/steel and DLC/steel contacts were also separately evaluated in pin-on-disc model tribological tests under water-lubricated conditions for a comparison and for a better understanding of the tribological mechanisms. In agreement with the real-scale tests, the DLC/steel contact showed improved friction and wear performance in comparison with the steel/steel contact.
机译:如今,市场上已有几种水力,功率控制系统。它们的组件通常由不锈钢制成,以确保在温和的常规操作条件下具有令人满意的性能。但是,对于更苛刻的操作条件以及长期,低摩擦和低磨损的性能,它们无法提供所需的性能。改善水液压系统中不锈钢组件性能的一种可能方法是在其上涂上类金刚石碳(DLC),因为这种材料以其出色的低摩擦和低磨损特性而闻名,并且在水润滑条件下也能提供很好的性能。在这项研究中,在带有比例4/3方向控制水-液压阀的液压试验台上进行了230万次循环的实际寿命试验。测试了阀门中的两种接触类型:钢滑阀/钢套筒和DLC滑阀/钢套筒。阀的磨损性能用扫描电子显微镜(SEM)和内部泄漏测量进行评估。在实际规模的寿命测试中,涂有DLC的线轴的磨损和损坏明显低于钢线轴。此外,与此一致的是,在整个测试中,DLC滑阀/钢套阀的内部泄漏几乎恒定,而在钢滑阀/钢套阀中,泄漏缓慢但稳定地增加。在水润滑条件下,在销盘式摩擦试验中还分别评估了钢/钢和DLC /钢接触,以进行比较和更好地了解摩擦机理。与实际测试一致,与钢/钢接触相比,DLC /钢接触显示出改善的摩擦和磨损性能。

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