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Materials screening of matching pairs in a water hydraulic piston pump

机译:水力液压柱塞泵中匹配对的材料筛选

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Purpose - The purpose of this paper is to present some design guidelines for the selection of the materials of the main frictional pairs in a water hydraulic piston pump. Design/methodology/approach - In the research, a specified test bench that can simulate the typical frictional pairs in a water hydraulic piston pump was built. The friction and wear behaviors of the three pairs in the pump with different materials combinations were tested on the test bench. The tested materials included metal, engineering ceramics and plastics. Some surface engineering technologies including plasma surface spray, laser clad and heat treatment were applied and tested. The matching schemes included hard-to-hard (such as ceramics-to-ceramics) and hard-to-soft (such as metal-to-plastics, ceramics-to-plastics). Findings - Some principles for the materials selection in a water hydraulic piston pump were obtained. According to the test results, the combination schemes for the main frictional pairs in a water hydraulic piston pump were proposed. Originality/value - A test apparatus that could simulate the movement of main frictional pairs in a water hydraulic piston pump more really than the other general materials machines was developed. Some materials including metal, engineering ceramics and plastics and some engineering technologies were tested. The research described here is an important foundation for the development of a water hydraulic piston pump.
机译:目的-本文的目的是提出一些设计准则,以选择水力液压活塞泵中主要摩擦副的材料。设计/方法/方法-在研究中,建立了可以模拟水力液压柱塞泵中典型摩擦副的指定测试台。在不同的材料组合下,在泵中测试了三对泵的摩擦磨损性能。测试的材料包括金属,工程陶瓷和塑料。应用和测试了一些表面工程技术,包括等离子表面喷涂,激光熔覆和热处理。匹配方案包括难对付(例如陶瓷对陶瓷)和难于软化(例如金属对塑料,陶瓷对塑料)。发现-获得了水液压活塞泵中材料选择的一些原理。根据试验结果,提出了水力柱塞泵中主要摩擦副的组合方案。独创性/价值-开发了一种比其他通用材料机械更真实地模拟水力液压柱塞泵中主要摩擦副运动的测试设备。测试了包括金属,工程陶瓷和塑料在内的一些材料以及一些工程技术。这里描述的研究是开发水力液压活塞泵的重要基础。

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