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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological properties of the plate valve and rotor material of hydraulic vane motor on different ambient temperature
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Tribological properties of the plate valve and rotor material of hydraulic vane motor on different ambient temperature

机译:不同环境温度下液压叶片电机板阀和转子材料的摩擦学特性

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摘要

Deck machinery that is driven by the hydraulic motor is a key part for ship exploration in the polar area. In this paper, the hydraulic vane motor in deck machinery was taken as the research object. The material of motor shields was QT350-22L, which was used as the plate valve, and the rotor material was LC2-1. The rotor slides relative to the plate valve under the pressure of the high-pressure oil, and the surfaces worn damage. Wear tests were performed using a pin-on-disk structure under six different temperatures (room temperature (25 degrees C), 0 degrees C, -10 degrees C, - 20 degrees C, - 30 degrees C and - 40 degrees C), two kinds of hydraulic oil(15# and 10# aviation hydraulic oil) and the two normal loads(150 N and 300 N)respectively. In order to analyze the wear mechanism of the friction test specimen under different condition, the surface morphology of the friction test was carried out by scanning electron microscope(SEM) and laser interference profilometer. As the temperature decreased, the coefficient of friction did not change linearly. At the temperature of - 20 degrees C, the coefficient of friction was the smallest, and when the temperature was lower, the coefficient of friction increased slowly and finally stable. Moreover, typical wear and tear modes were different at different test temperatures. The factors were the mechanical properties of the material and the lubrication medium changed in the low temperature. Changes in oil properties affected oil film thickness and distribution and abrasive grain removal ability between friction pairs. According to the experimental results, the paper summarizes the failure mechanism of the hydraulic motor, which can not only optimize the design of the hydraulic motor but also provide reference data for the establishment of online intelligent fault diagnosis system of the marine hydraulic system.
机译:由液压马达驱动的甲板机械是极地区域船舶勘探的关键部分。本文采用了甲板机械的液压叶片电机作为研究对象。电动机屏蔽材料是QT350-22L,用作板阀,转子材料是LC2-1。转子在高压油的压力下相对于板阀滑动,并且表面损坏。使用六个不同温度(室温(25摄氏度),0摄氏度,-10℃, - 20摄氏度, - 30摄氏度和 - 40度C)进行磨损测试进行磨损试验。两种液压油(15#和10#航空液压油)和两个正常载荷(150 n和300 n)。为了在不同条件下分析摩擦试验样品的磨损机理,通过扫描电子显微镜(SEM)和激光干涉仪进行摩擦试验的表面形态。随着温度降低,摩擦系数不会线性变化。在20摄氏度的温度下,摩擦系数是最小的,当温度较低时,摩擦系数缓慢增加并且最终稳定。此外,在不同的测试温度下典型的磨损模式不同。因素是材料的机械性能,润滑介质在低温下变化。油质的变化影响摩擦对之间的油膜厚度和分布和磨料谷物去除能力。根据实验结果,本文总结了液压马达的故障机理,不仅可以优化液压马达的设计,还可以提供用于建立海洋液压系统的在线智能故障诊断系统的参考数据。

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