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首页> 外文期刊>Hydrotechnical Construction >EXPERIMENTAL STUDY OF THE APPLICABILITY OF A FLUOROPLASTIC-GRAPHLEX COMPOSITE AS AN ANTIFRICTION MATERIAL FOR WATER-OPERATING SLIDING BEARINGS
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EXPERIMENTAL STUDY OF THE APPLICABILITY OF A FLUOROPLASTIC-GRAPHLEX COMPOSITE AS AN ANTIFRICTION MATERIAL FOR WATER-OPERATING SLIDING BEARINGS

机译:氟塑料 - 石墨复合材料适用于水运行滑动轴承抗摩擦材料的实验研究

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摘要

A comparative study of the antifriction characteristics of a composite material based on fluoroplastic-graphlex composite and PTFE (F-4 in Russian nomenclature) was carried out under a wide range of test conditions, including both “segment – disk” friction tests and radial sliding bearings. The tests were carried out at various loads, rotational velocities and temperatures, as well as in “dry” and “wet” friction modes. Although in “segment – disk” friction pair testing an approximately equal friction coefficient was observed for the fluoroplastic-graphlex composite and PTFE, the mass wear of fluoroplastic-graphlex was almost 500 times lower than that for PTFE. In addition, the supply of water to the friction surface was shown to result in stabilization of the surface temperature of the friction pair and a decrease in the friction coefficient. The fluoroplastic-graphlex composite exhibited a good conformability to a steel surface (without scoring or lamination) and high wear resistance at specific loads of 1 – 6 MPa. In a comparative test of sliding bearings based on the fluoroplastic-graphlex composite and PTFE for the 0.5 – 2.0 MPa specific load range, the values of the shaft circumferential velocities are determined to provide ideal hydrodynamic lubrication formed in water-operating radial sliding bearings. Moreover, a slight heating of the fluoroplastic-graphlex composite material (6°C) was detected in the initial temperature range of 35 – 60°C. The experimentally established value of the water flow rate through the bearing of 0.1 liters/sec is practically independent of shaft rotation frequency and applied load. Moreover, a good conformability of the fluoroplastic-graphlex material was confirmed by the clean friction surface, having a polished appearance and no observable scoring, cracking, or chipping of the composite material.
机译:基于氟塑料 - 石墨复合材料和PTFE(俄语命名法的F-4在俄罗斯的摩擦型)的复合材料的对比研究在各种测试条件下进行,包括“段盘”摩擦试验和径向滑动轴承。测试是在各种负载,旋转速度和温度下进行的,以及“干燥”和“湿”摩擦模式。虽然在“段盘”摩擦对测试中,观察到氟塑料 - 甲克复合材料和PTFE的近似等同的摩擦系数,但氟塑料 - 富曲克弹簧的质量磨损几乎比PTFE的大约500倍。另外,示出了对摩擦表面的水供应,导致摩擦对的表面温度的稳定性和摩擦系数的降低。氟塑料 - 石墨复合材料表现出对钢表面(不刻痕或层压)的良好形式性,并且在1-6MPa的比载量下具有高耐磨性。在基于氟塑料 - 石斑弦复合材料和PTFE的滑动轴承的比较试验中,对于0.5-2.0MPa特异性负载范围,确定轴周速度的值以提供在水操作径向滑动轴承中形成的理想的流体动力润滑。此外,在初始温度范围为35-60℃的初始温度范围内检测到氟塑料 - 石灰复合材料(6℃)的轻微加热。通过0.1升/秒的轴承通过实验建立的水流速度的值实际上与轴旋转频率和施加的载荷无关。此外,通过清洁的摩擦表面确认氟塑料 - 粗糙物质的良好形式性,具有抛光的外观,并且没有可观察到的刻痕,破裂或碎屑。

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