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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Sliding friction and wear properties of friction linings with friction-promoting grease applied
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Sliding friction and wear properties of friction linings with friction-promoting grease applied

机译:施加摩擦促进润滑脂的摩擦片的滑动摩擦和磨损性能

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摘要

The rheological properties of a commercial friction-promoting grease (FPG) were investigated using a cone and plane rheometer. Two friction tests were conducted at a low sliding rate (I mm/s) using a wire rope (designed for mining use) and a commercial friction lining material. One involved dry-friction and the other greased conditions. The corresponding coefficient of friction (COF) in each case was determined and used to evaluate the effect of application of the FPG on the lifting performance of a hoist under normal conditions. In addition, experiments involving high-speed sliding friction between the wire rope and the friction material were also performed (with and without the FPG). Different sliding speeds and applied loads were used. The aim was to obtain the tribological behavior of the friction material in conditions that simulate a severe working environment for the hoist. The experimental results were analyzed and combined with the rheological properties of the FPG. The FPG can substantially protect the friction lining from wear and simultaneously provide an adequate COF (about 0.356) between the friction pair under normal working conditions. When the working conditions are severe, an increase in sliding speed causes a decrease in the COF. However, a larger load does not necessarily result in a smaller COF. Increasing the sliding speed or the load both aggravate the wear of the friction lining.
机译:使用锥形和平面流变仪研究了商用摩擦促进油脂(FPG)的流变特性。使用钢丝绳(设计用于采矿)和商用摩擦衬片材料以低滑动速率(I mm / s)进行了两次摩擦测试。一种涉及干摩擦,另一种涉及润滑条件。确定了每种情况下的相应摩擦系数(COF),并将其用于评估FPG在正常条件下对提升机的提升性能​​的影响。另外,还进行了涉及钢丝绳与摩擦材料之间的高速滑动摩擦的实验(有无FPG)。使用了不同的滑动速度和施加的载荷。目的是在模拟起重机的恶劣工作环境的条件下获得摩擦材料的摩擦学行为。分析了实验结果,并结合了FPG的流变特性。 FPG可以基本上保护摩擦衬片免受磨损,并且在正常工作条件下同时在摩擦副之间提供足够的COF(约0.356)。当工作条件恶劣时,滑动速度的增加会导致COF的降低。但是,较大的负载不一定会导致较小的COF。增大滑动速度或增加载荷都会加剧摩擦衬片的磨损。

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