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陶瓷和金属间化合物粉末添加剂对湿式离合器片摩擦性能及温度的影响

Influence of the Additive of Ceramic and Intermetallic Powders on the Friction Properties and Temperature of the Wet Clutch Disc.

作者信息

Yevtushenko Aleksander, Kuciej Michal, Grzes Piotr, Ilyushchanka Aleksander, Liashok Andrey

机构信息

Department of Mechanics and Applied Computer Science, Faculty of Mechanical Engineering, Bialystok University of Technology (BUT), 45C Wiejska Street, 15-351 Bialystok, Poland.

The State Scientific Institution "Powder Metallurgy Institute" (SSI PMI) of the National Academy of Sciences of Belarus, 41 Platonova Street, 220005 Minsk, Belarus.

出版信息

Materials (Basel). 2022 Aug 4;15(15):5384. doi: 10.3390/ma15155384.

Abstract

The basic function of friction clutches is to transfer the torque in the conditions of its smooth engagement without vibrations. Hard working conditions under high thermal and mechanical loads, leading to high temperature in the contact area, intense wear, and instability of the coefficient of friction impose restrictive criteria in the design of friction materials. In this paper, the results of experimental research of the effect of ceramic and intermetallic additives to the copper-based material of the friction disc of the clutch on the thermophysical and frictional properties were presented. Next, these properties were incorporated in the proposed contact 3D numerical model of the clutch to carry out computer simulations of the heating process and subsequent cooling. Based on the obtained experimental data and transient temperature changes of the friction and steel discs, the relations between the powder additives, thermophysical properties of the five friction materials, and coefficients of friction, wear, and temperature reached were discussed. Among these, it was found that when working with the lubrication, the largest values of the coefficient of friction 0.068 and wear 13.5  μm  km-1 were reached when using the 3 wt.% SiC additive.

摘要

摩擦离合器的基本功能是在平稳接合且无振动的条件下传递扭矩。在高热负荷和机械负荷的恶劣工作条件下,接触区域会产生高温、剧烈磨损以及摩擦系数不稳定的情况,这对摩擦材料的设计提出了严格的标准。本文展示了对离合器摩擦盘铜基材料添加陶瓷和金属间化合物添加剂后,其对热物理性能和摩擦性能影响的实验研究结果。接下来,将这些性能纳入所提出的离合器接触三维数值模型中,以对加热过程及随后的冷却过程进行计算机模拟。基于获得的实验数据以及摩擦片和钢片的瞬态温度变化,讨论了粉末添加剂、五种摩擦材料的热物理性能以及所达到的摩擦系数、磨损和温度之间的关系。其中发现,在有润滑的情况下工作时,使用3 wt.% 的碳化硅添加剂时,摩擦系数达到最大值0.068,磨损达到13.5 μm km-1 。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e39/9370007/bf931a18cf25/materials-15-05384-g001.jpg

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