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基于质量差的干式离合器摩擦材料磨损测量准确性分析

Analysis of the Accuracy of Mass Difference-Based Measurement of Dry Clutch Friction Material Wear.

作者信息

Hoić Matija, Miklik Alen, Kostelac Milan, Deur Joško, Tissot Andreas

机构信息

Faculty of Mechanical Engineering and Naval Architecture Ivana Lučića 5, University of Zagreb, HR-10002 Zagreb, Croatia.

Ford-Werke GmbH, 50769 Cologne, Germany.

出版信息

Materials (Basel). 2021 Sep 16;14(18):5356. doi: 10.3390/ma14185356.

Abstract

The paper demonstrates that the dry clutch friction plate wear rate, measured based on the plate mass difference method, exhibits a transient behavior after each change of friction interface temperature level. The effect is hypothesized to be caused by a temperature-dependent change in the moisture content/mass level in the friction material. To test this hypothesis, a series of synchronized characterization experiments have been conducted by using two friction plates, one for wear tests and the other for drying in an oven under the same temperature conditions. Based on the analysis of test results, a moisture content compensation procedure, which reduces the transient wear rate from being 100% to being 50% higher compared to stabilized wear rate, is proposed and verified. The gained insights are used to set recommendations on the organization of routine wear characterization experiments aimed at avoiding the effect of moisture content influence on the accuracy of wear measurement. The main recommendations are to minimize the number of temperature target level changes through proper design of the experiment, insert a run-in test after every long test pause, and execute a pre-heat, blind wear test at the beginning of each test day.

摘要

本文表明,基于摩擦片质量差法测量的干式离合器摩擦片磨损率在每次摩擦界面温度水平变化后呈现出瞬态行为。据推测,这种效应是由摩擦材料中水分含量/质量水平随温度的变化引起的。为了验证这一假设,使用了两个摩擦片进行了一系列同步表征实验,一个用于磨损测试,另一个用于在相同温度条件下在烤箱中干燥。基于测试结果的分析,提出并验证了一种水分含量补偿程序,该程序可将瞬态磨损率降低至比稳定磨损率高50%至100%。所获得的见解用于对常规磨损表征实验的组织提出建议,旨在避免水分含量影响对磨损测量准确性的影响。主要建议是通过适当设计实验来尽量减少温度目标水平的变化次数,在每次长时间测试暂停后进行磨合测试,并在每个测试日开始时进行预热、盲磨损测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3599/8468605/82d3dac41407/materials-14-05356-g001.jpg

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