Ungureanu Miorita, Medan Nicolae, Ungureanu Nicolae Stelian, Pop Nicolae, Nadolny Krzysztof
North University Centre at Baia Mare, Faculty of Engineering, Technical University of Cluj-Napoca, V. Babes Str. 62A, 430083 Baia Mare, Romania.
Institute of Solid Mechanics of Romanian Academy, Constantin Mille Str. 15, 010141 Bucharest, Romania.
Materials (Basel). 2022 Sep 21;15(19):6549. doi: 10.3390/ma15196549.
The aim of the study is the tribological analysis of the crane drum brakes. A theoretical analysis of the wear processes for brake lining was performed and the coefficient of friction under tribological conditions was determined experimentally simulating the operating conditions for three types of brakes. The theoretical study of the wear was oriented towards of determining the lifetime of the brake lining. In the experimental determination of the coefficient of friction, the following parameters were taken into account: the contact pressure between the shoe and the drum; the initial speed of the brake drum; the humidity of the working environment; and the temperature of the drum-brake lining friction surfaces. After performing the experiments, a statistical analysis was conducted, that shows the amount the coefficient of friction is influenced by the previously mentioned parameters: the highest weight was humidity with a value of 35.58%, followed by temperature with a percentage of 23.95%, velocity with 4.54%, and lastly pressure with 4.19%. Furthermore, the equation that expresses the dependence between the coefficient of friction and the parameters is determined. We consider that the results obtained are important for brake manufacturers in order to improve braking efficiency and the safety of overhead cranes.
本研究的目的是对起重机鼓式制动器进行摩擦学分析。对制动衬片的磨损过程进行了理论分析,并通过实验模拟三种类型制动器的运行条件,确定了摩擦学条件下的摩擦系数。磨损的理论研究旨在确定制动衬片的使用寿命。在摩擦系数的实验测定中,考虑了以下参数:制动蹄与制动鼓之间的接触压力;制动鼓的初始速度;工作环境的湿度;以及制动鼓 - 制动衬片摩擦表面的温度。实验完成后,进行了统计分析,结果表明摩擦系数受上述参数影响的程度:湿度影响最大,占比35.58%,其次是温度,占比23.95%,速度占比4.54%,压力占比4.19%。此外,还确定了表示摩擦系数与这些参数之间关系的方程。我们认为,所获得的结果对制动器制造商提高桥式起重机的制动效率和安全性具有重要意义。