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货车制动闸瓦在运用中不均匀加载时的强度研究

Study on the Strength of the Brake Pad of a Freight Wagon under Uneven Loading in Operation.

作者信息

Panchenko Sergii, Gerlici Juraj, Lovska Alyona, Ravlyuk Vasyl, Dižo Ján, Harušinec Jozef

机构信息

Department of Automation and Computer Telecontrol of Trains, Ukrainian State University of Railway Transport, Feuerbach Square 7, 61050 Kharkiv, Ukraine.

Department of Transport and Handling Machines, University of Zilina in Zilina, Univerzitná 1, 010 26 Žilina, Slovakia.

出版信息

Sensors (Basel). 2024 Jan 11;24(2):0. doi: 10.3390/s24020463.

Abstract

The paper highlights the results of determining the strength of the brake pad of a freight wagon under uneven loading in operation. The main reasons for the uneven loading on the pad have been found. A mathematical tool for determining the strength of the pad unevenly loaded has been proposed. In the study, the pad is considered to be a rod system loaded with concentrated forces and bending moments. Sensors have been used in order to detect the load state of the brake pads. These sensors have been defined in the simulation software, and they have been placed on the working surface of the pad in the area of its interaction with the wheel. The operation of these sensors was simulated in the simulation software package. The results of the calculation have shown that the stresses in the pad are about 21.1 MPa; thus, they exceed the permissible values by 29%. Therefore, considering the uneven loading of the pad in operation, the strength of the pad is not ensured. To test the obtained results, the strength of the pad was determined using the finite element method. The Coulomb criterion was used for the calculation. It was found that the maximum stresses in the pad were about 19 MPa. These stresses were 21% higher than permissible values and occurred in the back of the pad. The study has proven that the uneven loading on the brake pad in operation can cause their destruction during braking. This may also cause traffic accidents with freight trains during their movement. The results of this study will contribute to the theoretical developments and recommendations aimed at improving the brake system of a freight wagon and rail traffic safety. It is considered that the tensometric sensors will be applied in future experimental tests for comparison and verification of the achieved results from the simulation computations.

摘要

本文重点介绍了在运行中不均匀载荷情况下确定货运列车制动衬块强度的结果。已找出制动衬块上不均匀载荷的主要原因。提出了一种用于确定不均匀加载制动衬块强度的数学工具。在该研究中,制动衬块被视为一个承受集中力和弯矩的杆系。已使用传感器来检测制动衬块的载荷状态。这些传感器已在模拟软件中定义,并放置在制动衬块与车轮相互作用区域的工作表面上。这些传感器的运行在模拟软件包中进行了模拟。计算结果表明,制动衬块中的应力约为21.1兆帕;因此,它们超过允许值29%。所以,考虑到运行中制动衬块的不均匀加载,其强度无法得到保证。为了验证所得结果,使用有限元方法确定了制动衬块的强度。计算采用了库仑准则。发现制动衬块中的最大应力约为19兆帕。这些应力比允许值高21%,且出现在制动衬块的背面。该研究证明,运行中制动衬块上的不均匀加载会导致其在制动过程中损坏。这也可能导致货运列车在运行过程中发生交通事故。本研究结果将有助于理论发展以及旨在改进货运列车制动系统和铁路交通安全的建议。据认为,张力传感器将在未来的实验测试中应用,以比较和验证模拟计算所取得的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15be/11154423/34a3b2e92621/sensors-24-00463-g001.jpg

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