根据制动系统部件磨损情况评估选定车辆组的行车制动情况

IF 1.3 Q2 AGRICULTURE, MULTIDISCIPLINARY
P. Kozuch, L. Hujo, J. Kaszkowiak, M. Markiewicz-Patalon
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引用次数: 0

摘要

摘要 本文根据制动系统部件的磨损情况,对选定车辆组的行车制动进行了评估。研究期间,对 16 辆城际公交车进行了为期三年的制动系统技术状况、制动盘和制动片磨损程度的监测和评估,并使用辊式制动测试仪测量了制动力。测量在两辆选定的城际公交车 SOR C 10.5 和 IVECO Crossway 上进行。使用辊式制动测试仪测量了巴士两轴上的最大制动力。然后,计算出车辆的制动百分比,并与适用法律规定的最低制动要求进行比较。根据对制动片和制动盘技术状况的检查,可以检测出制动系统中这些元件的磨损情况(在滚轴制动测试仪上对车辆进行检查时显示出来),还可以在计算过程中记录所需的最低制动值不足的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Service Brake Braking of Selected Group of Vehicles Depending on Wear of Brake System‘s Parts
Abstract The paper deals with the evaluation of service brake braking of a selected group of vehicles depending on the wear of brake system‘s parts. During the research, the technical condition of brake systems, the degree of wear of brake discs, brake pads, and the measurement of braking forces using a roller brake tester was monitored and evaluated on a sample of 16 intercity buses for a period of three years. The measurement was carried out on 2 selected intercity buses SOR C 10.5 and IVECO Crossway. The maximum braking forces on both axles of buses were measured using a roller brake tester. Then, the percentage braking of the vehicle was calculated and compared with the minimum required braking according to applicable legislation. Based on the inspection of technical condition of brake pads and discs, it was possible to detect the wear and tear of these elements of the brake system (which was manifested during the inspection of the vehicle on the roller brake tester), and it was also possible to record the insufficient value of the required minimum braking during the calculation.
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来源期刊
Acta Technologica Agriculturae
Acta Technologica Agriculturae AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
28.60%
发文量
32
审稿时长
18 weeks
期刊介绍: Acta Technologica Agriculturae is an international scientific double-blind peer reviewed journal focused on agricultural engineering. The journal is multidisciplinary and publishes original research and review papers in engineering, agricultural and biological sciences, and materials science. Aims and Scope Areas of interest include but are not limited to: agricultural and biosystems engineering; machines and mechanization of agricultural production; information and electrical technologies; agro-product and food processing engineering; physical, chemical and biological changes in the soil caused by tillage and field traffic, soil working machinery and terramechanics; renewable energy sources and bioenergy; rural buildings; related issues from applied physics and chemistry, ecology, economy and energy.
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