Research of Tribological and Thermodynamic Parameters of the WC-Cu Braking System of the Experimental Modular Electric Vehicle

IF 1.9 Q3 ENGINEERING, INDUSTRIAL Production Engineering Archives Pub Date : 2023-04-26 DOI:10.30657/pea.2023.29.14
D. Varecha, J. Gálik, R. Kohár, T. Gajdošík, I. Gajdac, Jozef Jenis
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Abstract

Abstract The authors of this manuscript present the development of a braking system with friction material base WC-Cu coating for the electric vehicle. This manuscript follows on from the original development of an AGV multi-disc braking system and an experimental investigation of the friction factor of WC-Cu coatings. In addition to developing the mechanical elements and construction of the electric vehicle, the tribological parameters of three samples of the steel substrate, the C45 with WC-Cu coating, were investigated in the tribological laboratory. A metallic coating of the WC-Cu base was applied on the C45 steel substrate using electro-spark deposition coating technology. The experiment used three samples with different percentage ratios of chemical elements in the coating structure. The tribometer working on a “Ball on Plate” principle was an investigation of the friction factor of all samples during the experiment. Subsequently, the surface of the samples was modified structure WC-Cu with laser technology. The microhardness of modified and unmodified coatings according to the Vickers methodology was investigated in the next stage. At the end of the experimental investigation, a braking simulation was created in the programming environment of the Matlab® software, considering all driving resistances. The researchers also focused on the simulation of heat conduction during braking for some considered driving modes with braking on a level and with a 20% slope roadway. The simulation of heat flow was carried out in the Matlab® programming environment using the Fourier partial differential equation for non-stationary heat conduction.
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实验模块化电动车WC-Cu制动系统摩擦学和热力学参数的研究
摘要本文作者介绍了一种基于WC-Cu摩擦材料涂层的电动汽车制动系统的开发。本文是在AGV多盘制动系统的原始开发和WC-Cu涂层摩擦因数的实验研究的基础上进行的。除了开发电动汽车的机械元件和结构外,还在摩擦学实验室中研究了三种钢基体样品的摩擦学参数,即带有WC-Cu涂层的C45。采用电火花沉积技术在C45钢基体上涂覆了WC-Cu基金属涂层。该实验使用了三个在涂层结构中具有不同化学元素百分比比的样品。基于“板上球”原理的摩擦计是对实验过程中所有样品的摩擦系数的研究。随后,利用激光技术对样品表面进行WC-Cu结构改性。在下一阶段,根据维氏方法对改性和未改性涂层的显微硬度进行了研究。在实验研究结束时,在考虑所有驱动阻力的情况下,在Matlab®软件的编程环境中创建了制动模拟。研究人员还重点模拟了一些考虑过的驾驶模式在水平和20%坡度的道路上制动时的热传导。热流的模拟是在Matlab®编程环境中使用非平稳热传导的傅立叶偏微分方程进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Production Engineering Archives
Production Engineering Archives Engineering-Industrial and Manufacturing Engineering
CiteScore
6.10
自引率
13.00%
发文量
50
审稿时长
6 weeks
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