APPLICATION OF MAGNETORHEOLOGICAL ELASTOMERS FOR PERFORMANCE CONTROL OF CUSHIONING SYSTEMS FOR WHEELED VEHICLES

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Engineering & Electromechanics Pub Date : 2019-10-28 DOI:10.20998/2074-272x.2019.5.09
V. Dushchenko, V. G. Maslіev, R. Nanivskyi, A. O. Maslіev
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引用次数: 3

Abstract

The purpose of the work is to study the influence of the control of the elastic and damping characteristics of the cushioning system based on the use of magnetorheological elastomers on the smoothness of the course of wheeled transport vehicles. The technique. The research used the methods of: magnetic field theory, the theory of vehicle suspension, experiment theory planning, and the FEMM code for studying magnetic field characteristics and mathematical modeling of wheeled vehicle movement along roughness in the Delphi environment. Results. Designed, researched and patented designs of elastic hinges of the suspension arms with magnetorheological elastomers. The relative boundaries of changes in the elastic modules and losses of these hinges are determined when controlling the characteristics of the suspension in order to improve the smoothness of the wheeled vehicle. Scientific novelty. For the first time, the feasibility of using magnetorheological elastomers to control the elastic and damping characteristics of the cushioning system of wheeled vehicles has been investigated, and the requirements for control laws have been determined, which make it possible to increase smoothness by more than 40 %; it is established that the control of the loss modulus has a greater effect on the improvement of smoothness of motion than the control of the elastic modulus. Practical value. The design has been developed and the relative boundaries of changes in the modules of elasticity and loss of hinges with magnetorheological elastomers during their control have been determined, which will make it possible to formulate requirements for elastomers when developing promising hinge designs for vehicle suspension systems. References 21, figures 18.
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磁流变弹性体在轮式车辆缓冲系统性能控制中的应用
本工作的目的是研究基于磁流变弹性体的缓冲系统的弹性和阻尼特性控制对轮式运输车辆行驶平稳性的影响。这种技术。研究采用磁场理论、车辆悬架理论、实验理论规划和FEMM程序等方法,研究德尔菲环境下轮式车辆沿粗糙度运动的磁场特性和数学建模。结果。磁流变弹性体悬臂弹性铰链的设计、研究和专利设计。为了提高轮式车辆的平顺性,在控制悬架特性的同时,确定了弹性模块变化和铰链损失的相对边界。科学的新奇。首次研究了利用磁流变弹性体控制轮式车辆缓冲系统的弹性和阻尼特性的可行性,并确定了控制律的要求,使其平整度提高40%以上;结果表明,控制损耗模量比控制弹性模量对运动平顺性的改善有更大的作用。实用价值。该设计已经开发完成,并确定了磁流变弹性体在控制过程中弹性模块变化和铰链损失的相对边界,这将使在开发有前途的车辆悬架系统铰链设计时制定弹性体的要求成为可能。参考文献21,图18。
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
50.00%
发文量
53
审稿时长
10 weeks
期刊最新文献
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