DETERMINATION OF THE VALUE OF TANGENTIAL FORCE FOR THE HALF-TRACK TRACTION VEHICLE WITH RUBBER TRACKS

K. Abishev, K. Assylova, Asylbek Kassenov, A. Baltabekova
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Abstract

Practice shows that with insufficiently high traction qualities of traction vehicles deteriorate its operational properties. At present, extensive research is under way at home and abroad to find inexpensive but highly effective ways and techniques to improve the traction qualities of vehicles. The design of running systems with reduced resistance to movement and slipping will help to significantly increase the productivity of vehicles and reduce fuel consumption. This, in turn, will contribute to greater operational efficiency for traction vehicles. The authors of this study have developed the design of a traction vehicle with a half-tracked propulsor. The objective of the study is to develop a mathematical model for calculating the efficiency of operating a traction vehicle equipped with a half-tracked propulsior with rubber tracks. The proposed mathematical expression takes into account the deformability of the rubber tracks of the propulsor, the uneven distribution of normal pressure along the length of the track, slipping, geometric parameters of the propulsor and the physical and mechanical properties of the soil. Using numerical methods, calculations were carried out to determine the effect of the tangential tractive force on the slipping of a wheeled traction vehicle with a different layout of the running system. The dependences of the amount of slipping on the tangential thrust force are determined. It has been found that with an increase in the traction force, the slipping increases, however, the intensity of growth of a half-tracked propulsor compared to a wheeled propulsor is much lower.
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橡胶履带半履带牵引车辆切向力值的测定
实践表明,牵引车辆的牵引质量不够高,会使其使用性能下降。目前,国内外正在进行广泛的研究,以寻找廉价而高效的方法和技术来提高车辆的牵引质量。运行系统的设计减少了运动和滑动阻力,将有助于显著提高车辆的生产率,降低燃油消耗。反过来,这将有助于提高牵引车辆的运行效率。本研究的作者开发了一种带有半履带式推进器的牵引车辆的设计。本研究的目的是建立一个数学模型,用于计算配备橡胶履带的半履带推进器的牵引车辆的操作效率。所提出的数学表达式考虑了螺旋桨橡胶履带的可变形性、法向压力沿履带长度的不均匀分布、滑移、螺旋桨的几何参数以及土壤的物理力学性质。采用数值方法,计算了不同运行系统布局下,切向牵引力对轮式牵引车辆滑移的影响。确定了滑移量与切向推力的关系。研究发现,随着牵引力的增大,滑移增大,但与轮式推进器相比,半履带推进器的滑移增长强度要低得多。
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来源期刊
Journal of Applied Engineering Science
Journal of Applied Engineering Science Engineering-Engineering (all)
CiteScore
2.00
自引率
0.00%
发文量
122
审稿时长
12 weeks
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