装备超低压轮胎的农用运输机械在制动过程中的稳定性保障

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY
U. Vakhidov, A. Kurkin, L. S. Levshunov, Iuri I. Molev, Dmitriy N. Proshin, A. Sogin
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引用次数: 0

摘要

介绍。提高农业生产和非公路物流效率,需要新型高效、路面压力小的非公路机械。这种机械的多功能性对其设计提出了额外的要求,包括与公共道路上的道路交通安全有关的要求。在使用大直径车轮时,为了保证安全的制动性能,需要改变制动设计,因为要根据轮式车辆安全的技术规程产生标准制动力,在使用大直径车轮时需要更大的制动扭矩。材料与方法。本文提出了一种超低压轮运输机械和科技农业机械制动参数的计算模型。该模型与以往模型的不同之处在于,它的输出参数不是制动效率,而是前后桥锁的时间差。满足前轴提前锁定的条件,保证了紧急制动时牵引车运动的稳定性,对道路交通安全具有积极的影响。研究结果表明,为保证配备超低压轮胎的机器在公共道路上安全行驶,其质心到前轴的距离之比至少不小于质心到路面的距离。讨论与结论。所提出的数学模型已经证明了它的充分性。获得的数学依赖关系使我们能够证明不同的技术解决方案,以确保运输和配备超低压轮胎的技术农业机械的安全道路移动。因此,质心的最大允许高度可以假定为等于农业运输和技术机械的质心位置到其前(受控)轴距离的90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ensuring the Stability of Agricultural Transport and Technological Machines Equipped with Ultra-Low Pressure Tires during Braking
Introduction. Improving the efficiency of agricultural operations and off-road logistics require new highly efficient non-road machinery with low pressure on road surface. The versatility of the use of this machinery imposes additional requirements on its design, including those related to road traffic safety on public roads. Changes in brake design are required to ensure safe braking performance when larger diameter wheels are used for the reason that to produce standard braking force according to the technical regulations for the safety of wheeled vehicles, requires more braking torque when using larger diameter wheels. Materials and Methods. The article proposes a model for calculating the braking parameters of transport and technological agricultural machines equipped with ultra-low pressure wheels. The model differs from those used earlier in that its output parameter is not the braking efficiency, but the time difference between the front and rear axle locks. Results. Fulfilling the condition of the front axle advance locking ensures the stability of the tractor motion during emergency braking that has a positive effect on road traffic safety. The results of the study suggest that to ensure the safe motion of the machines equipped with ultra-low pressure tires on public roads, it is necessary that the ratio of the distance from the center of mass to the front axle is at least not less than the distance from the center of mass to the road surface. Discussion and Conclusion. The proposed mathematical model has shown its adequacy. The obtained mathematical dependencies allow us to justify different technical solutions for ensuring safe road movement of transport and technological agricultural machines equipped with ultra-low pressure tires. Thus, the maximum permissible height of the center of mass can be assumed to be equal to 90% of the distance from the location of the center of mass of an agricultural transport and technological machine to its front (controlled) axis.
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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