带背压的单级气动弹性元件参数分析方法

O. Nakaznoy, A. Tsipilev
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引用次数: 0

摘要

背景:卡车,作为一个规则,有显著差异的路边和总重量。通常的弹簧或叶片悬架不允许在不同的机器载荷下有可接受的静运行和悬架刚度值,气动弹性元件虽然相对简单,但主要只在国外的技术样品上实现,设计师没有注意到带反压的气动弹性元件。卡车用户的决定因素之一是驾驶员座椅的可接受振动载荷。载重量与路边重量相当甚至被高估的卡车,当它们在公共道路上行驶时,特别是在泥泞的表面上,使用金属弹性时,会产生显著的振动加速度。目的:通过对带背压气动弹性元件缓冲系统参数的合理选择,降低驾驶员座椅的振动载荷,保证悬架在路缘和加载状态下的非零静行程和满足的静刚度。方法:利用力学、气动和热力学的数学工具,以科学为基础的理论前提,并确认所提出的依赖关系的有效性和可靠性,用于特性计算、结论和建议。结果:根据本文开发和提出的方法,获得了kamz -53215 Selkhoznik卡车单级刚度和背压气动弹性元件的有效特性。在路边重量下,前后悬架的静态行程约为0.06 m;毛重分别为0.12 m和0.24 m。与车辆总重量相比,正常垂直振动周期减少了25%,在无背压的情况下,正常垂直振动周期减少了31%,但仍在允许范围内。结论:所提出的方法可以确定轮式车辆悬架元件气动弹性的基本设计参数,为缓冲体的正常垂直振荡提供可接受的周期,并在很大的重量范围内保持非零静态冲程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for analyzing parameters of single-level pneumatic elastic elements with backpressure
BACKGROUND: Trucks, as a rule, have a significate difference between the kerb and gross weights. Usual spring or leaf suspensions do not allow to have acceptable values of static running and suspension stiffness at different machine loading, and pneumatic elastic elements, despite their relative simplicity, are mainly implemented only on overseas technology samples, and designers do not pay attention to pneumatic elastic elements with counterpressure. One of determinants of truck users is the acceptable vibration loading of the drivers seat. Trucks with a carrying capacity comparable or even overestimated to their kerb weight, when they move without cargo on public roads, especially with a dirt surface, have significant levels of vibration acceleration at using the metal elastic. AIMS: The purpose of the present work is to reduce the vibration loading of the drivers seat due to rational choice of parameters of the cushioning system with pneumatic elastic elements with backpressure, that ensures the non-zero static travel and saticfactory stiffness of suspension in the kerb and loaded state. METHODS: Using the regorous mathematical tools of Mechanics, Pneumatics and Thermodinamics, scientific-based theoretical prerequisites as well confirm the validity and reliability of the presented dependencies for characteristics calculation, conclusions and recommendations. RESULTS: According to the method developed and proposed in this article, effective characteristics of the pneumatic elastic elements with a single-level stiffness and backpressure for a KAMAZ-53215 Selkhoznik truck were obtained. At the kerb weight, the static stroke of the front and rear suspensions is approximately 0.06 m; at a gross weight it is of 0.12 m and 0.24 m, respectively. The period of normal vertical vibrations decrease by 25% versus a gross vehicle weight and by 31% at absence of backpressure, however, it occurs in the allowable range. CONCLUSIONS: The proposed method allows to determine the base design parameters of the pneumatic elasticity of the suspension elements of wheeled vehicles, providing an acceptable periods for a normal vertical oscillations of the cushoining body with maintaining the non-zero static stroke to a large weight range.
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