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Model development and dynamic load-sharing analysis of longitudinal-connected air suspensions

机译:纵向连接空气悬架的模型开发和动态载荷共享分析

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摘要

The objective of this research was to investigate the effect of suspension parameters on dynamic load-sharing of longitudinal-connected air suspensions of a tri-axle semi-trailer. A novel nonlinear model of a multi-axle semi-trailer with longitudinal-connected air suspension was formulated based on fluid mechanics and thermodynamics and was validated through test results. The effects of suspension parameters on dynamic load-sharing and road-friendliness of the semi-trailer were analyzed. Simulation results indicate that the road-friendliness metric DLC (Dynamic Load Coefficient), is generally in accordance with the load-sharing metric - DLSC (Dynamic Load Sharing Coefficient). When the static height or static pressure increases, the DLSC optimization ratio declines monotonically. The effect of employing larger air lines and connectors on the DLSC optimization ratio gives varying results as road roughness increases and as driving speed increases. The results also indicate that if the air line diameter is always assumed to be larger than the connector diameter, the influence of air line diameter on loadsharing is more significant than that of the connector.
机译:这项研究的目的是研究悬架参数对三轴半挂车的纵向连接空气悬架的动态载荷共享的影响。基于流体力学和热力学,建立了多轴半挂车纵向连接空气悬架的新型非线性模型,并通过试验结果进行了验证。分析了悬架参数对半挂车动态负载分担和道路友好性的影响。仿真结果表明,道路友好性度量DLC(动态负载系数)通常符合负载共享度量-DLSC(动态负载共享系数)。当静态高度或静态压力增加时,DLSC优化比将单调下降。随着道路粗糙度的增加和行驶速度的增加,采用更大的空气管路和连接器对DLSC优化比率的影响会产生不同的结果。结果还表明,如果始终假定空气管线直径大于连接器直径,则空气管线直径对负载共享的影响比连接器的影响更大。

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