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Altering heavy vehicle air suspension dynamic forces by modifying air lines

机译:通过修改空气管路来改变重型车辆空气悬架的动力

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摘要

An experimental programme in 2007 used three air suspended heavy vehicles travelling over typical urban roads to determine whether dynamic axle-to-chassis forces could be reduced by using larger-than-standard diameter longitudinal air lines. This paper presents methodology, interim analysis and partial results from that programme. Alterations to dynamic measures derived from axle-to-chassis forces for the case of standard-sized longitudinal air lines vs. the test case where larger longitudinal air lines were fitted are presented and discussed. This leads to conclusions regarding the possibility that dynamic loadings between heavy vehicle suspensions and chassis may be reduced by fitting larger longitudinal air lines to air-suspended heavy vehicles. Reductions in the shock and vibration loads to heavy vehicle suspension components could lead to lighter and more economical chassis and suspensions. This could therefore lead to reduced tare and increased payloads without an increase in gross vehicle mass.
机译:2007年的一项实验计划使用了三辆空中悬挂的重型车辆在典型的城市道路上行驶,以确定是否可以通过使用直径大于标准直径的纵向空气管路来减小动态的轴对底盘力。本文介绍了该计划的方法论,中期分析和部分结果。提出并讨论了对于标准尺寸的纵向气管情况与由较大的纵向气管安装而成的测试情况,从轴底盘力得出的动态测量结果的变化。这得出了关于以下可能性的结论:通过将较大的纵向空气管路安装到空气悬浮的重型车辆上,可以减少重型车辆悬架与底盘之间的动态载荷。减轻重型车辆悬架部件的冲击和振动负荷可导致更轻,更经济的底盘和悬架。因此,这可能导致皮重减少和有效载荷增加而不会增加车辆总质量。

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