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首页> 外文期刊>SAE International Journal of Commercial Vehicles >Fuel Efficiency Improvements in Heavy Truck Wheel Systems through Advanced Bearing Design and Technology
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Fuel Efficiency Improvements in Heavy Truck Wheel Systems through Advanced Bearing Design and Technology

机译:通过先进的轴承设计和技术提高重型卡车车轮系统的燃油效率

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摘要

The base design of commercial vehicle wheel end systems has changed very little over the past 50 years. Current bearings for R-drive and trailer wheel end systems were designed between the 1920's and the 1960's and designs have essentially remained the same. Over the same period of time, considerable gains have been made in bearing design, manufacturing capabilities and materials science. These gains allow for the opportunity to significantly increase bearing load capacity and improve efficiency. Government emissions regulations and the need for fuel efficiency improvements in truck fleets are driving the opportunity for redesigned wheel end systems. The EPA and NHTSA standard requires up to 23% reduction in emissions and fuel consumption by 2017 relative to the 2010 baseline for heavy-duty tractor combinations. This paper summarizes the history of current wheel end bearing designs and the opportunity for change to lighter-weight, cooler-running and more fuel-efficient wheel bearing designs to help meet the new industry standards. Advanced design and modeling principles were applied to analyze improvements, leading to optimized designs. Physical testing validated that these new bearing designs can increase efficiency and reduce weight.
机译:在过去的50年中,商用车轮端系统的基础设计几乎没有改变。当前用于R-驱动和拖车轮端系统的轴承是在1920年代和1960年代之间设计的,并且设计基本上保持不变。在同一时期,轴承设计,制造能力和材料科学领域取得了可观的进步。这些收益使人们有机会大大增加轴承的承载能力并提高效率。政府排放法规以及卡车车队提高燃油效率的需求为重新设计轮端系统提供了机遇。与重型拖拉机组合的2010年基准相比,EPA和NHTSA标准要求到2017年排放和燃料消耗最多降低23%。本文总结了当前轮端轴承设计的历史,以及为满足新的行业标准而需要更改重量更轻,运行更凉,燃油效率更高的轮毂的机会。先进的设计和建模原理被应用于分析改进,从而导致优化设计。物理测试证实,这些新的轴承设计可以提高效率并减轻重量。

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