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A study of the efficiency of spur gears made of powder metallurgy materials - ground versus super-finished surfaces

机译:粉末冶金材料正齿轮效率的研究-磨削表面与超精加工表面

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摘要

Power loss is one of the main concerns in gear transmission systems. In this study a recirculating power back-to-back FZG test rig was used to investigate the efficiency of spur gears made of powder metallurgy (PM) material using two different surface manufacturing methods (ground and super-finished). The results were compared with previously presented results of standard gear material from the same test rig. The influence of the material (Wrought steel or PM) and surface roughness on the gear mesh efficiency and the total efficiency of the gearbox were analyzed in detail. The Young's modulus for PM materials is lower than for conventional gear steel. This may influence gear tooth bending and the efficiency of the gear transmission. Gear contact simulation results showed that the influence of gear tooth bending on PM gear transmission efficiency can be ignored in the FZG gear geometry. Higher surface energy combined with a smoother surface led to a lower transmission efficiency for the super finished powder metallurgy gear combination compared to the standard gear material. (C) 2015 Elsevier Ltd. All rights reserved.
机译:功率损耗是齿轮传动系统中的主要问题之一。在这项研究中,采用了循环背对背FZG试验台,研究了采用两种不同的表面制造方法(磨削和超精加工)的粉末冶金(PM)材料制成的正齿轮的效率。将结果与先前提供的来自同一试验台的标准齿轮材料的结果进行了比较。详细分析了材料(锻钢或PM)和表面粗糙度对齿轮啮合效率和齿轮箱总效率的影响。 PM材料的杨氏模量低于传统齿轮钢的杨氏模量。这可能会影响轮齿弯曲和齿轮传动效率。齿轮接触仿真结果表明,在FZG齿轮几何中,齿轮齿弯曲对PM齿轮传动效率的影响可以忽略。与标准齿轮材料相比,较高的表面能和较光滑的表面导致超级成品粉末冶金齿轮组合的传动效率较低。 (C)2015 Elsevier Ltd.保留所有权利。

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