首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >The effect of the mating gear surface over the durability of injection-molded polypropylene spur gears
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The effect of the mating gear surface over the durability of injection-molded polypropylene spur gears

机译:配合齿轮表面对注塑聚丙烯正齿轮耐久性的影响

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Extensive investigations have been carried out to understand the effect of gear material, gear parameters and service conditions over polymer gear durability. However, the effect of the mating gear surface condition over test gear performance has not been completely understood. In this study, injection-molded polypropylene gears were paired with stainless steel gears and evaluated in the power absorption gear test rig. This study considered steel gears manufactured through the wire-cut electric discharge machining with different surface roughness (3.8-4.1 mu m, 2.5-2.8 mu m and 1.9-2.2 mu m). The bearing ratio curves of the steel gear surfaces were obtained with the aid of non-contact profiler. During testing, the surface temperature of polymer gear increases due to the gear material hysteresis and surface interaction. The surface temperature of the gear increased by 5-15? due to the increase of surface roughness of the mating steel gear tooth (1.9-4.1 mu m). The worn-out gear tooth surface also confirmed the significance of the mating gear surface condition. Further, stainless steel discs with different surface roughness (4.7-5.4 mu m, 2.6-3.2 mu m) were manufactured through the wire-cut electric discharge machining process. Injection-molded polypropylene pins were slid against these discs. Due to the increase in surface roughness, coefficient of friction was found to increase from 0.38 to 0.45 for the chosen test condition. The measured net surface temperature of the test specimen also increased from 52 to 59? due to the increase in surface roughness.
机译:已经进行了广泛的研究,以了解齿轮材料,齿轮参数和使用条件对聚合物齿轮耐久性的影响。但是,对齿轮表面状况对测试齿轮性能的影响尚未完全了解。在这项研究中,将注塑聚丙烯齿轮与不锈钢齿轮配对,并在动力吸收齿轮试验台上进行了评估。这项研究考虑了通过线切割放电加工制造的具有不同表面粗糙度(3.8-4.1微米,2.5-2.8微米和1.9-2.2微米)的钢制齿轮。借助于非接触轮廓仪获得了钢齿轮表面的轴承比曲线。在测试过程中,由于齿轮材料的磁滞和表面相互作用,聚合物齿轮的表面温度会升高。齿轮的表面温度升高了5-15?由于配对的钢齿轮齿的表面粗糙度增加(1.9-4.1微米)。齿轮齿面的磨损也证实了配对齿轮表面状况的重要性。另外,通过线切割放电加工工艺制造了具有不同表面粗糙度(4.7-5.4μm,2.6-3.2μm)的不锈钢盘。将注塑聚丙烯销钉推向这些圆盘。由于表面粗糙度的增加,对于选定的测试条件,发现摩擦系数从0.38增加到0.45。测得的试样的净表面温度也从52升高到59?。由于表面粗糙度的增加。

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