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Surface Roughness and Roundness of Bearing Raceway Machined by Floating Abrasive Polishing and Their Effects on Bearing's Running Noise 被引量:3
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作者 PANG Guibing qi xuezhi +4 位作者 MA qinyi ZHAO Xiujun WEN Chunsheng XU Wenji PENG Yanping 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第3期543-550,共8页
As the two most important indexes of bearing raceway, surface roughness and roundness have significant influence on bearing noise. Some researchers have carried out studies in this field, however, reason and extent of... As the two most important indexes of bearing raceway, surface roughness and roundness have significant influence on bearing noise. Some researchers have carried out studies in this field, however, reason and extent of the influence of raceway surface geometric characteristics on bearing running noise are not perfectly clear up to now. In this paper, the raceway of 6309 type bearing's inner and outer ring is machined by floating abrasive polishing adopting soft abrasive pad. Surface roughness parameters, arithmetical mean deviation of the profile Ra, the point height of irregularities Rz, maximum height of the profile Rmax and roundness fof raceways, are measured before and after machining, and the change rules of the measured results are studied. The study results show that the floating abrasive polishing can reduce the surface geometric errors of bearing raceway evidently. The roundness error is reduced by 25%, Rm^x value is reduced by 35.5%, Rz value is reduced by 22% and Ra value is reduced by 5%. By analyzing the change of the geometrical parameters and the shape difference of the raceway before and after machining, it is found that the floating abrasive polishing method can affect the roundness error mainly by modifying the local deviation of the raceway's surface profile. Bearings with different raceway surface geometrical parameter value are assembled and the running noise is tested. The test results show that Ra has a little, Rmax and Rz have a measurable, and the roundness error has a significant influence on the running noise. From the viewpoint of controlling bearings' running noise, raceway roundness error should be strictly controlled, and for the surface roughness parameters, R,n^x and Rz should be mainly controlled. This paper proposes an effective method to obtain the low noise bearing by machining the raceway with floating abrasive polishing after super finishing. 展开更多
关键词 surface roughness ROUNDNESS POLISHING LAPPING bearing raceway noise
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基于全生命周期理论的半钢子午线轮胎环境影响
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作者 辛春林 姜博雯 +5 位作者 张月萌 刘士雄 李岩 韩冬礼 祁学智 杨建亮 《环境工程学报》 CAS 2024年第6期1754-1764,共11页
轮胎产业作为传统制造行业,在创造巨大经济效益的同时,也带来了巨大的环境问题。为了分析轮胎产业的潜在环境影响,寻找轮胎的减排减能潜力,基于全生命周期理论,以半钢子午线轮胎为研究对象,考虑轮胎生产、运输、使用直至废轮胎利用的生... 轮胎产业作为传统制造行业,在创造巨大经济效益的同时,也带来了巨大的环境问题。为了分析轮胎产业的潜在环境影响,寻找轮胎的减排减能潜力,基于全生命周期理论,以半钢子午线轮胎为研究对象,考虑轮胎生产、运输、使用直至废轮胎利用的生命周期闭环全过程,建立碳排放模型和能量消耗模型,并构建回收利用阶段的碳减排—削减清单和能量排放—削减清单,对比分析废轮胎连续低温热解、间歇低温热解和催化裂解的碳减排量、碳减排率、净碳盈余指标和能量削减量、能量削减率、净能量盈余指标。结果表明:1 t轮胎在整个生命周期中,共计消耗了3.52×10^(5) MJ一次能源,排放了1.01×10^(4) kg二氧化碳;在轮胎整个生命周期中,运输和使用阶段的碳排放量以及能量消耗最大。针对轮胎各阶段环境影响分析,可知轮胎生产阶段关键碳排放元素包括炭黑、电、合成橡胶以及钢丝帘线等;关键能源消耗元素包括合成橡胶、炭黑以及蒸汽等;3种资源利用方式中连续低温热解的碳回收效果最好,催化裂解的能量回收效果最好;再生回收物是废轮胎碳削减和能量削减的最主要的贡献来源。 展开更多
关键词 半钢子午线轮胎 生命周期 热解 碳减排 能量削减
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