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基于真实粗糙齿面的齿轮传动接触应力分析 被引量:6
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作者 亓秀梅 高创宽 《润滑与密封》 CAS CSCD 北大核心 2011年第9期24-29,共6页
现行齿轮传动接触疲劳强度的设计基础是仅适用于一对光滑表面之间干接触的赫兹理论,这显然与齿轮传动实际状况有一定差异。为获得齿轮传动实际状况的齿面压力分布、油膜厚度及轮齿接触区次表面的应力分布,基于实测所得的表面粗糙度数据... 现行齿轮传动接触疲劳强度的设计基础是仅适用于一对光滑表面之间干接触的赫兹理论,这显然与齿轮传动实际状况有一定差异。为获得齿轮传动实际状况的齿面压力分布、油膜厚度及轮齿接触区次表面的应力分布,基于实测所得的表面粗糙度数据,采用有限元法对重载齿轮传动进行混合弹流润滑数值分析。结果表明:粗糙齿面接触时的齿面压力分布及轮齿接触区次表面应力分布均明显相异于赫兹分布或基于光滑齿面全膜弹流润滑计算所得的相应分布;齿面粗糙峰谷的存在会使齿面接触应力比赫兹接触应力增大25%左右,且齿面平均油膜厚度的最小值及接触应力的最大值均发生在啮入点而非节点。因此,现行的以赫兹应力为基础、以节点参数为依据进行齿轮传动接触强度设计的做法有失科学性和安全性。 展开更多
关键词 齿轮混合润滑 真实粗糙表面 数值分析 齿轮传动
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Predictions of friction and flash temperature in marine gears based on a 3D line contact mixed lubrication model considering measured surface roughness 被引量:8
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作者 SHI Xiu-jiang LU Xi-qun +5 位作者 HE Tao SUN Wen TONG Qing-shun MA Xuan ZHAO Bin ZHU Dong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1570-1583,共14页
Wear and scuffing failures often occur in marine transmission gears due to high friction and flash temperature at the interface between the meshing-teeth.In this paper,a numerical solution procedure was developed for ... Wear and scuffing failures often occur in marine transmission gears due to high friction and flash temperature at the interface between the meshing-teeth.In this paper,a numerical solution procedure was developed for the predictions of transient friction and flash temperature in the marine timing gears during one meshing circle based on the 3D line contact mixed lubrication simulation,which had been verified by comparing the flash temperature with those from Blok’s theory.The effect of machined surface roughness on the mixed lubrication characteristics is studied.The obtained results for several typical gear pairs indicate that gear pair 4-6 exhibits the largest friction and the highest interfacial temperature increase due to severe rough surface asperity contacts,while the polished gear surfaces yield the smallest friction and the lowest interfacial temperature.In addition,the influences of the operating conditions and the gear design parameters on the friction-temperature behaviors are discussed.It is observed that the conditions of heavy load and low rotational velocity usually lead to significantly increased friction and temperature.In the meantime,by optimizing the gear design parameters,such as the modulus and the pressure angle,the performance of interfacial friction and temperature can be significantly improved. 展开更多
关键词 GEARS 3D line contact mixed lubrication surface roughness FRICTION flash temperature
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