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平行滑块表面不同形状复合型织构的润滑性能研究 被引量:5
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作者 胡宇 王优强 +3 位作者 菅光霄 左名玉 房玉鑫 莫君 《表面技术》 EI CAS CSCD 北大核心 2022年第1期43-51,共9页
目的研究具有仿生硅藻结构的复合型织构对滑动轴承润滑性能的影响。方法采用流固耦合的方法,对具有复合型织构的单元模型进行研究,依照硅藻的多孔结构,设计出矩形-半球型、矩形-椭球型、圆柱-半球型及圆柱-椭球型等4种类型的织构,建立... 目的研究具有仿生硅藻结构的复合型织构对滑动轴承润滑性能的影响。方法采用流固耦合的方法,对具有复合型织构的单元模型进行研究,依照硅藻的多孔结构,设计出矩形-半球型、矩形-椭球型、圆柱-半球型及圆柱-椭球型等4种类型的织构,建立这几种复合型织构的单个单元模型。在不同面积率和织构深度条件下,分析不同织构类型对滑动表面摩擦润滑性能的影响。结果在考虑摩擦性能与承载力的条件下,矩形-半球型和矩形-椭球型织构的最佳面积率为25%,最佳深度分别为0.9 mm和1.1 mm;圆柱-半球型和圆柱-椭球型织构的最佳面积率分别为35%和25%,最佳织构深度分别为1.1 mm和0.9 mm。在不同织构深度条件下,随着复合织构面积率的变化,圆柱-半球型的承载力和摩擦学性能最好,圆柱-椭球型次之,而矩形半球型和矩形-椭球型复合织构的承载力和摩擦学性能的变化几乎相同。结论复合型织构的最佳面积率和最佳深度与织构形状有关,在相同面积率和深度的条件下,最佳的复合型织构形状为圆柱-半球型织构。 展开更多
关键词 复合织构 流体动压润滑 流固耦合 CFD数值模拟 有限元分析
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Analysis of lubrication performance for internal meshing gear pair considering vibration 被引量:3
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作者 jian guang-xiao WANG You-qiang +2 位作者 ZHANG Ping LI Yun-kai LUO Heng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第1期126-139,共14页
The thermal elasto-hydrodynamic lubrication characteristics of the internal meshing gears in a planetary gear train under vibrations were examined considering the influence of the modification coefficient and time-var... The thermal elasto-hydrodynamic lubrication characteristics of the internal meshing gears in a planetary gear train under vibrations were examined considering the influence of the modification coefficient and time-varying meshing stiffness.Based on dynamic theory of the gear system,a dynamic model of the planetary gear train was established.The lubrication performances of modified gear systems under vibrations and static loads were analyzed.Compared with other transmission types,the best lubrication effect could be produced by the positive transmission.A thicker lubricating oil film could be formed,and the friction coefficient and oil film flash temperature are the smallest.Increasing modification coefficient improves the lubrication performance continuously but intensifies the engage-in and tooth-change impact.For the planetary and inner gears,the increase in the modification coefficient also leads a decrease in the oil film stiffness. 展开更多
关键词 internal meshing gears dynamic model modification coefficient lubrication performance oil film stiffness
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Thermal elastohydrodynamic lubrication of modified gear system considering vibration 被引量:2
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作者 jian guang-xiao WANG You-qiang +2 位作者 ZHANG Ping LI Yun-kai LUO Heng 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第11期3350-3363,共14页
The thermal elastohydrodynamic lubrication characteristics of a modified gear system under a dynamic load were investigated,including the influence of the modification coefficient and vibrations.Based on the dynamic t... The thermal elastohydrodynamic lubrication characteristics of a modified gear system under a dynamic load were investigated,including the influence of the modification coefficient and vibrations.Based on the dynamic theory of gear systems,a six-degree-of-freedom tribo-dynamics model was established.Thermal elastohydrodynamic lubrication characteristics of a modified gear system under vibrations and a static load were analyzed.The results showed that the positive transmission gear system exhibited the better lubrication effect compared with other transmission types.A thick lubricating oil film could be formed,and the friction coefficient between the teeth and the oil film flash temperature were the smallest.As the modification coefficient increased,the lubrication condition was continuously improved,and the scuffing load capacity was enhanced.The increment of the modification coefficient increased the meshing stiffness of the gear system but reduced the stiffness of the oil film. 展开更多
关键词 involute spur gear tribo-dynamics model oil film stiffness modification coefficient lubrication property
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