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排序方式: 共有139条查询结果,搜索用时 15 毫秒
1.
LI Jian-liang XIONG Dang-sheng* WAN Yi Department of Materials Science Engineering Nanjing University of Science Technology Nanjing China 《中国航空学报》2006,19(Z1)
Ni-Cr-W-Al-Ti-MoS2 self-lubricating composites were prepared through the powder metallurgy (P/M) method. Their friction properties were investigated by a pin-on-disk tribometer in the range from the room temperature to 600 ℃. Alumina, silicon nitride and nickel-iron-sulfide alloys were selected as the counterface materials. Results indicate that the lowest friction coefficients under 0.22 can be obtained at 600 ℃ when rubbed against alumina. When rubbed against nickel-iron-sulfide alloys, are presented the lowest wear rates in the magnitude of 10-6 mm3/N·m, one order of magnitude lower than those when rubbed against ceramics. In the case of three rubbing pairs, the wear rates of the composite containing MoS2 present themselves inversely proportional to friction coefficients. With alumina ceramics used as a counterface, transfer films and glaze layers will form on the contact surface playing a main role in lubrication at high temperatures. However, when silicon nitride and nickel-iron-sulfide alloy are used, the lubricating transfer films appear not to be promi-nent. 相似文献
2.
高性能涡轮发动机润滑系统设计 总被引:5,自引:0,他引:5
林基恕 《燃气涡轮试验与研究》2003,16(1):7-9,17
简述了润滑剂对发动机设计的影响。阐明了使用酯类润滑油的设计问题及润滑系统通用的设计要求。 相似文献
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综合考虑了轮齿接触几何、啮合点法向载荷、齿向参数、真实表面粗糙度、润滑剂流变特性等因素,建立了滤波减速器轮齿混合润滑数值分析模型,采用复合迭代法和快速傅里叶变换(FFT)方法分别求解Reynolds方程和弹性变形方程,获得了轮齿接触表面混合润滑分析完全数值解,得到了滤波减速器在啮入点、节点和啮出点的压力与平均油膜厚度,以及转速对轮齿接触表面平均油膜厚度和接触比的影响.结果表明:在啮入点、啮出点及节点处,沿齿宽方向的压力分布不相等,两侧压力较大,而在啮入点处的两侧压力突变相对较小,且平均油膜厚度最大;对于粗糙轮齿接触表面,随着滤波减速器转速逐渐降低,啮入点、节点及啮出点的平均油膜厚度随之减小,接触比增加,润滑效果变差,并且在同一工况下粗糙轮齿接触表面的啮合点平均油膜厚度小于光滑轮齿表面的平均油膜厚度. 相似文献
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Nanoparticles with the anti-wear and friction reducing features were applied as cooling lubricant in the grinding fluid. Dry grinding, flood grinding, minimal quantity of lubrication(MQL), and nanoparticle jet MQL were used in the grinding experiments. The specific grinding energy of dry grinding, flood grinding and MQL were 84, 29.8, 45.5 J/mm3, respectively. The specific grinding energy significantly decreased to 32.7 J/mm3 in nanoparticle MQL. Compared with dry grinding, the surface roughness values of flood grinding, MQL, and nanoparticle jet MQL were significantly reduced with the surface topography profile values reduced by 11%, 2.5%, and 10%,respectively, and the ten point height of microcosmic unflatness values reduced by 1.5%, 0.5%,and 1.3%, respectively. These results verified the satisfactory lubrication effects of nanoparticle MQL. MoS2, carbon nanotube(CNT), and ZrO2 nanoparticles were also added in the grinding fluid of nanoparticle jet MQL to analyze their grinding surface lubrication effects. The specific grinding energy of MoS2 nanoparticle was only 32.7 J/mm3, which was 8.22% and 10.39% lower than those of the other two nanoparticles. Moreover, the surface roughness of workpiece was also smaller with MoS2 nanoparticle, which indicated its remarkable lubrication effects. Furthermore,the role of MoS2 particles in the grinding surface lubrication at different nanoparticle volume concentrations was analyzed. MoS2 volume concentrations of 1%, 2%, and 3% were used.Experimental results revealed that the specific grinding energy and the workpiece surface roughness initially increased and then decreased as MoS2 nanoparticle volume concentration increased.Satisfactory grinding surface lubrication effects were obtained with 2% MoS2 nanoparticle volume concentration. 相似文献
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为研究环下供油润滑系统中的流动过程和收油环收油效率的影响因素及其影响规律,基于VOF(Volume of fluid)两相流模型和滑移网格模型的数值计算方法,建立了环下润滑系统内部流场的计算模型。通过数值计算,获得了收油环的收油效率并验证了数值计算结果的有效性,分析和探讨了不同结构参数对收油效率的影响。计算结果表明:利用本文数值计算方法得到的收油效率和流动现象与已有实验和数值计算结果均一致;供油喷嘴角度和收油环外径均主要影响滑油射流冲击收油叶片的飞溅量和收油叶片切割滑油量,收油效率取决于二者的相对大小,θ=0°,θ=9°和r0=2mm,r0=6mm时收油效率取极大值;收油叶片数量和供油喷嘴与收油叶片间距离分别影响收油叶片切割滑油射流的时间间隔和滑油射流在到达收油叶片前的流动,不影响滑油射流冲击收油叶片的飞溅量和收油叶片切割滑油射流的量,对收油效率的影响较小。 相似文献
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高速滚子轴承的动力学分析 总被引:8,自引:3,他引:8
根据流体和弹流润滑理论,建立了滚子轴承各元件间的相互作用模型;并根据牛顿运动定律,建立了滚子轴承动力学模型,编制了相应的软件。可以计算各元件之间的载荷分布、油膜厚度,并能对滚子和保持架的打滑、滚子的歪斜和轴向窜动等运动特性进行动态模拟,从而为高速滚子轴承的设计计算和故障分析提供了一种新的有效工具。 相似文献
10.
CHEN Guodinga SUN Hengchaoa WANG Junb aSchool of Mechanical Engineering Northwestern Polytechnical University Xi’an China bAVIC Commercial Aircraft Engine Co. Ltd Shanghai China 《中国航空学报》2011,(3):355-362
The lubrication design and heat transfer determination of bearing chambers in aeroengine require a sufficient understanding of the oil droplet-film interaction and physical characteristic in an oil/air two-phase flow state.The analyses of oil droplet movement,mass and momentum transfer during the impingement of droplet/wall,as well as wall oil film thickness and flow velocity are very important for the bearing chamber lubrication and heat transfer calculation.An integrated model in combination with droplet movement,droplet/wall impact and film flow analysis is put forward initially based on the consideration of droplet size distribution.The model makes a contribution to provide more practical and feasible technical approach,which is not only for the study of droplet-film interaction and physical behavior in bearing chambers with oil/air two-phase flow phenomena,but also useful for an insight into the essence of physical course through droplet movement and deposition,film formation and flow.The influences of chamber geometries and operating conditions on droplet deposition mass and momentum transfer,and wall film thickness and velocity distribution are discussed.The feasibility of the method by theoretical analysis is also verified by the existing experimental data.The current work is conducive to expose the physical behavior of wall oil film configuration and flow in bearing chamber,and also significant for bearing chamber lubrication and heat transfer study under oil/air two-phase flow conditions. 相似文献