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一种满装圆柱滚子轴承装配轴向游隙分析
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作者 崔红柳 《华东科技(综合)》 2020年第11期194-194,243,共2页
本文介绍了一种用在风电齿轮箱上的单列圆柱滚子轴承的外形结构,介绍了该圆柱滚子轴承游隙的配磨方法,并分析了装配时候轴承轴向游隙产生误差的原因,解决了装配过程中轴承游隙不符合设计要求的问题。
关键词 满装圆柱滚子轴承 轴向游隙 游隙超差分析
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往复式活塞泵曲轴退卸套装配分析研究
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作者 张洋 《科技资讯》 2012年第23期245-245,共1页
曲轴退卸套装配技术是往复式活塞泵装配的重要技术,决定活塞泵在工作时其曲轴是否正常运转,因此有必要对其进行受力分析,建立三维模型,对比数学计算分析方法、动态分析方法、静态分析方法,验证装配退卸套所需压力,以期望得出最佳受力分... 曲轴退卸套装配技术是往复式活塞泵装配的重要技术,决定活塞泵在工作时其曲轴是否正常运转,因此有必要对其进行受力分析,建立三维模型,对比数学计算分析方法、动态分析方法、静态分析方法,验证装配退卸套所需压力,以期望得出最佳受力分析方。 展开更多
关键词 退卸套 受力分析 摩擦系数 游隙分析
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Reliability and sensitivity analyses of HPT blade-tip radial running clearance using multiply response surface model 被引量:5
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作者 翟学 费成巍 +1 位作者 翟庆刚 王建军 《Journal of Central South University》 SCIE EI CAS 2014年第11期4368-4377,共10页
To reasonably design the blade-tip radial running clearance(BTRRC) of high pressure turbine and improve the performance and reliability of gas turbine, the multi-object multi-discipline reliability sensitivity analysi... To reasonably design the blade-tip radial running clearance(BTRRC) of high pressure turbine and improve the performance and reliability of gas turbine, the multi-object multi-discipline reliability sensitivity analysis of BTRRC was accomplished from a probabilistic prospective by considering nonlinear material attributes and dynamic loads. Firstly, multiply response surface model(MRSM) was proposed and the mathematical model of this method was established based on quadratic function. Secondly, the BTRRC was decomposed into three sub-components(turbine disk, blade and casing), and then the single response surface functions(SRSFs) of three structures were built in line with the basic idea of MRSM. Thirdly, the response surface function(MRSM) of BTRRC was reshaped by coordinating SRSFs. From the analysis, it is acquired to probabilistic distribution characteristics of input-output variables, failure probabilities of blade-tip clearance under different static blade-tip clearances δ and major factors impacting BTRRC. Considering the reliability and efficiency of gas turbine, δ=1.87 mm is an optimally acceptable option for rational BTRRC. Through the comparison of three analysis methods(Monte Carlo method, traditional response surface method and MRSM), the results show that MRSM has higher accuracy and higher efficiency in reliability sensitivity analysis of BTRRC. These strengths are likely to become more prominent with the increasing times of simulations. The present study offers an effective and promising approach for reliability sensitivity analysis and optimal design of complex dynamic assembly relationship. 展开更多
关键词 high pressure turbine blade-tip radial running clearance reliability sensitivity analysis multiply response surface method
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