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长筒薄壁锥度件滚床的设计思路及工件制作
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作者 康宏亮 《机械研究与应用》 2000年第1期43-43,47,共2页
对板金技术加工长型圆锥形薄壁工件作了全面的论述 ,针对板金理论与实际应用中只能加工圆柱形和近似圆锥形工件 ,阐述了加工长型圆锥形薄壁工件的设计思路及加工过程。
关键词 液床 锥度滚轴 转向 长筒薄壁件
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Time-varying stiffness analysis of double-row tapered roller bearing based on the mapping structure of bearing stiffness matrix
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作者 Di Yang Xi Wang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第11期89-100,共12页
Time-varying stiffness is one of the most important dynamic characteristics of rolling element bearings.The method of analyzing the elements in the bearing stiffness matrix is usually adopted to investigate the charac... Time-varying stiffness is one of the most important dynamic characteristics of rolling element bearings.The method of analyzing the elements in the bearing stiffness matrix is usually adopted to investigate the characteristics of bearing stiffness.Linear mapping structure of the bearing stiffness matrix is helpful to understand the varying compliance excitation and its influence on vibration transmission.In this study,a method to analyze the mapping structure of bearing stiffness matrix is proposed based on the singular value decomposition of block matrices in the stiffness matrix.Not only does this method have the advantages of coordinate transformation independence and unit independence,but also the analysis procedure involved is geometrically intuitive.The time-varying stiffness matrix of double-row tapered bearing is calculated and analyzed using the proposed method under two representative load cases.The principal stiffnesses and principal axes defined in the method together indicate the dominant and insignificant stiffness properties with the corresponding directions,and the vibration transmission properties are also revealed.Besides,the coupling behaviors between different shaft motions are found during the analysis of mapping structure.The mechanism of the generation of varying compliance excitation is also revealed. 展开更多
关键词 Rolling element bearing Time-varying stiffness matrix Mapping structure Vibration transmission Varying compliance excitation
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