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Bending vibration analysis of rotating machineries using multibody dynamics technology — development of computer program RotB

Bending vibration analysis of rotating machineries using multibody dynamics technology — development of computer program RotB
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摘要 This paper examines a computer program developed to analyze the vibration of rotating machineries based on theories of vibration and multibody dynamics (MBD). Bending vibration problems of rotating machineries have generally been categorized as either linear or nonlinear. Linear problems can be formulated by standard methods and nonlinear problems can be formulated by MBD methods. In our study, nonlinear problems are treated by the use of a general-purpose computer program, RecurDyn (RD). In the program we developed, rotor bending vibration analysis (RotB) structural properties such as shafts, rotating rotary disks, unbalanced masses and foundation structures are modeled as multibody elements. Also, nonlinearities such as contact, non-symmetrical shaft effects, bearing characteristics, nonlinear restoring and damping characteristics in the bearings are taken into account. The computational results demonstrate the validity of RotB. This paper examines a computer program developed to analyze the vibration of rotating machineries based on theories of vibration and multibody dynamics (MBD). Bending vibration problems of rotating machineries have generally been categorized as either linear or nonlinear. Linear problems can be formulated by standard methods and nonlinear problems can be formulated by MBD methods. In our study, nonlinear problems are treated by the use of a general-purpose computer program, RecurDyn (RD). In the program we developed, rotor bending vibration analysis (RotB) structural properties such as shafts, rotating rotary disks, unbalanced masses and foundation structures are modeled as multibody elements. Also, nonlinearities such as contact, non-symmetrical shaft effects, bearing characteristics, nonlinear restoring and damping characteristics in the bearings are taken into account. The computational results demonstrate the validity of RotB.
出处 《Theoretical & Applied Mechanics Letters》 2012年第6期55-60,共6页 力学快报(英文版)
关键词 bending vibration rotating machineries nonlinear analysis oil bearing non-linearity CONTACT impact and friction earthquake excitation bending vibration, rotating machineries, nonlinear analysis, oil bearing non-linearity, contact, impact and friction, earthquake excitation
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参考文献14

  • 1Y. Baba, H. Sanari, and T. Miyaji, et al, Kobe Steel Engi- neering Reports 48, 26 (1998) (in Japanese).
  • 2H. Koike, and H. Wada, Science of machine 56, 521 (2004) (in Japanese).
  • 3RBTS, Inc. http://www.rbts.com/.
  • 4Rotating Machinery Analysis, Inc., http://www.xlrotor. com/index.shtml.
  • 5Delt'a JS AG, http://www,delta-js.ch/english/software/,.
  • 6/ I I- M. Matsushita, M. Tanaka, and H. Kanki, et al., Vibration of Rotating Machinery (Corona Pub. Co.,Japan, 2009).
  • 7M. Kurohashi, [Ph.D. Thesis] (Kobe University, Japan, 1981).
  • 8T. Someya, (editor), Journal-Bearing Data Book (Springer- Verlag, Germany, 1988).
  • 9Taniguchi, Vibration Hand book (Yokendo, Japan, 1988).
  • 10RecurDyn Manual, Function Bay, Inc., 2012, http://function bay.co.kr/.

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