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The Vibrations of a Spinning Disk

✍ Scribed by Lamb, H.; Southwell, R. V.


Book ID
120136449
Publisher
The Royal Society
Year
1921
Tongue
English
Weight
651 KB
Volume
99
Category
Article
ISSN
0962-8444

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✦ Synopsis


  1. This paper treats of the transverse vibrations of a circular disk of uniform thickness rotating about its axis with constant angular velocity. The problem has a practical bearing, as throwing light on the occasional failure of turbine disks. In an impulse turbine blades are fitted to the rim of a thin disk, and steam is admitted to them from nozzles which are usually arranged symmetrically, but not always continuously, round the periphery. The failures appear to be sometimes due to the blades coming in contact with the adjacent parts. This points to transverse vibrations, and there can be little doubt that the phenomenon is one of resonance between the periodic forces exerted by the steam jets and the periods of free vibration of the disk. For a thorough investigation it would be necessary to ascertain, to a reasonable degree of approximation, the free periods of a symmetrical disk of any given profile. This may form the theme of a subsequent investigation by one of the authors. In the meantime the study of the simpler case now discussed illustrates the physical aspects of the problem, and has suggested an important simplification in method.

πŸ“œ SIMILAR VOLUMES


The Vibrations of a Spinning Disk
✍ H. Lamb and R. V. Southwell πŸ“‚ Article πŸ“… 1921 πŸ› The Royal Society 🌐 English βš– 595 KB
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A comprehensive investigation of the free in-plane vibration of a spinning annular disk is presented in this paper. Emphasis is given to the effect of clamping ratio on the natural frequencies and critical speeds of the spinning disk. For a disk with small clamping ratio, the limiting speed at which

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✍ G.H JANG; S.H LEE; M.S JUNG πŸ“‚ Article πŸ“… 2002 πŸ› Elsevier Science 🌐 English βš– 401 KB

Free vibration of a spinning #exible disk}spindle system supported by ball bearing and #exible shaft is analyzed by using Hamilton's principle, FEM and substructure synthesis. The spinning disk is described by using the Kirchho! plate theory and von Karman non-linear strain. The rotating spindle and