Experimental study on a noncontact method using laser displacement sensors to measure vibration stress in piping systems

Author:

Maekawa Akira,Noda Michiyasu,Shintani Masanori

Publisher

Elsevier BV

Subject

Applied Mathematics,Electrical and Electronic Engineering,Condensed Matter Physics,Instrumentation

Reference35 articles.

1. Statistics of pressure vessel and piping failures;Bush;J. Pressure Vessel Technol.,1988

2. R.M. Gamble, S.W.J. Tagart, A method to assign failure rates for piping reliability assessments, in: Proceedings of ASME Pressure Vessels and Piping Conference, San Diego, CA, USA, vol. 215, 23–27 June 1991, pp. 3–12.

3. Failure mechanisms in nuclear power plant piping systems;Bush;J. Pressure Vessel Technol.,1992

4. S.R. Gosselin, K.N. Fleming, Evaluation of pipe failure potential via degradation mechanism assessment, in: Proceedings of 5th International Conference on Nuclear Engineering (ICONE 5), Nice, France, 26–30 May 1997, ICON-2641.

5. Pipe failure probability – the Thomas paper revised;Lydell;Reliab. Eng. Syst. Safety,2000

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