A Computational—Experimental Method for Determination of the Stress—Strain State of Thermally-Loaded Power Equipment according to Full-Scale Strain-Gauging Data

Author:

Maslov S. V.

Publisher

Allerton Press

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Safety, Risk, Reliability and Quality

Reference15 articles.

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2. Matvienko, Yu.G., Two-parameter fracture mechanics in contemporary strength problems, J. Mach. Manuf. Reliab., 2013, vol. 42, no. 5, pp. 374–381.

3. Makhutov, N.A., Complex system of calculation and experimental determination of conditions and parameters of limit states, Zavod. Lab., Diagn. Mater., 2017, vol. 83, no. 1-I, pp. 52–56.

4. Makhutov, N.A., Evropin, S.V., Chernyavskii, A.O., and Chernyavskii, O.F., Analysis of stress-strain and limit state of structures with repeated non-isothermal loads, Probl. Mashinostr. Avtomatiz., 2017, no. 1, pp. 112–118.

5. Sharyi, N.V., Semishkin, V.P., Piminov, V.A., and Dragunov, Yu.G., Prochnost’ osnovnogo oborudovaniya i truboprovodov reaktornykh ustanovok VVER (The Strength of the Main Equipment and Pipelines of WWER Reactors), Moscow: Nauka, 2004.

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5. Application of full-scale strain studies results for determining the equipment internal surfaces damages during rapid changes of coolant temperature;Journal of Physics: Conference Series;2020-01-01

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