Expanding the applicable duration for shrink fitting of the ultrathin-walled reactor coolant pump rotor-can
Author:
Funder
Major State Basic Research Development Program of China
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering
Reference15 articles.
1. Coupled thermomechanical analysis of autofrettaged and shrink-fitted compound cylindrical shells;Abdelsalam;J. Pressure Vessel Technol.,2013
2. Effect of temperature on tensile behavior of Ni-Cr-W based superalloy;Bai;Mater. Sci. Eng. A,2011
3. Numerical study on seismic response of the reactor coolant pump in advanced passive pressurized water reactor;Cheng;Nucl. Eng. Des.,2014
4. AP1000 core design with 50% MOX loading;Fetterman;Ann. Nucl. Energy,2009
5. Residual stress in shrink fits;Gamer;Int. J. Mech. Sci.,1983
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1. Finite Element Analysis of the Influence of Chamfer Hub Geometry on the Stress Concentrations of Shrink Fits;Applied Sciences;2023-03-11
2. Finite Element Analysis of the Reduction in Stress Concentration Factors in Shrink Fits by Using Contact Rings;Applied Sciences;2022-10-06
3. Evaluation of service reliability of AP1000 nuclear reactor coolant pump rotor-can;Annals of Nuclear Energy;2022-07
4. Stress analysis of shrink fitting process of ultra-thin reactor coolant pump rotor-can;Annals of Nuclear Energy;2021-11
5. Shape-righting capacity analysis of vacuum hot bulge forming process of reactor coolant pump rotor-can with ring-shaped defects;Vacuum;2019-04
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