Fatigue Properties and Residual Stresses of Laser-Welded Heat-Resistant Pressure Vessel Steel, Verification on Vessel Model

Abstract

Most power plants use the Rankine cycle, where the heat supplied to water and steam is converted into mechanical work; therefore, most components have to be made of heat-resistant steel. Sufficient mechanical properties must be ensured for welded pipes to meet stringent requirements. Therefore, laser-welded 5 mm thick heat-resistant pressure vessel steel plates were subjected to various mechanical tests, including high-cycle fatigue tests. The microstructural notches were determined using X-ray diffraction too to determine critical areas that are susceptible to crack initialization and affect the service life. Finally, a functional model of the pressure vessel subsequently verified the results and assumptions. The presented results ensure the transferability of the results to real-life applications and outline the promising application potential of laser welding for producing vessels and pipes from heat-resistant steel in the industry.

Description

Subject(s)

laserové svařování, teplotně odolné oceli pro tlakové nádoby, mikrostruktura, rentgenová difrakce, vysokocyklové únavové zkoušky

Citation

ČAPEK, J. KEC, J. TROJAN, K. ČERNÝ, I. GANEV, N. KOLAŘÍK, K. NĚMEČEK, S. Fatigue Properties and Residual Stresses of Laser-Welded Heat-Resistant Pressure Vessel Steel, Verification on Vessel Model. Metals, 2022, roč. 12, č. 9, s. 1-16. ISSN: 2075-4701