Low cycle fatigue modelling of a steam turbine rotor steel

Author:

Azeez Ahmed,Eriksson Robert,Calmunger Mattias,Lindström Stefan B.,Simonsson Kjell

Publisher

Elsevier BV

Subject

General Engineering,Energy Engineering and Power Technology

Reference11 articles.

1. Materials for Ultra-Supercritical and Advanced Ultra-Supercritical Power Plants;Gianfrancesco,2017

2. Azeez, A., Eriksson, R., Calmunger, M., 2019. Characterisation of deformation and damage in a steam turbine steel subjected to low cycle fatigue. To be presented at Materials Structure and Micromechanics of Fracture, Brno, Czech Republic, June 2019.

3. Dassault Systemes, 2016. ABAQUS User’s Manual, Version 2017. Johnston, RI, USA.

4. Low-cyclic fatigue behavior of modified 9Cr-1Mo steel at elevated temperature;Guguloth;Materials Science and Engineering A,2014

5. Creep-resistant Materials for Steam Turbines;Holdsworth,2004

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1. High-temperature low-cycle fatigue characteristics of the 12Cr10Co3MoWVNbNB turbine rotor steel;Engineering Failure Analysis;2024-11

2. Effect of Start-up Operating Modes on the Cyclic Damage of Thermal Power Plant Units;2022 IEEE 8th International Conference on Energy Smart Systems (ESS);2022-10-12

3. Working process of steam turbine and establishment of start-up model;International Journal of Physics Research and Applications;2021-05-24

4. Characterisation of deformation and damage in a steam turbine steel subjected to low cycle fatigue;Procedia Structural Integrity;2019

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