The effect of temperature on strength differential and material effort of steam turbine rotors (original) (raw)

The Effect of Strength Differential on Material Effort and Lifetime of Steam Turbine Rotors Under Thermo-Mechanical Load

Waldemar Dudda

Engineering Transactions, 2019

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Thermo-mechanical fatigue prediction of a steam turbine shaft

Jan Papuga

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Thermo-Mechanical Fatigue Analysis of a Steam Turbine Shaft

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Structure and Mechanical Properties of Steel Steam Turbine Rotor Blades after Operation

Ivan Tsybailo

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Cyclic plasticity behaviors of steam turbine rotor subjected to cyclic thermal and mechanical loads

Haofeng Chen

European Journal of Mechanics - A/Solids

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Development of thermal fatigue damage in 1CrMoV rotor steel

Luigia Binda

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Static and Fatigue Analysis of a Steam Turbine Blade

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Stress Simulation of General Steam Turbine Blade Materials.

Ijesrt Journal

International Journal of Engineering Sciences & Research Technology, 2013

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Reheat cracking studies on simulated heat-affected zones of CrMoV turbine rotor steels

J. Ernesto Indacochea

J Mater Eng Perform, 1996

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Rafid Hannun

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TECHNOLOGY Stress Simulation of General Steam Turbine Blade Materials

Utkarsh Patel

2013

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Jakub Pawlicki

Archive of Mechanical Engineering, 2016

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IJERT-Low Cycle Thermal Fatigue Damage In Steam Turbine Rotor-Analytical Evaluationof Remaining Life -A Case Study

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International Journal of Engineering Research and Technology (IJERT), 2013

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Applicability of Notch Stress-Strain Correction Methods to Low-Cycle Fatigue Life Prediction of Turbine Rotors Subjected to Thermomechanical Loads

Waldemar Dudda

Acta Mechanica et Automatica, 2018

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Life Assessment of Steam Turbine Components Based on Viscoplastic Analysis

Woosung Choi

Journal of Solid Mechanics and Materials Engineering, 2008

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On the Burzyński stress effort during thermomechanical loading of a turbine blade

Waldemar Dudda

AIP Conference Proceedings, 2020

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On a comparison of Huber-Mises-Hencky with Zawadzki equivalent stress for a steam turbine blade during nonstationary thermal load

Waldemar Dudda

AIP Conference Proceedings, 2020

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Corrosion fatigue failure of steam turbine moving blades: A case study

Darko Damjanovic

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Thermo-Mechanical Fatigue Life Assessment of a Gas Turbine Rotor Through Reliability Approach

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Fracture Toughness of Different Region Materials from a Dissimilar Metal Welded Joint in Steam Turbine Rotor

Wenke Wang

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IJRASET, 2021

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JAYANTA DAS

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Estimation of Fatigue Crack Growth at Transverse Vibrations of a Steam Turbine Shaft

Anatoliy Bovsunovsky

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FATIGUE FAILURE ANALYSIS OF STEAM TURBINE SHAFT USING FEM TECHNIQUE INTRODUCTION OF STEAM TURBINE SHAFT

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Research Article DETERMINATION OF STRESS INTENSITY FACTORS IN LOW PRESSURE TURBINE ROTOR DISCS

Gordana Bakic

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Clean steels for steam turbine rotors—their stress corrosion cracking resistance

Markus O. Speidel

Metallurgical Transactions A, 1988

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Maciej Roskosz, Wojciech Kosman

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The impact of heat treatment and shot peening on the fatigue strength of 51CrV4 steel

Władysław Zielecki

Procedia Structural Integrity, 2016

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Challenges in Design and Development of Steam Turbine Rotors with Alloy617(M) for Indian AUSC Program

Jatinder Mohan

International journal of engineering research and technology, 2019

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Mathematical Model of Transient Temperature Distribution and Thermal Stresses in Large Steam Turbine Rotors

J. Sasiadek

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DEVELOPING THE STEAM TURBINE BLADES BY USING VARIOUS MATERIALS INSTEAD OF EXISTING ONE AND CONDUCTING THE STRESS ANALYSIS

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Fatigue assessment of corroded turbine blade steels

Stefanie Stanzl-tschegg

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Technical Note the Causes of Local Hardness Increasing in Powerplant Rotors and Its Modification by Tempering

Esmaeil Poursaeidi

2008

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