Modeling and Verification of Creep Strain and Exhaustion in a Welded Steam Mixer

Author:

Holmström Stefan1,Rantala Juhani1,Laukkanen Anssi1,Kolari Kari1,Keinänen Heikki1,Lehtinen Olli2

Affiliation:

1. VTT Technical Research Centre of Finland, P.O. Box 1000, FI-02044 VTT, Finland

2. Fortum Power and Heat, 00048 Fortum, Finland

Abstract

Structures operating in the creep regime will consume their creep life at a greater rate in locations where the stress state is aggravated by triaxiality constraints. Many structures, such as the welded steam mixer studied here, also have multiple material zones differing in microstructure and material properties. The three-dimensional structure as such, in addition to interacting material zones, is a great challenge for finite element analysis (FEA), even to accurately pinpoint the critical locations where damage will be found. The studied steam mixer, made of 10CrMo 9-10 steel (P22), has after 100,000 h of service developed severe creep damage in several saddle point positions adjacent to nozzle welds. FE-simulation of long term behavior of this structure has been performed taking developing triaxiality constraints, material zones, and primary to tertiary creep regimes into account. The creep strain rate formulation is based on the logistic creep strain prediction model implemented to ABAQUS, including primary, secondary, and tertiary creep. The results are presented using a filtering technique utilizing the formulation of rigid plastic deformation for describing and quantifying the developing “creep exhaustion.”

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference29 articles.

1. Weldment Matching for Creep Life of P22 and P91 Girth Welds;Holmström

2. The Use of Computational Creep Continuum Damage Mechanics to Optimise Materials Selection for High Temperature Weldments;Hayhurst;Modell. Simul. Mater. Sci. Eng.

3. A Method for the Transformation of Creep Constitutive Equations;Perrin;Int. J. Pressure Vessels Piping

4. Approximate Creep Rupture Lifetimes for Butt Welded Steel Pressurised Pipes;Perrin;Eur. J. Mech. A/Solids

5. Weld Performance Under Creep Using Finite Element Modelling;Law;Int. J. Pressure Vessels Piping

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