Published September 2015 | Version v1
Book

Finite element simulation and experimental investigation of welding residual stress for PWR safe-end

  • 1. Suzhou Nuclear Power Research Institute, Suzhou (China)
  • 2. Department of Material Science and Engineering, Tsinghua University, Beijing (China)

Description

A 3-D sequential coupling finite element simulation is performed to investigate the temperature field and residual stress in the dissimilar metal weld of a PWR safe-end and nozzle. Chemical compositions and welding residual stress of the dissimilar metal weld is tested. And residual stress of the welded joint of nozzle and safe-en has been studied, aiming to provide a reference for the fabrication and operation of safe-end and nozzle. The results show that large hoop (S33) and axial (S22) of welding residual stresses are generated in the weld metal. The maximum tensile and compressive stresses of S22 and S33 are all in the weld metal or at the interface of the nozzle and weld metal. Due to the difference in mechanical properties and chemical compositions between the base metal and weld metal, a discontinuous stress distribution is generated across the interface between the weld metal and nozzle. (authors)

Part of:
4th International Symposium on Materials and Reliability in Nuclear Power Plants: Proceedings and Abstracts

Additional details

Publishing Information

Publisher
China Nuclear Energy Association
Imprint Place
Beijing (China)
Imprint Title
4th International Symposium on Materials and Reliability in Nuclear Power Plants: Proceedings and Abstracts
Imprint Pagination
349 p.
Journal Page Range
[11 p.]

Conference

Title
4. International Symposium on Materials and Reliability in Nuclear Power Plants
Dates
20-23 Sep 2015
Place
Shenyang (China)

Optional Information

Notes
16 figs., 18 refs.