Residual stress reduction in the penetration nozzle weld joint by overlay welding

Wenchun Jiang, Yun Luo, B. Y. Wang, S. T. Tu, J. M. Gong

科研成果: 期刊稿件文章同行评审

28 引用 (Scopus)

摘要

Stress corrosion cracking (SCC) in the penetration nozzle weld joint endangers the structural reliability of pressure vessels in nuclear and chemical industries. How to decrease the residual stress is very critical to ensure the structure integrity. In this paper, a new method, which uses overlay welding on the inner surface of nozzle, is proposed to decrease the residual stresses in the penetration joint. Finite element simulation is used to study the change of weld residual stresses before and after overlay welding. It reveals that this method can mainly decrease the residual stress in the weld root. Before overlay welding, large tensile residual stresses are generated in the weld root. After overlay weld, the tensile hoop stress in weld root has been decreased about 45%, and the radial stress has been decreased to compressive stress, which is helpful to decrease the susceptibility to SCC. With the increase of overlay welding length, the residual stress in weld root has been greatly decreased, and thus the long overlay welding is proposed in the actual welding. It also finds that this method is more suitable for thin nozzle rather than thick nozzle.

源语言英语
页(从-至)443-450
页数8
期刊Materials and Design
60
DOI
出版状态已出版 - 8月 2014

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