Residual Stress Distribution in Austenitic Stainless Steel Pipe Butt-Welded Joint Measured by Neutron Diffraction Technique

Author:

Maekawa Akira1,Oumaya Toru2,Noda Michiyasu1,Takahashi Shigeru1,Saito Toru3

Affiliation:

1. Institute of Nuclear Safety System, Inc.

2. The Kansai Electric Power Co., Inc.

3. Kobe Material Testing Laboratory Co., Ltd.

Abstract

This paper describes residual stress measurements and analysis of austenitic stainless steel pipe with a butt-welded joint. The measurements were done with neutron diffraction and strain gauge techniques. The measured results had typical characteristics of butt-welded pipe regarding both the decline of stress along the axial direction and the bending distribution of axial stress along the radial direction. The measured residual stress distribution by neutron diffraction was shifted more to the tensile side than that by the finite element method simulation. However, the measured radial and axial strains, except for the hoop strain determined by neutron diffraction, coincided well with analysis strains. The hoop strain was actually equivalent strain converted by a correction method because a different lattice plane had to be used to measure hoop strain. This might be one reason why the difference occurred. Therefore, future study of the correction method would be desirable.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference10 articles.

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2. The Society of Materials Science, Japan (JSMS): Guideline for �eutron Diffraction Method, JSMS, Kyoto, Japan (2004) (in Japanese).

3. S.K. Bate, A.P. Warren, C.T. Watson, P. Hurrell and J.A. Francis: Proc. 2007 ASME-PVP Conf., PVP2007-26337, San Antonio, Texas, USA, (2007).

4. R.D. Wit: J. Appl. Cryst. Vol. 30 (1997), p.510.

5. G. Simmons and H. Wang: Single Crystal Elastic Constants and Calculated Aggregate Properties, MIT Press, Cambridge, MA (1971).

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