Neutron Diffraction Investigation of Residual Stresses Induced in Niobium-Steel Bilayer Pipe Manufactured by Explosive Welding

Author:

Taran Yury1,Balagurov Anatoly M.1,Sabirov Basar1,Davydov Vadim2,Venter Andrew M.3

Affiliation:

1. Joint Institute for Nuclear Research

2. SINQ

3. Necsa Limited

Abstract

Recently, reliable and hermetic joining of stainless steel to niobium pipes has been achieved with the explosive bonding technique. Joining of these two materials are essential to ensure production of a bimetallic transition element of pipe-type for its further use as a part of charged beam acceleration systems of the new generation. A non-destructive neutron diffraction investigation of the tri-axial strains along a radial cross-sectional line through the joint section has been performed. Residual stress results indicate inherently different natures in the residual stress values within the respective pipe sections. In the external stainless steel pipe the residual stresses are tensile, showing a sudden increase to 600 MPa as the interface is approached, whilst being compressive in the internal niobium pipe, not exceeding 650 MPa. A characteristic abrupt stress discontinuity exits at the interface region.

Publisher

Trans Tech Publications, Ltd.

Subject

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

Reference11 articles.

1. I. Malkov, V. Perevozchikov, V. Rybakov, V. Zhigalov et al. Investigations of the possibility of producing the bimetallic tube transition element by explosion welding for the cryomodule of the International Linear Collider. JINR Communication E13-2008-109, Dubna, (2008).

2. J. Budagov, B. Sabirov, A. Sissakian, G. Trubnikov et al. Cylindrical niobium - stainless steel transition element manufactured by explosion welding. JINR Communication P13-2010-57, Dubna, (2010).

3. J. Budagov, A. Chernikov , B. Sabirov, A. Sissakian et al. Leak rate measurements on bimetallic transition samples for ILC cryomodules. JINR Communication E13-2008-110, Dubna, (2008).

4. Yu.V. Taran, A.M. Balagurov, B.M. Sabirov, A. Evans, V. Davydov, A.M. Venter. Residual stresses in a stainless steel – titanium alloy joint made with the explosive technique. Journal of Physics: Conference Series 340 (2012) 012105 (8pp).

5. Yu.V. Taran, A.M. Balagurov. Correction of a neutron diffraction peak shift due to a partial immersion of a gauge volume in an unstressed sample. Nuclear Instruments and Methods A 679 (2012) 19.

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