Welding for Cryogenic Service

Author:

Siewert T.A.1,McCowan C.N.1

Affiliation:

1. National Institute of Standards and Technology

Abstract

Abstract Cryogenic temperatures cause many structural alloys to become brittle, which is an unacceptable condition in most structural applications and is rectified by optimizing the weld composition. Although nonmatching weld compositions are most appropriate, differences between the welds and parent material in terms of thermal contraction, corrosion, and other factors must be considered. This article discusses these differences and describes the effect of these factors on the choice of the weld filler metal. It also provides a detailed discussion on the effects of cryogenic services on mechanical properties of the parent metal.

Publisher

ASM International

Reference29 articles.

1. “Materials for Superconducting Magnet Systems: Mechanical and Physical Properties Data at Low Temperatures,”,1979

2. Cryogenic Fe-Mn Austenitic Steels;Horiuchi;Adv. Cryogenic Eng. (Mater.),1985

3. Strength-Toughness Relationship of Austenitic Stainless Steel Welds at 4 K;Tobler;Cryogenics,1986

4. Influence of Molybdenum on the Strength and Toughness of Stainless Steel Welds for Cryogenic Service, “Materials Studies for Magnetic Fusion Energy Applications at Low Temperatures—X,”;McCowan,1987

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