Temperature and distortion transients in gas tungsten-arc weldments
An analysis and test program to develop a fundamental understanding of the gas tungsten-arc welding process has been undertaken at the Bettis Atomic Power Laboratory to develop techniques to determine and control the various welding parameters and weldment conditions so as to result in optimum weld response characteristics. These response characteristics include depth of penetration, weld bead configuration, weld bead sink and roll, distortion, and cracking sensitivity. The results are documented of that part of the program devoted to analytical and experimental investigations of temperatures, weld bead dimensions, and distortions for moving gas tungsten-arc welds applied to Alloy 600 plates.
- Research Organization:
- Bettis Atomic Power Lab. (BAPL), West Mifflin, PA (United States)
- DOE Contract Number:
- EY-76-C-11-0014
- OSTI ID:
- 5748288
- Report Number(s):
- WAPD-TM-1428; TRN: 80-002535
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
GAS TUNGSTEN-ARC WELDING
CONTROL
PENETRATION DEPTH
INCONEL 600
WELDED JOINTS
CONFIGURATION
CRACKS
DEFORMATION
EMISSIVITY
TEMPERATURE MEASUREMENT
ALLOYS
ARC WELDING
CHROMIUM ALLOYS
FABRICATION
INCONEL ALLOYS
IRON ALLOYS
JOINING
JOINTS
NICKEL ALLOYS
NICKEL BASE ALLOYS
NIOBIUM ALLOYS
OPTICAL PROPERTIES
PHYSICAL PROPERTIES
SURFACE PROPERTIES
WELDING
360101* - Metals & Alloys- Preparation & Fabrication
GAS TUNGSTEN-ARC WELDING
CONTROL
PENETRATION DEPTH
INCONEL 600
WELDED JOINTS
CONFIGURATION
CRACKS
DEFORMATION
EMISSIVITY
TEMPERATURE MEASUREMENT
ALLOYS
ARC WELDING
CHROMIUM ALLOYS
FABRICATION
INCONEL ALLOYS
IRON ALLOYS
JOINING
JOINTS
NICKEL ALLOYS
NICKEL BASE ALLOYS
NIOBIUM ALLOYS
OPTICAL PROPERTIES
PHYSICAL PROPERTIES
SURFACE PROPERTIES
WELDING
360101* - Metals & Alloys- Preparation & Fabrication