Investigation of microstructure and mechanical properties of explosively welded ITER-grade 316L(N)/CuCrZr hollow structural member
- 1. Navy Command Academy, Nanjing 210007 (China)
- 2. PLA University of Science and Technology, Nanjing 210007 (China)
- 3. Southwestern Institute of Physics, Chengdu 610041 (China)
Description
Highlights: • Develop a new explosive welding method to fabricate the hollow structural member. • Effects of solution annealing on microstructure of welding interface researched. • Influence of heat treatments on hardness evolution in welding interface studied. • The ultimate strength and elongation were increased after solution annealing. • The interface of samples was exhibited ductile fracture after solution annealing. - Abstract: In this study, a new explosive welding method furnished an effective way for manufacturing ITER-grade 316L(N) stainless steel/CuCrZr alloy hollow structural member. In order to recover some hardening effects, caused by plastic deformation during explosion welding in the materials bonding interface region, the welded samples were subject to the solution annealing (SA) treatment at 970 °C for 30 min. The SA heat-treated samples were then aged at 580 °C for 2 h. Optical microscopy (OM) and electron microscopy (SEM) were used to analyze the microstructure of bonding interface. Energy dispersive spectroscopy (EDS) analysis was performed to investigate the diffusion zone formed in the interface region after the solution annealing (SA) treatment. Moreover, the mechanical properties of the welded samples were evaluated through microhardness test and tensile strength test. Microstructural analysis showed that the welded sample had a wavy interface, and there was no melting zone and intermetallic layer formed in the interface. The result of microhardness test revealed an increase in hardness for both sides near to the bonding interface; this is due to more severe plastic deformation in these regions during the explosive welding. After the tensile test, obvious necking was observed in the fracture cross section of samples. SEM observation indicated that the samples with the post solution annealing treatment exhibited a ductile fracture with dimple features after tensile test
Availability note (English)
Available from http://dx.doi.org/10.1016/j.fusengdes.2015.02.018Additional details
Identifiers
- DOI
- 10.1016/j.fusengdes.2015.02.018;
- PII
- S0920-3796(15)00101-5;
Publishing Information
- Journal Title
- Fusion Engineering and Design
- Journal Volume
- 93
- Journal Page Range
- p. 43-50
- ISSN
- 0920-3796
- CODEN
- FEDEEE
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 47031107
- Subject category
- S36: MATERIALS SCIENCE; S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Descriptors DEI
- ANNEALING; COPPER ALLOYS; DIFFUSION; EXPLOSION WELDING; FRACTURES; ITER TOKAMAK; MICROHARDNESS; MICROSTRUCTURE; OPTICAL MICROSCOPY; PLASTICITY; SCANNING ELECTRON MICROSCOPY; SPECTROSCOPY; STAINLESS STEEL-316L; TENSILE PROPERTIES; ULTIMATE STRENGTH
- Descriptors DEC
- ALLOYS; AUSTENITIC STEELS; CARBON ADDITIONS; CHROMIUM ALLOYS; CHROMIUM STEELS; CHROMIUM-MOLYBDENUM STEELS; CHROMIUM-NICKEL STEELS; CHROMIUM-NICKEL-MOLYBDENUM STEELS; CLOSED PLASMA DEVICES; CORROSION RESISTANT ALLOYS; ELECTRON MICROSCOPY; FABRICATION; FAILURES; HARDNESS; HEAT RESISTANT MATERIALS; HEAT RESISTING ALLOYS; HEAT TREATMENTS; HIGH ALLOY STEELS; IRON ALLOYS; IRON BASE ALLOYS; JOINING; LOW CARBON-HIGH ALLOY STEELS; MATERIALS; MECHANICAL PROPERTIES; MICROSCOPY; MOLYBDENUM ALLOYS; NICKEL ALLOYS; STAINLESS STEELS; STEEL-CR17NI12MO3-L; STEELS; THERMONUCLEAR DEVICES; THERMONUCLEAR REACTORS; TOKAMAK DEVICES; TOKAMAK TYPE REACTORS; TRANSITION ELEMENT ALLOYS; WELDING
Optional Information
- Copyright
- Copyright (c) 2015 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.