The modified 316LN austenitic stainless steel was selected as ITER correction coils case material to provide structural reinforcement to the winding pack. Considering the case structure, high-assembling accuracy and other strict requirements, 316LN in special extruded form has been developed. In the present study, the microstructure and mechanical properties of the material were investigated. The microstructure of the 316LN material was analyzed by means of the optical microscopy, transmission electron microscope, and X-ray diffraction. It was observed that the material presents fine grain size and a single austenitic phase. Moreover, the intergranular corrosion resistance of the 316LN was evaluated and the results indicated that it exhibit...
One of the most effective and economical ways to enhance the mechanical properties and corrosion beh...
Abstract- Austenitic stainless steels have been widely used in highly corrosive environments for pow...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
Within the European Fusion Technology Program for ITER (international thermonuclear experimental rea...
The International Thermonuclear Experimental Reactor (ITER) is a large-scale experimental facility t...
The National Institutes for Quantum Science and Technology (QST) has been developing new cryogenic s...
ITER correction coil (CC) cases have characteristics of small cross section, large dimensions, and c...
The ITER Correction Coils (CCs) consist of three sets of six coils, Bottom (BCC), Side (SCC) and Top...
AbstractA suite of advanced austenitic stainless steels are used for the ITER TF, CS and PF coil sys...
The ITER toroidal field (TF) coil structure is a huge welding stainless steel structure with a heigh...
Modified stainless steel 316LN (SS316LN) is designed as ITER TF jacket materials for the application...
The mechanical properties of two explosively formed saddle shaped 60 mm thick plates of 316L(N)-IG s...
The ITER central solenoid (CS) consists of six independent coils kept together by a precompression s...
The ITER magnet system is based on the “cable-in-conduit” conductor concept, which consists of vario...
ITER cable-in-conduit conductor (CICC) used in the superconducting magnet system consists of a cable...
One of the most effective and economical ways to enhance the mechanical properties and corrosion beh...
Abstract- Austenitic stainless steels have been widely used in highly corrosive environments for pow...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
Within the European Fusion Technology Program for ITER (international thermonuclear experimental rea...
The International Thermonuclear Experimental Reactor (ITER) is a large-scale experimental facility t...
The National Institutes for Quantum Science and Technology (QST) has been developing new cryogenic s...
ITER correction coil (CC) cases have characteristics of small cross section, large dimensions, and c...
The ITER Correction Coils (CCs) consist of three sets of six coils, Bottom (BCC), Side (SCC) and Top...
AbstractA suite of advanced austenitic stainless steels are used for the ITER TF, CS and PF coil sys...
The ITER toroidal field (TF) coil structure is a huge welding stainless steel structure with a heigh...
Modified stainless steel 316LN (SS316LN) is designed as ITER TF jacket materials for the application...
The mechanical properties of two explosively formed saddle shaped 60 mm thick plates of 316L(N)-IG s...
The ITER central solenoid (CS) consists of six independent coils kept together by a precompression s...
The ITER magnet system is based on the “cable-in-conduit” conductor concept, which consists of vario...
ITER cable-in-conduit conductor (CICC) used in the superconducting magnet system consists of a cable...
One of the most effective and economical ways to enhance the mechanical properties and corrosion beh...
Abstract- Austenitic stainless steels have been widely used in highly corrosive environments for pow...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...