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Double-sided friction stir welding of Nitronic-40 stainless steel for application in tokamak devices
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作者 Supreeth Gaddam Ravi Sankar Haridas +4 位作者 Deepthi Tammana Charlie Sanabria Christopher J.Lammi Diana Berman Rajiv S.Mishra 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第28期170-183,共14页
Nitrogen containing austenitic stainless steels(N-ASS)are widely utilized to fabricate various structural components in tokamak type fusion reactors owing to their suitable mechanical and functional proper-ties.These ... Nitrogen containing austenitic stainless steels(N-ASS)are widely utilized to fabricate various structural components in tokamak type fusion reactors owing to their suitable mechanical and functional proper-ties.These components are exposed to a range of temperatures(4-500 K)and interact closely with the magnetic fields that are used to control and contain the plasma within the tokamak systems.Nitronic-40(N40)or XM-11 stainless steel is one such N-ASS used for fabricating structural components in the mag-netic and vacuum vessel systems in tokamak devices.Fabrication of most of the larger components in the magnetic and vacuum vessel systems typically involves some type of fusion-based welding process.This study presents a double-sided friction stir welding(FSW)approach as an alternative to fusion welding processes to join 12 mm thick N40 plates to obtain joints with a low fraction ofδferrite(a detrimen-tal ferromagnetic phase),high joint efficiency,no sensitization and loss of hardness in the heat affected zone,and minimal nitrogen desorption from the weld nugget.The double-sided FSW approach yielded superior weldments when compared to similar joints accomplished by fusion welding for application in tokamak devices. 展开更多
关键词 Friction stir welding Nitronic-40 stainless steel XM-11 stainless steel Magnetic and vacuum vessel systems Tokamak devices
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Elimination of extraordinarily high cracking susceptibility of aluminum alloy fabricated by laser powder bed fusion 被引量:1
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作者 Holden Hyer Le Zhou +5 位作者 Sharon Park Thinh Huynh Abhishek Mehta Saket Thapliyal Rajiv S.Mishra Yongho Sohn 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第8期50-58,共9页
Using the calculation of phase diagrams approach and Scheil solidification modeling,the Al-2.5Mg-1.0Ni-0.4Sc-0.1Zr alloy was designed,intentionally with an extraordinarily high cracking susceptibility,making it prime ... Using the calculation of phase diagrams approach and Scheil solidification modeling,the Al-2.5Mg-1.0Ni-0.4Sc-0.1Zr alloy was designed,intentionally with an extraordinarily high cracking susceptibility,making it prime for solidification cracking during laser powder bed fusion.This study demonstrates the ability to mitigate even the most extreme solidification cracking tendencies in aluminum alloys with only minor alloying additions of Sc and Zr,0.5 wt.%max.Furthermore,by employing a simple direct ageing heat treatment,good tensile mechanical properties were observed with a yield strength of 308 MPa,an ultimate tensile strength of 390 MPa,and a total elongation of 11%. 展开更多
关键词 Additive manufacturing Cracking susceptibility Aluminum alloy CALPHAD Mechanical properties
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