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Online since: July 2011
Authors: Hong Tao Zhang, Bo Chen, Wen Jie Jiang
Joining aluminium to titanium by MIG welding-brazing process Bo Chena, Hongtao Zhang*,b , Jun Zhouc Wenjie Jiangd School of Materials Science and Engineering, Harbin Institute of Technology at Weihai, Weihai, Shandong, 264209, China achenber@163.com, bhitzht@yahoo.com.cn, czjwhhit@163.com, wenjiedada@yahoo.cn Corresponding author.
Acknowledgements This work was supported by the Open Research Foundation from the Province Key Lab of Advanced Welding Technology of Jiangsu University of Science and Technology.
Mater Sci Forum 1997;242:11–24
Online since: October 2011
Authors: Jeong Min Kim, Seung Jin Lee, Ho Seob Yun, Seong Uk An, Joon Sik Park
Effect of Solid Solution Treatment on the Microstructure and Mechanical Properties of IN738LC Superalloy Jeong-Min Kim1a, Joon-Sik Park1b, Ho-Seob Yun1c, Seung-Jin Lee1d, Seong-Uk An2e, 1Div. of Advanced Mater.
Nofal: Materials Science Engineering A Vol. 487 (2008) p. 152
Forum Vol. 695 (2011) p. 405
Online since: August 2024
Authors: Julie Widiez, Sylvain Monnoye, Hugues Mank, Séverin Rouchier, Alexis Drouin, Hugo Biard, Christophe Maleville, Walter Schwarzenbach, Sidoine Odoul, Kassem Alassaad, Valentine Chagneux, Laetitia Coeurdray, Mael Coche, Sebastien Ledrappier, Thierry Barge, Alexandre Moulin, Damien Radisson, Sophie Barbet
Summary We have demonstrated that the SmartSiC™ engineered substrates are a key asset for the SiC power industry, with proven high crystal quality and ultra-low electrical resistivity.
The properties of the p-SiC used are monitored through different characterizations, some of which are disclosed here, enabling Soitec to tailor our engineered substrate performance.
Phys. 54 040103 (2015) [2] Rouchier S, Gaudin G, Widiez J, Allibert F, Rolland E, Vladimirova K, et al. 150 mm SiC Engineered Substrates for High-Voltage Power Devices.
[5] Drouin, A et al, “Application of advanced characterization techniques to SmartSiC™ product for substrate-level device performance optimization”, ICSCRM 2023
Materials Science Forum, vol. 1092, Trans Tech Publications, Ltd., 6 June 2023, pp. 201–207.
Online since: May 2014
Authors: Feng Kui Cui, Ya Fei Xie, Xiao Dan Dong, Li Min Hou
Simulation analysis of metal flow in high-speed cold roll-beating Cui Feng-kui 1, a, Xie Ya-fei 1, b, Dong Xiao-dan 1, c, Hou Li-min 1 , d Electromechanical Engineering College, Henan University of Science& Technology, Luoyang 471003, China acuifk2008@163.com, bxieyafei0914@163.com, c15138757409@163.com, dhoulimin1111@126.com Keywords: High-speed cold roll-beating; Flow law; Simulation; Analysis Abstract.
Spline cold rolling precision forming technology is a sophisticated, efficient, green and near net shape advanced manufacturing technology [1].
Forum Vol. 83-87 (1992), p. 119 [2] M.A.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Online since: February 2008
Authors: Gang Qin Shao, Xiu Xu Zhao, Zu De Zhou
WC-Co Tool Failure Mechanism in Titanium Alloys Machining Xiuxu Zhao 1, a, Zude Zhou 1,b and Gangqin Shao2,c 1 School of Mechanical and Electrical Engineering, Wuhan University of Technology, Wuhan, Hubei, 430070, China 2 State Key Laboratory of Advanced Technology for Material Synthesis & Processing, Wuhan Hubei, 430070, China a zhaoxiuxu@whut.edu.cn, bzudezhou@whut.edu.cn, c gqshao@whut.edu.cn Keywords: WC-Co carbide, Tool failure, Titanium alloys milling Abstract.
Forum Vol. 83-87 (1992), p. 119 [2] M.A.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Online since: March 2006
Authors: Bum Rae Cho, Han Young Lee
Characterization of Friction Materials Reinforced by Porous Mullite Bum-Rae Cho a and Han-Young Lee b Department of Advanced Materials Engineering, Keimyung University, 1000 Shindang-dong, Dalseo-gu, Daegu, 704-701 Korea a chobr@kmu.ac.kr, blhy@kmu.ac.kr Keywords: mullite reinforced composite, reaction sintering, injection molding, friction rate Abstract.
A systematic evaluation of friction and wear properties for mullite reinforced composites is necessary to develop advanced friction materials [8, 9].
Forum Vol. 449 (2004), p. 209 [8] A.T.
Online since: July 2019
Authors: Won Jae Lee, Myung Ok Kyun, Jung Woo Choi, Jung Doo Seo, Kap Ryeol Ku, Jung Gyu Kim, Jeong Min Choi, Byung Kyu Jang, Sang Ki Ko
Modified Hot-Zone Design for Large Diameter 4H-SiC Single Crystal Growth Jung-Woo Choi1,a, Jung-Gyu Kim1,b, Byung-Kyu Jang1,c, Sang-Ki Ko1,d, Myung-Ok Kyun1,e, Jung-Doo Seo1,f, Kap-Ryeol Ku1,g, Jeong-Min Choi2,h, Won-Jae Lee2,i * 1SKC Advanced Technology R&D Center, #102, Jeongja-ro, Jangan-gu, Suwon-Si, Gyeonggi-do, Korea 2Department of Advanced Materials Engineering, Dong-Eui University, 176, Eomgwang-ro, Busanjin-gu, Busan, Korea achoi.jw@sk.com, bjunggyukim@sk.com, cluchia76@sk.com, dskko@sk.com, ebjk@sk.com, fleonsjd@sk.com, gkukr@sk.com, hjmin3462@gmail.com, ileewj@deu.ac.kr* Keywords: modified hot-zone design, large diameter, 6-inch wafer, simulation Abstract. 6-inch 4H-SiC single crystal was grown with modified hot-zone design for large diameter crystal.
Forum, Vol. 483-485 (2005) 21-24
Online since: August 2022
Authors: Esah Hamzah, Noraziana Parimin
Oxidation Kinetic and Oxide Scale Morphology of Fe-33Ni-19Cr Ni-Based Superalloy Noraziana PARIMIN1,a,* and Esah HAMZAH2,b 1Faculty of Chemical Engineering Technology, Universiti Malaysia Perlis (UniMAP), 02600 Arau, Perlis, Malaysia. 2Faculty of Mechanical Engineering, Universiti Teknologi Malaysia (UTM), 81310 Skudai, Johor, Malaysia.
This is due to the ability of alloys to form a protective surface of oxide scales at high temperatures condition which enable them with resistance to advance high temperature oxidation [5].
Forum 1010 (2020) 58-64
Forum 1010 (2020) 21-27
Tan, Corrosion behavior of Ni-base alloys foe advanced high temperature water-cooled nuclear plants, Cor.
Online since: January 2011
Authors: José Manuel Torralba, Mónica Campos, Raquel De Oro
The next technological advance, under the point of view of pressing, is the high velocity compaction, or pressing by impact waves [[] Baird, K.S., Williams, J.D.
Int. 17 (1985) 71-74. ,[] Thummler F; Klein A; Oberacker R, USA Patent US4913739-A, 1983. ] or master alloys [[] Schwerdt.K; Naeser, G, International Journal of Powder Metallurgy, 9 (1973) 13-20. ,[] Mocarski, S, Metals Engineering Quarterly 13 (1973) 21-27. ,[] Retelsdorf, HJ; Fichte, RM; Hoffmann, G; Dalal, K, Metall 29 (1975) 1002-1006. ,[] Zapf, G; Hoffmann, G; Dalal, K, Powder Metall. 18 (1975) 214-236. ,[] Banerjee, S; Gemenetzis, V; Thummler, F, Powder Metall. 23 (1980) 126-129. ,[] Mocarski S, USA Patent US4382818-A, 1983. ] to reduce their activity during sintering.
PM2TEC’99, Advances in Powder Metallurgy and Particulate Materials.
Forum 416-418 (2003) 82-88. ].
In this way, the most recent studies are focused in new effective methods to introduce the Mn in the alloying system [[] Sicre-Artalejo, J., Campos, M., Marcu, T., Torralba, J.M., Materials Science Forum, 534-536, (2007) 697-700. ].
Online since: January 2013
Authors: Hak Yoon Kim
A high speed gyroplane concept involves high advance ratio autorotation or an unloaded autorotating rotor.
The inflow ratio and advance ratio are and .
Forum Vol. 83-87 (1992), p. 119 Fig. 5.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Dissertation, Dept. of Mechanical and Aerospace Engineering, Univ. of Massachusetts Amherst, Massachusetts, U.S., Apr. (1974).