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EFFECT OF SEVERE AUSFORMING ON THE SHAPE MEMORY MICROSTRUCTURE OF A COPPER BASED ALLOY
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Sahar A. Fadlallah, Nader El-Bagoury, Sanaa M.F. Gad El-Rab, Rasha A. Ahmed, Ghaida El-Ousamii. An overview of NiTi shape memory alloy: Corrosion resistance and antibacterial inhibition for dental application, Journal of Alloys and Compounds 583, pp 455–464, 2014 14th SGEM GeoConference on Nano, Bio and Green – Technologies for a Sustainable Future
W.M. Huang, C.L. Song, Y.Q. Fu, C.C. Wang, Y. Zhao, H. Purnawali, H.B. Lu, C. Tang, Z. Ding, J.L. Zhang, Shaping tissue with shape memory materials, Advanced Drug Delivery Reviews 65, pp 515–535, 2013
U. Sarı, T. Kirindi, Effects of deformation on microstructure and mechanical properties of a Cu – Al–Ni shape memory alloy, Materials characterization 59, pp 920 – 929, 2008
Z. Li, Z.Y. Pan, N. Tang, Y.B. Jiang, N. Liu, M. Fang, F. Zheng, Cu –Al–Ni–Mn shape memory alloy processed by mechanical alloying and powder metallurgy, Materials Science and Engineering A 417, pp 225–229, 2006
R. Wuhrer, K. Moran1, L. Moran, Characterization of materials through X-ray mapping, Materials forum, Edited by R. Wuhrer and M. Cortie, Institute of Materials Engineering Australasia Ltd, volume 30, 2006
Dale E. Newbury, Nicholas W. M. Ritchiea, Elemental mapping of microstructures by scanning electron microscopy-energy dispersive X-ray spectrometry (SEM-EDS): extraordinary advances with the silicon drift detector (SDD), J. Anal. At. Spectrom, 28, pp 973-988, 2013
Yildirim Aydogdu, Ayse Aydogdu, Osman Adiguzel, Self-accommodating martensite plate variants in shape memory CuAlNi alloys, Journal of Materials Processing Technology 123, 498–500, 2002
Xiaomei Chen, Jianian Guia, Renhui Wanga, Jianbo Wanga, Jing Liua, Fangyu Chenc,Dahai Wang, Orientation relationships of martensite variants determined by electron backscatter diffraction, Micron 31, pp 17– 25, 2000
C M Wayman, K Otsuka, Shape Memory Materials edited by - Technology – 1999
Erhard Hornbogen, A comparative study of ausforming of shape memory alloys with A2 and B2 structures, Materials Science and Engineering A273-275, pp630-633,
G.Logen, Microstructure of rapidly solidified Cu- Al-Ni shape memory alloy ribbonsJournal of materials Procesing Technology 162-163, pp 220-229, 2005
Miodrag Colic, Rebeka Rudolf, Dragoslav Stamenkovic, Ivan Anzel, Dragana, Vucevic, Monica Jenko, Voikan Lazic, Gorazd Lojen, Relationship between microstructure, cytotoxicity and corrosion properties of a Cu- Al-Ni shape memory alloy, Acta Biomaterialia, 2009
V. Recarte, J.I.Perez, A Ibarra, M.L. No, J San Juan, High temperatura β phase decomposition process in a Cu- Al-Ni shape memory alloy, Materials Science and Engineering A 378, pp 238-242, 2004
P.P. Rodr´ıguez, A. Ibarra, A. Iza-Mendia, V. Recarte,J.I. Pérez-Landazábal, J. San Juan, M.L. Influence of thermo-mechanical processing on the microstructure of Cu- based shape memory alloys produced by powder metallurgy, Materials Science and Engineering A 378, pp 263– 268, 2004
Sahar A. Fadlallah, Nader El-Bagoury, Sanaa M.F. Gad El-Rab, Rasha A. Ahmed, Ghaida El-Ousamii. An overview of NiTi shape memory alloy: Corrosion resistance and antibacterial inhibition for dental application, Journal of Alloys and Compounds 583, pp 455–464, 2014 14th SGEM GeoConference on Nano, Bio and Green – Technologies for a Sustainable Future
W.M. Huang, C.L. Song, Y.Q. Fu, C.C. Wang, Y. Zhao, H. Purnawali, H.B. Lu, C. Tang, Z. Ding, J.L. Zhang, Shaping tissue with shape memory materials, Advanced Drug Delivery Reviews 65, pp 515–535, 2013
U. Sarı, T. Kirindi, Effects of deformation on microstructure and mechanical properties of a Cu – Al–Ni shape memory alloy, Materials characterization 59, pp 920 – 929, 2008
Z. Li, Z.Y. Pan, N. Tang, Y.B. Jiang, N. Liu, M. Fang, F. Zheng, Cu –Al–Ni–Mn shape memory alloy processed by mechanical alloying and powder metallurgy, Materials Science and Engineering A 417, pp 225–229, 2006
R. Wuhrer, K. Moran1, L. Moran, Characterization of materials through X-ray mapping, Materials forum, Edited by R. Wuhrer and M. Cortie, Institute of Materials Engineering Australasia Ltd, volume 30, 2006
Dale E. Newbury, Nicholas W. M. Ritchiea, Elemental mapping of microstructures by scanning electron microscopy-energy dispersive X-ray spectrometry (SEM-EDS): extraordinary advances with the silicon drift detector (SDD), J. Anal. At. Spectrom, 28, pp 973-988, 2013
Yildirim Aydogdu, Ayse Aydogdu, Osman Adiguzel, Self-accommodating martensite plate variants in shape memory CuAlNi alloys, Journal of Materials Processing Technology 123, 498–500, 2002
Xiaomei Chen, Jianian Guia, Renhui Wanga, Jianbo Wanga, Jing Liua, Fangyu Chenc,Dahai Wang, Orientation relationships of martensite variants determined by electron backscatter diffraction, Micron 31, pp 17– 25, 2000
C M Wayman, K Otsuka, Shape Memory Materials edited by - Technology – 1999
Erhard Hornbogen, A comparative study of ausforming of shape memory alloys with A2 and B2 structures, Materials Science and Engineering A273-275, pp630-633,
G.Logen, Microstructure of rapidly solidified Cu- Al-Ni shape memory alloy ribbonsJournal of materials Procesing Technology 162-163, pp 220-229, 2005
Miodrag Colic, Rebeka Rudolf, Dragoslav Stamenkovic, Ivan Anzel, Dragana, Vucevic, Monica Jenko, Voikan Lazic, Gorazd Lojen, Relationship between microstructure, cytotoxicity and corrosion properties of a Cu- Al-Ni shape memory alloy, Acta Biomaterialia, 2009
V. Recarte, J.I.Perez, A Ibarra, M.L. No, J San Juan, High temperatura β phase decomposition process in a Cu- Al-Ni shape memory alloy, Materials Science and Engineering A 378, pp 238-242, 2004
P.P. Rodr´ıguez, A. Ibarra, A. Iza-Mendia, V. Recarte,J.I. Pérez-Landazábal, J. San Juan, M.L. Influence of thermo-mechanical processing on the microstructure of Cu- based shape memory alloys produced by powder metallurgy, Materials Science and Engineering A 378, pp 263– 268, 2004
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