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Online since: May 2011
Authors: Hong Jing Liu, Ying Zhang, Hui Yao, Feng Hua Li, Wei Zhao
However, the property of membrane materials can be decayed with the usage in manufacturing process, such as the change of membrane flux and the reduction of membrane selectivity, which makes the separation effect worse.
(2) Membrane materials recovering propylene is Polydimethylsiloxane (PDMS) on market, whose selectivity for different gases have been reported.
Nikolakis: Journal of Membrane Science,Vol.305 (2007), p. 332 [2] S.
Khan: Journal of Membrane Science, Vol. 174(2000), p. 67–79 [3] K.
Langenhove: Journal of Membrane Science, Vol.312(2008), p.107
(2) Membrane materials recovering propylene is Polydimethylsiloxane (PDMS) on market, whose selectivity for different gases have been reported.
Nikolakis: Journal of Membrane Science,Vol.305 (2007), p. 332 [2] S.
Khan: Journal of Membrane Science, Vol. 174(2000), p. 67–79 [3] K.
Langenhove: Journal of Membrane Science, Vol.312(2008), p.107
Online since: September 2013
Authors: Mohd Arif Anuar Mohd Salleh, Muhammad Hafiz Zan Hazizi, Zainal Ariffin Ahmad, A.M. Mustafa Al Bakri, A. Abdullah, Kamarudin Hussin
Abdullah1, Kamarudin Hussin1
1Nihon Superior Electronic Materials Research Lab, Centre of Excellence Geopolymer & Green
Technology, School of Materials Engineering, Universiti Malaysia Perlis (UniMAP), Perlis, Malaysia.
2School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia (USM), Penang, Malaysia
ahafizhazizi@unimap.edu.my, barifanuar@unimap.edu.my
Keywords: Powder Metallurgy, Lead-free Solder, Sn-0.7Cu, Silicon Nitride, Composite.
Materials Science and Engineering: R: Reports, 2000. 27: p. 95-141
Materials Science and Engineering: A, 2006. 423(1-2): p. 166-169
Journal of Materials Engineering and Performance, 2010. 19(3): p. 335-341
Journal of Electronic Materials, 2009. 39(2): p. 215-222
Materials Science and Engineering: R: Reports, 2000. 27: p. 95-141
Materials Science and Engineering: A, 2006. 423(1-2): p. 166-169
Journal of Materials Engineering and Performance, 2010. 19(3): p. 335-341
Journal of Electronic Materials, 2009. 39(2): p. 215-222
Online since: March 2017
Authors: Jozef Bárta, Katarína Bártová, Mária Dománková
Welding of Austenitic Stainless Steel AISI 304 by Fiber Laser
Katarína Bártová a *, Mária Dománková b and Jozef Bárta c
Slovak University of Technology, Faculty of Materials Science and Technology, J.
Electron beam welding and laser beam welding are very popular for welding of thin materials especially materials having thickness lower than 1 mm.
Influence of chemical composition, prior deformation and prolonged thermal aging on the sensitization characteristics of austenitic stainless steels, Journal of Nuclear Materials 305 (2002) 209-219
Gnanamoorthy, Influence of prior deformation on sensitization of AISI type 316LN stainless steel, Journal of Nuclear Materials 208 (1994) 209-219
Hashmi, Effect of laser welding parameters on the heat input and weld-bead profile, Journal of Materials Processing Technology 164-165 (2005) 978–85
Electron beam welding and laser beam welding are very popular for welding of thin materials especially materials having thickness lower than 1 mm.
Influence of chemical composition, prior deformation and prolonged thermal aging on the sensitization characteristics of austenitic stainless steels, Journal of Nuclear Materials 305 (2002) 209-219
Gnanamoorthy, Influence of prior deformation on sensitization of AISI type 316LN stainless steel, Journal of Nuclear Materials 208 (1994) 209-219
Hashmi, Effect of laser welding parameters on the heat input and weld-bead profile, Journal of Materials Processing Technology 164-165 (2005) 978–85
Online since: September 2005
Authors: Carlos Sergio da Costa Viana, Andre Luiz Pinto, Luiz Henrique de Almeida
The materials used
were α-brass (Cu30Zn), lead, Inconel 625 and Inconel 600 (Ni17Cr9Fe).
[3] Grain Boundary Structure and Kinetics, Materials Science Seminar, Milwakee (ASTM, 1979)
Palumbo: Materials Science and Engineering, A237 (1997), p. 168-172
Palumbo: Materials Science and Engineering A, Vol.
Karashima: Journal of Materials Science, Vol. 18 (1983), p. 1183-1194
[3] Grain Boundary Structure and Kinetics, Materials Science Seminar, Milwakee (ASTM, 1979)
Palumbo: Materials Science and Engineering, A237 (1997), p. 168-172
Palumbo: Materials Science and Engineering A, Vol.
Karashima: Journal of Materials Science, Vol. 18 (1983), p. 1183-1194
Online since: April 2014
Authors: Hao Long Tang, Guo Jun Liu, Xiu Hua Fu
When choose materials, to consider such factors as refractive index, transparent area, material absorption, stress match and so on.
Choice of film Materials.
Journal of Military Communications Technology 26, 66(2005)
Journal of Lightwave Technology 30, 1677(2012)
[11] H.Szymanowski, O.Zabeida, J.E.Klemberg, Optical properties and microstructure of plasma deposited Ta2O5 and Nb2O5 films [J].Journal of Vacuum Science Technology A Vacuum Surfaces and Films 23, 241(2005)
Choice of film Materials.
Journal of Military Communications Technology 26, 66(2005)
Journal of Lightwave Technology 30, 1677(2012)
[11] H.Szymanowski, O.Zabeida, J.E.Klemberg, Optical properties and microstructure of plasma deposited Ta2O5 and Nb2O5 films [J].Journal of Vacuum Science Technology A Vacuum Surfaces and Films 23, 241(2005)
Online since: June 2007
Authors: Zheng Yi Jiang, A. Kiet Tieu, Hai Bo Xie, Tian Guo Zhou, Jing Lin Wen
Yilmaz: Journal of Materials Processing Technology Vol. 135(2003),
p.101
Liu: Chinese Journal of Materials Research Vol. 17(1) (2003), p.55
Colás: Materials Science and Engineering Vol.
Court: Materials Science and Engineering Vol.
Abdullah: Journals of Materials Processing Technology Vol.102 (2000), p.234.
Liu: Chinese Journal of Materials Research Vol. 17(1) (2003), p.55
Colás: Materials Science and Engineering Vol.
Court: Materials Science and Engineering Vol.
Abdullah: Journals of Materials Processing Technology Vol.102 (2000), p.234.
Online since: January 2013
Authors: Rong Jin Huang, Yuan Zhou, Min Zhou, Ye Mao Han, Zhen Chen, Lai Feng Li
Thus, use of polycrystalline materials may be suitable for application.
Zhou, High-performance nanostructured thermoelectric materials, NPG Asia Materials. 2:4 (2010) 152-158
Huang, Developments in semiconductor thermoelectric materials, Frontiers in Energy. 5:2 (2011) 125-136
Nan, Physics of inhomogeneous inorganic materials, Prog Mater Sci. 37:1 (1993) 1-116
Cohen, Thermoelectric power in inhomogeneous materials, Phys Rev B. 16:6 (1977) 2959-2964
Zhou, High-performance nanostructured thermoelectric materials, NPG Asia Materials. 2:4 (2010) 152-158
Huang, Developments in semiconductor thermoelectric materials, Frontiers in Energy. 5:2 (2011) 125-136
Nan, Physics of inhomogeneous inorganic materials, Prog Mater Sci. 37:1 (1993) 1-116
Cohen, Thermoelectric power in inhomogeneous materials, Phys Rev B. 16:6 (1977) 2959-2964
Online since: May 2024
Authors: Abdullah Almohammedi, Muhammed Naziruddin Khan
Boltasseva, Oxides and nitrides as alternative plasmonic materials in the optical range, Optical Materials Express, 1(2011) 1090–1099
Basu, Laser annealing of zinc oxide thin film deposited by spray-CVD, Material Science and Engineering B, 52 (2018) 25
Dorranian, Effect of temperature on the characteristics of ZnO nanoparticles produced by laser ablation in water, Bullatin Materials Science, 39 (2016) 1677–1684
Davis, Electronic Processes in Non-Crystalline Materials, Electronic Processes in Non-Crystal Materials, 382 & 428 Clarendon, Oxford, 1979
Adler, Amorphous materials past, present and future, Contemporary Physics, 9 (1978) 109
Basu, Laser annealing of zinc oxide thin film deposited by spray-CVD, Material Science and Engineering B, 52 (2018) 25
Dorranian, Effect of temperature on the characteristics of ZnO nanoparticles produced by laser ablation in water, Bullatin Materials Science, 39 (2016) 1677–1684
Davis, Electronic Processes in Non-Crystalline Materials, Electronic Processes in Non-Crystal Materials, 382 & 428 Clarendon, Oxford, 1979
Adler, Amorphous materials past, present and future, Contemporary Physics, 9 (1978) 109
Online since: October 2011
Authors: King Chu Hung, Yih Fong Tzeng, Ying Yao Ting
Wavelet Package for the In-Process Monitoring of Gas Metal Arc Welding Mild Steel
Ying-Yao Ting, King-Chu Hung and Yih-Fong Tzeng
1Institute of Engineering Science and Technology, National Kaohsiung First University of Science of Technology, Taiwan
1Dept.
Information Management, Wu Feng University of Science of Technology, Taiwan 2 Dept.
Computers and Communication Engineering, National Kaohsiung First University of Science of Technology, Taiwan 3 Dept.
Kovacevic :Classification of molten pool modes in variable polarity plasma arc welding based on acoustic signature, Journal of Materials Processing Technology, vol. 174(2006) , pp.127–136
Chen :On-line quality monitoring in plasma-arc welding, Journal of Materials Processing Technology, vol. 120(2002) , pp.270–274 [9] Q.
Information Management, Wu Feng University of Science of Technology, Taiwan 2 Dept.
Computers and Communication Engineering, National Kaohsiung First University of Science of Technology, Taiwan 3 Dept.
Kovacevic :Classification of molten pool modes in variable polarity plasma arc welding based on acoustic signature, Journal of Materials Processing Technology, vol. 174(2006) , pp.127–136
Chen :On-line quality monitoring in plasma-arc welding, Journal of Materials Processing Technology, vol. 120(2002) , pp.270–274 [9] Q.
Online since: April 2011
Authors: Mohamad Rusop, Zuraida Khusaimi, Mohd Zainizan Sahdan, Mohamad Hafiz Mamat, Norbani Abdullah
Wang: Materials Today Vol. 7 (2004), p. 26
Rusop: Malaysian Journal of Science Vol. 28 (2009), p. 197
Wang: Materials Science and Engineering Reports Vol. 64 (2009), p. 33
Jimbo: Materials Science and Engineering B Vol. 127 (2006), p. 150
Li: Materials Letters Vol. 61 (2007), p. 4362
Rusop: Malaysian Journal of Science Vol. 28 (2009), p. 197
Wang: Materials Science and Engineering Reports Vol. 64 (2009), p. 33
Jimbo: Materials Science and Engineering B Vol. 127 (2006), p. 150
Li: Materials Letters Vol. 61 (2007), p. 4362