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Online since: December 2013
Authors: Jin Bo Wang, Rui Xiang Qin
Li, Journal of Hazardous Materials, Vol. 95 (2002), p. 47-63
Chui, Journal of Hazardous Materials, Vol. 152 (2008), p. 196-203
Hu, Journal of Hazardous Materials, Vol. 123 (2005), p. 158-164
Zhang, Journal of Hazardous Materials, Vol. 113 (2004), p. 141-146
Zhou, Journal of Environmental Sciences, Vol. 29 (2009), p. 2372.
Chui, Journal of Hazardous Materials, Vol. 152 (2008), p. 196-203
Hu, Journal of Hazardous Materials, Vol. 123 (2005), p. 158-164
Zhang, Journal of Hazardous Materials, Vol. 113 (2004), p. 141-146
Zhou, Journal of Environmental Sciences, Vol. 29 (2009), p. 2372.
Online since: August 2021
Authors: Alexander A. Sitnikov, Vladimir I. Yakovlev, Anastasia A. Popova
Swadzba, The relationship between specific heat capacity and oxidation resistance of TiAl alloys, Journal of Achievements of Materials and Manufacturing Engineering. 21 (2007) 48-50
Yang, Growth of intermetallic layer in multi-laminated Ti/Al diffusion couples, Materials Science and Engineering: A. 435-436 (2006) 638-647
High temperature stage, Materials Chemistry and Physics. 243 (2020) 122611
Sharafutdinov, Adjustment of induction high-temperature synthesis to in situ synchrotron study of SHS-mixtures on the example of Ti-Al system, IOP Conference Series: Materials Science and Engineering. 483 (2019) 012061
Holt, An investigation of the synthesis of nickel aluminides through gasless combustion, Journal of Materials Science. 22(1) (1987) 159-169
Yang, Growth of intermetallic layer in multi-laminated Ti/Al diffusion couples, Materials Science and Engineering: A. 435-436 (2006) 638-647
High temperature stage, Materials Chemistry and Physics. 243 (2020) 122611
Sharafutdinov, Adjustment of induction high-temperature synthesis to in situ synchrotron study of SHS-mixtures on the example of Ti-Al system, IOP Conference Series: Materials Science and Engineering. 483 (2019) 012061
Holt, An investigation of the synthesis of nickel aluminides through gasless combustion, Journal of Materials Science. 22(1) (1987) 159-169
Online since: July 2015
Authors: Kazuhiko Hara, Mariia V. Keskinova, Konstantin A. Ogurtsov, Maxim M. Sychov, Elena V. Kolobkova, Igor A. Turkin, Yoichiro Nakanishi
Acknowledgement
This work was partly supported by Russian Fund for Basic Research, grant 14-07-00277 and Ministry of Education and Science of the Russian Federation (Agreement 14.574.21.0002, identifier RFMEFI57414X0002) and Program #7 of Division of Chemistry and Materials Science of the Russian Academy of Science.
Kim, Photoluminescent properties of Sr2SiO4:Eu2+ phosphors prepared by solid-state reaction method, Material Science and Engineering B, 146 (2008), 99-102
Tian, The composition, luminescence, and structure of Sr8[Si4O12]Cl8, Material Research Bulletin, 36 (2001) 2051-2057
Laamanen, Luminescence of Eu2+ in alkali earth chlorosilicate phosphor and their color-tunable properties, Optical Materials, 28 (2006) 524-529
Poelman, Structure and luminescence of (Ca,Sr)2SiS4:Eu2+ phosphors, Journal of Physics D: Applied Physics 43, 8 (2010) 85401-85417
Kim, Photoluminescent properties of Sr2SiO4:Eu2+ phosphors prepared by solid-state reaction method, Material Science and Engineering B, 146 (2008), 99-102
Tian, The composition, luminescence, and structure of Sr8[Si4O12]Cl8, Material Research Bulletin, 36 (2001) 2051-2057
Laamanen, Luminescence of Eu2+ in alkali earth chlorosilicate phosphor and their color-tunable properties, Optical Materials, 28 (2006) 524-529
Poelman, Structure and luminescence of (Ca,Sr)2SiS4:Eu2+ phosphors, Journal of Physics D: Applied Physics 43, 8 (2010) 85401-85417
Online since: July 2015
Authors: S. Johari, Yufridin Wahab, A.F.M. Anuar, M.Z. Zainol, M. Najmi, M. Mazalan, H. Fazmir
Etch Performance of KRF Excimer Laser Micromachining Characterization on Silicon Material
M.Z.
This is because it is a versatile technique that can process an extensive of materials such as ceramics, metal, plastic and even semiconductors.
Madou, Fundamentals of microfabrication: the science of miniaturization: CRC press, 2002
Oh, "KrF excimer laser micromachining of MEMS materials: characterization and applications," Journal of Micromechanics and Microengineering, vol. 22, p. 015012, 2012
Xu, "Excimer laser fabrication of polymer microfluidic devices," Journal of Laser Applications, vol. 15, pp. 255-260, 2003
This is because it is a versatile technique that can process an extensive of materials such as ceramics, metal, plastic and even semiconductors.
Madou, Fundamentals of microfabrication: the science of miniaturization: CRC press, 2002
Oh, "KrF excimer laser micromachining of MEMS materials: characterization and applications," Journal of Micromechanics and Microengineering, vol. 22, p. 015012, 2012
Xu, "Excimer laser fabrication of polymer microfluidic devices," Journal of Laser Applications, vol. 15, pp. 255-260, 2003
Online since: July 2014
Authors: Yue Wang, Chun Ying Yuan, Qing Man Cui, Shuo Yang
Materials and Methods
Experimental Materials
Biological Materials.
Journal of Dalian Fisheries University, 2008,23(5):359-363
Food Science, 2013, 34(7): 270-274
Beijing: Science Press, 95-97
Chinese Journal of Marine Drugs, 2007, 26(5): 53-59.
Journal of Dalian Fisheries University, 2008,23(5):359-363
Food Science, 2013, 34(7): 270-274
Beijing: Science Press, 95-97
Chinese Journal of Marine Drugs, 2007, 26(5): 53-59.
Online since: January 2014
Authors: Jin Hui Li, Narendra Singh
Any remaining metals or other materials left after the smelting are removed during the refining process [11].
The lead-bearing materials produced by these plants were sent to the company’s two smelters in Belgium and Germany.
Journal of Environmental Sciences–China 20, 1469– 1474
Journal of Environmental Sciences–China 21, 340–345
Journal of Korean Medical Science, 23, 452–458
The lead-bearing materials produced by these plants were sent to the company’s two smelters in Belgium and Germany.
Journal of Environmental Sciences–China 20, 1469– 1474
Journal of Environmental Sciences–China 21, 340–345
Journal of Korean Medical Science, 23, 452–458
Online since: October 2010
Authors: Jin Lun Wang, Feng Chong Lan, Ji Qing Chen
Different Materials with Same Thickness.
Different Materials with Different Thicknesses.
References [1] X G Qiu, W L Chen: The study on numerical simulation of the laser tailor-welded blanks stamping, Journal of Materials Processing Technology, (2007), pp.178-188:128-131
Journal of Manufacturing Science and Engineering, Vol 125(2003), pp.461-467
Materials & Design, VOl 29(2008), pp.232-238
Different Materials with Different Thicknesses.
References [1] X G Qiu, W L Chen: The study on numerical simulation of the laser tailor-welded blanks stamping, Journal of Materials Processing Technology, (2007), pp.178-188:128-131
Journal of Manufacturing Science and Engineering, Vol 125(2003), pp.461-467
Materials & Design, VOl 29(2008), pp.232-238
Online since: September 2013
Authors: Hong Bo Li, Chun Jie Li, Han Chi Cheng, Jing Wang, Xing Jun Su
Experimental and Materials
The chemical composition of the 35CrMnSiMo cast steel.
Among them, heating temperature depends largely on the type of tipping point, stoves, steel, raw materials and other factors.
As everyone knows, properties, microstructure can decide material therefore, properties of test steel material is also very rich.
References [1] Jun Miao, Lijun Wang, Chunming Liu: Journal of Materials and Metallurgy Vol.11(2012), p.33-37, in Chinese
[5] Hongyu Chen: Journal of Heat Treatment of Metals Vol.26(2001), p.22-23, in Chinese
Among them, heating temperature depends largely on the type of tipping point, stoves, steel, raw materials and other factors.
As everyone knows, properties, microstructure can decide material therefore, properties of test steel material is also very rich.
References [1] Jun Miao, Lijun Wang, Chunming Liu: Journal of Materials and Metallurgy Vol.11(2012), p.33-37, in Chinese
[5] Hongyu Chen: Journal of Heat Treatment of Metals Vol.26(2001), p.22-23, in Chinese
Online since: December 2012
Authors: M.A. Saboori, R. Naghdabadi
Materials Science and Engineering: A, 1990. 125(2): p. 129-140
Materials Science and Engineering: A, 2004. 366(2): p. 381-396
Computational Materials Science, 2007. 40(3): p. 421-433
Mechanics of Materials. 51(0): p. 74-87
Journal of Materials Science, 1995. 30(1): p. 219-224
Materials Science and Engineering: A, 2004. 366(2): p. 381-396
Computational Materials Science, 2007. 40(3): p. 421-433
Mechanics of Materials. 51(0): p. 74-87
Journal of Materials Science, 1995. 30(1): p. 219-224
Online since: May 2012
Authors: Yi Ping Tang, Ke Ao Hu, Hong Lv
China
3Chemical Engineering and Materials Science, Zhejiang University of Technology, Zhejiang, Hangzhou, 310014, P.R.
Therefore, new anode materials are required to replace Ni-based anodes.
Among these materials, CeO2-based anodes have shown considerable promise for the oxidation of CH4.
Fierro, Chemistry of Materials, 2005, 17, 2329-2339 [14] Peter Blennowa, Kent K.
[18] Hong-Ki Lee, Materials Chemistry and Physics, 77 (2002) 639-646
Therefore, new anode materials are required to replace Ni-based anodes.
Among these materials, CeO2-based anodes have shown considerable promise for the oxidation of CH4.
Fierro, Chemistry of Materials, 2005, 17, 2329-2339 [14] Peter Blennowa, Kent K.
[18] Hong-Ki Lee, Materials Chemistry and Physics, 77 (2002) 639-646