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Online since: December 2023
Authors: Sergio Scudino, Paul P. Conway, Carmen Torres-Sanchez, Shang Mou Yang, Julia Hufenbach
Materials & Design, 35, pp.518-556
Journal of Materials Processing Technology, 237, pp.270-276
Nature materials, 8(11), pp.887-891
Materials & Design, 67, pp.9-19
Journal of Materials Science & Technology, 79, pp.88-98
Journal of Materials Processing Technology, 237, pp.270-276
Nature materials, 8(11), pp.887-891
Materials & Design, 67, pp.9-19
Journal of Materials Science & Technology, 79, pp.88-98
Online since: January 2010
Authors: Ming Shao, Zhang Yi Xiao, Chao Yang, Yuan Yuan Li, Xiaoqiang Li
Ingrid: International Journal of Refractory Metals & Hard Materials Vol. 24 (2006), P. 135
Riley: International Journal of Refractory Metals & Hard Materials Vol. 23(2005), P. 249
Schneider: Journal of Materials Research Vol. 16(2001), P. 286
Byung: Materials Science & Engineering A Vol. 351(2003), P.31
Grigorescu: International Journal of Refractory Metals & Hard Materials Vol. 19(2001), P. 381
Riley: International Journal of Refractory Metals & Hard Materials Vol. 23(2005), P. 249
Schneider: Journal of Materials Research Vol. 16(2001), P. 286
Byung: Materials Science & Engineering A Vol. 351(2003), P.31
Grigorescu: International Journal of Refractory Metals & Hard Materials Vol. 19(2001), P. 381
Online since: January 2014
Authors: Yu Jin Zhu, Chao Lun Wang, Xiao Zu Fang, Xue Jun Cao, Li Ping Zhu, Chuang Lu
Experimental Materials and Methods
Experimental Materials.
References [1] Yongjun Zhang, Chuanwei Yan, Fuhui Wang, et al.: Materials Protection Vol. 35(2002), p. 4, in Chinese
[2] J.E.Gray, B.Luan: Journal of Alloys and Compounds Vol. 336 (2002), p. 88
[4] Kui Xiao, Chaofang Dong, Jiuqing Li, et al.: Rare Metal Materials and Engineering Vol. 36 (2007), p. 201
[9] Jixin Zhang, Wei Zhang, Jiuqing Li, et al.: Journal of University of Science and Technology Beijing Vol. 28 (2006), p. 454, in Chinese
References [1] Yongjun Zhang, Chuanwei Yan, Fuhui Wang, et al.: Materials Protection Vol. 35(2002), p. 4, in Chinese
[2] J.E.Gray, B.Luan: Journal of Alloys and Compounds Vol. 336 (2002), p. 88
[4] Kui Xiao, Chaofang Dong, Jiuqing Li, et al.: Rare Metal Materials and Engineering Vol. 36 (2007), p. 201
[9] Jixin Zhang, Wei Zhang, Jiuqing Li, et al.: Journal of University of Science and Technology Beijing Vol. 28 (2006), p. 454, in Chinese
Online since: June 2014
Authors: Jian Min Zeng, Zhi Liu Hu, Xiao Le Zeng, Shi Qiang Lu, De Guang Cao
Make sure the change regularity not only has the role of guiding modelling design of nixing pottery, also has important realistic significance to expand its application in engineering materials such as building materials.
Qinzhou local purple red and streaky mud as raw materials of nixing pottery, its chemical composition is shown in table 1.
Huang, The making craft and protection of qinzhou nixing pottery, Journal of guangxi university for nationalities (Natural Science Edition). 15 (2009) 38-46
Lu, Foundation of Inorganic Materials Science, first ed.
Xu, et. al, Crystallization and properties of dental glass-ceramics in the system CaO-Al2O3-SiO2, Journal of east china university of science and technology (Natural Science Edition). 31 (2005) 92-95.
Qinzhou local purple red and streaky mud as raw materials of nixing pottery, its chemical composition is shown in table 1.
Huang, The making craft and protection of qinzhou nixing pottery, Journal of guangxi university for nationalities (Natural Science Edition). 15 (2009) 38-46
Lu, Foundation of Inorganic Materials Science, first ed.
Xu, et. al, Crystallization and properties of dental glass-ceramics in the system CaO-Al2O3-SiO2, Journal of east china university of science and technology (Natural Science Edition). 31 (2005) 92-95.
Online since: October 2011
Authors: Na Li, Hai Biao Liu, Yu Heng Wang, Xiu Yan Zhou, Xiao Yan Zheng
Material and Method
Material.
Nakbanpote: Journal of Colloid and Interface Science Vol. 286 (2005), p. 36–42 [3] P.K.
Malik: Journal of Hazardous Materials Vol.
Huang: Journal of Colloid and Interface Science Vol. 273 (2004), p. 80–86 [5] S.
Yu: Applied Clay Science Vol. 50 (2010), p. 427–431 [7] N.
Nakbanpote: Journal of Colloid and Interface Science Vol. 286 (2005), p. 36–42 [3] P.K.
Malik: Journal of Hazardous Materials Vol.
Huang: Journal of Colloid and Interface Science Vol. 273 (2004), p. 80–86 [5] S.
Yu: Applied Clay Science Vol. 50 (2010), p. 427–431 [7] N.
Online since: January 2012
Authors: Hong Jing Liu, Hong Jing Liu, Ying Zhang, Hui Yao, Wei Zhao
Materials and Methods
Materials.
Draxler, Ionic liquids for post-combustion CO2 absorption, International Journal of Greenhouse Gas Control,vol. 4, pp. 486–494,2010
Meindersma, Kinetics of absorptionof CO2 in amino-functionalized ionic liquids, Chemical Engineering Journal (2010) ,doi:10.1016/j.cej.2010.12.016, In press
Delmas, Gas-liquid mass transfer in gas-liquid-liquid dispersions, Chemical engineering science, vol.52,pp. 4069-4077,1997
Effect of dispersed oil phases with different properites on absorption process, The Chinese Journal of process Engineering,vol.8,pp. 235-239, February,2008.
Draxler, Ionic liquids for post-combustion CO2 absorption, International Journal of Greenhouse Gas Control,vol. 4, pp. 486–494,2010
Meindersma, Kinetics of absorptionof CO2 in amino-functionalized ionic liquids, Chemical Engineering Journal (2010) ,doi:10.1016/j.cej.2010.12.016, In press
Delmas, Gas-liquid mass transfer in gas-liquid-liquid dispersions, Chemical engineering science, vol.52,pp. 4069-4077,1997
Effect of dispersed oil phases with different properites on absorption process, The Chinese Journal of process Engineering,vol.8,pp. 235-239, February,2008.
Online since: August 2012
Authors: Cong Ming Yan, You Xi Lin, Zheng Ying Lin
Jawaid: Journal of Materials Processing Technology, Vol.166, (2005), pp.188-192
He: Key Engineering Materials, (2004), pp.259-260, 804-808
Nieslony: Journal of Materials Processing Technology, (2005), pp. 164-165, 1204-1211 [8] H.
Bob: Journal of Materials Processing Technology, Vol.186, (2007) No.3, pp. 66-76
Zeng: Journal of Materials Processing Technology, Vol.168, (2005) No. 1, pp. 42-48.
He: Key Engineering Materials, (2004), pp.259-260, 804-808
Nieslony: Journal of Materials Processing Technology, (2005), pp. 164-165, 1204-1211 [8] H.
Bob: Journal of Materials Processing Technology, Vol.186, (2007) No.3, pp. 66-76
Zeng: Journal of Materials Processing Technology, Vol.168, (2005) No. 1, pp. 42-48.
Online since: October 2010
Authors: Xiao Song Shi, Cui Feng Du, Hong Shuang Li
The inhibitor formula and function measurement
Experimental materials and experimental plan
The coal samples collected from a certain seam of KaiLuan coal mine, Calorific value: 21.42MJ/kg, Density: 1.49103kg/m3,Sulfur content: 0.495%, Volatile: 33.65%, Ash content: 24.75%, Inherent moisture: 1.58%, Metamorphic grade: medium modification, Industrial Grade: 1/3 coking coal, Time of spontaneous Combustion: 10 to12 months.
Safety and Environment Journal ,2006,vol6(1):46-48.
Journal of Xi'an Mining Institute, 1994,14(4):299-303(in Chinese) [6] Dong Xilin, Chen Changjiang, Guo Yanli .
Journal of China University of Mining & Technology, 1995,24(4):46-51(in Chinese) [10] Jiang Zhong’an, Du Cuifeng , He Li.Study on application of fireproofing and fire-extinguishing technology using fire-retardant lime-gel in coal mine of high sulfur content .China Safety Science Journal , 2003 , 13 (10) :31-33.
Proceedings of the fifth international symposium on fire safety and science.
Safety and Environment Journal ,2006,vol6(1):46-48.
Journal of Xi'an Mining Institute, 1994,14(4):299-303(in Chinese) [6] Dong Xilin, Chen Changjiang, Guo Yanli .
Journal of China University of Mining & Technology, 1995,24(4):46-51(in Chinese) [10] Jiang Zhong’an, Du Cuifeng , He Li.Study on application of fireproofing and fire-extinguishing technology using fire-retardant lime-gel in coal mine of high sulfur content .China Safety Science Journal , 2003 , 13 (10) :31-33.
Proceedings of the fifth international symposium on fire safety and science.
Online since: December 2014
Authors: Zhen Zhong Shen, Xiao Hu Tao, Li Ting Qiu
The seepage coefficients of the dam body materials are listed in Table 2.
(2)Under the working condition of normal water level, the seepage gradient of dam concrete panels and dam foundation curtain is bigger,while that of other materials area (cushion layer,main sand and gravel layer,etc.)
Proceeding of International Conference on Management andService Science.
Journal of Northwest A & F University.
(Natural Science Edition).
(2)Under the working condition of normal water level, the seepage gradient of dam concrete panels and dam foundation curtain is bigger,while that of other materials area (cushion layer,main sand and gravel layer,etc.)
Proceeding of International Conference on Management andService Science.
Journal of Northwest A & F University.
(Natural Science Edition).
Online since: November 2010
Authors: Shu Jiang Geng, Qian Wang
Oxidation Behavior of Stainless Steel with Electroless Ni-Fe-P Coatings
Shujiang Genga and Qian Wang
School of Materials & Metallurgy, Box 119, Northeastern University, Shenyang 110819, China
aEmail: gengsj@smm.neu.edu.cn
Keywords: Oxidation, ferrtic stainless steel, electroless, Ni-Fe-P coating.
Zhu: Journal of Power Source Vol. 160 (2006), p. 1009 [2] J.W.
Fergus: Materials Science and Engineering A Vol. 397 (2005), p. 271 [3] H.
Liu: Journal of Power Sources Vol. 177 (2008), p. 365 [8] J.
Zhao: Journal of Northeastern University (Natural Science) Vol. 30(S2) (2009), p. 96
Zhu: Journal of Power Source Vol. 160 (2006), p. 1009 [2] J.W.
Fergus: Materials Science and Engineering A Vol. 397 (2005), p. 271 [3] H.
Liu: Journal of Power Sources Vol. 177 (2008), p. 365 [8] J.
Zhao: Journal of Northeastern University (Natural Science) Vol. 30(S2) (2009), p. 96