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Online since: September 2013
Authors: Xi Peng Xu, Qiu Sheng Yan, Jia Bin Lu, Ji Sheng Pan, Jiang Ting Zhu
AEROSPACE MATERIALS & TECHNOLOGY, 2010. 40(1): 9-13
Gutmann, Chemical mechanical planarization of microelectronic materials.
Journal of the Chinese Ceramic Society , 2008. 36(8)
Journal of Electronic Materials, 2001,30(10): 1271-1275
Chemical and mechanical balance in polishing of electronic materials for defect-free surfaces[J].
Gutmann, Chemical mechanical planarization of microelectronic materials.
Journal of the Chinese Ceramic Society , 2008. 36(8)
Journal of Electronic Materials, 2001,30(10): 1271-1275
Chemical and mechanical balance in polishing of electronic materials for defect-free surfaces[J].
Online since: August 2024
Authors: Zubaidah Ningsih, Lukman Hakim, Muhammad Ruslan Novianto
An alternative approach for CO2 separation involves its adsorption using porous materials such as
clathrate hydrates [11, 12, 13].
This material is considered as a potential candidate for trapping CO2 for long-term storage [15].
The simulations were partly performed using high-performance computing servers NEBULA at the Faculty of Mathematics and Natural Sciences, Brawijaya University, Indonesia.
Stern, "Hybrid processes for the removal of acid gases from natural gas," Journal of Membrane Science, vol. 140, pp. 27-49, 1998
Hakim, "Carbon dioxide occupancies inside ice xvii structure from grand-canonical monte carlo simulation," IOP Conference Series: Materials Science and Engineering, vol. 833, p. 012035, 5 2020
This material is considered as a potential candidate for trapping CO2 for long-term storage [15].
The simulations were partly performed using high-performance computing servers NEBULA at the Faculty of Mathematics and Natural Sciences, Brawijaya University, Indonesia.
Stern, "Hybrid processes for the removal of acid gases from natural gas," Journal of Membrane Science, vol. 140, pp. 27-49, 1998
Hakim, "Carbon dioxide occupancies inside ice xvii structure from grand-canonical monte carlo simulation," IOP Conference Series: Materials Science and Engineering, vol. 833, p. 012035, 5 2020
Online since: November 2012
Authors: Ying Wang, Ying Wang
Materials Protection, Vol. 43 (2010), p. 44 (in Chinese)
[2] Y.
Advanced Materials Research, Vol. 287-290 (2011), p. 738 [3] Y.
Journal of Chinese Society for Corrosion and Protection, Vol. 27 (2007), p. 119 (in Chinese) [6] C.
Journal of Zhengzhou University (Engineering Science), Vol. 26 (2005), p. 85 (in Chinese) [8] L.
Henan Science, Vol. 23 (2005), p. 877 (in Chinese)
Advanced Materials Research, Vol. 287-290 (2011), p. 738 [3] Y.
Journal of Chinese Society for Corrosion and Protection, Vol. 27 (2007), p. 119 (in Chinese) [6] C.
Journal of Zhengzhou University (Engineering Science), Vol. 26 (2005), p. 85 (in Chinese) [8] L.
Henan Science, Vol. 23 (2005), p. 877 (in Chinese)
Online since: July 2011
Authors: Yan Wang, Li Xue Yu, Jing Long Bu, Rong Lin Wang
Thermodynamic Analysis of the Reaction between AlN and ZrO2 and Experimental Substantiation
Yan Wanga, Ronglin Wangb, *, Lixue Yuc and Jinglong Bud
Hebei Province Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei United University, Tangshan 063009, Hebei, China
a15176701185@163.com, bwrl@heuu.edu.cn,cyulx@heuu.edu.cn, dbjl@heuu.edu.cn
Keywords: AlN-ZrO2-N2 Systems; Zirconium Nitride; Zirconium Aluminium Oxynitrides.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (50872029) and Hebei Provincial Natural Science Foundation (E2010000960).
Mukerji: Journal of the American Ceramic Society, Vol. 72 (1989), p. 1567
Ahmad, et al: Applied Surface Science, Vol. 255 (2009), p. 6132
Ru, et al: Journal of the European Ceramic Society, Vol. 31 (2011), p. 883
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (50872029) and Hebei Provincial Natural Science Foundation (E2010000960).
Mukerji: Journal of the American Ceramic Society, Vol. 72 (1989), p. 1567
Ahmad, et al: Applied Surface Science, Vol. 255 (2009), p. 6132
Ru, et al: Journal of the European Ceramic Society, Vol. 31 (2011), p. 883
Online since: August 2017
Authors: Wen Guo Huo, Lan Zhang, Yuan Fa Ding, Xiang Dong Su
A Grinding Wheel of Self-Lubrication with Solid Powder Lubricant
and Centrifugal Impeller for Green Grinding Process of TC4 Alloy
Yuanfa Ding1,a, Wenguo Huo1,2, Xiangdong Su3,b,*, Lan Zhang1
1Guizhou R&D Center on Modern Materials, Guizhou Academy of Sciences,
Guiyang 550002, China
2Tianjin Key Laboratory of High Speed Cutting & Precision Machining,
Tianjin University of Technology and Education, Tianjin 300222, China
3Guizhou Key Laboratory of Light Metal Materials Preparation Technology,
Guizhou Institute of Technology, Guiyang 550003, China
ayfding@sina.com, bsuxiangdong01@sina.com (The Corresponding Author)
Keywords: Grinding wheel, Self-lubrication, Experimental study, CFD, Titanium alloy.
After coating with the abrasive materials on the wheel shell, that would be a real grinding wheel.
The abrasive material is a single-layer cubic boron nitride (CBN) coated by electroplating method.
Acknowledgment This project is supported by Science and Technology Foundation of Guizhou Province of China (Grant No.
Xing, Visual ization research of particle trajectory in a centrifugal fan, Journal of Wuhan University of Science and Technology(Natural Science Edition), 30 (5) (2007) 518-521
After coating with the abrasive materials on the wheel shell, that would be a real grinding wheel.
The abrasive material is a single-layer cubic boron nitride (CBN) coated by electroplating method.
Acknowledgment This project is supported by Science and Technology Foundation of Guizhou Province of China (Grant No.
Xing, Visual ization research of particle trajectory in a centrifugal fan, Journal of Wuhan University of Science and Technology(Natural Science Edition), 30 (5) (2007) 518-521
Online since: July 2016
Authors: Raimonda Lukauskaitė, Olegas Černašėjus, Valerij GOLUBEV, Simonas INDRIŠIŪNAS, Vladislav Markovič, Zaneta Anna Mierzejewska, Gerda Vaitkūnaitė
The work was supported by the Lithuanian Academy of Sciences and research project TAP LB 14-035 "The study of surface laser modification of sintered iron-based powder by SLS technology".
Tansey, Rapid tooling: selective laser sintering injection tooling, Journal of Materials Processing Technology. 132 (2003) 42-48
Kumar, Manufacturing of WC-Co moulds using SLS machine, Journal of Materials Processing Technology. 209 (2009) 3840-3848
Materials and Design. 32 (2011) 139-145
Li, F.E Pfefferkon, N.A Duffie, Pulsed laser polishing of micro-milled Ti6Al4V samples, Journal of Manufacturing Processes. 11 (2009) 74-81
Tansey, Rapid tooling: selective laser sintering injection tooling, Journal of Materials Processing Technology. 132 (2003) 42-48
Kumar, Manufacturing of WC-Co moulds using SLS machine, Journal of Materials Processing Technology. 209 (2009) 3840-3848
Materials and Design. 32 (2011) 139-145
Li, F.E Pfefferkon, N.A Duffie, Pulsed laser polishing of micro-milled Ti6Al4V samples, Journal of Manufacturing Processes. 11 (2009) 74-81
Online since: December 2009
Authors: Aminollah Mohammadi, Hamid Zarepour
[11] O'Sullivan, D., Cotterell, M., "Temperature Measurement in Single Point Turning", Journal of
Materials Processing Technology, 118, pp. 301-308, (2001)
N., "Effect of Cutting Edge Geometry and Workpiece Hardness on Surface Generation in the Finish Hard Turning of AISI 52100 Steel", Journal of Materials Processing Technology, 94,pp. 216-226, (1999)
M., "The Effect of Cutting Fluid on the Machining of Hardened AISI 4340 Steel", Journal of Materials Processing Technology, 119, pp. 21-26, (2001)
M., Faustino, M., and Paulo Davim, J., "Hard Turning: AISI 4340 High Strength Low Alloy Steel and AISI D2 Cold Work Tool Steel", Journal of Materials Processing Technology, 169(3), pp. 388-395, (2005)
R., "3D FEA Modeling of Hard Turning", ASME Journal of Manufacturing Science and Engineering, 124, pp. 189-199, (2002)
N., "Effect of Cutting Edge Geometry and Workpiece Hardness on Surface Generation in the Finish Hard Turning of AISI 52100 Steel", Journal of Materials Processing Technology, 94,pp. 216-226, (1999)
M., "The Effect of Cutting Fluid on the Machining of Hardened AISI 4340 Steel", Journal of Materials Processing Technology, 119, pp. 21-26, (2001)
M., Faustino, M., and Paulo Davim, J., "Hard Turning: AISI 4340 High Strength Low Alloy Steel and AISI D2 Cold Work Tool Steel", Journal of Materials Processing Technology, 169(3), pp. 388-395, (2005)
R., "3D FEA Modeling of Hard Turning", ASME Journal of Manufacturing Science and Engineering, 124, pp. 189-199, (2002)
Online since: August 2011
Authors: Wen Dan Huang, Xiang Min Zheng, Li Min Zhou
Materials and methods
Sample collection and Processing
Chongming Dongtan is located in the east of Chongming Island of Shanghai and in the Yangtze River estuary, which is the typical well-developed wetland in Yangtze Delta region.
Tan: Journal of Ocean University of Qingdao Vol. 29(2) (1999), p. 321-324, In Chinese [5] J.T.
Zhang: Chinese Journal of Oceanology and Limnology Vol. 18(3) (2001), p. 265-273 [7] Y.
Wang: Journal of Agro-Environment Science Vol. 28(7) (2009), p. 1522-1528, In Chinese [10] Y.L.
Le: Chinese Journal of Applied Ecology Vol. 20(6) (2009), p.1310-1316, In Chinese [11] Z.P.
Tan: Journal of Ocean University of Qingdao Vol. 29(2) (1999), p. 321-324, In Chinese [5] J.T.
Zhang: Chinese Journal of Oceanology and Limnology Vol. 18(3) (2001), p. 265-273 [7] Y.
Wang: Journal of Agro-Environment Science Vol. 28(7) (2009), p. 1522-1528, In Chinese [10] Y.L.
Le: Chinese Journal of Applied Ecology Vol. 20(6) (2009), p.1310-1316, In Chinese [11] Z.P.
Online since: August 2021
Authors: Vladimir Morgun, Aleksei Revyakin, Denis Votrin
The urgency of improving the performance properties of concrete, as the most common building materials, is noted.
Onopriichuk, Research of building materials, Territory of Science. 6 (2016) 120 – 124
Aseeva, Reducing the flammability of polymeric materials, Znaniye, Moscow, 1981
Andreeva, Analysis of environmental problems of the use of polymer building materials, Building materials of the XXI century., 6 (2010) 22-23
Morgun, Modern polyfunctional gas-filled concrete, Building materials science: present and future. 274-279.
Onopriichuk, Research of building materials, Territory of Science. 6 (2016) 120 – 124
Aseeva, Reducing the flammability of polymeric materials, Znaniye, Moscow, 1981
Andreeva, Analysis of environmental problems of the use of polymer building materials, Building materials of the XXI century., 6 (2010) 22-23
Morgun, Modern polyfunctional gas-filled concrete, Building materials science: present and future. 274-279.
Online since: June 2010
Authors: David H. StJohn, Michael J. Bermingham, Matthew S. Dargusch, Stuart D. McDonald
Ogawa: Materials Transactions Vol
50 (2009), p.2716
[2] H.
Conrad: Progress in Materials Science Vol 26 (1981), p.123 [3] C.
Mitao: Materials Science and Engineering A Vol 243 (1998), p.186 [4] M.
StJohn: Journal of Materials Research Vol 23 (2008), p.98 [8] M.
Dargusch: Journal of Materials Research Vol 24 (2009), p.1529 [11] M.
Conrad: Progress in Materials Science Vol 26 (1981), p.123 [3] C.
Mitao: Materials Science and Engineering A Vol 243 (1998), p.186 [4] M.
StJohn: Journal of Materials Research Vol 23 (2008), p.98 [8] M.
Dargusch: Journal of Materials Research Vol 24 (2009), p.1529 [11] M.