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Online since: January 2003
Authors: Peter Deák, István Bársony, Erika Kálmán, Csaba Dücső, G. Hárs, P. Fürjes, Hajnalka Csorbai
., H-1111, Budapest, Hungary
2
Bay Zoltán Institute for Materials Science and Technology
Fehérvári út 130., H-1116 Budapest, Hungary
3
Chemical Research Centre, Institute of Chemistry, Hungarian Academy of Sciences
Pusztaszeri út 59-67., H-1025 Budapest, Hungary
4
Research Inst. for Technical Physics and Materials Science - MFA
P.O.Box. 49, H-1525 Budapest, Hungary
Keywords: polycrystalline diamond film, CVD reactor, nucleation, corrosion resistance, mechanical
sensor.
Koidl Diamond and Related Materials 3/4-6 (1994) [3] W.
Kimura: Diamond and Related Materials 5 (1996) [7] I.
Pugacz, Muraszkiewicz: Detection of Discontinuities in Passivating Layers on Silicon by NaOH Anisotropic Etch, IBM Journal of Research Development, 1972 September, pp.523-529
Koidl Diamond and Related Materials 3/4-6 (1994) [3] W.
Kimura: Diamond and Related Materials 5 (1996) [7] I.
Pugacz, Muraszkiewicz: Detection of Discontinuities in Passivating Layers on Silicon by NaOH Anisotropic Etch, IBM Journal of Research Development, 1972 September, pp.523-529
Online since: September 2012
Authors: Z.L. Li, J.Y. Zhou, Z.P. Wang, J.H. Gu, Y.W. Zhang, Y.X. Wei
Owing to its high conduction, high transparency to the visible light and intense interaction with some gases, In2O3 was widely used in transparent conductive electrode [1], optoelectronic devices such as solar cells, flat panel display materials [2] and gas sensors [3].
Materials and method Preparation of In2O3 film was carried out via a simple chemical vapor deposition (CVD) process.
Liu, Electrochemical performance of In2O3 thin film electrode in lithium cell, Journal of Power Sources 175 (2008) 897-902
Devika, Optical properties of In2O3 films prepared by spray pyrolysis, Materials Chemistry and Physics 100 (2006) 375-379
Li, Preparation of In2O3 nanoparticles and their photocatalysis activity, Electronics Components & Materials 28 (2009) 61-63
Materials and method Preparation of In2O3 film was carried out via a simple chemical vapor deposition (CVD) process.
Liu, Electrochemical performance of In2O3 thin film electrode in lithium cell, Journal of Power Sources 175 (2008) 897-902
Devika, Optical properties of In2O3 films prepared by spray pyrolysis, Materials Chemistry and Physics 100 (2006) 375-379
Li, Preparation of In2O3 nanoparticles and their photocatalysis activity, Electronics Components & Materials 28 (2009) 61-63
Online since: June 2014
Authors: Yu Shuang Li, Miao Miao He, Xiao Jun Hu, Jing Feng, Qing Bian, Yan An Chen
Up to now, there are several remediation techniques such as ex-situ(excavation) or in-situ(on-site) soil washing/leaching/ flushing with chemical agents, chemical immobilization/stabilization method to reduce the solubility of heavy metals by adding some non-toxic materials into the soils, electrokinetics(electromigration), covering the original polluted soil surface with clean soils, dilution method (mixing polluted soils with surface and subsurface clean soils to reduce the concentration of heavy metals) and phytoremediation by plants such as woody trees[7,8,9].Considering the removal efficiency of pollutants and recycling,soil washing is particularly frequently used in soil remediation.Which is worked by applying water or aqueous washing solution to the soil to enhance contaminant solubility.
Materials and methods 2.1 Soil characteristics A soil sample, taken at depth from 0 to 20 cm in the Ecological Experimental Station, Shenyang, Liaoning Province of China.
Rocks and other large materials not passing throughthe sieve were removed. 2.2 Contamination Procedure After analyzing to determine its chemical and physical characteristics, the samples were then placed in plastic containers prior to artificial contamination.
Acknowledgements This research was financially supported by the National Natural Science Foundation of China (21277093, 20807029, 21307084), Program for New Century Excellent Talents in University (NCET-13-0910) and the Science and Technology Program of Shenyang City of China (F13-062-2-00).
Clem: submitted to Journal of Materials Research (2003)
Materials and methods 2.1 Soil characteristics A soil sample, taken at depth from 0 to 20 cm in the Ecological Experimental Station, Shenyang, Liaoning Province of China.
Rocks and other large materials not passing throughthe sieve were removed. 2.2 Contamination Procedure After analyzing to determine its chemical and physical characteristics, the samples were then placed in plastic containers prior to artificial contamination.
Acknowledgements This research was financially supported by the National Natural Science Foundation of China (21277093, 20807029, 21307084), Program for New Century Excellent Talents in University (NCET-13-0910) and the Science and Technology Program of Shenyang City of China (F13-062-2-00).
Clem: submitted to Journal of Materials Research (2003)
Online since: March 2016
Authors: Shi Lun Yu, Yong Hao Gao, Hong Chao Xiao, Cu Ming Liu
Mordike, Creep-resistant magnesium alloys, Materials Science and Engineering: A, 324 (2002) 103-112
Kojima, Development of Magnesium Alloys with High Performance, Materials Science Forum, 546 (2007) 55-64
Higashi, Application of superplasticity in commercial magnesium alloy for fabrication of structural components, Materials Science & Technology, volume 16 (2000) 1314-1319(1316)
Gottstein, Dynamic recrystallization during high temperature deformation of magnesium, Materials Science & Engineering A, 490 (2008) 411–420
Liu, Hot deformation and dynamic recrystallization behaviors of Mg–Gd–Y–Zr alloy, Materials Science and Engineering: A, 628 (2015) 311-318
Kojima, Development of Magnesium Alloys with High Performance, Materials Science Forum, 546 (2007) 55-64
Higashi, Application of superplasticity in commercial magnesium alloy for fabrication of structural components, Materials Science & Technology, volume 16 (2000) 1314-1319(1316)
Gottstein, Dynamic recrystallization during high temperature deformation of magnesium, Materials Science & Engineering A, 490 (2008) 411–420
Liu, Hot deformation and dynamic recrystallization behaviors of Mg–Gd–Y–Zr alloy, Materials Science and Engineering: A, 628 (2015) 311-318
Online since: December 2014
Authors: Fang She Yang, Shu Zhen Su, Juan Juan Zhang, Ci Fen Bi
Materials and methods
Description of study site and sampling areas
The experiment on the soil and water and ecology effects of the seabuckthorn flexible dam (Fig. 1) was conducted in the east-one-branch gully (EG1), a left tributary of the Xi-zhao gully located in Zhun-ger-er county, Erdos city, Inner Mongolia of China in 1996.
Li: Journal of Sediment Research. 23(2), 14-25(2003).
Campbell: Journal of Soil Science Society of America. 42(3): 460-464(1978)
Webster: Journal of Soil Science, 31(2): 315-331(1980)
Webster: Europe Journal of Soil Science. 52: 331-340(2001).+ [20] G.
Li: Journal of Sediment Research. 23(2), 14-25(2003).
Campbell: Journal of Soil Science Society of America. 42(3): 460-464(1978)
Webster: Journal of Soil Science, 31(2): 315-331(1980)
Webster: Europe Journal of Soil Science. 52: 331-340(2001).+ [20] G.
Online since: September 2012
Authors: Fan Zhang, Xiang Zhang
Wood was the main material for China's ancient architecture.
Fire and Materials, 1998, 22: 103-108
Fire and Materials, 1998, 22: 219-220
Chinese Science Bulletin, 2001, 46: 1398-1402
Journal of Applied and Analytical Pyrolysis, 2002, 63: 303-325
Fire and Materials, 1998, 22: 103-108
Fire and Materials, 1998, 22: 219-220
Chinese Science Bulletin, 2001, 46: 1398-1402
Journal of Applied and Analytical Pyrolysis, 2002, 63: 303-325
Online since: October 2014
Authors: Gang Yang, Yi Yang, Cheng Cheng Xing, Jin Ning Yang, Long De Xie
The material of 50-60017-00 type pulley is ductile iron.
However, ductile iron as a kind of traditional material, has been widely used due to high toughness, excellent toughness, good wear resistance[6].
The structure and material characteristics Structural features.
Fig.1 3D of 50-60017-00 pulley Material characteristics. 50-60017-00 type pulley is made of QT450-10, the brand stands for nodular cast iron.
Acknowledgements This research was financially supported by science and technology support project in Sichuan province (20l4GZ0018).
However, ductile iron as a kind of traditional material, has been widely used due to high toughness, excellent toughness, good wear resistance[6].
The structure and material characteristics Structural features.
Fig.1 3D of 50-60017-00 pulley Material characteristics. 50-60017-00 type pulley is made of QT450-10, the brand stands for nodular cast iron.
Acknowledgements This research was financially supported by science and technology support project in Sichuan province (20l4GZ0018).
Online since: November 2014
Authors: Zhi Ping Mao, Lin Ping Zhang, Xi Li Yu, Yi Zhong, Hong Xu
Effect of La Content on the Infrared Stealth Property of ZnO: (La, Al) Coated on Cotton Fabrics
Xi-Li YU, Lin-Ping ZHANGa,*, Yi ZHONG, Hong XU and Zhi-Ping MAOb
Key Laboratory of Science & Technology of Eco-Textile (Ministry of Education), Donghua University, Shanghai 201620, P.
Introduction Doped oxide semiconductors such as zinc oxide(ZnO) [1], indium tin oxide(ITO)[2], and antimony-doped tinoxide(ATO) [3] have a high reflectivity and would likely be used as filler material of low infrared emissivity coating to obtain infrared stealth property.
Electronic Components and materials. 30(12)(2011)27-29
Materials Science and Engineering B. 178(2013)225-230
The Chinese Journal of Nonferrous Metals. 19(7)(2009)1284-1288.
Introduction Doped oxide semiconductors such as zinc oxide(ZnO) [1], indium tin oxide(ITO)[2], and antimony-doped tinoxide(ATO) [3] have a high reflectivity and would likely be used as filler material of low infrared emissivity coating to obtain infrared stealth property.
Electronic Components and materials. 30(12)(2011)27-29
Materials Science and Engineering B. 178(2013)225-230
The Chinese Journal of Nonferrous Metals. 19(7)(2009)1284-1288.
Online since: February 2012
Authors: Zhuo Qing Yang, Qi Fa Liu, Bin Zhu, Gui Fu Ding, Xiao Lin Zhao, Wen Guo Chen
Design and Dynamics simulation of a micromachined inertial switch with polymer-metal composite fixed electrode for flexible contact
Bin Zhu1, a, Zhuoqing Yang1, b, Wenguo Chen1, c, Qifa Liu1, d, Guifu Ding1, e, Xiaolin Zhao1, f
1National Key Laboratory of Science and Technology on Micro/Nano Fabrication Technology, Research Institute of Micro/Nano Science and Technology, Shanghai Jiao Tong University, 200240,Shanghai, China
anickydongwu@sjtu.edu.cn, byzhuoqing@hotmail.com, cchenwenguo@163.com, dbingshan1202@163.com, egfding@sjtu.edu.cn, fxlzhao@sjtu.edu.cn
Keywords: inertial micro-switch; FEM; Contact Dynamics simulation.
The vertical fixed electrode contains two kinds of different materials with the same thickness.
Three common materials have been considered implemented in flexible composite electrode.
Composite material has been implemented in fixed electrode in (D).
Wang: IEEE Sensors Journal, Vol.9, NO.7, pp.801-808, 2009
The vertical fixed electrode contains two kinds of different materials with the same thickness.
Three common materials have been considered implemented in flexible composite electrode.
Composite material has been implemented in fixed electrode in (D).
Wang: IEEE Sensors Journal, Vol.9, NO.7, pp.801-808, 2009
Online since: February 2014
Authors: Wei Zhang
Boundary conditions
Stress boundary conditions
(2)
Displacement boundary conditions
(3)
p1,p2,q1,q2 is a complex function of the material constants related.
In the case of engineering extensive use of composite materials, the proposed method has broad application prospects.
References: [1] Luozu Road, Li Si Kan anisotropic material mechanics [M] Shanghai: Shanghai Jiaotong University Press, 1999
[3] Lekhnitskii S G. anisotropic plate [M] Lake Hoi-chang, translated Beijing: Science Press, 1963
Anisotropic plate finite element stress concentration problems equation Treatment [J] Journal of Natural Science, Xiangtan University, 2005, 27 (1): 89-90
In the case of engineering extensive use of composite materials, the proposed method has broad application prospects.
References: [1] Luozu Road, Li Si Kan anisotropic material mechanics [M] Shanghai: Shanghai Jiaotong University Press, 1999
[3] Lekhnitskii S G. anisotropic plate [M] Lake Hoi-chang, translated Beijing: Science Press, 1963
Anisotropic plate finite element stress concentration problems equation Treatment [J] Journal of Natural Science, Xiangtan University, 2005, 27 (1): 89-90