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Online since: February 2011
Authors: Yin Qun Hua, Rui Li Xu, Zhen Zhen Sun, Rui Fang Chen
Structures and Properties of Zno-Based Ceramic Films for Low-Voltage Varistors by the RF Magnetron Sputtering
Yinqun Hua1,2,a, Zhenzhen Sun1,b, Ruifang Chen1,c and Ruili Xu1
1School of Mechanical Engineering, Jiangsu University, Zhenjiang, 212013, China;
2School of Chemistry and Environment, Beijing University of Aeronautics and Astronautics, Beijing 100083, China
ahuayq@ujs.edu.cn, b0sunzhenzhen0@163.com, ccrf0504@yahoo.com.cn
Keywords: Inorganic Non-Metallic Material; Zno-Based Ceramic Film; Low-Voltage Varistor; R.F.
Kolar: Journal of the European Ceramic Society.
Nagabhushana: Journal of the American Ceramic Society.
Atay: International Journal of Hydrogen Energy.
Lu: Journal of Crystal Growth.
Kolar: Journal of the European Ceramic Society.
Nagabhushana: Journal of the American Ceramic Society.
Atay: International Journal of Hydrogen Energy.
Lu: Journal of Crystal Growth.
Online since: July 2011
Authors: Shang Ru Zhai, Bin Zhai, Xiao Li Zhou, Zhi Qiang Wang
Effect of BaO on thermo-physical properties of lithium zinc silicate glass-ceramics
Bin Zhaia, Xiaoli Zhoub, Shangru Zhaic and Zhiqiang Wangd
Faculty of Chemical Engineering and Materials, Dalian Polytechnic University,
Dalian 116034, China
Corresponding author. azhaibin@dlpu.edu.cn, bdlwzq_169@126.com
Keywords: Lithium zinc silicate glass; glass-ceramics; thermal expansion coefficient
Abstract.
Ceramics International Vol.33 (2007) p. 863 [5] S.
Journal of Physics and Chemistry of Solids.Vol.71 (2010), p. 739
Ferreira and G P Kothiyal, Ceramics International, Vol.33 (2007), p. 863
Proceedings of the Conference Series on the International Conference on New Materials and Their Applications, IOP, Bristol.
Ceramics International Vol.33 (2007) p. 863 [5] S.
Journal of Physics and Chemistry of Solids.Vol.71 (2010), p. 739
Ferreira and G P Kothiyal, Ceramics International, Vol.33 (2007), p. 863
Proceedings of the Conference Series on the International Conference on New Materials and Their Applications, IOP, Bristol.
Online since: April 2012
Authors: Yan Wang, Jie Yu, Yan Wu
Analysis of bond performance is the basis of concrete performance, so in engineering practice, the theories are of great significance.
The bond-anchorage behavior between steel and shale ceramic concrete is the basis of its engineering applications.
Journal of Zhengzhou University of Technology (2001), 22(3): 65-68
Journal of Concrete(2007)
ACI Structural Journal, (1994), 91(3):294-302
The bond-anchorage behavior between steel and shale ceramic concrete is the basis of its engineering applications.
Journal of Zhengzhou University of Technology (2001), 22(3): 65-68
Journal of Concrete(2007)
ACI Structural Journal, (1994), 91(3):294-302
Online since: November 2012
Authors: Katarzyna Osinska, Agata Lisińska-Czekaj, Dionizy Czekaj, Henryk Bernard, Jolanta Dzik
Lightfoot, Cation Disorder in Three-Layer Aurivillius Phases: Structural Studies of Bi2-xSr2+xTi1-xNb2+xO12 (0Journal of Solid State Chemistry, 153, (2000) 66-73
Yin, Microstructure and electrical properties of niobium doped Bi4Ti3O12 layer-structured piezoelectric ceramics, Materials Science and Engineering B 116, (2005) 99–103
Ren, Low temperature synthesis and ferroelectric properties of La substituted Bi4Ti3O12 thin films by sol–gel, Materials Science and Engineering B 122, (2005) 201–205
Jin, Nb doping effects on ferroelectric and electrical properties of ferroelectric Bi3.25La0.75(Ti1−xNbx)3O12 ceramics, Ceramics International 30, (2004) 1459–1462
Kraus, Powder Diffraction, Journal of Applied Crystallography, 13 (1998) 256
Yin, Microstructure and electrical properties of niobium doped Bi4Ti3O12 layer-structured piezoelectric ceramics, Materials Science and Engineering B 116, (2005) 99–103
Ren, Low temperature synthesis and ferroelectric properties of La substituted Bi4Ti3O12 thin films by sol–gel, Materials Science and Engineering B 122, (2005) 201–205
Jin, Nb doping effects on ferroelectric and electrical properties of ferroelectric Bi3.25La0.75(Ti1−xNbx)3O12 ceramics, Ceramics International 30, (2004) 1459–1462
Kraus, Powder Diffraction, Journal of Applied Crystallography, 13 (1998) 256
Online since: June 2010
Authors: Yung Kang Shen, Wen Hsueng Lin, Jeou Long Lee, Fwu Hsing Liu
Fabrication Inner Channel Ceramics Using Layer Additive Method
Fwu-Hsing Liu1,a, Wen-Hsueng Lin1, Yung-Kang Shen2,b and Jeou-Long Lee1,c
1
Department of Mechanical Engineering, Lunghwa University of Sci. and Tech., Taiwan.
2
Department of Dental Technology, Taipei Medical University, Taipei, Taiwan.
Subramanian, et al.: Rapid Prototyping Journal Vol. 1, No. 2 (1995), p. 24 [2] M.K.
Wang: Journal of Material Science Forum, Vol.594 (2008), p.241 [7] F.H.
Liao: Journal of the Key Engineering Materials, Vols.419-420 (2010), p.485 [8] F.H.
Liao: Journal of the European Ceramic Society, under review, (2009).
Subramanian, et al.: Rapid Prototyping Journal Vol. 1, No. 2 (1995), p. 24 [2] M.K.
Wang: Journal of Material Science Forum, Vol.594 (2008), p.241 [7] F.H.
Liao: Journal of the Key Engineering Materials, Vols.419-420 (2010), p.485 [8] F.H.
Liao: Journal of the European Ceramic Society, under review, (2009).
Online since: October 2011
Authors: Wei Wen Hu, Jing Hua Fen
The virtual prototype technology,also called dynamic simulation technology of the mechanical system ,is an international computer aided engineering along with the development of computer technology in the 1980s.At present, there is not a unified definition of the virtual prototype technology in China, but several kinds of representative definition are summarized as follows:(1) the virtual prototype technology came into being before the first physical prototype arised.
The virtual prototype technology is a new technology in the design and manufacture, involving other principles of multibody system, dynamics, calculation and software engineering.
The virtual prototype technology has been widely used in the automobile manufacture, engineering machinery, aviation industry, national defence and general machine manufacturing, etc.
The other engineering machine application is realized through the friendly interface, powerful function, stable performance and commercialization of the virtual prototype software.
References [1] The Virtual Prototyoe Technology Xiong Guangleng,Li Bohu Chai Xudong The Journal of System and Simulation,2001,13(1), p114--117
The virtual prototype technology is a new technology in the design and manufacture, involving other principles of multibody system, dynamics, calculation and software engineering.
The virtual prototype technology has been widely used in the automobile manufacture, engineering machinery, aviation industry, national defence and general machine manufacturing, etc.
The other engineering machine application is realized through the friendly interface, powerful function, stable performance and commercialization of the virtual prototype software.
References [1] The Virtual Prototyoe Technology Xiong Guangleng,Li Bohu Chai Xudong The Journal of System and Simulation,2001,13(1), p114--117
Online since: September 2018
Authors: Elidio Angioletto, Felipe de Luca Sartor, Danila Ferreira Niero, Luís Philipe Spricigo, Adriano Michael Bernardin, Oscar Rubem Klegues Montedo
Effect of the Addition of the Waste Generated from the Feldspar Mining on the Obtainment of Ceramic Brick
Felipe De Luca Sartor1,a, Luís Philipe Spricigo2,b, Danila Ferreira Niero2,c, Adriano Michael Bernardin2,d, Oscar Rubem Klegues Montedo2,e,
Elidio Angioletto2,f*
1Environmental Engineering/UNESC - Av.
Universitária, 1105 - 88806-000, Criciúma (SC), Brazil 2Graduate Program in Materials Science and Engineering/UNESC - Av.
Rizk, N.A.Mahmoud: International Journal of Mining Engineering and Mineral Processing Vol. 5 (2) (2016), p. 25
Aljaradin: International Journal of Mining Engineering and Mineral Processing Vol. 3 (2) (2014), p. 28
Holanda: Ceramics International Vol. 31 (2005), p. 757
Universitária, 1105 - 88806-000, Criciúma (SC), Brazil 2Graduate Program in Materials Science and Engineering/UNESC - Av.
Rizk, N.A.Mahmoud: International Journal of Mining Engineering and Mineral Processing Vol. 5 (2) (2016), p. 25
Aljaradin: International Journal of Mining Engineering and Mineral Processing Vol. 3 (2) (2014), p. 28
Holanda: Ceramics International Vol. 31 (2005), p. 757
Online since: October 2014
Authors: Hong Jiang, Lin Yu, Yang Shen, Chang Jiu Li, Zheng Cao, Xiu Quan Zhao, Yu Teng Wu
Effects of Different Content of TiO2 on Crystallization Behavior and Properties of Li2O-ZnO-SiO2 Glass-ceramics
Xiu-quan ZHAO1,a, Zheng CAO1,b, Yu-teng WU2,c, Hong JIANG1,d,
Chang-jiu LI 1,e,*, Lin YU3,f, Yang SHEN1,g
1Spcial Glass Key Lab of Hainan Province,Hainan university,Hainan Haikou 570228
2State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Hubei Wuhan,430070
3Special Glass Engineering Research Center of Hainan Province,AVIC GLASS-AVIC(Hainan) special Glass Material Co..
Journal of Materials Science and Engineering, 2008, 04: 616-619.
Novaes de Oliveira, Synthesis and characterization of LZS/α-Al2O3 glass-ceramic composites for applications in the LTCC technology, Ceramics International[J], 2014, 5269-5274, (SCI) [3] Bahram Ghaemi Dizaji, Preparation and luminescence properties of ZnO-AL2O3-SiO2 glass and glass ceramic [D].Zhejiang university, 2012.
Journal of ceramics, 2010,04:543-546.
Kitajima, Preparation of transparent lithium-mica glass-ceramics, Journal of Non-Crystalline Solids 352 (2006) 5556–5563
Journal of Materials Science and Engineering, 2008, 04: 616-619.
Novaes de Oliveira, Synthesis and characterization of LZS/α-Al2O3 glass-ceramic composites for applications in the LTCC technology, Ceramics International[J], 2014, 5269-5274, (SCI) [3] Bahram Ghaemi Dizaji, Preparation and luminescence properties of ZnO-AL2O3-SiO2 glass and glass ceramic [D].Zhejiang university, 2012.
Journal of ceramics, 2010,04:543-546.
Kitajima, Preparation of transparent lithium-mica glass-ceramics, Journal of Non-Crystalline Solids 352 (2006) 5556–5563
Online since: April 2015
Authors: Mohd Mustafa Al Bakri Abdullah, M. Binhussain, Hussin Kamarudin, Nur Ain Jaya, Januarti Jaya Ekaputri, Che Mohd Ruzaidi Ghazali, Romisuhani Ahmad
Van Deventer, Hua Xu: International Journal of Mineral Processing.
Liew: International Journal of Minerals, Metallurgy andMaterials.
Cheeseman: Journal of the European Ceramic Society.
Vol. 33 (2013), p. 251-258 [12] Ting-Hao Yeh, Ven-Gen Lee: Materials Science and Engineering A.
Jia, Peigang He, Tiesong Lin, Meirong Wang, Yu Zhou: Ceramics International.
Liew: International Journal of Minerals, Metallurgy andMaterials.
Cheeseman: Journal of the European Ceramic Society.
Vol. 33 (2013), p. 251-258 [12] Ting-Hao Yeh, Ven-Gen Lee: Materials Science and Engineering A.
Jia, Peigang He, Tiesong Lin, Meirong Wang, Yu Zhou: Ceramics International.
Online since: June 2016
Authors: Ravinder Kataria, Jatinder Kumar
Mehta, Optimization of process parameters for ultrasonic drilling (USD) of advanced engineering ceramics using Taguchi approach, Engineering Optimization 38(7) (2006) 771–787
Mishra, Taguchi’s optimization of process parameters for production accuracy in ultrasonic drilling of engineering ceramics, Production Engineering Research and Development 3 (2009) 243–253
International Conference on Emerging Trends in Engineering and Technology (2013) 287–292
Tandon, Study of 3D Micro-Ultrasonic Machining, Journal of Manufacturing Science and Engineering 126 (2004) 727–732
Journal of Manufacturing Science and Engineering. 127 (2005) 752–758
Mishra, Taguchi’s optimization of process parameters for production accuracy in ultrasonic drilling of engineering ceramics, Production Engineering Research and Development 3 (2009) 243–253
International Conference on Emerging Trends in Engineering and Technology (2013) 287–292
Tandon, Study of 3D Micro-Ultrasonic Machining, Journal of Manufacturing Science and Engineering 126 (2004) 727–732
Journal of Manufacturing Science and Engineering. 127 (2005) 752–758