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Online since: August 2009
Authors: Abdullah Huda, M.N. Norazia, S. Shaari, A.Amir Khadum
It is an alternative material to tin oxide and indium tin oxide,
which have been most used to date [1].
ZnO is one of the metal-oxide semiconductors that has been found to be a very useful functional material for devices such as UV-light emitters, varistors, transparent high-power electronics, surface acoustic wave devices, piezoelectric transducers, gas sensors, solar cells and structural materials such as window materials for display [2].
thin films by atmospheric pressure CVD method [7] F.Paraguay D., W.Estrada L., D.R.Acosta N., E.Andrade, M.Miki Yoshida and optical characterization of high quality ZnO thin fi Solid Films, 1999, 350, 192 [8] F.K.Shan, B.C.Shin, S.C.Kim and prepared by PLD technique: [9] D.C.Look, Recent advances in ZnO materials and devices: 2001, B80, 383 [10] B.Pandey, S.Ghosh, P.Srivastava, D.K.Avasthi, D.Kabiraj, J.C.
by spray pyrolysis: 192 Kim and Y.S.Yu, Optical properties of As doped ZnO thin films ique: Journal of the European Ceramic Society, 2004, es in ZnO materials and devices: Materials Sci B.Pandey, S.Ghosh, P.Srivastava, D.K.Avasthi, D.Kabiraj, J.C.Pivin, Synthesis and doped ZnO: a transparent magnetic semiconductor Y.Huang, M.Liu, Z.Li, Y.Zeng, S.Liu, Raman spectroscopy study of ZnO gel process: Materials Science and Engineering, Synthesis and optical absorption property of the Zn2Ti Phenomena, 2004, 177, 3448 Tauc, R.Gricorovichi, A.Vancu, Optical properties and electronic structure of amorphous Status Solidi, 1966, 15, 627 ptical absorption limit in InSb: Physical Review, G.G.Valle, P.Hammer, S.H.Pulcinelli, C.V.Santilli, Transparent and conductive ZnO:Al thin gel dip-coating: Journal of the European Ceramic Soc Photonic Technology Laboratory, Institute of Microengineering and Nanoelectronics, Universiti Kebangsaan Malaysia.
This work was partially supported by a grant This paper was sponsored Solar Cells [DSSC] based upon onducting ZnO:Al, In and Sn thin films deposited by the ZnO thin films prepared by PLD: presented by zinc oxide films Effect of the variation of film thickness on sapphire substrate using Nunes, E.Fortunato, P.Tonello, F.Branz Fernandes, P.Vilarinho, R.Martins, Effect of , 2002, 64, 281 epitaxial growth of ZnO Growth, 2000, 122, 431 F.Paraguay D., W.Estrada L., D.R.Acosta N., E.Andrade, M.Miki Yoshida, Growth, structure lms obtained by spray pyrolysis: Thin Optical properties of As doped ZnO thin films iety, 2004, 24, 1861 Science and Engineering, Synthesis and transparent magnetic semiconductor: Materials Science Raman spectroscopy study of ZnO-based ceramic films , 2003, B97, 111 TixSn1−xO4 (0 x 1) tructure of amorphous iew, 1954, 93, 632 Transparent and conductive ZnO:Al thin Society, 2004, 24, 1009
ZnO is one of the metal-oxide semiconductors that has been found to be a very useful functional material for devices such as UV-light emitters, varistors, transparent high-power electronics, surface acoustic wave devices, piezoelectric transducers, gas sensors, solar cells and structural materials such as window materials for display [2].
thin films by atmospheric pressure CVD method [7] F.Paraguay D., W.Estrada L., D.R.Acosta N., E.Andrade, M.Miki Yoshida and optical characterization of high quality ZnO thin fi Solid Films, 1999, 350, 192 [8] F.K.Shan, B.C.Shin, S.C.Kim and prepared by PLD technique: [9] D.C.Look, Recent advances in ZnO materials and devices: 2001, B80, 383 [10] B.Pandey, S.Ghosh, P.Srivastava, D.K.Avasthi, D.Kabiraj, J.C.
by spray pyrolysis: 192 Kim and Y.S.Yu, Optical properties of As doped ZnO thin films ique: Journal of the European Ceramic Society, 2004, es in ZnO materials and devices: Materials Sci B.Pandey, S.Ghosh, P.Srivastava, D.K.Avasthi, D.Kabiraj, J.C.Pivin, Synthesis and doped ZnO: a transparent magnetic semiconductor Y.Huang, M.Liu, Z.Li, Y.Zeng, S.Liu, Raman spectroscopy study of ZnO gel process: Materials Science and Engineering, Synthesis and optical absorption property of the Zn2Ti Phenomena, 2004, 177, 3448 Tauc, R.Gricorovichi, A.Vancu, Optical properties and electronic structure of amorphous Status Solidi, 1966, 15, 627 ptical absorption limit in InSb: Physical Review, G.G.Valle, P.Hammer, S.H.Pulcinelli, C.V.Santilli, Transparent and conductive ZnO:Al thin gel dip-coating: Journal of the European Ceramic Soc Photonic Technology Laboratory, Institute of Microengineering and Nanoelectronics, Universiti Kebangsaan Malaysia.
This work was partially supported by a grant This paper was sponsored Solar Cells [DSSC] based upon onducting ZnO:Al, In and Sn thin films deposited by the ZnO thin films prepared by PLD: presented by zinc oxide films Effect of the variation of film thickness on sapphire substrate using Nunes, E.Fortunato, P.Tonello, F.Branz Fernandes, P.Vilarinho, R.Martins, Effect of , 2002, 64, 281 epitaxial growth of ZnO Growth, 2000, 122, 431 F.Paraguay D., W.Estrada L., D.R.Acosta N., E.Andrade, M.Miki Yoshida, Growth, structure lms obtained by spray pyrolysis: Thin Optical properties of As doped ZnO thin films iety, 2004, 24, 1861 Science and Engineering, Synthesis and transparent magnetic semiconductor: Materials Science Raman spectroscopy study of ZnO-based ceramic films , 2003, B97, 111 TixSn1−xO4 (0 x 1) tructure of amorphous iew, 1954, 93, 632 Transparent and conductive ZnO:Al thin Society, 2004, 24, 1009
Online since: June 2014
Authors: J.E. Rodriguez, Cosme Roberto Moreira Silva, Rodrigo Arbey Meneses Muñoz, Paola Cristina Cajas, J.L. Narváez-Semanate
GRILLI, “YSZ-based electrochemical sensors: From materials preparation to testing in the exhausts of an engine bench test,” Journal of the European Ceramic Society, vol. 25, no. 12, pp. 2959–2964, Jan. 2005
SILVA, “Synthesis of ZrO2: ƞ wt% Re2O3 Powders by the Heterogeneous Coprecipitation Technique,” Materials Science Forum, vol. 727–728, pp. 1375–1380, Aug. 2012
CALLISTER, Materials science and engineering: An introduction, vol. 94. 1987, pp. 266–267
WEST, “Electroceramics: Characterization by Impedance Spectroscopy,” Advanced Materials, vol. 2, no. 3, pp. 132–138, Mar. 1990
CODDET, “Ionic conductivity and its temperature dependence of atmospheric plasma-sprayed yttria stabilized zirconia electrolyte,” Materials Science and Engineering: B, vol. 137, no. 1–3, pp. 24–30, Feb. 2007
SILVA, “Synthesis of ZrO2: ƞ wt% Re2O3 Powders by the Heterogeneous Coprecipitation Technique,” Materials Science Forum, vol. 727–728, pp. 1375–1380, Aug. 2012
CALLISTER, Materials science and engineering: An introduction, vol. 94. 1987, pp. 266–267
WEST, “Electroceramics: Characterization by Impedance Spectroscopy,” Advanced Materials, vol. 2, no. 3, pp. 132–138, Mar. 1990
CODDET, “Ionic conductivity and its temperature dependence of atmospheric plasma-sprayed yttria stabilized zirconia electrolyte,” Materials Science and Engineering: B, vol. 137, no. 1–3, pp. 24–30, Feb. 2007
Online since: March 2014
Authors: Osman Adiguzel
Noebe, High Temperature Shape Memory Alloys, International Materials Reviews 55 (2010) 257-315
Adiguzel, Smart Materials and the Influence of Atom Sizes on Martensite Microstructures in Copper-Based Shape Memory Alloys, Journal of Materials Processing Technology 185 (2007) 120-124
Romero, Calorimetry in Cu–Zn–Al alloys under different structural and microstructural conditions, Materials Science and Engineering A 282 (2000) 16-22 [8] Z.
Paidar, Shuffling in Displacive Phase Transformations, Materials Science and Engineering A 481–482 (2008) 243-246
Adiguzel, Long-Term Ageing Behaviour of Martensite in Shape Memory Cu–Al–Ni Alloys, Journal of Materials Processing Technology153-154 (2004) 164-169.
Adiguzel, Smart Materials and the Influence of Atom Sizes on Martensite Microstructures in Copper-Based Shape Memory Alloys, Journal of Materials Processing Technology 185 (2007) 120-124
Romero, Calorimetry in Cu–Zn–Al alloys under different structural and microstructural conditions, Materials Science and Engineering A 282 (2000) 16-22 [8] Z.
Paidar, Shuffling in Displacive Phase Transformations, Materials Science and Engineering A 481–482 (2008) 243-246
Adiguzel, Long-Term Ageing Behaviour of Martensite in Shape Memory Cu–Al–Ni Alloys, Journal of Materials Processing Technology153-154 (2004) 164-169.
Online since: June 2012
Authors: Zheng Ye Xiong, Qing Xiang Chen, Hui Wang, Yu Jun Feng, Yong Qiang Li, Cun You Huang
The result shows that infrared absorption spectra of pearl and nacre comprise the spectra of nanophase CaCO3 and other unidentified material, this can evidence that nacre is a kind of biologic composite material composed of nanophase calcium carbonate.
All the chemical raw materials are the productions of Shanghai Chemical Reagent Factory production.
[2] Stupp S I, Braun P V, Molecular Manipulation of Microstructure: Biomaterials, Ceramics, and Semiconductors , Science 277 (1997) 1242-1248
[4] Marthe Rousseau, Anders Meibo, Marc Gèze, Dynamics of sheet nacre formation in bivalves, Journal of Structural Biology 165 (2009) 190-195 [5] Rebecca A.
Res. 16 (2001) 2485-2493 [9] Heuer A H, F ink D J, Laria V J, Innovative materials processing strategies, Science, 255 (1992) 1098-1105
All the chemical raw materials are the productions of Shanghai Chemical Reagent Factory production.
[2] Stupp S I, Braun P V, Molecular Manipulation of Microstructure: Biomaterials, Ceramics, and Semiconductors , Science 277 (1997) 1242-1248
[4] Marthe Rousseau, Anders Meibo, Marc Gèze, Dynamics of sheet nacre formation in bivalves, Journal of Structural Biology 165 (2009) 190-195 [5] Rebecca A.
Res. 16 (2001) 2485-2493 [9] Heuer A H, F ink D J, Laria V J, Innovative materials processing strategies, Science, 255 (1992) 1098-1105
Online since: June 2016
Authors: Kusmono Kusmono, Hendri Hestiawan, Jamasri Jamasri
The presence of surface impurities and the large amount of hydroxyl groups make plant fibers less attractive for polymeric materials reinforcement.
Due to increase in population, natural resources are being exploited substantially as an alternative to synthetic materials.
Method Materials Agel leaf fibers (ALF) were obtained from cultivation area in Banyuwangi, East Java, Indonesia.
Material Science 34:7 (2011) 1575–1581
Setyono, A preliminary study: the influence of alkali treatment on physical and mechanical properties of coir fiber, Journal of Materials Science Research 2:4 (2013) 80-88.
Due to increase in population, natural resources are being exploited substantially as an alternative to synthetic materials.
Method Materials Agel leaf fibers (ALF) were obtained from cultivation area in Banyuwangi, East Java, Indonesia.
Material Science 34:7 (2011) 1575–1581
Setyono, A preliminary study: the influence of alkali treatment on physical and mechanical properties of coir fiber, Journal of Materials Science Research 2:4 (2013) 80-88.
Online since: July 2011
Authors: Jin Hong Zhu, Hong Xin Shi, Le Yi Dai
Application of Computer and Network Technology in Welding Power Source Design
Leyi Daia, Jinhong Zhub, Hongxin Shic
School of Materials Science and Engineering, Henan University of Science and Technology Luoyang 471003, China
adaileyiabcdef@163.com, bzjh163cn@163.com, chyhx66@163.com
Keywords: Welding power source, Database, Website, Remote management
Abstract.
Generally, welding database research focused on materials management, welding procedure qualification and welder qualification exam and so on.
Tsinghua University developed a steel pressure vessel welding and management system for Beijing Yanshan Petrochemical Construction and Installation Company, which can calculate and aggregate consumption of welding materials, and generate process planning.
References [1] Fujita M, Kinugawa J, Okada A, et al.: Data Science Journal Vol. 2(2003), p. 136-145 [2] Lucas W: Welding Journal Vol. 66, No. 4(1987), p. 19-30 [3] Rosali Brosilow: Welding Design & Fabrication Vol. 56, No. 3(1989), p. 81-89 [4] Bingquan Chen, Yikui Zhao: Journal of Hubei Polytechnic University Vol. 17, No. 2(2002), p. 172-174 In Chinese [5] Yan Wei, Yanhong Wei: Welding & Joining Vol. 11(2006), p. 17-21 In Chinese [6] Jinzhou zhang: Information management system of boiler quality grading.
Yunnan: Kunming University of Science and Technology, 2004: 7-10 In Chinese [7] Xiaoshan Liu, Wenzhen Song, Lihua Zhou, et al.: Installation Vol. 135, No. 4(2004), p. 29-32 In Chinese [8] Xiangkui Zhang, Yanhong Wei, Ning Liang, et al.: Aerospace Materials & Technology, Vol. 6(2008), p. 21-25 In Chinese [9] Huizhen Zhang: China Science and Technology Information Vol. 11(2006), p. 201-203 In Chinese [10] Jingtao Sun, Yujun Xu, Xiaohui Lin, et al.: Welding & Joining Vol. 2(2010), p. 47-50 In Chinese [11] Yongge Sun: Journal of Hunan Industry Polytechnic Vol. 7, No. 4(2007), p. 5-7 In Chinese [12] Jinghua Peng, Shengzhen Cai, Yunping Wu, et al.: Modern Electronics Technique Vol. 4 (2004), p. 47-49 In Chinese [13] Kehong Wang, Yan Yang, Bo Wang: Welding Journal Vol. 27, No. 10(2006), p. 11-14 In Chinese
Generally, welding database research focused on materials management, welding procedure qualification and welder qualification exam and so on.
Tsinghua University developed a steel pressure vessel welding and management system for Beijing Yanshan Petrochemical Construction and Installation Company, which can calculate and aggregate consumption of welding materials, and generate process planning.
References [1] Fujita M, Kinugawa J, Okada A, et al.: Data Science Journal Vol. 2(2003), p. 136-145 [2] Lucas W: Welding Journal Vol. 66, No. 4(1987), p. 19-30 [3] Rosali Brosilow: Welding Design & Fabrication Vol. 56, No. 3(1989), p. 81-89 [4] Bingquan Chen, Yikui Zhao: Journal of Hubei Polytechnic University Vol. 17, No. 2(2002), p. 172-174 In Chinese [5] Yan Wei, Yanhong Wei: Welding & Joining Vol. 11(2006), p. 17-21 In Chinese [6] Jinzhou zhang: Information management system of boiler quality grading.
Yunnan: Kunming University of Science and Technology, 2004: 7-10 In Chinese [7] Xiaoshan Liu, Wenzhen Song, Lihua Zhou, et al.: Installation Vol. 135, No. 4(2004), p. 29-32 In Chinese [8] Xiangkui Zhang, Yanhong Wei, Ning Liang, et al.: Aerospace Materials & Technology, Vol. 6(2008), p. 21-25 In Chinese [9] Huizhen Zhang: China Science and Technology Information Vol. 11(2006), p. 201-203 In Chinese [10] Jingtao Sun, Yujun Xu, Xiaohui Lin, et al.: Welding & Joining Vol. 2(2010), p. 47-50 In Chinese [11] Yongge Sun: Journal of Hunan Industry Polytechnic Vol. 7, No. 4(2007), p. 5-7 In Chinese [12] Jinghua Peng, Shengzhen Cai, Yunping Wu, et al.: Modern Electronics Technique Vol. 4 (2004), p. 47-49 In Chinese [13] Kehong Wang, Yan Yang, Bo Wang: Welding Journal Vol. 27, No. 10(2006), p. 11-14 In Chinese
Online since: October 2012
Authors: Hyun Do Yun, Su Chang Wang, Chang Gun Cho
Strain-hardening cement composite (SHCC) is an excellent material to be transferred brittle material to ductile material by reinforcing cement composite with a small amount of discontinuous fibers.
Materials, composition and properties of SHCC materials The SHCC matrix used in this study are comprised of 1.5% hybrid fibers (0.75% PE and 0.75% SC) at volume fraction, Portland cement, fine silica sand, water, EXA(CSA calcium sulfo-aluminate), super plasticizer agent and Methyl cellulose.
The compressive strength of SHCC material was 70MPa.
Li : ACI structural journal, Vol. 99, No.1 (2002), p. 104 [4] Homayoun H.
Abrishami and Denis Mitchell : ACI structural journal, Vol. 94, No.6 (1997), p. 769
Materials, composition and properties of SHCC materials The SHCC matrix used in this study are comprised of 1.5% hybrid fibers (0.75% PE and 0.75% SC) at volume fraction, Portland cement, fine silica sand, water, EXA(CSA calcium sulfo-aluminate), super plasticizer agent and Methyl cellulose.
The compressive strength of SHCC material was 70MPa.
Li : ACI structural journal, Vol. 99, No.1 (2002), p. 104 [4] Homayoun H.
Abrishami and Denis Mitchell : ACI structural journal, Vol. 94, No.6 (1997), p. 769
Online since: May 2011
Authors: Peng Hua Ma, Yu Bo Dou, Yan Qing Cai, Ying Xu
Effect of the substrate temperature on crystalline and optical properties of ZnO thin films prepared by CVD
Xu Ying1,a,Ma Penghua2,b,Dou Yubo3,c,Cai Yanqing4,d
1College of Materials Science and Engineering , Hebei United University, Tangshan, 063009, China
2College of Materials Science and Engineering, Hebei United University, Tangshan, 063009, China
3College of Materials Science and Engineering, Hebei United University, Tangshan, 063009, China
4College of Materials Science and Engineering, Hebei United University, Tangshan, 063009, China
a yuyingdd@yahoo.com.cn, bmph870612@163.com.cn, cdouyubo@sohoo.com, dcai200508040117@126.com
Keywords: ZnO, CVD, crystalline properties, optical properties
Abstract.
Materials Science & Engineering.
Journal of functional materials, Vol. 8(2008), p.1279-1282
Chinese journal of vacuum science and technology, Vol.
Journal of Xi’An JiaoTong University, Vol. 12(2005)
Materials Science & Engineering.
Journal of functional materials, Vol. 8(2008), p.1279-1282
Chinese journal of vacuum science and technology, Vol.
Journal of Xi’An JiaoTong University, Vol. 12(2005)
Online since: June 2012
Authors: Wei Li
Materials Science and Technology, 2004, 12(5): 524-528.
Journal of Materials Science, 2005, 40(16): 4387-4390
Journal of materials processing technology, 2009, 209: 2887–2891
Materials Letters, 2006, 60: 109-113
Journal of Materials Processing Technology, 2003, 142: 725-737.
Journal of Materials Science, 2005, 40(16): 4387-4390
Journal of materials processing technology, 2009, 209: 2887–2891
Materials Letters, 2006, 60: 109-113
Journal of Materials Processing Technology, 2003, 142: 725-737.
Online since: June 2016
Authors: Gunther Reinhart, Cosima Stocker
Vibratory bowl feeders (VBF) are the most frequently used systems for automated sorting and feeding of bulk material.
They gather unsorted bulk material, which is subsequently separated and sorted via orienting devices (OD) [2].
International Journal of Production Research 28 (1990) 8, S. 1513–1525
ASME Journal of Computing and Information Science in Engineering 13 (2013) 4, S. 5 pages
ASME Journal of Manufacturing Science and Engineering 135 (2013) 5, S. 8 pages
They gather unsorted bulk material, which is subsequently separated and sorted via orienting devices (OD) [2].
International Journal of Production Research 28 (1990) 8, S. 1513–1525
ASME Journal of Computing and Information Science in Engineering 13 (2013) 4, S. 5 pages
ASME Journal of Manufacturing Science and Engineering 135 (2013) 5, S. 8 pages