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Online since: May 2015
Authors: Artur Chrobak, Dariusz Bochenek, Przemysław Niemiec
The microstructure of the PZT-f2 ceramics shown greater homogeneity grains and a higher density (lower porosity), compared with the PZT-f1 ceramics.
Changsheng: Ceramics International, Vol. 35 (2009), p. 1719 [3] A.
Yimnirun: Ceramics International, Vol. 39 (2013), p.
Laoratanakul: Materials Science & Engineering B, Vol. 112 (2004), p.79 [5] D.
Bochenek: Journal de Physique IV, Vol. 137 (2006), p. 189
Online since: April 2019
Authors: Yu Mei Bao, Hao Chai, Cheng Wu Wang
China 2College of Mechanical Engineering, Zhejiang University of Technology, Zhaohui No.6 District, Hangzhou, Zhejiang Province, P.
Improved friction and wear performance of microdimpled ceramic-on-ceramic interface for hip joint arthroplasty.
Ceramics International, 2015, 41: 681–690 [3] Choudhury D, Vrbka M, et al.
Chinese Journal of Lasers, 2014, 41(10):68-73.
Mechanical Engineering & Automation, 2017(1):1-3.
Online since: October 2012
Authors: Yuan Jun Yan, Li Ping Qin
A Review of Smart Material and Vibration Control for Civil Engineering Structure QIN Liping1, a, YAN Yuanjun2, b 1, 2Civil Construction Engineering Department, Hubei polytechnic University, Huangshi, China aqinlp@hsit.edu.cn, byanyj@hsit.edu.cn Keywords: smart material; vibration control; engineering structure Abstract.
Therefore, it is a civil engineering structure in the most promising sensing element.
Journal of Chongqing Jianzhu University.
Journal of Taiyuan University of Technology.
Earthquake Engineering and Engineering Vibration.
Online since: September 2014
Authors: Meiry Glaucia F. Rodrigues, Antonielly dos S. Barbosa, Antusia dos S. Barbosa
Caro: Journal of Membrane Science Vol. 389 (2012), p. 272
Santamaria, State-of-the-art in zeolite membrane reactors Topics in Catalysis, Department of Chemical and Environmental Engineering, University of Zaragoza Vol. 29 (2004), p. 1
Xu: Journal of Membrane Science Vol. 389 (2012), p. 451
Cejka: 4th International Feza Conference (FEZA) Paris, September 2 - 6 2008.
Lu: Journal of Membrane Science Vol. 320 (2008), p. 303
Online since: January 2015
Authors: Artem S. Semenov, Sviatoslav Lobanov
Creep in ferroelectrics due to unipolar electrical loading (2006) Journal of the European Ceramic Society, 26, pp. 2799-2806
Compressive creep of PZT ceramics: experiments and modeling (2004) Journal of the European Ceramic Society, 24, pp. 2547–2552
A rate-dependent incremental variational formulation of ferroelectricity (2011) International Journal of Engineering Science, 49, pp. 466–496
Time dependent behavior of ferroelectric materials undergoing changes in their material properties with electric field and temperature (2011) International Journal of Solids and Structures, 48, pp. 2718–2731
Return mapping algorithms and consistent tangent operators in ferroelectroelasticity (2010) International Journal for Numerical Methods in Engineering, 81, pp. 1298–1340
Online since: April 2012
Authors: Ming Zhou, Ming Wang, Guo Chao Qiao
Ceramic materials will become one of the most useful engineering materials.
Acknowledgements This work is partly supported by the National Natural Science Foundation of China (NSFC) (Grant No. 51075094) References [1] Lingmuhongmao:Engineering Ceramic, Translated by Chen Shixing .Beijing: Science Publishing House; 1989.
[3] Liang Z, Wu Y, Wang X:submitted to International Journal of Machine Tools and Manufacture. 2010; 50(8): 728-736
[5] Wu Y, Yokoyama S, Sato T:submitted to International Journal of Machine Tools and Manufacture. 2009; 49(12-13): 933-938
[11] Wang Quancai, Ren Weihong, Zhao Bo:submitted to Diamond & Abrasives Engineering. 2007;(06):62-64+68.
Online since: August 2008
Authors: Carlos Alberto Alves Cairo, Luiz Eduardo Carvalho, Marcio Florian, Rodrigo Fernando Costa Marques, Nilso Barelli
Liu and B-W Lin: Ceramics International Vol. 22 (1996), p. 407
Rawlings: Composite Materials: Engineering and Science CRC Press, (2000), p. 53-55
De Angelis: Fusion Engineering and Design Vol. 51-52 (2000), p. 159
Briddon: Microelectronics Journal Vol. 34 (2003), p. 371
Jiang: Journal of Crystal Growth Vol. 292 (2006), p.192.
Online since: October 2018
Authors: Rosidah Alias, Zulkifli Ambak, Azmi Ibrahim, Mohd Zulfadli Mohamed Yusoff, N.A. Ngah, Amiza Rasmi
Ambak1, M.Z.M Yusoff1 and R.Alias1 1TM Research & Development Sdn Bhd, TM Innovation Centre, Lingkaran Teknokrat Timur, 63000 Cyberjaya, Selangor, Malaysia. 2Razak School of Engineering and Advance Technology, Universiti Teknologi Malaysia Kuala Lumpur, Jalan Sultan Yahya Petra, 54100 Kuala Lumpur.
Journal of Physics D: Applied Physics, Volume 21, Number 12 (2004) [3] Hari Kishore Adluru, Design and analysis of micro-channel heat-exchanger embedded in Low Temperature Co-fire Ceramic (LTCC).
Florida International University (2004)
Ryser,” Investigation of interactions between co-fired LTCC components” Journal of the European Ceramic Society 25, pp. 2065–2069 (2005)
Dissertation for degree of Doctors of Philosophy by, Marc Anthony Zampino, Florida International University (2001)
Online since: June 2014
Authors: Hong Zhang, Yan Hui Liu, Chao Guo
Chinese Journal of Rock Mechanics and Engineering, 19(zl): 905-909, (2000)
Chinese Journal of Geotechnical Engineering, 25(4): 405-408, (2003)
Journal of Sichuan University (Engineering Science Edition), 36(2): 1-6, (2004)
A study on soil-water characteristic curve of unsaturated soil[J]. journal of Engineering Geology, (10): 129-133, (2002)
Subgrade Engineering, (2): 17-19, (2011)
Online since: February 2011
Authors: Sinem Cevik Uzgur, Yagiz Uzunonat, S. Fehmi Diltemiz, Melih Cemal Kushan
Petrovic; 1997; High temperature structural silicides, Ceramic Engineering and Science Proceedings, 18, 3-17 [4] P.
Perepezko, 1998, Phase stability of MoSi2 and the C11 and C40 structures at high temperatures, Materials Science and Engineering, A246, 199-206p
Wu, 2003, Effect of addition of oxides on low-temperature oxidation of molybdenum disilicide, Journal of American Ceramic Society, 86 [4], 731-734p
Pompe, 1999, Low temperature oxidation behaviour of MoSi2-based material, Materials Science and Engineering, A26, 239-244p
Petrovic; 1992; A comparative overview of molybdenum disilicide composites, Materials Science and Engineering, A155, 1-17
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