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Online since: June 2014
Authors: Sitikhadijah Hubadillah, Sulaiman Hasan, Muhamad Zaini Yunos, Zawati Harun
Effect of Thermodynamic Properties on Porosity of Ceramic Membrane Prepared by Phase Inversion Zawati Harun1, 2, a, SitiKhadijah Hubadillah1, b, Sulaiman Hasan1, c, Muhamad Zaini Yunos1, d 1Department of Material and Design, Faculty of Mechanical and Manufacturing Engineering, UniversitiTun Hussein Onn Malaysia, Parit Raja, BatuPahat 86400, Johor, Malaysia 2Advanced Materials and Manufacturing Centre (AMMC), Faculty of Mechanical and Manufacturing Engineering, UniversitiTun Hussein Onn Malaysia, 86400 Parit Raja, BatuPahat, Johor DarulTakzim, Malaysia.
[9] Chun HengLoh and Rong Wang, Journal of Chemical Engineering (2012). 20(1): p. 71-79
Ismail, International Journal of Greenhouse Gas Control, 2011. 5(4): p. 640-648
Cui: submitted to Journal of Membrane Science (2006)
Hoek: submitted to Industrial & Engineering Chemistry Research (2011).
Online since: December 2010
Authors: Bo Zhao, Guo Fu Gao, Jin Xue Xue
Gao 2,c 1School of Mechanical Engineering, Tongji University, Shanghai, China 2School of Mechanical & Power Engineering, Henan Polytechnic University, Jiaozuo, China 3School of Mechatronics Engineering, Henan University of Science & Technology, Luoyang, China a xjx@mail.haust.edu.cn, b zhaob@hpu.edu.cn, cgaogf@hpu.edu.cn Keywords: Nano-ceramics, Critical ductile grinding depth, Ultrasonic vibration grinding Abstract.
The formula of critical ductile grinding depth of the common engineering ceramics was inapplicable to the nano-ZrO2 ceramics.
Their researches were mainly conducted on engineering ceramics[1].
Guo, Ceramics International, vol. 26 (2000), p. 391-396
Diamond & Abrasives Engineering.2009,No.4, p. 28-34(In Chinese).
Online since: August 2014
Authors: Chang Juan Zhang, Jing Lin Tong, Bo Zhao
Liu: Key Engineering Materials, Vol. 375-376 (2008), pp. 63-267
Liu: Key Engineering Materials, Vol. 291-292(2005), pp. 45-50
Eringen: International Journal of Engineering Science, Vol. 10 (1972), pp. 1-16
Edelen: International Journal of Engineering Science, Vol. 10 (1972), pp. 233-248
Zhang: International Journal of solids and structures, Vol. 44 (2007), pp. 5289-5300
Online since: September 2013
Authors: Bo Zhao, Yan Yan Yan, Qi Wang
Research of surface formation of two dimensional ultrasonic vibration assisted grinding of nano-ZrO2 ceramics Yan Yanyan1, a, Wang Qi2 and Zhao Bo3,b 1Mechanical and Power Engineering School, Henan Polytechnic University, Jiaozuo, 454003 ayyy@hpu.edu.cn bzhaob@hpu.edu.cn Keywords: Ultrasonic vibration; Grinding; Nano-ceramics; Surface formation; surface quality Abstract.
As a result, it is suitable for the ultra-precise machining of ceramics.
As a result, it is suitable for the ultra-precise machining of nano-ceramics.
References [1] Yang Xin-Hong, Han Jie-Cai, Zhang Yu-Min, et al., Chinese Journal of Aeronautics, Vol.19, n SUPPL(2006), p S9 [2] Umehara, N., CIRP Annals, Vol.43, n 1(1994), p.185 [3] Yan Yanyan,Zhao Bo, et al.
Forum,Vol.532-533(2006), p.532 [4] Yan Yanyan,Zhao Bo, et al., International Journal of Advanced Manufacturing Technology, Vol.43, n 5-6(2009) , p.462 [5] Li, Z.C.; Cai, Liang-Wu; Pei, Z.J. et al., International Journal of Machine Tools and Manufacture, Vol.46, n12-13(2006), p1469
Online since: June 2015
Authors: Vânia Caldas Sousa, Sergio Cava, Tiago Delbrücke, Jose R. Jurado, Sergio M. Tebcheranic, Evaldo T. Kubaski, Rogério A. Gouvêa, Cristiane W. Raubach, Mário Lúcio Moreira, Elson Longo
Smith: Journal of the European Ceramic Society Vol. 27 (2007), p. 1345
Cava: Journal of the European Ceramic Society Vol. 33 (2013), p. 1087
Tebcherani: Ceramics International Vol. 39 (2013), p. 2423
Smith: Journal of the European Ceramic Society Vol. 26 (2006), p. 3567
Zhu: Ceramics International Vol. 31 (2005), p. 911.
Online since: August 2018
Authors: Zhong Zhou Yi, Feng Rui Zhai, Lei Gao, Ke Shan, Nan Li
An experimental and numerical study, International Journal of Impact Engineering, 32 (2005) 321-336
Zhang, Reaction-composite brazing of carbon fiber reinforced SiC composite and TC4 alloy using Ag–Cu–Ti–(Ti+C) mixed powder, Materials Science and Engineering: A, 562 (2013) 203-210
Feng, Brazing ZrO2 ceramic and TC4 alloy by novel WB reinforced Ag-Cu composite filler: Microstructure and properties, Ceramics International, 43 (2017) 15296-15305
Edwardson, Reverse Analysis of Scan Strategies for Controlled 3D Laser Forming of Sheet Metal, Procedia Engineering, 183 (2017) 369-374
Jovanović, Parameters influence of laser forming on shaped surface by soft computing technique, Optik - International Journal for Light and Electron Optics, 142 (2017) 451-454
Online since: March 2016
Authors: Yun Kai Li, Xiao Cong Hang
The wide use of ceramic material in engineering is restricted by its brittleness, so the strengthening and toughening of ceramics is always a hot spot of research in material area.
But this method has great limitation, and it is not widely used in engineering practice.
Jin, Review of Anti-Ballistic Confinement Effects of Ceramic-Metal Composite Armor, Journal of Xi’an Jiaotong University. 03(2011) 7-15+24
Lateral confinement effects in long-rod penetration of ceramics at hypervelocity, International Journal of Impact Engineering. 33(2006) 169-179
Wang, Influence of ceramic confined effect on ballistic performance of composite armor, Ordnance material science and engineering. 31(2008) 61-64.
Online since: July 2014
Authors: Robert Černý, Eva Vejmelková, Igor Medveď, Lenka Scheinherrová, Anton Trník, Pavel Reiterman
Frías, Freeze-thaw durability of recycled concrete containing ceramic aggregate, Journal of Cleaner Production. 40 (2013)
International Journal of Thermophysics. 29(2) (2008) 693-705
Černý, Properties of Lime Composites Containing a New Type of Pozzolana for the Improvement of Strength and Durability, Composites Part B: Engineering. 43 (2012) 3534-3540
Vozár, Thermomechanical Analysis of Quartz Porcelain in Temperature Cycles, Ceramics International. 33 (2007) 1287-1291
Bačík, Elastic properties of waste calcite – clay ceramics during firing, Journal of the Ceramic Society of Japan. 120 (2012) 351-354.
Online since: January 2012
Authors: Yong Hui Zhou, Xing Ai, Jun Zhao, Min Wang
Zhou4 1,2,3,4 Key Laboratory of High Efficiency and Clean Mechanical Manufacture, Ministry of Education, School of Mechanical Engineering, Shandong University, No.17923, Jingshi Road, Ji’nan, Shandong Prov.
The Al2O3-based ceramic materials are preparation, and the model is verified by the Al2O3-based ceramic materials.
Olevsky: International Journal of Solid and Structures Vol. 42(2004), p. 621-636 [4] L.
Ding: Journal of Crystal Growth Vol. 293(2006), p. 489-497 [9] Y.
Sahay: Materials Science and Engineering A Vol. 203(2007), p. 445-446 [14]I.
Online since: March 2008
Authors: Jian Xin Deng, Li Li Liu
Tai: Surface Engineering, Vol.16 (2000), pp. 411-414
Deng: Materials Science and Engineering A.
Kanzaki: Precision Engineering, Vol.26 (2002), pp. 193-198.
Yuan: Materials Science and Engineering A.
Chung: Engineering Fracture Mechanics, Vol.70 (2003), pp. 1227-1243
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