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Online since: March 2023
Authors: S. Kaliappan, Gori Yatika, P.K. Dhal, P. V. Arul Kumar, G. Muthu, L. Natrayan
The International Journal of Advanced Manufacturing Technology, 94(5), 2175-2185
Journal of Industrial and Engineering Chemistry, 110, 68-83
Arabian Journal for Science and Engineering, 1-13
Advances in Materials Science and Engineering, 2021
Case Studies in Thermal Engineering, 36, 102093
Journal of Industrial and Engineering Chemistry, 110, 68-83
Arabian Journal for Science and Engineering, 1-13
Advances in Materials Science and Engineering, 2021
Case Studies in Thermal Engineering, 36, 102093
Online since: July 2016
Authors: Ali Niakan, Ramesh Singh, Sivakumar Sivanesan, Hsien Loong Teow, Nobuyuki Mase
SIVANESAN SIVAKUMAR1,a, HSIEN LOONG TEOW2,b*, RAMESH SINGH3,c, ALI NIAKAN3, NOBUYUKI MASE4,d
1School of Engineering, Taylor’s University, Taylor's Lakeside Campus, No. 1 Jalan Taylor's, 47500, Subang Jaya, Selangor DE, Malaysia
2School of Engineering, INTI International College Subang, No. 3, Jalan SS15/8, 47500, Subang Jaya, Selangor DE, Malaysia
3Department of Mechanical Engineering, University of Malaya, 50603, Kuala Lumpur, Malaysia
4Green Energy Research Division, Research Institute of Green Science and Technology,Department of Engineering,Shizuoka University, Japan
asivakumar.sivanesan@taylors.edu.my, bhsienloong.teow@newinti.edu.my, cramesh79@um.edu.my, dmase.nobuyuki@shizuoka.ac.jp
Keywords: Y-TZP, Zirconia, Iron Oxide, Densification, Mechanical Properties, Ageing
Abstract.
Introduction Zirconia is widely used in many engineering applications for example usage of zirconia to strengthen the silicon carbine ceramics [1], fuel cell’s oxygen sensor, heating elements and extrusion dies [2,3].
Marmo, Y-TZP Ceramics for Artificial Joint Replacements.
Ranjana, Zirconia: Properties and Applications – A review, Pakistan Oral & Dental Journal, 34 (2014) 178-183
Gill, Environmental Degradation of CuO-doped Y-TZP Ceramics, Ceramics International, 27(6) (2001) 705-711
Introduction Zirconia is widely used in many engineering applications for example usage of zirconia to strengthen the silicon carbine ceramics [1], fuel cell’s oxygen sensor, heating elements and extrusion dies [2,3].
Marmo, Y-TZP Ceramics for Artificial Joint Replacements.
Ranjana, Zirconia: Properties and Applications – A review, Pakistan Oral & Dental Journal, 34 (2014) 178-183
Gill, Environmental Degradation of CuO-doped Y-TZP Ceramics, Ceramics International, 27(6) (2001) 705-711
Online since: January 2017
Authors: Zhi Xiong Huang, Min Xian Shi, Wen Luo, Shanshan Fan
Composites Part B Engineering. 60.2(2014):597–602
[5] Y.X.
Composites Part B Engineering. 47.3(2013):320–325
Journal of Astm International. 4.7(2007):100516-100523
Materials Science and Engineering A. 425.1(2006):7-14
Materials Science and Engineering A. 398.1(2005):180–187
Composites Part B Engineering. 47.3(2013):320–325
Journal of Astm International. 4.7(2007):100516-100523
Materials Science and Engineering A. 425.1(2006):7-14
Materials Science and Engineering A. 398.1(2005):180–187
Online since: May 2010
Authors: Li Yang Xie, Wen Xue Qian, Xiao Wei Yin
China
2
Department of Mechanical Engineering, Shenyang Institute of Engineering,
Shenyang 110136, P.
Ceramic Engineering and Science Proceedings, 1998, 19 (4): 225-232
Desktop Engineering Magazine, 2008, 1
Journal of the Aeronautical Sciences, 1956, 23: 805-82
Proceedings of the 15th International Conference on Industrial Engineering and Engineering Management, Volume A, 20-22 Sept, 2008: 176-179
Ceramic Engineering and Science Proceedings, 1998, 19 (4): 225-232
Desktop Engineering Magazine, 2008, 1
Journal of the Aeronautical Sciences, 1956, 23: 805-82
Proceedings of the 15th International Conference on Industrial Engineering and Engineering Management, Volume A, 20-22 Sept, 2008: 176-179
Online since: April 2020
Authors: Valeriy Alisin, Mikhail N. Roshchin
Roshchinb
Mechanical Engineering Research Institute of the Russian Academy of Sciences,
Moscow
avva-imash@yandex.ru, broschin50@yandex.ru
Keywords.
This issue is a burning one in different industries, e.g. circulating pumps in nuclear power engineering, mixing units of crystal synthesizing lines in chemical engineering; motors in space-based targets, rotors of guide blades in axial compressors of airplane engines, supports of high-speed gas centrifuges.
Structure and conductivity of yttria and scandia-doped zirconia crystals grown by skull melting //Journal of the American Ceramic Society. 2017.
Problems of mechanical engineering and reliability of machines, No. 4, 2006, p.3-8. – in Russian - Frolov K.V., i dr.
Effect of the preparation route on the mechanical properties of Yttria–Ceria doped Tetragonal Zirconia / Alumina composites// Ceramics International. 2013. 39(2).
This issue is a burning one in different industries, e.g. circulating pumps in nuclear power engineering, mixing units of crystal synthesizing lines in chemical engineering; motors in space-based targets, rotors of guide blades in axial compressors of airplane engines, supports of high-speed gas centrifuges.
Structure and conductivity of yttria and scandia-doped zirconia crystals grown by skull melting //Journal of the American Ceramic Society. 2017.
Problems of mechanical engineering and reliability of machines, No. 4, 2006, p.3-8. – in Russian - Frolov K.V., i dr.
Effect of the preparation route on the mechanical properties of Yttria–Ceria doped Tetragonal Zirconia / Alumina composites// Ceramics International. 2013. 39(2).
Online since: June 2018
Authors: Katakam Sivaprasad, Veerappan Muthupandi, R. Sokkalingam, M.P. Shankar
Muthupandid
Advanced Materials Processing Laboratory, Department of Metallurgical and Materials Engineering, National Institute of Technology, Tiruchirapalli, Tamil Nadu, 620015, India
ampshanker@gmail.com, brslingaa@gmail.com, cksp@nitt.edu, dvmuthu@nitt.edu
Keywords: Friction stir processing, micro arc oxidation, Al-2014 aluminium alloy.
Song, Characterization of Al2O3 ceramic coatings on 6063 aluminum alloy prepared in borate electrolytes by micro-arc oxidation, Journal of Alloys and Compounds, 462(2008) 99-102 [3] A.
Venkateswarlu, Effect of various additives on morphology and corrosion behavior of ceramic coatings developed on AZ31 magnesium alloy by plasma electrolytic oxidation, Ceramics International 38 (2012) 4607–4615
Subramanian, Fabrication and characterization of micro-arc oxidized fluoride containing titania films on Cp Ti, Ceramics International 39 (2013) 801–812
Matthews, Review: plasma electrolysis for surface engineering, Surf. & Coat.
Song, Characterization of Al2O3 ceramic coatings on 6063 aluminum alloy prepared in borate electrolytes by micro-arc oxidation, Journal of Alloys and Compounds, 462(2008) 99-102 [3] A.
Venkateswarlu, Effect of various additives on morphology and corrosion behavior of ceramic coatings developed on AZ31 magnesium alloy by plasma electrolytic oxidation, Ceramics International 38 (2012) 4607–4615
Subramanian, Fabrication and characterization of micro-arc oxidized fluoride containing titania films on Cp Ti, Ceramics International 39 (2013) 801–812
Matthews, Review: plasma electrolysis for surface engineering, Surf. & Coat.
Online since: August 2009
Authors: Ji Hui Xu, Qiu Ju Zheng, Jing Wang, Xin Wang, Wen Lai Zhang
Preparation and characterization of CePO4 coated ZrO2 composite
powders by Hydrothemal method
Jing Wang Xin Wang* Wenlai Zhang Qiuju Zheng Jihui Xu
(Institute of Materials Science and Engineering, Ocean University of China, Qingdao China,266100)
E-mail address: wangjing8354@yahoo.cn; wangxinhd@ouc.edu.cn
Keywords: hexagonal monoclinic hydrothemal method
Abstract: The hexagonal and the monoclinic CePO4 with rod-like coated ZrO2 composite powders
were successfully synthesized through the hydrothemal method. the coated powders were
characterized by the techniques of XRD, TEM, DTA and zeta potential measurements.
In addition, the morphology of the coated powders after calcinations at 1000°C was also investigated. 1.Introduction Ceramic materials have been used as engineering materials because of their high strength and high hareness.
But one significant disadvantage of such ceramics was their difficulty in machining after sintering, which led to high machining.
To decrease it, various ceramics with machinability, called machinable ceramic, have been developed[1].
References: [1]Zhenjun Zhou, Wei Pan, Zhipeng Xie, Journal of the European Ceramic Society 23(2003), 1649-1654 [2]Davis J.B., Marshall D.B., Housley R.M., Morgan P.E.D., Journal of the American Ceramic Society, 81(1998), 2169-2175 [3]Ruigang Wang, Wei Pan, Jian Chen, Mengning Jiang, Youming Luo and Minghao Fang, Ceramics International, 29(2003), 19-25 [4]Youjin Zhang, Hangmin Guan, Journal of Crystal Growth, 256(2003), 156-161 [5]TIAN Boran, LIU Jiachen, ZHAO Yubong, LIU Mingzheng, Journal of Wuhan University of Technology-Mater.Sci.Ed, 20(2004), 17-20 [6]Hai Gao, Jiachen Liu, Haiyan Du, Mingzheng Liu, Weirong Huo, Lijuan Wang, Scripta Materialia, 49(2003), 515-520 [7]Hai Gao, Jiachen Liu, Haiyan Du, Mingzheng Liu, Lijuan Wang, Weirong Huo, Journal of rare earths, 21(2003), 637-640 [8]K.K.Chawlaa, H.Liub, J.Janczak-Ruschc, S.Sanbasivand, Journal of the European Ceramic Society, 20(2000), 551-559 [9]Vayssieres Lionel, Advanced Material, 15(2003), 464-466
In addition, the morphology of the coated powders after calcinations at 1000°C was also investigated. 1.Introduction Ceramic materials have been used as engineering materials because of their high strength and high hareness.
But one significant disadvantage of such ceramics was their difficulty in machining after sintering, which led to high machining.
To decrease it, various ceramics with machinability, called machinable ceramic, have been developed[1].
References: [1]Zhenjun Zhou, Wei Pan, Zhipeng Xie, Journal of the European Ceramic Society 23(2003), 1649-1654 [2]Davis J.B., Marshall D.B., Housley R.M., Morgan P.E.D., Journal of the American Ceramic Society, 81(1998), 2169-2175 [3]Ruigang Wang, Wei Pan, Jian Chen, Mengning Jiang, Youming Luo and Minghao Fang, Ceramics International, 29(2003), 19-25 [4]Youjin Zhang, Hangmin Guan, Journal of Crystal Growth, 256(2003), 156-161 [5]TIAN Boran, LIU Jiachen, ZHAO Yubong, LIU Mingzheng, Journal of Wuhan University of Technology-Mater.Sci.Ed, 20(2004), 17-20 [6]Hai Gao, Jiachen Liu, Haiyan Du, Mingzheng Liu, Weirong Huo, Lijuan Wang, Scripta Materialia, 49(2003), 515-520 [7]Hai Gao, Jiachen Liu, Haiyan Du, Mingzheng Liu, Lijuan Wang, Weirong Huo, Journal of rare earths, 21(2003), 637-640 [8]K.K.Chawlaa, H.Liub, J.Janczak-Ruschc, S.Sanbasivand, Journal of the European Ceramic Society, 20(2000), 551-559 [9]Vayssieres Lionel, Advanced Material, 15(2003), 464-466
Online since: August 2013
Authors: Jun Pi, Guang Yang, Fei Ye
International Journal of Production Research, 1991, 29(11): 2177–2187
In: Transactions of the ASME, Journal of Engineering for Industry, 1991, 113: 184-189
Bulletin of Japanese Society of Precision Engineering, 1990, 24(4): 239-243
Precision Engineering, 1999, 23: 73-78
International Journal of Fracture, 2004, 128: 345–352
In: Transactions of the ASME, Journal of Engineering for Industry, 1991, 113: 184-189
Bulletin of Japanese Society of Precision Engineering, 1990, 24(4): 239-243
Precision Engineering, 1999, 23: 73-78
International Journal of Fracture, 2004, 128: 345–352
Online since: March 2009
Authors: George D. Quinn
Scientific or engineering explanations for the observed patterns gradually were
developed.
Engineering compilations are available which show tables or equations for KI for a variety of cracks and specimen shapes.
This is a classic engineering problem.
Some of the more systematic studies were done by laboratories and engineering firms that were refining ceramics for use in structural applications such as heat engines.
Richerson: Modern Ceramic Engineering, Marcel Dekker Inc., NY, 1982
Engineering compilations are available which show tables or equations for KI for a variety of cracks and specimen shapes.
This is a classic engineering problem.
Some of the more systematic studies were done by laboratories and engineering firms that were refining ceramics for use in structural applications such as heat engines.
Richerson: Modern Ceramic Engineering, Marcel Dekker Inc., NY, 1982
Online since: August 2022
Authors: Anwar Ul-Hamid, Zuratul Ain Abdul Hamid, Soo Ling Bee
Ceramics International, 46(11), 17149-17175
Ceramics International, 45(16), 20141-20147
Ceramics International, 41(9), 10818-10827
Ceramics International, 43(15), 12213-12220
Ceramics International, 46(10), 16235-16248
Ceramics International, 45(16), 20141-20147
Ceramics International, 41(9), 10818-10827
Ceramics International, 43(15), 12213-12220
Ceramics International, 46(10), 16235-16248