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Online since: July 2020
Authors: Yuli Yetri, Dian Juliadmi, Menkher Manjas, Djong Hon Tjong, Gunawarman Gunawarman, Fuad Ramadhan, Jon Affi, Hidayatul Fajri, Nuzul Ficky Nuswantoro
Series: Materials Science and Engineering. 432 (2018) 1-7
Laonapakul, Synthesis of hydroxyapatite from biogenic wastes, KKU Engineering Journal. 42 (2015) 269-275
Shahrabi, Effect of triethanolamine on the electrophoretic deposition of hydroxyapatite nanoparticles in isopropanol, Ceramics International. 39 (2013) 7007–7013
Abdulkareem, Evaluation of Surface Roughness of 316L Stainless Steel Substrate on Nanohydroxyapatite by Electrophoretic Deposition, Al-Nahrain Journal for Engineering Sciences, 21 (2018) 28-35
Hideki, Hydroxyapatite coating on Ti plate by a dipping method, Bio-medical Materials and Engineering. 5 (1995) 49-58
Online since: April 2020
Authors: Mikhail N. Roshchin, Valeriy Alisin
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).
Online since: January 2007
Authors: Sung Jin Kim, Sang Yeup Park, Hee Gon Bang, Sung Jin Park
Fabrication of Cordierite Honeycomb from Fly Ash Sung-Jin Kim 1,a, Sung-Jin Park1,b, Hee-Gon Bang 1,2,c , Sang-Yeup Park 1,2,d 1 Department of Ceramic Engineering, Kangnung National University, Kangnung, Kangwondo, 210-702, South Korea 2 Technology Innovation Center for Fine Ceramics, Kangnung National University, Kangnung, Kangwondo, 210-702, South Korea a k9s8j7@hotmail.com, bdark sung jin@hanmail.net, chgbang@ kangnung.ac.kr d sypark@knusun.kangnung.ac.kr Keywords: Cordierite, Fly ash, Porous honeycomb filter, Extrusion process Abstract.
References � [1] Jin Yang: Journal of the Korean Ceramic Society Vol.35, No. 4, pp. 399-405 (1998)
[4] Alessandro Bachiorrini, Ceramics International 22, 73-77 (1996)
[6] Young-Bae Kim, Eul-Hoon Cho, Yoon-Young Chang, Hee-Soo Lee and Duck-Kyun Choi: Korean Journal of Material Research Vol. 12, No. 2 (2002)
[7] M.A.Camerucci , G.Urretavizcaya , A.L.Cavalieri: Ceramics International 29 (2003) 159-168.
Online since: March 2018
Authors: Cheng Li, Pan Jin Liu, Shi Bing Ding, Shun Li Zheng, Wei Hu, Tengfei Xiang
Materials Science & Engineering A. 2001, 302(1):83-91
Journal of metal functional materials. 1994, 10(1):21-23
Journal of the American Ceramic Society., 1996, 79(10):2705-2717
Journal of Physics D Applied Physics. 2010, 43(21), 1347-1352
Journal of Physics D Applied Physics. 2007, 20(17):5383
Online since: March 2013
Authors: Ping Chen, Lian Bao Kan
Research on the treatment of oily sludge Ping Chen1,2,a, Lianbao Kan1,2 1 Heilongjiang Key Laboratory of Disaster Prevention, Mitigation and Protection Engineering; Daqing, Heilongjiang, 163318, China 2 College of Civil and Architecture Engineering, Northeast Petroleum University; Daqing, Heilongjiang, 163318, China; aemail:shenjiangong22@126.com Keywords: Oily sludge; Ultrasound; Biodegradation; Sludge dewatering Abstract: The oily sludge was more serious polluted to the environment, it is necessary to harmless treatment.
The results showed that practically no change occurred in the main technological properties required to specify porous red ceramic products.
Stefanescu: Journal of Petroleum Science and Engineering Vol. 22 (1999) , p.151–160 [11] C.
Tahhan, Rouba Youssef Abu-Ateih: International Biodeterioration & Biodegradation Vol. 63 (2009) , p.1054–1060 [14] Vanessa S.
Holanda: Ceramics International Vol.39 (2013) , p. 57–63 [20] Patricia Fernanda Andrade, Thiago Figueiredo Azevedo, Iara F.
Online since: November 2012
Authors: Rong Bian, Eleonora Ferraris, Jun Qian, Dominiek Reynaerts, Liang Li, Ning He
Micro-milling of fully sintered ZrO2 Ceramics with Diamond coated end mills Rong Bian1,a, Eleonora Ferraris2, Jun Qian2, Dominiek Reynaerts2,b, Liang Li1 and Ning He1,c 1 College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics & Astronautics, 210016 Nanjing, China 2 Department of Mechanical Engineering, KU Leuven, 3001 Heverlee, Belgium abianrong@nuaa.edu.cn, bdominiek.reynaerts@meck.kuleuven.be, cdrnhe@nuaa.edu.cn Keywords: Micro-milling, ductile, diamond coated, Zirconia (ZrO2), surface Abstract.
Acknowledgement: This research was performed at the PMA division of the Mechanical Engineering Department of the KU Leuven.
Manufacturing Engineering and Materials Handling, 2005 Pts A and B, 2005. 16: p. 863-884
The International Journal of Advanced Manufacturing Technology, 2007. 32(7): p. 631-637
Journal of Engineering for Industry-Transactions of the Asme, 1991. 113(2): p. 184-189.
Online since: July 2016
Authors: Ramesh Singh, Sivakumar Sivanesan, Hsien Loong Teow, Ali Niakan, 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
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
Online since: March 2020
Authors: Zheng Sun, Yu Rong Wang, Shan Xin Feng
Journal of Archaeological Science. 78(2017)112-119
Comitatus A Journal of Medieval & Renaissance Studies. 48(1)(2017)190-192
Journal of African Diaspora Archaeology and Heritage. 6(2) (2017) 110-132
Key Engineering Materials.798(2019)242-247
Journal of African Earth Sciences. 84(2013)13–19
Online since: October 2002
Authors: Maria-Teresa Freire Vieira, Fatima M. Barreiros
German: Journal of Materials Science 29 (1994), p. 5367
Edirisinghe: Journal of Materials Science 28 (1993), p. 4167 [4] R.E.F.Q.
Edirisinghe: Journal of Materials Science 28 (1993), p. 4821
Terpstra: in Proceedings of 1st International Conference on Advanced Materials Processing, edited by D.L.
Xiong, The Institute of Materials Engineering Australasia Ltd (2000), pp. 113
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