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Online since: November 2014
Authors: M.F.M. Salleh, Sofiah Hamzah
Salleh1 1School of Ocean Engineering University Malaysia Terengganu, 21030 Kuala Terengganu, Terengganu, Malaysia.
Hydroxyapatite (Ca10(PO4)6(OH)2, HAp) is a ceramic calcium phosphate, or bio-ceramic that can be functioned as adsorbent for dyes wastewater treatment.
Ceramics International 37, 1825–1831
[5] Mondal, S and Mondal, B (2012) Studies on processing and characterization of hydroxyapatite biomaterials from different bio wastes, Journal of Minerals & Materials Characterization & Engineering, Vol. 11, No.1, 55-67
The Scientific World Journal, 1-9
Online since: November 2018
Authors: Hamimah Abdul Rahman, Suraya Irdina Abdullah, Dedikarni Panuh, Umira Asyikin Yusop
Effect of Milling Process and Calcination Temperature on the Properties of BSCF-SDC Composite Cathode Yusop U.A.1,a, Rahman H.A.1,b*, Abdullah S.I.1,c and Panuh D.2,d 1Faculty of Mechanical and Manufacturing Engineering, University Tun Hessein Onn Malaysia, 86400 Parit Raja, Batu Pahat, Johor, Malaysia 2Department of Mechanical Engineering, Faculty of Engineering, Universitas Islam Riau, 28284 Pekanbaru, Riau, Indonesia aumira_yusop@yahoo.com, b*hamimah@uthm.edu.my, ccd140009@siswa.uthm.edu.my, ddedikarni@eng.uir.ac.id Keywords: Calcination, High energy ball milling, BSCF, cathode Abstract.
Ceramics International 42 (16) (2016) 19397-19401
Journal of Power Sources 161(1) (2006) 123–28
International Journal of Hydrogen Energy. 35(17) (2010) 9448–54
International Journal of Electrochemical Science. 10 (9) (2015) 7159–65
Online since: July 2011
Authors: Ying Ying Wu, Firman Mangasa Simanjuntak, Chun Feng Huang, Chen Chia Chou
Electrospinning processing and microstructural characterization of Ce0.78Gd0.2Sr0.02O2-δ fiber for a composite anode Chen-Chia Chou1, a, Chun-Feng Huang1,b, Firman Mangasa S1,c and Ying-Ying Wu1,d 1Advanced Ceramic Laboratory, Department of Mechanical Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan accchou@mail.ntust.edu.tw, bD9403608@mail.ntust.edu.tw, cM9803816@mail.ntust.edu.tw, dM9503513@mail.ntust.edu.tw Keywords: Electrospinning, Fiber, Fuel cell, Anode Abstract.
Ceramic fiber which after heat treatment at different temperatures are all identified as cubic fluorite structure (JCPDS 34-0394).
A uniform, bead free, and fine GDCSr ceramic fiber was successfully fabricated after debinder process of 500oC.
Chou: Journal of material science and engineering Vol. 25 (2007), p. 851 [3] S.B.
Jiandong: Ceramics International Vol. 36 (2010), p. 589 [6] W.W.
Online since: August 2013
Authors: Zi Xu Han, Hai Dong Zhao, Li Bao An
Wang: International Journal of Machine Tools and Manufacture Vol. 62 (2012), p. 1 [3] B.
Yang: Proceedings of the 2011 International Conference on Mechatronic Science, Electric Engineering and Computer (MEC), (2011), p. 507 [6] S.
Dong: International Journal of Machine Tools and Manufacture Vol. 50 (2012), p. 411 [8] D.P.
Wong: International Journal of Machine Tools and Manufacture Vol. 52 (2012), p. 13 [9] B.
To: Precision Engineering Vol. 35 (2011), p. 574
Online since: September 2016
Authors: Ji Woong Kang, Oh Heon Kwon, Cheol Jun Park
The SOFC consisting of brittle ceramic materials can be damaged by the cracking due to high-temperature during the manufacturing and operation.
The materials of the electrodes used in the analysis were assumed that the anode is Ni-YSZ, the cathode is a LSM-YSZ ceramic mixed conductor.
The crack behavior was evaluated for the SOFC materials of ceramic type by considered the linear elastic fracture.
Deevi : A review on the status of anode materials for solid oxide fuel cells, Materials Science & Engineering, A, Vol. 362, pp. 228-239. (2003) [2] Oingping Fang, Ludger Blum, Roland Peters, Murat Peksen, Peter Batfalsky, Detlef Stolten : SOFC stack performance under high fuel utilization, International journal of Hydrogen Energy, Vol. 40, pp.1128-1136. (2015) [3] Amar N.Kumar and Bent F.
Sorensen : Fracture energy and crack growth in surface treated Yttria stabilized Zirconia for SOFC applications, Materials Science & Engineering, A,Vol.333, pp. 380-389. (2002)
Online since: May 2014
PREFACE The XXII International Materials Research Congress (IMRC) was held in Cancun Mexico from 11 to 15 August 2013.
The aim of the IMRC is provide an interactive forum to discuss and exchange ideas about the advances in synthesis, characterization, properties, processing, applications, basic research trends, corrosion prevention, and more, all related to the area of materials science and engineering.
The Symposium 5C "Structural and Chemical Characterization of Metals, Alloys and Compounds" promotes the contact among scientists and research groups for the creation and collaboration of national and international research networks.
The structural, mechanical and chemical characterization of different materials such as metals, alloys, ceramics, catalysts, steels, composites, welding, superalloys, quasicrystals, intermetallic compounds, and nanomaterials are included.
Finally, but not least, we would like to thank all the authors for their valuable contributions to the journal.
Online since: April 2007
Authors: Fan Li, Hai Feng Hu, Zhao Hui Chen, Song Wang
Mechanical Properties of C/SiC Composites via Precursor Pyrolysis with Pretreated Carbon Fiber Song Wang, Zhaohui Chen, Fan LI and Haifeng Hu CFC Lab, College of Aerospace and Materials Engineering, National University of Defense Technology, Changsha 410073, P.R.China Keywords: C/SiC composites, precursor pyrolysis, mechanical properties, thermal treatment Abstract. 3D C/SiC composites were fabricated by polycarbosilane (PCS) infiltration and pyrolysis process.
Precursor infiltration and pyrolysis (PIP) process is an attractive method to fabricate C/SiC composites and is being actively developed, because it offers many advantages such as low processing temperature, controllable ceramic compositions, and near-net-shape technologies.
Materials Science and Engineering A. 2005,390:154
Journal of the Chinese Ceramic Society, Vol.29(4): 365 (in Chinese)
Ceramics International, to be published.
Online since: June 2011
Authors: Norhamidi Muhamad, Mohd Nizam Ab. Rahman, Khairur Rijal Jamaludin, Hooman Abolhasani, Hadi Murthadha
Rahman2,e 1UTM Razak School in Engineering & Advanced Technology, Universiti Teknologi Malaysia International Campus, 54100 Jalan Semarak, Kuala Lumpur, MALAYSIA 2Precision Process Research Group, Dept. of Mechanical and Materials Engineering, National University of Malaysia, 43600 Bangi, Selangor Darul Ehsan, MALAYSIA akhairur@ic.utm.my, bhamidi@eng.ukm.my, chooman@eng.ukm.my, dmurtadha88@yahoo.com, emnizam@eng.ukm.my Key words: Metal Injection Molding (MIM), rheological behavior, binder system, flow behavior index, activation energy Abstract.
Souza: Materials Science and Engineering Vol.
Soares: Journal of the European Ceramic Society Vol. 21 (2001), p. 2843-2853 [6] K.R.
Rahman and Murtadhahadi: International Journal of Mechanical and Materials Engineering Vol. 3 No. 2 (2008), p. 108-114 [7] N.
Ibrahim: International Journal of Mechanical and Materials Engineering Vol. 4 No. 1 (2009), p. 70-75
Online since: July 2016
Authors: Sunil Prasad, Vikas Kr Vyas, Md Ershad, Ram Pyare
Department of Ceramic Engineering, Indian Institute of Technology (BHU), Varanasi-221005, India asunilmnnit25@gmail.com, bvyas22302@gmail.com, cmdershad.rs.cer13@iitbhu.ac.in, dpyare_ram55@yahoo.com Keywords: Bioactive glass, BG, HA, Bio-composites Abstract: - Bio-glass® and hydroxyapatite (Ca10(PO4)6(OH)2, HA) have been widely used as a bone replacement material in restorative dental and orthopedic implants.
Hydroxyapatite (Ca10(PO4)6(OH)2, HA) has attracted much attention as a material for artificial bones [5] and scaffolds for tissue engineering.
Procedia Engineering 2015; 102: 534–541
Handbook of bioactive ceramics, vol.
Ababou,Microstructure and related mechanical properties of hot pressed hydroxyapatite ceramics, Journal of Material Science: Materials in Medicine 1994;5: 563–568
Online since: March 2013
Authors: Dong Mei Miao, Ming Lei Ma, Hong Juan Ma, Gui Ling Wang
Some times engineering structure need to expand its span length, the commonly thinking is how to decrease the dead load by no harming the structure capacity.
The water absorption rates of the porous material are very large in an engineering extent.
It is the main reason why the lightweight aggregate concrete not widely used in the engineering community.
The experience was widely used by CCEED (China Eighth Engineering Division), most of the application was used in airport and bridge constructions.
International Journal of Cement Composites and Lightweight Concrete, 1984,6(4): 249~261 [2] O.
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