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Online since: December 2014
Authors: Waldemar Alfredo Monteiro, Juan Alfredo Guevara Carrió, L.C.E. Silva, G.G. Previatti, E.C. Oliveira
Metal-ceramic composites are recently being used as electrode materials in solid oxide fuel cell (SOFC), which have received much attention as alternative energy sources.
Fine dispersed ceramic particles introduction into the metal matrix have significant reinforcing effects which can be kept at elevated sintering temperatures.
[2] ASM Specialty Handbook: Copper and Copper Alloys, Metal, chapter 1, section 1, ASM International, 2001
Rekas: Journal of Power Sours Vol. 195 (2010), p. 5527
Fujii: RTRI Japan Electrical Engineering in Japan Vol. 124 (3) 1998.
Online since: April 2021
Authors: Tatyana Chayka, V.M. Gavrish, G.A. Baranov
Fenmo Yejin Cailiao Kexue yu Gongcheng J.Materials Science and Engineering of Powder Metallurgy. 16 (2011) 610-616
International Journal of Metalcasting, 10 (2016) 466–476
Fatemi-Mehr, Sintering variables optimization, microstructural evolution and physical properties enhancement of nano-WC ceramics, J.Alloys and Compounds,766 (2018) 672-677
Bazarova, Properties of ceramics prepared from nanopowders, J.
Online since: May 2020
Authors: Masayoshi Fuji, Apiluck Eiad-Ua, Weerawut Chaiwat, Laemthong Chuenchom, Napat Kaewtrakulchai, Nutchaporn Ngamthanacom
Synthesis of Nanoporous Material from Lignin via Carbonization Assisted Acid Activation Nutchaporn Ngamthanacom1,a, Napat Kaewtrakulchai1,b, Weerawut Chaiwat2,c, Laemthong Chuenchom3,d, Masayoshi Fuji4,e and Apiluck Eiad-Ua1,f 1College of Nanotechnology, King Mongkut’s Institute of Technology, Bangkok, 10520, Thailand 2Environmental Engineering and Disaster Management Program, Mahidol University, Kanchanaburi Campus, Sai yok, Kanchanaburi, 71150, Thailand 3Department of Chemistry, Faculty of Science, Prince of Songkhla University, Songkhla 90112, Thailand 4Advanced Ceramic Research Center, Nagoya Institute of Technology, Tajimi, Gifu 507-0033, Japan a60607005@kmitl.ac.th, bknapat.kara@gmail.com, cweerawutchaiwat@gmail.com, dlaemthong.c@psu.ac.th, efuji@nitech.ac.jp, fapiluck.ei@kmitl.ac.th Keywords: Waste Lignin, Carbonization, Nanoporous Material, Acid Activation.
Chemical Engineering Journal 148(1) (2009), p. 15 - 19
International Journal of Applied Engineering Research 9(23) (2014), p. 19421 – 19428
International Biodeterioration & Biodegradation 52 (2003), p. 151 - 160.
Online since: August 2017
Authors: Witold F. Habrat
Laser-assisted machining is successfully applied to improve the machinability of a selected group of difficult-to-cut materials such as steels, ceramics, composite and heat-resistant alloys.
Therefore, Ahn et al. verified the efficiency of LAM for AISI 1045 steel and noted that this technology can be widely applied for machining of difficult-to-cut materials, such as nickel, ceramic and heat-resistant alloys [5].
In recent years Ti-6Al-4V alloy has found more and more applications in numerous engineering areas due to its exceptional properties at elevated temperatures.
Dargusch, International Journal of Machine Tools & Manufacture The effect of laser power on the machinability of the Ti-6Cr-5Mo-5V-4Al beta titanium alloy during laser assisted machining, Int.
Online since: September 2008
Authors: Hiroshi Yamada, Yusuke Imai, Yoshio Adachi, Chao Nan Xu, Takato Toriyi
Enhancement of mechanoluminescence from ZnS:Mn,Te by wet process Takato Toriyi1, Yoshio Adachi2, Hiroshi Yamada 2, Yusuke Imai2 and Chao-Nan Xu 1, 2, 3* 1Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, Fukuoka 816-8580, Japan 2National Institute of Advanced Industrial Science and Technology (AIST), Saga 841-0052, Japan 3Japan Science and Technology Agency (JST) CREST, Saitama 332-0012, Japan Keywords: ZnS, Mechanoluminescence, Red luminescence, Wet process, Co-doping ABSTRACT We successfully synthesized the novel mechanoluminescent material ZnS:Mn,Te with a wurtzite structure by controlling the pH of the solution used in the wet process.
Xu, Ceramics Japan, 39 (2004), p. 130
Chen, Ceramics International, 26 (2) (2000), pp. 153-158
Rebentisch, Journal of Crystal Growth., 101 (1990), pp. 976-980
Online since: August 2011
Authors: M.P. Dhanasekaran, T. Sundararajan, Ramalingam.A. Jothi, R. Dileep, B. Sankaranarayanan, A.G. Balamurali, M. Mohan
Space capsule Recovery Experiment (SRE) is a sphere-cone-flare shape reentry capsule that was successfully flown [1] and recovered with ablative TPS in the fore end region and ceramic tiles in the cone and flare regions (Fig.1).
Ceramic tile TPS C/C TPS Fig. 1 SRE Capsule configuration Unlike the back wall temperature of ablative systems, the back wall temperature of C/C TPS would typically be very high.
The Lagrangian method is the most common finite element solution technique for engineering applications.
Sunil : Space Capsule Recovery Experiment Project – Mission Overview, IAC–07: D2.2.04, 58th International Astronautical Congress (2007)
[2] Wang, John T and Lyle, Karen H. : Simulating Space Capsule Water Landing with Explicit Finite Element Method, AIAA 2007-1779, 48th AIAA/ASME/ASCE/AHS/ASE Structures, Structural Dynamics, Material Conference, Honolulu, Hawaii (2007) [3] Hirano, Yoichi and Miura, Koryo : Water Impact Acceleration of Axially Symmetric Bodies, Journal of Spacecraft and Rockets, Vol. 7, No. 6 (1970)
Online since: November 2015
Authors: Miloš Madić, Laurentiu Slatineanu, Predrag Janković, Miroslav Radovanović, Dušan Petković
Taguchi Approach for the Optimization of Cutting Parameters in Finish Turning of Medical Stainless Steel RADOVANOVIĆ Miroslav1, a, SLATINEANU Laurentiu2, b, JANKOVIĆ Predrag1, c, PETKOVIĆ Dušan1, d and MADIĆ Miloš1, e 1University of Niš, Faculty of Mechanical Engineering, A.
Depending on the criterion for the quality characteristic to be optimized, the S/N ratio characteristics can be divided into three stages: smaller-the-better, larger-the-better, and nominal-the-better, when the quality characteristics are continuous for engineering analysis.
The average roughness is recognized universally as the commonest international parameter of roughness.
Hasan, Analysis of surface roughness by turning process using Taguchi method, Journal of Achievements in Materials and Manufacturing Engineering. 20, 1-2 (2007) 503-506
Ross, Taguchi techniques for quality engineering, McGraw Hill, 1988.
Online since: October 2013
Authors: Jun Feng Guan, Xian Hua Yao, Peng Li
Shen, Bulletin of the Chinese Ceramic Society, 28 (2009) 359-365
Liang, China Civil Engineering Journal, 37 (2004) 78-84
Han, et al, Chinese Journal of Geotechnical Engineering, 24 (2002) 580-583
Zhu, Chinese Journal of Geotechnical Engineering, 22 (2000) 549-554
Nagaraj, Analysis and Assessment of engineering behavior of cement stabilized clays, Saga University, Japan, 2001
Online since: April 2023
Authors: Ahmed M. El Basyoni, Alaa A. Badr, Ashraf Alnahrawy, Ahmed H. Hassanin, Mohamed G.A. Nassef
Hassanin4,3,e 1Industrial and Manufacturing Engineering Department, Egypt-Japan University of Science and Technology, New Borg El Arab City, 21934 Alexandria, Egypt. 2Production Engineering Department, Alexandria University, 21544 Alexandria, Egypt 3Textile Engineering Department, Alexandria University, 21544 Alexandria, Egypt 4Material Science Engineering Department, Egypt-Japan University of Science and Technology, New Borg El Arab City, 21934 Alexandria, Egypt.
The specimens are cut into area of 5×5 cm2 and placed in a ceramic crucible.
Maier: Environmental Engineering and Management Journal Vol. 18 (2019), p. 1439–1456
Jawaid: Journal of Natural Fibers Vol. 13 (2016), p. 651–659
Kim: 21st International Conference on Composite Materials Xi’an, China, (2017)
Online since: October 2014
Authors: Mohd Halim Irwan Ibrahim, Rosli Asmawi, Azriszul Mohd Amin, Najwa Mustafa
Mustapha1d 1Faculty of Mechanical and Munufacturing Engineering, Universiti Tun Hussein Onn Malaysia, 86400, Parit Raja, Batu Pahat, Johor.
Gelin, “Journal of Materials Processing Technology Determination of critical and optimal powder loadings for 316L fine stainless steel feedstocks for micro-powder injection molding,” Journal of Materials Processing Tech., vol. 212, no. 11, pp. 2173–2182, 2012
Bose, Injection Molding of Metals and Ceramics.
Tor, “Mixing and characterization of feedstock for powder injection molding,” Journal of Materials Letters, vol. 46, no.
Sulong, “Rheological Investigation of Water Atomised Stainless Steel Powder for Micro Metal Injection Moulding,” International Journal of Mechanical and Materials Engineering, vol. 4, no. 1, pp. 1–8, 2009.
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