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Online since: February 2022
Authors: Haydar Al-Ethari, Ali Hubi Haleem, Kawthar Y. Al-Dulaimi
Ma, "Microstructural and Mechanical Characteristics of in Situ Metal Matrix Composites", Materials Science and Engineering: R: Reports, vol. 29, pp. 49-113 (2000)
[9] Michael Bauccio, “Engineered Materials Reference Book”,, ASM International, Materials Park, OH vol. 38 pp:54- 57(1999)
[11] Garg, R.K.; Singh, K.K.; Sachdeva, A.; Sharma, V.S.; Ojha, K.; Singh “Review of research work in sinking EDM and WEDM on metal matrix composite materials”, The International Journal of Advanced Manufacturing Technology, pp.611- 624 ,(2010)
Lin 1997 “Effect of Iron addition on the mechanical properties of Al2O3-NiAl CMMCs”, Engineering Materials Vols. 127-131 pp. 447-454
Series: Materials Science and Engineering 518 (2019) 032032 IOP Publishing doi:10.1088/1757-899X/518/3/03203.
Online since: July 2013
Authors: Ji Huan He, Liang Wang, Lan Xu, Lu Feng Mo
Detachment of a Charged Nano-jet for Fabrication of Nanoporous Materials Liang Wang 1,2 ,Ji-Huan He1 , Lan Xu1, Lu-Feng Mo2 1National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, 199 Ren-ai Road, Suzhou 215123, China 2College of Textile, Donghua University, Shanghai, China [Submitted: July 28, 2012; revised: October 15, 2012; accepted: January 23, 2013] Keywords: electrospinning, nanoporous materials Abstract.
Tuan, F.K .Ko, Electrospun nanofibrous structure: A novel scaffold for tissue engineering, Journal of Biomedical Materials Research. 60 (2002) 613-621
Journal of the American Chemical Society. 128 (2006) 1436-1437
Yong, Bubble-electrospinning for Fabrication of Nanofibers with Diameter of about 20nm , International Journal of Nonlinear Sciences and Numerical Simulation. 11 (2010) 163-164
He, Electrospinning: The big world of small fibers, Polymer International.56 (2007) 1321-1322
Online since: September 2020
Authors: G.N. Lokesh, G.P. Prasad, K.P. Prashanth, Subramanya Raghavendra
At the same time Metal Matrix composites (MMCs) reinforced with ceramic particles such as SiC, Al2O3 and B4C has their partial use in engineering application due to higher cost.
Acknowledgment The work described in this paper was supported by School of Engineering, Presidency University, and Research Centre of BMS College of Engineering, Bangalore, India.
[4] G N Lokesh, M Ramachandra, KV Mahendra, T Sreenith, Effect of Hardness, Tensile and Wear Behavior of Al-4.5wt%Cu Alloy/Fly ash/SiC Metal Matrix Composites, International Journal of Modern Engineering Research, Vol.3, Issue.1, Jan-Feb. 2013, pp. 381-385
[6] G.N.Lokesh, M.Ramachandra, K.V.Mahendra, Tensile and wear behaviour of Al-4.5%Cu alloy reinforced fly ash/SiC by stir and squeeze casting with rolled composites, International Journal on Mechanical Engineering and Robotics (IJMER), ISSN: 2321-5747, Volume-2, Issue-3, 2014, pp.10-15
Sreenith, Characterization of Al-Cu alloy reinforced fly ash metal matrix composites by squeeze casting method, International Journal of Engineering, Science and Technology, Vol. 5, No. 4, 2013, pp. 71-79
Online since: July 2014
Authors: G. Harish Reddy, R. Sellamuthu, Sanjivi Arul
Harish Reddy1, a *, Sanjivi Arul1,b and R.Sellamuthu1,c 1 Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Coimbatore,India.
This can be achieved by altering the surface composition with addition of ceramic materials.
The addition of ceramic materials to the surface can be done by application of high energy electron beam irradiation, laser surface alloying and friction stir processing methods.
Sellamuthu in: Application of a Simplified Simulation Method to the Determination of Arc Efficiency of Gas Tungsten Arc Welding (GTAW) and Experimental Validation, International Journal of Computational Materials Science and Surface Engineering Vol. 4 (2011) p. 265-280
Lee, in: Microstructure and hardness improvement of TiC/stainless steel surface composites fabricated by high-energy electron beam irradiation, Material Science and Engineering Vol.
Online since: December 2013
Authors: Xian Li Liu, Chao Fang, Xiao Wang, Hai Zhong Zheng
Rare metal materials and engineering, 2006, 35(2):30-34
Materials Science and Engineering, 2012, A 553:200-203
Ceramics International, 2008,34(1): 107-111
Materials Science and Engineering, 2008,A496(1-2):524-529
Journal of Material Science and Engineering. 2012,30(5):710-714
Online since: November 2015
Authors: G.S. Shiva Shankar, N.G. Siddeshkumar, V.M. Ravindranath, Anup Hanji
Degradation of Hybrid Metal Matrix Composites Reinforced with Boron Carbide and Graphite Particles due to Pit Corrosion Ravindranath V M a, G.S.Shiva Shankar b, Anup Hanji c, Siddeshkumar N G d * 1a, 1d*, Research Scholars, Department of Mechanical Engineering, Siddaganga Institute of Technology, Tumkur- 572103, Karnataka, India. 1a Professor & Head, Department of Mechanical Engineering, Siddaganga Institute of Technology, Tumkur- 572103, Karnataka, India. 1b PG Scholar, Department of Mechanical Engineering, Siddaganga Institute of Technology, Tumkur- 572103, Karnataka, India.
Applications form piston rings, journal bearings, shafts etc.
Chawla, Composite Materials: Science & Engineering, 2nd edition, Springer-Verlag, New York(1999)
Mechanical characterisation of interpenetrating network metal–ceramic composites presented at Materials Science and Engineering A 527 (2010) 1260–1265 [6].N.
Impact Behavior of A356 Albite/ SiC Composites Subjected to Cyclic Thermal Fatigue presented at International Journal of Engineering Research and Development
Online since: November 2014
Authors: Ping Feng, Hai Yan Lei, Guo Xiong Zhong, Hai Zhou Yu, Hai Long Wei
Effect of Carbon Content on Microstructure, Mechanical Properties and Wear Resistance of Ti(C,N)-based Cermets Hailong Wei1,a, Haiyan Lei1,b, Guoxiong Zhong1,c, Haizhou Yu1,d ,Ping Feng1,e,* 1College of Mechanical and Materials Engineering, China Three Gorges University, Yichang City, China, 443002 awhldoc@163.com, blhysxdx@163.com, czhongguoxiong@sina.com, dyuhaizhou78@163.com, e,*fengping@ctgu.edu.cn Keywords: Ti(C,N)-based cermets; carbon content; microstructure; mechanical properties; wear resistance Abstract.
The ceramic phase is of typical core-ring structure [5,6].
Dreyert, Ti(C,N) Cermets - Metallurgy and Properties, International journal of Refractory metals and hard materials, 13(1995) 343-351 [2] X.
Microstructure of hot-pressed Ti (C,N)- based cermets .Journal of the European Ceramic Society. 22 (2002) 2587- 2593 [6] J.
Effect of carbon content on the microstructure and mechannical properties of (Ti,W,Ta,Mo) (C,N)-(Co ,Ni) cermets, J. international journal of Refractory metals and hard materials. 17(1999)265-273 [8] Y. zheng, W.
Online since: April 2009
Authors: Antonio Contreras-Cuevas, Jesús Lugo-Quintal, Luis Díaz-Ballote, Lucien Veleva
Shen, Advanced Engineering Materials 3 (2001), 357-370
Rao, Sadhana-Academy Proceedings In Engineering Sciences 28 (2003), 209-246
Kim, Metals and Materials International, 8 (2002), 571-575
[46] ASM International.
Grant, Materials Science and Engineering, 44 (1980), 213-227.
Online since: January 2008
Authors: Takanori Watari, Toshio Torikai, Mitsunori Yada, Hom Nath Luitel
Preparation and characteristics of Eu and Dy doped Sr4Al14O25 Phosphor Hom Nath Luitel a , Takanori Watari b , Toshio Torikai c, Mitsunori Yada d Faculty of Science and Engineering, Saga University, Honjo-1, Saga 840-8502, Japan amehomnath@yahoo.com; bwatarit@cc.saga-u.ac.jp, ctorikait@cc.saga-u.ac.jp, dyada@cc.saga-u.ac.jp Keywords: Phosphor; Emission; Persistency; Sr4Al14O25:Eu 2+, Dy 3+ Abstract.
Randomly dispersed micro-pores were observed making the ceramics spongy.
Feng: Ceramics International 30 (2004) 285-280
Niittykoski: Journal of Solid State Chemistry 171 (2003) 114-122
Kutty: Journal of Alloys and Compounds 354 (2003) 221-231
Online since: December 2013
Authors: Hamimah Abdul Rahman, Andanastuti Muchtar, Sufizar Ahmad, Hatijah Basri, M.F. Kamaruddin, Muhamad Subri Abu Bakar
Muchtar3,f 1Faculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia, 86400, Batu Pahat, Johor, Malaysia 2Faculty of Science, Technology and Human Development, Universiti Tun Hussein Onn Malaysia, 86400, Batu Pahat, Johor, Malaysia 3Fuel Cell Institute, Universiti Kebangsaan Malaysia, 43600 UKM Bangi, Selangor, Malaysia amsubri21812@gmail.com, bmfadhzullahkamaruddin@yahoo.com, csufizar@uthm.edu.my, dhamimah@uthm.edu.my, ehatijah@uthm.edu.my, fmuchtar@eng.ukm.my Keywords: Ball-milling, ceria-carbonate composite cathode, low-temperature solid oxide fuel cells (LTSOFCs) Abstract.
Liu, Development of LSCF-GDC composite cathodes for low temperature solid oxide fuel cells with thin film GDC electrolyte, International Journals of Hydrogen Energy. 33 (2008) 3808-3817
Majlan, Fabrication of dense composite ceramic electrolyte SDC-(Li/Na)2Co3, Key Eng.
Abdullah, Structure and thermal properties of La0.6Sr0.4Co0.2Fe0.8O3-δ – SDC carbonate composite cathodes for intermediate-to low-temperature solid oxide fuel cells, Ceramics International. 38 (2012) 1571-1576
Sun, Innovative low temperature SOFCs and advanced materials, Journals of Power Sources. 118 (2003) 47-53
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