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Online since: August 2014
Authors: Jiang Rong Xu, Guan Qing Wang, Dan Luo, Min Hui Fan, Ri Zan Li, Ning Ding
For elimnating the effects of structural changes of porous media on flame stabilization, the burner is filled by the unifirm Al2O3 ceramic foam with an porous density N = 20 ppi and
Fig. 1 Physical model of porous burner
porosityε= 0.85.
The thermal parameters of Al2O3 ceramic foam are shown in the Table 1.
Based on the Fluent softeware, the thermal parameters of Al2O3 ceramic foam in Table 1 were introduced by user-defined program.
Journal of Chemical Industry and Engineering, , 63( 2012): P.1893
Interceram: International Ceramic Review., 48(1999),P.424.
The thermal parameters of Al2O3 ceramic foam are shown in the Table 1.
Based on the Fluent softeware, the thermal parameters of Al2O3 ceramic foam in Table 1 were introduced by user-defined program.
Journal of Chemical Industry and Engineering, , 63( 2012): P.1893
Interceram: International Ceramic Review., 48(1999),P.424.
Online since: September 2013
Authors: S. Sulaiman, A. Roshan, S. Borazjani
Roshanb and S.Borazjanic
Department of Mechanical and Manufacturing Engineering
Faculty of Engineering, University Putra Malaysia
43400 UPM, Serdang, Selangor, Malaysia
suddin@eng.upm.edu.mya, amirroshan25@yahoo.comb, soroush_borazjani@yahoo.comc
Keywords: Finite element modeling, Titanium alloy, H-13 tool steel, PCBN tool
Abstract.
[2] Balazic, M. and Kopac, J., Machining of titanium alloy Ti-6Al-4V for biomedical applications, Journal of mechanical Engineering 56 (2010) 1-5
[3] Jaharah, A.G., Choudhury, I.A., Masjuki, H.H and Che Hassan, C.H., Surface integrity of AISI H13 tool steel in end milling process, International Journal of Mechanical and Materials Engineering. 4 (2009) 88-92
[5] Duan, C.Z., Dou, T., Cai, Y.J., and Li, Y.Y., Finite element simulation and experiment of chip formation process during high speed machining of AISI 1045 hardened steel, International Journal of Recent Trends in Engineering. 1 (2009) 46-50
[9] Umer, U., High speed turning of H-13 tool steel using ceramics and PCBN, Journal of Material Engineering and Performance. 21 (2012) 1857-1861
[2] Balazic, M. and Kopac, J., Machining of titanium alloy Ti-6Al-4V for biomedical applications, Journal of mechanical Engineering 56 (2010) 1-5
[3] Jaharah, A.G., Choudhury, I.A., Masjuki, H.H and Che Hassan, C.H., Surface integrity of AISI H13 tool steel in end milling process, International Journal of Mechanical and Materials Engineering. 4 (2009) 88-92
[5] Duan, C.Z., Dou, T., Cai, Y.J., and Li, Y.Y., Finite element simulation and experiment of chip formation process during high speed machining of AISI 1045 hardened steel, International Journal of Recent Trends in Engineering. 1 (2009) 46-50
[9] Umer, U., High speed turning of H-13 tool steel using ceramics and PCBN, Journal of Material Engineering and Performance. 21 (2012) 1857-1861
Online since: January 2013
Authors: Yi Hua Fan, Ching En Chen, Wen Wei Fan, Hung Wen Liao
Development of a Nano-Scale Micro-Machining Machine
Yi-Hua Fan 1, a, Ching-En Chen 1,b,Wen-Wei Fan 1,c,and Hung-Wen Liao1,d
1 Department of Mechanical Engineering, Chung Yuan Christian University, Chungli City, Taoyuan County 320, Taiwan, ROC.
Proceedings of the euspen International Seminar locally hosted at the University of Huddersfield , UK, (2002)
Wardle; Journal of Materials Processing Technolog., 2-3, 167 (2007)
Wardle; International Journal of Machine Tools and Manufacture.4, 50 (2009)
Wang; Key Engineering Materials, Vol. 447-448 ( 2010)
Proceedings of the euspen International Seminar locally hosted at the University of Huddersfield , UK, (2002)
Wardle; Journal of Materials Processing Technolog., 2-3, 167 (2007)
Wardle; International Journal of Machine Tools and Manufacture.4, 50 (2009)
Wang; Key Engineering Materials, Vol. 447-448 ( 2010)
Online since: July 2004
Authors: Ruth Herta Goldsmith Aliaga Kiminami, A.P.A. Diniz, Ana Cristina Figueiredo de Melo Costa, Lucianna Gama, M.R. Morelli
Kiminami2
1
Federal University of Campina Grande, Department of Materials Engineering, 58970-000
Campina Grande PB, Brazil, Phone: +55 83 310 1183, Fax: +55 83 310 1178
2
Federal University of São Carlos, Department of Materials Engineering, 13565-905
São Carlos SP, Brazil, Phone: +55 16 260 8244, Fax: +55 16 261 5404
Keywords: Ni-Zn ferrite, combustion reaction, synthesis routes, characterization.
This difference was attributed to the low combustion flame temperature Journal Title and Volume Number (to be inserted by the publisher) reached in the synthesis using the Pirex-type beaker.
Ceramic powders are known to contain agglomerates.
All dry, nanoparticle sized (<100nm) ceramic powders can be expected to contain soft agglomerates [20].
Lange, Rockwell International Science Center, Am.
This difference was attributed to the low combustion flame temperature Journal Title and Volume Number (to be inserted by the publisher) reached in the synthesis using the Pirex-type beaker.
Ceramic powders are known to contain agglomerates.
All dry, nanoparticle sized (<100nm) ceramic powders can be expected to contain soft agglomerates [20].
Lange, Rockwell International Science Center, Am.
Online since: August 2017
Authors: Steven Y. Liang, Zhi Peng Pan
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2016. 230(8): p. 1372-1380
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2006. 220(11): p. 1807-1813
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2017.
Materials Science and Engineering: A, 2012. 531: p. 155-163
Procedia Engineering, 2010. 2(1): p. 917-924
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2006. 220(11): p. 1807-1813
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2017.
Materials Science and Engineering: A, 2012. 531: p. 155-163
Procedia Engineering, 2010. 2(1): p. 917-924
Online since: July 2015
Authors: K. Vadivuchezhian, N. Chockappan, K. Subrahmanya
Metal foil strain gauges are most widely used for the stress analysis in engineering structures.
The model was applied to an advanced ceramic strain gauge electrical sensor design.
Stehlin: Journal of Strain Analysis Vol. 7 (1972), p. 228
Gong: Journal of Sensors and Actuators Vol.
Sun: International Journal of Solids and Structures Vol. 45 (2008), p. 5599.
The model was applied to an advanced ceramic strain gauge electrical sensor design.
Stehlin: Journal of Strain Analysis Vol. 7 (1972), p. 228
Gong: Journal of Sensors and Actuators Vol.
Sun: International Journal of Solids and Structures Vol. 45 (2008), p. 5599.
Online since: October 2011
Authors: Ali Soleimani
Large deflection of Various Functionally Graded Beam using Shooting Method
Ali Soleimani
Department of Mechanical Engineering
Islamic Azad University, Najafabad Branch
Najafabad, Iran
e-mail: alisoleymany@gmail.com
Keywords-large deflection, shooting method, functionally graded materials, cantilever beam
Abstract— The equation of large deflection of functionally graded beam subjected to arbitrary loading condition is derived.
There have been increasingly many modern engineering applications of FGMs, such as aircraft fuselages, rocking-motor casing, packaging materials in microelectronic industry, human implants, and so on.
Mallik, “Large deflection of cantilever beams with geometric non-linearity: Analytical and numerical approaches,” International Journal of Non-Linear Mechanics, vol. 43, pp. 366 – 376, 2008
Koizumi, “FGM activities in Japan,” Composites Part B: Engineering, vol. 28, pp. 1-4, 1997
Jin, “Thermal stress intensity factors for a crack in a strip of a functionally gradient material,” International Journal of Solids and Structures, vol. 30, no. 8, pp. 1039-1056, 1993
There have been increasingly many modern engineering applications of FGMs, such as aircraft fuselages, rocking-motor casing, packaging materials in microelectronic industry, human implants, and so on.
Mallik, “Large deflection of cantilever beams with geometric non-linearity: Analytical and numerical approaches,” International Journal of Non-Linear Mechanics, vol. 43, pp. 366 – 376, 2008
Koizumi, “FGM activities in Japan,” Composites Part B: Engineering, vol. 28, pp. 1-4, 1997
Jin, “Thermal stress intensity factors for a crack in a strip of a functionally gradient material,” International Journal of Solids and Structures, vol. 30, no. 8, pp. 1039-1056, 1993
Online since: May 2014
Authors: You Jun Lu, Hong Fang Shen, Yan Min Wang, Jie Dong, Guo Li Fang
Influence of Ultrasonic Time on the Preparation and Properties of LaCoO3 Nano Particles
Jie DONG1,a,Hong-fang SHEN1,2,b, *,Yan-min WANG2,c, You-jun LU1,d,
Guo-li FANG1,e
1Materials Science and Engineering, Beifang University of Nationalities, Yinchuan, Ningxia, 750021, China
2Materials Science and Engineering, South China University of Technology, Guangzhou, Guangdong, 510641, China
ajiedongdj@gmail.com, bwenzishen@gmail.com, cwangym@scut.edu.cn, dyoujunlu518@hotmail.com, efangguoli999@163.com
*Corresponding author
Keywords: Ultrasonic assistance, perovskite structure, H2-TPR, decolorization efficiency
Abstract: Ultrasonic assisted citrate sol-gel is used to synthesis LaCoO3 (LCO) ultrafine particles.
Rapid Communications of the American Ceramic Society, 2010, 93 (11): 3587-3590 [6] Chunqiu Zhang, Hongcai He, et al.
Ceramics International, 2013(39) : 3685-3689 [7] YANG Qiu-hua, FU Xi-xian, et al.
Chemical Industry and Engineering Progress, 2010, 29 (6): 1091-1095, 1101 [16] Hongyan Liu, Yiping Guo, Bing Guo, et al.
Chinese Journal of Catalysis , 2011, 32 (6): 970-977 (In Chinese)
Rapid Communications of the American Ceramic Society, 2010, 93 (11): 3587-3590 [6] Chunqiu Zhang, Hongcai He, et al.
Ceramics International, 2013(39) : 3685-3689 [7] YANG Qiu-hua, FU Xi-xian, et al.
Chemical Industry and Engineering Progress, 2010, 29 (6): 1091-1095, 1101 [16] Hongyan Liu, Yiping Guo, Bing Guo, et al.
Chinese Journal of Catalysis , 2011, 32 (6): 970-977 (In Chinese)
Online since: April 2018
Authors: Pat Sooksaen, Kamonchanok Mekmork, Teeranuch Limprajuablarp, Sirichoke Kuharuangrong
Microwave Synthesis of Nanocrystalline Hydroxyapatite and the Application in Bio-Composite
Pat Sooksaen1,2*, Kamonchanok Mekmork1, Teeranuch Limprajuablarp1,
Sirichoke Kuharuangrong1
1Department of Materials Science and Engineering, Faculty of Engineering and Industrial Technology, Silpakorn University, Nakhon Pathom 73000 Thailand
2Center of Excellence for Petroleum, Petrochemicals and Advanced Materials, Chulalongkorn University, Bangkok, 10330, Thailand
*Corresponding author: sooksaen_p@su.ac.th
Keywords: Hydroxyapatite, microwave, morphology, nanocrystals, composite
Abstract.
Wen, Bioactive ceramics: Structure, Synthesis, and Mechanical properties.
Journal of Alloys and Compounds, 2009. 469: p. 391-394
Ceramics International, 2012. 38: p. 457-462
Materials Science and Engineering, 2010.
Wen, Bioactive ceramics: Structure, Synthesis, and Mechanical properties.
Journal of Alloys and Compounds, 2009. 469: p. 391-394
Ceramics International, 2012. 38: p. 457-462
Materials Science and Engineering, 2010.
Online since: July 2014
Authors: K. Hemalatha, V.S.K. Venkatachalapathy, N. Alagumurthi
Multi-Objective Optimization in Wire-Cut Electric Discharge Machining of Al 6063/Al2O3 Metal Matrix Composite through Response Surface Methodology
K.Hemalatha1*, V.S.K.Venkatachalapathy2 N.Alagumurthi3
1Assistant Professor, Department of Mechanical Engineering, Sri Manakula Vinayagar Engineering College,
Puducherry, India
2Professor, Department of Mechanical Engineering, Sri Manakula Vinayagar Engineering College, Puducherry, India
3Professor, Department of Mechanical Engineering, Pondicherry Engineering College, Puducherry, India
hemavengat_82@yahoo.in, vskvenatachalapathy@yahoo.com, alagumurthi@pec.edu
Keywords: Aluminum-Alumina composite, Stir casting process, Wire electrical discharge machining, pulse on-time, pulse off-time, servo speed, weight percentage of alumina, response surface methodology, kerf, surface roughness
ABSTRACT
This paper proposed a response surface methodology technique to optimize the multi-response of wire-cut electric discharge machining
The microstructure of a material (which can be broadly classified into metallic, polymeric, ceramic and composite) can strongly influence physical properties such as strength, toughness, ductility, hardness, corrosion resistance, high/low temperature behavior, wear resistance, and so on, which in turn govern the application of these materials in industrial practice.
With respect to increase in pulse on-time, pulse off-time and weight percentage of alumina surface roughness decreased with increase in surface integrity(Surface finish and texture) REFERENCES [1] B.Bobic, S.Mitrovic, M.Babic, I.Bobic“Corrosion of Metal-Matrix Composites with Aluminium Alloy Substrate”, Tribology in industry, Volume 32, No. 1, (2010) [2]Vijaya Kumar Bhanot, Dharminder Singh, “Research work on Composite Epoxy Matrix & Ep Polyester reinforced material”, International Journal of Engineering Research & Technology, Vol.2, No.1,(2013) [3]T.
Pai, “Review Rein-forcement Coatings and Interfaces in Aluminium Metal Matrix Composites,” Journal Material Science, Vol. 33, No. 14, pp. 3491-3503,( 1998) [4]Mohd Dan.ish, Dr.M.Arif Siddique, “Microstructural & Morphological Evolutions of Al-Al2O3 Powder Composite during Ball Milling”, International Journal of Engineering Research & Technology, Vol.1, No.10,(2012) [5]M.
Srivatsan, “Influence of Reinforcement on Microstructure and Mechanical Response of a Magnesium Alloy,” Cur-rent Science, Vol. 87, No. 9, (2009) [6] K.K.Alaneme, M.O.Bodunrin, “Corrosion Behaviour of Alumina reinforced Aluminium (6063) metal matrix composite”, Journal of Minerals & Materials Characterisation &Engineering, Vol.10, no.12, pp 1153-1165(2011) [7] Kanlayasiri.K, Boonmung, S.(2007), “An investigation on effects of wire-EDM machining parameters on surface roughness of newly developedDC53 die steel”, Journal of Material Processing Technology, Vol.10, 26-29,(2007) [8]Gopalakannan.S, Senthilvelan.T, Renganathan.S, “Stasticical Optimisation of EDM parameter on machining of aluminium hybrid Metal Matrix composite by applying Taguchi based Grey analysis”, Journal of Scientific & Industrial Research, Vol.72, pp 358-365,( 2013) [9]Jayaram V,and Biswas S.H, “Wear ofAl2O3-SiC, Melt oxidised ceramic Composite, Wear,1999,225-229 [10]Lloyd D.J., “The solidification Microstructure of
The microstructure of a material (which can be broadly classified into metallic, polymeric, ceramic and composite) can strongly influence physical properties such as strength, toughness, ductility, hardness, corrosion resistance, high/low temperature behavior, wear resistance, and so on, which in turn govern the application of these materials in industrial practice.
With respect to increase in pulse on-time, pulse off-time and weight percentage of alumina surface roughness decreased with increase in surface integrity(Surface finish and texture) REFERENCES [1] B.Bobic, S.Mitrovic, M.Babic, I.Bobic“Corrosion of Metal-Matrix Composites with Aluminium Alloy Substrate”, Tribology in industry, Volume 32, No. 1, (2010) [2]Vijaya Kumar Bhanot, Dharminder Singh, “Research work on Composite Epoxy Matrix & Ep Polyester reinforced material”, International Journal of Engineering Research & Technology, Vol.2, No.1,(2013) [3]T.
Pai, “Review Rein-forcement Coatings and Interfaces in Aluminium Metal Matrix Composites,” Journal Material Science, Vol. 33, No. 14, pp. 3491-3503,( 1998) [4]Mohd Dan.ish, Dr.M.Arif Siddique, “Microstructural & Morphological Evolutions of Al-Al2O3 Powder Composite during Ball Milling”, International Journal of Engineering Research & Technology, Vol.1, No.10,(2012) [5]M.
Srivatsan, “Influence of Reinforcement on Microstructure and Mechanical Response of a Magnesium Alloy,” Cur-rent Science, Vol. 87, No. 9, (2009) [6] K.K.Alaneme, M.O.Bodunrin, “Corrosion Behaviour of Alumina reinforced Aluminium (6063) metal matrix composite”, Journal of Minerals & Materials Characterisation &Engineering, Vol.10, no.12, pp 1153-1165(2011) [7] Kanlayasiri.K, Boonmung, S.(2007), “An investigation on effects of wire-EDM machining parameters on surface roughness of newly developedDC53 die steel”, Journal of Material Processing Technology, Vol.10, 26-29,(2007) [8]Gopalakannan.S, Senthilvelan.T, Renganathan.S, “Stasticical Optimisation of EDM parameter on machining of aluminium hybrid Metal Matrix composite by applying Taguchi based Grey analysis”, Journal of Scientific & Industrial Research, Vol.72, pp 358-365,( 2013) [9]Jayaram V,and Biswas S.H, “Wear ofAl2O3-SiC, Melt oxidised ceramic Composite, Wear,1999,225-229 [10]Lloyd D.J., “The solidification Microstructure of