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Online since: June 2019
Authors: Yi Qiang He, Chang Xu Ren, Hu Lin Xu
Journal of Materials Engineering and Performance, 2011, 20(2):238-243
Journal of Materials Engineering and Performance, 2014, 23(4): 1440-1450
Journal of Mechanical Engineering, 2012, 48(10): 40-44
Materials Science and Engineering, 2007, A460-461: 180-185
International Journal of Powder Metallurgy, 1971, 7(1): 15-25.
Journal of Materials Engineering and Performance, 2014, 23(4): 1440-1450
Journal of Mechanical Engineering, 2012, 48(10): 40-44
Materials Science and Engineering, 2007, A460-461: 180-185
International Journal of Powder Metallurgy, 1971, 7(1): 15-25.
Online since: November 2024
Authors: Ipsita P. Swain, Tejal Nandankar, Smita Sowmya Bishoyi
Bishoyi3,c
1Assistant Professor, School of Engineering, Ajeenkya D Y Patil University, Pune, Maharashtra, India
2School of Engineering, Ajeenkya D Y Patil University, Pune, Maharashtra, India
3Executive at Innovative hub, TACC limited, Madhya Pradesh, India
a*ipsita.swain@adypu.edu.in, btejal.nandankar@adypu.edu.in, csmita.bishoyi@Injbhilwara.com
Keywords: core-shell structure, hierarchical porosity, phenol-red, dye adsorption, nitrogen adsorption study.
Chemical engineering journal, 2007. 132(1-3): p. 299-309
Polymer international, 2014. 63(12): p. 2052-2060
Journal of Nanostructure in Chemistry, 2016. 6: p. 261-274
International journal of molecular sciences, 2012. 13(10): p. 12336-12348
Chemical engineering journal, 2007. 132(1-3): p. 299-309
Polymer international, 2014. 63(12): p. 2052-2060
Journal of Nanostructure in Chemistry, 2016. 6: p. 261-274
International journal of molecular sciences, 2012. 13(10): p. 12336-12348
Online since: November 2018
Authors: Dong Yan Shi, Feng Chun Jiang, Wasim M.K. Helal
Acknowledgments
The paper was funded by the International Exchange Program of Harbin Engineering University for Innovation-oriented Talents Cultivation.
Journal of Biomimetics, Biomaterials and Biomedical Engineering. 2018, 35: 50-66
Key Engineering Materials. 2015, 627: 57-60
Journal of Biomimetics, Biomaterials and Biomedical Engineering. 2015, 24: 56-69
Journal of the Chinese Institute of Civil and Hydraulic Engineering. 2001, 13:1-9
Journal of Biomimetics, Biomaterials and Biomedical Engineering. 2018, 35: 50-66
Key Engineering Materials. 2015, 627: 57-60
Journal of Biomimetics, Biomaterials and Biomedical Engineering. 2015, 24: 56-69
Journal of the Chinese Institute of Civil and Hydraulic Engineering. 2001, 13:1-9
Online since: February 2014
Authors: Sufizar Ahmad, Fazimah Mat Noor, Noor Idayu Mad Rosip, Khairur Rijal Jamaluddin, Rosdi Ibrahim
Kieback, Structural and material design of open-cell powder metallurgical foams, Advanced Engineering Materials, Vol.13.
Boccaccini, Tissue engineering scaffolds from bioactive glass and composite materials, in: N.
Ashammakhi, R Reis, and F Chiellini (Eds), Tissue Engineering, Vol. 4. 2008
[7] Anushini Muthutantri, Jie Huang and Mohan Edirisinghe, Novel preparation of graded porous structures for medical engineering, Journal of the royal society interface 5, (2008)1459-1467
Murtadhahadi, Producing of titanium foam using titanium alloy (Al3Ti) by slurry method, In proceedings of International Conference in Engineering and Technology (BICET), Institut Teknologi Brunei, (2008)
Boccaccini, Tissue engineering scaffolds from bioactive glass and composite materials, in: N.
Ashammakhi, R Reis, and F Chiellini (Eds), Tissue Engineering, Vol. 4. 2008
[7] Anushini Muthutantri, Jie Huang and Mohan Edirisinghe, Novel preparation of graded porous structures for medical engineering, Journal of the royal society interface 5, (2008)1459-1467
Murtadhahadi, Producing of titanium foam using titanium alloy (Al3Ti) by slurry method, In proceedings of International Conference in Engineering and Technology (BICET), Institut Teknologi Brunei, (2008)
Online since: September 2024
Authors: Ruth da Silva Brum, César Oropesa Avellaneda, Joseane da Silva Porto, Michele Soares Netto
A few years ago, choosing materials for thermal comfort and subsequently lower energy usage in thermal conditioning systems was of no importance to engineers and architects [8].
Six-hole ceramic masonry makes up the walls, which have EPS thermal insulation between the plastered external and internal faces.
Ceramic tiles and a concrete slab make up the floor, while the frames are constructed from 6 mm double glass with a 14 mm air layer between them.
Each thermal zone's energy balance is computed by the program using formulas that are provided in the Engineering Reference manual of the software [15].
Ghani, Numerical evaluation of the thermal performance of a near-surface earth-to-air heat exchanger with short-grass ground cover: A parametric study, International Journal of Refrigeration, 125 (2020) 25-33
Six-hole ceramic masonry makes up the walls, which have EPS thermal insulation between the plastered external and internal faces.
Ceramic tiles and a concrete slab make up the floor, while the frames are constructed from 6 mm double glass with a 14 mm air layer between them.
Each thermal zone's energy balance is computed by the program using formulas that are provided in the Engineering Reference manual of the software [15].
Ghani, Numerical evaluation of the thermal performance of a near-surface earth-to-air heat exchanger with short-grass ground cover: A parametric study, International Journal of Refrigeration, 125 (2020) 25-33
Online since: May 2013
Authors: Ajay Kumar, Pankaj Kalra, Rajeev Garg
Kiatkittipong, Review of solid oxide fuel cell technology, Engineering Journal, 3 Issue1 (Jan. 2009)
Series: Materials Science and Engineering 18 (2011) 132008
Series: Materials Science and Engineering 18 (2011) 132008
Part one: from a micro-detailed to macro-blackbox model, International Journal of Hydrogen Energy, 30 (2005) 181-187
Mechanical & Aerospace Engineering, West Virginia University (2006).
Series: Materials Science and Engineering 18 (2011) 132008
Series: Materials Science and Engineering 18 (2011) 132008
Part one: from a micro-detailed to macro-blackbox model, International Journal of Hydrogen Energy, 30 (2005) 181-187
Mechanical & Aerospace Engineering, West Virginia University (2006).
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
Online since: September 2005
Previous five Conferences were also held in Herceg Novi, when Yugoslav Materials
Research Society was formed as non-government, non-profit, scientific association, whose main
goals and tasks were the encourage creativity in materials science and engineering to achieve
harmonic coordination of this field in our country and to connect it with analogous activities
worldwide in order to include us into the global international programs.
Materials science and engineering incorporate acquiring of the knowledge on materials synthesis and processing, their composition and structure, properties and behaviour and their functions and potentialities and its application to the devices, machines, units and other final products.
Impact factor of this journal was in last few years varying between 0.5 and 1.0 and it is in the middle of the list of journals in this field.
The goal of the Conference is to critically examine the most actual problems in materials science and engineering and to present in the best possible way to domestic and international public the state and our possibilities in this field .
For the period of 9 years from the first YU COMA T '95 conference, we transformed it from purely domestic to almost international conference.
Materials science and engineering incorporate acquiring of the knowledge on materials synthesis and processing, their composition and structure, properties and behaviour and their functions and potentialities and its application to the devices, machines, units and other final products.
Impact factor of this journal was in last few years varying between 0.5 and 1.0 and it is in the middle of the list of journals in this field.
The goal of the Conference is to critically examine the most actual problems in materials science and engineering and to present in the best possible way to domestic and international public the state and our possibilities in this field .
For the period of 9 years from the first YU COMA T '95 conference, we transformed it from purely domestic to almost international conference.
Online since: May 2016
Authors: W. Rahman, Uda Hashim, Abdul Rahman Nurul Huda, Hon Cheun Lee, Suhaimi Mat Kahar, Kai Loong Foo, Puah Ying Phing Adelyn, Wei Wen Liu, Chang Chuan Lee, Bee Ying Lim, Mohd Khairuddin Md Arshad, Chun Hong Voon, A. Rahim Ruslinda
Cheun Lee1,l, W.Rahman2,m
1Institude of Nanoelectronic Engineering, Universiti Malaysia Perlis, Lot 106, 108, 111, Tingkat 1, Block A, Taman Pertiwi Indah, Jalan Kangar-Alor Setar, Seriab, 01000, Kangar,Perlis, Malaysia
2School of Manufacturing Engineering, Universiti Malaysia Perlis (Unimap), Kampus Alam Pauh Putra, 02600, Arau, Perlis, Malaysia
3School of Materials Engineering, Universiti Malaysia Perlis (Unimap), Jejawi, Arau, 02600 Perlis, Malaysia.
Zhuc: Journal of Alloys and Compounds, Vol. 509 (2011), p. 6844–6847
[16] Bin Lin, Yong-Cai Song, Chang-Rui Zhang and Jin-ShanYu: Ceramics International Vol. 40 (2014), p. 12613–12616 [17] S.
Eroglu,: Journal of Ref.
Fei: Journal of Materials Science, Vol. 32 (1997), p. 2469-2472
Zhuc: Journal of Alloys and Compounds, Vol. 509 (2011), p. 6844–6847
[16] Bin Lin, Yong-Cai Song, Chang-Rui Zhang and Jin-ShanYu: Ceramics International Vol. 40 (2014), p. 12613–12616 [17] S.
Eroglu,: Journal of Ref.
Fei: Journal of Materials Science, Vol. 32 (1997), p. 2469-2472
Online since: May 2021
Authors: Wei Kong, Cin Kong, Ing Kong, Siti Sarah Syahirah Azizan, Akesh Babu Kakarla
On the other hand, carbon nanotube (CNT) is known for its application as biosensor and tissue engineering scaffolds.
Meanwhile, carbon nanotube (CNT) has been exploited for the applications in drug delivery, gene therapy, biosensors, tissue engineering and cancer treatment [2,3].
The porous property of CNT makes it able to effectively reinforce ceramic matrix composites for tissue engineering scaffold [5].
Puszynski, Effect of carbon nanotube addition on morphology of SHS synthesized materials, International Journal of Self-Propagating High-Temperature Synthesis 16(4) (2007) 189-198
Pu, Nickel nanoparticles exposure and reproductive toxicity in healthy adult rats, International Journal of Molecular Sciences 15(11) (2014) 21253-21269
Meanwhile, carbon nanotube (CNT) has been exploited for the applications in drug delivery, gene therapy, biosensors, tissue engineering and cancer treatment [2,3].
The porous property of CNT makes it able to effectively reinforce ceramic matrix composites for tissue engineering scaffold [5].
Puszynski, Effect of carbon nanotube addition on morphology of SHS synthesized materials, International Journal of Self-Propagating High-Temperature Synthesis 16(4) (2007) 189-198
Pu, Nickel nanoparticles exposure and reproductive toxicity in healthy adult rats, International Journal of Molecular Sciences 15(11) (2014) 21253-21269