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Online since: January 2026
Authors: Souta Matsusaka, Hirofumi Hidai, Miyuka Kono, Hirofumi Kawamura, Sho Itoh
Gonella, Silver doping of glasses, Ceramics International 41(5) (2015) 6693-6701
Morita, Formation of an embedded electrical circuit in glass substrate by solid-state ion exchange with application of a forward/reverse voltage, Precision Engineering 55 (2019) 240-247
Morita, Fine hole drilling of alkali-containing silicate glass substrate using preferential penetration of etchants around silver precipitates, Precision Engineering 76 (2022) 141-148
Cooper, Analysis of Field-Assisted Binary Ion Exchange, Journal of the American Ceramic Society 62(7-8) (1979) 390-395
[7] Kosuke Onishi, Hifofumi Kawamura, Souta Matsusaka, Hirofumi Hidai, Akira Chiba, Noboru Morita, Bilayer Silver Precipitation in Glass Formed by Alternate Doping of Silver and Sodium Ions and Additive Voltage Application, Journal of the Japan Society for Precision Engineering 87(7) (2021) 640-646.
Morita, Formation of an embedded electrical circuit in glass substrate by solid-state ion exchange with application of a forward/reverse voltage, Precision Engineering 55 (2019) 240-247
Morita, Fine hole drilling of alkali-containing silicate glass substrate using preferential penetration of etchants around silver precipitates, Precision Engineering 76 (2022) 141-148
Cooper, Analysis of Field-Assisted Binary Ion Exchange, Journal of the American Ceramic Society 62(7-8) (1979) 390-395
[7] Kosuke Onishi, Hifofumi Kawamura, Souta Matsusaka, Hirofumi Hidai, Akira Chiba, Noboru Morita, Bilayer Silver Precipitation in Glass Formed by Alternate Doping of Silver and Sodium Ions and Additive Voltage Application, Journal of the Japan Society for Precision Engineering 87(7) (2021) 640-646.
Online since: November 2011
Authors: Qi Zhou, En Jun Song, Hong Liang Zhao, Zhong Cai Shao
Influence of Parameters on Alumina Particles Size and Morphology
Qi Zhou1,a, HongLiang Zhao 2, ZhongCai Shao 1, EnJun Song 1
1School of Environmental and Chemical Engineering, Shenyang Ligong University, No.6 Nanping Middle Road, Hunnan New District, Shenyang, Liaoning, 110159, P.R.
Introduction In recent years, increasing attention has been focused on the development of nano-sized alumina powders for advanced engineering materials [1].
Conventional processes for synthesizing ceramic nano-powder involve mechanical synthesis, vapor phase reaction, precipitation, and combustion and sol–gel methods.
Ceramics International,2001,27:265-268 [3] Burkhard C, Schmidt A, Fabrice G, Mark E S.
Journal of Molecular Catalysis A: Chemical, 1999, 138:59–66 [5] Wang X H, Lu G Z, Guo Y.
Introduction In recent years, increasing attention has been focused on the development of nano-sized alumina powders for advanced engineering materials [1].
Conventional processes for synthesizing ceramic nano-powder involve mechanical synthesis, vapor phase reaction, precipitation, and combustion and sol–gel methods.
Ceramics International,2001,27:265-268 [3] Burkhard C, Schmidt A, Fabrice G, Mark E S.
Journal of Molecular Catalysis A: Chemical, 1999, 138:59–66 [5] Wang X H, Lu G Z, Guo Y.
Online since: June 2015
Authors: Sergey A. Zelepugin, Elena V. Yuryeva
International Journal of Modern Physics B 22(9,10,11) (2008) 1062-1067
Modeling and experiment, International Journal of Modern Physics B 22(9,10,11) (2008), 1183-1188
International Journal of Modern Physics B 22(9,10,11) (2008) 1409-1416 [8] S.A.
Russian Journal of Physical Chemistry B 2(2) (2008) 246-250
International Journal of Impact Engineering 33 (2006) 80-90
Modeling and experiment, International Journal of Modern Physics B 22(9,10,11) (2008), 1183-1188
International Journal of Modern Physics B 22(9,10,11) (2008) 1409-1416 [8] S.A.
Russian Journal of Physical Chemistry B 2(2) (2008) 246-250
International Journal of Impact Engineering 33 (2006) 80-90
Online since: June 2013
Authors: Jian Guo Yang, Bei Zhi Li, Zhou Ping Wu
Suslov, Sergey Savinov, Diagnostics of spindle unit, model design and analysis, The International Journal of Advanced Manufacturing Technology.
DOI10.1007 (2012) s00170-011-3848-7 [2] Hongrui Cao, BingLi,Zhengjia He, Chatter stability of milling with speed-varying dynamics of spindles, International Journal of Machine Tools & Manufacture. 52 (2012) 50–58 [3] E.
Booker, A finite element model for distributed parameter turbo rotor systems, ASME Journal of Engineering for Industry.
NOVEMBER (2004) 126-134 [6] ShuyunJiang, ShufeiZheng, 2010,A modeling approach for analysis and improvement of spindle-drawbar-bearing assembly dynamics, International Journal of Machine Tools & Manufacture, 50 /131–142 [7] Yuzhong Cao, Y.
Altintas, Modeling of spindle-bearing and machine tool systems for virtual simulation of milling operations, International Journal of Machine Tools & Manufacture. 47 (2007) 1342–1350 [8] F.
DOI10.1007 (2012) s00170-011-3848-7 [2] Hongrui Cao, BingLi,Zhengjia He, Chatter stability of milling with speed-varying dynamics of spindles, International Journal of Machine Tools & Manufacture. 52 (2012) 50–58 [3] E.
Booker, A finite element model for distributed parameter turbo rotor systems, ASME Journal of Engineering for Industry.
NOVEMBER (2004) 126-134 [6] ShuyunJiang, ShufeiZheng, 2010,A modeling approach for analysis and improvement of spindle-drawbar-bearing assembly dynamics, International Journal of Machine Tools & Manufacture, 50 /131–142 [7] Yuzhong Cao, Y.
Altintas, Modeling of spindle-bearing and machine tool systems for virtual simulation of milling operations, International Journal of Machine Tools & Manufacture. 47 (2007) 1342–1350 [8] F.
Online since: September 2013
Authors: Bambang Soegijono, Dwita Suastiyanti, M. Hikam
[2] L.Junliang, One step synthesis of barium hexaferrite nanopowders via microwave assisted sol-gel auto combustion, Elsevier Science Direct Ceramics International 30 ( 2010) 993-997
[4] K.S.Martirosyan, E.Galstyan,S.M.Hossain,Y.J.Wang, D.Litvinov, Barium hexaferrite nanoparticles: synthesis and magnetic properties, Material Science and Engineering B 176 (2011) 8 – 13
[5] H.Sozeri, Simple recipe to synthesize single-domain BaFe12O19 with high saturation magnetization, Journal of Magnetism and Magnetic Materials 321 (2009) 2717-2722
[6] H.Z.Wang., He.Q, Wen.G.H, Wang.F, Ding.Z.H, Yao.B, Study of formation mechanism of barium hexaferrite by sintering curve, Journal of Alloys and Compounds 504 (2010) 70 – 75
[8] U.Topal, A simple synthesis route for high quality BaFe12O19 magnets, Material Science and Engineering B 176 (2011) 1531 – 1536.
[4] K.S.Martirosyan, E.Galstyan,S.M.Hossain,Y.J.Wang, D.Litvinov, Barium hexaferrite nanoparticles: synthesis and magnetic properties, Material Science and Engineering B 176 (2011) 8 – 13
[5] H.Sozeri, Simple recipe to synthesize single-domain BaFe12O19 with high saturation magnetization, Journal of Magnetism and Magnetic Materials 321 (2009) 2717-2722
[6] H.Z.Wang., He.Q, Wen.G.H, Wang.F, Ding.Z.H, Yao.B, Study of formation mechanism of barium hexaferrite by sintering curve, Journal of Alloys and Compounds 504 (2010) 70 – 75
[8] U.Topal, A simple synthesis route for high quality BaFe12O19 magnets, Material Science and Engineering B 176 (2011) 1531 – 1536.
Online since: July 2020
Authors: Edi Suharyadi, Takeshi Kato, Satoshi Iwata, Fitria Ayu Sulistiani
Kumar, Combined structural, electrical, magnetic and optical characterization of bismuth ferrite nanoparticles synthesized by auto-combustion route, Journal of Asian Ceramic Societies 2 (2014) 416–421
Tajally, Reverse chemical coprecipitation an effective method for synthesis of BiFeO3 nanoparticles, Advanced Ceramics Progress 3 (2017) 31-36
Giridharan, Synthesis of nanosized BiFeO3 powders by coprecipitation method, Journal of Experimental Nanoscience 8 (2013) 341-346
McCoy, Temperature effects on the transition from nucleation and growth to Oswald Ripening, Chemical Engineering Science, 59 (2004) 2753-2765
Wang, Study on visible light response and magnetism of biamuth ferrites synthesized by a low temperature hydrothermal method, Ceramics International 39 (2013) 4651-4656
Tajally, Reverse chemical coprecipitation an effective method for synthesis of BiFeO3 nanoparticles, Advanced Ceramics Progress 3 (2017) 31-36
Giridharan, Synthesis of nanosized BiFeO3 powders by coprecipitation method, Journal of Experimental Nanoscience 8 (2013) 341-346
McCoy, Temperature effects on the transition from nucleation and growth to Oswald Ripening, Chemical Engineering Science, 59 (2004) 2753-2765
Wang, Study on visible light response and magnetism of biamuth ferrites synthesized by a low temperature hydrothermal method, Ceramics International 39 (2013) 4651-4656
Online since: October 2025
Authors: Mxolisi Brendon Shongwe, Lehlogonolo Rudolf Kanyane, Nicholas Malatji
Senthil, Journal of the Brazilian Society of Mechanical Sciences and Engineering, 45, 164 (2023)
Xue, Ceramics International, 46, 14161-14172 (2020)
Pityana, International Journal of Minerals, Metallurgy and Materials, 27, 1332-1340 (2020)
Zhang, Materials Science and Engineering: A, 532, 480-486 (2012)
Biswas, International Journal of Metalcasting, 17, 860-873 (2023)
Xue, Ceramics International, 46, 14161-14172 (2020)
Pityana, International Journal of Minerals, Metallurgy and Materials, 27, 1332-1340 (2020)
Zhang, Materials Science and Engineering: A, 532, 480-486 (2012)
Biswas, International Journal of Metalcasting, 17, 860-873 (2023)
Online since: November 2010
Authors: Jozef Jurko
Stainless steel X4Cr17Ni8TiN is attractive engineering material because of its outstanding properties such as corrosion resistance, weldability, high strength, and good form-ability.
Journal of Manufacturing Science and Engineering.
International Journal Machining and Machinability of Materials, Vol.5, No.4, (2009), pp.383-400 [7] J.
Book: Experimental Analysis of Nano and Engineering Materials and Structures. (2007), p.77-78 [8] J.
Journal of Engineering for Industry.
Journal of Manufacturing Science and Engineering.
International Journal Machining and Machinability of Materials, Vol.5, No.4, (2009), pp.383-400 [7] J.
Book: Experimental Analysis of Nano and Engineering Materials and Structures. (2007), p.77-78 [8] J.
Journal of Engineering for Industry.
Online since: December 2022
Authors: Adwaa Mohammed Abdulmajeed, Ahmed Fadhil Hamzah
Ma, Composites Part B: Engineering 201, 108376 (2020)
[2] I.
Al-Kamal, 2nd International Conference on Materials Engineering &Amp; Science (IConMEAS 2019) (2020) [3] R.
Saleh, Composites Part B: Engineering 225, 109278 (2021) [5] I.
Tayebi, Ceramics International 44, 1220 (2018) [10] T.
Bhatt, Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 224, 1103 (2010) [16] A.
Al-Kamal, 2nd International Conference on Materials Engineering &Amp; Science (IConMEAS 2019) (2020) [3] R.
Saleh, Composites Part B: Engineering 225, 109278 (2021) [5] I.
Tayebi, Ceramics International 44, 1220 (2018) [10] T.
Bhatt, Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 224, 1103 (2010) [16] A.
Online since: December 2014
Authors: Hussin Kamarudin, Zaliman Sauli, Muammar Mohamad Isa, Vithyacharan Retnasamy, Gan Meng Kuan
Thermal Simulation Analysis of High Power LED with Varied Heat Sink Fin Design
Vithyacharan Retnasamy1,a ,Zaliman Sauli1 ,Hussin Kamarudin2
Muammar Mohamad Isa1and Gan Meng Kuan1
1School of Microelectronic Engineering, Universiti Malaysia Perlis (UniMAP),
Kampus Alam, Pauh Putra, Perlis, Malaysia.
2School of Materials Engineering, Kompleks Pusat Pengajian Jejawi 2, Universiti Malaysia Perlis, Jejawi, Perlis,
aCorresponding email:vc.sundres@gmail.com
Keywords: high power LED; Heat sink;Pyramid pin ;Cylindrical Pin; junction temperature; Ansys
Abstract.
Fan, "Thermal performance analysis of LED with multichips," Journal of Wuhan University of Technology-Mater.
Moo Whan, "Thermal and Mechanical Analysis of High-Power LEDs with Ceramic Packages," Device and Materials Reliability, IEEE Transactions on, vol. 8, pp. 297-303, 2008
Liu, "On Thermal Structure Optimization of a Power LED Lighting," Procedia Engineering, vol. 29, pp. 2765-2769, 2012
Graham, "Thermal effects in packaging high power light emitting diode arrays," Applied Thermal Engineering, vol. 29, pp. 364-371, 2009
Fan, "Thermal performance analysis of LED with multichips," Journal of Wuhan University of Technology-Mater.
Moo Whan, "Thermal and Mechanical Analysis of High-Power LEDs with Ceramic Packages," Device and Materials Reliability, IEEE Transactions on, vol. 8, pp. 297-303, 2008
Liu, "On Thermal Structure Optimization of a Power LED Lighting," Procedia Engineering, vol. 29, pp. 2765-2769, 2012
Graham, "Thermal effects in packaging high power light emitting diode arrays," Applied Thermal Engineering, vol. 29, pp. 364-371, 2009