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Online since: August 2013
Authors: A.N. M. Idriss, M.A. Maleque, Kamilu Adeyemi Bello, S. Mirdha
Mirdhab aAdvanced Materials and Surface Engineering Research Unit, Department of Manufacturing and Materials Engineering Research Unit International Islamic University of Malaysia, P.O.
Box10, 50728, Kuala Lumpur Malaysia bDepartment of Mechanical Engineering, University of Strathclyde, Glasgow G1 1XJ, UK.
Microstructure and mechanical characteristics of iron-based coating produced by plasma transferred arc cladding process, Material Science Engineering A, volume 492, (2008), pp. 407-412
Wu, Bio-inspired surface engineering and tribology of MoS2 over coated cBN-TiN composite coating, Wear, vol. 261, (2006), pp. 592-599
Journal of Nature, Issue 354, No 6348, (1991), pp. 56-57 [8] W.
Online since: November 2011
Authors: Jing Long Bu, Rong Lin Wang, Xian Tao Chen, Jun Xing Chen
Preparation of AlN-ZrO2(Ca) composites by hot pressed sintering Xiantao Chen1,a, Jinglong Bu1,b, *, Ronglin Wang1,c and Chen Junxing2,d 1Hebei Province Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei United University, Tangshan 063009, Hebei, China 2LIRR Engineering Technolegy Co.
Wang: Ceramic Vol. 11 (2009), p.1 [3] J.
Nyakiti, et.al: Materials Characterization Vol. 58 (2007), p. 672–679 [4] Shoichi Kume, Masaki Yasuoka, Naoki Omura, Koji Watari: Ceramics International Vol. 33 (2007), p. 269–272 [5] G.
Savrun: Journal of the European Ceramic Society Vol. 18 (1998), p. 23-29 [7] R.L.
Online since: March 2018
Authors: Mohammad Nasikin, Agus Ismail, Insan Akbar Alamsyah, Muhammad Kholil, Bambang Heru Susanto
The Effect of Milling Time on the Size of Silica Particles from Silica Sand Agus Ismail1,a, Insan Akbar Alamsyah2,b, Muhammad Kholil3,c, Bambang Heru Susanto1,d, Mohammad Nasikin1,e 1Department of Chemical Engineering, University of Indonesia, Kampus UI Baru, Depok, Indonesia 2Department of Metallurgy Engineering, Sumbawa University of Technology, Batu Alang, Indonesia 3Department of Industrial Engineering, Mercubuana University, Meruya Selatan, Jakarta, Indonesia aagus.ismail@ui.ac.id, balam@uts.ac.id, cmuhammad_kholil@mercubuana.ac.id, dbambanghs@che.ui.ac.id, emnasikin@che.ui.ac.id Keywords: Mechanical Milling; Silica Sand; Sol Gel; Sodium Silicate; Silica Nanoparticles Abstract.
Introduction Silica nanoparticles have great attention due to wide applications in industries such as construction reinforcement, drug delivery systems, polymer composites, catalysts, filler in rubber and ceramics and superhydrophobic material [1-4].
Jung: Ceramics Int., Vol. 42, (2016), pp. 4875-4885
Journal of Asian Ceramic Societies, 4(2016),pp.91–96
Rochani, Proceeding of International Conference on Chemical and Material Engineering (2012), pp.
Online since: April 2015
Authors: Aleksandr A. Dyakonov, Leonid V. Shipulin
Malkin, High speed grinding of silicon nitride with electroplated diamond wheels, part 2: wheel topography and grinding mechanisms, ASME Journal of Manufacturing Science and Engineering 122 (2000) 42-50
Venkateswara Rao, A probabilistic approach to predict surface roughness in ceramic grinding, International Journal of Machine Tools and Manufacture 45 (6) 609-616 [4] R.L.
Sutherland, A three-dimensional model for the surface texture in surface grinding, Part 2: Grinding wheel surface texture model, Journal of Manufacturing Science and Engineering, Transactions of the ASME 123(4) 582-590
D`yakonov, Improvement of grinding speeds by assessing the machinability of materials, Russian Engineering Research 32 (7-8) 604-607
Shipulin, Complex Model of Surface Grinding, Lecture Notes in Engineering and Computer Science: Proceedings of The International MultiConference of Engineers and Computer Scientists, (2012) 1325–1327.
Online since: October 2017
Authors: Ashish Goyal, Anand Pandey, Pooja Sharma
International Journal of Machine Tools and Manufactur (2008),48:746-760
Pandey,S Singh: Current research trends in variant of Electrical discharge machining: A review, International journal of Engineering science &Technology, vol. 2(6), (2010) 2172-2191
Basavarajappa: Parametric optimization of MRR and surface roughness in wire electro discharge machining (WEDM) of D2 steel using Taguchi-based utility approach, International Journal of Mechanical and Materials Engineering (2016), 11:7, DOI 10.1186/s40712-016-0060-4
[7] G Selvakumar, Soumya Sarkar, Souren Mitra: Experimental investigation on die corner accuracy for wire electrical discharge machining of Monel 400 alloy of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, (2012),pp 226: 1694
[10] Bijaya Bijeta Nayak, Siba Sankar Mahapatra: Optimization of WEDM process parameters using deep cryo-treated Inconel 718 as work material, Engineering Science and Technology, an International Journal, 19 (2016), pp 161–170
Online since: April 2014
Authors: Su Ping Cui, Ji Guang Zhang, Ying Liang Tian, Shi Bing Sun, Zhong Wei Wu, Wen Cai Liu
Generation review on the production line development of Foam glass at home and abroad Suping Cui 1, a, Jiguang Zhang1,b , Yingliang Tian1,c , Shibing Sun1,d, Zhongwei Wu1,e and Wencai Liu1,f 1Materials Science and Engineering, Beijing University of Technology,China Cboli106@126.com, fwudiwencai@163.com Keywords: foam glass; production line; generations; production process Abstract.
According to domestic and international history of foam glass, the foam glass development situation of the United States, France, Japan, the former Soviet Union and China was specifically introduced.
Five years later, the Shenyang Ceramics Factory cooperating with the Dalian Institute of Light Industry developed the sound-absorbing foam glass products.
Since 1977 China had begun commercial production in small-scale which was applied to Vinyl ultra-low temperature equipment insulation engineering.
Glass & Enamel.2002,30(1):33-35 [29]Yingliang Tian, Yulin Zou and Zhao Fei: The research of high performance foam glass[J], Journal of Beijing University of Technology. 2001,27(2):247-250 “In Chinese”
Online since: April 2014
Authors: M. Aichouni, Yusoff Way, Hadi Puwanto, Farizahani Farizahani
Investigation into the Differences Thermal Properties of SLS Polymer Powder Materials using Differential Scanning Calorimetry (DSC) WAY Yusoff a,b , Hadi Puwantoc, M.Aichounid, Farizahanie a,c,eFaculty of Engineering, International Islamic University Malaysia b,dCollege of Engineering, University of Hail, Kingdom of Saudi Arabia a,byusmawiza@iium.edu.my (correspondent author) Keywords: Selective laser sintering, polyamide-base-powder, thermal properties, differential scanning calorimetry Abstract In order to produce good functional Laser Sintering (LS) parts, it is important that the powder on the part bed surface receives a sufficient amount of power energy through the laser sintering process.
These materials include metals, polymers and ceramics.
Polymer powders are well processed in SLS over metal and ceramic due to the low processing temperature, melt flow control and high corrosion resistance [2-5].
Acknowledgement This research was funded by Research Endowment Fund Type B (EDW B12-377-0855) collaboration with Manufacturing Engineering Centre, Cardiff University, United Kingdom.
[3] Ian Gibson and Dongping Shi (1997), Material properties and fabrication parameters in selective laser sintering process, Rapid Prototyping Journal, Volume 3 Number 4 1997, pp. 129–136 [4] Kruth J P, Wang X, Laoui T, and Froyen L (2003) Laser and materials in selective laser sintering, Rapid Prototyping Journal, Vol 23, No 4, pp 357-371
Online since: September 2013
Authors: Jia Hui Peng, Zhi Kun Li
Journal of Advanced Concrete Technology, 2009, 7(1): 5-12
Journal of Advanced Concrete Technology, 2006, 4(2): 211-223
Journal of Applied Polymer Science, in press
Journal of the European Ceramic Society, 2009, 29(10):1847-1853
Journal of the American Ceramic Society, 2005, 88(4): 850-857.
Online since: September 2019
Authors: Norifumi Miyanaga, Jun Tomioka
Friction Properties of Ni-P-SiC Composite Plating in Water Norifumi Miyanaga1,a and Jun Tomioka2,b 1Faculty of Science and Engineering, Kanto Gakuin University, 1-50-1 Mutsuurahigashi, Kanazawa-ku, Yokohama 236-8501, Japan 2Faculty of Science and Engineering, Waseda University, 3-4-1 Okubo, Shinjuku-ku, Tokyo 169-8555, Japan amiyanaga@kanto-gakuin.ac.jp, btomioka@waseda.jp Keywords: Ni-P-SiC plating, friction properties, water lubrication Abstract.
Hu: The Friction and Wear of Electroless Ni-P Matrix with PTFE and/or SiC Particles Composite, Tribology International, Vol. 39 (2006), p. 553
Kato: Influence of Size and Dispersion of SiC Particles in the Preparation of Ni-P-SiC Composite Plating, Journal of the Ceramic Society of Japan, Vol. 98 (1990), p. 22
Tomioka: Effect of Acid Washing of SiC Particles on Dispersing and Friction Properties of Ni-P-SiC Composite Plating, Engineering Tribology and Materials, Vol. 739 (2017), p. 143
Aizawa: Loads carrying capacity map for the surface texture design of SiC thrust bearing sliding in water, Tribology International, Vol. 36 (2003), p. 189
Online since: September 2013
Authors: Mohd Nazree B. Derman, Mohd Arif Anuar Mohd Salleh, Dewi Suriyani Che Halin, N.M.N. Azira, Muhammad Asri Idris
Derman 1,d and M.A.A Mohd Salleh 1,e 1School of Materials Engineering, Universiti Malaysia Perlis, Kompleks Pusat Pengajian Jejawi 2, Taman Muhibah, 02600 Jejawi, Arau, Perlis, Malaysia anoorazira@unimap.edu.my, b asri@unimap.edu.my, cdewisuriyani@unimap.edu.my, nazree@unimap.edu.my , earifanuar@unimap.edu.my Keywords: water treatment, photocatalysis Abstract.
Nowotny and T.Bak, Photocatalytic water disinfection on oxide semi conductor: Part 2 – structure, functional properties and reactivity of microbial agents, Advanced in Applied Ceramic, 111 (2012) 16 - 33 [3] Information on http://www.gao.gov [4] A.
Dobosz, Water Purification by Photocatalysis on Semiconductor, Polish Journal of Enviromental Studies, 10 (2001) 195 – 205 [5] Mojtaba Nasr-Esfahani and Mohammad Hossein Habibi, Silver Doped TiO2 Nanostructure Composite Photocatalyst Film Synthesized by Sol-Gel Spin and Dip Coating Technique on Glass International, Journal of Photoenergy (2008) 2008, [6] Fujishima, A., Honda, K., Electrochemical photolysis of water at a semiconductor electrode.
Dittrich and S.Sibler, Cell surface groups of two picocyanobacteria strains studied by zeta potential investigations, potentiometric titration and infrared spectroscopy, Journal Colloid Interf.
Ikuma and V.Murugesan, Highly Active Rare-Earth-Metal La-Doped Photocatalysts: Fabrication, Characterization, and Their Photocatalytic Activity (2012) International Journal of Photoenergy
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