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Online since: May 2011
Authors: Rui Chen, Ben Zhuo Zhang, Wei Dong Lei, Wen Bin Luo
Rico: Journal of Hazardous Materials Vol. 152 (2008), p. 846 [4] Beijing Central Engineering and Research Institute of Nonferrous metallurgical Industries: ZBJ 1-90 Design Code for Mine Concentrator Tailings Facilities (1990) (In Chinese) [5] D.G.
Gan, in: Unsaturated Soils, International Academic Publisher (1998) [9] B.W.
Wang: Chinese Journal of Geotechnical Engineering Vol. 32 (1999), p. 9 (In Chinese) [10] Z.
Bao: Chinese Journal of Geotechnical Engineering Vol. 23 (2001), p. 64 (In Chinese) [11] C.W.W.
Qi: Chinese Journal of Rock Mechanics and Engineering Vol. 23 (2006), p. 10 (In Chinese) [15] C.Y.
Online since: November 2018
Authors: Sufizar Ahmad, Hamimah Abdul Rahman, Hariati Taib, Kang Huai Tan, Umira Asyikin Yusop, Himi Ibrahim
Influence of Heat Treatment and Milling Speed on Phase Stability of Ba0.5Sr0.5Co0.8Fe0.2O3-δ Composite Cathode Solid Oxide Fuel Cell Tan K.H.1,a, Rahman H.A.1,b*, Taib H.1,c, Ahmad S.1,d, Yusop U.A.1,e and Ibrahim H.2,f 1Faculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia, 86400 Parit Raja, Batu Pahat, Johor, Malaysia 2Office of PVC-Higher Education, Charles Darwin University, Darwin, Northern Territory 0909 Australia atkh.nov@gmail.com, b*hamimah@uthm.edu.my, chariati@uthm.edu.my, dsufizar@uthm.edu.my, eumira_yusop@yahoo.com, fhimi.ibrahim@cdu.edu.au Keywords: SOFC, BSCF, Cathode Composite, Ball Milling, Heat Treatment Abstract.
Rosseinsky, Oxygen permeation and stability of Mo-substituted BSCF membranes, Journal of Materials Chemistry. 3(35) (2015) 18265-18272
Baharuddin, et al., Influence of Sintering Temperature on the Polarization resistance of LaSrCoFe-SDC Carbonate Composite Cathode, Ceramics – Silikaty. 60(2) (2016) 60(2) 115-121
Brisotto, et al., High temperature stability of Ba0.5Sr0.5C 0.8Fe0.2O3− δ and La0.6Sr0.4Co1− yFeyO3− δ oxygen separation perovskite membranes, Journal of the European Ceramic Society. 36(7) (2016) 1679-1690
Zhao, et al., Carbonates formed during BSCF preparation and their effects on performance of SOFCs with BSCF cathode, International Journal of Hydrogen Energy. 37(24) (2012) 19036- 19044
Online since: August 2010
Authors: Yao Yang Tsai, Ke Yu Shue, Yo Ming Chang
An investigation of attachment on electrode surface in Dry EDM Ke-Yu Shue1,a, Yao-Yang Tsai1,b, and Yo-Ming Chang1,c 1 Department of Mechanical Engineering National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei, 10617 Taiwan (R.O.C) a r98522722@ntu.edu.tw, byytsai@ntu.edu.tw , cr96522730@ntu.edu.tw Keywords: Air, Peak current, Duty factor, Relative electrode wear ratio, Material removal ratio, reference ratio of gap voltage, Attachment Abstract.
Ceramic bearing and ABS resin plate are used to be insulated the motor damag by high voltage of discharge circuit.
Journal of Materials Processing Technology, 2004. 149(1-3): p. 353-357
Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2004. 36(3): p. 359-362
International Journal of Machine Tools & Manufacture, 2007. 47(15): p. 2273-2281.
Online since: October 2014
Authors: Nor Hafiez Mohamad Nor, Norhamidi Muhamad, J.B. Saedon, Nur Atikah Abu Kasim, Mohd Ikhwan Jamaludin
The support of the Advanced Manufacturing Technology Excellent Centre (AMTEx), Faculty of Mechanical Engineering is gratefully acknowledged.
Jamaludin, Flow Behaviour To Determine The Defects of Green Part In Metal Injection Molding, International Journal of Mechanical and Materials Engineering, University of Malaya 4 (2009) 70-75
Rethwisch, Material Science and Engineering: An Introduction, ninth ed., John Wiley and Son, United State of America, 2013
Todd, Improved Processing of Titanium Alloys by Metal Injection Moulding, IOP Conference Series: Materials Science and Engineering, 26 (2011) 12-25
Bormann, Influence of Processing Parameters on Mechanical Properties of Ti–6Al–4V Alloy Fabricated by MIM, Materials Science and Engineering, 527 (2010) 3929–3935.
Online since: January 2013
Authors: Ji Jun Yu, Fei Huang, Gui Qing Jiang
Internal Radiation Transport and Effective Thermal Consluctivily of Fibrous Ceramic Insulation.
International Journal of Heat and Mass Transfer, Vol.40, No.9, 1997:2241-2247 [5] Imakoma,H., Sang,K. and Okazard,U.
The Effective Thermal Conductivity of Fibrous Insulation, International Chemical Engineering.
Thermal Analysis and Design Optimization of Multilayer Insulation for Reentry Aerodynamic Heating, Journal of Spacecraft and Rockets, Vol.39, No.4, July-August 2002:509-514 [10] Williams, S.D., and Curry, D.M., Predictions of Rigid Silica Based Insulation Conductivity, NASA TP-3276, Jan, 1993 [11] Verschoor, J.D., Greebler, P., and Manville, N.J., Heat transfer by Gas Conduction and Radiation in Fibrous Insulation.
Journal of Heat Transfer, Vol.74, No.8, 1952:961-968
Online since: January 2006
Authors: Chia Lung Kuo, Jing Dae Huang
Joint Design and Fabrication for Mechanical Elastic Self-deformation Micro-assembly Technology Chia-Lung Kuo a and Jing-Dae Huang b a Department of Mechanical Engineering National Yunlin University of Science and Technology, Touliu, Yunlin 640, ROC bDepartment of Power Mechanical Engineering National Formosa University, Yunlin 632, ROC akuo@yuntech.edu.tw, bjingdae@nfu.edu.tw (Corresponding author) Keywords: micro-EDM, micro-rotor, micro-assembly, elastic self-deformation Abstract.
Bellingham, WA: SPIE Optical Engineering, 1997
[3] M., Madou, Fundamentals of Microfabrication, CRC, 1997 [4] W., Bacher, W., Menz, and J., Mohr, "The LIGA Technique and Its Potential for Microsystems-A survey," IEEE Transactions on Industrial Electronics, Vol. 42, No. 5, pp. 431-441, 1995 [5] H., Yang, and S.W., Kang, "Improvement of Thickness Uniformity in Nickel Electroforming for the LIGA Process," International Journal of Machine Tools & Manufacture, Vol. 40, pp. 1065-1072, 2000 [6] K.D., Wise, "Integrated Microelectromechanical Systems: A Perceptive on MEMS in the 90s," Proceedings of IEEE Micro Electro Mechanical Systems, p. 33-38, 1991 [7] H., Miyajima, and M., Mehregany, "High-Aspect-Ratio Photolithography for MEMS Applications," Journal of Microelectromechanical Systems, Vol. 4, No. 4, pp. 220-229, 1995 [8] W., Koing, D.F., Dauw, G., Levy, and U., Panten, "EDM-Future Steps towards the Machining of Ceramics," Annals of the CIRP, Vol. 37, No. 2, pp. 623-631, 1988 [9] H.H., Langen, T., Masuzawa, and M
., Fujino, "A Micro-EDM/Assembly System Unit for Microparts Fabrication," IEEE International Workshop on Emerging Technologies and Factory Automation, Australia, pp. 229-237, 1993 [10] H.H., Langen, T., Masuzawa, and M., Fujino, "Modular Method for Microparts Machining and Assembly with Self-Alignment," Annals of the CIRP, Vol. 44, No. 1, pp. 173-176, 1995 [11] K., Egashira, and T., Masuzawa, "Microultrasonic Machining by the Application of Workpiece Vibration," Annals of the CIRP, Vol. 48, No. 1, pp. 131-134, 1999 [12] C.L.
Huang, and H.Y., Liang, "Precise Micro-Assembly through an Integration of Micro-EDM and Nd-YAG," International Journal of Advanced Manufacturing, Vol. 20, pp. 454-458, 2002 [13] Jing-Dae Huang, Chia-Lung Kuo, "Pin-Plate Micro Assembly by Integrating Micro-EDM and Nd-YAG Process," International Journal of Machine Tools & Manufacture, Vol. 42, No. 13, pp. 1455-1464, 2002. 200μ m Figure 5.
Online since: September 2013
Authors: Andrei Predescu, Ecaterina Matei, Andra Mihaela Predescu, Andrei Berbecaru, Liana Vladutiu
Nano - Iron Oxides used for Environmental Applications Andrei Predescu1, a, Ecaterina Matei1,b, Andra Mihaela Predescu1, a, Andrei Berbecaru1,c and Liana Vlăduţiu1,a 1Politehnica University of Bucharest, Faculty of Materials Science and Engineering, 313 Splaiul Indepenţei, 060042, Bucharest, Romania aecomet@ecomet.pub.ro, becaterina.matei@ecomet.pub.ro (corresponding author), candrei_berbecaru@ecomet.pub.ro Keywords: nano-iron oxides, co-precipitation method, material characterization, environmental applications.
Katsuki, Magnetite syntheses from room temperature to 150 C with and without microwaves, Ceramics International 38, 2012, 2563–2568 [7] J.
Wang , Ultra-fast method to synthesize mesoporous magnetite nanoclusters as highly sensitive magnetic resonance probe, Journal of Colloid and Interface Science 379 (2012) 1–7 [8] M.
Balachandran Preparation of magnetite aqueous dispersion for magnetic fluid hyperthermia, Journal of Magnetism and Magnetic Materials, 323 (2011) 1216–1222, Proceedings of 12th International Conference on Magnetic Fluid, Edited By H.
Li, Preparation of magnetite–dextran microspheres by ultrasonication Journal of Magnetism and Magnetic Materials, 293 (2005) 182-186 [18] J.
Online since: August 2018
Authors: Dani Gustaman Syarif, Djoko Hadi Prajitno, Efrizon Umar
., (1995), Enhancing thermal conductivity of fluids with nanoparticlees, ASME International Mechanical Engineering Congress and Exposition, November 12-17, 1995, San Francisco, CA
[2] Singh K., Sharma S., Gangacharyulu D., (2013), Experimental study of thermo physical properties of Al2O3/water nanofluids, International Journal of Research in Mechanical Engineering and Technology 3(2), pp.229-233
[9] Ravi Kumar, N.T., Syam Sundar, L., Bhramara, P. (2016), Numerical Analysis of Fe3O4 Nanofluid Flow in a Double Pipe U-Bend Heat Exchanger, International Journal of Engineering Studies 8(9), pp. 211-224
[17] Lamarsh, J.R., (1983), Introduction to Nuclear Engineering 2nd Edition, Addison-Wesley Pub.Co., USA
[27] Buongiorno, J., and Hu, L.W., (2010), Nanofluid Heat Transfer Enhancement for Nuclear Reactor Applications, Journal of Energy and Power Engineering 4(6), pp.1-8
Online since: March 2014
Authors: Marcio Ferreira Martins, Filipe Arthur Firmino Monhol
Filipe Arthur Firmino Monhol1,a *, Marcio Ferreira Martins2,b 1,2 Federal University of Espírito Santo - UFES, Technological Center, Mechanical Engineering Department, Av.
It is made of a 2 mm thick stainless-steel material, surrounded by two types of insulating material: a 3 mm thick layer of wool (Superwool 607 blanket, Thermal Ceramics, k = 0.28 Wm−1K−1 at 982 °C) and a 50 mm thick layer of refractory fiber bloc (Kaowool HS 45 Board, Thermal Ceramics, k = 0.21 Wm−1K−1 at 1000 °C).
International Journal of Heat and Mass Transfer 33(7): 1511-1520, 1990
Online since: August 2016
Authors: Ámos Dufka, Tomáš Melichar
Ph.D. 2 1,2 Brno University of Technology, Faculty of Civil Engineering, Veveří 95, 602 00 Brno, Czech Republic 1dufka.a@fce.vutbr.cz, 2melichar.t@fce.vutbr.cz Keywords: fly ash, alkali activation, increased temperature of maturing Abstract: The article is involved in the possibility to use activated fly ashes as composite material matrices intended for extreme conditions.
Presumably this effect relates to the fact that the negative effect of gradual decomposition of aluminasilicate phases is compensated by formation of so called ceramic bond with higher temperatures.
The research within this field can´t be considered as finished, there are further experiments taking place in the THD Institute analysing the possibility to stabilise the matrix using for instance nano particles, admixtures for regulation of ceramic bond formation etc.
International Journal of Inarganic materials 2. 2000. pp.309 -317.
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