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Online since: September 2016
Authors: Andrey N. Anikeev, I.V. Chumanov, V.I. Chumanov
The equipment allows to perform a complex study of materials‘ characteristics at high temperatures and under various pressure (Fig. 1).
Chumanov, Fabrication of functionally graded materials by introducing wolframium carbide dispersed particles during centrifugal casting and examination of FGM's structure, Procedia Engineering. 129 (2015) 816–820
Sergeev, Increase in wear resistance by introduction of titanium carbide dispersed particles, Materials Science Forum. 843 (2016) 269-273
Chumanov, Experiments on obtaining nanostructured metallic materials and their investigation, Materials Science Forum. 843 (2016) 139-144
Passerone, SiC/SiC and SiC/Kovar joining by Ni–Si and Mo interlayers, Journal of Materials Science. 45 (2010) 4299-4307.
Online since: March 2016
Authors: Shuang Hong Wang, Shu Yu Yang
Materials Science and Engineer A, 1999, 263(1): 15-22
Acta Materials, 2008, 56(6): 1288-1297
Materials Letters, 2013(112): 215-218
Journal of Northeastern University (Natural Science), 2012, 33(9): 1274-1277
Journal of Materials and Metallurgy, 2011, 10(4): 278-282
Online since: August 2011
Authors: Li Ming Zhang, De Si Sun, Yang Bo
Materials and methods 2.1 Sample source Sample collecting site see table 1, soil collection was digged at root and stored in parchment paper for screening.
Journal of Anhui Agricultural Sciences.2010(6),2028-2033. 3.
Journal of Henan Institute of Science and Technology,2007,35(3):15-18. 12.
Journal of Wuhan University(Natural Science Edition),2008(2):240-243. 15.
The Chinese Journal of Nonferrous Metals,2004(2),281-285.
Online since: May 2016
Authors: Yao Nan Cheng, Jun Qian, Ya Nan Gong, Y. Han, F.G. Yan, L. Liu
The comparison of tool life of cutting different materials Experimental conditions.
Three different kinds of workpiece materials were cut under laboratory conditions to compare the tool life.
Journal of Harbin University of Science and Technology, 2011, 16(6): 11-16
Cutting Behavior and Related Cracks in Wear and Fracture of Ceramic Tool Materials.
Journal of Mechanical Engineering. 2012, 48(19): 169-176.
Online since: August 2014
Authors: Hua Lin, Zhen Wei Han, You Xi Lin
Adhesion of the workpiece materials onto the flank face of the tool was also observed, which can be seen clearly (as shown in Fig.3e).
Acknowledgment This work was supported by the National Natural Science Foundation of China (Grant No. 51375094) and the Natural Science Foundation of Fujian Province, China(Grant No. 2013J0101 ).
Dewes, D.K Aspinwall: Journal of Materials Processing Technology.
Journal of Materials Processing Technology.
Farhat: Microstructural characterization of WC-TiC-Co cutting tools during high-speed machining of P20 mold steel .Materials Characterization.
Online since: November 2012
Authors: A.J. Pontes, António Sergio Pouzada, Monica S.A. Oliveira, Tatiana V. Zhiltsova, Joel C. Vasco
Materials.
Byung, Simulation of the filling process in micro channels for polymeric materials, Journal of Micromechanics and Microengineering 12 (2002) 604
Agassant, Polymer rheology at high shear rate for microinjection moulding, International Journal of Material Forming 3 (2010) 539-542
Kwon, Experimental and numerical investigation of injection moulding with microrib patterns, Polymer Engineering & Science 50 (2010) 1186-1198
Koelling, Flow and heat transfer simulation of injection moulding with microstructures, Polymer Engineering & Science 44 (2004) 1866-1876
Online since: November 2013
Authors: Mateusz Kowalski, Aleksander Karolczuk
Introduction Development of new mechanical systems necessitates research of new construction materials including multilayer materials such as bimetals.
Project financed by the National Science Centre.
Findik: Materials & Design 32 (2011), p. 1081
Al-Hassani: Journal of Materials Processing Technology 202 (2008), p. 224
Żok: Materials Science Forum (2012), p. 125
Online since: June 2015
Authors: M. Rusop, M.H. Mamat, Salman A.H. Alrokayan, Uzer Mohd Noor, Shafura Karim, Ahmad Shuhaimi Abu Bakar, Haseeb A. Khan
Khan3,f and MOHAMAD Rusop1,4,g 1Nano-ElecTronic Center (NET), Faculty of Electrical Engineering, Universiti Teknologi MARA, 40450 Shah Alam, Malaysia. 2Dimensional Materials Research Centre (LDMRC), Department of Physics, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia 3Department of Biochemistry, College of Science, Bldg. 5, King Saud University (KSU) P.O: 2454 Riyadh 11451, Kingdom of Saudi Arabia 4Nano-SciTech Centre (NST), Institute of Science, Universiti Teknologi MARA, 40450 Shah Alam, Malaysia.
Tin-doped Zinc Oxide (Sn-doped ZnO) thin films were prepared using zinc acetate dehydrate as a starting material by sol-gel immersion method.
particles which is Sn and ZnO materials [6].
Acknowledgment This work was supported by Research Grant from the Ministry of Science, Technology and Innovation of Malaysia.
Tariq Jan, Muhammad Ismail, M Zakaullah, Sajjad Haider Naqvi, and Noor Badshah, Sn doping induced enhancement in the activity of ZnO nanostructures against antibiotic resistant S. aureus bacteria, International Journal of Nanomedicine (2013).
Online since: October 2008
Authors: R.A. Dorey
Dorey, Materials Science in Semiconductor Processing, Vol. 5 (2003), p. 65
Muralt, Journal of Electroceramics, Vol. 12 (2004), p. 7
Persson, Materials Science and Engineering R: Reports, Vol. 56 (2007), p. 1
Pernod, Solid State Sciences, Vol. 5 (2003), p. 1499
Whatmore, Journal of Electroceramics, Vol. 19 (2007), p. 295.
Online since: October 2020
Authors: R.N. Faria, D.V. Silva, G.S. Galdino, J.C.S. Casini, Lusinete Pereira Barbosa
Fariae Center of Science and Materials Technology, Nuclear and Energy Research Institute (IPEN-CNEN/SP), São Paulo, SP, Brazil adaniel.vsilva96@gmail.com, bgabrielsgaldino@gmail.com, cbluzinete22@gmail.com, dcasini.julio@gmail.com, erfaria@ipen.br Keywords: supercapacitors, specific capacitance, equivalent series resistance, energy storage.
Beside active research activities in developing high surface area electrodes and high efficient electrolytes, there has also been growing research activities in developing supercapacitor separators; covering materials such as polypropylene, eggshell membrane, polyvinyl alcohol (PVA), filter paper and Teflon ring [3-5].
George et al.: International Journal of Research in Engineering and Technology Vol. 5 (13), (2016), p. 1
Karandikar: International Journal for Research in Applied Science & Engineering Technology Vol. 4 (2) (2016), p. 214
Obreja: Supercapacitors Specialities - Materials Review, AIP Conference Proceedings 1597. (2014), p. 98
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