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Online since: January 2012
Authors: Dong Ling Zhang, Xiao Mei Xu, Yang Liu, Peng Fei Mu
A classical definition of sensory evaluation is given by Stone and Sidel and Dijksterhuis [1] as follows: Sensory evaluation is a scientific discipline used to evoke measure, analyze, and interpret reactions to those characteristics of products or materials as they are perceived by the senses of sight, smell, taste, touch and hearing.
Acknowledgement This research is supported by the Ministry of Educational Humanities and Social Sciences Foundation of China (10YJC630372) References [1] H.
Information Sciences [J],1975, 8,8, 9 (Part I–III):199–249, 301–357, 43–80
A methodology for computing with words, International Journal of Approximate Reasoning [J],2001, 28 51–89
The problem of linguistic approximation in clinical decision making, International Journal of Approximate Reasoning [J],1998 ,2,143–162
Acknowledgement This research is supported by the Ministry of Educational Humanities and Social Sciences Foundation of China (10YJC630372) References [1] H.
Information Sciences [J],1975, 8,8, 9 (Part I–III):199–249, 301–357, 43–80
A methodology for computing with words, International Journal of Approximate Reasoning [J],2001, 28 51–89
The problem of linguistic approximation in clinical decision making, International Journal of Approximate Reasoning [J],1998 ,2,143–162
Online since: February 2015
Authors: Hasan Zuhudi Abdullah, Ahmad Norman Khalis Ahmad Fara, Mohd Azha bin Yahya
Various techniques have been and are being developed to produce most suitable implant materials.
Inorganic Materials 38, no. 10 (2002): 973-984
Materials Science and Engineering: C 32, no. 3 (2012): 478-486
Journal of Materials Science 49, no. 4 (2014): 1461-1475
Journal of Minerals and Materials Characterization and Engineering 11 (2012): 55.
Inorganic Materials 38, no. 10 (2002): 973-984
Materials Science and Engineering: C 32, no. 3 (2012): 478-486
Journal of Materials Science 49, no. 4 (2014): 1461-1475
Journal of Minerals and Materials Characterization and Engineering 11 (2012): 55.
Online since: January 2013
Authors: Z.M. Zabidi, A.N. Alias, M.H. Jumali, Intan Syaffinazzilla Zaine
To address this issue, studies on hybrid materials have been done.
The sensing materials of sensor are tungsten organometallic-PANi hybrid.
The raw materials of the solution were powder of tungsten (VI) oxychloride (WCl6) and ethanol absolute. 0.40 g WCl6 was dissolved in 4 mL ethanol.
Shi, "Review gas sensors based on conducting polymers," Journal of Sensors, vol. 7, pp. 267-307, 2007
Wu, "H2S sensitivity study of polypyrrole/WO3 materials," Solid-State Electronics, vol. 50, pp. 723-726, 2006
The sensing materials of sensor are tungsten organometallic-PANi hybrid.
The raw materials of the solution were powder of tungsten (VI) oxychloride (WCl6) and ethanol absolute. 0.40 g WCl6 was dissolved in 4 mL ethanol.
Shi, "Review gas sensors based on conducting polymers," Journal of Sensors, vol. 7, pp. 267-307, 2007
Wu, "H2S sensitivity study of polypyrrole/WO3 materials," Solid-State Electronics, vol. 50, pp. 723-726, 2006
Online since: January 2016
Authors: Xiang Dong Qi, Xiao Wei Zheng, Yin Fei Yang, Wei Zhang, Hui Tian, Kai Qin Yu
Edge milling simulation requires a model element become part unit and the materials unit that need to be removed.
Yang, Advanced Areanautical Aluminum Alloy Materials Technology and Application, Beijing: National Defend Industry Press, 2012
Key Engineering Materials. 458(2010)283-288
Materials Science Forum Vols. 800-801 (2014) 368-373
Yan, Prediction model for machining deformation of aeronautical aluminum alloy thin-walled workpiece, Journal of Central South University (Science and Technology). 43(2012)1696-1702
Yang, Advanced Areanautical Aluminum Alloy Materials Technology and Application, Beijing: National Defend Industry Press, 2012
Key Engineering Materials. 458(2010)283-288
Materials Science Forum Vols. 800-801 (2014) 368-373
Yan, Prediction model for machining deformation of aeronautical aluminum alloy thin-walled workpiece, Journal of Central South University (Science and Technology). 43(2012)1696-1702
Online since: June 2010
Authors: Aamer Nusair Khan
Dimiduk, Materials Science and Engineering-A, Vol 263 (1999), 281-288
Gurney, Advanced Materials & Processes, Vol 159 (2001), 2731
Kaysser, Materials Science and Engineering-A, Vol 239-240 (1997) 680-687
Sagar, T.K.Nandy, A.K.Gogia, K.Muraleedharan, D.Banerjee, Materials Science and Engineering A Vol 192-193, (1995), 799-804
Coddet: Journal of Materials Science, Vol. 22 (1987), 1206
Gurney, Advanced Materials & Processes, Vol 159 (2001), 2731
Kaysser, Materials Science and Engineering-A, Vol 239-240 (1997) 680-687
Sagar, T.K.Nandy, A.K.Gogia, K.Muraleedharan, D.Banerjee, Materials Science and Engineering A Vol 192-193, (1995), 799-804
Coddet: Journal of Materials Science, Vol. 22 (1987), 1206
Online since: November 2010
Authors: Jian Jun Song, He Ming Zhang, Hui Yong Hu, Xian Ying Dai, Rong Xi Xuan
The intrinsic carrier concentration is the important parameter for researching strained Si1-xGex materials properties and evaluating Si-based strained devices parameters.
The intrinsic carrier concentration is important and fundamental parameter for researching strained Si1-xGex materials properties and evaluating Si-based strained devices parameters [6].
Summary The intrinsic carrier concentration is important and fundamental parameter for researching strained Si1-xGex materials properties and evaluating Si-based strained devices parameters.
Paul: Semiconductor Science and Technology Vol. 19 (2004), p. 75
Shu, et al. : Chinese Journal of Semiconductors Vol. 29 (2008), p. 442
The intrinsic carrier concentration is important and fundamental parameter for researching strained Si1-xGex materials properties and evaluating Si-based strained devices parameters [6].
Summary The intrinsic carrier concentration is important and fundamental parameter for researching strained Si1-xGex materials properties and evaluating Si-based strained devices parameters.
Paul: Semiconductor Science and Technology Vol. 19 (2004), p. 75
Shu, et al. : Chinese Journal of Semiconductors Vol. 29 (2008), p. 442
Online since: October 2010
Authors: Zhan Shen Zheng, Pei Qi Yan, Rui Jiao Li
Preparation of SiO2 film by sol-gel
Zhanshen Zheng1, a, Peiqi Yan2, b, Ruijiao Li3, c
1Hebei Province Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei Polytechnic University, Tangshan 063009, Hebei, China
2Graduate School, Hebei Polytechnic University, Tangshan 063009, Hebei, China
3 Graduate School, Hebei Polytechnic University, Tangshan 063009, Hebei, China
azhengzhanshen@163.com, bpeiqi-yan@163.com, cqianjiaotong@163.com
Keywords: hydrophobic, sol-gel, contact angle
Abstract.
Introduction Wettability of solid surface of the unique properties of material is decided mainly by the surface energy of material and the surface roughness.
Experiments Materials.
Journal of Functional Polymers, 2008(2), 21: 230-236 [10] Z L Xue, W Yang, et al.
Journal of Northwest Normal University (Natural Science), 2008(2), 44: 65
Introduction Wettability of solid surface of the unique properties of material is decided mainly by the surface energy of material and the surface roughness.
Experiments Materials.
Journal of Functional Polymers, 2008(2), 21: 230-236 [10] Z L Xue, W Yang, et al.
Journal of Northwest Normal University (Natural Science), 2008(2), 44: 65
Online since: March 2012
Authors: Elżbieta Jezierska
The Art and Application of Large Angle Convergent Beam
Electron Diffraction
Elżbieta Jezierska1,a
1Warsaw University of Technology, Faculty of Materials Science and Engineering,
Wołoska 141, 02-507 Warsaw, Poland
aejeziers@inmat.pw.edu.pl
Keywords: LACBED, ordered intermetallics, antiphase boundaries, GaN, nanopipes.
SAD patterns compared with HRTEM images are used as usual, but thin foil preparation for HRTEM images from brittle and multiphase materials it is not an easy task.
Acknowledgements The financial support from the Polish Ministry of Science and Higher Education and Faculty of Materials Science & Engineering Warsaw University of Technology is gratefully acknowledged.
Harada: LACBED, Journal of Electron Microscopy, 29 (1980) 408-412
Borysiuk: The European Physical Journal Applied Physics, 27, (2004) 255-258
SAD patterns compared with HRTEM images are used as usual, but thin foil preparation for HRTEM images from brittle and multiphase materials it is not an easy task.
Acknowledgements The financial support from the Polish Ministry of Science and Higher Education and Faculty of Materials Science & Engineering Warsaw University of Technology is gratefully acknowledged.
Harada: LACBED, Journal of Electron Microscopy, 29 (1980) 408-412
Borysiuk: The European Physical Journal Applied Physics, 27, (2004) 255-258
Online since: January 2015
Authors: Chakkrich Boonmee, Somruedee Satitkune, Tharapong Vitidsant, Kittiphop Promdee
The combined effect of pyrolysis and etching of alginate materials, which in dicates the hi erarchically porous feature.
Journal of Analytical and Applied Pyrolysis.
Journal of Physical Chemistry Letter.
Corrosion Science, Vol 79. (2014), p. 148-158
Inorganic Materials, Vol 50. (2014), p. 344-348
Journal of Analytical and Applied Pyrolysis.
Journal of Physical Chemistry Letter.
Corrosion Science, Vol 79. (2014), p. 148-158
Inorganic Materials, Vol 50. (2014), p. 344-348
Online since: February 2016
Authors: Janusz Krawczyk, Robert Dąbrowski, Edyta Rożniata
Introduction
A fast development of the contemporary material engineering heads towards looking for new materials of the required – by users – properties as well as towards looking for ways of improvements of already existing materials.
Collings, Materials Properties Handbook.
Ninoomi, Mechanical properties of biomedical titanium alloys, Materials Science and Engineering A243 (1998) 231-236
Askeland, Titanium alloys, The Science and Engineering of Materials, PWS-Kent Publishing Company (1984) 338-345
Rack, Phase transformations during cooling in α+β titanium alloys, Materials Science and Engineering A243 (1998) 206-211
Collings, Materials Properties Handbook.
Ninoomi, Mechanical properties of biomedical titanium alloys, Materials Science and Engineering A243 (1998) 231-236
Askeland, Titanium alloys, The Science and Engineering of Materials, PWS-Kent Publishing Company (1984) 338-345
Rack, Phase transformations during cooling in α+β titanium alloys, Materials Science and Engineering A243 (1998) 206-211