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Online since: March 2008
Authors: Takahisa Shobu, Yoshiaki Akiniwa, Keisuke Matsumoto, Tsuyoshi Yagi, Masataka Yamamoto
Experimental Method Materials and specimen.
The materials used were SUS 304 (AISI 304) and SUS 301L (AISI 301L) austenitic stainless steel.
The Poisson ratio of all materials was set at 0.3.
[8] T.Shobu, J.Mizuki, K.Suzuki, H.Suzuki, Y.Akiniwa and K.Tanaka, "Application of strain scanning method to stress measurement of austenitic stainless steel", Journal of the Society of Materials Science, Japan, Vol.55, No.7, pp647-653 (2006)
[10] T.Shobu, J.Mizuki, K.Suzuki, Y.Akiniwa and K.Tanaka, "Correction of surface aberration in strain scanning method with analyzer", Journal of the Society of Materials Science, Japan, Vol.55, No.1, pp101-109 (2006)
Online since: December 2011
Authors: A. El Hami, Abel Cherouat, Bouchaib Radi, Ayadi Mahfoudh
Hertl: Journal of Materials Processing Technology, Vol. 71 (1997), p. 174-186 [2] Y.
Soo: Journal of Materials Processing Technology, Vol. 111 (2001), p. 175-181 [3] Y.S.
Rezgui: in 6th International Forum on Advanced Material Science and Technology, Hong Kong June 12-14 (2008)
Donglai et al.: Computational Materials Science, Vol. 42 (2008), p. 228-233 [34] T.
Jansson et al.: Journal of Materials Processing Technology, vol. 202 (2007), p. 255-268
Online since: December 2009
Authors: Ilhem Kriba, A. Djebaili
The effect of substrate roughness, droplet temperature and velocity, substrate temperature, particle size, for different materials especially Al2O3-TiO2 will present the second step of our work.
Pfender Surface and Coatings Technology 34 (1), 1 (1988) [5] Gilles Mariaux, and Armelle Vardelle International Journal of Thermal Sciences 44 (4),357(2005) [6] E.
Eritt Computational Materials Science 7(1-2), 109 (1996) [7] P.
Fauchais Materials Science and Engineering A, 147(1) 107(1991) [13] G.
Vardelle International Journal of Thermal Sciences 39(9-11),852(2000) [16] E.
Online since: January 2013
Authors: Jun Shen, Guang Ming Wu, Xiao Bo Jin, Zeng Hai Zhang, Guo Hua Gao, Wei Feng
Nanostructural WO3 materials exhibit excellent gasochormism performance under the action of the hydrogen gas.
Neumann, Stability of gasochromic WO3 films, Solar Energy Materials and Solar Cells. 63 (2000) 165-176 [5] S.
Granqvist, Transparent conductors as solar energy materials: A panoramic review, Solar Energy Mater Solar Cells. 91(17) (2007) 1529 [8] R.
Rauh, Electrochromic materials for controlled radiant energy transfer in buildings, Solar Energy Mater. 11(3) (1984) 177 [9] A.
Deepa, FTIR and absorption edge studies on tungsten oxide based precursor materials synthesized by sol–gel technique, Journal of Non-Crystalline Solids. 306 (2002) 129-137 [12] U.
Online since: September 2017
Authors: R. Kesavan, B. Vijaya Ramnath, P. Subramanya Reddy
Composites are the materials, in which two or more phases are combined especially with their firm interfaces with the materials.
Experimental Details Materials.
Çakir, “Investigation of mechanical and machinability properties of SiC particle reinforced Al-MMC”, Journal of materials processing technology, Vol. 198, (2008) 220-225
Ghias, B.Vijaya Ramnath, ‘Investigation of Tensile Property of Aluminium SiC Metal Matrix’, International Journal Applied Mechanics and Materials, Volume 766-767, 2015, Pages 252-256
Sabarish, ‘A Review on CNT Reinforced Aluminium and Magnesium Matrix Composites’, International Journal Applied Mechanics and Materials, Volume 591, June 2014, Pages 120-123.
Online since: January 2015
Authors: Fu Liang Jiang, Bo Lei, Guo Hui Li, Zeng Guang Yang, Sheng Yang Feng
(2) For rockfill dam slopes’ stability influencing factors, rock density of is the largest one, so before choosing damming material we should test the stone material mechanical performance and then choose the density larger stone, such as: granite, syenite, gabbro, diorite, etc.
Journal of Safety and Environment, Beijing, Vol. 8, (Feb.2008), p.160-162(In Chinese) [4] Ke Pan, Kaili Xu, Chen Liu.
Science Press, Beijing, 2001, p.12-21(In Chinese) [6] Fuliang Jiang, Keping Zhou, Shuna Li, et al.
China Safety Science Journal, Beijing, Vol. 19(Aug.2009), p.126-132(In Chinese) [7] Huayi Li, Wei Liu.
Journal of Engineering Geology, Beijing, Vol. 3(Dec.1995), p.54-61(In Chinese)
Online since: February 2011
Authors: Xing Ping Wen, Xiao Feng Yang
Materials and methods Study Areas and Remote Sensing Data.
Acknowledgment This study was jointly supported by the NSFC of Yunnan province, China (KKSA200921019), Scientific Research Foundation of Kunming University of Science and Technology (KKZ3200821048), China Postdoctoral Science Foundation (20100471687) and the innovation team of ore-forming dynamics and prediction of concealed deposits, Kunming University of Science and Technology, Kunming, China.
Sandhya: Forest change detection in Kalarani round, Vadodara, Gujarat— a Remote Sensing and GIS approach, Journal of the Indian Society of Remote Sensing, vol. 29 (2001), pp. 129-135
Mahmoodzadeh: Digital Change Detection Using Remotely Sensed Data for Monitoring Green Space Destruction in Tabriz, International Journal of Environmental Research, vol. 1 (2007), pp. 35-41
Moran: Change detection techniques, International Journal of Remote Sensing, vol. 25 (2004), pp. 2365–2407
Online since: April 2012
Authors: Jian Xing Zhang
The review on 3D human body modeling [J].Journal of Henan Polytechnic University, 2001(20)
Review on human body modeling 3D in garment CAD[J], Journal of Wuhan University of Science and Engineering, 2004(17)
[8] Baiqing Qu, Xu Shejiao.computer graphics [M], first edition, Xi'an, Xi'an Electronic and Science University PublishingAgency, in 2003 June, 168
Dedicated 3D CAD for garment modeling [J], Journal of materials processing technology, 2000(10)
[12] Xiaoyu Ma. 3D garment simulation technology research progress [71, Textile journal,2004(8).
Online since: January 2012
Authors: Claudio Testani, Mario Tului
These class of materials are known as: Metal Matrix Composites (MMC).
[5] Structural Materials Handbook, Vol. 2: new advanced materials(section XI), ed.
Metal Matrix Composites: Matrices and Processing, Encyclopaedia of Materials: Science and Technology, §3.7, Composites: MMC, CMC, PMC, ed.
[18]: C.Testani, F.Ferraro, Development of a low cost Process for manufacturing of Ti-MMC by RDB, Journal Of Materials Engineering and Performance”, Vol. 19, (4) June 2010, pp. 521-526
Part I - Microstructural Characterization, Materials Science Forum Vols. 604-605 (2009) pp 331-340, [20] X.
Online since: September 2013
Authors: Wichian Siriprom, Sirisit Sukphirom, Kanyakorn Teanchai, Onanong Chamlek, Jakrapong Kaewkhao, Yotsakit Ruangtaweep, Nattapon Srisittipokakun
Effects of Ni2+ ions on Soda Lime Silicate Glasses Wichian Siriprom1,a,*, Kanyakorn Teanchai2,a, Onanong Chaemlek3,b, Sirisit Sukphirom3,b, Yotsakit Ruangtaweep4,c, Nattapon Srisittipokakun4,c and Jakrapong Kaewkhao4,c 1Faculty of Science at Si Racha, Kasetsart University, Si Racha campus, Chonburi 20230, Thailand 2Material Science and Applied Physics Research Unit, Faculty of Science at Si Racha, Kasetsart University, Si Racha campus, Chonburi 20230, Thailand 3Department of Physics, 1Faculty of Science, Silpakorn University, Nakhon Pathom 73000, Thailand 4Center of Excellence in Glass Technology and Materials Science (CEGM), Nakhon Pathom Rajabhat University, Nakhon Pathom 73000, Thailand aw.siriprom@hotmail.com, bch_onanong@hotmail.com, cmink110@hotmail.com Keywords: Ni2+; Glasses; Soda lime silicate; Optical spectra Abstract.
Nickel oxide (NiO) is used extensively in many areas, such as catalysis, battery electrodes, electrochromic film, gas sensors and magnetic materials.
Acknowledgements The authors wish to thank Plasma for Surface Sciences Laboratory, Thailand Center of Excellence in Physics (ThEP), PERDO, CHE and the Center of Excellence in Glass Technology and Materials Science (CEGM), Nakhon Pathom Rajabhat University to some analytical equipment.
Gupta, Prem Chand, Effect of nickel ions on electron paramagnetic resonance, DC conductivity and thermal behavior in vanadyl doped NiO·Li2O·B2O3 glasses, Materials Chemistry and Physics. 72 (2001) 366–373
Son, A facile synthesis method of hierarchically porous NiO nanosheets, Materials Letters. 69 (2012) 69–71