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Online since: June 2015
Authors: V.K. Bupesh Raja, Rajan Nikhil, S. Prabhu
Applications of Cellular Materials – An Overview
Prabhu.S1,a,*, Bupesh Raja.V.K2,b, Nikhil Rajan3,c
1, 3Department of Mechanical and Production Engineering, Sathyabama University, Chennai, India
2Department of Automobile Engineering, Sathyabama University, Chennai, India
a*prabhuimai@gmail.com, bbupeshvk@gmail.com, crajannikhil@outlook.com
Keywords: Cellular materials, transport industry, building industry, functional applications
Abstract
The research in material science had led to the discovery of new materials; but the real challenge lies in finding suitable application for those materials to be used in various engineering fields.
Art of science, Materials Science-Poland, Vol. 25, No. 3, 2007 [5] B H Smith, S Szyniszewski, J.F.
Arwade, Steel foam for structures: A review of applications, manufacturing and material properties Journal of Constructional Steel Research, 2011
[8] J Manoj Watane, Satyapalt.Warghat, R Roshan Shrirao, Aluminium foam for automobiles:-A review of Manufacturing techniques, Application and Material properties, Review Article International Journal of Pure and Applied Research in Engineering and Technology, 2013; ISSN: 2319-507X, Volume 1(8): 101-112 [9] A Salimon, Y Br´echet, M F Ashby, A L Greer, Potential applications for steel and titanium metal foams, mechanical behaviour of cellular solids, Journal of materials science 40 (2005)5793–5799 [10] G Srinath, Aravind Vadiraj, G.
Logesh, V.K.Bupesh Raja, Investigation of Mechanical Properties of AA8011/PP/AA1100 Sandwich Materials, International Journal of ChemTech Research CODEN (USA), ISSN : 0974-4290, Vol.6, No.3, pp 1749-1752, May-June 2014 [13] John Banhart, Light-metal foams – history of innovation and technological challenges, Advanced Engineering Materials (in press 2013).
Art of science, Materials Science-Poland, Vol. 25, No. 3, 2007 [5] B H Smith, S Szyniszewski, J.F.
Arwade, Steel foam for structures: A review of applications, manufacturing and material properties Journal of Constructional Steel Research, 2011
[8] J Manoj Watane, Satyapalt.Warghat, R Roshan Shrirao, Aluminium foam for automobiles:-A review of Manufacturing techniques, Application and Material properties, Review Article International Journal of Pure and Applied Research in Engineering and Technology, 2013; ISSN: 2319-507X, Volume 1(8): 101-112 [9] A Salimon, Y Br´echet, M F Ashby, A L Greer, Potential applications for steel and titanium metal foams, mechanical behaviour of cellular solids, Journal of materials science 40 (2005)5793–5799 [10] G Srinath, Aravind Vadiraj, G.
Logesh, V.K.Bupesh Raja, Investigation of Mechanical Properties of AA8011/PP/AA1100 Sandwich Materials, International Journal of ChemTech Research CODEN (USA), ISSN : 0974-4290, Vol.6, No.3, pp 1749-1752, May-June 2014 [13] John Banhart, Light-metal foams – history of innovation and technological challenges, Advanced Engineering Materials (in press 2013).
Online since: January 2017
Authors: Yong Liu, Jie Chen
Research Status and Development Trend of High Sand Filling Materials
Yong Liua , Jie Chenb*
Xi’an University of Science and Technology, Xi’an 710054,China
aliuyong.love.com@qq.com, bchenjie363@163.com
Keywords: High sand filling materials, Cement, Packing cost, Filling materials, Circular economy
Abstract.
Aeolian sand is a desert the most abundant and cheap material, is also the important basic materials of the packing material.
Low cost of raw materials, sources, simple processing, low production cost.
Mining backfill formulations from various cementitious and waste materials[J].
Journal of coal science and technology,2003,31(1):51-53
Aeolian sand is a desert the most abundant and cheap material, is also the important basic materials of the packing material.
Low cost of raw materials, sources, simple processing, low production cost.
Mining backfill formulations from various cementitious and waste materials[J].
Journal of coal science and technology,2003,31(1):51-53
Online since: September 2019
Authors: Gennady Konstantinovich Baryshev, Anastasia Kondrateva, Aleksandr Aleksandrovich Barzov, Aleksandr Pavlovich Biryukov, Igor Alexandrovich Tutnov
Effect of thermal and diffusion processes on formation of the structure of weld metal in laser welding of dissimilar materials //Metal science and heat treatment. – 2014. – Т. 55. – №. 9-10. – С. 569-574
Journal of Materials Science, 52(1), 305-313. doi:10.1007/s10853-016-0331-8 [22] Klochkov, Y., Gazizulina, A., Golovin, N., Glushkova, A., & Zh, S. (2018).
Journal of Vacuum Science and Technology B: Nanotechnology and Microelectronics, 36(2), Article number 02C108. doi:10.1116/1.5009906 [32] Bulat, L.
Journal of Electronic Materials, 45(3), 1648-1653. doi:10.1007/s11664-015-4149-y [33] Tavakkoli, M., Kallio, T., Reynaud, O., Nasibulin, A.
Journal of Materials Chemistry A, 4(14), 5216-5222. doi:10.1039/c6ta01472k [34] Frikha, M., Chaâri, N., Derbel, M.
Journal of Materials Science, 52(1), 305-313. doi:10.1007/s10853-016-0331-8 [22] Klochkov, Y., Gazizulina, A., Golovin, N., Glushkova, A., & Zh, S. (2018).
Journal of Vacuum Science and Technology B: Nanotechnology and Microelectronics, 36(2), Article number 02C108. doi:10.1116/1.5009906 [32] Bulat, L.
Journal of Electronic Materials, 45(3), 1648-1653. doi:10.1007/s11664-015-4149-y [33] Tavakkoli, M., Kallio, T., Reynaud, O., Nasibulin, A.
Journal of Materials Chemistry A, 4(14), 5216-5222. doi:10.1039/c6ta01472k [34] Frikha, M., Chaâri, N., Derbel, M.
Online since: September 2019
Authors: Natalya Tyurnina, Sergey I. Sviridov, Olga Yu. Sinelshchikova, Andrei V. Tumarkin, Andrey V. Drozdovskii, Natalya S. Vlasenko, Zoya G. Tyurnina
Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 214, 51-56
Journal of Vacuum Science and Technology B: Nanotechnology and Microelectronics, 36(2)
Materials and Design, 114, 441-449
Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 214, 51-56
Optical Materials, 62, 250-254
Journal of Vacuum Science and Technology B: Nanotechnology and Microelectronics, 36(2)
Materials and Design, 114, 441-449
Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 214, 51-56
Optical Materials, 62, 250-254
Online since: March 2012
Authors: Dong Man Yu, Xiao Jing Li, Zhong Ya Wang
In the rapid development of the computer technology today, the computer simulation has become an efficiency tool for solving practical problems in materials science.
In the rapid development of the computer technology today, the computer simulation has become an efficiency tool for solving practical problems in materials science.
Materials Science and Engineering: A.
Materials & Design.
International Journal of Solids and Structures.
In the rapid development of the computer technology today, the computer simulation has become an efficiency tool for solving practical problems in materials science.
Materials Science and Engineering: A.
Materials & Design.
International Journal of Solids and Structures.
Online since: December 2012
Authors: Gui Jun Shen, Yu Du, Xin Hua
China
axinhuayes@163.com, bshgjdl@yahoo.com.cn, cjiangnan2011@163.com
Keyword: Carbon materials; Carbon based electrodes; Electrochemical analysis
Abstract.The electrochemical properties of traditional carbon materials and applications of these materials based electrodes as well as physical and chemically modified carbon materials electrodes would be reviewed.
A variety of carbon materials have emerged since the 20th century.
Carbon materials substrate electrode Graphite electrode.
Carbon materials modified electrodes Ordered mesoporous carbon modified electrode.
Chung, Review: Graphite, Journal of Materials Science, 37 (2002) 1475-1489
A variety of carbon materials have emerged since the 20th century.
Carbon materials substrate electrode Graphite electrode.
Carbon materials modified electrodes Ordered mesoporous carbon modified electrode.
Chung, Review: Graphite, Journal of Materials Science, 37 (2002) 1475-1489
Online since: September 2013
Authors: Hong Zhang, Wei Hua, Qing Ding Wu
Fig. 9 Fracture morphology of warm compacted CSP/Al composite materials
Conclusions
Warm compacted CSP/Al composite materials and related sliding bearings products mentioned here were prepared employing new technology of wood powder warm compacted formation which was developed based on wood science, ceramimetrallurgy and other inter-disciplines of materials forming theory.
Xiang et al: Chinese Journal of Spectroscopy Laboratory.
Wu: New Building Materials.
Yi: Journal of Chongqing Jiaotong University(Natural Science).
Martins: Journal of materials processing technology, Vol. 101(2000), p. 52-63.
Xiang et al: Chinese Journal of Spectroscopy Laboratory.
Wu: New Building Materials.
Yi: Journal of Chongqing Jiaotong University(Natural Science).
Martins: Journal of materials processing technology, Vol. 101(2000), p. 52-63.
Online since: April 2015
Authors: Hsiu Lu Chiang, Tsu Liang Chou, Tze Chi Hsu, Jing Hong Chen
Surface roughness and magnetic effect of magnetized journal bearings lubricated with ferrofluid
Tze-Chi Hsu1, a, Jing-Hong Chen2, b, Tsu-Liang Chou3, Hsin-Lu Chiang3
1Department of Mechanical Engineering, Yuan-Ze Unversity, Chung-Li 320, Taiwan, ROC
2National Chung-Shan Institute of Science & Technology, P.O.
Ferrofluids are widely applied in bearing systems due to their unique characteristics possessing both the powerful magnetism of solid magnetic materials as well as the liquidity of fluids [1-4].
When λ<0.6, the surface roughness behavior of the journal bearing is similar to the short journal bearing.
When λ>1.8, the surface roughness behavior of the journal bearing is similar to the long journal bearing.
Journal of marine science and technology, Vol.22(2014), No. 2, p. 154-162
Ferrofluids are widely applied in bearing systems due to their unique characteristics possessing both the powerful magnetism of solid magnetic materials as well as the liquidity of fluids [1-4].
When λ<0.6, the surface roughness behavior of the journal bearing is similar to the short journal bearing.
When λ>1.8, the surface roughness behavior of the journal bearing is similar to the long journal bearing.
Journal of marine science and technology, Vol.22(2014), No. 2, p. 154-162
Online since: October 2010
Authors: Ning Zhuang, Wan Jun Ye, Geng She Yang, Xian Li
Treatment Materials for Spalling on Loess Slope
Wanjun Ye1,a, Gengshe Yang1,b,Xian LI 2,c, Ning Zhuang3
1Xi’an University of Science and Technology,Xi’an Shanxi,710054, China,
2Chang’an University,Xi’an Shanxi,710054, China
3Hohai University,Nanjing Jiangsu,210098, China
ayewanjun2004@126.com, byanggs@chd.edu.cn, cdclixa@chd.edu.cn
Keywords: Loess; slope; spalling; treatment materials;test
Abstract.
This paper proposes treatment materials for medium thickness spalling on loess slope.
Conclusions This paper proposes a treatment materials for medium thickness spalling on loess slope.
Journal of Northwest University (Natural Science Edition),Vol. 38 No6. 2(2008),p. 983
Journal of Xi’an university of science and technology, Vol. 28 No4. 2(2008),p. 694.
This paper proposes treatment materials for medium thickness spalling on loess slope.
Conclusions This paper proposes a treatment materials for medium thickness spalling on loess slope.
Journal of Northwest University (Natural Science Edition),Vol. 38 No6. 2(2008),p. 983
Journal of Xi’an university of science and technology, Vol. 28 No4. 2(2008),p. 694.
Online since: June 2011
Authors: Yu Bin Jia, Bin Zhen Zhang, Yin Hua Lei, Qin Wen Huang, Yi Long Hao, Shi Tao Wang
A series of shock experiments were carried out to test the performance of these two materials.
Aluminum foam and metal rubber are believed to be promising cushion materials for microaccelerometer. 1.
Experimental results indicated that aluminum foam and metal rubber provide significant energy absorption capability and have the potential as cushion materials for microaccelerometers. 2 Cushion materials The cushion performance of a material is determined by its cushion efficiency.
Journal of Materials Science,2001, 36: p. 2773-2786
P.: Deformation and energy absorption characteristic of high strength cellular A1 alloy.Chinese Journal of Materials Research, 2002, 16: p. 473-478
Aluminum foam and metal rubber are believed to be promising cushion materials for microaccelerometer. 1.
Experimental results indicated that aluminum foam and metal rubber provide significant energy absorption capability and have the potential as cushion materials for microaccelerometers. 2 Cushion materials The cushion performance of a material is determined by its cushion efficiency.
Journal of Materials Science,2001, 36: p. 2773-2786
P.: Deformation and energy absorption characteristic of high strength cellular A1 alloy.Chinese Journal of Materials Research, 2002, 16: p. 473-478