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Online since: December 2012
Authors: Mary V. Bastawrous, Ayman A. El-Badawy
Rao: Journal of Sound and Vibration Vol. 75(1):17–36, (1981)
Dokumaci: Journal of Sound and Vibration, Vol. 119(3), (1987), p. 443
Tanaka: Journal of Sound and Vibration, Vol. 207(1) (1997), p. 47
Kaya: International Journal of Engineering Science, Vol. 45, (2007), p. 562
Chae: Journal of Aircraft, Vol. 39, (2002), p. 371
Dokumaci: Journal of Sound and Vibration, Vol. 119(3), (1987), p. 443
Tanaka: Journal of Sound and Vibration, Vol. 207(1) (1997), p. 47
Kaya: International Journal of Engineering Science, Vol. 45, (2007), p. 562
Chae: Journal of Aircraft, Vol. 39, (2002), p. 371
Online since: September 2014
Authors: Alexander Babin, Denis Shutin, Leonid Savin
Process of fluid film bearings improvement goes in several directions: improving existing and developing new manufacturing technology [1]; improving the design featuring new developments, as well as use of new materials [2-5].
Research in this area may be based on use of new materials, newly discovered physical effects, etc.
Whitney, Fluid Film Bearing Materials, Encyclopedia of Tribology, (2013) 1200-1216
Nordmann, Active Vibration μ-Synthesis-Control of a Hydrostatically Ssupported Flexible Beam, Journal of Mechanical Science and Technology, 21 (2007) 924-929
Koskinen, Fuzzy Control Schemes for Active Magnetic Bearings, Lecture Notes in Computer Science, Vol.695 (1993) 137-145
Research in this area may be based on use of new materials, newly discovered physical effects, etc.
Whitney, Fluid Film Bearing Materials, Encyclopedia of Tribology, (2013) 1200-1216
Nordmann, Active Vibration μ-Synthesis-Control of a Hydrostatically Ssupported Flexible Beam, Journal of Mechanical Science and Technology, 21 (2007) 924-929
Koskinen, Fuzzy Control Schemes for Active Magnetic Bearings, Lecture Notes in Computer Science, Vol.695 (1993) 137-145
Online since: August 2011
Authors: Yung Kuan Tseng, Pei Han Wang, Shun Lung Su
Rd., 64002, Douliou, Yunlin, Taiwan, R.O.C.
1Graduate School of Materials Science, National Yunlin University of Science & Technology,
123, Sec. 3, Univ.
Aksay, Science 272, 706 (1998)
-M., Gaol, Chinese Journal of Inorganic Chemistry, P1249-1252, Nov. 2003
Chang, Materials Chemistry and Physics, 80, 257-263 (2003)
Fink, 1968, Journal of Colloids and Interface Science, 26, 62–68.
Aksay, Science 272, 706 (1998)
-M., Gaol, Chinese Journal of Inorganic Chemistry, P1249-1252, Nov. 2003
Chang, Materials Chemistry and Physics, 80, 257-263 (2003)
Fink, 1968, Journal of Colloids and Interface Science, 26, 62–68.
Online since: August 2013
Authors: Hui Shi, Shi Feng Fu, En Feng Zhao, Xiao Ri Han, Ning Liu, Chong Jun Zhou, Muhammad Imran Ashraf, Zhi Bai Hong
Chinese Journal of Applied Ecology. 20(2009), 977-982
Ersoy-meriboyu: Characterization of biochar and bio-oil samples obtained from carbonization of various biomass materials.Renewable Energy. 35(2010), 1319-1324
Chemical Engineering Journal, 197(2012), 295-305
Wu: Adsorption characteristics of ammonium nitrogen by biochar from diverse origins in water, Advanced Materials Research, (644)2013, 305-312
Journal of Agro-Environment Science. 27(2008),1525-1529.
Ersoy-meriboyu: Characterization of biochar and bio-oil samples obtained from carbonization of various biomass materials.Renewable Energy. 35(2010), 1319-1324
Chemical Engineering Journal, 197(2012), 295-305
Wu: Adsorption characteristics of ammonium nitrogen by biochar from diverse origins in water, Advanced Materials Research, (644)2013, 305-312
Journal of Agro-Environment Science. 27(2008),1525-1529.
Thermal Radiation Effect on Non-Newtonian Fluid Flow over a Stretched Sheet of Non-Uniform Thickness
Online since: September 2017
Authors: Oluwole Daniel Makinde, N. Sandeep, Ram Prakash Sharma, K. Avinash
Introduction
In recent years, the convective heat transfer in the flow past an elongated sheet plays a major role because of its tremendous applications in engineering and sciences.
Williamson, The flow of pseudoplastic materials, Ind.
Karwe, Jaluria Y, Numerical simulation of thermal transport associated with a continuously moving flat sheet in materials processing.
[24] O.K.Koriko, A.J.Omowaye, N.Sandeep, I.L.Animasaun, Analysis of boundary layer formed on an upper horizontal surface of a paraboloid of revolution within nanofluid flow in the presence of thermophoresis and Brownian motion of 29 nm, International Journal of Mechanical Sciences, 124-125 (2017) 22-36
Makinde, MHD nanofluid bioconvection due to gyrotactic microorganisms over a convectively heat stretching sheet, International Journal of Thermal Sciences 81 (2014) 118-124.
Williamson, The flow of pseudoplastic materials, Ind.
Karwe, Jaluria Y, Numerical simulation of thermal transport associated with a continuously moving flat sheet in materials processing.
[24] O.K.Koriko, A.J.Omowaye, N.Sandeep, I.L.Animasaun, Analysis of boundary layer formed on an upper horizontal surface of a paraboloid of revolution within nanofluid flow in the presence of thermophoresis and Brownian motion of 29 nm, International Journal of Mechanical Sciences, 124-125 (2017) 22-36
Makinde, MHD nanofluid bioconvection due to gyrotactic microorganisms over a convectively heat stretching sheet, International Journal of Thermal Sciences 81 (2014) 118-124.
The Production of Reduced Graphene Oxide by a Low-Cost Vacuum System for Supercapacitor Applications
Online since: September 2018
Authors: R.N. Faria, Julio César Serafim Casini, Ligia Silverio Vieira, Quezia Cardoso, Solange Kazume Sakata, Franks Martins Silva
GO can be produced using inexpensive graphite as the raw material via cost-effective chemical methods.
The microstructures of the processed materials were investigated using scanning electron microscopy and chemical microanalyses via energy dispersive X-ray analysis.
GO materials are typically reduced using a chemical reagent or by thermal annealing, although many other methods have been employed [3-5].
To reduce graphene oxide, the GO material was placed in a reactor chamber in 200 mg batches.
Rao: International Journal of Nanoscience Vol.4 (4-5) (2011), p. 559
The microstructures of the processed materials were investigated using scanning electron microscopy and chemical microanalyses via energy dispersive X-ray analysis.
GO materials are typically reduced using a chemical reagent or by thermal annealing, although many other methods have been employed [3-5].
To reduce graphene oxide, the GO material was placed in a reactor chamber in 200 mg batches.
Rao: International Journal of Nanoscience Vol.4 (4-5) (2011), p. 559
Arsenic Uptake from Arsenic-Contaminated Water Using Pteris vittata L. and Polystichum craspedosorum
Online since: February 2013
Authors: Hua Ming Guo, Jun Ying Zhao
Materials and Methods
Plant Cultivating and hydroponic equipments.
Fayiga: International Journal of Phytoremediation, vol. 6 (2004), p. 35 [2] F.
Santos: Science of the total environment vol. 364 (2006), p. 24 [4] J.
Parkpian, et al.: Journal of Environmental Science and Health, Part A ,vol. 38(2003), p. 2773 [5] L.
Ma: Journal of hazardous materials, vol. 180 (2010), p. 662 [9] H.Guo, Z.
Fayiga: International Journal of Phytoremediation, vol. 6 (2004), p. 35 [2] F.
Santos: Science of the total environment vol. 364 (2006), p. 24 [4] J.
Parkpian, et al.: Journal of Environmental Science and Health, Part A ,vol. 38(2003), p. 2773 [5] L.
Ma: Journal of hazardous materials, vol. 180 (2010), p. 662 [9] H.Guo, Z.
Online since: May 2011
Authors: Yan Li Shi, Wen Da Wang, Yao Jin, Peng Peng Zhang
Parametric study is carried out with materials of wall panel, strength of steel members, stud spacing, wall height, and screw spacing to analyze the shear-carrying capacity of the walls.
Lu: Journal of Architecture and Civil Engineering.
Nguyen: Journal of Structure Engineering.
Di: Journal of Building Structure.
Zhang: Journal of University of Science and Technology of Suzhou.
Lu: Journal of Architecture and Civil Engineering.
Nguyen: Journal of Structure Engineering.
Di: Journal of Building Structure.
Zhang: Journal of University of Science and Technology of Suzhou.
Online since: April 2011
Authors: Cheng Chen Chen, Che Ming Chiang, Richard S. Horng, Shin Ku Lee
It is often discussed and taken into account in materials selection.
Materials Science and Engineering B Vol. 119, No. 3 (2005), p. 240-245
Simko: Current status of the science and technology of vacuum glazing.
European Journal of Operational Research Vol. 169, No. 1 (2006), p. 1-29
International Journal of Project Management Vol. 24, No. 5 (2006), p. 422-430
Materials Science and Engineering B Vol. 119, No. 3 (2005), p. 240-245
Simko: Current status of the science and technology of vacuum glazing.
European Journal of Operational Research Vol. 169, No. 1 (2006), p. 1-29
International Journal of Project Management Vol. 24, No. 5 (2006), p. 422-430
Online since: December 2013
Authors: Marcus Engelhardt, Friedrich Wilhelm Bach, Wilfried Reimche, N. Grittner
Valberg, Extrusion welding in aluminium extrusion, International Journal of Materials and Product Technology, Vol. 17, No. 7 (2002), pp. 497-556
[5] A.
Tomesani, The effect of die design on the production and seam weld quality of extruded aluminum profiles, Journal of Materials Processing Technology, Vol. 164–165 (2005), pp. 1025–1031 [7] L.
Minak, Characterization of seam weld quality in AA6082 extruded profiles, Journal of Materials Processing Technology, Vol. 191 (2007), pp. 127–131
Imaninejad, Mechanical properties and microstructural characterization of extrusion welds in AA6082-T4, Journal of Materials Science, Vol. 39 (2004), pp. 6561-6569
Moreau, Laser-Ultrasonic Characterization of the Microstructure of Aluminium, Materials Science Forum, Vol. 519-521 (2006), pp. 1373-1378 [21] N.
Tomesani, The effect of die design on the production and seam weld quality of extruded aluminum profiles, Journal of Materials Processing Technology, Vol. 164–165 (2005), pp. 1025–1031 [7] L.
Minak, Characterization of seam weld quality in AA6082 extruded profiles, Journal of Materials Processing Technology, Vol. 191 (2007), pp. 127–131
Imaninejad, Mechanical properties and microstructural characterization of extrusion welds in AA6082-T4, Journal of Materials Science, Vol. 39 (2004), pp. 6561-6569
Moreau, Laser-Ultrasonic Characterization of the Microstructure of Aluminium, Materials Science Forum, Vol. 519-521 (2006), pp. 1373-1378 [21] N.