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Online since: September 2016
Authors: Emmanuel Iwuoha, Priscilla Gloria Lorraine Baker, Siyabulela Hamnca, Meryk Ward, Xolani Terrance Ngema
Aluoch, Smart electrochemical biosensors: From advanced materials to ultrasensitive devices.
Wang, Nanostructured polyamic acid membranes as novel electrode materials.
International Journal of Electrochemical Science. 9, (2014) 736-759
Journal of Hazardous Materials, 201, (2012) 250-259
International Journal of Electrochemical Science, 6, (2011) 1949-1967
Wang, Nanostructured polyamic acid membranes as novel electrode materials.
International Journal of Electrochemical Science. 9, (2014) 736-759
Journal of Hazardous Materials, 201, (2012) 250-259
International Journal of Electrochemical Science, 6, (2011) 1949-1967
Online since: September 2014
Authors: Pavel Hutař, Luboš Náhlík, Bohuslav Máša
Estimation of the crack behaviour in the compressive layer of the alumina-zirconia ceramic laminate
Luboš Náhlík1,2,a *, Bohuslav Máša1,2,b and Pavel Hutař2,c
1Institute of Physics of Materials, Academy of Sciences of the Czech Republic, Dep.
This causes higher apparent fracture toughness of the layered ceramic composite in comparison to the basic materials.
Dlouhý: Journal of the European Ceramic Society, Vol. 32 (2012), p. 2057
Cihlar: Journal of the European Ceramic Society, Vol. 33 (2013), p. 2305
Hutař: Computational Materials Science, Vol. 46 (2009), p. 614
This causes higher apparent fracture toughness of the layered ceramic composite in comparison to the basic materials.
Dlouhý: Journal of the European Ceramic Society, Vol. 32 (2012), p. 2057
Cihlar: Journal of the European Ceramic Society, Vol. 33 (2013), p. 2305
Hutař: Computational Materials Science, Vol. 46 (2009), p. 614
Online since: October 2010
Authors: Corina Täubert, Margret Wohlfahrt-Mehrens, Martin Kreis, Walter Schütz, Alberto Varzi
However, the high irreversible capacity at the first cycle and the poor cycling stability hinder a real application as active materials for anodes.
Raffaelle, Energy & Environmental Science, 2 (2009), 638-654
Zuo-long, New Carbon Materials, 22(4) (2007), 361-364
Yang, Materials Letters, 62 (2008), 3388-3390
Maier, Advanced Materials, 18 (2006), 1421-1426
Raffaelle, Energy & Environmental Science, 2 (2009), 638-654
Zuo-long, New Carbon Materials, 22(4) (2007), 361-364
Yang, Materials Letters, 62 (2008), 3388-3390
Maier, Advanced Materials, 18 (2006), 1421-1426
Online since: March 2019
Authors: Ku Halim Ku Hamid, Hanafiah Zainal Abidin, Habsah Alwi, Jefri Jaafar, Nurul Shazana Mohd Zain
In recent years, the far-infrared drying method has been a very popular alternative method compared to convective for drying a variety of food materials.
Methodology Materials.
International Journal of Food Science & Technology, 273-281
Journal of Food Engineering, 349-359
International Journal of Food Science & Technology, 953-959
Methodology Materials.
International Journal of Food Science & Technology, 273-281
Journal of Food Engineering, 349-359
International Journal of Food Science & Technology, 953-959
Online since: January 2011
Authors: G.J. Shyju, S. Dawn Dharma Roy, C. Sanjeeviraja
Tominaga, Materials Research Bulletin 36 (2001) 1075
Acosta, Solar Energy Materials & Solar Cells 90 (2006) 733
Olvera, Solar Energy Materials & Solar Cells 90 (2006) 2362
Elin Hammarberg , Anna Prodi-Schwab , Claus Feldmann, Journal of Colloid and Interface Science 334 (2009) 29
Ogawa, Materials Research Bulletin 39 (2004) 1821
Acosta, Solar Energy Materials & Solar Cells 90 (2006) 733
Olvera, Solar Energy Materials & Solar Cells 90 (2006) 2362
Elin Hammarberg , Anna Prodi-Schwab , Claus Feldmann, Journal of Colloid and Interface Science 334 (2009) 29
Ogawa, Materials Research Bulletin 39 (2004) 1821
Online since: January 2017
Authors: Shu Wang Duo, Ru Chun Wen, Hao Zhang, Qiang Liu, Ming Yang Yuan, Yuan Ling Wu, Chen Gang Luo
GJJ14558 and KJLD13070), Project of Jiangxi Youth Scientist (No. 20122BCB23031), Innovative Projects for Students of Jiangxi Science and Technology Normal University (Nos. 20150904004 and YC2015-S396) and Scientific & Technological Project of nano functional materials innovation team of Jiangxi Science and Technology Normal University (No. 2015CXTD003), respectively.
Comparison of TiAlN, AlCrN, and AlCrN/TiAlN coatings for cutting-tool applications, International Journal of Minerals, Metallurgy and Materials. 21:8 (2014) 796-805
Influence of Substrate Temperature and Bias Voltage on Structure and Mechanical Properties of CrN Coatings, Key Engineering Materials. 591 (2014) 99-193
A review of adhesion test methods for thin hard coatings, Journal of Vacuum Science and Technology.
Effect of substrate temperature on properties of TiN coatings deposited by arc ion plating, Journal of Northeastern University (Natural Science). 35:S2 (2014) 1-4
Comparison of TiAlN, AlCrN, and AlCrN/TiAlN coatings for cutting-tool applications, International Journal of Minerals, Metallurgy and Materials. 21:8 (2014) 796-805
Influence of Substrate Temperature and Bias Voltage on Structure and Mechanical Properties of CrN Coatings, Key Engineering Materials. 591 (2014) 99-193
A review of adhesion test methods for thin hard coatings, Journal of Vacuum Science and Technology.
Effect of substrate temperature on properties of TiN coatings deposited by arc ion plating, Journal of Northeastern University (Natural Science). 35:S2 (2014) 1-4
Online since: April 2012
Authors: Lei Zhang, Yun Wei Zhao, Zhuo Yang
Material removal mechanism of ER fluid-assisted polishing
The material removal mechanism of the ER fluid-assisted polishing is schematically shown in Fig.1.
Kuriyagawa: International Journal of Machine Tools and Manufacture Vol. 48 (2008), p. 295-306
Wang: Experimentation on MR fluid using a 2-axis wheel tool, Journal of Materials Processing Technology Vol.209 (2009), p. 5254-5261
Khonsari, Thermohydrodynamic Design Charts for Slider Bearings, Journal of Tribology Vol.119(1997), p. 859-869
Lee: Journal of Materials Processing Technology Vol. 155-156 (2004), p. 1293-1299
Kuriyagawa: International Journal of Machine Tools and Manufacture Vol. 48 (2008), p. 295-306
Wang: Experimentation on MR fluid using a 2-axis wheel tool, Journal of Materials Processing Technology Vol.209 (2009), p. 5254-5261
Khonsari, Thermohydrodynamic Design Charts for Slider Bearings, Journal of Tribology Vol.119(1997), p. 859-869
Lee: Journal of Materials Processing Technology Vol. 155-156 (2004), p. 1293-1299
Online since: March 2018
Authors: Mustafa Umut Mutlu, Osman Akin, Ümit Hakan Yildiz, Mustafa M. Demir
Materials and Methods
Chemicals.
International Journal of Polymer Science, 2016. 2016: p. 1-6
Diamond and Related Materials, 2003. 12(8): p. 1295-1299
ADVANCED MATERIALS, 1996. 8(2)
Wendorff, Functional materials by electrospinning of polymers.
International Journal of Polymer Science, 2016. 2016: p. 1-6
Diamond and Related Materials, 2003. 12(8): p. 1295-1299
ADVANCED MATERIALS, 1996. 8(2)
Wendorff, Functional materials by electrospinning of polymers.
Online since: February 2024
Authors: Jeremiah C. Millare, Jianne Christian T. Enriquez, Louelle Kate M. Domingo, Vivian U. Lagura
Lagura2,3,c
1School of Chemical, Biological, Materials Engineering and Sciences, Mapua University, 658 Muralla St., Intramuros, Manila 1002, Philippines
2School of Graduate Studies, Mapua University, 658 Muralla St., Intramuros, Manila 1002, Philippines
3Department of Science and Technology – Industrial Technology Development Institute, DOST Compd., Gen.
Methodology Materials.
The materials used to fabricate the nanocomposite membranes were Polysulfone (PSf) pellets (MW 3500 g/mol) and zeolite nanoparticles/nanozeolite provided by Department of Science and Technology - Industrial Technology Development Institute - Materials Science Division (DOST-ITDI-MSD) and N-Methyl-2-pyrrolidone (NMP) from the Department of Institutional Laboratory Management Office (ILMO), Mapua University.
Millare in: Self-Healing of Epoxy-Loaded Halloysite Nanotubes/Polysulfone Nanocomposite Membrane, Materials Science Forum 1053, 91-97 (2022) [6] T.A.
Mohsenzadeh in: Experimental Studies and Toughening Mechanisms of PA/Zeolite Nanocomposites, Journal of Mechanical Engineering Science (2021) [13] A.A.
Methodology Materials.
The materials used to fabricate the nanocomposite membranes were Polysulfone (PSf) pellets (MW 3500 g/mol) and zeolite nanoparticles/nanozeolite provided by Department of Science and Technology - Industrial Technology Development Institute - Materials Science Division (DOST-ITDI-MSD) and N-Methyl-2-pyrrolidone (NMP) from the Department of Institutional Laboratory Management Office (ILMO), Mapua University.
Millare in: Self-Healing of Epoxy-Loaded Halloysite Nanotubes/Polysulfone Nanocomposite Membrane, Materials Science Forum 1053, 91-97 (2022) [6] T.A.
Mohsenzadeh in: Experimental Studies and Toughening Mechanisms of PA/Zeolite Nanocomposites, Journal of Mechanical Engineering Science (2021) [13] A.A.
Online since: September 2013
Authors: Sheng Xue Qin, Lin Jing Xiao, Shu Mei Lou, Guo Liang Xing
The diameter and length of the billet is 210mm*70mm, the material is AA 6061.
DI , S.H.Zhang: JOURNAL OF PLASTICITY ENGINEERING Vol.16(12) (2009): p.123-127 [3] E.
Giardini: International Journal of Material Forming Vol.2 (Suppl 1) (2009): p.101–104 [4]Y.A.
Valberg: International Journal of Material Forming Vol.3 (Suppl 1) (2010): p.383-386 [5]Y.A.
International Journal of Material Forming Vol.3 (Suppl 1) (2010): p.379-382 [6] L.Donati, L.Tomesani: Journal of Materials Processing Technology Vol(153–154) (2004): p.366-373 [7] Tian Xiaofeng, Zheng Qifei, Xie Shuisheng, Wang Guohui, Cao Liya: CHINESE JOURNAL OF RARE METALS Vol. 26(5) (2002): p 9-11
DI , S.H.Zhang: JOURNAL OF PLASTICITY ENGINEERING Vol.16(12) (2009): p.123-127 [3] E.
Giardini: International Journal of Material Forming Vol.2 (Suppl 1) (2009): p.101–104 [4]Y.A.
Valberg: International Journal of Material Forming Vol.3 (Suppl 1) (2010): p.383-386 [5]Y.A.
International Journal of Material Forming Vol.3 (Suppl 1) (2010): p.379-382 [6] L.Donati, L.Tomesani: Journal of Materials Processing Technology Vol(153–154) (2004): p.366-373 [7] Tian Xiaofeng, Zheng Qifei, Xie Shuisheng, Wang Guohui, Cao Liya: CHINESE JOURNAL OF RARE METALS Vol. 26(5) (2002): p 9-11