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Online since: August 2012
Authors: Hélio Lucena Lira, Lisiane Navarro de Lima Santana, Gelmires Araújo Neves, Andréa Lopes Silva, Francisco Kegenaldo Alves de Souza, Romualdo Rodrigues Menezes
Natural clay materials are hydrophilic and therefore they are not efficient sorbents for organic compounds.
Intercalations of natural clay materials, with organic cations, with quaternary ammonium groups may become these clays hydrophobic.
Removal of anionic metals by amino-organoclay for water treatment, Journal of Hazardous Materials Vol. 190 (2011), p. 652–658 [2] ZHU, J., ZHU, L., ZHU, R., CHEN, B.
Journal of Colloid and Interface Science Vol. 280 (2004), p. 27-35 [9] HE, H.; ZHOU, Q.; MARTENS, W.
Journal of Colloid and Interface Science 2008
Intercalations of natural clay materials, with organic cations, with quaternary ammonium groups may become these clays hydrophobic.
Removal of anionic metals by amino-organoclay for water treatment, Journal of Hazardous Materials Vol. 190 (2011), p. 652–658 [2] ZHU, J., ZHU, L., ZHU, R., CHEN, B.
Journal of Colloid and Interface Science Vol. 280 (2004), p. 27-35 [9] HE, H.; ZHOU, Q.; MARTENS, W.
Journal of Colloid and Interface Science 2008
Online since: April 2014
Authors: Li Ping Zhao, Y.Y. Yao, Sheng Hu, Wen Jie Bai
Introduction
Because of the excellent high temperature property, laminated carbon fiber of reinforced composite materials is first choice to be used in many fields such as rocket and aerospace.
The laminated carbon fiber of composite materials are mostly used mechanical needing and weaving technique[2].
This method can improve the mechanical properties of materials in some degree.
Development and Prospect of Advanced Composite Materials, JOURNAL OF MATERIALS ENGINEERING.
Genetics and Information Science of Wuhan University.
The laminated carbon fiber of composite materials are mostly used mechanical needing and weaving technique[2].
This method can improve the mechanical properties of materials in some degree.
Development and Prospect of Advanced Composite Materials, JOURNAL OF MATERIALS ENGINEERING.
Genetics and Information Science of Wuhan University.
Online since: September 2016
Authors: D.O. Pustovoytov, Alexander M. Pesin
A shear-compression specimen for large strain testing of materials was developed by Rittel et al. [19].
Park, Development of severe plastic deformation by various asymmetric rolling processes, Materials Science and Engineering: A. 499 (2009) 14-17
Park, Finite-element analysis of severe plastic deformation in differential-speed rolling, Computational Materials Science. 100 (2015) 61-66
Kim, Finite element analysis of severe deformation in Mg-3Al-1Zn sheets through differential-speed rolling with a high speed ratio, Materials Science and Engineering: A. 454-455 (2007) 570-574
Ohori, Grain refinement of high purity aluminum by asymmetric rolling, Materials Science and Technology. 16 (2000) 1095-1101
Park, Development of severe plastic deformation by various asymmetric rolling processes, Materials Science and Engineering: A. 499 (2009) 14-17
Park, Finite-element analysis of severe plastic deformation in differential-speed rolling, Computational Materials Science. 100 (2015) 61-66
Kim, Finite element analysis of severe deformation in Mg-3Al-1Zn sheets through differential-speed rolling with a high speed ratio, Materials Science and Engineering: A. 454-455 (2007) 570-574
Ohori, Grain refinement of high purity aluminum by asymmetric rolling, Materials Science and Technology. 16 (2000) 1095-1101
Online since: March 2006
Authors: Joon Hong Park, Jong Il Lee, Kwang Suck Boo, Young Choi
To verify our method, the results of the
simulations for several materials such as commercial aluminum alloy and steel will be compared with
those of Vickers hardness tests for the materials.
The results of FE-simulation for the materials are compared with those of experiments.
Commercial aluminum alloy and SCM 415 were selected as the test materials.
Altan: Journal of Materials Processing Technology Vol. 59 (1996), p.113 [3] P.
Tak: International Journal of Mechanical Sciences Vol. 40 No. 4 (1998), p.325 [11] J.
The results of FE-simulation for the materials are compared with those of experiments.
Commercial aluminum alloy and SCM 415 were selected as the test materials.
Altan: Journal of Materials Processing Technology Vol. 59 (1996), p.113 [3] P.
Tak: International Journal of Mechanical Sciences Vol. 40 No. 4 (1998), p.325 [11] J.
Online since: May 2020
Authors: Liana K. Karimova, Alsu I. Akhmetshina, T.R. Deberdeev
Introduction
The continuous development of modern high-technology industries (space, micro- and nanoelectronics, planes, automotive, fuel cells, etc.) is closely related to state-of-the-art investigations of materials and the recent advances in polymer science.
Active research and implementation of polymeric materials almost in all areas of engineering and technology have replaced a plethora of natural and artificial materials.
In this case, neat TA and 4-HBA were used as starting materials.
Kimura, Preparation of poly(p‐oxybenzoyl) crystals using direct polymerization of p‐hydroxybenzoic acid in the presence of boronic anhydrides, Journal of Polymer Science Part A: Polymer Chemistry. 49 (2011) 1088-1096
Wright, Heat-Resistant Polymers: Technologically Useful Materials, Springer science+Business media, New York, 1983
Active research and implementation of polymeric materials almost in all areas of engineering and technology have replaced a plethora of natural and artificial materials.
In this case, neat TA and 4-HBA were used as starting materials.
Kimura, Preparation of poly(p‐oxybenzoyl) crystals using direct polymerization of p‐hydroxybenzoic acid in the presence of boronic anhydrides, Journal of Polymer Science Part A: Polymer Chemistry. 49 (2011) 1088-1096
Wright, Heat-Resistant Polymers: Technologically Useful Materials, Springer science+Business media, New York, 1983
Online since: October 2011
Authors: Ma Ji Luo, Zhi Ping Luo, Chao Liu
Simple models which materials are carbon (C) and Stainless Steel (Fe) are used in testing.
Most materials of PEMFC are Carbonaceous and Stainless steel.
Tsinghua Science and Technology.639-645(2009), p.14 [4] M.
Journal of Power Sources.523–528(2008), p.176 [5] B.
Ma.International Journal of Hydrogen Energy. 2369-2376 (2009), p.34
Most materials of PEMFC are Carbonaceous and Stainless steel.
Tsinghua Science and Technology.639-645(2009), p.14 [4] M.
Journal of Power Sources.523–528(2008), p.176 [5] B.
Ma.International Journal of Hydrogen Energy. 2369-2376 (2009), p.34
Online since: April 2013
Authors: Kah Yoong Chan, Zi Neng Ng, Teck Yong Tou, Jian Wei Hoon
Traditional UV sensors mainly use silicon (Si)-based materials.
Özgür, Zinc Oxide: Fundamentals, Materials and Device Technology: Wiley-VCH, 2009
Knipp, "Zinc oxide films prepared by sol-gel spin coating technique," Applied Physics a-Materials Science & Processing, vol. 104, pp. 263-268, Jul 2011
McLachlan, "Optimised pulsed laser deposition of ZnO thin films on transparent conducting substrates," Journal of Materials Chemistry, vol. 21, pp. 8178-8182, 2011
Mu, "Fabrication and characterization of ZnO film based UV photodetector," Journal of Materials Science: Materials in Electronics, vol. 20, pp. 197-201, 2009
Özgür, Zinc Oxide: Fundamentals, Materials and Device Technology: Wiley-VCH, 2009
Knipp, "Zinc oxide films prepared by sol-gel spin coating technique," Applied Physics a-Materials Science & Processing, vol. 104, pp. 263-268, Jul 2011
McLachlan, "Optimised pulsed laser deposition of ZnO thin films on transparent conducting substrates," Journal of Materials Chemistry, vol. 21, pp. 8178-8182, 2011
Mu, "Fabrication and characterization of ZnO film based UV photodetector," Journal of Materials Science: Materials in Electronics, vol. 20, pp. 197-201, 2009
Online since: July 2012
Authors: Heng Zhang, Zhao Tang Xu, Wen Qian Li, Hua Sun
Materials and Methods
Plant Materials.
Journal of Food Sciences.
Chinese Journal of Foshan University(Natural Science Edition).
Chinese Journal of Xuzhou Normal University (Natural Science Edition) . (2003), p.64-66.
Chinese Journal of Subtropical Plant Science, Vol.32(2003), p. 64-67.
Journal of Food Sciences.
Chinese Journal of Foshan University(Natural Science Edition).
Chinese Journal of Xuzhou Normal University (Natural Science Edition) . (2003), p.64-66.
Chinese Journal of Subtropical Plant Science, Vol.32(2003), p. 64-67.
Online since: October 2010
Authors: Yan Mei Zhu, Jiang Feng Dong, Qingyuan Wang
Construction and Building Materials, 2005, 19: 55-61
Construction and Building Materials, 2006, 20: 901-909
Journal of Sichuan University (Engineering Science Edition), 2009, 41(3): 231-247
Construction and Building Materials, 2008, 22: 277-285
Journal of Materials Processing Technology, 2008, 201: 761-764.
Construction and Building Materials, 2006, 20: 901-909
Journal of Sichuan University (Engineering Science Edition), 2009, 41(3): 231-247
Construction and Building Materials, 2008, 22: 277-285
Journal of Materials Processing Technology, 2008, 201: 761-764.
Online since: April 2015
Authors: Kenzi Suzuki, Chun Shan Li
Van Doorn, Cathodrochromic properties of sodalite, Journal of Applied Physics 43 (1972) 132-137
Van Doorn, Thermal decomposition of sodalites, Journal of The American Ceramics Society 56 (1973) 523-525
Shimada, Oxidative destruction of hydrocarbons on a new zeolite-like crystal of Ca12Al10Si4O35 including O2- and O22- radicals, Chemistry of Materials 15 (2003) 255-263
Masuda, Controlling the quantity of radical oxygen occluded in a new aluminum silicate with nanopores, Chemistry of Materials 15 (2003) 4879-4881
Masuda, Preparation of aluminum silicate, Ca12Al10Si4O35, using waste materials and its activity for combustion of hydrocarbons, Journal of the European Ceramic Society 25 (2005) 3479-3484.
Van Doorn, Thermal decomposition of sodalites, Journal of The American Ceramics Society 56 (1973) 523-525
Shimada, Oxidative destruction of hydrocarbons on a new zeolite-like crystal of Ca12Al10Si4O35 including O2- and O22- radicals, Chemistry of Materials 15 (2003) 255-263
Masuda, Controlling the quantity of radical oxygen occluded in a new aluminum silicate with nanopores, Chemistry of Materials 15 (2003) 4879-4881
Masuda, Preparation of aluminum silicate, Ca12Al10Si4O35, using waste materials and its activity for combustion of hydrocarbons, Journal of the European Ceramic Society 25 (2005) 3479-3484.