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Online since: April 2014
Authors: Yao Hong Huang, Yong Chang Guo
China building materials science and technology, 2010(S1):73-77
Journal of Building Materials, 2010(1):94-99
MATERIALS AND STRUCTURES, 1998:247-258
Durability characteristics of concrete columns confined with advanced composite materials[J].
Construction and Building Materials, 1998,12(8):427-446.
Journal of Building Materials, 2010(1):94-99
MATERIALS AND STRUCTURES, 1998:247-258
Durability characteristics of concrete columns confined with advanced composite materials[J].
Construction and Building Materials, 1998,12(8):427-446.
Online since: December 2013
Authors: Shamsul Baharin Jamaludin, Rahmat Azmi, Kasmuin Mohd Zaheruddin, Sri Asliza Md Amin, Khairel Rafezi Ahmad
Journal of Experimental Animal Science, Volume 42, Issue 2, August 2002, Pages102-112
Journal of the mechanical behavior of biomedical materials.
Journal of Colloid and Interface Science.
Progress in Natural Science: Materials International 2012;22(4):318–325
Materials Science and Engineering A293 (2000) 223–228 Materials Science and Engineering A293 (2000) 223–228.
Journal of the mechanical behavior of biomedical materials.
Journal of Colloid and Interface Science.
Progress in Natural Science: Materials International 2012;22(4):318–325
Materials Science and Engineering A293 (2000) 223–228 Materials Science and Engineering A293 (2000) 223–228.
Online since: August 2012
Authors: Alfeu Saraiva Ramos, Marisa Aparecida de Souza, Erika Coaglia Trindade Ramos
Wagner: High Temperature Ordered Intermetallic Alloys Materials Research Society Symposium.
Coelho: Materials Characterization Vol. 56 (2006), p. 107
Calka: Materials Science and Engineering A Vol. 134 (1991), p. 1376 [11].
Matyja: Journal of Materials Science Letters Vol. 12 (1993), p. 3
Suryanarayana: Progress in Materials Science Vol. 46 (2001), p. 1
Coelho: Materials Characterization Vol. 56 (2006), p. 107
Calka: Materials Science and Engineering A Vol. 134 (1991), p. 1376 [11].
Matyja: Journal of Materials Science Letters Vol. 12 (1993), p. 3
Suryanarayana: Progress in Materials Science Vol. 46 (2001), p. 1
Online since: June 2020
Authors: Qing Hao Yang, Yue Zhou, Jie Dong
Ni-MnO2 Synthesized by One-Step Liquid Phase Coprecipitation as Promising Electrode Materials for Supercapacitor
ZHOU Yue a, YANG Qing Haob *and DONG Jiec
School of Materials Science and Engineering, Xi'an University of Science and Technology, Xi'an 710054, China
apoppyue@126.com, byangxjtu@hotmail.com, cdongjie0625@163.com
Keywords: MnO2, nickel doping, supercapacitor
Abstract.
Experimental Synthesis of Materials.
Review of supercapacitors: Materials and devices [J].
The Journal of Physical Chemistry C. 119 (2015) 8465-71
EDP Sciences.
Experimental Synthesis of Materials.
Review of supercapacitors: Materials and devices [J].
The Journal of Physical Chemistry C. 119 (2015) 8465-71
EDP Sciences.
Online since: August 2013
Authors: Jia Xuan Guo, Xu Rong Mei, Yu Zhong Li
Materials and methods
Materials.
Science, Vol. 275(1997), p. 502-509 [2] Y.H.
Journal of Applied Meteorological Science, Vol.22 (2011), p. 356-361(in Chinese) [8] Z.J.
Environmental Science, Vol.31(2010),p. 41-48.
Chinese Journal of Atmospheric Sciences.
Science, Vol. 275(1997), p. 502-509 [2] Y.H.
Journal of Applied Meteorological Science, Vol.22 (2011), p. 356-361(in Chinese) [8] Z.J.
Environmental Science, Vol.31(2010),p. 41-48.
Chinese Journal of Atmospheric Sciences.
Online since: June 2014
Authors: Rui Xue, Hou Qian Xu
Introduction
Pyrotechnic composition is a composite energetic material consisted of combustible agent, oxidant, adhesive and other powdery materials.
Unlike propellant which produces a steady flow field when combusting, combustion of some pyrotechnic materials gives off almost no or little gas products [9,10].
Journal of pyrotechnics archive 2: 45-47
Materials Science and Engineering 465: 199-203
Journal of Shenyang Normal University ( Natural Science) 27: 316-319
Unlike propellant which produces a steady flow field when combusting, combustion of some pyrotechnic materials gives off almost no or little gas products [9,10].
Journal of pyrotechnics archive 2: 45-47
Materials Science and Engineering 465: 199-203
Journal of Shenyang Normal University ( Natural Science) 27: 316-319
Online since: July 2011
Authors: Narayana Suresh, Ramaswamy Jeyalakshmi, Uma Suresh
Previous experience has shown that concrete structures are likely to have a good fire rating than structures made of other materials.
J, Physics and chemistry of photo catalytic Titanium-di-oxide, Current Science, Vol. 90, p. 10
[6] Gai, Fei, Peng, Song-Hua Bian, Construction and Building materials, Vol. 22 (2003), p. 593-599
Zivica, Bull Material Science, Vol. 20 (1997), p. 677-683
[16] V.Antonovich, S.Goberis, The effects of different admixtures on property of refractory concrete with Portland cement ,Materials sciences, Vol. 9, (2003), p. 4
J, Physics and chemistry of photo catalytic Titanium-di-oxide, Current Science, Vol. 90, p. 10
[6] Gai, Fei, Peng, Song-Hua Bian, Construction and Building materials, Vol. 22 (2003), p. 593-599
Zivica, Bull Material Science, Vol. 20 (1997), p. 677-683
[16] V.Antonovich, S.Goberis, The effects of different admixtures on property of refractory concrete with Portland cement ,Materials sciences, Vol. 9, (2003), p. 4
Online since: June 2013
Authors: Guenael Germain, Eric Gildemyn, Mohamed Achouri, Philippe dal Santo, Alain Potiron
Wynn, Design and analysis of computer experiments , Statistical Science, 4 (1989) 409-435
Sacks, Computer experiments for quality control by parameter design, Journal of Quality Technology, 22 (1990) 15-22
Billardon, Évaluation de l'endommagement par mesure de micro-dureté, Comptes Rendus de l'Académie des Sciences, (1987) 601-604 [5] A.
Potiron, Experimental characterization in sheet forming processes by using Vickers micro hardness technique, Journal of Materials Processing Technology, 180 (2006) 1-8
Yang, Ductile fracture: Experiments and computations, International Journal of Plasticity, 27 (2011) 147–180.
Sacks, Computer experiments for quality control by parameter design, Journal of Quality Technology, 22 (1990) 15-22
Billardon, Évaluation de l'endommagement par mesure de micro-dureté, Comptes Rendus de l'Académie des Sciences, (1987) 601-604 [5] A.
Potiron, Experimental characterization in sheet forming processes by using Vickers micro hardness technique, Journal of Materials Processing Technology, 180 (2006) 1-8
Yang, Ductile fracture: Experiments and computations, International Journal of Plasticity, 27 (2011) 147–180.
Online since: October 2013
Authors: Hao Nan Xu, Kun Feng, Ying Wang, Shu Jun Liu
Materials are altered and, in many cases, lose their characteristic properties and structural integrity making it difficult to identify them.
Samples of burned materials need to be taken from the fire scene promptly to ensure as little contamination and loss of volatiles as possible.
Additionally, distributions and species of these compounds are different with materials.
The incidence of ignitable liquid residues in fire debris as determined by a sensitive and comprehensive analytical scheme,Journal of Forensic Sciences,1997,42(5),828-832
Environmental science & technology, 1988, 22(8): 925-930.
Samples of burned materials need to be taken from the fire scene promptly to ensure as little contamination and loss of volatiles as possible.
Additionally, distributions and species of these compounds are different with materials.
The incidence of ignitable liquid residues in fire debris as determined by a sensitive and comprehensive analytical scheme,Journal of Forensic Sciences,1997,42(5),828-832
Environmental science & technology, 1988, 22(8): 925-930.
Online since: October 2015
Authors: Yan Yan Yan, Run Xing Wang, Bo Zhao
Introduction
Single crystal silicon are the important substrate materials of integrated circuits and TR optical materials because of its choiceness properties, such as high mechanical strength, steady chemical property, high refractive index, few dispersion and good optical constants[1].
This paper aims at exploring a new method of precision machining for hard and brittle materials.
So it is necessary to analyze the removal mechanism of hard-brittle materials.
When h is close to critical chip thickness hc, the phenomenon of brittle fracture should produce in materials, and the expression of formula of critical chip thickness is Eq.5: (5) Where ψ is dimensionless constant which is determined by material properties; H is hardness of materials; KIC is fracture toughness of materials.
Tian: Journal of Shandong University of Technology: Science and Technology,Vol. 26(2012)No. 4, pp. 53-55, 60(In Chinese); [6] J.
This paper aims at exploring a new method of precision machining for hard and brittle materials.
So it is necessary to analyze the removal mechanism of hard-brittle materials.
When h is close to critical chip thickness hc, the phenomenon of brittle fracture should produce in materials, and the expression of formula of critical chip thickness is Eq.5: (5) Where ψ is dimensionless constant which is determined by material properties; H is hardness of materials; KIC is fracture toughness of materials.
Tian: Journal of Shandong University of Technology: Science and Technology,Vol. 26(2012)No. 4, pp. 53-55, 60(In Chinese); [6] J.