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Online since: April 2006
Authors: Hong Ming Lin, W.J. Liou, T.Y. Yang, K.N. Lin
Hybrid MOS/CNTs Materials for Gas Sensing
W.
Nano hybrid of TiO2/MWCNTs materials are synthesized via a sol-gel process.
Materials Research, 10, 2842 (1995)
Plenet, Journal of Non-Crystalline Solids, 311(2) (2002) 130-137
Vol. 828 © 2005 Materials Research Society, pp.
Nano hybrid of TiO2/MWCNTs materials are synthesized via a sol-gel process.
Materials Research, 10, 2842 (1995)
Plenet, Journal of Non-Crystalline Solids, 311(2) (2002) 130-137
Vol. 828 © 2005 Materials Research Society, pp.
Online since: August 2014
Authors: Yi Min Wang, Yan Ping Wang, Yu Min Xia, Jia Wang
Introduction
The synthesis of inorganic materials with specific size and morphology has gained intensive attention because of its potential in designing new materials and devices.
Colloid and Polymer Science, 2008 286 1135-1141
Journal of Physical Chemistry B, 2006 110 6432-6436
Journal of Colloid and Interface Science, 2010 352 43-49
Advanced Materials, 2010 22 540-545
Colloid and Polymer Science, 2008 286 1135-1141
Journal of Physical Chemistry B, 2006 110 6432-6436
Journal of Colloid and Interface Science, 2010 352 43-49
Advanced Materials, 2010 22 540-545
Online since: November 2016
Authors: Gui Cheng Wang, Hong Jie Pei, Bin Jiao, Jun Feng Zou
Journal of Materials Science, 2002, 37(18): 3935- 3943
Journal of Engineering Manufacture, 2004, 218(10):1339- 1356
Journal of Manufacturing Process, 2005, 7(1): 1- 9
Materials for Mechanical Engineering, 2012, 36(5):58-61.
Material Science and Engineering, 2011, 34(5): 26-28.
Journal of Engineering Manufacture, 2004, 218(10):1339- 1356
Journal of Manufacturing Process, 2005, 7(1): 1- 9
Materials for Mechanical Engineering, 2012, 36(5):58-61.
Material Science and Engineering, 2011, 34(5): 26-28.
Online since: June 2015
Authors: Daniel Thomazini, André Silva Chaves, Maria Virginia Gelfuso, Olívia de Andrade Raponi
Ross: Materials Science and Engineering A Vol. 130 (1990), p. 119
Koumoto et al: Annual Review of Materials Research Vol. 40 (2010), p. 363
Souza et al: Materials Science and Engineering Vol. 18 (2011), p. 1
Suslick: Advanced Materials Vol. 22 (2010), p. 1039
Chaves et al: Materials Science Forum Vol. 775-776 (2014), p. 445
Koumoto et al: Annual Review of Materials Research Vol. 40 (2010), p. 363
Souza et al: Materials Science and Engineering Vol. 18 (2011), p. 1
Suslick: Advanced Materials Vol. 22 (2010), p. 1039
Chaves et al: Materials Science Forum Vol. 775-776 (2014), p. 445
Online since: March 2011
Authors: Ton van den Boogaard, Pavel Hora, J. Krauer
International Journal of Mechanical Sciences, 37:1295-1305, 1995
Materials Science and Engineering A, 483-484:394-397, 2008
Materials Science and Technology, 20:1506-1512, 2004
International Journal of Mechanical Sciences, 40:173-182, 1998
JSME International Journal, 35:201-209, 1992
Materials Science and Engineering A, 483-484:394-397, 2008
Materials Science and Technology, 20:1506-1512, 2004
International Journal of Mechanical Sciences, 40:173-182, 1998
JSME International Journal, 35:201-209, 1992
Online since: October 2012
Authors: Cheng Xue She, Fu Ting Sun, Qing Ren Jiang
Journal of Materials Processing Technology,2002,123:133-145
International Journal of Rock Mechanics & Mining Science.2010,47:940-948
International Journal of Rock Mechanics & Mining Science.2002,39:789-800
International Journal of Rock Mechanics & Mining Science,2006,43:837-846
International Journal of Rock Mechanics & Mining Science,1997,34:3-4.
International Journal of Rock Mechanics & Mining Science.2010,47:940-948
International Journal of Rock Mechanics & Mining Science.2002,39:789-800
International Journal of Rock Mechanics & Mining Science,2006,43:837-846
International Journal of Rock Mechanics & Mining Science,1997,34:3-4.
Online since: August 2012
Authors: Wen Ke Jia, Wen Yuan, Jiusu Li
Raw materials and the manufacture of modified asphalt
Raw Materials
The raw materials involved in this investigation include low density polyethylene , petroleum resin (C9) and asphalt graded 50#.
Edited by Construction and Building Materials 25 (2011) 2764-2770
Edited by Construction and Building Materials 31 (2012) 265-272
Edited by Journal of Colloid and Interface Science 259 (2003) 200-207
Edited by Construction and Building Materials 23 (2009) 1456-1464.
Edited by Construction and Building Materials 25 (2011) 2764-2770
Edited by Construction and Building Materials 31 (2012) 265-272
Edited by Journal of Colloid and Interface Science 259 (2003) 200-207
Edited by Construction and Building Materials 23 (2009) 1456-1464.
Online since: May 2012
Authors: Xiao Liu, Lei Zhao
In addition, concrete is one of the largest amounts of man-made building materials in the world, consuming lots of human resources.
Humans must develop concrete materials being resource-managing-model, and realize the recycling resource use.
The two materials can improve the steel tube concrete component’s integrity due to their cooperative, complementary and working together, so this structure has good fire-resistance performance.
Journal of New building materials, Vol. 7 (1999), p. 29. in Chinese [7] Bing Wang.
Journal of New building materials, Vol. 12 (2009), p. 23. in Chinese.
Humans must develop concrete materials being resource-managing-model, and realize the recycling resource use.
The two materials can improve the steel tube concrete component’s integrity due to their cooperative, complementary and working together, so this structure has good fire-resistance performance.
Journal of New building materials, Vol. 7 (1999), p. 29. in Chinese [7] Bing Wang.
Journal of New building materials, Vol. 12 (2009), p. 23. in Chinese.
Online since: September 2011
Authors: Rui Wang, Cui Yu Li
The earlier study is mainly mechanical analysis of the structure of textile machine parts, and later gradually is extended to the analysis of fiber, yarn, fabrics and other flexible materials.
The user subroutine is programmed on the basis of Characteristics and performance of materials and is embedded in the main program.
Journal of the Textile Institute, vol. 86(4) (1995), p. 635-648 [3] Kim J H.
Inter J Engng Sci, vol. 38(17) (2000), p. 1895-1906 [5] Li Cuiyu, Zhang Xiaotao, “Multi-scale finite element method and its application,” Advanced Materials Research, vol. 146-147, pp. 1583–1586, (2011) [6] CUI-YU LI, XIAO-TAO ZHANG.
Journal of Tianjin University, vol. 40(1) (2007), p. 46-50
The user subroutine is programmed on the basis of Characteristics and performance of materials and is embedded in the main program.
Journal of the Textile Institute, vol. 86(4) (1995), p. 635-648 [3] Kim J H.
Inter J Engng Sci, vol. 38(17) (2000), p. 1895-1906 [5] Li Cuiyu, Zhang Xiaotao, “Multi-scale finite element method and its application,” Advanced Materials Research, vol. 146-147, pp. 1583–1586, (2011) [6] CUI-YU LI, XIAO-TAO ZHANG.
Journal of Tianjin University, vol. 40(1) (2007), p. 46-50
Online since: October 2010
Authors: Jun Ping Song
Percolation Phenomenon in Thermal Conductivity of Carbon Black Filled Rubber and morphology
Junping Song
Chinese and German College of Science and Technology, Qingdao University of Science and Technology, Qingdao 266061, China
sjpwzj@163.com
Keywords: carbon black; natural rubber; composite; thermal conductivity; percolation; morphology; filler loading
Abstract: A kind of graphitized carbon black 40B2 was incorporated in natural rubber matrix and vulcanizates were prepared.
Experimental Materials.The composition for 100g of natural rubber is as follows: active agent 4.5g, anti-aging protective 2.5g, plasticizing agent 3g, sulfur 1.98g, accelerating agent 1.3g, n-cyclohexylthio-phthelimade 0.08g, and carbon black variable from 4 to 100g.
GT-XB-320M microcomputer specific gravity material balance, of which the precision is g/cm3, was used to measure density of the composite.
References [1] B.Omnès, S.Thuillier, and P.Pilvin: Composites: Part A Vol.39(2008), p.1141 [2]G.T.Mohanraj, T.K.Chaki, and A.Chakraborty: Journal of Applied Polymer Science Vol.92(2004), p.2179 [3] A.R.Azura, Suriati Ghazali, and M.Mariatti: Journal of Applied Polymer Science Vol.110(2008), p.747 [4] Q.Q.Yang, J.Z.Liang: Applied Physics Letters Vol.93(2008) [5]Q.H.Zhang, D.J.Chen: Journal of Materials Science Vol.39(2004), p.1751 [6]L.Shen, Z.Y.Zhang, and J.J.Wang: Polymer Materials Science and Engineering Vol.22(2006), p.107 [7]Y.W.Wong, K.L.Lo, and F.G.Shin: Journal of Applied Polymer Science Vol.82(2001), p.1549 [8]G.M.Nasr, M.M.Badawy, and S.E.Gwaily: Polymer Degradation and Stability Vol.48(1995),p.237 [9]A.Iqbal, L.Frormann, and A.Saleem: Polymer Composites (2007), p.186 [10]J.P.Song, L.X.Ma: Advanced Materials Research,Vol.87-88(2010), p536
Experimental Materials.The composition for 100g of natural rubber is as follows: active agent 4.5g, anti-aging protective 2.5g, plasticizing agent 3g, sulfur 1.98g, accelerating agent 1.3g, n-cyclohexylthio-phthelimade 0.08g, and carbon black variable from 4 to 100g.
GT-XB-320M microcomputer specific gravity material balance, of which the precision is g/cm3, was used to measure density of the composite.
References [1] B.Omnès, S.Thuillier, and P.Pilvin: Composites: Part A Vol.39(2008), p.1141 [2]G.T.Mohanraj, T.K.Chaki, and A.Chakraborty: Journal of Applied Polymer Science Vol.92(2004), p.2179 [3] A.R.Azura, Suriati Ghazali, and M.Mariatti: Journal of Applied Polymer Science Vol.110(2008), p.747 [4] Q.Q.Yang, J.Z.Liang: Applied Physics Letters Vol.93(2008) [5]Q.H.Zhang, D.J.Chen: Journal of Materials Science Vol.39(2004), p.1751 [6]L.Shen, Z.Y.Zhang, and J.J.Wang: Polymer Materials Science and Engineering Vol.22(2006), p.107 [7]Y.W.Wong, K.L.Lo, and F.G.Shin: Journal of Applied Polymer Science Vol.82(2001), p.1549 [8]G.M.Nasr, M.M.Badawy, and S.E.Gwaily: Polymer Degradation and Stability Vol.48(1995),p.237 [9]A.Iqbal, L.Frormann, and A.Saleem: Polymer Composites (2007), p.186 [10]J.P.Song, L.X.Ma: Advanced Materials Research,Vol.87-88(2010), p536