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Online since: March 2006
Authors: M. El-Hofy
These materials are found wide applications in the field of electronics as a
voltage surge protectors in electric circuits.
Really the exact nature of these roles is hard to assess because it depends on many industrial operations during fabrication of the ceramic; the purity of the raw materials, homogeneity, pressing operation, sintering and thermal regime.
Sirikulrat: Materials Letters Vol. 59 (2005), p. 283 [14] M.
Duran: Journal of the European Ceramic Society Vol. 19 (1999), p. 131 [24] J.
Mazurik: Key Engineering Materials Vol.132- 136(1997), p. 1289
Really the exact nature of these roles is hard to assess because it depends on many industrial operations during fabrication of the ceramic; the purity of the raw materials, homogeneity, pressing operation, sintering and thermal regime.
Sirikulrat: Materials Letters Vol. 59 (2005), p. 283 [14] M.
Duran: Journal of the European Ceramic Society Vol. 19 (1999), p. 131 [24] J.
Mazurik: Key Engineering Materials Vol.132- 136(1997), p. 1289
Online since: June 2014
Authors: Dong Yu Chen, Yan Qing Hu, Qing Yu Liu
Introduction
Renewable resources have gained worldwide momentum because of their availability, easy processability, light weight, non-hazardousness, and sustainability as an alternative to petrochemical materials [1].
Experimental Materials.
This stage is a slow process of materials depolymerization and vitrification transition, and then the degree of polymerization homogenization forms the free radicals and the main functional groups, and release a small amount of small molecular gas [9].
Journal of Zhejiang University, 36(2):172-176,189, (2002), In Chinese [10] G.
Bingjing:Science Press, (2001).
Experimental Materials.
This stage is a slow process of materials depolymerization and vitrification transition, and then the degree of polymerization homogenization forms the free radicals and the main functional groups, and release a small amount of small molecular gas [9].
Journal of Zhejiang University, 36(2):172-176,189, (2002), In Chinese [10] G.
Bingjing:Science Press, (2001).
Online since: September 2014
Authors: Vyacheslav Maksimov, Dmitrii O. Glushkov, Pavel A. Strizhak
Introduction
Investigation of condensed substances ignition conditions at local heating is an actual problem for composite propellants [1–5], combustible forest materials [6–10] and liquid fuels [11–15].
Maksimov, Ignition of Combustible Forest Materials by the Single Particles Heated to High Temperatures, Fire and Explosion Safety, Vol. 21, No. 4 (2012), pp. 13–16 (in Russian)
Maksimov, Ignition of Typical Combustible Forest Materials of Deciduous Breeds by Local Power Source, Fire and Explosion Safety, Vol. 21, No. 6 (2012). pp. 23–28 (in Russian)
Medvedev, On the Ignition of a Layer of Combustible Forest Materials by Light Radiation, Combustion, Explosion, and Shock Waves, Vol. 35, No. 6 (1999), pp. 618–621
Zarko, Ignition of solids, Elsevier Science Publishers, Amsterdam, 1989
Maksimov, Ignition of Combustible Forest Materials by the Single Particles Heated to High Temperatures, Fire and Explosion Safety, Vol. 21, No. 4 (2012), pp. 13–16 (in Russian)
Maksimov, Ignition of Typical Combustible Forest Materials of Deciduous Breeds by Local Power Source, Fire and Explosion Safety, Vol. 21, No. 6 (2012). pp. 23–28 (in Russian)
Medvedev, On the Ignition of a Layer of Combustible Forest Materials by Light Radiation, Combustion, Explosion, and Shock Waves, Vol. 35, No. 6 (1999), pp. 618–621
Zarko, Ignition of solids, Elsevier Science Publishers, Amsterdam, 1989
Online since: December 2011
Authors: Zhi Qian Chen, Qun Hui, Matthew Tucker
Modeling cation distributions of PbZr0.5Ti0.5O3
Qun Hui1, a, Matthew Tucker2, Zhiqian Chen1
1School of Materials Science and Engineering, Southwest University 400715 P.R.
The general RMC analysis method for crystalline materials, as encapsulated within our program RMCprofile, has been described in detail elsewhere [4, 7].
Acknowledgments: Financial support from Chongqing Science and Technology Commission (Grant No.
European Journal of Mineralogy., 14 (2002), 331-348 [8] Allen C.
EXPGUI, Journal of Applied Crystallography., 34 (2001), 210-221 [10] Tucker M G, Dove M T and Keen D A Journal of Applied Crystallography., 34 (2001), 630-638 [11] Goodwin A L, Tucker M G, Cope E R, Dove M T and Keen D A Phys.
The general RMC analysis method for crystalline materials, as encapsulated within our program RMCprofile, has been described in detail elsewhere [4, 7].
Acknowledgments: Financial support from Chongqing Science and Technology Commission (Grant No.
European Journal of Mineralogy., 14 (2002), 331-348 [8] Allen C.
EXPGUI, Journal of Applied Crystallography., 34 (2001), 210-221 [10] Tucker M G, Dove M T and Keen D A Journal of Applied Crystallography., 34 (2001), 630-638 [11] Goodwin A L, Tucker M G, Cope E R, Dove M T and Keen D A Phys.
Online since: March 2013
Authors: Tian Xia Zou, Da Yong Li, Ying Hong Peng, Qiang Ren, Yang Zhao
The whole processing of the UOE pipe production is comprised of nonlinearity of elastic and plastic materials and the geometrical large deformation.
J International Journal of Mechanical Sciences, 2007,49(5):533-553 [2] J.
J Journal of plasticity engineering 2005;12:71-75
J Materials science and technology 2007;15:693-696
J Journal of plasticity engineering 2008;15:45-50.
J International Journal of Mechanical Sciences, 2007,49(5):533-553 [2] J.
J Journal of plasticity engineering 2005;12:71-75
J Materials science and technology 2007;15:693-696
J Journal of plasticity engineering 2008;15:45-50.
Online since: July 2011
Authors: Ju Bao Qu, Sheng Liu, Shu Juan Wang
Journal of Chongqing Normal University(Natural Science), 2010,27(6), p. 69-72, in Chinese
Radar Science and Technology, 2003, 1(3), p. 170–178, in Chinese
Should authors use tables or figures from other Publications, they must ask the corresponding publishers to grant them the right to publish this material in their paper.
Color figures are welcome for the online version of the journal.
Clem: submitted to Journal of Materials Research (2003) [5] P.G.
Radar Science and Technology, 2003, 1(3), p. 170–178, in Chinese
Should authors use tables or figures from other Publications, they must ask the corresponding publishers to grant them the right to publish this material in their paper.
Color figures are welcome for the online version of the journal.
Clem: submitted to Journal of Materials Research (2003) [5] P.G.
Online since: December 2010
Authors: Yue Xu, Peng Liang, Xiang Nan Wu
According to large number of calculations, among the 6 tower programs including two materials (concrete and steel) and three shapes of the mid-tower (‘I’, ‘A’, and upside-down ‘Y’), only the shape of upside-down ‘Y’ steel mid-tower is practical, meeting the three requirements of anti-slipping safety factor between the main cable and saddle, force in the mid-tower and deflection-to-span ratio of main girder.
Journal of Bridge Engineering, 2004, 9(5): 453-463
International Journal of Steel Structures, 2001, 11(1): 50-53
Journal of Shandong University (Engineering Science), 2008, 38(2): 106-111.
Journal of Vibration and Shock, 2008, 27(9): 105-11.
Journal of Bridge Engineering, 2004, 9(5): 453-463
International Journal of Steel Structures, 2001, 11(1): 50-53
Journal of Shandong University (Engineering Science), 2008, 38(2): 106-111.
Journal of Vibration and Shock, 2008, 27(9): 105-11.
Online since: April 2011
Authors: Iker Mancisidor, Zoltan Dombovari, Mikel Zatarain, Jokin Munoa
Under these conditions, the major limitation in the material removal rate are self-excited vibrations.
Journal of Manufacturing Science and Engineering.
Journal of Manufacturing Science and Engineering.
International Journal of Machine Tools and Manufacture.
Journal of Sound and Vibration.
Journal of Manufacturing Science and Engineering.
Journal of Manufacturing Science and Engineering.
International Journal of Machine Tools and Manufacture.
Journal of Sound and Vibration.
Effects of Carbon Nanotubes Incorporation on the Grain Growth and Properties of WC/Co Nanocomposites
Online since: January 2005
Authors: Fa Ming Zhang, Jian Fei Sun, Jun Shen
Effects of Carbon Nanotubes Incorporation on the Grain Growth and
Properties of WC/Co Nanocomposites
Faming Zhang
1, a, Jianfei Sun
b and Jun Shen
c
1
School of Materials Science and Engineering, Harbin Institute of Technology,
Harbin 150001, P.R.China
a
faming.zhang@hit.edu.cn, bjfsun_hit@263.net, cjunshen@public.hr.hl.cn
Keywords: Carbon nanotubes, Nanocomposites, WC/Co, Grain growth, Mechanical Properties.
Carbon nanotubes (CNTs) combining unique mechanical and physical properties could offer a kind of nanosized reinforcements for composite materials.
Introduction Carbon nanotubes (CNTs) have attracted remarkable attention as the ultimate nanosized reinforcement for composite materials because of their exceptional mechanical, thermal and electronic properties [1].
It could be drawn that CNTs have not changed into other types of carbon materials, e.g. graphite, diamond etc. and can be used as reinforcements in spark plasma sintering process.
[5] R.Z.Ma, J.Wu and B.Q.Wei et al: Journal of Materials Science 33(1998)5243-5246
Carbon nanotubes (CNTs) combining unique mechanical and physical properties could offer a kind of nanosized reinforcements for composite materials.
Introduction Carbon nanotubes (CNTs) have attracted remarkable attention as the ultimate nanosized reinforcement for composite materials because of their exceptional mechanical, thermal and electronic properties [1].
It could be drawn that CNTs have not changed into other types of carbon materials, e.g. graphite, diamond etc. and can be used as reinforcements in spark plasma sintering process.
[5] R.Z.Ma, J.Wu and B.Q.Wei et al: Journal of Materials Science 33(1998)5243-5246
Online since: March 2010
Authors: Bin Liu, Man Hua Peng, Yan Hong Feng, Fu Zhen Wang
The Materials for Fused Deposition Modeling
The types and properties of materials directly affect the applicability of the fused deposition modeling
process[4,5,8].
The general materials for FDM include paraffin, nylon, ABS, rubber and multi-phase mixtures such as the mixtures of metal powder, ceramic powder, staple fiber and thermoplastic resin, etc.
All the materials have been in melted state.
[8] Yongnian Yan, Shengjie Li, Renji Zhang, etc: Tsinghua Science & Technology, Vol. 14 (2009), pp. 1-12
[9] Dongsheng Yan, Zhiqing Cao and Gairong Kong: Journal of Beijing University of Chemical Technology, Vol. 30 (2003), pp. 71-73.
The general materials for FDM include paraffin, nylon, ABS, rubber and multi-phase mixtures such as the mixtures of metal powder, ceramic powder, staple fiber and thermoplastic resin, etc.
All the materials have been in melted state.
[8] Yongnian Yan, Shengjie Li, Renji Zhang, etc: Tsinghua Science & Technology, Vol. 14 (2009), pp. 1-12
[9] Dongsheng Yan, Zhiqing Cao and Gairong Kong: Journal of Beijing University of Chemical Technology, Vol. 30 (2003), pp. 71-73.