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Online since: November 2013
Authors: Bei Hai He, Yan Na Lv, Jian Zhi Ou, Ya Li Wu
However the strength of the materials will drop a lot accordingly [6-8].
Ilieva: Journal of Cellular Plastics Vol. 45 (2009), p.17-32
Gun’ko, I.F.Mironyuk, V.I.Zarko, E.F.Voronin, and V.V.Turov: Journal of Colloid and Interface Science Vol. 289 (2005), p.427-445
Testing Method of Static Compression for Package Cushioning Materials.
[17] Q.W.Xue, Z.Z.Li, and Z.S.Tai: Journal of Cellulose Science and Technology Vol. 5 (1997), p.41-47
Ilieva: Journal of Cellular Plastics Vol. 45 (2009), p.17-32
Gun’ko, I.F.Mironyuk, V.I.Zarko, E.F.Voronin, and V.V.Turov: Journal of Colloid and Interface Science Vol. 289 (2005), p.427-445
Testing Method of Static Compression for Package Cushioning Materials.
[17] Q.W.Xue, Z.Z.Li, and Z.S.Tai: Journal of Cellulose Science and Technology Vol. 5 (1997), p.41-47
Friction and Wear Characteristics of Cu-Based P/M Brake Friction Materials with Addition of Fe and C
Online since: October 2014
Authors: Mohd Asri Selamat, Talib Ria Jaafar, M.F. Ismail, Z.J. Rusila
Friction and Wear Characteristics Cu-based P/M Brake Friction Materials with Addition of Fe and C
1,2,aR.J.
Introduction Powder metallurgy (P/M) friction materials are normally classified into three types; namely Cu-based, Fe-based and Cu-Fe-based materials [1].
Cu-based P/M friction materials were prepared and the effects of Fe and C friction components on the COF and wear behaviors of the materials were studied and discussed in this work.
Ariff, Wear Mechanism of TiN , TiAlN and TiCN Coated Drills During Drilling of Carbon Steel Journal of Physical Science, Vol 18(1) 2007, 75-85
Azhari, Microstructural characteristics on the surface and subsurface of semimetallic automotive friction materials during braking process Journal of Materials Processing Technology 140 (2003) 694–699
Introduction Powder metallurgy (P/M) friction materials are normally classified into three types; namely Cu-based, Fe-based and Cu-Fe-based materials [1].
Cu-based P/M friction materials were prepared and the effects of Fe and C friction components on the COF and wear behaviors of the materials were studied and discussed in this work.
Ariff, Wear Mechanism of TiN , TiAlN and TiCN Coated Drills During Drilling of Carbon Steel Journal of Physical Science, Vol 18(1) 2007, 75-85
Azhari, Microstructural characteristics on the surface and subsurface of semimetallic automotive friction materials during braking process Journal of Materials Processing Technology 140 (2003) 694–699
Online since: October 2013
Authors: Yong Wei Gao, Qi Liang Zhu, Long Wang
Wind Tunnel Test of Effect of Sound-absorbing material on Lift of Two-element Airfoil
YongWei Gao1,a, QiLiang Zhu2,b and Long Wang3,c
1,2,3National key laboratory of science and technology on aerodynamic design and research, Northwestern Polytechnical University, 710072, Xi’an, P.
Acknowledgments This study is financially supported by China National Natural Science Foundations (Grant No. 10972184).
"Gurney Flap-Lift Enhancement, Mechanisms and Applications," Progress in Aerospace Sciences Vol. 44, No. 1, 2008, pp. 22-47. doi: 10.1016/j.paerosci.2007.10.001 [2] Ahuja, K.
"Effect of Acoustic Excitation on the Flow over a Low-Re Airfoil," Journal of Fluid Mechanics Vol. 182, 1987, pp. 127-148. doi: 10.1017/s0022112087002271 [5] Hsiao, F.
"Control of Wall-Separated Flow by Internal Acoustic Excitation," AIAA Journal Vol. 28, No. 8, 1990, pp. 1440-1446.doi: 10.2514/3.25236 [6] Hsiao, F.
Acknowledgments This study is financially supported by China National Natural Science Foundations (Grant No. 10972184).
"Gurney Flap-Lift Enhancement, Mechanisms and Applications," Progress in Aerospace Sciences Vol. 44, No. 1, 2008, pp. 22-47. doi: 10.1016/j.paerosci.2007.10.001 [2] Ahuja, K.
"Effect of Acoustic Excitation on the Flow over a Low-Re Airfoil," Journal of Fluid Mechanics Vol. 182, 1987, pp. 127-148. doi: 10.1017/s0022112087002271 [5] Hsiao, F.
"Control of Wall-Separated Flow by Internal Acoustic Excitation," AIAA Journal Vol. 28, No. 8, 1990, pp. 1440-1446.doi: 10.2514/3.25236 [6] Hsiao, F.
Online since: January 2012
Authors: Gang Xue, Sai Fei Wang, Chao Yue Zhao, Ran Yu
The results indicated that thermal performance of materials can be adjusted with the chemical composition of materials, and when the mass percentage of carbon nanotubes is 10%, the fractional of 26.77% of energy saving efficiency can be achieved.
1.
Table1 List of the mass ratio of raw materials in the mineral composite materials Reagents Weight percent(%) tourmaline 20 Fe2O3 53.6 MnO2 10 Co2O3 3.2 CeO2 13.2 Table 2 List of the mass of the mineral composite materials and CNTs No.
Liang, et al.: Advanced Materials Research, Vol. 58 (2009), p. 47 [4] W.W.
Liang: Journal of Functional Materials, Vol. 35(2004), p. 2579 [6] D.B.
Science, 1997, 278(5335): 100~103 [8] Dresselhaus M S: Nanotechnology, New tricks with nanotubes.
Table1 List of the mass ratio of raw materials in the mineral composite materials Reagents Weight percent(%) tourmaline 20 Fe2O3 53.6 MnO2 10 Co2O3 3.2 CeO2 13.2 Table 2 List of the mass of the mineral composite materials and CNTs No.
Liang, et al.: Advanced Materials Research, Vol. 58 (2009), p. 47 [4] W.W.
Liang: Journal of Functional Materials, Vol. 35(2004), p. 2579 [6] D.B.
Science, 1997, 278(5335): 100~103 [8] Dresselhaus M S: Nanotechnology, New tricks with nanotubes.
Online since: January 2017
Authors: Xian Wei Wang, Hui Chao Zhang, Xiao Er Wang, Qian Qian Zhu, Dong Li Zheng, Ling Yun Sun
Ng: Journal of Materials Science, Vol. 50 (2015) N.19, p.6313-6320
Manyala: Journal of Materials Science, Vol. 48 (2013) N.19, p.6707-6712
Selladurai: Journal of Materials Science-Materials in Electronics, Vol. 26 (2015) N.11, p.8988-9000
Cu: Journal of Materials Science, Vol. 50 (2015) N.6, p. 2422-2428
Liu: Journal of Materials Science, Vol. 44 (2009) N.11, p. 2828-2835
Manyala: Journal of Materials Science, Vol. 48 (2013) N.19, p.6707-6712
Selladurai: Journal of Materials Science-Materials in Electronics, Vol. 26 (2015) N.11, p.8988-9000
Cu: Journal of Materials Science, Vol. 50 (2015) N.6, p. 2422-2428
Liu: Journal of Materials Science, Vol. 44 (2009) N.11, p. 2828-2835
Online since: February 2019
Authors: L.L. Maslennikova, N.A. Babak, I.A. Naginskii
Optimum compositions of materials made with use of building mineral waste and physical-mechanical characteristics of received materials are given.
Sychov, Absorptive Properties of Hydrate Silicate Building Materials and Products for Quality and Geoecoprotection Improvement, Indian Journal of Science and Technology. 9 (2016) DOI: 10.17485/ijst/2016/v9i42/104231
Troshev, Use of Waste From Aluminothermic Welding of Railroad Tracks in Structural Materials Science, Procedia Engineering. 189 (2017) 94-98. https://doi.org/10.1016/j.proeng.2017.05.016 [16] L.L.
Sychov, Obtaining Foam Concrete Applying Stabilized Foam//Indian Journal of Science and Technology, 9 (2016), DOI: 10.17485/ijst/2016/v9i42/104304
Construction Materials. (2003)
Sychov, Absorptive Properties of Hydrate Silicate Building Materials and Products for Quality and Geoecoprotection Improvement, Indian Journal of Science and Technology. 9 (2016) DOI: 10.17485/ijst/2016/v9i42/104231
Troshev, Use of Waste From Aluminothermic Welding of Railroad Tracks in Structural Materials Science, Procedia Engineering. 189 (2017) 94-98. https://doi.org/10.1016/j.proeng.2017.05.016 [16] L.L.
Sychov, Obtaining Foam Concrete Applying Stabilized Foam//Indian Journal of Science and Technology, 9 (2016), DOI: 10.17485/ijst/2016/v9i42/104304
Construction Materials. (2003)
Online since: February 2018
Authors: Zhao Wen Huang, Wen Ping Xiao, Jing Yang Li, She Jun Hu, Xian Hua Hou
The theoretical capacity is calculated by Eq. 4, where F is Faraday constant, ε is the geometry structural coefficient of materials andis the relative molecular weight of the anode materials.
Therefore, LiSiNi3 conforms to the anode material selection standard and is suitable for anode materials for lithium ion batteries.
Lou, Preparation and performance of Si-Fe composite materials for lithium ion batteries, Journal of Central South University (Science and Technology). 42 (2011) 859-864
Hou, Dead lithium phase investigation of Sn-Zn alloy as anode materials for lithium ion battery, Chinese Science Bulletin. 54 (2009) 1003-1008
Ru, The Roles of Intermediate Phases of Li-Si Alloy as Anode Materials for Lithium-Ion Batteries, Rare Metal Materials and Engineering. 39 (2010) 2079-2083
Therefore, LiSiNi3 conforms to the anode material selection standard and is suitable for anode materials for lithium ion batteries.
Lou, Preparation and performance of Si-Fe composite materials for lithium ion batteries, Journal of Central South University (Science and Technology). 42 (2011) 859-864
Hou, Dead lithium phase investigation of Sn-Zn alloy as anode materials for lithium ion battery, Chinese Science Bulletin. 54 (2009) 1003-1008
Ru, The Roles of Intermediate Phases of Li-Si Alloy as Anode Materials for Lithium-Ion Batteries, Rare Metal Materials and Engineering. 39 (2010) 2079-2083
Online since: February 2012
Authors: Saeed Adibnazari, Samaneh Tashi, Romik Khajehtourian
In many studies, the through thickness graded materials have been more considered than laterally graded materials.
Mechanics of Materials 38, 633–647
International Journal of Mechanical Sciences 49, 161–182
Two dimensional sliding frictional contact of functionally graded materials.
Journal Biomedical Materials Research B 74(2), 732-739
Mechanics of Materials 38, 633–647
International Journal of Mechanical Sciences 49, 161–182
Two dimensional sliding frictional contact of functionally graded materials.
Journal Biomedical Materials Research B 74(2), 732-739
Online since: November 2010
Edited by: Akii Okonigbon Akaehomen Ibhadode
This periodical edition includes peer-reviewed papers based on results of scientific research and engineering solutions in different areas of modern engineering science.
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Online since: May 2013
Edited by: Akii Okonigbon Akaehomen Ibhadode
This periodical edition includes peer-reviewed papers based on results of scientific research and engineering solutions in different areas of modern engineering science.
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering