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Online since: March 2013
Authors: José Rui Camargo, Jamir Machado da Silva, Ederaldo Godoy Junior, Renan Eduardo da Silva
Thermoelectric modules are made of semiconductor materials and sealed between two plates.
Thus, the thermoelectric modules are made by semiconductors materials, sealed between two plates through which a direct current keeps one plate hot and the other cold.
International Journal of Refrigeration 2000; 23:197-207
International Journal of Refrigeration 2000; 23: 208-218
New York: Science and Engineering Interscience Publisher’s, 1961
Thus, the thermoelectric modules are made by semiconductors materials, sealed between two plates through which a direct current keeps one plate hot and the other cold.
International Journal of Refrigeration 2000; 23:197-207
International Journal of Refrigeration 2000; 23: 208-218
New York: Science and Engineering Interscience Publisher’s, 1961
Online since: December 2012
Authors: Ye Fang Li, Jing Zhou Zhang, Xiao Ming Tan
Target wall (solid): the solid material of target wall is steel M50.
Chinese Journal of Aeronautics. 25(2004) 339-342
Journal of Thermal Science and Technology. 8(2009) 1-7
Journal of Aerospace Power. 22(2007): 1417-1422
Journal of Turbomachinery. 123(2001)161-167
Chinese Journal of Aeronautics. 25(2004) 339-342
Journal of Thermal Science and Technology. 8(2009) 1-7
Journal of Aerospace Power. 22(2007): 1417-1422
Journal of Turbomachinery. 123(2001)161-167
Online since: June 2017
Authors: Muhammad Hussain Ismail, Siti Khadijah Alias, Samsiah Ahmad, Muhammad Hafizuddin Jumadin, Bulan Abdullah
A prepared mixture need to be emphasized because when the time increased, unstable mixture as low carbon concentration compound will cause decarburizing toward the materials [9].
International Journal of Materials Science and Applications, 4 (2-1), pp.11-14
Journal of Materials Engineering and Performance, pp. 383-391
Material Research, 12(4), pp.483-87
Innovative Space of Scientific Research Journals, 6(4), pp.pp. 987-994.
International Journal of Materials Science and Applications, 4 (2-1), pp.11-14
Journal of Materials Engineering and Performance, pp. 383-391
Material Research, 12(4), pp.483-87
Innovative Space of Scientific Research Journals, 6(4), pp.pp. 987-994.
Online since: December 2012
Authors: Su Qi, Ye Zhang, Shu Hao Liu, Guang Li Xu
The main factor which leads to this phenomenon is that the increasing mixing ratio leads to the increasing hydrate, better cement raw materials of lightweight soil and fill a greater number of pores.
:Hehai University Journal (natural science edition), 1997(5):106-105
[6] He Guojie, Ding Zhenzhou, Zheng Yingren:Journal of Underground Space and Engineering, 2009.2 (5):18-22
:Journal of Geotechnical Engineering, 2006.28(4):533-536
:Journal of Geotechnical Engineering, 2009.31(1):21-25.
:Hehai University Journal (natural science edition), 1997(5):106-105
[6] He Guojie, Ding Zhenzhou, Zheng Yingren:Journal of Underground Space and Engineering, 2009.2 (5):18-22
:Journal of Geotechnical Engineering, 2006.28(4):533-536
:Journal of Geotechnical Engineering, 2009.31(1):21-25.
Online since: July 2011
Authors: Yong Sheng Liu, Dong Gao
Introduction
Fiber reinforced concrete is now widely concerned as engineering materials.
Basalt fiber is a new kind of fiber, with volcano rock as raw materials, producing by drawing platinum rhodium alloy leak board the fibers, melting in 1450-1500 ℃ melting stove.
Constitutive model for BFRC ZhuZhaoxiang,WangLili and TangZhiping put forward to a nonlinear constitutive model for polymer materials(ZWT model).
Acknowledgement It is a project supported by National Natural Science Foundation of China (51074076) and Natural Science Foundation of Jiangxi, China (2008GQC0050).
Advanced Materials Industry Vol.6(2006):p.65-70, in Chinese [6] Jongsung Sim, Cheolwoo Park, Do Young Moon.
Basalt fiber is a new kind of fiber, with volcano rock as raw materials, producing by drawing platinum rhodium alloy leak board the fibers, melting in 1450-1500 ℃ melting stove.
Constitutive model for BFRC ZhuZhaoxiang,WangLili and TangZhiping put forward to a nonlinear constitutive model for polymer materials(ZWT model).
Acknowledgement It is a project supported by National Natural Science Foundation of China (51074076) and Natural Science Foundation of Jiangxi, China (2008GQC0050).
Advanced Materials Industry Vol.6(2006):p.65-70, in Chinese [6] Jongsung Sim, Cheolwoo Park, Do Young Moon.
Online since: May 2019
Authors: Shijie Zhu, Heng Tong Cheng, Zhen Qiang Song, Kazuhiro Ohyama
In addition, it is made from low-cost materials that can be easily fabricated in large-area sheets.
Clarke, Advanced Materials, 2014 (26) 6617
Clarke, Advanced Functional Materials, 2013 (23) 5056
Oh, Smart materials structures and systems, 2005 (13) 100
Suo, Materials Research Society, 2009 (1218-Z07)-10
Clarke, Advanced Materials, 2014 (26) 6617
Clarke, Advanced Functional Materials, 2013 (23) 5056
Oh, Smart materials structures and systems, 2005 (13) 100
Suo, Materials Research Society, 2009 (1218-Z07)-10
Online since: December 2012
Authors: Jian Ming Yang, Bin Qiao, Hua Qiang Li, Yi Qiang He
In recent years, there are more and more researches on powder injection molding of copper-based materials [1-3].
To prepare SiCp/Cu composite parts with PIM technology opens up a new way for the composite materials.
Esfandeh, Copper injection molding using a thermoplastic binder based on paraffin wax, Materials Letters 59 (2005) 2832-2837
%Cu alloys by powder injection molding, Journal of Materials Processing Technology 210 (2010) 137-142
Kim, Microstructure and mechanical properties of powder-injection-molded products of Cu-based amorphous powders and Fe-based metamorphic powders, Materials Science and Engineering: A 476 (2008) 69-77
To prepare SiCp/Cu composite parts with PIM technology opens up a new way for the composite materials.
Esfandeh, Copper injection molding using a thermoplastic binder based on paraffin wax, Materials Letters 59 (2005) 2832-2837
%Cu alloys by powder injection molding, Journal of Materials Processing Technology 210 (2010) 137-142
Kim, Microstructure and mechanical properties of powder-injection-molded products of Cu-based amorphous powders and Fe-based metamorphic powders, Materials Science and Engineering: A 476 (2008) 69-77
Online since: June 2021
Authors: Ahmed Hassan El Shazly, Ahmed Abd El-Moneim, Marwa F. El Kady, Mohamed Bassyouni, Asmaa Elrasheedy, Mohammed Rabie
of Basic and Applied Sciences, Egypt-Japan University of Science and Technology, New Borg El-Arab, Alexandria 21934, Egypt
8Fabrication Technology Researches Department, Advanced Technology and New Materials Research Institute, City of Scientific Research and technological Applications (SRTA-city), Borg El-Arab City, Alexandria 21934, Egypt.
Electrospinning (ES) is a versatile and simple technique used for fabrication of fibers with diameters down to few nanometers from various materials such as polymeric, ceramic, metallic and composite materials.
Materials and Methods.
The model assumptions were - laminar and steady flow - Temperature independent properties for both fluid and solid materials - No heat losses from the system walls to the boundaries.
Drioli, “A review of polymeric nanocomposite membranes for water purification,” Journal of Industrial and Engineering Chemistry. 2019, doi: 10.1016/j.jiec.2019.01.045
Electrospinning (ES) is a versatile and simple technique used for fabrication of fibers with diameters down to few nanometers from various materials such as polymeric, ceramic, metallic and composite materials.
Materials and Methods.
The model assumptions were - laminar and steady flow - Temperature independent properties for both fluid and solid materials - No heat losses from the system walls to the boundaries.
Drioli, “A review of polymeric nanocomposite membranes for water purification,” Journal of Industrial and Engineering Chemistry. 2019, doi: 10.1016/j.jiec.2019.01.045
Online since: August 2010
Authors: Vinitha Ranganathan, Gopinath Konchady, Krishnapillai Shankar
Hence, performance of the brake system depends mainly on the composition and
microstructure of friction materials [2].
The cured friction materials were ground to Ø 10mm specimens with a uniform thickness of 4mm for testing purposes.
From the above results it is observed that with increase in sliding velocities, the wear resistance of the materials decreased.
The strength of this film depends strongly on the percentages of reinforcing fibres present in the materials [4].
[7] Sinha S K and Biswas S K: Effect of sliding speed on the friction and wear performance of aramid fibre-phenolic resin composite, volume 30 of Journals of Material Science (1995).
The cured friction materials were ground to Ø 10mm specimens with a uniform thickness of 4mm for testing purposes.
From the above results it is observed that with increase in sliding velocities, the wear resistance of the materials decreased.
The strength of this film depends strongly on the percentages of reinforcing fibres present in the materials [4].
[7] Sinha S K and Biswas S K: Effect of sliding speed on the friction and wear performance of aramid fibre-phenolic resin composite, volume 30 of Journals of Material Science (1995).
Online since: May 2014
Authors: Helmut Clemens, Harald Leitner, Werner Puff, Sophie Primig, Gerald Ressel, Peter Parz, Alexander Fian, David Holec
Mechanical alloying (MA) is an established way to prepare nanocrystalline materials and metastable solutions of materials, which normally have no mutual solubility.
An important class of materials produced by mechanical alloying, also called milling, are nanostructured materials and especially oxide dispersion strengthened (ODS) steels [1].
Atom probe investigations were performed on the as-milled powder particles and on as-HIPed materials.
Würschum, Journal of Applied Physics 101 (2007) 123512
Hasegawa, Materials Science and Engineering: A 518 (2009) 150–157
An important class of materials produced by mechanical alloying, also called milling, are nanostructured materials and especially oxide dispersion strengthened (ODS) steels [1].
Atom probe investigations were performed on the as-milled powder particles and on as-HIPed materials.
Würschum, Journal of Applied Physics 101 (2007) 123512
Hasegawa, Materials Science and Engineering: A 518 (2009) 150–157