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Online since: October 2014
Authors: Wei Guang Ping, Xi Chen, Wen Xia Zhou, Tuo Ping Hu, Jian Feng Gao
Resin D301 was surface-carbonized to obtain the surface charring materials (CD301).
Experimental section Materials and Equipment.
Journal of Hazardous Materials, 2010, 173: 462-467
Journal of Hazardous Materials, 2012, 213-214: 258-264
Materials Letters, 2008, 62: 394-397
Experimental section Materials and Equipment.
Journal of Hazardous Materials, 2010, 173: 462-467
Journal of Hazardous Materials, 2012, 213-214: 258-264
Materials Letters, 2008, 62: 394-397
Online since: May 2015
Authors: Yu Hua Chen, Ji Lin Xie, Wei Huai Gong
But large differences in physical and chemical properties between the two materials make the dissimilar welding complex and difficult, especially when the thickness of the materials is micron level.
References [1] Predki W, Knopik A, Bauer B, Engineering applications of NiTi shape memory alloys, Materials Science and Engineering A, 481(2008) 482-598
[2] Gugel H, Schuermann A, Theisen W, Laser welding of NiTi wires , Materials Science and Engineering A, 482(2008)668-671
[7] Wang Y L, Li H, Li Z X, Feng J C, Research on transient liquid phase diffusion bonding process of TiNi shape memory alloy to stainless steel, Journal of Material Engineering, (2008)48-51
Rare Metal Materials and Engineering, 40(2011)1382-1386
References [1] Predki W, Knopik A, Bauer B, Engineering applications of NiTi shape memory alloys, Materials Science and Engineering A, 481(2008) 482-598
[2] Gugel H, Schuermann A, Theisen W, Laser welding of NiTi wires , Materials Science and Engineering A, 482(2008)668-671
[7] Wang Y L, Li H, Li Z X, Feng J C, Research on transient liquid phase diffusion bonding process of TiNi shape memory alloy to stainless steel, Journal of Material Engineering, (2008)48-51
Rare Metal Materials and Engineering, 40(2011)1382-1386
Online since: August 2013
Authors: Yang Liu, Qian Shi
Beijing University of Technology (Social Sciences), Vol. 3 (2007), p. 44-46
Management Science, Vol. 25 (2005), p. 29-35
Journal of Construction Engineering and Management, ASCE, Vol. 3 (1990) p. 533 - 546
International Journal of Project Management, Vol. 3 (1996), p. 185- 186
Advances in Psychological Science, Vol. 4 (2003), p. 375-381
Management Science, Vol. 25 (2005), p. 29-35
Journal of Construction Engineering and Management, ASCE, Vol. 3 (1990) p. 533 - 546
International Journal of Project Management, Vol. 3 (1996), p. 185- 186
Advances in Psychological Science, Vol. 4 (2003), p. 375-381
Online since: July 2022
Authors: Olga Skorodumova, Olena Tarakhno, Andrey Sharshanov, Atabala M. Babayev
Materials Science Forum, 1038 (2021) 460-467
Materials Science Forum, 1038 (2021) 235-241
Materials Science Forum, 1038 (2021) 468-479
Materials Science Forum, 1006 (2020) 70-75
Materials Science Forum, 1006 (2020) 25-31
Materials Science Forum, 1038 (2021) 235-241
Materials Science Forum, 1038 (2021) 468-479
Materials Science Forum, 1006 (2020) 70-75
Materials Science Forum, 1006 (2020) 25-31
Online since: July 2012
Authors: Xia Liu, Ning Shan, Yong Zhong Ma
Its metal materials components often fall under times alternate stress in the using process.
Fig.1 Optical fiber F-P sensing system Ultrasound detecting theory and experiment devices If metal materials have internal defects, the internal medium of materials will come into being discontinuity.
Composites Science and Technology, 2008, 38(15-16): 3093~3098
Composites Science and Technology, 2006, 66(5):676~683
Journal of optoelectronics.
Fig.1 Optical fiber F-P sensing system Ultrasound detecting theory and experiment devices If metal materials have internal defects, the internal medium of materials will come into being discontinuity.
Composites Science and Technology, 2008, 38(15-16): 3093~3098
Composites Science and Technology, 2006, 66(5):676~683
Journal of optoelectronics.
Online since: September 2013
Authors: Jian Hui Li, Zu Jian Yu, Da Zhi Xiao, Li Ping Zhang
Materials Science and Engineering: A. 2008, Vol.490: 171-180
Journal of Materials Processing Technology. 2006, Vol. 171: 480-487
Progress in Materials Science. 2000, Vol.45: 103-189
Materials Science and Engineering: A. 2011, Vol.528: 8198-8204
Materials Science and Engineering: A, 2007, 458(1-2): 226-234.
Journal of Materials Processing Technology. 2006, Vol. 171: 480-487
Progress in Materials Science. 2000, Vol.45: 103-189
Materials Science and Engineering: A. 2011, Vol.528: 8198-8204
Materials Science and Engineering: A, 2007, 458(1-2): 226-234.
Online since: July 2021
Authors: Made Ery Arsana, I Nyoman Suamir, Sudirman Sudirman, I Wayan Temaja, Ida Bagus Gde Widiantara
This research aims to make composite materials from used plastics, clay materials, and charcoal.
Clay and charcoal materials is commonly used for ceramic materials that can improve the strength of ceramics [10].
The investigated composite materials are expected to be alternative materials for roof and wall materials.
Law, Production, use, and fate of all plastics ever made, Science Advances, 3(7) (2017) 25–29
Vuono, Chiappetta F, Concrete products with waste’s plastic material (bottle, glass, plate), Materials Science Forum, 514–516(PART2) (2006) 1753–1757
Clay and charcoal materials is commonly used for ceramic materials that can improve the strength of ceramics [10].
The investigated composite materials are expected to be alternative materials for roof and wall materials.
Law, Production, use, and fate of all plastics ever made, Science Advances, 3(7) (2017) 25–29
Vuono, Chiappetta F, Concrete products with waste’s plastic material (bottle, glass, plate), Materials Science Forum, 514–516(PART2) (2006) 1753–1757
Online since: August 2011
Authors: Zhi Ming Feng, Zhen Kai Zhao, Yan Pei Song
Primary Study of Wear-resistance characters of the Recycled Composite materials
Zhiming Feng, Yanpei Song, Zhenkai Zhao
School of Material Science and Engineering, Henan University of Science and Technology, Luoyang 471003, China
aemail:fzmhao@163.com, bemail: sypei@mail.haust.edu.cn, cemail: zhaozhenkai@gmail.com
Keywords: Recycled composite materials, centrifugal casting, friction property
Abstract.
If scrapped composites collars can be recycled, the availability of composite materials may be greatly improved and the cost will be also reduced.
Experimental details The experimental materials were from the recycled WCp reinforced ferrous composite materials.
Journal of mechanical engineering, 2001, 37 ( 11) : 99.
Aplication of WC/Fe-C composites by Centrifugal casting.Journal of Functional Materials, 2004, 6(35): 761.
If scrapped composites collars can be recycled, the availability of composite materials may be greatly improved and the cost will be also reduced.
Experimental details The experimental materials were from the recycled WCp reinforced ferrous composite materials.
Journal of mechanical engineering, 2001, 37 ( 11) : 99.
Aplication of WC/Fe-C composites by Centrifugal casting.Journal of Functional Materials, 2004, 6(35): 761.
Online since: September 2013
Authors: Josip Brnic, Marko Canadija, Marino Brcic
Lu: Progress in Polymer Science 33 (2008), p.191
[7] S.
Chandra: Journal of Engineering Materials and Technology 127 (2005), p.222 [8] K.I.
Brnic: Reviews on Advanced Materials Science 33 (2013), p.1 [14] M.
Liu: Computational Materials Science 29 (2004), p.1 [16] K.J.
Jones: Mechanics of Composite Materials, second ed. (1999), Taylor & Francis, Philadelphia.
Chandra: Journal of Engineering Materials and Technology 127 (2005), p.222 [8] K.I.
Brnic: Reviews on Advanced Materials Science 33 (2013), p.1 [14] M.
Liu: Computational Materials Science 29 (2004), p.1 [16] K.J.
Jones: Mechanics of Composite Materials, second ed. (1999), Taylor & Francis, Philadelphia.
Online since: October 2014
Authors: Hong Yun Chen, Cong Bin Fan
Progress in the studies of multifunctional triphenylamine materials
Hongyun Chena* and Congbin Fanb
School of Chemistry & Chemical Engineering, Jiangxi Science & Technology Normal University, Nanchang 330013; China
aEmail:136169501@qq.com
Keywords: triphenylamine, photoelectric conversion, electrochromism, optical limiting, chemical sensing
Abstract.
Triphenylamine for solar cell materials.
Electroluminescent properties Triphenylamine derivatives as blue luminescent materials, is a kind of organic electric have potential applications in luminescence materials.
Because the triphenylamine and transition metal complexes with luminescent characteristics of good, some scholars will be three aniline metal complexes used as electroluminescent materials.
Therefore, three aniline derivatives as electroluminescent materials have potential applications .
Triphenylamine for solar cell materials.
Electroluminescent properties Triphenylamine derivatives as blue luminescent materials, is a kind of organic electric have potential applications in luminescence materials.
Because the triphenylamine and transition metal complexes with luminescent characteristics of good, some scholars will be three aniline metal complexes used as electroluminescent materials.
Therefore, three aniline derivatives as electroluminescent materials have potential applications .