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Online since: June 2014
Authors: Zurina Mohamad, Hossein Cheraghi Bidsorkhi
The extruded materials were injection moulded using multi specimen mould into standard tensile and LOI specimens.
Materials Science and Engineering: A, 2007. 445: p. 725-730
The Journal of Physical Chemistry C, 2012
Journal of applied polymer science, 2006. 99(5): p. 2163-2166
Journal of Applied Polymer Science, 2011. 121(5): p. 2772-2777.
Materials Science and Engineering: A, 2007. 445: p. 725-730
The Journal of Physical Chemistry C, 2012
Journal of applied polymer science, 2006. 99(5): p. 2163-2166
Journal of Applied Polymer Science, 2011. 121(5): p. 2772-2777.
Online since: December 2012
Authors: Xiao Dong Wang, Li Chao Wang
Furthermore, factors of geometry and material properties, which limit the ultimate pressure, are analyzed.
Journal of Biomechanics.
European Journal of Mechanical and Environmental Engineering.
International Journal of Fluid Power.
Journal of Polymer Science: Part B: Polymer Physics.
Journal of Biomechanics.
European Journal of Mechanical and Environmental Engineering.
International Journal of Fluid Power.
Journal of Polymer Science: Part B: Polymer Physics.
Online since: January 2021
Authors: Jaksada Thumrongvut, Apichat Tipcharoen, Kamonwan Prathumwong
Materials Science Forum, 941(2018) 2417-2422
Materials Science Forum, 860 (2016) 121-124
Construction and Building Materials, 95 (2015) 74-85
Construction and Building Materials, 15 (2001) 9-15
Journal of Materials in Civil Engineering, 8(4) (1996) 189-194
Materials Science Forum, 860 (2016) 121-124
Construction and Building Materials, 95 (2015) 74-85
Construction and Building Materials, 15 (2001) 9-15
Journal of Materials in Civil Engineering, 8(4) (1996) 189-194
Online since: October 2010
Authors: Luca Lutterotti, Daniel Chateigner, Philippe Blanchart, Sarah Deniel, Hans Rudolf Wenk
Materials Engineering, University of Trento, via Mesiano 77, 38123 Trento, Italy
4Dept.
However, whatever the orientation procedure, quantifying the texture quantitatively is often a problem in such ceramic materials, mainly due to the presence of amorphous phases.
Experimental Materials.
Raw disks were then dried between 2 flat and porous materials to sinter them using a 5°C/min heating rate and a maximum temperature of 1410°C maintained during 2h.
The centrifugation process can then exhibit reasonably good capabilities to orient mullite needles in materials from clay mineral suspensions, at least at levels comparable to the ones induced using moderate uniaxial pressures.
However, whatever the orientation procedure, quantifying the texture quantitatively is often a problem in such ceramic materials, mainly due to the presence of amorphous phases.
Experimental Materials.
Raw disks were then dried between 2 flat and porous materials to sinter them using a 5°C/min heating rate and a maximum temperature of 1410°C maintained during 2h.
The centrifugation process can then exhibit reasonably good capabilities to orient mullite needles in materials from clay mineral suspensions, at least at levels comparable to the ones induced using moderate uniaxial pressures.
Online since: November 2010
Authors: Hua Yan Chen, Shu Sheng Xu, Xiang Guo Zeng
Kotrechko et al.[6], investigated the fracture
process of nano crystal materials under axial tension.
They obtained the growth mechanism on the front of a crack and the fracture procedure in both bcc and fcc materials.
Metallic Functional Materials. 2008,15: 39-42 (in Chinese)
Computational Materials Science. 2004,31: 269-278
Journal of molecular graphics, 1996, 14: 33-38.
They obtained the growth mechanism on the front of a crack and the fracture procedure in both bcc and fcc materials.
Metallic Functional Materials. 2008,15: 39-42 (in Chinese)
Computational Materials Science. 2004,31: 269-278
Journal of molecular graphics, 1996, 14: 33-38.
Online since: February 2011
Authors: Zuhailawati Hussain, Siti Zalifah Md Rasib
Suryanarayana, Chapter 4, Mechanical Alloying, Pergamon Materials Series Volume 2, Pergamon, 1999, pp. 49-85
Hu: Materials Letters 28(1996) 129-132
Sueyoshi: Journal of Materials Processing Technology 138(2003) 41-46
Jamaludin: Journal of Materials Engineering and Performance 18(2009) 1258-1263
Marashi: Materials Science and Engineering: A 492(2008) 134-140
Hu: Materials Letters 28(1996) 129-132
Sueyoshi: Journal of Materials Processing Technology 138(2003) 41-46
Jamaludin: Journal of Materials Engineering and Performance 18(2009) 1258-1263
Marashi: Materials Science and Engineering: A 492(2008) 134-140
Online since: July 2021
Authors: Zaid K. Alkaabi
This innovation is utilized with relationship to hardware, optics, biomedical and sciences of materials.
Materials and Method The ZnO nanoparticles were prepared by biological method which is easy and safety method.
The Journal of Physical Chemistry B 108.26 (2004): 8773-8777
Journal of applied physics 99.2 (2006): 024303
Advanced Functional Materials 14.10 (2004): 943-956
Materials and Method The ZnO nanoparticles were prepared by biological method which is easy and safety method.
The Journal of Physical Chemistry B 108.26 (2004): 8773-8777
Journal of applied physics 99.2 (2006): 024303
Advanced Functional Materials 14.10 (2004): 943-956
Online since: November 2012
Authors: Xin Chen, Gong Pei Pang, Hui Ping Lv, Ming Hui Feng, Xiang Zhang
Raw materials of firework: aluminum powder and sulfur powder (industrial product), igniting wire, firework paper tube (outer diameter 10mm, inner diameter 8mm, height 25mm, bottom layer).
The materials are provided by Hua An Reagents of Firework Science and Technology Limited Company in Liuyang, Hunan Province.
Journal of Thermal Analysis and Calorimetry, 2001, 65(2):323-334
Chinese Journal of Energetic Materials, 2011,19(6) :646-649 [3] Shiro shimada.
Chinese Journal of Energetic Materials, 2007,15(1):29-32 [6] QIAN Xinming, DENG Nan, WEI Sifan.
The materials are provided by Hua An Reagents of Firework Science and Technology Limited Company in Liuyang, Hunan Province.
Journal of Thermal Analysis and Calorimetry, 2001, 65(2):323-334
Chinese Journal of Energetic Materials, 2011,19(6) :646-649 [3] Shiro shimada.
Chinese Journal of Energetic Materials, 2007,15(1):29-32 [6] QIAN Xinming, DENG Nan, WEI Sifan.
Online since: November 2020
Authors: Sunday Albert Lawal, Oladiran Kamardeen Abubakre, Ambali Saka Abdulkareem, Rasheed Aremu Muriana, Rasaq Olawale Medupin
Materials and Methods
2.1.
Translational Materials Research, 2 026001 (2015)
Lockwood, Dispersion of carbon nanotubes in liquids, Journal of Dispersion Science and Technology. 24(1) (2013) 1-41
Journal, 26 (2017) 453-466
Rieumont, Mechanical properties of epoxy networks based on OGEBA and aliphatic amines, Journal of Applied Polymer Science, 106 (2007) 2047-2055
Translational Materials Research, 2 026001 (2015)
Lockwood, Dispersion of carbon nanotubes in liquids, Journal of Dispersion Science and Technology. 24(1) (2013) 1-41
Journal, 26 (2017) 453-466
Rieumont, Mechanical properties of epoxy networks based on OGEBA and aliphatic amines, Journal of Applied Polymer Science, 106 (2007) 2047-2055
Online since: December 2011
Authors: Hong Bo Zhang, Yi Min Wang, Dong Dong Fan, Chun Hui Su
To improve luminescent intensity of Sm3+, series of host materials were prepared and studied .Shi Pengtu[2] studied the luminescence properties of CaO-SiO2-B2O3 glass doped with Sm3+ .
Ye Renguan[4] prepared a Eu2+/Sm3+ co-doped silicate glass and the result of the experiment indicate it to be a potential materials for white light-emitting diodes (WLED).Sun Ting [5] proved an organic material HTTA a good ligand of Sm3+ for red fluorescence.
Very strong luminescence at around 599nm is observed in glass-ceramics , This indicates glass-ceramics a better host for Sm3+ than precursor glass and a hopeful laser material.
References [1] Haiyan Jiao, Yuhua Wang, Jiachi Zhang: Journal of Inorgnic Material Vol.23-3 (2008), p.471,in Chinese [2] Pengtu Shi, Xiaosu Xiong, Hongjun Chen, Huiyan Liu, Yimin Cheng: Chinese Rare Earth Vol.31-2 (2010), p.1,in Chinese [3] Baoxiang La,Yao Han, Bingyu Lu, Yuhua Lu: , Chinese Journal of Luminescence Vol.14-1(1993),p.53,in Chinese [4] Renguang Ye, Shiqing Xu, Youjie Hua, Zhiguang Cui, Degang Deng, Huanping Wang, Shilong Zhao, Lihui Huang: Acta Optica Sinica Vol.30-7 (2008), p.1878,in Chinese [5] Sun Ting, Yaoxiang Wang, Weijian Tian, Xinglong Zhang, Huixia Yu, Lili Wang, Changqing Huang, Min Jing:Acta Optica Sinica Vol.34-11 (2005), p.1654,in Chinese [6] Huaidong Jin, Weidong Xiang, Xiaojuan Liang, Haiyu Huang, Wei Hua, Yongjun Dong:Journal of the Chinese Society of Rare Earth Vol.29-3 (2011), p.331,in Chinese [7] Jinshu Cheng, Peijing Tian, Liying Tang, Jian Quan:Journal of the Chinese Ceramic Society Vol.36-7(2008),p.1013,in Chinese [8] Peijing Tian, Gaoke Zhang
, Ye Liu: Journal of Wuhan University of Technology Vol.33-8(2010),p.56,in Chinese [9] Hongbo Zhang, Ping Wu, Chunhui Su, Xiangyu Zou, Yimin Wang:The 7th Function Meterial and Application Academic Conference (China,2010)
Ye Renguan[4] prepared a Eu2+/Sm3+ co-doped silicate glass and the result of the experiment indicate it to be a potential materials for white light-emitting diodes (WLED).Sun Ting [5] proved an organic material HTTA a good ligand of Sm3+ for red fluorescence.
Very strong luminescence at around 599nm is observed in glass-ceramics , This indicates glass-ceramics a better host for Sm3+ than precursor glass and a hopeful laser material.
References [1] Haiyan Jiao, Yuhua Wang, Jiachi Zhang: Journal of Inorgnic Material Vol.23-3 (2008), p.471,in Chinese [2] Pengtu Shi, Xiaosu Xiong, Hongjun Chen, Huiyan Liu, Yimin Cheng: Chinese Rare Earth Vol.31-2 (2010), p.1,in Chinese [3] Baoxiang La,Yao Han, Bingyu Lu, Yuhua Lu: , Chinese Journal of Luminescence Vol.14-1(1993),p.53,in Chinese [4] Renguang Ye, Shiqing Xu, Youjie Hua, Zhiguang Cui, Degang Deng, Huanping Wang, Shilong Zhao, Lihui Huang: Acta Optica Sinica Vol.30-7 (2008), p.1878,in Chinese [5] Sun Ting, Yaoxiang Wang, Weijian Tian, Xinglong Zhang, Huixia Yu, Lili Wang, Changqing Huang, Min Jing:Acta Optica Sinica Vol.34-11 (2005), p.1654,in Chinese [6] Huaidong Jin, Weidong Xiang, Xiaojuan Liang, Haiyu Huang, Wei Hua, Yongjun Dong:Journal of the Chinese Society of Rare Earth Vol.29-3 (2011), p.331,in Chinese [7] Jinshu Cheng, Peijing Tian, Liying Tang, Jian Quan:Journal of the Chinese Ceramic Society Vol.36-7(2008),p.1013,in Chinese [8] Peijing Tian, Gaoke Zhang
, Ye Liu: Journal of Wuhan University of Technology Vol.33-8(2010),p.56,in Chinese [9] Hongbo Zhang, Ping Wu, Chunhui Su, Xiangyu Zou, Yimin Wang:The 7th Function Meterial and Application Academic Conference (China,2010)