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Online since: November 2013
Authors: Xiao Jun Ma, Fan Zhang
[2] Uraki Y, Nakatani A, Kubo S, Sano Y: Journal of Wood Science, Vol. 47(2001), p.465~ 469
[3] Asakura R, Morita M, Maruyama K, Hatori H, Yamada Y: Journal of Materials Science, Vol.39(2004) , p.201- 206
[4] Senthilkumaar S, Varadarajab P R, Porkodi K, Subbhuraam C V: Journal of Colloid Interface Science, Vol.284(2005), P. 78- 82
[8] LI Mingquan: Journal of functional materials, Vol.38(2007), P.2777-2779
[10] LIU Chun-ling, Guo Quangui, Shi Jingli, Liu Lang: Materials Chemistry and Physics, Vol.90(2005), p.315-321.
[3] Asakura R, Morita M, Maruyama K, Hatori H, Yamada Y: Journal of Materials Science, Vol.39(2004) , p.201- 206
[4] Senthilkumaar S, Varadarajab P R, Porkodi K, Subbhuraam C V: Journal of Colloid Interface Science, Vol.284(2005), P. 78- 82
[8] LI Mingquan: Journal of functional materials, Vol.38(2007), P.2777-2779
[10] LIU Chun-ling, Guo Quangui, Shi Jingli, Liu Lang: Materials Chemistry and Physics, Vol.90(2005), p.315-321.
Online since: March 2014
Authors: Peter Walker, Hector Fabio Archila-Santos, Martin Philip Ansell
Journal of Materials Science. 47-2 (2012) pp. 583-598
Encyclopedia of Materials - Science and Technology, Volumes 1-11.
Journal of Materials Science 39 (2004) 1473-1476 [14] Amada, S. and Lakes, R.
S., Viscoelastic properties of bamboo, Journal of Materials Science, 32 (1997) 2693-2697
Journal of Materials Science. 46-23 (2011) 7357-7368.
Encyclopedia of Materials - Science and Technology, Volumes 1-11.
Journal of Materials Science 39 (2004) 1473-1476 [14] Amada, S. and Lakes, R.
S., Viscoelastic properties of bamboo, Journal of Materials Science, 32 (1997) 2693-2697
Journal of Materials Science. 46-23 (2011) 7357-7368.
Online since: July 2011
Authors: Li Zhao, Hai Tao Wang, Yuan Ke Zhang, Jia Qiang Liu, Shi Bao Wen, Yong Jiang Gu, Ling Yan Zhang, Hai Qing Hu
As the expanding production capacity of carbon fiber and large use of reinforced materials, large quantities of abandoned carbon fiber need to be handled urgently.
Experimental Section Materials and Composite Fabrication The length of carbon fiber powder (Shenzhen Jingzhiyuan carbon-graphite materials Co.
In order to improve the carbon fiber powder (CFP) / epoxy composite materials’ interface bonding performance, CFP needs surface treatment.
Although the diameter of CFP is about 0.01mm ~ 0.33µm, not as small as nano materials, it is still easy to aggregate.
S., editied by International journal of advanced manufacturing technology.
Experimental Section Materials and Composite Fabrication The length of carbon fiber powder (Shenzhen Jingzhiyuan carbon-graphite materials Co.
In order to improve the carbon fiber powder (CFP) / epoxy composite materials’ interface bonding performance, CFP needs surface treatment.
Although the diameter of CFP is about 0.01mm ~ 0.33µm, not as small as nano materials, it is still easy to aggregate.
S., editied by International journal of advanced manufacturing technology.
Online since: October 2018
Authors: A.A. Soldatov, A.I. Soldatov, Maria A. Kostina, P.V. Sorokin, A.A. Abouellail
Materials Science and Metallurgy Engineering 1(2) (2013) 13-21
Bovard, Alloy 6022-T4E29 for automotive sheet applications, Materials Science Forum 396 (2002) 1591-1596
Rozier, Feasibility of warm drawing of Aluminium products, Journal of Materials Processing Technology 115(1) (2001) 118-121
Materials Science and Engineering 347,(2003) 9-20
Thermoelectric materials: Energy conversion between heat and electricity, Journal of Materiomics 1(2) (2015) 92-105
Bovard, Alloy 6022-T4E29 for automotive sheet applications, Materials Science Forum 396 (2002) 1591-1596
Rozier, Feasibility of warm drawing of Aluminium products, Journal of Materials Processing Technology 115(1) (2001) 118-121
Materials Science and Engineering 347,(2003) 9-20
Thermoelectric materials: Energy conversion between heat and electricity, Journal of Materiomics 1(2) (2015) 92-105
Online since: March 2021
Authors: Bouchaib Zazoum, Abdel Bachri
As a result, dramatic decrease in the dielectric breakdown could be occurred in the nanocomposites materials.
The results showed that high breakdown strength was found in the nanocomposites materials filled with smaller particles.
Experimental Materials and Methods.
Luo et al., "Ultra-high discharged energy density capacitor using high aspect ratio Na 0.5 Bi 0.5 TiO3 nanofibers," Journal of Materials Chemistry A, vol. 5, no. 15, pp. 7091-7102, 2017
Zazoum, "Experimental and Modeling Studies of 2D Clay/PE Nanocomposites for High Voltage Applications," ECS Journal of Solid State Science and Technology, vol. 9, no. 9, p. 093002, 2020
The results showed that high breakdown strength was found in the nanocomposites materials filled with smaller particles.
Experimental Materials and Methods.
Luo et al., "Ultra-high discharged energy density capacitor using high aspect ratio Na 0.5 Bi 0.5 TiO3 nanofibers," Journal of Materials Chemistry A, vol. 5, no. 15, pp. 7091-7102, 2017
Zazoum, "Experimental and Modeling Studies of 2D Clay/PE Nanocomposites for High Voltage Applications," ECS Journal of Solid State Science and Technology, vol. 9, no. 9, p. 093002, 2020
Online since: August 2013
Authors: Cai Lian Hao, Deng Hua Yan, Wei Hua Xiao, Jun Yin
Water and soil resources are important material basis, upon which human subsistence and development are relying.
/ [12] Zhengqin Xiong, Guangxi Xing and Guangyu Shen: submitted to Journal of Environmental Science (2002) (in Chinese) [13] Guangxi Xing, Yacheng Cao and Shulian Shi: submitted to Journal of Science in China (2001) (in Chinese) [14] Naiming Zhang, Yang Yu and Bo Hong: submitted to Journal of Environmental Science (2003) (in Chinese) [15] Yao Lu, Xu Cheng: submitted to Journal of Shanghai Environmental Sciences (2000) (in Chinese) [16] Jian Cui, Ma Youhua and Zhao Yanping: submitted to Journal of Chinese Agricultural Science Bulletin (2006) (in Chinese) [17] Hui Shi: submitted to Journal of Water and Soil Conservation Bulletin (1997) (in Chinese) [18] Mei Zhu: submitted to Journal of Chinese Academy of Agricultural Sciences (2011) (in Chinese) [19] Weida Shi, Yuanlai Cui: submitted to Journal of China Rural Water and Hydropower (2009) (in Chinese) [20] Zhang Shuilong, Zhuang Jiping: submitted to Journal of Chinese Journal of Ecology (1998) (in Chinese) [21] Libo Zheng, Xin’an
Gui and Shaoping Wang: submitted to Journal of Environmental Pollution and Control (2008) (in Chinese) [22] LI X Y, WELLER D E and JORDAN T E: submitted to Journal of Journal of Hydrology (2010) [23] Siyu Zeng, Pengfei Du and Jining Chen: submitted to Journal of Advances in Water Science (2006) (in Chinese) [24] SHEN Z Y, LIAO Q and HONG Q: submitted to Journal of Separation and Purification Technology (2011) [25] Jinhua Sun, Qiande Zhu and Zhijun Yan: submitted to Journal of Advances in Water Science (2009) (in Chinese) [26] SHEN Z Y, HONG Q H and YU H: submitted to Journal of Science of the Total Environment (2008) [27] HUANG J L, HONG H S: submitted to Journal of Estuarine, Coastal and Shelf Science (2010) [28] McCuen R H.
Theory of Conservancy of Water and Soil, water conservancy and electric power press, Beijing. (1992) [34] Ascough II J C, Baffaut C and Nearing M A: submitted to Journal of ASAE (1997) [35] Xuetao Hu, Jining Chen: submitted to Journal of Environmental Science (2002) (in Chinese) [36] Leon P, Georges Z: submitted to Journal of Economic Dynamics control (2003) [37] Ruzhong Li, Jiaquan Wang and Jiazhong Qian: submitted to Journal of Harbin industrial university journal (2005) (in Chinese) [38] Hongfei Guo, Jinren Ni and Yudong Wang: submitted to Journal of Application Basis and Engineering Science Journal (2003) (in Chinese) [39] Kangping Hu, Zhencheng Xu: submitted to Journal of China Environmental Science (1991) (in Chinese) [40] Bingwen Li, Guozhen Jia: submitted to Journal of Northeast Water Conservancy and Hydropower (2000) (in Chinese) [41] Zhanpo Mao, Huai’en Li: submitted to Journal of Northwest Water Resources and Water Engineering (1999) (in Chinese) [42] Yukai Huang:
submitted to Journal of Shanghai Environmental Sciences (1990) (in Chinese) [43] Yukai Huang: submitted to Journal of Environmental Pollution & Control (1991) (in Chinese)
/ [12] Zhengqin Xiong, Guangxi Xing and Guangyu Shen: submitted to Journal of Environmental Science (2002) (in Chinese) [13] Guangxi Xing, Yacheng Cao and Shulian Shi: submitted to Journal of Science in China (2001) (in Chinese) [14] Naiming Zhang, Yang Yu and Bo Hong: submitted to Journal of Environmental Science (2003) (in Chinese) [15] Yao Lu, Xu Cheng: submitted to Journal of Shanghai Environmental Sciences (2000) (in Chinese) [16] Jian Cui, Ma Youhua and Zhao Yanping: submitted to Journal of Chinese Agricultural Science Bulletin (2006) (in Chinese) [17] Hui Shi: submitted to Journal of Water and Soil Conservation Bulletin (1997) (in Chinese) [18] Mei Zhu: submitted to Journal of Chinese Academy of Agricultural Sciences (2011) (in Chinese) [19] Weida Shi, Yuanlai Cui: submitted to Journal of China Rural Water and Hydropower (2009) (in Chinese) [20] Zhang Shuilong, Zhuang Jiping: submitted to Journal of Chinese Journal of Ecology (1998) (in Chinese) [21] Libo Zheng, Xin’an
Gui and Shaoping Wang: submitted to Journal of Environmental Pollution and Control (2008) (in Chinese) [22] LI X Y, WELLER D E and JORDAN T E: submitted to Journal of Journal of Hydrology (2010) [23] Siyu Zeng, Pengfei Du and Jining Chen: submitted to Journal of Advances in Water Science (2006) (in Chinese) [24] SHEN Z Y, LIAO Q and HONG Q: submitted to Journal of Separation and Purification Technology (2011) [25] Jinhua Sun, Qiande Zhu and Zhijun Yan: submitted to Journal of Advances in Water Science (2009) (in Chinese) [26] SHEN Z Y, HONG Q H and YU H: submitted to Journal of Science of the Total Environment (2008) [27] HUANG J L, HONG H S: submitted to Journal of Estuarine, Coastal and Shelf Science (2010) [28] McCuen R H.
Theory of Conservancy of Water and Soil, water conservancy and electric power press, Beijing. (1992) [34] Ascough II J C, Baffaut C and Nearing M A: submitted to Journal of ASAE (1997) [35] Xuetao Hu, Jining Chen: submitted to Journal of Environmental Science (2002) (in Chinese) [36] Leon P, Georges Z: submitted to Journal of Economic Dynamics control (2003) [37] Ruzhong Li, Jiaquan Wang and Jiazhong Qian: submitted to Journal of Harbin industrial university journal (2005) (in Chinese) [38] Hongfei Guo, Jinren Ni and Yudong Wang: submitted to Journal of Application Basis and Engineering Science Journal (2003) (in Chinese) [39] Kangping Hu, Zhencheng Xu: submitted to Journal of China Environmental Science (1991) (in Chinese) [40] Bingwen Li, Guozhen Jia: submitted to Journal of Northeast Water Conservancy and Hydropower (2000) (in Chinese) [41] Zhanpo Mao, Huai’en Li: submitted to Journal of Northwest Water Resources and Water Engineering (1999) (in Chinese) [42] Yukai Huang:
submitted to Journal of Shanghai Environmental Sciences (1990) (in Chinese) [43] Yukai Huang: submitted to Journal of Environmental Pollution & Control (1991) (in Chinese)
Online since: March 2010
Authors: Vincent Velay, Gérard Bernhart, Philippe Lours
Differences of 50% have been measured and confirm that these materials have an
important local strain mismatch corresponding to the primary dendride arm grains.
Journal of Materials and Products and Technology, SPM1, 2, (2001), 445 [7] S.
Bernhart : in proceedings of the 8th International Conference on Mechanical Behaviours of Materials.
Lours : Materials Science and Engineering A, Vol 372, n°2, (2002), p 155-166 [11] S.
Lours : Journal of Material Processing Technology, Vol 118/1-3, (2001), p 322-329 [12] V.
Journal of Materials and Products and Technology, SPM1, 2, (2001), 445 [7] S.
Bernhart : in proceedings of the 8th International Conference on Mechanical Behaviours of Materials.
Lours : Materials Science and Engineering A, Vol 372, n°2, (2002), p 155-166 [11] S.
Lours : Journal of Material Processing Technology, Vol 118/1-3, (2001), p 322-329 [12] V.
Online since: November 2012
Authors: Shu Ming Wen, Yong Jun Xian, Hai Ying Shen, Dan Liu, Jiu Shuai Deng, Qin Bo Cao
Moreover, if the quality of pyrite concentrate is further improved, it can be used as photoelectric or magnetic materials [10,11], and thus a great increase in its added value will be achieved.
Experimental Materials and reagents.
Süngün: Journal of Hazardous Materials Vol. 166 (2009), p. 144–149
[5] Yang, C. et al.: Journal of Hazardous Materials, Vol. 167(2009), p. 835-845
[6] Liu, A., Ni, W., Wu, W.: Journal of University of Science and Technology Beijing Vol. 14 (2007), p. 291–296
Experimental Materials and reagents.
Süngün: Journal of Hazardous Materials Vol. 166 (2009), p. 144–149
[5] Yang, C. et al.: Journal of Hazardous Materials, Vol. 167(2009), p. 835-845
[6] Liu, A., Ni, W., Wu, W.: Journal of University of Science and Technology Beijing Vol. 14 (2007), p. 291–296
Online since: June 2015
Authors: B. Vijaya Ramnath, A. Siddique Ahmed Ghias
A hybrid composite is the one which contains at least three materials.
The composite materials can be applied as potential lightweight materials in automobile components.
The open Industrial and manufacturing Engineering journal, 2010, 3, 1-6
Composites Science and Technology 67 (2007) 3369-3377
International journal of Engineering and Applied Sciences 6 2012
The composite materials can be applied as potential lightweight materials in automobile components.
The open Industrial and manufacturing Engineering journal, 2010, 3, 1-6
Composites Science and Technology 67 (2007) 3369-3377
International journal of Engineering and Applied Sciences 6 2012
Online since: June 2013
Authors: S.T. Tu, L.P. Cai, H.C. Zhang, X.Y. Hu, J.H. Jia
There are thermal insulation materials between the device and the specimen.
International Journal of Pressure Vessel and Piping. 1982, 10(1): 11-30
Life assessment for metallic materials with the use of the strain criterion for low-cycle fatigue.
International Journal of Fatigue, 2009, 31(10): 1579-1587
Journal of pressure vessel technology, 2011, 133:041601
International Journal of Pressure Vessel and Piping. 1982, 10(1): 11-30
Life assessment for metallic materials with the use of the strain criterion for low-cycle fatigue.
International Journal of Fatigue, 2009, 31(10): 1579-1587
Journal of pressure vessel technology, 2011, 133:041601