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Online since: October 2011
Authors: Pei Zhang, Wen Bin Zhou, Chun Hua Hu, Qian Lou, Nan Fang Zhao
Materials and methods
Samples collection
Based on field investigation of the shallow groundwater around the Poyang Lake, groundwater samples were collected from sixteen monitoring locations around Poyang Lake areas (as shown in Fig. 1).
Acknowledges The author would like to thank supports of Major Science and Technology Program for Water Pollution Control and Treatment (2008zx07526-008-03), the International Science and Technological Cooperation Projects of China (2006DFB91920), the National 11th Five-Year Technology Based Plan Top of China (2007BAB23CO2), National Natural Science Foundation of China (40672159;41040032) and China Economic Reform Implementation Project (TCC5) (jxspyhzxh09-03).
References [1] Julong Deng: Course of Grey System Theory (Huazhong University of Science and Technology Press, Wuhan, 33-78, 1990) (In Chinese) [2] Julong Deng: Systems & Control Letters Vol. 1, No. 5, 288-294, 1982 [3] Jun Xia: Grey System Hydrology—theory, method and applications (Huazhong University of Science and Technology Press, Wuhan, 129-138, 2000) (In Chinese) [4] Julong Deng: Journal of China Agricultural Resources and Regional Plannning No. 4, 1-12, 1984 (In Chinese) [5] Julong Deng: Discovery of Nature No. 3, 44-49, 1984 (In Chinese) [6] Teli Su, Yulin Kuo, Huawei Chen and Fuchen Kung: FIBRES & TEXTILES in Eastern Europe Vol. 18, No. 2, 60-64, 2010 [7] Jong Hyuk Jung and Won Tae Kwon: Journal of Mechanical Science and Technology Vol. 24, No. 5, 1083-1090, 2010 [8] Ziquan Long and Ran Gao: Recent Advance in Statistics Application and Related Areas, 2009 [9] Zi Wang and Jianjun Zhu: Value Engineering Vol. 29, No. 14, 103-105, 2010 (In Chinese) [10] Li Li and Fei Wang
: Third International Conference on Knowledge Discovery and Data Mining, 577-580, 2010 [11] Jijun Liu, Quan Wang, Xiaohua Liu, et al.: Journal of Projectiles, Rockets, Missiles and Guidance Vol. 28, No. 6, 106-108, 2008 (In Chinese) [12] Xianfeng Zhang, Huiwu Chen, Youshou Zhao and Zhengxiang Huang: Acta Armamentarii Vol. 25, No. 5, 525-528, 2004 (In Chinese) [13] Yuefei Chen, Rong Yu and Dashun Chen: Journal of Traditional Chinese Medicine University of Hunan Vol. 29, No. 1, 35-37, 2009 (In Chinese) [14] Xuerui Tan and Julong Deng: Journal of Mathematical Medicine Vol. 9, No. 1, 14-16, 1996 (In Chinese) [15] Xiaobai Xiao and Xuegong Xu: Environmental Science & Techology Vol. 26, No. 3, 34-36, 2003 (In Chinese) [16] Jianyu Yao, Zhengyan Zhong and Jinfa Chen: Environmental Science and Management Vol.34, No. 2, 172-174, 2009 (In Chinese) [17] Changjun Zhu and Zhenchun Hao: 2009 International Conference on Environmental Science and Information Application Technology, 255-257, 2009
[18] Zhijun Chen, Jian Zhu and Jing Zhang: Journal of Salt Lake Research Vol. 17, No. 1, 27-30, 2009 (In Chinese) [19] Junhe Chen, Tao Jiang and Jianyao Chen: Environmental hydrology (Science Press, Beijing, 2007) (In Chinese)
Acknowledges The author would like to thank supports of Major Science and Technology Program for Water Pollution Control and Treatment (2008zx07526-008-03), the International Science and Technological Cooperation Projects of China (2006DFB91920), the National 11th Five-Year Technology Based Plan Top of China (2007BAB23CO2), National Natural Science Foundation of China (40672159;41040032) and China Economic Reform Implementation Project (TCC5) (jxspyhzxh09-03).
References [1] Julong Deng: Course of Grey System Theory (Huazhong University of Science and Technology Press, Wuhan, 33-78, 1990) (In Chinese) [2] Julong Deng: Systems & Control Letters Vol. 1, No. 5, 288-294, 1982 [3] Jun Xia: Grey System Hydrology—theory, method and applications (Huazhong University of Science and Technology Press, Wuhan, 129-138, 2000) (In Chinese) [4] Julong Deng: Journal of China Agricultural Resources and Regional Plannning No. 4, 1-12, 1984 (In Chinese) [5] Julong Deng: Discovery of Nature No. 3, 44-49, 1984 (In Chinese) [6] Teli Su, Yulin Kuo, Huawei Chen and Fuchen Kung: FIBRES & TEXTILES in Eastern Europe Vol. 18, No. 2, 60-64, 2010 [7] Jong Hyuk Jung and Won Tae Kwon: Journal of Mechanical Science and Technology Vol. 24, No. 5, 1083-1090, 2010 [8] Ziquan Long and Ran Gao: Recent Advance in Statistics Application and Related Areas, 2009 [9] Zi Wang and Jianjun Zhu: Value Engineering Vol. 29, No. 14, 103-105, 2010 (In Chinese) [10] Li Li and Fei Wang
: Third International Conference on Knowledge Discovery and Data Mining, 577-580, 2010 [11] Jijun Liu, Quan Wang, Xiaohua Liu, et al.: Journal of Projectiles, Rockets, Missiles and Guidance Vol. 28, No. 6, 106-108, 2008 (In Chinese) [12] Xianfeng Zhang, Huiwu Chen, Youshou Zhao and Zhengxiang Huang: Acta Armamentarii Vol. 25, No. 5, 525-528, 2004 (In Chinese) [13] Yuefei Chen, Rong Yu and Dashun Chen: Journal of Traditional Chinese Medicine University of Hunan Vol. 29, No. 1, 35-37, 2009 (In Chinese) [14] Xuerui Tan and Julong Deng: Journal of Mathematical Medicine Vol. 9, No. 1, 14-16, 1996 (In Chinese) [15] Xiaobai Xiao and Xuegong Xu: Environmental Science & Techology Vol. 26, No. 3, 34-36, 2003 (In Chinese) [16] Jianyu Yao, Zhengyan Zhong and Jinfa Chen: Environmental Science and Management Vol.34, No. 2, 172-174, 2009 (In Chinese) [17] Changjun Zhu and Zhenchun Hao: 2009 International Conference on Environmental Science and Information Application Technology, 255-257, 2009
[18] Zhijun Chen, Jian Zhu and Jing Zhang: Journal of Salt Lake Research Vol. 17, No. 1, 27-30, 2009 (In Chinese) [19] Junhe Chen, Tao Jiang and Jianyao Chen: Environmental hydrology (Science Press, Beijing, 2007) (In Chinese)
Online since: October 2012
Authors: Di Zhang, Xi Liu, Fang Qing Chen
The vegetation concrete technology restored slopes by using concrete and plant materials to keep slope stable and recover slope vegetation [7, 8].
Materials and Methods Experimental materials and Experimental designs.
Hermy: Journal of Ecology.
Journal of Northwest Plants.
Pratacultural Science.
Materials and Methods Experimental materials and Experimental designs.
Hermy: Journal of Ecology.
Journal of Northwest Plants.
Pratacultural Science.
Online since: October 2013
Authors: Xue Fei Zhang, Ming Xue Yang, Jing Tian Luan, Tian Guo Zhou
Chen: Chinese Journal of Materials Research Vol. 19(3)(2005), p. 331
Tieu: Materials Science and Engineering A Vol. 485(2008), p. 108
Deng: Science Technology and Engineering Vol. 11(8)(2011), p.1709
Tong :Material of Mechanical Engineering Vol.7 (2008),p.70
Sun: Nan Yang Science and Technology College Journal Vol.3 (2009), p.68
Tieu: Materials Science and Engineering A Vol. 485(2008), p. 108
Deng: Science Technology and Engineering Vol. 11(8)(2011), p.1709
Tong :Material of Mechanical Engineering Vol.7 (2008),p.70
Sun: Nan Yang Science and Technology College Journal Vol.3 (2009), p.68
Online since: September 2015
Authors: Tatsuo Sakai, Naoya Sekisugi, Yasuhiro Odake, Noriyasu Oguma
Thus, fatigue test results in the very high cycle regime have to be systematically filed for the wide variety of metallic materials [7].
Ishihara, Subsurface fatigue crack initiation behavior and S-N curve characteristics in high carbon chromium bearing steel, Journal of the Society of Materials and Science, Japan, 48 (1999) 1095-1100
Sakai, Review and prospects for current studies on very high cycles fatigue of metallic materials for machine structural use, Journal of Solid Mechanics and Materials Engineering, 3, 3 (2009) 425-439
Sakai, Mechanism of long life fatigue fracture induced by interior inclusion for bearing steel in rotating bending, Journal of the Society of Materials and Science, Japan, 52 (2003) 1292-1297
Sakai, Fatigue life prediction for bearing steel failed with fish-eye at subsurface in rotating bending, Journal of the Society of Materials and Science, Japan, 50 (2001) 516-523
Ishihara, Subsurface fatigue crack initiation behavior and S-N curve characteristics in high carbon chromium bearing steel, Journal of the Society of Materials and Science, Japan, 48 (1999) 1095-1100
Sakai, Review and prospects for current studies on very high cycles fatigue of metallic materials for machine structural use, Journal of Solid Mechanics and Materials Engineering, 3, 3 (2009) 425-439
Sakai, Mechanism of long life fatigue fracture induced by interior inclusion for bearing steel in rotating bending, Journal of the Society of Materials and Science, Japan, 52 (2003) 1292-1297
Sakai, Fatigue life prediction for bearing steel failed with fish-eye at subsurface in rotating bending, Journal of the Society of Materials and Science, Japan, 50 (2001) 516-523
Online since: September 2014
Authors: Ghassan M.J. Al Kaisy, Radzuan B. Razali, Mohamed I.A. Mutalib, Mohd Azmi Bustam
Experimental
Materials.
Choi, "An Overview of Hydrodesulfurization and Hydrodenitrgenation," Journal of the Japan Petroleum Institute, vol. 47, pp. 145-163, 2004
Rodrıguez, "An Ionic Liquid Proposed as Solvent in Aromatic Hydrocarbon Separation by Liquid Extraction," AIChE Journal, vol. 56, pp. 381-386, 2010
Lin, "Studies on the Optimum Models of the Dairy Product Kou Woan Lao Using Response Surface Methdology," Asian–Australasian Journal of Animal Sciences, vol. 14, pp. 1470-1476Asian–Australasian Journal of Animal Sciences, 2001
Liu, "Desulfurization of Diesel Fuel by Extraction with Lewis - Acidic Ionic Liquid," Separation Science and Technology, vol. 44, pp. 971-982, 2009.
Choi, "An Overview of Hydrodesulfurization and Hydrodenitrgenation," Journal of the Japan Petroleum Institute, vol. 47, pp. 145-163, 2004
Rodrıguez, "An Ionic Liquid Proposed as Solvent in Aromatic Hydrocarbon Separation by Liquid Extraction," AIChE Journal, vol. 56, pp. 381-386, 2010
Lin, "Studies on the Optimum Models of the Dairy Product Kou Woan Lao Using Response Surface Methdology," Asian–Australasian Journal of Animal Sciences, vol. 14, pp. 1470-1476Asian–Australasian Journal of Animal Sciences, 2001
Liu, "Desulfurization of Diesel Fuel by Extraction with Lewis - Acidic Ionic Liquid," Separation Science and Technology, vol. 44, pp. 971-982, 2009.
Online since: September 2011
Authors: Pedro Vilaça, Virgínia Infante, Catarina Vidal
FSC relies on the frictional heat generated between the tool material and the metal workpiece to soften and deform the material to facilitate the creation of a continuous channel [3].
The material that is moved upwards is pushed out by the scrolls on the shoulder [2].
Acknowledgements The authors would like to acknowledge Portuguese Foundation for the Science and Technology (FCT) for its financial support through the PhD scholarship FCT SFRH/BD/62963/2009.
[2] Balasubramanian, N, Mishra, R.S., Krishnamurthy, K, Friction stir channeling: Characterization of the channels, Journal of Materials Processing Technology 209, pp. 3696–3704, 2009
[3] Balasubramanian, N, Mishra, R.S., Krishnamurthy, K, Process forces during friction stir channeling in an aluminum alloy, Journal of Materials Processing Technology 211, pp. 305311, 2011.
The material that is moved upwards is pushed out by the scrolls on the shoulder [2].
Acknowledgements The authors would like to acknowledge Portuguese Foundation for the Science and Technology (FCT) for its financial support through the PhD scholarship FCT SFRH/BD/62963/2009.
[2] Balasubramanian, N, Mishra, R.S., Krishnamurthy, K, Friction stir channeling: Characterization of the channels, Journal of Materials Processing Technology 209, pp. 3696–3704, 2009
[3] Balasubramanian, N, Mishra, R.S., Krishnamurthy, K, Process forces during friction stir channeling in an aluminum alloy, Journal of Materials Processing Technology 211, pp. 305311, 2011.
Online since: July 2016
Authors: Grzegorz Litak, Krzysztof Urbanowicz, Grzegorz Górski, Romuald Mosdorf, Andrzej Rysak
Rezkallah, International Journal Multiphase Flow 19, 751 (1993)
Pipathattakul, Experimental Thermal and Fluid Science, 30, 345 (2006)
Wang, International Journal of Multiphase Flow 36, 166 (2010)
Rysak, European Physical Journal B 88, 239 (2015)
Rysak, Applied Mechanics and Materials 791, 217 (2015)
Pipathattakul, Experimental Thermal and Fluid Science, 30, 345 (2006)
Wang, International Journal of Multiphase Flow 36, 166 (2010)
Rysak, European Physical Journal B 88, 239 (2015)
Rysak, Applied Mechanics and Materials 791, 217 (2015)
Online since: August 2013
Authors: Ling Tao Mao, Qing Liu, Yong Liang Wang, Nai Hao
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Journal of the University of Petroleum. 2004,28( 6):54-60.
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Fractal pores and fractal particles of rock and soil materials[J].
Journal of the University of Petroleum. 2004,28( 6):54-60.
(in Chinese) [11] Friesen W.I, Mikule R.J, Fractal dimensions of coal particles[J], Journal of Colloid and Interface Science.1987,20(1):263-271
Journal of China Coal Society. 1998,23(4):439-442.
Fractal pores and fractal particles of rock and soil materials[J].
Online since: May 2011
Authors: Shao Feng Nie, Tian Hua Zhou, Tao Sun, Jia Xiang Chi
The nonlinear FEM models which considering the geometric large deformation, materials and contact nonlinear are founded by ANSYS program.
The connection of specimen is welding and bolt, and we can get the characteristic of all material from the test [4].
Acknowledgement This work is supported by Shaanxi natural science foundation (2004E205).
Journal of Building Structures, Vol. 25(1) (2004), p. 9-16
Journal of Xi’an University of Science and Technology, Vol. 25(3) (2005), p. 283-287
The connection of specimen is welding and bolt, and we can get the characteristic of all material from the test [4].
Acknowledgement This work is supported by Shaanxi natural science foundation (2004E205).
Journal of Building Structures, Vol. 25(1) (2004), p. 9-16
Journal of Xi’an University of Science and Technology, Vol. 25(3) (2005), p. 283-287
Online since: April 2014
Authors: Ming Jun Yu, Xiao Lan Cai, Zheng Li, Feng Yi, Chui Hu
D/Max 2400 XRD) analysis was used to determine the composition of nanocrystalline materials.
This is an important factor for the composite materials mechanical properties.
Materials & design, 2007, 28(9): 2394-2401
Materials characterization, 2005, 55(3): 211-218
Materials Science and Engineering: A, 2008, 480(1): 392-396.
This is an important factor for the composite materials mechanical properties.
Materials & design, 2007, 28(9): 2394-2401
Materials characterization, 2005, 55(3): 211-218
Materials Science and Engineering: A, 2008, 480(1): 392-396.