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Online since: October 2014
Authors: Wacław Banaś, Aleksander Gwiazda, Agnieszka Sękala, Zbigniew Monica
Journal of Achievements in Materials and Manufacturing Engineering 49 (2011), pp. 383-390
Journal of Materials Processing Technology 164-165 (2005), pp. 1436 - 1443 [10] A.
Journal of Achievements in Materials and Manufacturing Engineering 16/1-2 (2006), pp. 151-159
Journal of Achievements in Materials and Manufacturing Engineering 49/1 (2011), pp. 33-39
Archives of Materials Science and Engineering 42/2 (2010), pp. 85-92
Journal of Materials Processing Technology 164-165 (2005), pp. 1436 - 1443 [10] A.
Journal of Achievements in Materials and Manufacturing Engineering 16/1-2 (2006), pp. 151-159
Journal of Achievements in Materials and Manufacturing Engineering 49/1 (2011), pp. 33-39
Archives of Materials Science and Engineering 42/2 (2010), pp. 85-92
Online since: April 2022
Authors: Manal A. Saleh, Mohammed K. Jawad
Materials and Methods
2.1 Materials
The materials used in this study were used without any further purification.
Bertran, Vertically aligned carbon nanotubes coated with manganese dioxide as cathode material for microbial fuel cells, Journal of Materials Science, 50 (2015) 1214-1220
Epron, Characterization methods of carbon nanotubes: a review, Materials Science and Engineering: B, 119 (2005) 105-118
Jasiuk, Experimental trends in polymer nanocomposites—a review, Materials science and engineering: A, 393 (2005) 1-11
Journal of optoelectronics and advanced materials, 8 (2006) 643-647
Bertran, Vertically aligned carbon nanotubes coated with manganese dioxide as cathode material for microbial fuel cells, Journal of Materials Science, 50 (2015) 1214-1220
Epron, Characterization methods of carbon nanotubes: a review, Materials Science and Engineering: B, 119 (2005) 105-118
Jasiuk, Experimental trends in polymer nanocomposites—a review, Materials science and engineering: A, 393 (2005) 1-11
Journal of optoelectronics and advanced materials, 8 (2006) 643-647
Online since: August 2013
Authors: Wen Feng Ding, Jian He, Yan Wang, Zhi Wu Liu
Acknowledgments
The authors gratefully acknowledge the financial support of this research by China Postdoctoral Science Foundation (No. 2012T50800), Jiangsu Planned Projects for Postdoctoral Research Funds (No. 1101090C) and Aeronautical Science Foundation of China (No. 2011ZE52061).
Xu: Development and performance of monolayer brazed CBN grinding tools, International Journal of Advanced Manufacturing Technology,Vol.34 (2007), p.491-495
Ichida: Mechanical properties and grinding performance of ultrafine-crystalline cBN abrasive grains, Diamond & related materials, Vol.17 (2008), p.1791-1795
Journal of materials science, Vol.36 (2001), p.2145-2150
Journal of advanced mechanical design, systems, and manufacturing, Vol. 2(2008), p.385-395.
Xu: Development and performance of monolayer brazed CBN grinding tools, International Journal of Advanced Manufacturing Technology,Vol.34 (2007), p.491-495
Ichida: Mechanical properties and grinding performance of ultrafine-crystalline cBN abrasive grains, Diamond & related materials, Vol.17 (2008), p.1791-1795
Journal of materials science, Vol.36 (2001), p.2145-2150
Journal of advanced mechanical design, systems, and manufacturing, Vol. 2(2008), p.385-395.
Online since: October 2012
Authors: Wen Hui Ma, Xiu Hua Chen, Ke Qiang Xie, Cheng Li, Lan Wu
Research on Hydrometallurgical Purification of Microimpurity in
SiGe Alloy Tailings
Cheng Li1, b, Xiuhua Chen1,a , Wenhui Ma2, c, Lan Wu3, d , and Keqiang Xie2,e
1 Faculty of Physical Science and Technology, Yunnan University, China Kunming
2 National Engineering Laboratory for Vacuum Metallurgy Engineering Research center for Silicon metallurgy and materials of Yunnan provincial Universities, Kunming University of Science and Technology, China Kunming
3 Faculty of Mathematics & Science, Kunming University of Science and Technology, China Kunming
achenxh@ynu.edu.cn, bflcheng111710@gmail.com, cmwhsilicon@163.com, d4358665@qq.com, eyz13313@163.com
Keywords: SiGe alloy, Ge volatilization, Hydrometallurgy, Microimpurity purification.
Experimental Raw Material.
The effects of impurities could be further weakened, it also demonstrates the possibility that purer materials could be gained by hydrometallurgy purification.
Balikci: Journal of Crystal Growth, Vol. 351 (2012), p. 1-8 [2] F.
Lent: Journal of Crystal Growth, Vol. 299 (2007), p. 227-233 [6] D.W.
Experimental Raw Material.
The effects of impurities could be further weakened, it also demonstrates the possibility that purer materials could be gained by hydrometallurgy purification.
Balikci: Journal of Crystal Growth, Vol. 351 (2012), p. 1-8 [2] F.
Lent: Journal of Crystal Growth, Vol. 299 (2007), p. 227-233 [6] D.W.
Online since: July 2014
Authors: Yun Li Gu
How the ancient building selected materials to do "Adapt to the Disasters"("AD")and produce colorful artistic effect.
Because of the differences between the climate, geographical environment, the local dominant form of disaster is also different, so the different means, method, experience and so on to the "AD", these also constitute the characteristics of historical towns, including local materials, construction process, technology and so on.
Journal of northwest university (philosophy and social sciences edition), 2007/9 [2] Zheng Lipeng.
Journal of building, 1995/8 [3] Li Yaning.
Journal of sichuan university (philosophy and social science edition) in 2004/5
Because of the differences between the climate, geographical environment, the local dominant form of disaster is also different, so the different means, method, experience and so on to the "AD", these also constitute the characteristics of historical towns, including local materials, construction process, technology and so on.
Journal of northwest university (philosophy and social sciences edition), 2007/9 [2] Zheng Lipeng.
Journal of building, 1995/8 [3] Li Yaning.
Journal of sichuan university (philosophy and social science edition) in 2004/5
Online since: December 2012
Authors: Jian Hua Zhang, Xiu Hua Ren, Ze Ning Wang, Tao Wang
But its intensity is far less than metal materials such as gray iron, thereby limiting its popularization and application.
Acknowledgements The work is supported by the National Natural Science Foundation of China (Grant No. 51175308) and the National Science and Technology Major Project of China (Grant No. 2012ZX04010032).
Ombres: Mechanics of Composite Materials Vol. 36(2000), p.389 [2] J.
Thomason: Composites Part A: Applied Science and Manufacturing Vol. 39(2008), p.1732 [3] Hughes J D H: Composites Science and Technology Vol. 41(1991), p.13 [4] Nathan C.
Harmon: ACI Structural Journal Vol. 99(2002), p.32 [5] Y.Q.
Acknowledgements The work is supported by the National Natural Science Foundation of China (Grant No. 51175308) and the National Science and Technology Major Project of China (Grant No. 2012ZX04010032).
Ombres: Mechanics of Composite Materials Vol. 36(2000), p.389 [2] J.
Thomason: Composites Part A: Applied Science and Manufacturing Vol. 39(2008), p.1732 [3] Hughes J D H: Composites Science and Technology Vol. 41(1991), p.13 [4] Nathan C.
Harmon: ACI Structural Journal Vol. 99(2002), p.32 [5] Y.Q.
Online since: January 2015
Authors: Li Chen, Yi Ping Zhao, Meng Xin Gu, Jin Ling Li, Xue Wang, Xiao Tong Liang
Effects of coagulation-bath temperature on the formation process of PVDF-g-PNIPAAm/poly(NIPAAm-co-AAc-L-Phe) membrane
Xiaotong Lianga, Mengxin Gub, Jinling Lic, Xue Wangd, Yiping Zhaoe*
and Li Chenf
State Key Laboratory of Hollow Fiber Membrane Materials and Processes, School of Materials Science and Engineering, Tianjin Polytechnic University, Tianjin 300387, China
apolyxiaotong@163.com, btjpugu@163.com, clijinling_512@126.com, d gygreta@126.com, eyipingzhao@tjpu.edu.cn, fchenlis@tjpu.edu.cn
Keywords: PVDF, coagulation-bath temperature, micro-gels, blended membrane, Phase diagrams, Ultrasonic time-domain reflectometry
Abstract.
Experimental section Materials NIPAAm was purchased from the Tokyo Chemical Industry Co., Ltd.
Lin, et al: Journal of applied polymer science, Vol. 110 (2008):341
Yu: Journal of applied polymer science, Vol. 115 (2010):2277
Lu, et al: Journal of Membrane Science, Vol. 419 (2012): 9.
Experimental section Materials NIPAAm was purchased from the Tokyo Chemical Industry Co., Ltd.
Lin, et al: Journal of applied polymer science, Vol. 110 (2008):341
Yu: Journal of applied polymer science, Vol. 115 (2010):2277
Lu, et al: Journal of Membrane Science, Vol. 419 (2012): 9.
Online since: October 2010
Authors: F.H.D. Pontes, Simone P. Taguchi, C. Santos, L.A. Borges, João Paulo Barros Machado
Baptista: Materials Science & Engineering A Vol. 359 (2003), p. 343
Dariel: Journal of Materials Processing Technology Vols.486-490 (2003), p. 143
Vieira: Materials Letters Vol. 58 (2004), p. 1761
Claussen: Materials Letters Vol. 33 (1997), p. 47
Wang: Materials Letters Vol. 58 (2004), p. 1750
Dariel: Journal of Materials Processing Technology Vols.486-490 (2003), p. 143
Vieira: Materials Letters Vol. 58 (2004), p. 1761
Claussen: Materials Letters Vol. 33 (1997), p. 47
Wang: Materials Letters Vol. 58 (2004), p. 1750
Online since: February 2014
Authors: Nagwa E. Elzayady, R.M. Rashad, A. Elenany, A. Elhabak
Eustathopoulos: Wetting kinetics and bonding of A1 and A1 alloys on u-SiC, Materials Science and Engineering A205 1-8, 1996
Rohatgi: Thermal Fatigue Resistance of Discontinuously Reinforced Cast Aluminum-Matrix Composites, Journal of Materials Engineering and Performance Vol. 11(6), 2002
[5] Haizhi Ye: An Overview of the Development of Al-Si-Alloy Based Material for Engine Applications, Journal of Materials Engineering and Performance, Vol.12, 2003
Bhagyashekar3: Studies on Al6061-SiC and Al7075-Al2O3 Metal Matrix Composites, Journal of Minerals & Materials Characterization & Engineering, Vol. 9, No.1, 2010
Malekjani: Effects of Optimum amount of Sr and Sb Modifiers on Tensile, Impact ansd Fatigue properties, Iranian Journal of Science& Technology, Transaction B, Vol. 28, No.
Rohatgi: Thermal Fatigue Resistance of Discontinuously Reinforced Cast Aluminum-Matrix Composites, Journal of Materials Engineering and Performance Vol. 11(6), 2002
[5] Haizhi Ye: An Overview of the Development of Al-Si-Alloy Based Material for Engine Applications, Journal of Materials Engineering and Performance, Vol.12, 2003
Bhagyashekar3: Studies on Al6061-SiC and Al7075-Al2O3 Metal Matrix Composites, Journal of Minerals & Materials Characterization & Engineering, Vol. 9, No.1, 2010
Malekjani: Effects of Optimum amount of Sr and Sb Modifiers on Tensile, Impact ansd Fatigue properties, Iranian Journal of Science& Technology, Transaction B, Vol. 28, No.
Online since: April 2014
Authors: Anastasia Karahaliou
Characterization of Magnetic Materials done with non-destructive methods [3, 4].
Hristoforou, Non-destructive evaluation of magnetic metallic materials using Hall sensors, Journal of Materials Processing technology, 161, p. 359-362, 2005 [7] E.
Ktena, Magnetostriction and magnetostrictive materials for sensing applications, J.
Hristoforou, Investigation of magnetic, mechanical and microfailure behavior of ARMCO - type low carbon steel corroded in 3.5% NaCl - aqueous solution, Materials Science and Engineering A, MSEA-D-13-00774, accepted 2013 [16] A.
Wang, A review of three magnetic NDT technologies, Journal of Magnetism and Magnetic Materials, 324, p. 382–388, 2012 [18] D.C.
Hristoforou, Non-destructive evaluation of magnetic metallic materials using Hall sensors, Journal of Materials Processing technology, 161, p. 359-362, 2005 [7] E.
Ktena, Magnetostriction and magnetostrictive materials for sensing applications, J.
Hristoforou, Investigation of magnetic, mechanical and microfailure behavior of ARMCO - type low carbon steel corroded in 3.5% NaCl - aqueous solution, Materials Science and Engineering A, MSEA-D-13-00774, accepted 2013 [16] A.
Wang, A review of three magnetic NDT technologies, Journal of Magnetism and Magnetic Materials, 324, p. 382–388, 2012 [18] D.C.