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Online since: June 2014
Authors: Song Chen, Xing Shang Liu, Xiao Chao Tian, Yue Wu, Yong Liu, Zhi Gang Yang
Choose the metal cylinders which diameter is 3mm as the material.
The velocity of approach of the material when it is in the material route is calculated.
Acknowledgement It is a National Natural Science Founds of China (863 Program) (51075175).
Journal of Manufacturing Systems,1997,16( 5) : 309 ~ 314
Inertial Piezoelectric Vibratory Feeder[J].Journal of agricultural machinery, 2013,44(8):281~286. ( in Chinese) [8]QIANKX,LVLC,RUWM,et al.amagnetis spring and its elasticity[J].Chine Journal ofMechanical Engineering,1998,34(3):57-59.
The velocity of approach of the material when it is in the material route is calculated.
Acknowledgement It is a National Natural Science Founds of China (863 Program) (51075175).
Journal of Manufacturing Systems,1997,16( 5) : 309 ~ 314
Inertial Piezoelectric Vibratory Feeder[J].Journal of agricultural machinery, 2013,44(8):281~286. ( in Chinese) [8]QIANKX,LVLC,RUWM,et al.amagnetis spring and its elasticity[J].Chine Journal ofMechanical Engineering,1998,34(3):57-59.
Online since: November 2013
Authors: Abdul Razak Khairunisak, Zainovia Lockman, Monna Rozana, Ehsan Ahmadi, Dede Miftahul Anwar, Syahriza Ismail, Kuan Yew Cheong
Not only the materials designed to have larger surface area for reaction, the ordering of the structure may be beneficial in increasing the efficiency of the catalytic processes.
Chemistry – A European Journal, 2012. 18(31): p. 9521-9524
IOP Conference Series: Materials Science and Engineering, 2011. 18(5): p. 052004
Journal of Physics: Conference Series, 2005. 15(1): p. 45
[8] Zhitomirsky, I., Cathodic electrodeposition of ceramic and organoceramic materials.
Chemistry – A European Journal, 2012. 18(31): p. 9521-9524
IOP Conference Series: Materials Science and Engineering, 2011. 18(5): p. 052004
Journal of Physics: Conference Series, 2005. 15(1): p. 45
[8] Zhitomirsky, I., Cathodic electrodeposition of ceramic and organoceramic materials.
Online since: July 2011
Authors: Da Biao Zhao
Experimental
Materials and Apparatus.
All materials were used without further purification.
Polymer Materials Science & Engineering, Vol. 22 (2006), p. 250-253 [4] F.
Polymer Materials Science & Engineering, Vol. 18 (2002), p. 205-208 [9] K.
Advanced Materials Research, Vol. 148-149(2011), p. 799-802 [11] H.
All materials were used without further purification.
Polymer Materials Science & Engineering, Vol. 22 (2006), p. 250-253 [4] F.
Polymer Materials Science & Engineering, Vol. 18 (2002), p. 205-208 [9] K.
Advanced Materials Research, Vol. 148-149(2011), p. 799-802 [11] H.
Online since: December 2012
Authors: Zhi Feng Liu, Yi Ting Liu
Introduction
The search for low cost alternatives to inorganic semiconductors resulted in a growing interest in organic materials [1].
In addition, hybrid organic/inorganic structures seem to offer a viable solution for solar cells due to utilizing the large carrier mobility in inorganic materials and the strong photo-absorption coefficient in organic materials.
Therefore, it may be possible to easily find an optimal combination of two kinds of semiconductor materials in order to improve the solar cell’s performance.
Surface texturization process of inorganic semiconductor materials may reduce optical reflectance and enhance effective light absorption [10, 11].
Xu: Science, Vol. 283 (1999), p.1900
In addition, hybrid organic/inorganic structures seem to offer a viable solution for solar cells due to utilizing the large carrier mobility in inorganic materials and the strong photo-absorption coefficient in organic materials.
Therefore, it may be possible to easily find an optimal combination of two kinds of semiconductor materials in order to improve the solar cell’s performance.
Surface texturization process of inorganic semiconductor materials may reduce optical reflectance and enhance effective light absorption [10, 11].
Xu: Science, Vol. 283 (1999), p.1900
Online since: October 2010
Authors: Wen Wu He, Shu Li Sun, Min Gang Zhang, Jun Qi Zhou, Gang Sun
Hot Deformation Behavior during the Hot Compression of AZ31 Alloy
Shuli SUN
a, Mingang ZHANGb, Wenwu HEb, Junqi ZHOU
b, Gang SUN
b
School of Materials Science and Engineering, Taiyuan University of Science and Technology,
Taiyuan 030024, Shanxi, China
a
sun-shuli@163.com, bmgzhang@163.com
Keywords: AZ31 magnesium alloy, Activation energy, Dynamic recrystallization, Hot processing
Map
Abstract.
Chen: Material Processing Technology, Vol. 208 (2008), pp. 29-34
Cheng: Materials Science & Engineering, Vol. 26 (2008), pp. 406-410 (in Chinese)
Li: Computational Materials Science, Vol. 41 (2008), pp. 375-382
Chen: Chinese Journal of Nonferrous Metals, Vol. 15 (2008), pp. 900-906(in Chinese).
Chen: Material Processing Technology, Vol. 208 (2008), pp. 29-34
Cheng: Materials Science & Engineering, Vol. 26 (2008), pp. 406-410 (in Chinese)
Li: Computational Materials Science, Vol. 41 (2008), pp. 375-382
Chen: Chinese Journal of Nonferrous Metals, Vol. 15 (2008), pp. 900-906(in Chinese).
Online since: September 2014
Authors: José Vanderley do Nascimento Silva, Guilherme Costa de Oliveira, Meiry Gláucia Freire Rodrigues
Materials and Methods
A sample of clay called Chocobofe provided by DOLOMIL Industrial Company Ltd., located in the state of Paraiba.
The Chemical Analysis X-Ray Spectrometry by Energy Dispersive (EDX) were performed at the Materials Characterization Laboratory of the Academic Unit of Materials Engineering, Federal University of Campina Grande.
Rafatullah: Journal of Hazardous Materials Vol. 177 (2010), p. 70
Hellerka Llai: Applied Clay Science Vol. 20 (2001), p. 27
Muller: Applied Clay Science Vol. 38 (2008), p. 165
The Chemical Analysis X-Ray Spectrometry by Energy Dispersive (EDX) were performed at the Materials Characterization Laboratory of the Academic Unit of Materials Engineering, Federal University of Campina Grande.
Rafatullah: Journal of Hazardous Materials Vol. 177 (2010), p. 70
Hellerka Llai: Applied Clay Science Vol. 20 (2001), p. 27
Muller: Applied Clay Science Vol. 38 (2008), p. 165
Online since: November 2010
Authors: Yi Min Zhu, Yan Jun Li, Zhi Jun Ma, Xin Fang
Mesoporous materials have a major advantage that the mesoporous materials can achieve large specific surface area and pore volume.
Experimental Experimental materials.
China Journal of Inorganic Chemstry Vol. 20(2004), p. 219 [4] Xu Ruren and Pang Wenqin: Molecular sieve and porous materials chemistry(Science Press, Beijing 2004)
Materials Guide Vol. 16(2002), p. 51 [6] Qian Jiasheng and Wang Xunhua: Mesoporous Materials Preparation and Characterization[J].
China Powder Science and Technology Vol. 11(2005), p. 36 [7] Li Na and Wang Xianyou: Template Synthesis of Mesoporous Carbon Materials[J].
Experimental Experimental materials.
China Journal of Inorganic Chemstry Vol. 20(2004), p. 219 [4] Xu Ruren and Pang Wenqin: Molecular sieve and porous materials chemistry(Science Press, Beijing 2004)
Materials Guide Vol. 16(2002), p. 51 [6] Qian Jiasheng and Wang Xunhua: Mesoporous Materials Preparation and Characterization[J].
China Powder Science and Technology Vol. 11(2005), p. 36 [7] Li Na and Wang Xianyou: Template Synthesis of Mesoporous Carbon Materials[J].
Online since: November 2025
Authors: Atif Shazad, Shees Adil, Muhammad Muzamil, Shehzaib Yousuf Khan, Jawwad Ali, Areeba Latif
Conversely, friction stir welding (FSW) improves both by bonding materials through plastic deformation.
R.G., "Microstructure, microchemistry and environmental cracking susceptibility of friction stir welded 2219-T87," Materials Science and Engineering: A, 2006
A review paper of FSW on dissimilar materials using aluminum.
Materials Today: Proceedings
Lin, "Effect of Local Post Weld Heat Treatment on Tensile Properties in Friction Stir Welded 2219-O Al Alloy," Journal of Materials Engineering and Performance, 2017.
R.G., "Microstructure, microchemistry and environmental cracking susceptibility of friction stir welded 2219-T87," Materials Science and Engineering: A, 2006
A review paper of FSW on dissimilar materials using aluminum.
Materials Today: Proceedings
Lin, "Effect of Local Post Weld Heat Treatment on Tensile Properties in Friction Stir Welded 2219-O Al Alloy," Journal of Materials Engineering and Performance, 2017.
Online since: October 2011
Authors: Y.H. Taufiq-Yap, Sudarno Sudarno
Taufiq-Yap 1,2,b
1Centre of Excellence for Catalysis Science and Technology,
2Department of Chemistry, Faculty of Science,
Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.
Biogas is one of the bio-energy resources produced by an aerobic degradation process of organic materials (biomass) consisting of the two GHG, CH4 and CO2 [6].
Chou: Chemical Engineering Journal 148 (2009), p. 539-545
Wang: Microporous and Mesoporous Materials 120 (2009), p. 421-425
Chen: Journal of Power Sources 196 (2011), p. 186-190
Biogas is one of the bio-energy resources produced by an aerobic degradation process of organic materials (biomass) consisting of the two GHG, CH4 and CO2 [6].
Chou: Chemical Engineering Journal 148 (2009), p. 539-545
Wang: Microporous and Mesoporous Materials 120 (2009), p. 421-425
Chen: Journal of Power Sources 196 (2011), p. 186-190
Online since: August 2012
Authors: Jun Xie, Xiao Ming Zhou, Su Gui Tian, Guang Liang Xie
Effects of Cooling Methods on Microstructure and Lattice Parameters of FGH95 Superalloy
XIE Jun1, a, TIAN Su-gui1, b, XIE Guang-liang1, c and Zhou Xiao-ming2, d
1School of Materials Science and Engineering, Shenyang University of Technology, Shenyang, Liaoning, China
2National Key Laboratory for Advanced High Temperature Structural Materials, Beijing Institute of Aeronautical Materials, Beijing, China
a xie1004@yahoo.com.cn, b tiansugui2003@163.com, c xie450408111@126.com, dZhouxiaoming2011@yeah.net
Keywords: FGH95 superalloy; cooling methods; microstructure; lattice parameters; misfit
Abstract.
Rare Metal Materials and Engineering, 2009, 38(1): 64 ~ 67
Transactions of Materials and Heat Treatment, 2002, 23(3): 72 ~ 75
Chinese Journal of Materials Research, 2007, 21(3): 225 ~ 229
Journal of Materials Engineering, 2010, suppl.1, 206 ~ 209.
Rare Metal Materials and Engineering, 2009, 38(1): 64 ~ 67
Transactions of Materials and Heat Treatment, 2002, 23(3): 72 ~ 75
Chinese Journal of Materials Research, 2007, 21(3): 225 ~ 229
Journal of Materials Engineering, 2010, suppl.1, 206 ~ 209.