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Online since: February 2011
Authors: Sheng Zhi Li, Yuan De Yin, Yong Lin Kang, Lan Wei Hu
China
2Department of Materials Forming and Control Engineering, Anhui University of Technology,
Maanshan 243002, P.R.
(In Chinese) [2] P.Sobkowiak: Journal of Materials Processing Technology, Vol. 61(1996), p. 347
[3] K.S.Lee, L.Lu: Journal of Materials Processing Technology, Vol. 113 (2001), p. 739
[4] M.VACANCE, E.MASSON and J.L.CHENOT: Journal of Materials Processing Technology, Vol. 24(1990), p. 421
Xu, et al: Advanced Materials Research, Vols. 97-101(2010), p. 3097.
(In Chinese) [2] P.Sobkowiak: Journal of Materials Processing Technology, Vol. 61(1996), p. 347
[3] K.S.Lee, L.Lu: Journal of Materials Processing Technology, Vol. 113 (2001), p. 739
[4] M.VACANCE, E.MASSON and J.L.CHENOT: Journal of Materials Processing Technology, Vol. 24(1990), p. 421
Xu, et al: Advanced Materials Research, Vols. 97-101(2010), p. 3097.
Online since: November 2006
Authors: Chang Liang Zheng, Cheng Qiang Wang, Zhong Hua Chen
China
2
Electromechanics and Materials Engineering College, Dalian Maritime University, Dalian 116026,
P.R.
Journal of the Mechanics and Physics of Solids, 1960, 8: 100-104 [2] Barenblatt G I.
Crack growth and development of fracture zones in plain concrete and similar materials.
Division of Building Materials, Lund Institute of Technology, Report TVBM-1006, Sweden, 1981 [5] Reinhardt H W , Xu Shilang.
International Journal of Fracture. 1999, 98(2): 111-149
Journal of the Mechanics and Physics of Solids, 1960, 8: 100-104 [2] Barenblatt G I.
Crack growth and development of fracture zones in plain concrete and similar materials.
Division of Building Materials, Lund Institute of Technology, Report TVBM-1006, Sweden, 1981 [5] Reinhardt H W , Xu Shilang.
International Journal of Fracture. 1999, 98(2): 111-149
Online since: April 2016
Authors: Da Wei Liu, Huan Li, Hong Bin Qi
At home, since the sixty's, Tianjin, Lanzhou, Nanjing, Ma'anshan and other areas began to study the method of processing micaceous iron materials and coatings, with hematite as raw material.
Choose butyl titanate as the basic material.
Gabel: European Coatings Journal, 2001,( 7~ 8) : 34
[8] Jungong Li, Zhenmin Li, Yuejin Liu and et al: Journal of Hunan Institute of Engineering, 2004, 14(2):70
[13] Weimiao XIE, Hui Chen, xuanhui Zhang and et al: Chinese Journal of Catalysis 34 (2013) 1076
Choose butyl titanate as the basic material.
Gabel: European Coatings Journal, 2001,( 7~ 8) : 34
[8] Jungong Li, Zhenmin Li, Yuejin Liu and et al: Journal of Hunan Institute of Engineering, 2004, 14(2):70
[13] Weimiao XIE, Hui Chen, xuanhui Zhang and et al: Chinese Journal of Catalysis 34 (2013) 1076
Online since: August 2024
Authors: Mathias Rommel, Anton J. Bauer, Carsten Hellinger
Kim, Formation of Ni-silicide at the interface of Ni/4H-SiC, Journal of the Electrochemical Society (2011)
[3] B.
International Journal of Materials Research 1995; 86: 530 – 539 [10] I.V.
Chemical Thermodynamics: University Science Books; 1983 [12] T.
Interfacial Structure and Bond Strength of Solid State Bonded SiC/Ni Joints (Materials, Metallurgy & Weldability).
Materials Chemistry and Physics 1998; 52: 99 – 146 [19] T.
International Journal of Materials Research 1995; 86: 530 – 539 [10] I.V.
Chemical Thermodynamics: University Science Books; 1983 [12] T.
Interfacial Structure and Bond Strength of Solid State Bonded SiC/Ni Joints (Materials, Metallurgy & Weldability).
Materials Chemistry and Physics 1998; 52: 99 – 146 [19] T.
Online since: February 2011
Authors: Li Jun Jin, Tian Yu Li, Qing Hong Fang, Na Wang, Yue Liang
Introduction
In most of industrial applications, elastomers are used as composite materials.
Experiments in the fabrication of biodegradable materials from renewable plant resources showed that corn starch is a potential raw material, because it is largely available, renewable.
Experimental 2.1 Materials Most raw materials were analytical grade reagents. 3, 4-2H-dihydropyran, Aluminium salt, Maleic anhydride, Pyridine (PY), N,N-dimethylformamide (DMF) and Acetone were provided by Tian jin Kemiou Chemical Reagent Co.
Journal of Wuxi University of Light Industry, Vol.19 (2000), p,495
Journal of Wuhan University, Vol.49 (2003), p,193
Experiments in the fabrication of biodegradable materials from renewable plant resources showed that corn starch is a potential raw material, because it is largely available, renewable.
Experimental 2.1 Materials Most raw materials were analytical grade reagents. 3, 4-2H-dihydropyran, Aluminium salt, Maleic anhydride, Pyridine (PY), N,N-dimethylformamide (DMF) and Acetone were provided by Tian jin Kemiou Chemical Reagent Co.
Journal of Wuxi University of Light Industry, Vol.19 (2000), p,495
Journal of Wuhan University, Vol.49 (2003), p,193
Online since: May 2014
Authors: Ming Jun Xu, Lin Li Shi, Qi Shi, Yong Chao Wang, Yi Xiang Duan, Jie Wang
A Computer-controlled In-situ Analysis Instrument based on Laser Induced Breakdown Spectroscopy
Jie Wang1,a, Mingjun Xu2 3,b, Linli Shi2 3,c, Qi Shi2 3,d, Yongchao Wang﹡{TTP}-415
1,e,
Yixiang Duan﹡{TTP}-415
2,f
1 School of manufacturing science and Engineering, Sichuan University, Chengdu 610065, China
2 Research Center of Analytical Instrumentation, College of Life Sciences, Sichuan University, Chengdu 610064, China
3College of Chemistry, Sichuan University, Chengdu 610064, China
a531647229@qq.com,b282120108@qq.com, c819258005qq.com,d675533655@qq.com, ewang_yongchao@sina.com, fYduan1@163.com
﹡{TTP}-415
Corresponding author:Yongchao Wang,E-mail: wang_yongchao@sina.com
Yixiang Duan,E-mail: Yduan1@163.com.
A portable LIBS device capable of analyzing material component especially for drilling fluids in the drilling site was designed and assembled.
In recent years, a large number of scholars have conducted research on LIBS in the detection of various materials[10].
Journal of Analytical Atomic Spectrometry, 2012. 27(2): p. 276-283
[10] Liang, L., et al., Classification of steel materials by laser-induced breakdown spectroscopy coupled with support vector machines.
A portable LIBS device capable of analyzing material component especially for drilling fluids in the drilling site was designed and assembled.
In recent years, a large number of scholars have conducted research on LIBS in the detection of various materials[10].
Journal of Analytical Atomic Spectrometry, 2012. 27(2): p. 276-283
[10] Liang, L., et al., Classification of steel materials by laser-induced breakdown spectroscopy coupled with support vector machines.
Online since: March 2009
Authors: Joost R. Duflou, Hugo Sol, Ioannis Vasilakos, Jun Gu, Bachir Belkassem, Johan Verbert
Acknowledgements
The authors would like to acknowledge the financial support from the Flemish Institute of
fundamental Sciences (FWO) and from the Institute for the Promotion of Innovation by Science and
Technology in Flanders (IWT).
Filice: Shape and dimensional accuracy in single point incremental forming: state of the art and future trends, Journal of materials processing technology 191 (2007) 390-395
Duflou: Determination of strain in incremental sheet forming process, Key Engineering Materials, 344 (2007) 503-510
Matsubara: A computer numerically controlled dieless incremental forming of a sheet metal, Journal of engineering manufacture 215/7 (2001) 959-966
Jeswiet: Wall thickness variations in single point incremental forming, Journal of engineering manufacture 18/11 (2004) 1453-1459
Filice: Shape and dimensional accuracy in single point incremental forming: state of the art and future trends, Journal of materials processing technology 191 (2007) 390-395
Duflou: Determination of strain in incremental sheet forming process, Key Engineering Materials, 344 (2007) 503-510
Matsubara: A computer numerically controlled dieless incremental forming of a sheet metal, Journal of engineering manufacture 215/7 (2001) 959-966
Jeswiet: Wall thickness variations in single point incremental forming, Journal of engineering manufacture 18/11 (2004) 1453-1459
Online since: October 2017
Authors: Mourad Brioua, Kamel Fedaoui, Abdelyamine Boukhobza, Smail Benaicha
These materials are divided into two groups, according to their functionality time in the body.
S., Engineering Materials for Biomedical Applications, 2004, pp. 16-44
Lim, Metals and Materials International 12 (3) (2006) 193–206
Implants for surgery – metallic materials – part 1: Wrought stainless steel; 2007
Applied Surface Science 285P (2013) 65– 71 [15] G.B.
S., Engineering Materials for Biomedical Applications, 2004, pp. 16-44
Lim, Metals and Materials International 12 (3) (2006) 193–206
Implants for surgery – metallic materials – part 1: Wrought stainless steel; 2007
Applied Surface Science 285P (2013) 65– 71 [15] G.B.
Online since: July 2012
Authors: Xiao Xia Yan, Zhi Gang Zeng, Zhi Yu Hu, Xiao Hong Wang, Tian Liu
Thus we can precisely control the amount of materials through regulating the number of droplet dispensed.
Jabbour: Advanced materials (Deerfield Beach, Fla.) vol. 22 (2010), p. 673-85
Hammond: Advanced Functional Materials vol. 15 (2005), p. 945-954
Liu: Canadian Journal of Chemistry-Revue Canadienne De Chimie vol. 86 (2008), p. 657-667
Derby, "Inkjet Printing of Functional and Structural Materials: Fluid Property Requirements, Feature Stability, and Resolution," in Annual Review of Materials Research, Vol 40. vol. 40, ed, 2010, pp. 395-414.
Jabbour: Advanced materials (Deerfield Beach, Fla.) vol. 22 (2010), p. 673-85
Hammond: Advanced Functional Materials vol. 15 (2005), p. 945-954
Liu: Canadian Journal of Chemistry-Revue Canadienne De Chimie vol. 86 (2008), p. 657-667
Derby, "Inkjet Printing of Functional and Structural Materials: Fluid Property Requirements, Feature Stability, and Resolution," in Annual Review of Materials Research, Vol 40. vol. 40, ed, 2010, pp. 395-414.
Online since: June 2014
Authors: Ting Zhou, Ning Wang, Hui Guo, Yong Xu, Xue Feng Wang, Li Juan You
Alloy Material.
Social Sciences Academic Press. (2008):8~9.
Advanced Materials Research Vols. 821-822 (2013) p.1110-1117
Journal of Hazardous materials,(2010),179(1-3):1037-1041
Microchemical Journal, 2004, 76: 3- 9.
Social Sciences Academic Press. (2008):8~9.
Advanced Materials Research Vols. 821-822 (2013) p.1110-1117
Journal of Hazardous materials,(2010),179(1-3):1037-1041
Microchemical Journal, 2004, 76: 3- 9.