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Online since: March 2007
Authors: Shan Yi Du, Xiao Dong He, Bo Ming Zhang, Fu Hong Dai
Experiments
The materials in all the experiments are T300/Epoxy.
International Journal of Solids and Structures, 39 (2002) 175
Composite Materials 15 (1981) 175-94
Composite Materials 15 (1981) 296-310 [10] MW Hyer.
Composite Materials 16 (1982) 296-310 [11] ML Dano, MW Hyer.
International Journal of Solids and Structures, 39 (2002) 175
Composite Materials 15 (1981) 175-94
Composite Materials 15 (1981) 296-310 [10] MW Hyer.
Composite Materials 16 (1982) 296-310 [11] ML Dano, MW Hyer.
Online since: August 2004
Authors: Joseph L. Rose
• Smart structures and materials with embedded sensors is becoming a reality
[2] Rose, J.L., 2003, "Back to Basics - Dispersion Curves in Guided Wave Testing," Materials Evaluation, 60, p. 20
[3] Rose, J.L., 2003, "NDT Solution - Guided Wave Testing of Water Loaded Structures," Materials Evaluation, 60, p. 23
[21] Li, J. and Rose, J.L., 2001, "Guided Wave Testing of Containment Structures," Materials Evaluation, 59, pp. 783-787
Journal of Solids & Structures, 40, pp. 2645-2658
[2] Rose, J.L., 2003, "Back to Basics - Dispersion Curves in Guided Wave Testing," Materials Evaluation, 60, p. 20
[3] Rose, J.L., 2003, "NDT Solution - Guided Wave Testing of Water Loaded Structures," Materials Evaluation, 60, p. 23
[21] Li, J. and Rose, J.L., 2001, "Guided Wave Testing of Containment Structures," Materials Evaluation, 59, pp. 783-787
Journal of Solids & Structures, 40, pp. 2645-2658
Online since: February 2011
Authors: Ming Ming Lu, Li Wei Qiu, Jie Qiong Lin
However,the machining tools are not the only ones,because the materials and shapes of the tools have not been taken into consideration.
In the machining process,we need to consider these.In fact,there are many factors caused more difficult to choice.Next,we will select some common materials, shapes and reasonable size of processing tools to establish a machining tool library.And then,a kind of optimization method can be used for selecting the tools from the machining tool library.
Comparing two materials of tools in Table2.
Table 2 The classification of polishing tools based on materials material of the tool advantages shortcomings Removal[Cu mm / min] polyurethane model greater hardness, wear resistance structure heterogeneity, large size 0.014 synthetic leather model texture soft, elastic deformation, homogeneous poor wear resistance 0.006 The size of the tools.Selected the size of the machining tool according to the minimum curvature radius of part surfaces.In this paper we selected 40cm as a minimum radius of curvature to illustrate the problem.
Acknowledgements This work was financially supported by the Jilin Technological Support Key Plan sustain(20080352) References [1]J.H.Burge,J.R.Angel,B.Cuerden,H.M.Martin,S.M.Miller and D.G.Sandler,in:Proceedings of SPIE, Vol.l(1998),p.690 [2]H.B.Cheng,Y.P.Feng,F.C.Song,Y.S.Bian,L.Q.Ren and Y.T.Wang,in Chinese:Transaction of Beijing Institute of Technology,Vol.5(2008),p.418 [3]G.J.Dong, C.S.Han and S.Dong,in Chinese: Key Engineering Materials, Vol.30(2008),p.364 [4]X.Zhao,L.P.Song,Q.Kong and G.G.Mu.
In the machining process,we need to consider these.In fact,there are many factors caused more difficult to choice.Next,we will select some common materials, shapes and reasonable size of processing tools to establish a machining tool library.And then,a kind of optimization method can be used for selecting the tools from the machining tool library.
Comparing two materials of tools in Table2.
Table 2 The classification of polishing tools based on materials material of the tool advantages shortcomings Removal[Cu mm / min] polyurethane model greater hardness, wear resistance structure heterogeneity, large size 0.014 synthetic leather model texture soft, elastic deformation, homogeneous poor wear resistance 0.006 The size of the tools.Selected the size of the machining tool according to the minimum curvature radius of part surfaces.In this paper we selected 40cm as a minimum radius of curvature to illustrate the problem.
Acknowledgements This work was financially supported by the Jilin Technological Support Key Plan sustain(20080352) References [1]J.H.Burge,J.R.Angel,B.Cuerden,H.M.Martin,S.M.Miller and D.G.Sandler,in:Proceedings of SPIE, Vol.l(1998),p.690 [2]H.B.Cheng,Y.P.Feng,F.C.Song,Y.S.Bian,L.Q.Ren and Y.T.Wang,in Chinese:Transaction of Beijing Institute of Technology,Vol.5(2008),p.418 [3]G.J.Dong, C.S.Han and S.Dong,in Chinese: Key Engineering Materials, Vol.30(2008),p.364 [4]X.Zhao,L.P.Song,Q.Kong and G.G.Mu.
Online since: October 2018
Authors: Hussein Y. Ammar
It releases mainly of furniture and decorating materials [5].
Wu, Applied Surface Science,423 (2017) 451–456
Al-Sayari, Science of Advanced Materials 3 (2011) 901–906
Hahn, Journal of Nanoscience and Nanotechnology 8 (2008) 6010–6016
Ammar, Journal of Molecular Structure:THEOCHEM, 823(2007) 47-58
Wu, Applied Surface Science,423 (2017) 451–456
Al-Sayari, Science of Advanced Materials 3 (2011) 901–906
Hahn, Journal of Nanoscience and Nanotechnology 8 (2008) 6010–6016
Ammar, Journal of Molecular Structure:THEOCHEM, 823(2007) 47-58
Online since: May 2011
Authors: You Bao Wang, Nan Nan Wang, Shan Hu
Materials and methods
Cultivation.
Kozhevnikova: Russian Journal of Plant Physiology Vol. 53 (2006), p. 257 [5] R.
Yousefi: Environmental Earth Sciences Vol. 59 (2009), p. 315 [8] L.
Das: Acta Agriculturae Scandinavica, Section B - Soil & Plant Science Vol. 49 (1999), p. 234 [10] M.
Feng: Journal of Agro-Environment Science Vol. 28 (2009), p. 72 [13] C.
Kozhevnikova: Russian Journal of Plant Physiology Vol. 53 (2006), p. 257 [5] R.
Yousefi: Environmental Earth Sciences Vol. 59 (2009), p. 315 [8] L.
Das: Acta Agriculturae Scandinavica, Section B - Soil & Plant Science Vol. 49 (1999), p. 234 [10] M.
Feng: Journal of Agro-Environment Science Vol. 28 (2009), p. 72 [13] C.
Online since: November 2012
Authors: Meng Hua Wu, Zhi Li, Na Na Liu
China Science and Technology Information, 2008,(15): 37-38
Journal of Functional Materials, 2008, 39(4): 690-694
The Chinese Journal of Nonferrous Metals, 2009, 19(3): 517-522
Applied Surface Science, 2006, (253): 2132- 2137
Applied Surface Science, 2008, (254): 5910-5916
Journal of Functional Materials, 2008, 39(4): 690-694
The Chinese Journal of Nonferrous Metals, 2009, 19(3): 517-522
Applied Surface Science, 2006, (253): 2132- 2137
Applied Surface Science, 2008, (254): 5910-5916
Online since: August 2014
Authors: De Qing Liang, Dong Liang Li, Cui Ping Tang
Materials Studio 4.3 was utilized for simulation.
Tohidi: Chemical Engineering Science Vol. 66(2011), p. 278 [12].
Liang, et al :Journal of Xi’an Jiaotong University, In Chinese.Vol. 42(2008), p.333 [13].
Journal of supramolecular chemisty, Vol. 2(2002), p.405 [14].
Science in China Series B: Chemistry, Vol. 53(2010), p.2622 [16].
Tohidi: Chemical Engineering Science Vol. 66(2011), p. 278 [12].
Liang, et al :Journal of Xi’an Jiaotong University, In Chinese.Vol. 42(2008), p.333 [13].
Journal of supramolecular chemisty, Vol. 2(2002), p.405 [14].
Science in China Series B: Chemistry, Vol. 53(2010), p.2622 [16].
Online since: November 2011
Authors: Tao Wang, Ming Chao Zhu, Sheng Li Yin, Hong Guang Jia
Precision Analysis of Simulation Systems with Hardware-in-loop Caused by Performance of Three-Axis Virtual Flight Motion Simulator
Tao Wang1, 2,a, Ming-chao Zhu2, sheng-li Yin2 and Hong-guang Jia2
1 Graduate School of Chinese Academy of Sciences.
China 2Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China awang_tao08@hotmail.com Keywords: Three-Axis Virtual Flight Motion Simulator; angel accuracy; Bandwidth; hardware-in-loop Abstract.
The impact of deformation on the position accuracy is very small because of good materials and the aid of finite element software, so it can be not considered.
Journal of System Simulation, Apr.2007, Vol. 19 No. 8, pp.1717-1720 [4] JIN Guang,WANG Jiaqi.
Journal of National University of Defense Technology, 2008,Vol. 30 No. 1, pp.104-109 [8] Alasty A , Abedi H.
China 2Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China awang_tao08@hotmail.com Keywords: Three-Axis Virtual Flight Motion Simulator; angel accuracy; Bandwidth; hardware-in-loop Abstract.
The impact of deformation on the position accuracy is very small because of good materials and the aid of finite element software, so it can be not considered.
Journal of System Simulation, Apr.2007, Vol. 19 No. 8, pp.1717-1720 [4] JIN Guang,WANG Jiaqi.
Journal of National University of Defense Technology, 2008,Vol. 30 No. 1, pp.104-109 [8] Alasty A , Abedi H.
Online since: May 2011
Authors: Jun Lan Zhao
Acknowledgements
This work was financially supported by Beijing Municipal Commission of Education, science and technology development planning: km200810009006.
References [1] Chunyu Zhang,Yanxi Gao, Mingfeng Jiang: Highway engineering highway engineering highway engineering 33(5): 109~113.(2008) [2] Continis, Bellezzaf, Christoumd: Journal of Hazardous Materials, 78: 223~ 245.(2000) [3] Baosong Liang,Yili Cao, Fuzzy sets and applications.
Beijing: Science Press, 46~47. (2007) [4] Duanling Liu, Guohuan Tan, Qiguang Li: Chinese Journal of rock mechanics and engineering, 18(2):170~175. (1999)
References [1] Chunyu Zhang,Yanxi Gao, Mingfeng Jiang: Highway engineering highway engineering highway engineering 33(5): 109~113.(2008) [2] Continis, Bellezzaf, Christoumd: Journal of Hazardous Materials, 78: 223~ 245.(2000) [3] Baosong Liang,Yili Cao, Fuzzy sets and applications.
Beijing: Science Press, 46~47. (2007) [4] Duanling Liu, Guohuan Tan, Qiguang Li: Chinese Journal of rock mechanics and engineering, 18(2):170~175. (1999)
Online since: October 2010
Authors: Atsushi Chiba, Yasunori Doi
Copper plating on SUS 304 plate from acid bath
Atsushi Chiba1a and Yasunori Doi1
1Department of Materials Chemistry, Faculty of Engineering, Yokohama National University,
79-5, Tokiwadai, Hodogaya-ku, Yokohama, 240-8501, Japan
a-chiba@ynu.ac.jp,
Key words: Cu plating, SUS 304, Acid bath, Sonication
Abstract SUS 304 used.
Xiong and J-L Meng, Electron microscopic study on interfacial characterization of electroless Ni-W-P plating aluminium alloy, Applied Surface Science, 253 (2007), p.5029-5034
Zuo, Study on corrosion resistance of palladium on 316L stainless steel by electroplating and electroless plating, Corrosion Science, 50 (2008) p.2873-2878
Wang, Electrochemical behavior of oxide films of stainless steel in 40 kHz sonicated sulphate electrolytes, Chinese Journal of Aeronautics, 20 (2007) p.148-152
Mahmoud, Electroless deposition of nickel and copper on titanium substrate: Characterization and application, Journal of Alloys and Compounds, 472 (2009) p.595-601.
Xiong and J-L Meng, Electron microscopic study on interfacial characterization of electroless Ni-W-P plating aluminium alloy, Applied Surface Science, 253 (2007), p.5029-5034
Zuo, Study on corrosion resistance of palladium on 316L stainless steel by electroplating and electroless plating, Corrosion Science, 50 (2008) p.2873-2878
Wang, Electrochemical behavior of oxide films of stainless steel in 40 kHz sonicated sulphate electrolytes, Chinese Journal of Aeronautics, 20 (2007) p.148-152
Mahmoud, Electroless deposition of nickel and copper on titanium substrate: Characterization and application, Journal of Alloys and Compounds, 472 (2009) p.595-601.