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Online since: October 2010
Authors: Ji You Gu, Ming Wei Di, Hai Yan Tan, Li Bin Zhu, Yan Hua Zhang, Yun Wu Zheng
Study on Bonding Properties of birch with API adhesive
Yanhua Zhang1, 2, a, Jiyou Gu1, b, Yunwu Zheng1, c, Haiyan Tan1, d, Mingwei Di1, e, Libin Zhu1, f,
1College of Material Science and Engineering, Northeast Forestry University, Harbin, China, 150040,P.
China 2Key Laboratory of Bio-based Material Science and Technology, Northeast Forestry University, Harbin, China, 150040,P.
Experiments The wood material in this study was birch, collected from Forestry Bureau of Heilongjiang Province in China.
Journal of Coating Technology,(2000);Vol,72.No.904,p. 35-37
Zhu, Crosslinking reaction of poly (vinyl alcohol) with glyoxal, JOURNAL OF POLYMER RESEARCH, (2009),p.9362
China 2Key Laboratory of Bio-based Material Science and Technology, Northeast Forestry University, Harbin, China, 150040,P.
Experiments The wood material in this study was birch, collected from Forestry Bureau of Heilongjiang Province in China.
Journal of Coating Technology,(2000);Vol,72.No.904,p. 35-37
Zhu, Crosslinking reaction of poly (vinyl alcohol) with glyoxal, JOURNAL OF POLYMER RESEARCH, (2009),p.9362
Online since: February 2013
Authors: Yu Shi, You Gang Xiao
Acknowledgements
The authors wish to thank China Natural Science Foundation(50975289), China Postdoctoral Science Foundation(20100471229, 201104514 ) for funding this work.
References [1] Xiaofeng Zhang, Yougang Xiao, and Helian Deng, Noise source localization investigation in high speed train based on microphone array, Applied Mechanics and Materials. 103 (2012) 285-291
[2] Iwamoto K, Higashi A, Some consideration toward reducing aerodynamic noise on pantograph, Japanese Railway Engineering.122 (1993) 1-4 [3] Sueki T, Ikeda M, Takaishi T, Aerodynamic noise reduction using porous materials and their application to high-speed pantographs, Quarterly Report of Railway Technical Research Institute. 50(2009) 26-31
Journal of Sound and Vibration, 231(2000) 577-593
Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit,222(2008) 423-431
References [1] Xiaofeng Zhang, Yougang Xiao, and Helian Deng, Noise source localization investigation in high speed train based on microphone array, Applied Mechanics and Materials. 103 (2012) 285-291
[2] Iwamoto K, Higashi A, Some consideration toward reducing aerodynamic noise on pantograph, Japanese Railway Engineering.122 (1993) 1-4 [3] Sueki T, Ikeda M, Takaishi T, Aerodynamic noise reduction using porous materials and their application to high-speed pantographs, Quarterly Report of Railway Technical Research Institute. 50(2009) 26-31
Journal of Sound and Vibration, 231(2000) 577-593
Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit,222(2008) 423-431
Online since: June 2008
Authors: Sheng Lu, Jing Chen, Liu Qiao Chen
Pseudoelastic behavior of Cu-Al-Be shape memory wires subjected to
varied loading and unloading cycles
Sheng LU 1, a, Jing CHEN
2,b, Liu-qiao CHEN
3
1 ,2,3
Jiangsu University of Science and Technology , 2, Mengxi Rd, Zhenjiang, Jiangsu ,China
a
lusheng119@yahoo.com.cn, bchenjing0612@yahoo.com.cn
Keywords: shape memory alloy, pseudoelasticity, recoverable strain, cyclic tensile tests
Abstract.
Forum Vol. 475-479 (2005), p.1915 [3] D.Cui, H.N.Li and G.B.Song: Journal of Dalian University of Technology Vol. 47 (2007), p.257 [4] X.B.
Chen: China Civil Engineering Journal Vol.37 (2004),p.10 [5] J.M.
Eberhardt: Materials Science and Engineering Vol.A290 (2000), p171 [8] J.
Patoor: Materials Science and Engineering Vol.A 378 (2004), p.232 [10] K.Otsuka,C.M.Wayman,K.Nakai, H.Sakamoto,K.Shimizu:Acta Metall Vol.24 (1976) , p.207
Forum Vol. 475-479 (2005), p.1915 [3] D.Cui, H.N.Li and G.B.Song: Journal of Dalian University of Technology Vol. 47 (2007), p.257 [4] X.B.
Chen: China Civil Engineering Journal Vol.37 (2004),p.10 [5] J.M.
Eberhardt: Materials Science and Engineering Vol.A290 (2000), p171 [8] J.
Patoor: Materials Science and Engineering Vol.A 378 (2004), p.232 [10] K.Otsuka,C.M.Wayman,K.Nakai, H.Sakamoto,K.Shimizu:Acta Metall Vol.24 (1976) , p.207
Online since: July 2011
Authors: Fu Min Li, Guo Zhang Tang, Zhen Gao, Yan Chang Kong, Kun Ouyang
Experimental Materials and Method
Compositions of iron ore and coke used in the experiment were shown as table 1 and table 2, both materials are broken and screening, dried at 120℃ for 1h before used in experiment.
Acknowledgements This work was financially supported by the Hebei Natural Science Foundation (E2007000590) and the National Natural Science Foundation of China (50374036, 50874036).
Na: Journal of Baotou Institute of Iron and Steel Vol. 17(1998), P. 267 [2] Q.
Li: Study on new technology of Hydrogen-rich gas pure oxygen BF (Beijing University of Science and Technology, China 2002) [9] M.
Zhao: Journal of Metallography Vol. 34 (1998), P.571 [11] K.
Acknowledgements This work was financially supported by the Hebei Natural Science Foundation (E2007000590) and the National Natural Science Foundation of China (50374036, 50874036).
Na: Journal of Baotou Institute of Iron and Steel Vol. 17(1998), P. 267 [2] Q.
Li: Study on new technology of Hydrogen-rich gas pure oxygen BF (Beijing University of Science and Technology, China 2002) [9] M.
Zhao: Journal of Metallography Vol. 34 (1998), P.571 [11] K.
Online since: October 2004
Authors: Lasar S. Shvindlerman, Günter Gottstein, Anthony D. Rollett
That is why the every attempt to revise either the
derivation of VN-M relation or its consequences attracts
considerable attention from materials scientists.
Although an nsided convex grain is considered it is easy to see that the same result would be obtained for a grain Journal Title and Volume Number (to be inserted by the publisher) 5 with concave boundaries.
One of the authors (LSS) wishes to thank the Japan Society for the Promotion of Science and the Russian Foundation for Fundamental Research (Grant RFFI-DFG 03 02 04000) for financial support.
ADR acknowledges support by the MRSEC program of the National Science Foundation under Award Number DMR-0079996 and the support of the Institut für Metallkunde und Metallphysik, RWTH-Aachen, during a sabbatical period in Germany.
Von Neumann, in "Metal Interfaces" Americal Society for Testing Materials, Cleveland, 108 (1952)
Although an nsided convex grain is considered it is easy to see that the same result would be obtained for a grain Journal Title and Volume Number (to be inserted by the publisher) 5 with concave boundaries.
One of the authors (LSS) wishes to thank the Japan Society for the Promotion of Science and the Russian Foundation for Fundamental Research (Grant RFFI-DFG 03 02 04000) for financial support.
ADR acknowledges support by the MRSEC program of the National Science Foundation under Award Number DMR-0079996 and the support of the Institut für Metallkunde und Metallphysik, RWTH-Aachen, during a sabbatical period in Germany.
Von Neumann, in "Metal Interfaces" Americal Society for Testing Materials, Cleveland, 108 (1952)
Online since: May 2013
Authors: Wen Jun Liu, Pan Yue Zhang, Wei Fang Ma, Hao Guo
Materials and methods
1.1 Membranes and experimental setup
The RO/NF setup system is shown in Figure 2.
The new membrane’s surface is smooth and its pore distribution is uniform, whereas the surface of the fouling membrane has some crystal materials and clogged pores.
Acknowledgements This work was financially supported by the Beijing Forestry University Young Scientist Fund (BLX2011021) and Beijing Municipal Science and Technology(Z111100058911003).
International Journal of Phytoremediation, 2009, 11(1): 53–64
Journal of American Water Works Association, 1997, 89(10): 102–114
The new membrane’s surface is smooth and its pore distribution is uniform, whereas the surface of the fouling membrane has some crystal materials and clogged pores.
Acknowledgements This work was financially supported by the Beijing Forestry University Young Scientist Fund (BLX2011021) and Beijing Municipal Science and Technology(Z111100058911003).
International Journal of Phytoremediation, 2009, 11(1): 53–64
Journal of American Water Works Association, 1997, 89(10): 102–114
Online since: February 2014
Authors: Hong Guan Wu, Guo Xian Yu, Hai Feng Li
Experimental materials
The deacidification agent was composed of solvent and alkali.
The used alkali materials are NaOH, NH3 and cyclohexyl amine.
REFERENCES: [1] Tebbal S: Hydrocarbon Engineering Vol. 3(2000), P.64 [2] Jing Hemin, Zheng Yugui, Yao Zhiming: Corrosion & Protection in Petrochemical Industry Vol. 16(1999), P. 1 [3] Geza H S, Masliyah J H, Czarnecki J: J Colloid and Interface Science Vol. 257(2003), P. 299 [4] Ren Xiaoguang, Qi Liang, Song Yongji: Chinese Journal of Process Engineering Vol. 4(2004), P.401 [5] Tang Xiaodong, Xiao Huangfei, Cui Yingxian: Journal of Southwest Petroleum University(Science & Technology Edition), Vol. 29(2007), P.104 [6] Shi Lijuan, Shen Benxian,Wang Gongqun: Petroleum Processing and Petrochemicals Vol. 39(2008), P.16 [7] Sun Xueying, Wang Yanzhen, Liu Chenguang: Acta petrolei Sinica (Petroleum Preocessing Section), Vol. 23(2007), P.92 [8] Sartori G, Savage D W, Blum S C: U.S.
Patent 5948238.(1999) [9] Zhang A H, Ma Q S, Wang K S: Applied Catalysis A:Gen Vol. 303(2006), P. 103 [10] Shen H P, Wang Y Z, Li R: Petroleum Science Vol. l(2004), P. 81
The used alkali materials are NaOH, NH3 and cyclohexyl amine.
REFERENCES: [1] Tebbal S: Hydrocarbon Engineering Vol. 3(2000), P.64 [2] Jing Hemin, Zheng Yugui, Yao Zhiming: Corrosion & Protection in Petrochemical Industry Vol. 16(1999), P. 1 [3] Geza H S, Masliyah J H, Czarnecki J: J Colloid and Interface Science Vol. 257(2003), P. 299 [4] Ren Xiaoguang, Qi Liang, Song Yongji: Chinese Journal of Process Engineering Vol. 4(2004), P.401 [5] Tang Xiaodong, Xiao Huangfei, Cui Yingxian: Journal of Southwest Petroleum University(Science & Technology Edition), Vol. 29(2007), P.104 [6] Shi Lijuan, Shen Benxian,Wang Gongqun: Petroleum Processing and Petrochemicals Vol. 39(2008), P.16 [7] Sun Xueying, Wang Yanzhen, Liu Chenguang: Acta petrolei Sinica (Petroleum Preocessing Section), Vol. 23(2007), P.92 [8] Sartori G, Savage D W, Blum S C: U.S.
Patent 5948238.(1999) [9] Zhang A H, Ma Q S, Wang K S: Applied Catalysis A:Gen Vol. 303(2006), P. 103 [10] Shen H P, Wang Y Z, Li R: Petroleum Science Vol. l(2004), P. 81
Online since: May 2013
Authors: James C. Chen, Ling Huey Su, Chih Yao Wei, Shu Jen Hu
Creativity as an Exact Science.
Gordon & Breach Science Publishers (1988)
The TRIZ J, March 4. (2005) http://www.triz-journal.com/archives/2005/03/04.pdf [8] Li Y, Wang J, Li X, Zhao W, Design creativity in product innovation.
Chen, Chih-Heng Chang, “Applying TRIZ Methodology to Assist Product Improvement – Take Folding Bicycle as an Example ” , Key Engineering Materials Vol. 450, pp 27-30. (2011) [12] Shu-Jen Hu, Ling-Huey Su, King-Lien Lee, J.
Chen, An-Chi Huang, “Using TRIZ Methods in Product Design and Improvement of a Presenter Mouse ” , Key Engineering Materials Vol. 486, pp13-16. (2011) [13] Huang, Wern-Yih, Patent Practice, 3rd Edition, San Min Book Co., Taipei. (2002) [14] Patent database retrieval system of the Intellectual property office of Ministry of Economic Affairs of Taiwan. http://twpat.tipo.gov.tw, [15] Interactive TRIZ Matrix & 40 Principles, http://www.triz40.com/ [16] Intellectual property office of Ministry of Economic Affairs of Taiwan. http://twpat2.tipo.gov.tw/tipotwoc/tipotwkm?
Gordon & Breach Science Publishers (1988)
The TRIZ J, March 4. (2005) http://www.triz-journal.com/archives/2005/03/04.pdf [8] Li Y, Wang J, Li X, Zhao W, Design creativity in product innovation.
Chen, Chih-Heng Chang, “Applying TRIZ Methodology to Assist Product Improvement – Take Folding Bicycle as an Example ” , Key Engineering Materials Vol. 450, pp 27-30. (2011) [12] Shu-Jen Hu, Ling-Huey Su, King-Lien Lee, J.
Chen, An-Chi Huang, “Using TRIZ Methods in Product Design and Improvement of a Presenter Mouse ” , Key Engineering Materials Vol. 486, pp13-16. (2011) [13] Huang, Wern-Yih, Patent Practice, 3rd Edition, San Min Book Co., Taipei. (2002) [14] Patent database retrieval system of the Intellectual property office of Ministry of Economic Affairs of Taiwan. http://twpat.tipo.gov.tw, [15] Interactive TRIZ Matrix & 40 Principles, http://www.triz40.com/ [16] Intellectual property office of Ministry of Economic Affairs of Taiwan. http://twpat2.tipo.gov.tw/tipotwoc/tipotwkm?
Online since: January 2017
Authors: Ya Xin Wang, Zhao Hui Gong, Tong Sheng Xia
Many experiments indicate that defects may change the properties of the materials, and make it possible to achieve new functions.
Firsov: Science, Vol. 306 (2004) No.5696, p.666
Falkovsky: Journal of Physics, Vol. 129 (2008) No.1
Dai: Science, Vol.319 (2008) No.5867, p.1229
Liu: New Carbon Materials, Vol. 27 (2012) No.3, p.181
Firsov: Science, Vol. 306 (2004) No.5696, p.666
Falkovsky: Journal of Physics, Vol. 129 (2008) No.1
Dai: Science, Vol.319 (2008) No.5867, p.1229
Liu: New Carbon Materials, Vol. 27 (2012) No.3, p.181
Online since: April 2014
Authors: Man Zhao, Yu Rong Zhong, Bao Long Xu
Lu2O3 is a promising scintillator material for ionizing radiation sensors employing CCD detectors, which is applied to more areas in response to the need for high-performance detectors for use in high-energy physics, medicine and industry [3-5].
This research is supported by National Natural Science Foundation of China (No.11105117).
Fabrication and luminescent properties of Eu3+-doped Lu2O3 nanopowders and transparent ceramics, Chinese Journal of Luminescence. 32 (2011) 913-919
Size tailoring of silver colloids reduction in W/O micro-emulsions, Journal of Colloid and Interface Science. 148 (1992) 80-90
Synthesis of nonosized Lu2O3 powders with different morphologies by solvothermal method, Journal of Synthetic Crystals. 39 (2010) 422-427
This research is supported by National Natural Science Foundation of China (No.11105117).
Fabrication and luminescent properties of Eu3+-doped Lu2O3 nanopowders and transparent ceramics, Chinese Journal of Luminescence. 32 (2011) 913-919
Size tailoring of silver colloids reduction in W/O micro-emulsions, Journal of Colloid and Interface Science. 148 (1992) 80-90
Synthesis of nonosized Lu2O3 powders with different morphologies by solvothermal method, Journal of Synthetic Crystals. 39 (2010) 422-427