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Online since: September 2013
Authors: Ya Wen Dong, Wen Hui Liu, Xiao Hui Zhao, Zhi Tong Zhu
Acknowledgement The financial support of the Shaanxi Province Education Department Scientific Research Plan Projects (No. 12JK0051) and Shaanxi Province Nature Science Fund is gratefully acknowledged.
Strategic Management Journal, vol. 15(1994), p.167-178 [2] Tompkins J.
Materials Management & Distribution,2004,49(7), p71-73 [7] Guo Xuesong, Sun linyan, Xu Sheng.Study on a Kind of Reliability Model on Multi-echelon Supply Chain Based on SCPN.OPERATIONS RESEARCH AND MANAGEMENT SCIENCE,2006,15(6), p66-70 [8] R.
Online since: August 2013
Authors: Yong Hai Sun, Yan Lv, Xue Heng Tao, Xue Jun Wang, Ji Xin Yang, Hui Hui Wang
Study on the Intelligent Recognition Method for the Maturity Grade of Fresh Corn Ear based on Computer Vision Huihui Wang1,a, Yonghai Sun2, Yan Lv1, Xueheng Tao3, Xuejun Wang1, Jixin Yang1 1Mechanical Engineering & Automation College, Dalian Polytechnic University,Dalian,China. 2Biological & Agricultural Engineering College, Jilin University, Changchun,China 3Information Science & Engineering College, Dalian Polytechnic University,Dalian,China awhh419@126.com Keywords: fresh corn ear; maturity grade; computer vision; intelligent recognition; neural network Abstract.
Corn raw material sampling and online quality detection were accomplished by human.
A large amount of manpower and material resources were expended using artificial detection.
Acknowledgment This study is supported by the Doctoral Startup Project of Liaoning Province Science and Technology Plan and Liaoning Province Department of Education General Scientific and Technological Research Projects, the project numbers are 20121098 and L2012193 respectively, I would like to express my sincere gratitude here.
[3] Shuqin Yang, Jifeng Ning and Dongjian He, “Identification of corn breeds by BP neural network,” Journal of Northwest A&F University, vol. 32(supp), 2004, pp. 162-164
Online since: July 2011
Authors: Li Li Xu, Sheng Peng Liu
It shows that the modified MH whisker can obviously improve the flow abilities of HIPS/MH composites melt, which due to a thin PS shell wraps the MH whisker by in situ polymerization Acknowledgments We are grateful for the financial support of Science Research Foundation of Wuhan Institute of Technology (10105031).
Vol. 205 (2004), p. 2185 [3] B Ulrike, S Bernhard: Journal of Fire Science.
Guo: Fire and Materials.
Online since: July 2008
Authors: Qing Fen Li, Ying Jie Qiao, Chun Hui Li
Corrosion Behavior and Mechanism of a Cu-Ni Alloy in Marine Environment Li Qing-fen 1,2,a, Li Chun-hui 1,b,Qiao Ying-jie 1,c 1 College of Material Science and Chemical Engineering, Harbin Engineering University, 2 College of Mechanical and Electrical Engineering, Harbin Engineering University, Harbin 150001, China a qingfli@yahoo.com.cn, blichunhui@hrbeu.cn, cqiaoyingjie@hrbeu.cn Keywords: Corrosion; Cu-NI alloy; marine environment; microbiological influenced corrosion (MIC) Abstract.
In the present work, the corrosion behavior of marine pipeline material Cu-Ni alloy in the sterile seawater and SRB solution was investigated and the mechanism of MIC was discussed.
Zhang: Marine Environment Science Vol. 19 (2000), p. 27
Wu: Journal of Chemical Industry and Engineering Vol. 56 (2005): p.121-125
Online since: June 2012
Authors: Mei Qin Li, Gui Ying Shen, Zhen Zhe Li, Rui Jiang, Ming Ren
The material properties of batteries and cartridges were as shown in Table 1.
Material properties Item Density (kg/m3) Thermal Conductivity (W/m.K) Specific Heat (J/kg.K) Battery 2414 2.2 1011 Cartridge (ABS) 1014 0.25 1206 Parameter Study and Discussion In this paper, the parameter studies has been performed for improving the performance of the battery cooling system.
Acknowledgements Following are results of a study on the "Development of Software Platform for Analysis and Optimization of Battery Cooling System Used for HEV" Project (G20110049), supported by the Planned Science and Technology Project of Wenzhou City.
J. of Mechanical Science and Technology Vol. 22 (2008), p. 1602
Chemical Engineering Journal Vol. 101 (2004), p. 397
Online since: June 2010
Authors: Vytautas Grigas, Alexandra Legha, Rymantas Tadas Toločka, Anatolijus Sulginas
Zatsiorsky: Science and Practice of Strength Training.
Springer Science+Business Media, LLC, 6, Vol. 1 (2006), p. 407 - 412 [4] A.
Tolocka: Indoor rowing machine with training data analysis system, Journal of Vibroengineering, Vol. 9, No. 3 (2007), p. 69-73 [6] V.
Tolocka: Rowing force and its simulation on training facility, Mechatronic Systems and Materials 2008: 4th International Conference, July14 -17, 2008.
Online since: December 2012
Authors: Yun Zhi Chen, Zheng Jian Zhang, Yu Chuan Zhu
Influence of Inkjet Paper Coating Structure on Paper Properties and Print Performance ZHU Yuchuana, CHEN Yunzhib* and ZHANG Zhengjianc College of Packaging and Printing Engineering, Tianjin University of Science and Technology, China a739692758@qq.com, byzchen@tust.edu.cn, czhangzj@tust.edu.cn Keywords: Ink-jet printing; Ink-jet paper; Coating structure; Print performance Abstract.
Experimental Materials.
Fleming: TAPPI Journal Vol. 4 (2005), p. 11-16 [2] Hyun Kook Lee, Margaret K.
Berg: Colloid and Interface Science Vol. 3 (2006), p. 439-469 [8] Erik Svanholm: Inkjet Printing Vol. 4 (2007), p. 28-31 [9] Heilmann Jali, Lindqvist Ulf: JIST Vol. 44 (2000), p. 491-494
Online since: November 2012
Authors: Gui Sheng Gan, Chang Hua Du, Yi Luo, Chun Tian Li
The Design of TIG-AWP Based on Inverter and DSP Chuntian Li1, a, Yi Luo1, b, Changhua Du1, c, Guisheng Gan1, d 1College of Material Science and Engineering, Chongqing University of Technology, No.69 HongGuang Road, Ba’nan District, Chongqing, P.R.
The TIG-AWP experiment conditions and results The parameters and conditions of welding experiment are the following: the welding Parent material is 6061 aluminum alloy, its thickness was 2mm, the welding wire is ER5183, its diameter is 1.2mm, the welding speed is about 2.5mm/s, the welding current If is about 95A, Ar flow volume is about 7~8L/min.
References [1] Saurav Datta, Asish Bandyopadhyay and Pradip Kumar Pal,Solving multi-criteria optimization problem in submerged arc welding consuming a mixture of fresh flux and fused slag, The International Journal of Advanced Manufacturing Technology[J], 2007, Volume 35, Numbers 9-10, Pages 935-942
Mumaw, Portable and Intelligent Study Welding Inverter for Automotive and Sheet Metal Fabrication[J],Lecture Notes in Control and Information Sciences, 2007, Volume 362, Robotic Welding, Intelligence and Automation, Pages 367-374
Online since: October 2011
Authors: Jin Zhang, Jia Zeng, Chun Hua Zhao, Shi Jun Chen, Xian You Zhong
The elements of the rule layer were as follows: environment factors, material factors, machine factors, method factors and human factors.
Acknowledgements I would like to express my gratitude to National Natural Science Foundation Project of China (No. 51075234) and Hubei Key Laboratory of Hydroelectric Machinery Design & Maintenance Open Fund (No. 2010KJX07), for their useful suggestions and funding support on our thesis.
[6] Zufeng Shao:Journal of Chinese People's Public Security University,(2003)No.6,p.44
[7] Jing Shi and Jun Fan:SCIENCE & TECHNOLOGY INFORMATION,(2010)No.30,p.112
[9] Zailu Sun:Tower Crane Application Technology(China Building Material Industry Publishing House, China 2003).
Online since: February 2014
Authors: Li Hui Zhang, Yu Hua Gao, Zhen Fa Liu, Yun Juan Wu
Study on scale inhibition performance of modified polyaspartic acid Yuhua Gao1,2,a, Zhenfa Liu1,2,b, Lihui Zhang1,2,c and Yunjuan Wu1,2,d 1 Institute of Energy Resources, Hebei Academy of Sciences, Shijiazhuang 050081, China 2 Hebei Engineering Research Center for Water Saving in Industry, Shijiazhuang 050081, China agaoyuhua77@163.com, blzf63@sohu.com, czlhkxy@sohu.com, dhbnyandwyj@sina.com Keywords: polyaspartic acid; modified polyaspartic acid; scale inhibition; fouling thermal resistance.
Acknowledgements This work was financially supported by the Hebei Natural Science Foundation (E2013302037), (B2011302001) and (B2012302006).
Shannon, Polyaspartic scale inhibitors biodegradable alternatives to polyacrylates, Materials Performance. 36 (1997), 53-57
[8] Yuhua Gao, Zhenfa Liu, Ruhui Guo and Yanji Wang, Synthesis of polyaspartic acid derivative and it scharacteristics in scale inhibition, CIESC Journal. 60 (2009), 2107-2111.
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