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Online since: May 2015
Authors: Ireneusz Dominik
One should also mention other uses such as: measuring of a weight in extreme conditions, the thermogravimetry in chemistry [2], transport of materials in mines, precise positioning in nanometers, damping of vibrations, or active magnetic suspension in motor industry [3].
Acknowledgements The research work was supported by the funds dedicated to statutory activities 11.11.130.958 at the Department of Process Control at AGH University of Science and Technology.
Plasma Science, IEEE Transactions Volume: 37, Issue: 4, 2009
Polish Journal of Environmental Studies Volume: 23, Issue: 3, p. 989-993, 2014
Dwornicka, The Impact of the Power Plant Unit Start-Up Scheme on the Pollution Load, Advanced Materials Research, Volume: 874 (2014), 63-69
Acknowledgements The research work was supported by the funds dedicated to statutory activities 11.11.130.958 at the Department of Process Control at AGH University of Science and Technology.
Plasma Science, IEEE Transactions Volume: 37, Issue: 4, 2009
Polish Journal of Environmental Studies Volume: 23, Issue: 3, p. 989-993, 2014
Dwornicka, The Impact of the Power Plant Unit Start-Up Scheme on the Pollution Load, Advanced Materials Research, Volume: 874 (2014), 63-69
Online since: December 2014
Authors: Guo Min Zhan, Xing Jian Liu, Zhong Wei Li, Kai Zhong
Hand-held Blue Light 3D Measurement Technology and
its Application in Hot Stamping
Guomin Zhan a, Zhongwei Lib,* ,Xingjian Liuc and Kai Zhongd
State Key Laboratory of Materials Processing and Die & Mould Technology,
Huazhong University of Science and Technology, Wuhan, 430074, China
azgm@hust.edu.cn, bzwli@hust.edu.cn, czkhust@163.com, dxingjianliu@hust.edu.cn
Keywords: Hand-held; structured-light; 3D measurement; hot stamping
Abstract.
We can use the measurement results to do assembly analysis, and find the error sources as early as possible to avoid the waste of materials and energy.
Acknowledgements The authors sincerely thank the Program of State Technology Supporting Plan (No. 2012BAF08B03), Major program of Science and Technology Planning Project of Hubei province (No.2013AEA003), Specialized Research Fund for the Doctoral Program of Higher Education (No. 20120142120006), Program for Changjiang Scholars and Innovative Research Team in University (N0.
The International Journal of Advanced Manufacturing Technology, 1996. 12(2):111-121
Grating structure based on digital light projection of a three-dimensional measurement technology and systems research, Wuhan: Huazhong University of Science and Technology, 2009 [7] Pan, J., Huang P., Chiang F.
We can use the measurement results to do assembly analysis, and find the error sources as early as possible to avoid the waste of materials and energy.
Acknowledgements The authors sincerely thank the Program of State Technology Supporting Plan (No. 2012BAF08B03), Major program of Science and Technology Planning Project of Hubei province (No.2013AEA003), Specialized Research Fund for the Doctoral Program of Higher Education (No. 20120142120006), Program for Changjiang Scholars and Innovative Research Team in University (N0.
The International Journal of Advanced Manufacturing Technology, 1996. 12(2):111-121
Grating structure based on digital light projection of a three-dimensional measurement technology and systems research, Wuhan: Huazhong University of Science and Technology, 2009 [7] Pan, J., Huang P., Chiang F.
Online since: November 2010
Authors: Zai Chang Wang, Li Rong Wan
Research and Application of Subsidiary Transport in Mines Based On Flexible Surge Bin Design
Lirong Wan and Zaichang Wang
(Shandong University of Science and Technology, Institute of Mechanical and Electronic Technology, Qingdao 266510, China, email: wzc51888@126.com)
Keywords: System reliability, Flexible surge bin, Subsidiary transport
Abstract.
Propose of the Reliability of the Subsidiary Transport System in Mines The object of subsidiary transport system in mines is to transport coal and waste rock from the driving face and tunnel maintaining station to the ground or the storage field in the pit, and to transport equipments, materials and workers to maintain normal production activity in the working face.
The main lift system lifts coal and waste rock at different time, subsidiary lift system lifts material in the middle shift, and in the other 2 shifts, it only lift workers.
Acknowledgment The research is supported by the National Key Technology R&D Program of China (No.2006BAB11B05), the National Natural Science Foundation of China (No.50875158) and Shandong Natural Science Foundation for Distinguished Young scholars of China (No.
References [1] Q.X.Cai, S.J.Peng and D.X.Zhang: Journal of Fuxin Institute of Mining Industry, Vol. 16 (1997) No.1, pp.85-88.
Propose of the Reliability of the Subsidiary Transport System in Mines The object of subsidiary transport system in mines is to transport coal and waste rock from the driving face and tunnel maintaining station to the ground or the storage field in the pit, and to transport equipments, materials and workers to maintain normal production activity in the working face.
The main lift system lifts coal and waste rock at different time, subsidiary lift system lifts material in the middle shift, and in the other 2 shifts, it only lift workers.
Acknowledgment The research is supported by the National Key Technology R&D Program of China (No.2006BAB11B05), the National Natural Science Foundation of China (No.50875158) and Shandong Natural Science Foundation for Distinguished Young scholars of China (No.
References [1] Q.X.Cai, S.J.Peng and D.X.Zhang: Journal of Fuxin Institute of Mining Industry, Vol. 16 (1997) No.1, pp.85-88.
Online since: October 2014
Authors: M.N. Berhan, Rasdi Deraman
., Hydrogen permeation behavior in aluminium alloys, Materials Science Forum. 28 (2004) 751-757
[3] Moro, I., Briottet, L., Lemoine, P., Andrieu, E., Blanc, C., and Odemer, G., Hydrogen embrittlement susceptibility of a high strength steel X80, Materials Science and Engineering A. 527 (2010) 7252 – 7260
K. and Ramazan, S., Study on Microstructure, Tensile Test and Hardness 304 Stainless Steel Jointed by TIG Welding, International Journal of Science and Technology. 2, No. 2 (2013) 163 - 168
[3] Moro, I., Briottet, L., Lemoine, P., Andrieu, E., Blanc, C., and Odemer, G., Hydrogen embrittlement susceptibility of a high strength steel X80, Materials Science and Engineering A. 527 (2010) 7252 – 7260
K. and Ramazan, S., Study on Microstructure, Tensile Test and Hardness 304 Stainless Steel Jointed by TIG Welding, International Journal of Science and Technology. 2, No. 2 (2013) 163 - 168
Online since: July 2011
Authors: Yang Li, Xiao Nan Sui, Lian Zhou Jiang, Chen Wang
The comparison of amino acid content of the hydrolysate under extrusion pretreatment with non-extrusion pretreatment
Xiaonan Sui1,a, Lianzhou Jiang1, 2*,b, Chen Wang1,c, Yang Li,1,2,d
1Food Science College, Northeast Agricultural University, Harbin 150030, China
2National Institute of Soybean Engineering Technology, Harbin 150030, China
asuper_suixiaonan@163.com, bjlzname@163.com, ccc198772@163.com, dliyanghuangyu@163.com
Keywords: extrusion, hydrolyzed protein, hydrolyzed peptide, free amino acid
Abstract.
Introduction Amino acid is biologically active macromolecule; its function is to build cells, repair tissue of the basic materials.
Method Soybeans used in the experiment were Nong-Ken 42# provided by Heilongjiang Academy of Agricultural Sciences.
The extruder was split-type and can open along axial direction, which was convenient for internal cleaning of barrel and collection of material on crew.
Journal of Changchun Teachers College (Natural Science),24(5):65
Introduction Amino acid is biologically active macromolecule; its function is to build cells, repair tissue of the basic materials.
Method Soybeans used in the experiment were Nong-Ken 42# provided by Heilongjiang Academy of Agricultural Sciences.
The extruder was split-type and can open along axial direction, which was convenient for internal cleaning of barrel and collection of material on crew.
Journal of Changchun Teachers College (Natural Science),24(5):65
Online since: January 2018
Authors: Mikhail D. Starostenkov, Gennady M. Poletaev, Irina V. Zorya
At a high concentration in materials, they have a significant effect on strength properties.
The reported study was partially supported by Ministry of Education and Science of the Russian Federation within the framework of the state task (project No. 3.4820.2017/8.9) and RFBR (project No. 16-48-190182-r_а).
Haasen (Eds.), Physical Metallurgy, V.2, Elsevier Science B.V., North-Holland, 1996, pp. 1621-1722
Panzarasa, Properties of vacancies and divacancies in copper-gold alloys, Journal of Physics F - Metal Physics. 10 (1980) 1375-1387
Kogure, Embedded atom potentials in fcc and bcc metals, Computational Materials Science. 14 (1999) 80-83
The reported study was partially supported by Ministry of Education and Science of the Russian Federation within the framework of the state task (project No. 3.4820.2017/8.9) and RFBR (project No. 16-48-190182-r_а).
Haasen (Eds.), Physical Metallurgy, V.2, Elsevier Science B.V., North-Holland, 1996, pp. 1621-1722
Panzarasa, Properties of vacancies and divacancies in copper-gold alloys, Journal of Physics F - Metal Physics. 10 (1980) 1375-1387
Kogure, Embedded atom potentials in fcc and bcc metals, Computational Materials Science. 14 (1999) 80-83
Online since: October 2011
Authors: Liang Guo, Jun Zhou, Xiang Xiang Wang, Run Bai, Xin Li, Peng Liu, Yue Shi
Materials and methods
Seed sludge and Substrate.
Acknowledgements National Natural Science fund of China(1009039); centre college primary scientific research item funds (EUCF100303); key scientific and technological projects of HEI Long-jiang Province (GA09B503-2); Science fund of HEI Long-jiang Province (E200936).
“Modeling denitrifying sulfide removal process using artificial neural networks”Journal of Hazardous Materials, vol.168, Issues 2-3, 15 September 2009, pp: 1274-1279
China Environmental Science Press.2004:83-94
Acknowledgements National Natural Science fund of China(1009039); centre college primary scientific research item funds (EUCF100303); key scientific and technological projects of HEI Long-jiang Province (GA09B503-2); Science fund of HEI Long-jiang Province (E200936).
“Modeling denitrifying sulfide removal process using artificial neural networks”Journal of Hazardous Materials, vol.168, Issues 2-3, 15 September 2009, pp: 1274-1279
China Environmental Science Press.2004:83-94
Online since: August 2021
Authors: Alexey V. Stolbovsky, Svetlana A. Murzinova
Zhu (eds.), Bulk Nanostructured Materials, Wiley-VCH, Weinheim, Germany, 2009
Langdon, Bulk Nanostructured Materials: Fundamentals and Applications, TMS, Wiley, Hoboken, New Jersey, USA, 2014
Kurzina, Plastic Deformation of Nanostructured Materials, first ed., CRC Press, Taylor & Francis Group, UK, 2017
Alexandrov, Bulk nanostructured materials from severe plastic deformation, Prog.
Gleiter, Nanostructured materials: basic concepts and microstructure, Acta Mater. 48 (2000) 1-29
Langdon, Bulk Nanostructured Materials: Fundamentals and Applications, TMS, Wiley, Hoboken, New Jersey, USA, 2014
Kurzina, Plastic Deformation of Nanostructured Materials, first ed., CRC Press, Taylor & Francis Group, UK, 2017
Alexandrov, Bulk nanostructured materials from severe plastic deformation, Prog.
Gleiter, Nanostructured materials: basic concepts and microstructure, Acta Mater. 48 (2000) 1-29
Online since: May 2012
Authors: Yao Zhi Huang, Chao Jun Chen
Modern high-tech industry do not like traditional industries that consume large quantities of raw materials, products are often small in volume, Industrial production and warehousing logistics zone takes little proportions in Industrial zone, but the it has disaster prevention and reduction and isolation shielding requirements[8].
Proceedings of Suzhou University of Science and Technology (Social Science Edition), 2006 (2) :16-19.( In Chinese) [2] Wei Lu.
Architectural Journal. 2007(2):6-7. ( In Chinese) [3] ZhenHua Sun.
The new development of science and Technology Industrial Park——Software Park and its planning construction.
University of science and technology of Suzhou,Urban planning and designing institute Co.
Proceedings of Suzhou University of Science and Technology (Social Science Edition), 2006 (2) :16-19.( In Chinese) [2] Wei Lu.
Architectural Journal. 2007(2):6-7. ( In Chinese) [3] ZhenHua Sun.
The new development of science and Technology Industrial Park——Software Park and its planning construction.
University of science and technology of Suzhou,Urban planning and designing institute Co.
Online since: June 2014
Authors: Ting Zhou, Wen Li Zhang, Xin Ming Wang, Jia Yin Cao, Jian Mei Zhou, Li Ming Zhou, Li Juan You
Materials and methods
Sample collection.
Journal of Chromatography A.
Advanced Materials Research.
Advanced Materials Research.
Journal of Analytical Science, Vol.20(2004) , p.483- 485.
Journal of Chromatography A.
Advanced Materials Research.
Advanced Materials Research.
Journal of Analytical Science, Vol.20(2004) , p.483- 485.