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Online since: January 2013
Authors: Jian Hua He, Wan Li Du, Wei Xing Zhu, Xin Cheng Li
The influencing factors mainly include laser tailor-welded blank material parameter and laser welding process parameter concerning at deep drawing steel laser tailor-welded blank corrosion resistance.
Considering that the laser tailor-welded blank material is St12 and galvanized sheet, and their thickness is constantly 1.0mm, therefore, the main factors can only be selected in the welding parameters.
Physical Metallurgy and Materials Science, 2009,40(5) p.1142 [2] G.
Journal of Materials Processing Technology, 2009, 209(1) ,p.387 [3] A.
CALEYO, ALFONSOL, Corrosion Science, 2007,49(2),p.559 [4] DHANAPAL, S.R.
Online since: September 2011
Authors: Lei Tan, Qing Bin Yang, Lin Tian
Experiment Materials.
Friction material was sandpaper No.600.
Yarn fineness is different because of materials, spinning method and twist factor, etc.
References [1] Yufu Shan, Xiaoyun Wang: Tianjin Textile Science, In Chinese.
Vol. 8 (2004), p. 21-24 [3] Deshpande A P, Rao M B and Rao C L: Journal of Applied Polymer Science, Vol. 76 (2000), p. 83-92 [4] Mu Yao: Textile Materials, China Textile & Apparel Press, In Chinese, Beijing (1990), p. 343 [5] Ruqin Li, Juncai Song: Fiber and Textile Testing Technology, Donghua University Press, In Chinese, Shanghai (2009), p. 130-131 [6] Jialin Yu, Xiaoli Huang and Hua Peng: Silk, In Chinese.
Online since: October 2012
Authors: Jia Jun Wang, Xian Mei Zhu, Gang Hu Cheng, Tao Wu
Synthesis of Cationic Surface Sizing Agent and Its Application Xianmei Zhu 1, a, Ganghu Cheng 2,b, Jiajun Wang 1,c and Tao Wu 4,d 1Faculty of Materials and Textiles, Zhejiang University of Science and Technology, Hangzhou 310018, China; 2Faculty of Printing and Packaging Engineering, Xi’an University of technology, Xi’an 710048, China azxm9905@126.com, b chenggao@xaut.edu.cn, chzwangjj@126.com, wu-tltg@163.com Keywords: Styrene, Dimethylaminoethyl methacrylate, Styrene-acrylate emulsion, Surface sizing Abstract.
Experimental Materials.
Figure 1 indicated and proved OH group peak because of existing PVA as raw material.
Cheng: Journal of Functional Polymers, Vol. 8 (1995) No.4, pp.512-520
Fei: Polymer Materials Science and Engineering.
Online since: June 2010
Authors: Jun Zhou, Rong Di Han
To achieve this, any potential improvement of cutting materials, cutting tools, conventional and nonconventional machining processes must be considered and evaluated.
The chemical composition and mechanical properties of GH4169 work-piece materials used in the experiments are shown in Tables 1 , respectively.
Acknowledgements This research reported in the paper is financially supported by National Natural Science Foundation of China (NSFC) (50675053) , the National High Technology Research and Development Program ("863"Program) of China (2009AA044301) and Harbin Scientific and Technological Project (2006AA2BE154).
International Journal of Plasticity, Vol. 14, Nos. 1-3, pp. 43~50, 1998 [4]Godleviski V.A, Volkov A.V.
Lubrication Science 9-2.February 1997 (9):128~139 [5]Han Rongdi, Liu Junyan.
Online since: September 2013
Authors: Hua Li, Xiao Wang, Yong Zhu Cui, Chun Yan Wei, Jun Hao
Operation parameters of UV photografting of modified reactive dye with 2-methyl-3-buten-2-ol onto cotton fabric Hua Li1, Xiao Wang1,*, Yongzhu Cui 1, Chunyan Wei1 and Jun Hao1 1School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China 2School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, China *Corresponding author’s email: wangxiao@dlpu.edu.cn Keywords: Modification; Reactive dye; UV-induced photografting; Cotton fabric; Dyeing.
UV-induced photografting is known to be a useful technique for the modification of polymer materials with the characteristics of mild reaction condition, selectivity in UV light absorption, and little damage to bulk polymer[2-3].
Experimental Materials.
Carbohydrate Polymers. 91(2012) [2] H.Ma,R.H.Davis,C.N.Bowman,Macromolecules. 33(2000), p. 331-335 [3] A.Akbari,S.Desclaux,J.C.Rouch,et al.Journal of membrane science. 342-350(2006) [4] Feng Zhang,Chen Yuyue, Lin Hong, et al.
Carbohydrate Polymers. 74(2008), p. 250-256 [5] Xiao Wang,Cheng Huang,Wen Sheng Wang,et al.Materials science forum. 573-577(2013)
Online since: June 2014
Authors: Jean Marie Drezet, Denis Carron, Nicolas Chobaut
Experimental procedure Material.
Acknowledgements This work is funded by the Competence Center for Materials Science and Technology (http://www.ccmx.ch/) in the frame of the project entitled “Measurements and modelling of residual stress during quenching of thick heat treatable aluminium components in relation to their microstructure” involving EPF Lausanne, PSI Villigen, Univ. de Bretagne Sud Lorient, Constellium CRV and ABB Turbosystems AG.
Aeby-Gautier, Experimental study of phase transformations in 3003 aluminium alloys during heating by in situ high energy X-ray synchrotron radiation, Journal of Alloys and Compounds, 400 (2005) 116-124 [4] P.
Viswanathan, Specimen configurations for Gleeble dilatometry of steels, Materials Science & Technology, ASM, Materials Park, OH (2008) 1872-1883 [7] D.
Online since: January 2012
Authors: Bai Hua Wang, Yong Sheng Wang, Li Chun Huang, Hong Juan Liu
Effect of Metal Ion Content in Dyebath on the Color of Wool Dyes Baihua WANG1, 2, a, Yongsheng WANG1, b, Lichun HUANG1, c and Hongjuan LIU1, d 1School of Materials Science & Engineering, Beijing Institute of Fashion Technology 2Beijing Key Laboratory of Clothing Material R&D and Assessment, Beijing 100029, China ateacher_wang06@163.com, bwys0508@126.com, cmfjthlc@163.com, dmfjtlhj@163.com Keywords: Metal ion; Color difference; Dyeing Abstract.
Bahmanyar, Communications in Soil Science & Plant Analysis. 39 (2008) 2068
Orhon, Journal of Environmental Science & Health, Part A: Toxic/Hazardous Substances & Environmental Engineering. 39(2004) 1819
Hartley, Australian Journal of Chemistry. 22 (1969) 129
Fakin, Textile Research Journal. 74 (2004) 587.
Online since: December 2024
Authors: Amany Nasr, Ebrahim Badran, Ibrahim Mansy
Table 2 shows the physical parameters of the materials used in motor components.
Physical properties of motor component materials.
Tao, A Simplified Thermal Model and Online Temperature Estimation Method of Permanent Magnet Synchronous Motors, Applied Science, 9(15) (2019) 1-18. https://doi.org/10.3390/app9153158 [3] P.
Avanessian, CFD simulations of electric motor end ring cooling for improved thermal management, Science and Technology for Energy Transition, 77 (2022). https://doi.org/10.2516/stet/2022015 [8] C.
Series A, Mathematical and Physical Sciences, 151 (1935), 494-512. https://doi.org/10.1098/rspa.1935.0163 [27] S.
Online since: July 2017
Authors: Rudolf Kawalla, Sergey Guk, Daniel Hoppach
Journal of Materials Engineering and Performance 11 (2002) 1, pp. 86-91 [2] C.
Scandinavian Journal of Metallurgy (2005) 34, pp. 192-204 [3] C.
Wang et al.: Effect of cyclic heat treatments on spheroidizing behavior of cementite in high car-bon steel, Materials Science and Eng.
Mondal et al.: Microstructural modifications and changes in mechanical properties during cy-clic heat treatment of 0.16% carbon steel, Materials Science and Eng.
Peng: Design of a spheroidization processing for ultrahigh carbon steels containing Al, Materials and design, 28 (2007), pp. 562-568 [11] Z.
Online since: July 2015
Authors: Andreas Krombholz, Claudia Möhl
Materials Polymeric Matrix.
Both materials are used at 5 wt. % and 10 wt. %.
All materials are compounded without any preliminary treatment by Thermo Scientific mixer rotor (HAAKE Rheomix OS 600).
Pakkanen, Influence of maleated polypropylene on mechanical properties of composite made of viscose fiber and polypropylene, Journal Applied Polymer Science. 87 (2003) 1895–1900. doi:10.1002/app.11919
Pakkanen, Composition, tensile properties, and dispersion of polypropylene composites reinforced with viscose fibers, Journal Applied Polymer Science. 91 (2004) 2676–2684. doi:10.1002/app.13450