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Online since: December 2013
Authors: Zheng Xin Yan, Dong Zhi Yan, Hua Ping Yang, An Gong, Qian Chen, Qian Liao, Tao Zhang
c) b) a) Figure 1.Crystal structures of materials: a) optimized Si bulk; b) Si (111) surface; and c) methyl radical.
References [1] Uhlir A.: The Bell System Technical Journal Vol. 35(1956), p.333
[2] McCord P, Yan S L and Bard A J.: Science Vol. 257(1992), p.68
[5] Shou-xu Wang, Rui-qi Shen and Ying-hua Ye: Chinese Journal of Energetic Materials (Hanneng Cailiao) Vol.18(2010), p.527
[10] Xiao-hua Hu, Qiong-ling Shi, Xi-wen Wei and Xue-ming Li: Journal of Functional Materials Vol.43(2012),p.3006.
Online since: September 2013
Authors: Wan Jun Hao, Yue Fang Zhang, Fan Wu, Ming Ming Wang, Dong Wei Chen, Ying Ying Yi, Hui Chao Zhao, Yi Feng Dong, Xue Hong Yu
It is an effective method to use electromagnetic radiation protection materials especially building absorbing materials[4,5].
It is in this sense that composite building materials such as cement, plaster and concrete can be transformed into functional materials with EMW-absorbing properties through introducing electromagnetic absorbers [6,7].
References [1] SM.Xue, WLAN and implementation technique[J].Journal of Northwest University for Nationalities (Natural Science), 2003,24(3):50
[6] W.J.Hao, Application of paint absorbing electromagnetic wave in city construction[J],Science and technology of foreign building materials, 2004,5(4):74-76
[7] K.Ansayi etc, Cement Absorber ,Industrial materials[J].2000,48(12):56-60
Online since: November 2019
Authors: Bassam Abdallah, M. Kakhia, N. Alkafri
Lee, Solar Energy Materials and Solar Cells, 95 (2011) 3202-3206
Khare, Journal of Electronic Materials, 47 (2018) 1730-1751
Jit, Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 33 (2015) 01A114
Refaai, Materials Research, 20 (2017) 607-612
Wei, Computational Materials Science, 101 (2015) 1-7
Online since: April 2008
Authors: Zhi Yong Li, Bao Wang, Jing Bin Ding
Technology property evaluation and welding material choice module based on Analysator Hannover The quality of welding material is an important reason for the welding process.
Based on the correlation criterion and software system, technology property evaluation and welding material choice module is developed for evaluating the technology property of welding material The module can appraisal welding material such as electrode, solid welding wire and flux-cored wire.
For example, technology property evaluation and welding material choice module has been adopted by welding material factory for evaluation application.
Acknowledgements The corresponding working is supported by national natural science foundation program(50505048) and shanxi natural science foundation program(2006021027).
References [1] Wang bao, Yang lin, Wang yong: Transaction of the China welding institute Vol. 27(2006), P.77 [2] Quinn, T.P.: Welding Journal Vol9,(1999) P322 [3] Wang bao, Yang lin, Wang yong: Welding technology, Vol. 34,(2005),P.21 [4] Wang bao, Gao junhua, Song li: welding & joining, Vol. 10 (2006),P.15 [5] Li zhiyong, Wang bao, Song li: welding & joining, Vol. 1(2007),P.25 [6] Li junyue, Li zhiyong, Li huan; Chinese journal of mechanical engineering, Vol. 17(2004), P.315 [7] Pengjiu Li, YuMing Zhang: IEEE Transactions on instrumentation and measurement, Vol. 50, (2001), P.697
Online since: September 2011
Authors: Ahmad Beng Hong Kueh, Muhammad Nor Hafidzi, Norhidayah Rasin, Airil Yasreen Mohd Yassin, Hisham Mohamad
A wider potential of these materials is however hindered due to absent of bias reinforcement that can provide in-plane shear resistance in the off-axis direction, making the use of single ply material unusual in application.
ABD matrices for TWF are computed in terms of: (i) three plies material and (ii) lumped and averaged properties of several two plies materials, all using the same total thickness as that measured by Kueh and Pellegrino [4].
Kueh: submitted to International Journal of Mechanical Sciences (2011)
Hoa: Journal of Composite Material vol. 37 (2003), p. 763-789
Pellegrino: ABD Matrix of Single-Ply Triaxial Weave Fabric Composites, 48th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference, 23-26 April 2007, Honolulu, Hawaii, AIAA-2007-2161.
Online since: July 2022
Authors: Joana Cunha, Nelson Oliveira, Helder Carvalho
Ferreira, Competitive strategies in fashion industries: Portuguese footwear industry, IOP Conference Series: Materials Science and Engineering 254 (2017) 202-206
Friman, Fresh perspectives on customer experience, Journal of Services Marketing, 29(6/7) (2015) 430–435
Dominici, Cybernetics of Value Cocreation for Product Development, Systems Research and Behavioral Science, 34(1) (2017) 24–40
Jian-Hui, A model of an e-customized co-design system on garment design, International Journal of Clothing Science and Technology, 30(5) (2018) 628–640
Michalos, A web-based platform for mass customisation and personalisation, CIRP Journal of Manufacturing Science and Technology, 7(2) (2014) 112–128
Online since: May 2011
Authors: Zhong Jun Wang
Influence of heat treatment condition on low cycle fatigue life of a rolled AZ80 magnesium alloy sheet Zhongjun Wanga School of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan 114051, P.R.China aemail: zhongjun_w@yahoo.com Keywords: Low cycle fatigue; Life; Magnesium alloy; As-rolled; Ageing; Solution.
Parts such as cases, housings, brackets, panels, etc., these materials at different thermal treated conditions have a potential to be used as load-bearing components, which will be subjected to fatigue loading [2-3].
Acknowledgements The authors acknowledge the support of the key lab of material forming and microstructure & properties control of education ministry of Liaoning province in China, University science study project fund of education ministry of Liaoning province in China, also appreciate the support of college student science study project of university of science and technology Liaoning.
Han: International Journal of Fatigue Vol. 31 (2009), p. 463
Xu et al: International Journal of Fatigue Vol. 31 (2009), p. 726
Online since: January 2015
Authors: Li Ke Zou, Bin Zhao, Guo Yong Li
Study on Treatment of Chromium(VI) Wastewater by Cuprous Oxide Bin Zhao1,2,3,a, LiKe Zou1,2,3,b, Guoyong Li1,c 1College of Materials and Chemical Engineering,Sichuan University of Science & Engineering,China; 2Material Corrosion and Protection Key Laboratory of Sichuan Province, China; 3Institute of Functional Materials, Sichuan University of Science & Engineering, China) azb0813@suse.edu.cn, b zoulike@yahoo.com.cn, c284446048@qq.com Keywords: Cuprous oxide, chromium wastewater, photocatalysis Abstract.
Experimental Experimental materials and instrumentation.
Edited by Journal of Industrial and Commercial University Of Chongqing(2004)
[3] Jinshao Ye and Hua Yi: Efficient biological adsorbent treatment of Chromium wastewater. edited by Chinese Environmental Science(2005)
[4] Yonghua Chen,Yongsheng Chen and Zhibo Wang: Study on treatment of Chromium wastewater by efficient adsorption of Chitosan. edited by Journal of Huazhong University of Science and Technology(2005)
Online since: September 2012
Authors: Nan Jing, Hai Fang
Superior material properties of this material allow the rational joint called mortise-and-tenon.
Summary Renewable and biodegradable advantages of fast-growing forest materials can greatly alleviate the crisis of forest area decreasing in the world.
[J].Journal of Fujian university (Philosophy and Social Sciences),2009,12(5).P106-108
[J].Forestry science and technology, 2002(3).P39-42
[J].Journal of Neimenggu agricultural university.2004.6.P95-99
Online since: July 2011
Authors: Shuang Xi Liu, Xiang Ying Hao, Cui Zhang, Hai Fu Guo
The present synthetic strategy could be therefore applied as a novel general method for the manufacture of functional materials in a wide spectrum.
Two types of Cu2+ ions are of possibility existent in the CuO/MOR materials.
Zhao, Chinese Journal of Applied Chemistry. 209 (2003) 740
Xu., Chemical Journal of Chinese Universities. 19(1998) 1900
[14] Chang-Yong Lee, Ko-Yeol Choi, Baik-Hyon Ha, Microporous Materials. 11 (1997) 227