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Online since: June 2014
Authors: Long Xu, Li Xin Zhu, Fan Fan Yang, Ren Rong Liu, Meng Wei
Materials and Methods Chemicals.
Acknowledgement This work was financially supported by grants from National Natural Science Foundation of China (No. 81360429) and Natural Science Foundation of Jiangxi Province (No. 20122BAB214006, 20132BAB214004).
References [1] Xuliang Cao: submitted to Journal of Liquid Chromatography & Related Technologies (2012) [2] S.
Zhang, et al: submitted to Water Science & Technology: Water Supply (2011) [8] Yen Sun, Miki Irie, Naoya Kishikawa, et al: submitted to Biomed.
Chromatogr (2004) [9] Ana Ballesteros-Gomez, Soledad Rubio, Dolores Perez-Bendito: submitted to Journal of Chromatography A (2009) [10] Jianqing Zhou, Suqing Zhao, Jun Zhang, et al: submitted to Analytical Methods (2013)
Online since: July 2015
Authors: Ru Tang Yan, Yuan Yuan Li, Chun Wei She, Hua Geng Li, Hua Pan Li
Changchun 130032 2 Changchun University Of Science And Technology.
Xi 'an710111 4 Changchun Institute Of Applied Chemistry Chinese Academy Of Sciences.
Xu: ‘Water-Blown Polyurethane Rigid Foams Modified by Chemical Plastic-Action’, Chinese Journal of Reactive Polymers, 2006, 15(8), 23-28
Liu: ‘Development of Surface Treatment for Magnesium Alloys’, Materials protection, 2002, 35(3), 2-3
Sinnebryukhov: ‘Antiscuff Coatings Obtained by Micro-Arc Oxidation Titanium Alloy’, Russian Journal of Applied Chemistry, 2000, 73, 6-9
Online since: August 2024
Authors: Lakshmi Kanta Bera, Huseyin Cakmak, Surasit Chung, Navab Singh, Chen Zhixian, Umesh Chand, Qin Gui Roth Voo, Abdul Hannan Yeo, Binni Varghese, Akhil Ranjan, Shiv Kumar, Vudumula Pavan Reddy, Huamao Lin
Acknowledgement This work was supported by the Science and Engineering Research Council of A*STAR (Agency for Science, Technology and Research) Singapore, under Grant No.
Tseng, Journal of Applied Physics, 117, 184105 (2015)
Roccaforte, Journal of Vacuum Science & Technology A, 38, 032410 (2020)
Yang, Journal of Crystal Growth, 532, 125434 (2020)
Shah, Materials Science in Semiconductor Processing, 122, 105527 (2021)
Online since: February 2011
Preface We are delighted to invite you to participate 2011 International Conference on Sport Material, Modelling and Simulation (ICSMMS 2011) in 27-28 January, 2011, China,Shenzhen.
The objective of ICSMMS 2011 is to provide a forum for researchers, educators, engineers, and government officials involved in the general areas of Sport Material, Modelling and Simulation to disseminate their latest research results and exchange views on the future research directions of these fields. 2011 International Conference on Sport Material, Modelling and Simulation (ICSMMS 2011) is co-sponsored byIntelligent Information Technology Application Research Association Sport Science and Engineering Committee, Advanced Materials Research Journal and Howard University, USA .
The mission is to bring together innovative academics and industrial experts in the field of Sport Material, Modelling and Simulation.
Online since: January 2012
Authors: Fei Hua Yang, Jie Zhang, Hai Li Cheng
Shandong coal science and technology (in Chinese),2006(6): p.14–16 [2] Hong guang Han, Hai long Liu and Li Cui.
Journal of shandong institute of building materials, 1998 Vol.12 (6):p.97-102 [5] Bingwei Gu, Peiming Wang.
Materials review (in Chinese), 2008 Vol. 22(7): p.139-142 [6] Shuxia Feng,Peiming Wang and Xianping Liu.
Journal of the chinese ceramic society, 2010 Vol. 38(9):p.1682-1687 [7] Tao Shi, Huisheng Shi and Biwan Xu.
Journal of Zhejiang University (Engineering Science) (in Chinese), 2008Vol.42(5):p.900-904
Online since: December 2011
Authors: Shu Huan Wang, Cui Liang Wang, Ding Guo Zhao, Ju Gao
High nitrogen austenite stainless steel with Cr and Mn is one of the best obdurability materials in the world [7].
The raw materials are magnesia (the purity of MgO is 98%) and boric acid (purity is 3%).
Microstructural Science [J].
Materials Science Forrum, 261-270(1999)
The Chinese Journal of Process Engineering,V01.8 Suppl.No.1 (2008).
Online since: September 2014
Authors: Cheng Wei Li, Jin Lin Lu, Shu Mei Kang, Lin Wang
Research on the corrosion resistance of Ni-ZrO2 nanocomposite coatings Lin Wang1, a, Jinlin Lu2,b, Chengwei Li3,c, Shumei Kang4,d School of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan 114051,China wanglin6051@163.com, jinlinlu@hotmail.com, lcwei99@163.com, 15242206684@163.com Keywords: nanocomposite electroplating; corrosion resistance; hardness; microstructure Abstract: In order to improve the corrosion resistance of Ni-nanoZrO2 composite coatings.
Materials protection, Vo1 35(2002),p.1.In Chinese [2] G.Heidari, H.Tavakoli, and S.M.Mousavi Khoie.
Journal of Materials Engineering and Performance, Vo1 19(2010),p.1183
Journal of Applied Electrochemistry, Vo1 34(2004),p.1013
Materials protection, Vo1 38(2005),p.43.In Chinese [9] Zeping Gao.
Online since: June 2014
Authors: Yun Long Zhang, Jin Ping Li, Yu Min Zhang, Ming Hu
Effect of Y2O3/La2O3 proportion on the mechanical properties of Cf/SiC composites Zhang Yunlong1,2, Zhang Yumin1*, Hu Ming2, Li Jinping1 (1- Center for Composite Materials, Harbin Institute of Technology, Harbin ,PR China 150080) (2- Collage of Materials Science & Engineering of Jiamusi University, Jiamusi, China, 154007) (a ylzhdr@126.com, b*zhym@hit.edu.cn, cminghu02@163.com,d lijinping@hit.edu.cn) Abstract In this paper, the commercial α-SiC powder and bargain price La2O3/Y2O3 additives were utilized to fabricate SiC matrix composites.
Materials fabrication and Characterization The mixture of α-SiC powder (D50=0.5μm, purity 99.5%) and carbon fibers (3mm longth, the volume proportion of SiC to carbon fiber was 7:3) was applied to fabricate the Cf/SiC composites.
Acknowledgement The authors were grateful for support by the Chinese Postdoctoral Science Foundation (No.2012M520754), National Science Foundation of China (No.51271088),The science and technology innovation team of Jiamusi university (No.Cxtd-2013-03) and Major State Basic Research Development Program (No.2014CB46505).
Journal of the European Ceramic Society,1996,16(4):413-420
Journal of the European Ceramic Society,2007,27(13): 3935-3939
Online since: October 2011
Authors: Hong Yan Liao, Hong Ling Chen, Hai Chao Wang
Application of insect dung as raw materials and efficient bio-organic fertilizer not only fertility fertility, increased crop yields, improve quality of agricultural products, but also reduce the cost of agricultural production, improve soil structure, improve agricultural ecological environment and promote sustainable development of farming.
As a live high-protein animal feed, apply special breeding industry; as raw materials, used in high-protein feed processing, feed additives and highly nutritious functional food processing; through processing, oil extraction insects, drugs, and lysozyme, chitosan bio-chemical products.
Acknowledgment This work is supported by natural science project of Suzhou University (2011yzk14).
References [1] Fuzhong Wu, Huafeng Lin and Zhihong Liu: Chinese Agricultural Science Bulletin.Vol. 21 (2005), p. 72 [2] Wei Zhang, Shusen Shi: Forestry Science.Vol. 27 (2000), p. 8 [3] Kaishu, Du, Liying Cai: Journal of Anhui Agri.
Vol. 123 (2004), p. 47 [6] Xihai Dun: Journal of Economi Animal.
Online since: November 2006
Authors: Jian Kang Chen, Liu Hong Chang
The Effect of the Property of Non-linear Viscosity on the Interfacial Debonding of Particulate-Reinforced Polymers Jiankang Chen1, a and Liuhong Chang2,b 1 Mechanics and Materials Science Research Center, Ningbo University, Ningbo, 315211, China 2 School of River and Ocean Engineering, Changsha University of Science and Technology, Changsha, 410076, China a chenjiankang@nbu.edu.cn, bclaire886@163.com Keywords: Interfacial debonding, Non-linear equation, Iterative computation, Convergence Abstract.
Introduction Particulate-reinforced polymeric composites are widely used as advanced engineering materials.
Further more, the relaxation time of polymeric materials is investigated by experimental method .
The experimental results indicate that the relaxation time of PP and HDPE is a function of the strain rate of the material [8], this means that the viscous effect of matrix materials will be nonlinear.
Bai, Key Engineering Materials Vol.312 (2006) p. 111 [7] J.K.