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Online since: January 2016
Authors: Jun Wang, Guan Heng Yeoh, Kunlapat Thongkaew
A number of studies have been undertaken to machine composite materials by using the AWJ technology, including linear cutting and drilling [2].
Wang, Abrasive Waterjet Machining of Engineering Materials, Trans Tech Publications Ltd., Switzerland, 2003
Wu, Hole-drilling using abrasive water jet in titanium, International Journal of Machining and Machinability of Materials, 9 (2011), pp. 47-65
Hashemipour, Experimental analysis of hole making in GFRP composite using abrasive water jet cutting technology, Applied Mechanics and Materials, (2013), pp. 1392-1398
Brown, A study of abrasive waterjet characteristics by CFD simulation, Journal of Materials Processing Technology, 153-154 (2004), pp. 488-493
Online since: April 2013
Authors: Yi Bin Ren, Nan Qi Ren
Materials and methods Study Area.
Edwards: Journal of Soil Science.
Lehrsch: Journal of Soil Science.
Beauchamp: Soil Science Society of America Journal.
Liu: Journal of Geographical Sciences.Vol.57 (2002), pp. 397-406
Online since: September 2011
Authors: Wen Yang Gao, Qian Wu, Zhi Wen Cui, Kei Xie Wang, He Feng Dong
Introduction Elastic circular cylindrical shells play an important role in actual production field for it can be used as building materials and equipment components.
[5] S.Ahmed Shah: Journal of Sound and Vibration, Vol.318 (2008) No.1-2, p.389
[6] M.A.Biot: The Journal of the Acoustical Society of America, Vol.28(1956) No.2, p.168
[8] M.A.Biot: Journal of Applied Physics, Vol. 33(1962) No.4, p.1482
[9] Z.W.Cui: International Journal of Engineering Science, Vol.41(2003) No.18, p.2179.
Online since: October 2011
Authors: Kai Sheng Zhang, Zhi Jian Li, Xin Zhang
Research on Super Critical Water Oxidation Based on papermaking black liquor Treatment Kaisheng Zhang1, a, ZhijianLi 2,b and Xin Zhang 3,c 1 College of Electrical Engineering of Shaanxi University of Science and Technology, Xi’an, 710021, P.R China 2 College of Papermaking Engineering, of Shaanxi university of science and technology, Xi’an, 710021, P.R China 3 College of Papermaking Engineering, of Shaanxi university of science and technology, Xi’an, 710021, P.R China azhangkaisheng@sust.edu.cn , blizj@sust.edu.cn, c zhx901129@sina.com Keywords: Super Critical Water Oxidation; Black Liquor; Water Treatment; Organic Pollutant.
References [1] Chuanhua Liao, Lvyun Zhu, Xiang Fang, Tingfeng Zhu,Yuezhao Zhu,Super Critical Oxidation Treatment of Black Liquor, Chinese Journal of China pulp & paper. vol.27, pp51-55,2008 [2]Hang Dai, Weihong Huang, Xiaoliang Qian, Xiaohua Lu, Progress in Super Critical Water Oxidation Process for Water Treatment, Chinese Journal of Environmental Protection of Chemical Industry.
Vol.21, pp79-83,2001 [3]Lei Dong, SCWO Technology for Treating of Black Liquor, Chinese Journal of Paper and Papermaking, vol.26, pp66-68,2007 [4]Lei Dong, Haifeng Chen, SCWO applications in Black Liquor Treatment on Papermaking,10th national institutions of higher learning process equipment and control engineering major teaching reform and the discipline construction achievements intercollegiate exchange,2006 [5]Liang Wang, Shuzhong Wang, Qinming Zhang, Linhua Shen, Baiqi Duan, Reaction Mechanism of Oil-Bearing Sewage Disposal by Super Critical Water Oxidation, Chinese Journal of Xi’an Jiao Tong University, vol.40, pp115-119, 2006 [6]Ruihu Li, Nuo Shi, Lijie Qiao, SCWO TECHNOLOGY FOR TREATING THE BLACK LIQUOR OF WHEAT STRAW PULPING, Chinese Journal of Environmental Engineering, vol.6 2009 [7]Chengyu Ma, Anxi Jiang, Yingli Peng, Jingfei Wang, Ying Mu, Establishment and Review of a Pilot-plant-scale Experimental Set for Supercritical Water Oxidation, Chinese journal of Chemical Industry
and Engineering Progress, vol.22,2003 [8]Botao Xiang; Tao Wang; Jichu Yang; Zhongyao Shen, A New High-efficient Technique for Waste Treatment——Supercritical Water Oxidation(SCWO), Materials physics and chemistry (professional) doctoral thesis [9]Xin Liu, The Apply Action of Super Critical Water Oxidation in Waste Water Treatment, Chinese Journal of China Chemicals, vol.1, 2007 [10]AkiSNV K, Abraham .
Online since: July 2011
Authors: Dong Wei Li, Yong Hai Li, Xi Peng, Ke Yang
:Journal of Hazardous Materials Vol.47(1996),p.43 [2] Zhang H.
:Journal of Hazardous Materials Vol.156(2008),p.365 [3] Zhang Y.
:Journal of Hazardous Materials Vol.164(2009),p.750 [6] Huang S.
:Journal of Hazardous Materials Vol.146(2007),p.12 [9] Aubert J.
:Journal of Hazardous Materials Vol.136(2006),p.624 [10] Zhang Y.
Online since: February 2014
Authors: Norlida Jamil, Ahmad Razlan Yusoff, Muhammad Hatifi Mansor
Furthermore, for this analysis, the materials used for the cutting tool were Tungsten with an elastic modulus E = 4.096e+011 Pa, shear modulus G = 1.6e+011 Pa, Poisson’s ratio µ = 0.28, and density ρ = 19300 kg/m3.
The stiffer the materials, the shorter will be the duration of the pulse and the higher will be the frequency range covered by the impact.
International Journal of Mechanical Sciences, 1995. vol. 37(11): p. 1133 - 1146
Vibration-based Damage Detection in Structures Using Time Series Analysis. in Proceedings of the Institute of Mechanical Engineering Part C. 2006: Journal of Mechanical Engineering Science
Journal of Materials Processing Technology, 2006. 176(1–3): p. 117-126
Online since: April 2018
Authors: Yaroslav A. Erisov, Sergey Surudin, Fedor V. Grechnikov
Kablov, Materials and chemical technologies for aircraft engineering, Herald of the Russian Academy of Sciences. 82(3) (2012) 158-167
Liu, The Evolution of Al-Li Base Products for Aerospace and Space Applications, Metallurgical and Materials Transactions A. 43A (2012) 3325-3337
Han, The validity of mathematical models evaluated by two-specimen method under the unknown coefficient of friction and flow stress, Journal of Materials Processing Technology. 122 (2002) 386-396
Antonov, Deformation Behavior of High-Strength Aluminum Alloys under Conditions of Hot Deformation, Aviation Materials and Technologies. 2(35) (2015) 3-9.
Ryan, Constitutive analysis in hot working, Materials Science and Engineering A. 322(1-2) (2002) 43-63.
Online since: October 2011
Authors: Rida Tajau, Wan Md Zin Wan Yunus, Hashim Kamaruddin, Mohd Hilmi Mahmood, Dahlan Khairul Mohd. Zaman
Experimental Method Materials An APO was produced in the Radiation Technology Division, Malaysian Nuclear Agency (Nuclear Malaysia) Bangi, 43000 Kajang, Selangor, Malaysia and CTAB purchased from Sigma Aldrich was used as a surfactant.
Characterization of the nanoparticles The samples were ultrafiltered using a disposable polytetrafluoroethylene (PTFE) teflon filter for removing suspended materials or impurity.
Zhang: Journal of European Polymer Vol. 43 (2007), p. 178 [5] P.
Moulik: Journal of Pharmaceutical Sciences Vol. 97(1) (2008), p. 22 [7] P.
Mahmood: Fundamental Science Congress, May, Faculty of Science, Universiti Putra Malaysia, Selangor, Malaysia. (2010)
Online since: July 2011
Authors: Jiao Yan Dai, Si Guo Mu, Yong Ru Wang, Xiao Pan Yang, Jie Li
Materials Science and Engineering, 2002, A356:32-36
Microstructure and properties of a Cu-Cr-Zr alloy[J], Journal of Nuclear Materials, 2001,299:91-100
Research on aging precipitation in a Cu-Cr-Zr-Mg alloy[J].Materials Science and Engineering, 2005,A392: 422-426 [6] DONG Qi-ming, SU Juan-hua LIU Ping, et al.
Journal of Nuclear Materials, 2000,279:31-45 [8] J B Correia, H A Davies, C M Sellars.
Microstructure and properties of Cu-Cr-Zr alloy[J].Journal of Nuclear Materials, 2001,299:91-100 [10] CAI Wei, WANG Xiao-juan, LIU Rui-qing.
Online since: March 2016
Authors: Sui Yuan Chen, Jing Liang, Xiao Meng Tan, Cheng Jin Wang, Jin Cheng Qin, C.S. LIU
TiNi shape memory alloys exhibited better wear resistance compared to other conventional wear resistant materials due to their good combination of ductility, toughness and pseudo-elasticity[5].
Ti-6Al-4V powder (with the average particles size of 109μm−250μm), pure Ti powder (20-50μm), pure Ni powder (20-30μm), B4C powder (20-50μm) were used as feedstock materials.
[2] Mitun Dasa., Kaushik Bhattacharya. et. al, In situ synthesized TiB-TiN reinforced Ti-6Al-4V alloy composite coatings: Microstructure, tribological and in-vitro biocompatibility, Journal of the mechanical behavior of biomedical materials 29(2014):259 – 271
Mei, Xinhua Wu, Direct laser fabrication of Ti-6Al-4V/TiB, Journal of materials processing technology, 195(2008):321–326
Wu, Laser fabrication of Ti-6Al-4V/TiC composites using simultaneous powder and wire feed, Materials Science and Engineering A 445–446 (2007) 461–466.