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Online since: June 2011
Authors: M.H. Ishtiyaq, Anayet Ullah Patwari, A.K.M. Nurul Amin, A. Fakhruzi Majed, M.K. Daud
The very mechanical characteristics that give this alloy the highly valued properties also make it one of the most difficult-to-machine aerospace materials.
But ceramics are low conductive materials, and the heat generated during the machining of Inconel 718 transfers very slowly through them.
Unfortunately, ceramics are low conductive materials [7], and the heat generated during the machining of Inconel 718 transfers very slowly through them.
Elbestawi, Cutting Temperature of Ceramic Tools in High Speed Machining of Difficult-to-Cut Materials, Int.
Journal of mechanical Tool Manufacture, 36 (5) (1996) 611–634
Online since: August 2013
Authors: Zhao Liu, Han Hui Xu, Xi Peng Li, Chun Guang Xu
For general isotropic materials 21 elastic constants,, relate the stress components of Eq. 1, , with the strain components,
Zhao: Journal of Robotics and Mechatronica, Vol. 21 (2008) No.5, p.568-573
Rose: Smart Materials and Structures, Vol. 20 (2011), 105002
He: International Journal of Solids and Structures, Vol. 44 (2007), p.3627-3637
Huang: Smart Material and Structure, Vol. 16 (2007), p.1907-1914
Online since: August 2011
Authors: Xiao Dong Wang, Xi Wei Zhai, Fu Rong Chen, Rui Ling Jia
Corrosion Science.
Materials and Design.
Journal of materials processing technology.
Materials Chemistry and Physics.
Materials Science and Engineering A.
Online since: October 2010
Authors: Dan Hong Wang, Xiao Ru Zhao, Hui Nan Sun, Li Bing Duan, Chang Le Chen
Acknowledgements This work was supported by the National Natural Science Foundation of China (Grant No. 50872112) and Research Startup Foundation of Northwestern Polytechnical University (Grant No.
Vol. 42 (2009), p. 095102 [4] Wenqin Luo, Renfu Li, Yongsheng Liu, and Xueyuan Chen: Journal of Nanoscience and Nanotechnology.
Kikuchi: Applied Surface Science.
Peng: Journal of Applied Physics.
Vol. 100 (2006), p. 023529 [9] Aihua Peng, Erqing Xie, Changwen Jia, Ran Jiang, Hongfeng Lin: Materials Letters.
Online since: September 2013
Authors: Chang Ping Sun, Qiang Gao, Hang Yu, Zheng Guang Xu
Study on Moving Pattern based Fault Detection Method Changping Sun 1, 2, Qiang Gao 1, 2, Hang Yu 1, 2, Zhengguang Xu 3 1Tianjin Key Laboratory for Control Theory & Application in Complicated Systems, Tianjin University of Technology, Tianjin 300384, China. 2School of Electrical Engineering, Tianjin University of Technology, Tianjin, China. 3School of Automation, University of Science and Technology Beijing, Beijing 100083, China email: sunchangping2000@sina.com Keywords: Moving Pattern, Fault Detection, Complex Production Process, Interval Number Abstract.
However, there is a class of complex production process in the process industries, such as metallurgy, iron and steel, building materials and chemical engineering and so on.
Acknowledgement In this paper, the research was sponsored by Tianjin Nature Science Foundation (Project No. 13JCQNJC04000) References [1] S.
International Journal of Control, 63 (1), 85–105
International Journal of Systems Science 33 (2), 97–105
Online since: September 2013
Authors: Jing Jing Shao
Kinetic studies and Adsorption Property of Activated Carbon from Heilongjiang Blended Coal for Phenol SHAO Jing-jing College of Resource and Environment Engineering, Heilongjing University of Science and Technology, Harbin 150022, China Email:singnis@sina.com Key words: HSAAC. phenol. adsorption Abstract.
Through principle analysis and test verification of low metamorphic grade Yilan Coal blending with anthracite and Datong light sticky coal blending with Ningxia anthracite, Zhang Wenhui et al from Beijing Institute of Coal Chemistry of Coal Science Research Institute studied the application of blended coal in activated carbon technology in detail[3].
Natural Science Journal of Hainan University, 2006, 24(1): 74-76
Journal of Hazardous Materials, 2002, 89:185-196.
Online since: January 2013
Authors: Da Li Zhang, Jian Hui Gao, Yu Wen Bao, Xiao Zhen Li, Lin Xiao
In order to imitate the structural performance accurately, the materials of test model are same as that of the real structure, the steel box beam is made of Q375qE steel, the concrete beam is made of C55 concrete, reinforcing steel type is HRB335.
Acknowledgement This research was sponsored by the National Natural Science Foundation of China (Grant No.50808150),Technological Research and Development Programs of the Ministry of Railway (Grant No.2008G031-11, 2009G004-B, 2010G018-A-4), The Open Fund of the Ministry of Education Key Laboratory for Civil Engineering Safety and Durability, Tsinghua University, Beijing, China.
Journal of Railway Engineering Society, 2009(9): 46-49.
Journal of Huazhong University of Science and Technology (Natural Science Edition), v 40, n 1, p 67-71, January 2012.
Online since: June 2012
Authors: Ying Wang, Guang Li Cao, Lei Zhao, Ai Jie Wang, Jong Shik Chung
Introduction Phanerochaete chrysosporium is a white-rot basidiomycete that is able to degrade and metabolise polymeric lignin as well as a broad range of oxidation via redox-active mediators ,is very active in nature[1-7] and to participates in the degradation process ofcomplex woody materials[8] .
Acknowledgements This research was supported by the National Natural Science Foundation of China (Grant Nos. 51178140 and 51121062) and State Key Laboratory of Urban Water Resource and Environment (Grant No. 2010DX11) References [1] Laura Zacchi, Giorgio Burla, Ding Zuolong ,et al.
Metabolism of cellulose by Phanerochaete chrysosporium in continuously agitated culture is associated with enhanced production of lignin peroxidase.Journal of Environmental Sciences 20(2008) ,88-93 [2] S.
Journal of Biotechnology 52 (1996) ,21-39 [4] Gold MH, Alic M.
Science .221(1983),661–663
Online since: December 2011
Authors: Mei Li, Min Shi, Ming Zheng Liang, Hong Yu Liang, An Ping Liao
Materials and methods Source of strains.Rhodotorula rubra 2.1817,Candida tropicalis 2.1775, Geotrichum candidum 2.1175 (China Center Of Industrial Culture Collection,Beijing).
Acknowledgements This work was financially supported by Project of Science and Technology Department of Guangxi of China (No. 0816002-6)), and Project of Science and Technology Department of Guangxi of China((No.0992028-13) References [1] Chun-Hai Zhao and Tong Zhang:Bioprocess Biosyst Eng Vol.33(2010),p.549-556 [2] Cheng Wang,Chuanyi Huo and Jiaqi Liu: Modern Agricultural Science and Technology (2010),p.16-21,in Chinese [3] J.N.Nigam: World Journal of Microbiology and Biotechnology Vol 16(2000), p.367-372 [4] Tong Zhang and Jun Sheng:Mar Biotechnol VOL.11(2009),p.280-286 [5] Bramanti E,Ferri F,Sortino C,Onor M and Raspi G Vol.69(2003),p.293-300 [6] Victoria J.
Gauci,Elise P.Wright and Jens R.Coorssen Vol.4(2011),p.5-8 [7] Christos D.Georgiou,George Zervoudakis,Ioannis Papapostolou and Konstantinos Grintzalis:Anal Bioanal Vol.391(2008),p.391-403 [8] Donghua Jiang,Hao Ji and Yan Ye :Eur Food Res Technol Vol.232(2011), p. 541-547 [9] Tipparat Hongpattarakere and Aran K-Kittikun:World Journal of Microbiology and Biotechnology Vol.11(1995),p.607-609
Online since: February 2015
Authors: Xiao Jie Liu, Shu Hui Zhang, Qing Lv, Bingqiang Wu, Ya Na Qie
Influence of Chlorine Additives on Combustion Rate of Pulverized Coal Injection WU Bingqiang1,a, ZHANG Shuhui1,b*, LIU Xiaojie2,c, QIE Yana1,d and LV Qing1,e 1College of Metallurgy and Energy, Key Laboratory of the Ministry of Education for Modern Metallurgy Technology, Hebei United University, Tangshan 063009, Hebei, China 2School of Materials and Metallurgy, Northeastern University, Shenyang 110004, Liaoning, China awubingqiang@yeah.net, bzhangshuhui@heuu.edu.cn, cXiaojie19851003@163.com, d461434073@qq.com, elq@heuu.edu.cn Keywords: chlorine additives; pulverized coal; combustion rate; influence mechanism Abstract: Chlorine additives are often used to improve the combustion performance of pulverized coal injection (PCI) in blast furnace.
Acknowledge This work was financially supported by the National Natural Science Foundation(No.51174074)and Hebei Province Natural Science Foundation(E2011209022).
Environment Science Techno1ogy, 1998, 32:3356-3359 [4] Jiang Xuguang, Xu Xu, Yan Jianhua, et al.
Journal of China Coal Society, 2002, 27(4):398-401
Journal of Xi'an Jiaotong University, 2000, 34(9):20-24