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Online since: May 2011
Authors: Hong Mei Zhang, Ming Xun Chang, Yong Chang Yu, Hui Tian, Yu Qing He, Xin Chang Chen
Materials and Methods Tea samples The study was carried out by using XinyangMaojian green tea obtained from the Tea Academy of Xinyang, Henan Province, China.
Acknowledgements The authors acknowledge the financial support of the Chinese Postdoctoral Science Foundation and China Postdoctoral Science Special Foundation through Project No. 20090460854 and 201003396.
Morita, N.Watanabe: Journal of Food Engineering, vol.92(2009), p. 312–316
Guasch: Journal of Chromatography A, vol.1057(2004),p. 211–217
Online since: May 2011
Authors: Chang Hong Li, Li Xin Zhang
Comprehensive Assessment of Water Inrush Risk in Deep Mining of Beiminghe Iron Mine Changhong Li1,2,a, Lixin Zhang2,3,b 1Key Laboratory of the Ministry of Education of China for High-efficient Mining and Safety of Metal Mines, University of Science and Technology Beijing, Beijing 100083, China 2School of Civil and Environment Engineering, University of Science and Technology Beijing, Beijing 100083, China 3Anhui Development Mining Co., Ltd, Hanxing Metallurgical Mine Administration, Anhui Liuan 237462, China alch@ustb.edu.cn, bzlxandzy@126.com Key words: Deep mining, Water inrush, Comprehensive evaluation.
(2) Water-storage of water-bearing layer Water-storage of water-bearing layer is material basis of water inrush scope, which determines the scope of water damage and the extent of threat to mines after water inrush.
Filling material was constantly taken away.
[5] Wancai Yin, Zengde Yin, Longqing Shi: Journal of Jiaozuo Institute of Technology Vol. 18(1999), p. 18–21, in Chinese
[6] Weitao Liu, Wenquan Zhang, Jiaxiang Li: Journal of China Coal Society Vol. 25(2000), p. 278–282, in Chinese
Online since: September 2014
Authors: Kai Lu, Xiao Ping Wang, Zhong Lan Luo
An Efficient and Feasible Color-based Technique for Object Picking Zhonglan Luo1, a *, Kai Lu1, Xiaoping Wang1 1, School of Computer Science, National University of Defense Technology, Changsha, 410000 China a email: luozhonglan520@gmail.com * corresponding author : Zhonglan Luo Keywords: 3D object picking, Color-based picking techniques, 3D User Interface, TianHe-2, iOS Abstract. 3D object picking, or 3D object selection, is a very important human-computer interaction technique.
However, the object which has texture or materials is very important for us to build a real scene.
Acknowledgements This work is partially supported by National High-tech R&D Program of China (863 Program) under Grants 2012AA01A301 and 2012AA010901, by program for New Century Excellent Talents in University and by National Science Foundation (NSF) China 61272142, 61103082, 61003075, 61170261 and 61103193.
International Journal of Human-Computer Studies, 2010; 68(10):603 – 615 [12] Elmqvist N, Dragicevic P, Fekete J D.
Journal of Graphics Tools (JGT), 2005; 10(1):49-54
Online since: September 2013
Authors: Ji Chao Peng, She Rong Hu, Yun Xun Zhang, Wen Bin Tong, Min Chen, Chao Ji, Jiu Ling Wang
If the gangue stacked by side of the surface waters, it can cause water blockage, material deposition, secondary pollution of the water body, resulting in a vicious cycle.
Pingdingshanxiangshan district rural quarry stone, gravel, cause the area all the year round dusty, air pollution[12] . 1.2.3.2The environmental impact of coal gangue spontaneous combustion Coal gangue containsmuch combustible such as coal, pyrite, wooden material.
Acknowledgements Foundation item: Chinese Academy of Sciences Strategic guiding scientific and technological specialproject” Respond climate change about carbon budget certification and related issues”:Natural process of carbon emissions(XDA0503000) References [1]ShuhuaGuo.
Journal of Geological Hazards and Environment Preservation. 2004,15 (3): 6 ~ 16.In Chinese
[6].Yongqiang Xing,Jincheng Feng,Hui Ma.Journal of Shandong University of Technology( Natural Science Edition) .2007,3.21(2):74~78.In Chinese
Online since: April 2014
Authors: Yi Wei Zhuang, Zheng Xi Cheng, Xue Min Zhang, Hong Hui Yuan
Fabrication of the Silicon-based Three-dimension Neural Probe Arrays Zhuang Yiwei1,a,Cheng Zhengxi1,b*,Zhang Xueming1,c,Yuan Honghui1,d 1Shanghai Institute of Technical Physics,Chinese Academy of Sciences akarl.randoll@hotmail.com,bczx@mail.sitp.ac.cn,czhangxuem@yeah.net,dyuanhonghui@163.com Keywords: neural probe array,silicon-based,three-dimension,MEMS Abstract: The neural probe array is an important tool for getting the neural signals.
Meanwhile, due to the biological compatibility of indium unknown, it also required to explore the new materials or methods for interconnect, so that to promise the security of long-term implantation.
From Neuron To Brain [M], Peking:Science Press,2003:14-22 [2] Liang Pei-ji,Chen Ai-hua,Shen Jing Yuan Huo Dong De Duo Dian Ji Tong Bu Ji Lu Ji Shen Jing Xin Hao Chu Li[M],Peking:Beijing University of Technology Press,2003:33-49 [3] GyÖrgy Buzsáki,Large-scale recording of neuronal ensembles[J],Nature Neuroscience[J], 2004,7(5):446-451 [4] Wise K D,Anderson D J,Hetke J F,et al,Wireless Implantable Microsystems:High-Density Electronic Interfaces to the Nervous System[J],Proceedings of the IEEE,2004,92(1):76-97 [5] Kelly E Jones,Patrick K Campbell,Richard A Normann,A Glass/Silicon Composite Intracortical Electrode Array[J],Annals of Biommedical Engineering,1992,20:423-437 [6] Cheng Zheng-xi,Huang Wei-ning,Zhou Jia,et al,Studies on MEMS Neural Micro Probe[J], Chinese Journal of Sensors and Actuators,2006,19(5):1388-1390 [7] William R Patterson,Yoon-Kyu Song,Christopher W Bull,et al,A Microelectrode/ Microelectronic Hybrid Device for Brain Implantable Neuroprosthesis Applications[J]
,IEEE Transactions on biomedical Engineering,2004,51(10):1845-1853 [8] Yoon-Kyu Song, William R Patterson, Chris topher W Bull,et al,Development of a Chipscale Integrated Microelectrode/Microelectronic Device for Brain Implantable Neuroengineering Applications[J].IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2005, 13(2):220-226 [9] Cheng Zheng-xi,Zhuang Yi-wei,Zhang Xue-min, et al,Method for Preparing Blending Type Three-dimensional Neuron Probe Array [P],China:CN102674239A ,2012.09.19 [10] Cheng Zheng-xi,Zhuang Yi-wei,Zhang Xue-min,et al,Fabrication of Hybrid Three-Dimension Neural Probe Arrays[J],Chinese Journal of Sensors and Actuators,2013,26(2): 150-155 [11] Pang Changlin,Parylene Technology for Neural Probes Applications[D],California Institute of Technology,2007
Online since: July 2011
Authors: Xu Wang, Xin Li, Xiao Xia Zhou, Hui Fang Yang, Long Zheng Tong
Journal of Neurology, Neurosurgery & Psychiatry, 2005, 76: 2-7. ].
American Journal of Neuroradiology, 2006, 27: 1454-1458. ].
Materials and Methods Subject.
Acknowledgment This work is supported by the Natural Science Foundation of China (Grant No. 81071128) and the Natural Science Foundation of Beijing (Grant No.7102017).
Online since: April 2013
Authors: A.R. Othman, A.R. Azrin Hani, A. Roslan, M. Mariatti, Mohd Nazrul Roslan
These textile composites have been used since 1950’s mostly for interior and exterior panels or parts in aircraft, automotive or as structural materials to resist heavy loads.
Material.
Saparudin, Mechanical properties evaluation of woven coir and kevlar reinforced epoxy composites, Advanced Materials Research. vol. 277 (2011) pp. 36-42
Maziah, Body armor technology: A review of materials, construction techniques and enhancement of ballistic energy absorption, Advanced Materials Research. vol. 489 (2012) pp. 806-812
Abu Bakar, Cellulosic/synthetic fibre reinforced polymer hybrid composites: A review, Materials Science and Engineering: A. vol. 528 no. 15 (2011) pp. 5190-5195.
Online since: March 2026
Authors: Sunil J. Raykar, Nilesh R. Kumbhar, Mahantayya K. Mathapati, Tanish A. Barad
Commonly known as 3D printing, AM can produce highly complex geometries using a wide range of materials.
From last few years, this technology has improved significantly, and many new materials are being developed and used. [2].
[3] Xia Gaoa,, Shunxin Qi, Xiao Kuangd, Yunlan Sub, Jing Lia,c, Dujin Wang, (2021) “Fused filament fabrication of polymer materials: A review of interlayer bond” , Additive Manufacturing37101658, https://doi.org/10.1016/j.addma.2020.101658
Koo, (2020) “Recent developments in polymers/polymer nanocomposites for additive manufacturing”, Progress in Materials Science 111 100638, https://doi.org/10.1016/j.pmatsci.2020.100638
[5] Kushagra Tiwari, Santosh Kumar, (2018) “Analysis of the factors affecting the dimensional accuracy of 3D printed products”, Materials Today: Proceedings 5 18674–18680
Online since: June 2010
Authors: Hans Ivar Laukli, Arne K. Dahle, Christopher M. Gourlay, Somboon Otarawanna
Dahle, Materials Characterization 60 (2009) 1432-1441
Cross, Current Opinion in Solid State & Materials Science 5 (2001) 3-8
Rappaz, Modelling and simulation in materials science and engineering 12 (2004) 479-490
Ghomashchi, Materials Characterization 60 (2009) 938-945
Rappaz, Nature Materials 5 (2006) 660-664.
Online since: May 2014
Authors: Piotr Migas, Marta Korolczuk-Hejnak
Due to the prevailing conditions inside, the hearth of the blast furnace is made up of graphite, carbon, carbon-graphite, and microporous materials.
It implies a requirement for adequate quality of refractory materials applied, and as a consequence maintenance costs of such big units necessitate the extension of the life of the furnace.
Charge materials with titanium compounds have started being used in order to extend the life of the refractory lining and the service life of the blast furnace.
Fruehan Thermodynamics Of Tiox In Blast Furnace–Type Slags Metallurgical And Materials Transactions B Volume 30b, February 1999, Pp. 29-43, [6] D.
Seetharaman; Experimental Investigation Of The Viscosities In Cao-Sio2-Mgo-Al2o3 And Cao-Sio2-Mgo-Al2o3-Tio2 Slags; Metallurgical And Materials Transactions B Volume 38b, December, 2007-911, [13] L.