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Online since: January 2015
Authors: Li Sheng Liu, Jun Li, Qi Wen Liu
Material Parameters.
Polymer Engineering and Science, 1997, 37(2): 315-320
Polymer Materials Science & Engineering, 2010, 26(3):160-163.
Journal of Materials Engineering, 2014, 2 :51-54.
Journal of Basic Science and Engineering, 2010, 18(4):657-665.
Polymer Engineering and Science, 1997, 37(2): 315-320
Polymer Materials Science & Engineering, 2010, 26(3):160-163.
Journal of Materials Engineering, 2014, 2 :51-54.
Journal of Basic Science and Engineering, 2010, 18(4):657-665.
Online since: May 2012
Authors: Shu Li Wang, Wei Bin Yuan, Xue Mei Li
Materials and methods
Study site is located in Jiangshanjiao forest farm, Heilongjiang, China (lat 43°44'50" ~ 43°54'12" long 128º53'16 ~ 129°12'42”).
Soil organic material content was measured by using heavy chromium acid potassium oxidation method in the experiment room [8].
Acknowledgements This work was financially supported by National Forestry Bureau of China (201104070-01), Scientific and Technological Administration Bureau of Heilongjiang province of China (GA09B202-02), China postdoctoral science foundation (2005037637) and postdoctoral science research foundation of Heilongjiang province (LBH-Q07006).
References [1] Bai JH, Hu ZH and Guo JP: Journal of soil and water conservation.
Vol.42 No.1 (2006), p. 105-109 (in Chinese with English summary) [4] Wang SL, Shen HY, Sun Y and Zhou YY: Science of soil and water conservation.
Soil organic material content was measured by using heavy chromium acid potassium oxidation method in the experiment room [8].
Acknowledgements This work was financially supported by National Forestry Bureau of China (201104070-01), Scientific and Technological Administration Bureau of Heilongjiang province of China (GA09B202-02), China postdoctoral science foundation (2005037637) and postdoctoral science research foundation of Heilongjiang province (LBH-Q07006).
References [1] Bai JH, Hu ZH and Guo JP: Journal of soil and water conservation.
Vol.42 No.1 (2006), p. 105-109 (in Chinese with English summary) [4] Wang SL, Shen HY, Sun Y and Zhou YY: Science of soil and water conservation.
Online since: May 2016
Authors: Michael R. Jennings, Fan Li, Hua Rong, Yogesh K. Sharma, Tian Xiang Dai, David M. Martin, Stephen Russell, Philip Andrew Mawby
Giannazzo, "Impact of the Morphological and Electrical Properties of SiO2/4H-SiC Interfaces on the Behavior of 4H-SiC MOSFETs," Ecs Journal of Solid State Science and Technology, vol. 2, pp.
Tanner, "Effects of nitridation in gate oxides grown on 4H-SiC," Journal of Applied Physics, vol. 90, pp. 5058-5063, 2001
Chow, "4H-SiC MOS Capacitors and MOSFET Fabrication with Gate Oxidation at 1400oC," in Materials Science Forum, 2014, pp. 607-610
Materials Science Forum, 2013, pp. 599-602
Jennings, et al., "Enhanced Field Effect Mobility on 4H-SiC by Oxidation at 1500C," IEEE Journal of the Electron Devices Society, vol. 2, pp. 114-117, 2014.
Tanner, "Effects of nitridation in gate oxides grown on 4H-SiC," Journal of Applied Physics, vol. 90, pp. 5058-5063, 2001
Chow, "4H-SiC MOS Capacitors and MOSFET Fabrication with Gate Oxidation at 1400oC," in Materials Science Forum, 2014, pp. 607-610
Materials Science Forum, 2013, pp. 599-602
Jennings, et al., "Enhanced Field Effect Mobility on 4H-SiC by Oxidation at 1500C," IEEE Journal of the Electron Devices Society, vol. 2, pp. 114-117, 2014.
Online since: April 2014
Authors: D. Liu, S.Q. Zhang, H.B. Tang, H.M. Wang, X.Z. Ran, H. Cheng
Advanced Materials & Process, 1999, 155(3): 23-25
Materials Science and Engineering: A, 527(2010)4804-4809
Journal of Materials Processing Technology, 182(2007)624-631
Procedia Materials Science, 1(2012)50-57
Journal of materials engineering, 7( 2009)1-4.
Materials Science and Engineering: A, 527(2010)4804-4809
Journal of Materials Processing Technology, 182(2007)624-631
Procedia Materials Science, 1(2012)50-57
Journal of materials engineering, 7( 2009)1-4.
Online since: December 2012
Authors: Jing Zhang, Wei Li Wu
Preparation and Characterization on an Environment Friendly Used Rubber Powder Modified Pulp Sediments Composites
Weili Wua and Jing Zhangb
College of Materials Science and Engineering, Qiqihar University, Qiqihar 161006, China
awuweili2001@163.com, b335842052@qq.com
Keywords: Pulp sediments, Used rubber powder, Preparation, Characterization
Abstract.
The study on used rubber powder modified pulp sediment exploits a new way to recycle used rubber powder and pulp sediment, not only benefit environment purification, but also reduce cost of sheet materials.
Li, Polymer recycling technology, Journal of Panzhihua University. 20(2003) 65-68
He, Investigating on the cushioning and corrosion-inhibiting properties of waste paper fibre materials, J.
Sun, Development of utilization of waste paper in material field, Materials Review. 36 (2008)144-147
The study on used rubber powder modified pulp sediment exploits a new way to recycle used rubber powder and pulp sediment, not only benefit environment purification, but also reduce cost of sheet materials.
Li, Polymer recycling technology, Journal of Panzhihua University. 20(2003) 65-68
He, Investigating on the cushioning and corrosion-inhibiting properties of waste paper fibre materials, J.
Sun, Development of utilization of waste paper in material field, Materials Review. 36 (2008)144-147
Online since: June 2017
Authors: Hazizan Md Akil, Ramdziah Md Nasir, Yik Fong Yong, Boon Peng Chang
El-Tayeb, "Abrasive wear performance of untreated SCF reinforced polymer composite," Journal of Materials Processing Technology, Vol. 206, (2008) 305-314
Sahin, "Optimization of testing parameters on the wear behaviour of metal matrix composites based on the Taguchi method," Materials Science and Engineering: A, Vol. 408, (2005) 1-8
Davim, "Effect of filler materials on dry sliding wear behavior of polymer matrix composites–a Taguchi approach," Journal of minerals and materials characterization and engineering, Vol. 8, (2009) 379
Shahidan, "Properties of Pultruded Natural Fiber Reinforced Composites: Effect of Different Kenaf Fiber Yarn Tex," Journal of Biobased Materials and Bioenergy, Vol. 9, (2015) 128-135
Rohatgi, "State of the art on tribological behavior of polymer matrix composites reinforced with natural fibers in the green materials world," Engineering Science and Technology, an International Journal, Vol. 19, (2016) 717-736.
Sahin, "Optimization of testing parameters on the wear behaviour of metal matrix composites based on the Taguchi method," Materials Science and Engineering: A, Vol. 408, (2005) 1-8
Davim, "Effect of filler materials on dry sliding wear behavior of polymer matrix composites–a Taguchi approach," Journal of minerals and materials characterization and engineering, Vol. 8, (2009) 379
Shahidan, "Properties of Pultruded Natural Fiber Reinforced Composites: Effect of Different Kenaf Fiber Yarn Tex," Journal of Biobased Materials and Bioenergy, Vol. 9, (2015) 128-135
Rohatgi, "State of the art on tribological behavior of polymer matrix composites reinforced with natural fibers in the green materials world," Engineering Science and Technology, an International Journal, Vol. 19, (2016) 717-736.
Online since: May 2012
Authors: Hui Ming Tang, Xin Li Hu, Cheng Ren Xiong
Stability Prediction of Zhaoshuling Landslide by Physical Model Test
Huiming Tang 1, a, Xinli Hu 1, b and Chengren Xiong 1, c
1 Engineering Faculty, China University of Geosciences, Wuhan 430074, China
a hmtang6205@cug.edu.cn, b huxli2000@163.com, c xiongcr@126.com
Keywords: Zhaoshuling Landslide, landslide stability, physical model test, similar material model
Abstract.
Chinese Journal of Rock Mechanics and Engineering, 20(2001), pp1658-1662 [3] Deng Jianhui,Ma Shuishan, Zhang Baojun: Preliminary investigation on the reactivation of MaoPing landslide, GeHeYan reservoir, QingJiang river.
Chinese Journal of Rock Mechanics and Engineering, , 22(2003), pp1730-1737 [4] Tang Huiming, Ma Shuzhi and Liu Yourong: Stability and control measures of ZhaoShuLing landslide, BaDong county, three gorges reservoir.
Earth Science, 27(2002), pp621-625 [5] Li Tianbin: Geomechanical modeling study on stability of arch dam shoulder.
Chinese Journal of Rock Mechanics and Engineering, 23(2004), pp1670-1676 [6] Gong Zhaoxiong and Cheng jin: Rock mechanics model test and its application and development in the three gorges engineering.
Chinese Journal of Rock Mechanics and Engineering, 20(2001), pp1658-1662 [3] Deng Jianhui,Ma Shuishan, Zhang Baojun: Preliminary investigation on the reactivation of MaoPing landslide, GeHeYan reservoir, QingJiang river.
Chinese Journal of Rock Mechanics and Engineering, , 22(2003), pp1730-1737 [4] Tang Huiming, Ma Shuzhi and Liu Yourong: Stability and control measures of ZhaoShuLing landslide, BaDong county, three gorges reservoir.
Earth Science, 27(2002), pp621-625 [5] Li Tianbin: Geomechanical modeling study on stability of arch dam shoulder.
Chinese Journal of Rock Mechanics and Engineering, 23(2004), pp1670-1676 [6] Gong Zhaoxiong and Cheng jin: Rock mechanics model test and its application and development in the three gorges engineering.
Online since: May 2011
Authors: Xin Tang Wang, Ming Zhou, Jie Yin, Zhi Guo Xie
Preparation of Specimens and Experiment
Properties of Material of the Specimens.
The gypsum fireproof panel of I-type and II-type used in the test were produced in the Ordi Decorative Material Co., Ltd. in Ningbo City of Zhejiang Province.
The properties of actual material used here are listed in the Table.1.
Table 1 Main properties of variety of materials Type Gypsum fireproof panel I Gypsum fireproof panel II Thickness/mm 18.3 34.3 Density/kg/m3 453.6 820.4 Water ratio/% 7.1 6.9 Fire Experiment.
Acknowledgments This work was financially supported by National Natural Science Foundation of China (51078187) and Natural Science Foundation of Ningbo City (2009A610138).
The gypsum fireproof panel of I-type and II-type used in the test were produced in the Ordi Decorative Material Co., Ltd. in Ningbo City of Zhejiang Province.
The properties of actual material used here are listed in the Table.1.
Table 1 Main properties of variety of materials Type Gypsum fireproof panel I Gypsum fireproof panel II Thickness/mm 18.3 34.3 Density/kg/m3 453.6 820.4 Water ratio/% 7.1 6.9 Fire Experiment.
Acknowledgments This work was financially supported by National Natural Science Foundation of China (51078187) and Natural Science Foundation of Ningbo City (2009A610138).
Online since: September 2013
Authors: Jin Zhou Zhao, Yong Ming Li, Song Wang, Xi Ran Guo, You Shi Jiang, Chang Yu Liu
The rock matrix can be assumed as homogeneous and linear elastic material.
Chinese Journal of Rock Mechanics and Engineering, Vol.22-1(2003), p. 40-44.
Journal of China University of Petroleum (Edition of Natural Science), Vol.31-6(2007), p. 48-54.
Journal of Petroleum Technology, Vol.43-5(1991), p. 608-615
Mechanics of Materials, Vol.38-11(2006), p. 1072-1089.
Chinese Journal of Rock Mechanics and Engineering, Vol.22-1(2003), p. 40-44.
Journal of China University of Petroleum (Edition of Natural Science), Vol.31-6(2007), p. 48-54.
Journal of Petroleum Technology, Vol.43-5(1991), p. 608-615
Mechanics of Materials, Vol.38-11(2006), p. 1072-1089.
Online since: August 2012
Authors: Peng Cao, Guian Wen
Baril, Effect of Oxygen Concentration and Distribution on the Compression Properties on Titanium Foams, Advanced Engineering Materials 10 (2008) 868-876
Conrad, Effect of Interstitial solutes on the strength and ductility of titanium, Progress in Materials Science 26 (1981) 123-403
Strauss, Processing of titanium by metal injection molding, Advances in Powder Metallurgy & Particulate Materials - 2003, MPIF, Las Vegas, 2003
Morgan (Eds.), Fire Retardancy of Polymeric Materials, CRC Press, 2010
He, Powder injection moulding of Ti-6Al-4V alloy, Journal of Materials Processing and Technology 73 (2006) 310-314
Conrad, Effect of Interstitial solutes on the strength and ductility of titanium, Progress in Materials Science 26 (1981) 123-403
Strauss, Processing of titanium by metal injection molding, Advances in Powder Metallurgy & Particulate Materials - 2003, MPIF, Las Vegas, 2003
Morgan (Eds.), Fire Retardancy of Polymeric Materials, CRC Press, 2010
He, Powder injection moulding of Ti-6Al-4V alloy, Journal of Materials Processing and Technology 73 (2006) 310-314