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Online since: November 2007
Authors: Jose Manuel Prado, Jose María Cabrera, Carlos Merizalde
Experimental Procedure Materials.
Atkinson: Progress in Materials Science.
Pellegrini: Journal of the Less-Common Metals.
Cosmetic Science.
Petraroli: Materials Letters 53 (2002) 333
Online since: December 2012
Authors: Yi He Fang, Yu Liang Lin
According to air tensile test, mechanical characteristics of reinforced soil materials are shown in Table 2.
Table 1 Basic physics index of red sandstone Specific gravity Liquid limit [%] Plastic limit [%] Cohesion [kPa] Internal friction angle [º] optimum moisture content [%] Maximum dry density [g/cm3] 2.74 41.78 25.14 25 21 18.13 1.73 Table 2 Air tensile test results of reinforced soil materials Reinforced soil materials Tension of 2% strain [kN·m-1] Tension of 5% Strain [kN·m-1] Tensile strength [kN·m-1] strain under maximum load [%] Gabion mesh (2.2mm) 11.1 18.5 25.9 7.6 Gabion mesh (2.7mm) 11.6 21.2 41.8 10.4 70RE geogrid 16.6 31.0 55.3 10.0 Results and Analysis The curves between load and settlement ratio of new retaining walls are shown in Fig.4~6.
Yang: Journal of China Coal Society, Vol. 24 (1999), p. 78-81
Li: Journal of Central South University of Technology, Vol. 17 (2010),p. 1351-1356
Li: Journal of Vibration and Shock, Vol. 29 (2010), p. 223-227.
Online since: December 2007
Authors: Gui Cheng Wang, Sheng Wen Zhang, Chan Yuan Gong, Xi Feng Fang
Lo: Journal of Materials Processing Technology, Vol.105 (2000) No.1-2, pp.143-151
M'Saoubi: International Journal of Machine Tools & Manufacture, Vol.46 (2006), pp.1786-1794
Zeren: International Journal of Advanced Technology, Vol.3 (2006), pp.1786-1794
Cheng and et al: International Journal of Advanced Manufacturing Technology, Vol.32 (2005), pp.666-674
Ozel: International Journal of Machine Tools& Manufacture, Vol.46(2006), pp.518-530.
Online since: July 2017
Authors: Alexander Nam, Evgeniy V. Aryshenskii, Maksim S. Tepterev, Yaroslav A. Erisov, Vladimir G. Kolobov
Orthotropic elasto-plastic material model (Hill’48 model) was applied for 5182 aluminum alloy blank behavior description [11].
Metal Science and Heat Treatment, 2014, 56(7-8): 347-352
Metal Science and Heat Treatment, 2014, 56(1-2): 14-17
Key Engineering Materials, 2016, 684: 227-233
Journal of Materials Processing Technology, 2000, 106: 40-44
Online since: March 2017
Authors: Yu Cheng Wu, Zhen Zhang, Xiao Dong Du, Yu Kun Li, Hai Lin Su, Ming He Wang
Sc Si Mg Cu Ti Al 1# 0 3.0 0.45 0.45 0.15 Bal. 2# 0.05 3.0 0.45 0.45 0.15 Bal. 3# 0.10 3.0 0.45 0.45 0.15 Bal. 4# 0.15 3.0 0.45 0.45 0.15 Bal. 5# 0.20 3.0 0.45 0.45 0.15 Bal. 1.2 Experimental Method The starting materials were commercially pure Al (99.99%), Al-21.54% Si, Al-2.02% Sc, Al-50.38% Mg, Al-39.97% Cu and Al-3.93% Ti experimental alloy.
Materials Science and Engineering of Powder Metallurgy, 2008, 13 (5): 249-259
The Chinese Journal of Nonferrous Metals, 2006, 16 (4): 612−617
Ordnance Material Science and Engineering, 2003, 26 (1): 11-15
The Chinese Journal of Nonferrous Metals, 2007, 17 (8): 1324-1329
Online since: July 2011
Authors: Jian Bo Zhang, Xi Wu Li, Bao Hong Zhu, Feng Wang, Zhi Hui Li, Hong Wei Liu, Bai Qing Xiong, Yong An Zhang
Materials Science and Technology Vol.15 (1999), p. 861
Materials Science and Engineering A 525(2009), p.128
Metallurgical and materials transactions A 37A(2006), p.1091
Journal of Materials Science Vol.32(1997), p.3401
Materials Science and Engineering A(1995), p.121.
Online since: May 2011
Authors: Chuan Bin Wang, Ting Ting Zeng, Jia Bao Zhang, Rui Cheng Bai, Jin Liang Sun, Ze Zhou, Xian Fu Li, Lai Chen
Experimental Materials N,N,N’,N’-tetraglycidyl-4,4’-diaminodiphenylmethane (TGDDM) was provided from Huntsman Advanced Materials (Guangdong) Co., Ltd; Methyl hexahydrophthalic anhydride(MHHPA) were obtained from Jiaxing Alpharm Fine Chemical Co., Ltd; Epoxy resin SUC-1,Self-made; Carbon Fiber T700 was supplied by Toray Industries, Inc.
[3] You Min, Zheng Xiaoling, Xiong Weihao: Materials Review (in Chinese), Vol.16(2002), p.52
[11] Li Zhezhao,Zeng Jing-cheng,Xing Suli,Du Gang: Materials for Mechanical Engineering (in Chinese), Vol.31(2007), p.29
[14] Guo Haiqiang,Wei Yunhe: New Chemical Materials(in Chinese), Vol.31(2009), p.75
Qin: Journal of Applied Polymer Science,Vol.88(2003), p.1410
Online since: November 2013
Authors: Shi Ping Zhang, Bing Hua Zhao
In fact, as a heterogeneous composite material made up of cement, aggregate, admixture and so on, concrete has a quite complicated internal structure with flaws like microcracks and micropores even when loaded.
Acknowledgements This work was financially supported by National Natural Science Foundation of China (51108231),Natural Science Foundation of Jiangsu Province (BK2011690),Science and Technology Program (2013-K4-20) under the Ministry of Housing and Urban-Rural Development.
References [1] KaiSheng Lin,ZongLi Li: Hydro-Science and Engineering, Vol.2(2010), p. 51-55
[4] YangJun Xu,GuoMin Zhang:Journal of WuHan University Technology, Vol.33(2011), p. 93-97
[5] KeNi Zhang,Yang Wang: South-to-North Water Diversion and Water Science & Technology ,Vol. 9(2011), p. 57-62.
Online since: February 2016
Authors: Yury Andreev, Valery A. Svetlichnyi, Gregory Lanskii, Konstantin Kokh
Experiment The starting materials for the synthesis were Ga 99.9997, Se 99.999, S 99.995, Te 99.95, and In 99.999, which were additionally purified by remelting in continuously evacuated ampoules.
Conclusions Finally, it can be proposed that optimally S-doped GaSe is the one of the prospective materials for optical rectifiers and down-converters into mid-IR and THz range, as well as for electrooptical detectors and other applications.
Soldatov, Optimal doping of GaSe for nonlinear optical applications, Russian Physics Journal. 56 (2014) 1250-1255
Shaiduko, Frequency conversion of nanosecond CO2-laser into THz range in doped GaSe crystal, Basic Problems of Material Science. 9, 4 (2012) 486-494
Material Science: Materials in Electronics. 25 (2014) 1757-1760
Online since: February 2011
Authors: Zhi Hao Ma, Bing Yun, Xiao Lei Dong
Numerical Simulation of Microstructure Evolution of Hot Forging Zhihao Ma1, a, Xiaolei Dong2,b , Bing Yun3,c 1,2School of Mechanical Engineering, Hebei United University, Tang shan Hebei, 063009 China 3School of Materials Science and Engineering, University of Science & Technology Beijing, Beijing, 100083 China amazhh2008@yahoo.cn, bgrmmdxl@163.com, cring_yb@126.com Keywords: Hot-Forging; Dynamic Recrystallization; Grain Size Abstract.
Hot forging changes stress state of materials and makes the internal microstructure change significantly; while changes in the microstructure not only have an effect on the deformation process, but also determine the final performance of the product to a large extent.
References [1] Xiaoli Li, Miaoquan Li.Materials Characterization, 2005(55):362-370
Joural of Materials Processing Technology, 2003, (141): 337-342
Central South university Journal 2008, (5): 1005-1010.