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Online since: June 2014
Authors: Dong Yu Chen, Yan Qing Hu
In the last few years, sweet sorghum has been paid attention in many countries as one of the important raw materials to produce fuel ethanol.
The material was sweet sorghum bagasse, with a particle diameter below 6 mm.
The quality of material was controlled between from 3 to 3.5 mg each time.
Journal of Solar Energy. 24(6):771-775, (2003) [6]C.
Bingjing: Science Press. 2001.
Online since: August 2010
Authors: H.Q. Yan, Qingyuan Wang
The recycled aggregate concrete is a new green material.
After a building fire, the material properties of concrete change due to high temperature conditions.
However, owing to the fact that the variation and distribution of temperature in a fire is complex, it is very difficult for different structures and materials at elevated temperature to obtain a theoretical correlation between mechanical behaviors and constitutive relations [1, 2].
[5] Yan HQ, Wang QY and Yan Ning: Behavior of Reinforced Concrete Structure under and after High Temperature: A Review , Journal of Chongqing Jianzhu University, 2003, (3) , p.110-114
[7] Yan HQ, Wang QY and Yan Ning: Mechanical Behavior of Concrete After Exposure to High Temperature, Journal of Southwest Jiaotong University, 2006.6, p.19-21.
Online since: December 2013
Authors: Rafał Michalik
Islas, Journal of Materials Processing Technology 66 (1997) 244-248
Yan, Journal of Materials Processing Technology 47 (1994) 73-85
Aramaki, Corrosion Science 43 (2001) 591-604
Aramaki, Corrosion Science 44 (2002) 871-886
Heusler, Journal of Electroanalitycal Chemistry 180 (1984) 77-86.
Online since: January 2013
Authors: Jian Hui Qiu, Ying Zhao, Ming Ming Shang, Dan He, Min Zhang
Experimental Materials.
New Chemical Materials, 39 (2011) 119-121
Journal of Applied Polymer Science, 124 (2012) 2902-2907
Chemical Journal of Chinese Universities, 31 (2010) 612-615
Chemical Journal of Chinese Universities, 33 (2012) 416-420
Online since: October 2011
Authors: Yi Bai Wang, Jian Fang Fei, Xiao Gang Huang, Xiao Ping Cheng, Yi Jun Ge
PM2.5 mainly results from combustion processes and chemical production while the latter is composed of material such as wind-blown dust, marine particles and other unspecified anthropogenic origin.
[2] Yaping Shao: Journal of Geophysical Research.
Leslie, et al: Journal of Geophysical Research Vol.107(2002), p.4814-4836
Tegen, et al: Journal of Geophysical Research Vol.106(2001), p.24698-24712
Ueda, Meiyuan Huang: Journal of Geophysical Research Vol.105(2000), p.26947-26959
Online since: October 2014
Preface This journal volume contains the accepted papers from the fourth International Conference on Applied Mechanics, Materials and Manufacturing (ICA3M 2014, ICAMMM 2014), held in Shenzhen, China, August 23-24, 2014.
The scientific discipline behind this conference was theoretical and applied mechanics and its applications in materials and manufacturing fields.
Dehong Lu, Kunming University of Science and Technology Prof.
Baochun Lu, Nanjing University of Science and Technology Prof.
Kaiming Wu, Wuhan University of Science and Technology Prof.
Online since: August 2017
Authors: Xuan Li, Hong Chen, Zhi Wei Wang
Simulation of Stress Field in High-Frequency Welded Pipe of Composite Aluminum Alloy Zhi-Wei Wang1,a, Xuan Li1,b* Hong Chen1 1Hubei Province Key Laboratory of Green Light Materials, School of Material Science and Chemical Engineering, Hubei University of Technology, Wuhan 430068, China a109706509@qq.com, bandysuperlx@163.com Keywords: High-frequency welded pipe, Finite element, Stress field Abstract.
[3] Y Han, EL Yu, Numerical Analysis of a High-Frequency Induction Welded Pipe, Welding Journal, 91(2012) 270S-277S
[4] XD Liu, ZW Wang, H Chen, Simulation of Temperature Field in High Frequency Induction Welding Process of Composite Aluminum Alloy Thin-Walled Tube, Applied Mechanics & Materials, (2015)713-715
[6] D Deng, H Murakawa, Numerical simulation of temperature field and residual stress in multi-pass welds in stainless steel pipe and comparison with experimental measurements , Computational Materials Science, 37(2006) 269-277
[10] A Nikanorov, E Baake, J Neumeyer, Numerical Simulation and Investigation of High Frequency Tube Welding Process, Applied Mechanics & Materials, 698(2014)245-250
Online since: October 2013
Authors: Yan Xiang Li, Yu Tong Zhou, Xing Nan Liu, Wen Wen Yuan
Comparison of cell wall microstructure of aluminum foams produced by melt foaming and gas injection foaming processes Yutong Zhoua, Yanxiang Lib, Xingnan Liuc and Wenwen Yuand School of Materials Science & Engineering, Tsinghua University, Beijing, P.
Reference [1] J.Banhart, Progress Material Science 46 (2001) 559-632
[2] LP.Lefebvre, J.Banhart, DC.Dunand, Advanced Engineering Materials. 10, 9(2008) 775-787
[4] ZL.Song, LQ.Ma, ZJ.Wu, Journals of Materials Science 35, 1(2000) 15-20
[8] N.Babcsan, D.Leitlmeier, HP.Degischer, J.Banhart, Advanced Engineering Materials. 6, 6(2004) 421-428
Online since: September 2014
Authors: Hajo Dieringa, Norbert Hort, Karl Ulrich Kainer, Yuan Ding Huang
Luo: International Materials Reviews 49 (2004), p. 13-30
Oikawa: Materials Science and Engineering A 252 (1998), p. 248-255
Ding: Materials Science and Engineering: A 424 (2006), p. 40-46
Kainer: Advanced Engineering Materials 8 (2006), p. 359-364
Kim: Journal of Materials Science 42 (2007), p. 6171-6176.
Online since: June 2012
Authors: Guo Xian Ma, Guo Liang Yuan, Hai Ying Zhang
Treatment methods of fly ash include solidification with cement-based materials, chemical stabilization with EDTA, sodium sulfide and thiourea[4-6], hydrometallurgical extraction by dissolution in acidic or alkaline medium, and sintering or vitrification for reuse as a construction material.
Reference [1] Sandell J F, Dewey G R: Journal of Environmental Engineering Vol.122(1996), p.35
[2] Zhao Youcai, Song Lijie: Journal of Hazardous Materials Vol.95(2002), p.48
[5] Kerby C S, Rimstidt J D:Environmental Science & Technology Vol.27(1993), p.655