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Online since: July 2014
Authors: Jun Lin Tao, Dan Li, Jiang Tao Li
Air and explosives were calculated with material ALE algorithm.
Table 1 is reinforced concrete material parameters.
Acknowledgments This work was financially supported by National Defense Basic Scientific Research Program of chain (B3120110004), Open Fund of the Non-metallic Composite and Functional Materials Key laboratory Of Si Chuan Province (11ZXFK08).
(In Chinese) [6] Hao Du, Rong-qiang Du: submitted to Journal of Shandong University of Science and Technology.2010, 29 (6): 50-54.
(In Chinese) [8] Shi-gao Hu: submitted to under explosive load of reinforced concrete beam dynamic response and numerical simulation Wuhan University of Science and Technology. 2013 [9] Qiang Xiang, Tong Liu: submitted to Journal of Yangtze University, 2011, 8 (7): 89-91.
Table 1 is reinforced concrete material parameters.
Acknowledgments This work was financially supported by National Defense Basic Scientific Research Program of chain (B3120110004), Open Fund of the Non-metallic Composite and Functional Materials Key laboratory Of Si Chuan Province (11ZXFK08).
(In Chinese) [6] Hao Du, Rong-qiang Du: submitted to Journal of Shandong University of Science and Technology.2010, 29 (6): 50-54.
(In Chinese) [8] Shi-gao Hu: submitted to under explosive load of reinforced concrete beam dynamic response and numerical simulation Wuhan University of Science and Technology. 2013 [9] Qiang Xiang, Tong Liu: submitted to Journal of Yangtze University, 2011, 8 (7): 89-91.
Online since: May 2011
Authors: Qing Song Liu, Jin Bao Liu, Chun Lei Zhang
Organization of the Text
Materials.
Environmental Science and Technology, Vol.25, No.4 (2002), p.39-42 (In Chinese)
Soil–water transfer mechanism for solidified dredged materials.
Journal of Geotechnical and Geoenvironmental Engineering, ASCE.
China journal of highway and transfport, Vol.6, No.2 (1993), p.68-74
Environmental Science and Technology, Vol.25, No.4 (2002), p.39-42 (In Chinese)
Soil–water transfer mechanism for solidified dredged materials.
Journal of Geotechnical and Geoenvironmental Engineering, ASCE.
China journal of highway and transfport, Vol.6, No.2 (1993), p.68-74
Online since: January 2012
Authors: Taku Sakaue, Yoshiaki Akiniwa
Measured stress corresponds to the weighted average associated with the attenuation of the X-rays in the material.
(a) 07M (b) 40M (c) 10h Material and specimens.
Copper powder was used as a reference material to calculate the lattice strain.
Cohen, Strain gradients in Al-2%Cu thin films, Journal of Applied Physics, 70 (1991) 2104-2110
Arai, Evaluation of residual stress distribution in shot-peened steel by synchrotron radiation, Journal of the Society of Materials Science, Japan, 52 (2003) 764-769
(a) 07M (b) 40M (c) 10h Material and specimens.
Copper powder was used as a reference material to calculate the lattice strain.
Cohen, Strain gradients in Al-2%Cu thin films, Journal of Applied Physics, 70 (1991) 2104-2110
Arai, Evaluation of residual stress distribution in shot-peened steel by synchrotron radiation, Journal of the Society of Materials Science, Japan, 52 (2003) 764-769
Online since: March 2013
Authors: Ze Kun Feng, Xuan Xiong, Xian Wang, Li Gong Li
In order to transact this problem, magnetic materials have play an important role.
Journal of applied physics, (1999), 85: 4574
Sandwich films: Properties of a new soft magnetic material.
Applied Physics A: Materials Science & Processing, (2009) 97: 657–661
Journal of Alloys and Compounds, (2012), 514: 170-173.
Journal of applied physics, (1999), 85: 4574
Sandwich films: Properties of a new soft magnetic material.
Applied Physics A: Materials Science & Processing, (2009) 97: 657–661
Journal of Alloys and Compounds, (2012), 514: 170-173.
Online since: February 2012
Authors: Mei Zhang, Yong Jia Liu, Jia Shuang Luan, Hong Li Cai, Feng Xia Liu
Experimental
Materials
Zein (Mw 3.5×104) was purchased from Sigma Company (New Jersey, USA) and used without further purification.
Carbon nanotube-polymer composites: Chemistry, processing, mechanical and electrical properties, Progress in Polymer Science, 2010, 35: 357-401 [2]Zhong-Fu Ren, Ji-Huan He.
Single polymeric bubble for the preparation of multiple micro/nano fibers, JOURNAL OF APPLIED POLYMER SCIENCE, 2011, 119(2): 1161-1165 [3]Chen Yao, Xinsong Li, Tangying Song, etal.
Bioartificial polymeric materials based on polysaccharides, JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2001(3)12: 267-281 [14]Zhang, Wen; Yan, Eryun; Huang, Zonghao; etal.
Preparation and study of PPV/PVA nanofibers via electrospinning PPV precursor alcohol solution, EUROPEAN POLYMER JOURNAL , 2007 (3)43:802-807 [15]Zheng-Ming Huanga, Y.Z.
Carbon nanotube-polymer composites: Chemistry, processing, mechanical and electrical properties, Progress in Polymer Science, 2010, 35: 357-401 [2]Zhong-Fu Ren, Ji-Huan He.
Single polymeric bubble for the preparation of multiple micro/nano fibers, JOURNAL OF APPLIED POLYMER SCIENCE, 2011, 119(2): 1161-1165 [3]Chen Yao, Xinsong Li, Tangying Song, etal.
Bioartificial polymeric materials based on polysaccharides, JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2001(3)12: 267-281 [14]Zhang, Wen; Yan, Eryun; Huang, Zonghao; etal.
Preparation and study of PPV/PVA nanofibers via electrospinning PPV precursor alcohol solution, EUROPEAN POLYMER JOURNAL , 2007 (3)43:802-807 [15]Zheng-Ming Huanga, Y.Z.
Online since: December 2011
Authors: Rui Wang
FEM using Lagrangian approach for rigid-plastic materials is popular in simulating metal forming processes[1-3].
The flow of material is uniform and the front edge of the material is regular, only material in boundary flows a little slowly because of effect of friction.
Materials Science and Engineering A, Vol.367 (2004), p. 329
International Journal for Numerical Methods in Engineering, Vol.51(2001).
International Journal for Numerical Methods in Engineering, Vol.62 (2005), p 475
The flow of material is uniform and the front edge of the material is regular, only material in boundary flows a little slowly because of effect of friction.
Materials Science and Engineering A, Vol.367 (2004), p. 329
International Journal for Numerical Methods in Engineering, Vol.51(2001).
International Journal for Numerical Methods in Engineering, Vol.62 (2005), p 475
Online since: February 2014
Authors: Nurul Farah, Mohammad Hafizudin, Taufik Taufik, Mohd Razali
Table 1 Composition of LM6 [9]
Element
Iron
Silicon
Copper
Nickel
Magnesium
Manganese
Aluminium
Composition (%)
0.5
0.4
0.1
0.1
4.2
0.5
Balance
Materials and Method
In this research, LM6 is used as a casting material and mixture of natural fibre with silica sand for sand mould.
Khairul Zaman, Mechanical properties of pineapple leaf fibre reinforced polypropylene composites, Materials & Design. 27 (2006) 391-304
Khairul, Biocomposites from oil palm resources, Journal of Oil Palm Research.
Drzal, The Effect of Short Fibre Content on Their Mechanical and Thermal Properties, Journal of Composites Science and Technology. 65 (2005) 647-657
Hamdan, Flexural properties of Arenga pinnata fibre reinforced epoxy composites, American Journal of Applied Sciences.
Khairul Zaman, Mechanical properties of pineapple leaf fibre reinforced polypropylene composites, Materials & Design. 27 (2006) 391-304
Khairul, Biocomposites from oil palm resources, Journal of Oil Palm Research.
Drzal, The Effect of Short Fibre Content on Their Mechanical and Thermal Properties, Journal of Composites Science and Technology. 65 (2005) 647-657
Hamdan, Flexural properties of Arenga pinnata fibre reinforced epoxy composites, American Journal of Applied Sciences.
Online since: July 2014
Authors: P. Brightson, M. Premanand, M.S. Ravikumar
Materials for the new millennium :1996, P/1677/86
Journal of Materials in Civil Engineering 1996;8 (3):128–37 [14] Haque MN, Kayyali OA, Joynes BM.
H, Utilization of floatation wastes of copper slag as a raw material in Cement production, journal of Hazardous materials, volume 159,issues 2-3,2008
[18] Washington Almeida Moura, Jardel Pereira Gonçalvemonica Batista Leite Lima, April, (2007) Copper slag waste as a supplementary cementing material to concrete, Journal of Material Science, Volume 42, Number 7
[19] Himaru Keisuke, Mizuguchi Hiroyuki, Hashimoto Chikanori, Ueda Takao, Fujita Kazuhiro, OumiMasaak, (2005) Properties of Concrete Using Copper Slag and Second Class Fly Ash as a Part of Fine Aggregate, Journal of the Society of Materials Science, Vol.54; No.8; page.828-833
Journal of Materials in Civil Engineering 1996;8 (3):128–37 [14] Haque MN, Kayyali OA, Joynes BM.
H, Utilization of floatation wastes of copper slag as a raw material in Cement production, journal of Hazardous materials, volume 159,issues 2-3,2008
[18] Washington Almeida Moura, Jardel Pereira Gonçalvemonica Batista Leite Lima, April, (2007) Copper slag waste as a supplementary cementing material to concrete, Journal of Material Science, Volume 42, Number 7
[19] Himaru Keisuke, Mizuguchi Hiroyuki, Hashimoto Chikanori, Ueda Takao, Fujita Kazuhiro, OumiMasaak, (2005) Properties of Concrete Using Copper Slag and Second Class Fly Ash as a Part of Fine Aggregate, Journal of the Society of Materials Science, Vol.54; No.8; page.828-833
Online since: May 2012
Authors: Cui Li Jin, Wei Yang Bao, Wei Jiang, Yang Liu, Kun Ming Dong, Li Miao, Xiao Jian Zhou
Materials and Methods
Chemicals. 4-t-OP was 97.0% analytical standards. 4-t-OP stock solutions of 1 mg/mL were prepared with sterile water and dissolved in acetone.
SIMM1106KF-09), Natural Science Foundation for college and university of Jiangsu Province (10KJB170013, 11KJB170011), Open Research Foundation of Key Lab of Jiangsu Province on Environmental Materials and Environmental Engineering (No.
Yu: Journal of Hazardous Materials, vol. 173, pp. 765-772, 2010
Santhosh: Biochemical Engineering Journal, vol. 44, pp. 136-141, 2009
LIU Yi: Journal of Environmental Sciences, pp. 167-171, 2008-03-10 2008 [8] N.
SIMM1106KF-09), Natural Science Foundation for college and university of Jiangsu Province (10KJB170013, 11KJB170011), Open Research Foundation of Key Lab of Jiangsu Province on Environmental Materials and Environmental Engineering (No.
Yu: Journal of Hazardous Materials, vol. 173, pp. 765-772, 2010
Santhosh: Biochemical Engineering Journal, vol. 44, pp. 136-141, 2009
LIU Yi: Journal of Environmental Sciences, pp. 167-171, 2008-03-10 2008 [8] N.
Online since: April 2014
Authors: Wen Cai Xu, Shi Yong Luo, Man Zhao
Experiment
Experimental materials All the experimental materials and reagents used in this research are prepared from commercial way.
Macromolecular Materials and Engineering, 2000, 278, 23-35
Journal of Macromolecular Science, 1968, 2(1): 115-138
Time-Temperature Superposition in Styrene/Butadiene/Styrene Block Copolymers International Journal of Polymer Materials, 1974, 3 (1): 51-79
Materials Chemistry and Physics, 2013,138: 277-285
Macromolecular Materials and Engineering, 2000, 278, 23-35
Journal of Macromolecular Science, 1968, 2(1): 115-138
Time-Temperature Superposition in Styrene/Butadiene/Styrene Block Copolymers International Journal of Polymer Materials, 1974, 3 (1): 51-79
Materials Chemistry and Physics, 2013,138: 277-285