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Online since: December 2012
Authors: Ondřej Němček, Stanislav Honus, Veronika Sassmanová, Dagmar Juchelková, Jaroslav Frantík
Materials having high water content should be thus dried.
The analyses of these materials are presented in Table 1 (the VŠB laboratories, see [15]).
In the case of other materials, they are not in operations at all.
Mistral, Emissions from the combustion of gas-phase products at tyre pyrolysis, Journal of Analytical and Applied Pyrolysis. 79 (1-2 SPEC.
Nova Science Pub Inc, 329 p.
Online since: August 2013
Authors: Li Guang Xiao, Gang Liu, Yuan Li
The influence of polymer and organic fiber on the strength of light aggregate concrete Liguang XIAO 1, a, Gang LIU1,b, Yuan LI2,C 1School of Materials Science and Engineering, Jilin Institute of Architecture and Civil Engineering, Changchun,130118,China 2China Water Northeastern Investigation, Desiign and Research Co.
Introduction Light aggregate concrete is widely used in high-rise building, frame structure, building energy saving wall and has the following advantages, for example lightweight, high strength, heat preservation, thermal insulation, refractory, antifreeze, anti-seismic and so on[1,2], the consumption of light aggregate concrete is second only to common concrete, and it is a kind of promising new building materials.
Experiment Procedure The Main Raw Materials. (1) Cement: ordinary portland cement 42.5.(2) Fly ash: the chemical components of fly ash is as follows: SiO2: 59.93%; Al2O3+TiO2: 20.16%; Fe2O3: 4.24%; CaO: 0.92%; MgO: 1.45%; ignition loss: 7.98%.(3) Ceramsite: this experiment using expansion shale ceramsite, apparent density 475 Kg/m3, cylinder pressure strength 5.1 MPa, water absorption 10%.(4) EPS particles: using waste polystyrene foam plastic, breaking into the EPS particles apparent density is 15 Kg/m3.(5) Polymer latex: a self-made modified ethylene/vinyl acetate resin and polyvinyl formaldehyde copolymerization emulsion, solid content is 15.8%.(6) Organic fiber: the polypropylene film crack short fiber, the main properties are shown in table 1.
References [1] Liguang Xiao: Journal of Jilin Institute of Architecture and Civil Engineering Vol .29(2012), p.1 [2] Lijiu Wang, Shuzhong Zhang: Cement and Concrete Research Vol .35(2005), p. 931 [3] Liguang Xiao: Journal of concrete Vol..4(2003), p.60 [4] Liguang Xiao: Journal of Wuhan University of Technology-Mater, Sci.
Online since: July 2014
Authors: Guang Li, Hang Wei
Preparation and Characterization of Proton Exchange Membrane Based on Sulfonated Poly (arylene ether sulfone)/Polyacrylonitrile (SPAES/PAN) Hang Wei1, a, Guang Li2, b 1State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Shanghai, China 2College of Material Science and Engineering, Donghua University, Shanghai, China aweihang0253@163.com, blig@dhu.edu.cn Keywords: SPAES/PAN blend membranes, Dimensional stability, Oxidative stability, Proton conductivity.
Experimental Materials.
Sanui: Progress in Polymer Science.25 (2000), p.1463 [2] Michael A.
Stimming:Fuel Cells.1 (2001), p.5 [4] Jinwen Wang , Zhongren Yue and James Economy: Journal of Membrane Science.291 (2007), p.210 [5] Xinhui Zhanga, SiokWei Tay, Zhaolin Liu and Liang Hong: Journal of Membrane Science.329 (2009), p.228 [6] Hefei Cai, Juan Xie and Guang Li:Advanced Materials Research Vols. 332-334 (2011), p.581 [7] Hefei Cai, Juan Xie, Guang Li and Jinli Qiao:Journal of Fiber Bioengineering & Informatics.5:4 (2012), p.389
Online since: October 2012
Authors: Mohamad Rusop Mahmood, N.D.M. Sin, Mohamad Hafiz Mamat, Mohamed Zahidi Musa, S. Ahmad, A. Abdul Aziz
Acknowledgement The author would like to express her thanks to Institute of Science and Faculty of Mechanical UiTM for providing the laboratory facilities.
Rusop, influence of doping concentrations on the aluminium doped zinc oxide thin films properties for ultraviolet photoconductive sensor application, Optical Materials 32 (2010) 696-699 [4] N.
Rusop , “The Electrical Characteristics of Aluminium Doped Zinc Oxide Thin Film for Humidity Sensor Applications“ Journal Advanced Materials Research Vol. 364 (2012) pp 119-123 [5] N.
Rusop, Effect of R.F Power to the Properties of ZnO Thin Films Deposited by Magnetron Sputtering, Advanced Materials Research Vol. 364 (2012) pp 119-123
[11] Wang Guanghua, Kong Jincheng, Li Xiongjun, Qiu Feng, Li Cong, Yang Lili, Kong Lingde, and Ji Rongbin, in : Journal of Semiconductors Vol. 31, No. 5 (2010)
Online since: September 2022
Authors: Juan Carlos Suárez, Patrick Roger Townsend Valencia, Alvaro Rodríguez-Ortìz
Vessels built with composite materials (with different combinations of reinforcing fibers and polymeric matrix) are more and more numerous, due to the good mechanical properties of these materials.
A boat made of composite materials will weigh less than a boat made of steel or aluminum.
International Journal of Solids and Structures.
Applied Science and Manufacturing, Vol 36, section 5, pp. 658–664. (2005) [4] Belingardini, G., Bador, V., Low velocity impact tests of laminate glass-fiber-epoxy matrix composite material plates International Journal of Impact Engineering, Vol 27, section 2, pp. 213-219. (2002) [5] Blake, J., Shenoi, R., Strength modelling in stiffened FRP structures with viscoelastic inserts for ocean structures.
Science Direct, Procedia Engineering, Vol 167, pp. 252 – 26. (2016) [7] Townsend, P.
Online since: May 2012
Authors: Yun Zhang, Bei Li, Xiao Rong Zhou
After 30 to 40 years operation, some diseases and damage have come into the double-curved arch bridges which were built with finite construction level and finite materials, and most need to be repaired.
If the new section material is different from the old, transform the new into the old section materials based on equal effective conversion principle.
Building Science Research of Sichuan (In Chinese).
Journal of China & Foreign Highway(In Chinese).
Journal of China & Foreign Highway (In Chinese).
Online since: February 2014
Authors: He Li, Zhen Zhang, Jian Wen Guo, Wu Yi Ming
Acknowledgements This research was financially supported by the National Natural Science Foundation of China (51175207), National Key Technology R&D Program (2012BAF13B07) and Science and Technology Planning Project of Guangdong Province (2012B011300015).
Kunieda: JSME International Journal Series C Vol. 49-2 (2006), p. 600-605 [4] K.
Stavropoulos, et al.: The International Journal of Advanced Manufacturing Technology Vol. 40-3 (2009), p. 316-323 [5] D.
Zhigilei, et al.: Computational materials science Vol. 24-4 (2002), p. 421-429 [8] H.
Johnson, et al.: Progress in materials science Vol. 46-3 (2001), p. 329-377
Online since: November 2017
Authors: Kateřina Opatová, Dagmar Bublíková, Bohuslav Mašek, Štěpán Jeníček
The resulting microstructure depends on material’s heat treatment and alloying.
For this reason, it is beneficial to use material-technological modelling in a thermomechanical simulator (Fig. 2).
Fucheng: Inconsistent effects of mechanical stability of retained austenite on ductility and toughness of transformation-induced plasticity steels, Materials Science & Engineering A, 2013, vol. 578, pp. 370–376
Jirková, et al.: Influence of metastable retained austenite on macro and micromechanical properties of steel processed by the Q-P process, Journal of Alloys and Compounds, available online, Journal of Alloys and Compounds, 615 (2014) pp.163–S168
Materials Science Forum, 2010, vol. 654-656, pp. 94-97
Online since: May 2020
Authors: Ingrid Kovaříková, Beáta Šimeková, Erika Hodúlová, Martin Sahul, Jozef Bárta, Pavel Kovačócy
Welding of materials that have a large amount of residual cold work can result in cracking in the weld metal (WM) and/or HAZ.
In Comprehensive Materials Processing; Elsevier Ltd., 2014; Vol. 6, pp 151–179
Sarin Sundar: Microstructure and tensile properties of Inconel 718 pulsed Nd-YAG laser welds, Journal of Materials Processing Technology 167 (2005) 73–82 [5] J.K.
Kang: Microstructures and mechanical properties of Inconel 718 welds by CO2 laser welding, Journal of materials processing technology 201 (2008) 515–520 [6] W.
Li: Liquation cracking in fiber laser welded joints of inconel 617, Journal of Materials Processing Technology 226 (2015) 214–220 [7] S.
Online since: April 2014
Authors: Qian Wei Xu, Xian Kun Meng
Journal of materials science, 2004, 39(12): 4049-4051
Polymer Materials Science and Engineering, 2009, 25: 137-140
Journal of applied polymer science, 1996, 62(10): 1699-1708
Applied Mechanics and Materials, 2013, 295: 1806-1809
Journal of Applied Polymer Science, 2007, 106(4): 2703-2709