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Online since: August 2019
Authors: Tatjana E. Slizneva, Alla G. Sokolova, Marina A. Akulova, Pavel Razgovorov
Materials and Methods One cycle of mechanic magnetic activation of mixing water consists of two recurrent stages: 1. treatment in cavitation apparatus of rotary type; 2. passing through magnetic field created by permanent magnet with coercive force 140 kA/m.
Ortiz-Lozano, Effects of Static Magnetic Fields on the Physical, Mechanical, and Microstructural Properties of Cement Pastes, Advances in Materials Science and Engineering, 2015 (2015) 1-9
Potnis, Experimental Investigation of Properties of Concrete Cast in Magnetised Water, IJSTE - International Journal of Science Technology and Engineering, 3 (2017)
Pohar, The magnetic field influence on the polymorph composition of CaCO3 precipitation from carbonized aqueous solutions, Journal of Colloid and Interface Science, 281 (2005) 377−388
International scientific-research journal, 50 (2016) 86-89
Online since: September 2013
Authors: Yan Wang, Yao Wang, Sheng Xing Wu, Zheng Zheng Xu
Materials Journal, 2009, 106(6): 509-514
Construction and Building Materials, 2011, 25(7): 4126-4131
Journal of Materials in Civil Engineering, 2003, 15(3): 208-286
Construction and Building Materials, 2010, 24(6): 2353-2357
Construction and Building Materials, 2010, 24(10): 1830-1842
Online since: July 2011
Authors: Xiao Wu Yang, Yi Ding Shen, Pei Zhi Li, Gang Hui Li
PUs are utilized in a variety of industrial parts, building materials, sports goods, medical equipments, adhesives and coatings [3-5].
Experimental Materials The poly (tetra ethylene) glycols (PTMG) () were characterized by gel permeation chromatography (GPC) and hydroxyl group number determination.
A visual scale was used to compare test liquids and materials: 10 (no effect), 8 (light haze), 6 (softening), 4 (cracks), 2 (heavily damaged), 0 (film completely solubilized).
Acid, base, and water do not any damage to fluorinated materials, which shows a fairly good resistance to these chemicals.
In addition, the superior performance of fluorinated materials is evident when the resistance to other solvents was measured.
Online since: October 2010
Authors: Xin Xin Ma, Guang Ze Tang, Yu Jiang Wang, Guang Wei Guo, Li Qin Wang
Schratzenstaller et al: European Heart Journal Vol. 26(15) (2005): p 1475-1481 [6] J.
Schratzenstaller et al: European Heart Journal Vol. 26(15) (2005): p 1475-1481 [7] A.
Tang: International Journal of Morden Physics B Vol. 23(6-7) (2009): p 1047-1052 [10] X.X.
Tang and Qingfu Chen: Applied Surface Science Vol. 255 (2008): p 371-374 [11] L.
Jaffrezic: Materials Science and Engineering C Vol. 21 (2002): p 157-165
Online since: November 2013
Authors: Gică Narcis Băsescu, Ionuț Vasile Crîșmaru, Constantin Paulin, Eduard Sebastian Bârcă, Corneliu Munteanu, Sorin Iacob Strugaru
The model includes the geometry of the cam and cam follower and their assembly with coatings and the definition of the materials properties.
The material properties used are those of 18MnCr11 for the base material and 40Cr130 for the coating.
For the base material from the cam, we defined the properties of the 18MnCr11 material and for the metallic layer the properties of 40Cr130.
City: Heverlee, Belgium, Journal of Sound and Vibration 283 (2005) 21–46. 2.
Batchelor (1993), E n g i n e e r i n g T r i b o l o g y, Elsevier Science Publisher, Amsterdam, ISBN 0-444-892354 4.
Online since: July 2016
Authors: Linas SVILAINIS
Ragulskis, Development of smart piezoceramic transducers for detection of solidification in composite materials, Proc.
SPIE 5384, Smart Structures and Materials 2004: 71 (2004) 71-79
Gómez Álvarez-Arenas, Air-coupled ultrasonic spectroscopy for the study of membrane filtres, Journal of Membrane Science 213 (2003) 195–207
Lionetto, A.Maffezzoli, Monitoring the Cure State of Thermosetting Resins by Ultrasound, Materials 6 (2013) 3783-3804
[28] A.Rodriguez, et al., Split Spectrum Processing Applications for New Composite Materials Imaging, In Proc.
Online since: February 2013
Authors: Tai Long Gui, Si Da Jiang, Chun Cheng Ban, Jia Qing Liu
Preparation and Character Measurements of AlN films for RF Magnetron Sputtering Gui Tailonga,Jiang Sidab,Ban Chunchengc,and Liu Jiaqingd College of Applied Sciences, Harbin University of Science and Technology, Harbin 15008,China aguitl1952@yahoo.com.cn b672555800@qq.com cbanchuncheng@126.com dliujiaqing686@163.com Keywords: RF Magnetron Sputtering,A1N Thin Films,Rapid Thermal Annealing(RTA),the Surface,Refractive Index Abstract.
Sputtering target material is zirconium dioxide target material (a diameter of 100 mm, thickness of 8 mm and the purity was 99.99%).
Generally, the material there are obvious differences in the refractive index of the material in the thin-film state, which is mainly dependent on the preparation method and the preparation process.
Acknowledgement This works supported by the project of Heilongjiang provincial Education office Science and Technology (No:11511091).
[5] Jian.L.F, Shen W.Z: Temperature dependence of the optical properties in hexagonal A1N [J].Journal of Applied Physics2003,94(9):5704—5709.
Online since: September 2011
Authors: Ran Wang, Yi Jin Bai, Xiao Chun Wang, Yan Qiu Wang
Characterization of Cotton Fabric Treated with a Si/P Flame Retardant Ran Wang1,2,a, Yijin Bai1,b, Xiaochun Wang1,2,c, Yanqiu Wang3,d 1School of Material Science and Engineering, Beijing Institute of Fashion Technology, Beijing 100029, China 2Beijing Key Laboratory of Clothing Materials R&D and Assessment, Beijing 100029, China 3School of Science, Hebei University of Science & Technology, Shijiazhuang 050018, China aclywr@bift.edu.cn, bbyj512@163.com, cclywxch@bift.edu.cn, dwangyanqiu288@163.com Keywords: flame retardant agent, cotton fabric, SEM/EDS, FT-IR.
Experimental Materials.
Levchik: Journal of Fire Sciences Vol. 26 (2008), p. 243 [2] A.
Culha: Journal of Applied Polymer Science Vol. 105 (2007), p. 3747 [4] S.
Asano: Fire and materials Vol. 24 (2000), p. 277
Online since: February 2012
Authors: Hussein M. Etmimi, Ronald D. Sanderson
Journal of Polymer Science Part A: Polymer Chemistry 2010, 48 (2), 425-433
Journal of Polymer Science Part A: Polymer Chemistry 2010, 48 (3), 692-698
Journal of the American Chemical Society 1958, 80, 1339
Journal of Materials Science 1987, 22 (12), 4190-4198
Progress in Polymer Science 2007, 32 (3), 283-351
Online since: June 2007
Authors: Wing Bun Lee, Sandy To, Yi Ping Chen
In seeking a constitutive model with the merit of both phenomenological model's high computing efficiency and crystal plasticity model's being able describing microstructure of materials, the texture-adjusted strain-rate potential was proposed by Arminjon et al.[3] and latter implemented into Abaqus by Bacroix et al.[4] and Zhou et al.[2].
The exponent, 1/m, characterizes the material rate-sensitivity.
,Finite element simulations of earing in polycrystalline materials using a texture-adjusted strain-rate potential,Modelling and Simulation in Materials Science and Engineering,Vol.3,1995,1-21
[5] Van Houtte, P., Fast calculation of average Taylor factors and Mandel spins for all possible strain modes, International Journal of Plasticity, Vol.17, 2001,807-818
J., Texture Analysis in Materials Science, Butterworths, London,1982
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