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Online since: January 2005
Authors: Hua Yu, Zhen Xia Liu, Ying Qian Xiong, Yoshiki Saito, Kunshan Wang
Journal Citation (to be inserted by the publisher) Copyright by Trans Tech Publications Sedimentary Facies and Material Source of Core DGKS9617 in the East China Sea Hua Yu 1,2 , Zhenxia Liu 2, Yingqian Xiong 1,2, Yoshiki Saito 3 and Kunshan Wang 2 1 Ocean University of China, Qingdao, P.
Al is a relatively stable element during the sediment transport from land to ocean and is enriched with fine materials.
Journal of Oceanography in the Taiwan Strait (2002), 21(8): pp. 351-359.
Journal of Oceanography of the Huanghai and Bohai Seas (2002), 20(1): pp. 1-10
Marine Sciences (2001), 25 (2): pp. 24-25
Online since: April 2021
Authors: Yuri M. Kosichenko, Sergey Mikhailovich Vasilyev, Oleg A. Baev
Introduction Drainage materials made of geosynthetic or geocomposite materials are increasingly used In hydrotechnical and civil engineering for drainage in earth dams, dykes, as well as in the basements of buildings and underground parking lots [1–5].
In this regard, it is necessary to create new drainage materials made of geocomposites with high reliability and water permeability.
Nowadays bentonite coverings [10] have been widely used, and earlier polymeric materials have found application for channel lining.
The bearing element of the «GP» geocomposite drainage material is a geogrid, which is made of propylene fibers of primary raw materials by extrusion method.
Dubrovskaia, Geosynthetic materials in hydrotechnical construction // Hydraulic engineering construction. 2014.
Online since: March 2014
Authors: Jian Feng Li, Xiu Jie Jia, Fang Yi Li
Above given packaging materials are not ideal green packaging materials, a more environmentally friendly, good cushioning performance packaging materials would be in further search.
Materials Review, 2009, (S1): 418-419
Journal of Polymers and the Environment, 2005, 13(2): 185- 191
Journal of Polymers and the Environment, 2007, 15(4): 251- 257
Journal of Food Science, 1990, 55: 746-754
Online since: December 2024
Authors: Ihor Neklonskyi, Oleksandr Kovalov, Vitalii Sobyna, Dmytro Taraduda
Progress in Energy and Combustion Science. 3 (2010) 327–363
Journal of Achievements in Materials and Manufacturing Engineering. 91 1 (2018) 27–33
Earth-Science Reviews. 141 (2015) 105–121
Degrees Materials. 12 (2019) 3578
Journal of Materials Research and Technology. 12 (2021) 343–364
Online since: May 2020
Authors: V.Z. Abdrakhimov, E. S. Abdrakhimova, A.K. Kairakbaev
This paper covers the production of ceramic materials from the tailings of ferrous and nonferrous metallurgy without using convention natural materials.
The goal hereof is to produce ceramic materials from the tailings of ferrous and nonferrous metallurgy without using convention natural materials.
Raw Materials For the clayey component of ceramic materials, this research uses the clayey portion of the zircon-ilmenite gravity tailings (ZIG).
Dan-asabe, et al., Statistical modeling and optimization of the flexural strength, water absorption and density of a doum palm-Kankara clay filler hybrid composite, Journal of King Saud University-Engineering Sciences, 2017
Turki, et al., Multidiscipline Modeling in Materials and Structures, Materials and Structures. 13.2 (2017) 284-296
Online since: August 2011
Authors: Xiao Xu Xu, Yong Peng Yu, Li Qun Yang
Journal of Applied Polymer Science, 2002, 86(9): 2342-2347
Journal of Applied Polymer Science, 2002, 84(11): 1963-1970
Journal of Applied Polymer Science, 1999, 71(10): 1563-1571
Journal of Applied Polymer Science, 1999, 74(11): 2571-2575
[37] Guilong Feng, Song Wang, Hesun Zhu.Journal of Functional Materials, 2003, 34(6):716-718.
Online since: August 2013
Authors: Hao Li, Wei Fang Dong, Li Hua Zang
Materials and methods Materials Methyl orange (MO) and Methylene blue (MB) were purchased from Tianjin Damao Chemical Reagent Factory and Shanghai Zhanyun Chemical Co.
Journal of Molecular Liquids 177 (2013) 325-334 [2].
Applied Clay Science 70 (2012) 84-90 [3].V.
Journal of Colloid and Interface Science 371 (2012) 101-106 [5] K.
Chemical Engineering Journal 209 (2012) 589-596 [9] W.
Online since: June 2012
Authors: Vladimir P. Menushenkov, Yurii D. Yagodkin, Alexander G. Savchenko
Usually, the materials, whose grain sizes are less than the critical size for the single-domain state (Dc), are classified as the nanocrystalline materials.
The goal of the present work is the analysis of the structure and properties of nanocrystalline materials based on strontium-ferrite and magnetite.
The quantitative relation of phases and properties of oxide materials depend first of all on the composition of milled mixture (Fig. 5).
Hard magnetic nanocrystalline alloys of Fe-O system, Journal of Material Science, 29 (2004), 5255-5358
Gonchar, Technology of ferrite materials for magnetoelectronics, MISiS, Moscow, 2005
Online since: August 2013
Authors: Dong Mei Zhao, Jing Long Bu, Rong Lin Wang, Li Ren Wang, Yi Cui
Research on Appropriate Additives of Recycling Ladle Lining Materials for Al2O3-SiC-C Iron Runner Castable Liren Wanga, Ronglin Wangb,*, Dongmei Zhaoc, Yi Cuid and Jinglong Bue Hebei Provincial Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei United University, Tangshan 063009, Hebei, China anaihuowangliren@163.com, bwrl@heuu.edu.cn, cbjl1957@126.com, d627445252@qq.com, ebjl@heuu.edu.cn Keywords: ladle lining; recycling materials; castable for iron runner; Si3N4; B4C Abstract.
Then the recycled raw materials were broken into granules in size of 5-3 mm and 3-0 mm.
The proportion of excipient was 27%, which composed of SiC, CA75-cement, C and etc. other materials.
Xue, Refractory Materials (Chinese) Vol. 41 (2007), p. 460
[5] TATEDA Masafumi, FUJITA Masanori: Journal of Environmental Sciences Vol. 19 (2007), p.1146
Online since: August 2018
Authors: Alberto Milazzo, Ivano Benedetti, Vincenzo Gulizzi
Mechanics of Materials, 35(3-6), 333-364, 2003 [6] Simonovski I, Cizelj L.
Computational Materials Science, 67, 249-260, 2013 [15] Benedetti I, Gulizzi V, Mallardo V.
Mechanics of Materials, 117, 137-151, 2018 [20] Sfantos GK, Aliabadi MH.
Multiscale modeling of polycrystalline materials: A boundary element approach to material degradation and fracture.
In Smart Structures and Materials 2000: Active Materials: Behavior and Mechanics, Vol. 3992, 279-288, International Society for Optics and Photonics, 2000 [23] Olson T, Avellaneda M.
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