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Online since: February 2011
Authors: Rui Ying Zhang, Zhi Ming Shi, Xiu Mei Zhang
Effect of rare earth La modification on microstructure and properties of ZL101 alloy ZHANG Xiu-mei*,2,a, SHI Zhi-ming1,2,b,ZHANG Rui-ying1,2,c 1College of Science and Engineering, Inner Mongolia University of Technology, Hohhot 010051 PR China 2Key laboratory of light metal materials, Inner Mongolia, Hohhot 010051 PR China azhxmbb@sina.com, bshizm@imut.edu.cn, czhang_ruiying@126.com *Footnotes: Zhang Xiumei, zhxmbb@sina.com, 15149009393 Keywords: ZL101; rare earth; modification; microstructure; mechanical property Abstract: In this paper, rare earth La modifying ZL101 alloy was studied by using of optical microscope, scanning electron microscopy, universal materials tester and small-load Brinell hardness.
Materials and Method Specimen preparation.
[6] G.Fan,G.Cheng: Journal of Kunming University of Science and Technology Vol.27 (2002), p. 13-15
[8]G.S.Fu,F.S.Sun,L.Y.Ren: Journal of Rare Earths Vol.19 (2001), p. 133-137
[9] R.Z.Hong,Y.J.Zhou,W,B.Yao: Journal of Materials Engineering.
Online since: October 2014
Authors: Wojciech Borek, Tomasz Tański, Krzysztof Labisz, Stanislav Rusz, Mariusz Krupiński, Małgorzata Czaja
Wu, Influence of hot rolling conditions on the mechanical properties of hot rolled TRIP steel, Journal of Wuhan University of Technology - Materials Science Edition 23 (2008) 74-79
Borek, Hot-rolling of advanced high-manganese C-Mn-Si-Al steels, Materials Science Forum 706/709 (2012) 2053-2058
Borek, Hot-Working Behaviour of Advanced High-Manganese C-Mn-Si-Al Steels, Materials Science Forum 654-656 (2010) 266-269
Byczynski, Methodology for automatic control of automotive Al-Si cast components, Materials Science Forum 539-543 (2007) 339-344
Dobrzanski, Computer aided method for evaluation of failure class of materials working in creep conditions, Journal Of Materials Processing Technology 157 (2004) 102-106
Online since: November 2025
Authors: Olga Skorodumova, Anton Chernukha, Viktoria Kochubei, Vladimir Andronov, Nataliia Lysak
Liu, Combustion characteristics and fire hazard of polystyrene exterior wall thermal insulation materials, Journal of Applied Polymer Science, 140(8) (2022) e53503
Huliieva, Prediction of the structural properties of powder materials by 3D modeling methods, Materials Science Forum 1068 (2022) 231–238
Mathematical modeling of fire-proof efficiency of coatings based on silicate composition, Materials Science Forum, 1006 MSF, 70–75
Ruban, Investigation of the properties of powder materials using computer modeling, Materials Science Forum 1038 (2021) 33–39
Emen, Formation of fire retardant properties in elastic silica coatings for textile materials, Materials Science Forum, 1006 (2020) 25-31
Online since: August 2013
Authors: Wan Li Bi, En Yu Sun
Summary of Application of Intelligent Materials in Building Enyu Sun 1,a Wanli Bi1,b 1 University of Science and Technology Liaoning, Anshan Liaoning 114051, China a sunenyu@126.com b asbwl@126.com Keywords: Intelligent materia,Self-sensing,Self-repairing,Self-control.
Basic composition of intelligent materials Intelligent materials in general by the matrix materials, sensitive materials, driving material and information processor is composed of 4 parts: base material.
Common sensitive materials such as shape memory materials, piezoelectric materials, optical fiber materials, magnetostrictive materials, electrochromic materials, electrorheological fluids, magnetorheological fluids and liquid crystal materials; driving material.
Common drive material with shape memory materials, electrorheological fluid and magnetostrictive materials, these materials are not only driving material is sensitive material; the information processor.
Ancevic: Intelligent building system for airport, ASHRAE Journal.Vol.62 (1997), P. 31
Online since: May 2013
Authors: De Ying Luo, Jia Xiu Man, Jun Jie Li, Zheng Hong Lu, Zhu Liu, Lei Ming Yu
The Carrier Mobility Obtained by Admittance Spectroscopy Using An Equivalent Circuit Lei-Ming Yu1, De-Ying Luo1, Jun-Jie Li1, Jia-Xiu Man1, Zheng-Hong Lu1,2, and Zhu Liu1,a 1 School of physics science and technology of Yunnan University, Kunming City, Yunnan Province, China 650091 2 Department of Materials Science and Engineering, University of Toronto, 184 College St., Toronto, Ontario M5S 3E4, Canada.
TOF has been widely used to extract the carrier mobility of organic materials.
Hence, the TOF method has limited the application in new materials with small quantities [7].
So, Journal of Applied Physics, Vol.106(2009).
Greiner, M.G.H., Wing-Man Tang, Zhi-BinWang, Jacky Qiuand Zheng-Hong Lu, Natrue materials, Vol.11(2012),P. 76
Online since: October 2015
Authors: Xin Qiu, Xiao Hua Luo, Qing Yang, Shang Lin Xiao
Introduction The modulus of asphalt wearing materials is a key parameter utilized to perform the structural bearing capacity and the thickness overlay design of asphalt pavements.
Acknowledgement The authors appreciate the following funding supports including the Natural Science Foundation of Zhejiang (Q14E080021), the Natural Science Foundation of China (51408550), the Science Technology Department of Zhejiang (2013C33023) and the Experiment Technology Development Project of ZJNU (SJ201518).
Chatti: Journal of the Transportation Research Board, Vol.1764(2001), pp.97-111
[3] AASHTO's Standard Specifications for Transportation Materials and Methods of Sampling and Testing (22nd edition)( AASHTO Publications Department, USA)
Hi and Y.C Lee: Journal of the Transportation Research Board.
Online since: October 2010
Authors: Raffaele Cioffi, Salvatore Andini, Francesco Colangelo, Claudio Ferone, Fabio Montagnaro, Luciano Santoro
Geopolymeric materials are attractive because excellent mechanical properties and durability can be achieved [6].
Great interest also derives from the reduced energy requirement for the manufacture of new materials based on geopolymers.
The applications of geopolymer-based materials range within the fields of new ceramics, cements, matrices for hazardous waste stabilization, fire-resistant materials, asbestos-free materials and high-tech materials [1,9,10].
MATERIALS AND METHODS The three MSWI ash samples come from plants located in southern, central and northern Italy.
Gordon: Ceramic Engineering and Science Proceedings Vol. 25 (2004), p. 57
Online since: August 2016
Authors: Hai Feng Chen, Jia Mei Chen, Zhi Xue Pan
In this work, novel Cu/BiVO4 photocatalyst were prepared by a low-temperature solid state grinding method using Bi(NO3)3•5H2O, NH4VO3 and Cu(NO3)2•2H2O as raw materials.
High performance sulfur, nitrogen and carbon doped mesoporous anatase-brookite TiO2 photocatalyst for the removal of microcystin-LR under visible light irradiation, Journal of Hazardous Materials, 280C(2014) 723-733
Ball milled h-BN: an efficient holes transfer promoter to enhance the photocatalytic performance of TiO2, Journal of Hazardous Materials, 244-245(2013) 102–110
[11] Zhu G, Que W, Hydrothermal synthesis and characterization of visible-light-driven dumbbell-like BiVO4 and Ag/BiVO4 photocatalysts, Journal of Cluster Science, 24(2013) 531-547 [12] Hui X, Li H, Wu C, et al.
Preparation, characterization and photocatalytic properties of Cu-loaded BiVO4, Journal of Hazardous Materials, 153(2008) 877-884
Online since: May 2011
Authors: Hui Ren Hu, Zhao Yang Yuan, Yang Bing Wen
The based CPAM was synthesized with acrylamide(AM) and diallyl dimethyl ammonium chloride(DADMAC) as raw materials by living free radical solution polymerization.
Materials and Methods Materials.
The main materials were AM, DADMAC, and glyoxal: industrial products.
When the raw materials are added all at once, the reaction may self-accelerate and the heat release will be very strong, which may lead to the reaction out of control[8].
Charles Qixiang Yang: Journal of Applied Polymer Science, Vol. 83(2002), p. 2539-2547 [10] Brauner N., Shacham M.: Chem Eng Process Vol. 36(1997), p. 243
Online since: July 2012
Authors: Yu Qin Yan, Lv Zhou Ma, Xun Lin Diao, Jian Liu
China 2School of Science, Shandong Jianzhu University, Jinan 250101, P.R.
Adopting linear constitutive relation for hyper-elastic materials, the formulation and the solution procedure by Newton-Raphson iteration method are very simple.
Adopting linear constitutive relation for hyper-elastic materials and Newton-Raphson iteration method, the solution procedure is very simple.
Lanzhou railway institute journal(JCR Science Edition).19(2000),p.59-62.
Chinese Journal of Computational Mechanics.19(2002),p.109-111.
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