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Online since: July 2015
Authors: Maizatulnisa Othman, Ibrahim Nor Azowa, Khalisanni Khalid, Souad A. Mohamad, Mohd Yusoff Hashim
According to Fowler et. al. [4], composite material can be defined as biocomposite when at least one of the components is derived from natural resources.
El-kader: vol. 6, no. 13, p. 454–462, 2012
El-kader: vol. 6, no. 13, p. 454–462, 2012
Online since: July 2012
Authors: Yuan Sheng Yang, Xiu Chun Wang, Li Kun Jiang, Jing Zhang, Jie Ma, Shuo Liu, Xi Bin Yi
Microstructure and Corrosion Resistance of Microarc Oxidation Coatings on AZ31 Magnesium Alloy Extrusion Profiles
Jie Ma1, a, Yuansheng Yang2, b, Xiuchun Wang1, c, Jing Zhang1, d, Shuo Liu1, e Likun Jiang1, f and Xibin Yi1, g
1Institute of New Materials, Shandong Academy of Sciences, Jinan 250014, China
2Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China
amajie8107@163.com, bysyang@imr.ac.cn, cwangxch@keylab.net, djingjing8207@sohu.com, el.spoon@yahoo.com.cn, fjianglikun919@163.com, gyixb@keylab.net
Keywords: magnesium alloy, microarc oxidation, microstructure, corrosion resistance, polarization curve
Abstract.
The chemical composition of AZ31 magnesium alloy is as follows (in wt. %): Al 3.0, Mn 0.15, Zn 0.47, Ca 0.04, Si 0.1, Cu 0.05, Ni 0.005, Fe 0.005 and Mg balance.
The chemical composition of AZ31 magnesium alloy is as follows (in wt. %): Al 3.0, Mn 0.15, Zn 0.47, Ca 0.04, Si 0.1, Cu 0.05, Ni 0.005, Fe 0.005 and Mg balance.
Online since: September 2014
Authors: P.T.A. Santos, P.T.A. Santos, Joelda Dantas, P.M.A.G. Araújo, A.C.F.M. Costa
As Liu et al., 2012 [15], investigated the effects of the silica content of the grain size, specific surface area and adsorption performance and bovine serum albumin on the Ni0.5Zn0.5Fe2O4/SiO2 nanocomposite and observed by means of XRD patterns that with increasing silica content (from 0 to 0.20 wt), because of the non-crystalline silica peaks become less intense and larger, which resulted in a lower crystallinity and crystallite size smaller.
El-sayed: Ceram.
El-sayed: Ceram.
Online since: January 2012
Authors: Xian Rong Sun, Zhan Li Chen, Xiao Hua Huang, Zhen Zhong Liu
In a hydrolysis and acidification tank, COD were removed by sedimentation, bio-adsorption, biological flocculation, et al. and those COD were mainly not dissolved.
El-Kalliny, “Fenton-biological treatment processes for the removal of some pharmaceuticals from industrial wastewater,” Journal of Hazardous Materials.
El-Kalliny, “Fenton-biological treatment processes for the removal of some pharmaceuticals from industrial wastewater,” Journal of Hazardous Materials.