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Online since: August 2010
Authors: Ping Bo Wu, Yao Hui Lu, Jing Zeng, Xing Wen Wu
Welding Journal, 1992, 71:55~62
Journal of Materials Processing Technology ,183 (2007) :219~225
Computational Materials Science ,43 (2008): 591~607
Computational Materials Science ,43 (2008): 353~365
Journal of Materials Processing Technology, 92-93 (1999) : 405~ 409
Online since: September 2007
Authors: Yu Zhou, De Chang Jia, Xiao Ming Duan, Dong Liang Wang
Microstructures of ZrO2(3Y) Ceramics after Dynamic Impact Xiaoming Duan1, a, Yu Zhou 1, Dechang Jia1 and Dongliang Wang1 1 School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China a duanxm@hit.edu.cn Keywords: ZrO2(3Y) ceramics; Dynamic loading; Phase transformation; Microstructure.
The microstructure of the materials was studied by X-ray diffraction and scanning electron microscopy.
From the results of scanning electron microscopy, it can be found that the microcracks formed in the materials under the dynamic loading, and there is a kind of liked-amorphous layer appeared on the fragment surface.
Introduction In recent years, many researches were focused on the Zirconia (ZrO2) ceramics as abrasion and defensive materials [1].
Grady: Mechanics of Materials Vol. 29(1998), p.181-203 [5] J.
Online since: May 2011
Authors: Xiu Qiong Guan, Jun Li, Jian Rong Liu, Chun Liu
This paper mainly focuses on the chroma of the wastewater and the reason is analyzed based on the GC-MS and other means. [3-5] Experimental Materials and Methods The Source and Characteristics of Wastewater.
Experimental Materials and Instruments.
Acknowledgements This work was financially supported by the Sichuan Science and Technology Bureau Foundation (2008JY0091) and Sichuan University of Science and Engineering Foundation (2010 XJKRL0003).
[4] Zhiquan Yang, Shaoqi Zhou, Journal of chemical industry and engineering (In Chinese).
Journal of environmental science.
Online since: August 2014
Authors: Ming Gong, Yong Kuan Gong, Xiao Qin Wang, Kai Li Sheng, Qi Wang, Zhu Feng Li
Fabrication of Cell Outer Membrane Mimetic Surfaces on Chitosan Nanoparticles by Polyionic Complex and Template Polymerization Ming Gong1, a *, Zhu-feng Li1, b, Qi Wang1, c, Kai-li Sheng1, d, Xiao-qin Wang1, e and Yong-kuan Gong2, f 1School of Chemistry and Chemical Engineering, Xi’an University of Science and Technology, China 2Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, College of Chemistry & Materials Science, Northwest University, China agongmpc@163.com, b597442349@qq.com, c2453112150@qq.com, d1628553019@qq.com, e342675922@qq.com, fgongyk@163.com * Corresponding author Keywords: Chitosan, Phosphorylcholine, Cell outer membrane mimetic, Nanoparticles.
According to the literature [4], the content of phosphorylcholine of polymer more than 25% may be an effective way to reduce protein adsorption and improve the performance of biomedical materials.
Rinaudo, Chitin and chitosan: Properties and applications, Progress in Polymer Science 31 (2006) 603-632
Wei, Synthesis of monodisperse magnetite nanoparticles via chitosan–poly(acrylic acid) template and their application in MRI, Journal of Alloys and Compounds 473 (2009) 356-362
Mattoso, Preparation of chitosan nanoparticles using methacrylic acid, Journal of Colloid and Interface Science 321 (2008) 477-483.
Online since: July 2015
Authors: Ruzinah Isha, Nurul Hariyah Abd Majid
Elsevier Science, Amsterdam.
Journal of Chemical, Biological and Physical Sciences 2013, Vol.3, No.2, 958-962
Japanese Journal of Applied Physics.
American Journal of Environmental Sciences 8 (3): 280-290, 2012
“Carbon-doped mesoporous TiO2 film and its photocatalytic activity”, Microporous and Mesoporous Materials. vol. 142, pp. 276–281, Dec 2010
Online since: January 2022
Authors: Mirzo Z. Sharipov, Dilshod E. Hayitov, Mirzohid N. Rizoqulov
Attention to these materials is expressed, on the one hand, in an increased interest in the fundamental aspects of magnetoelectric phenomena, and, on the other, in expectations of specific practical applications of magnetoelectrics in spin electronics (in particular, as the basis of magnetic memory).
However, the development of new devices and devices for spin electronics based on magnetoelectric effects is faced with a fundamental problem - the number of materials known to date that have a sufficient magnitude of magnetoelectric effects is limited.
The most studied magnetoelectric materials at present are bismuth ferrite BiFeO3 and manganite BaMnF4.
From this point of view, studies of the parameters and properties of the domain structure of garnet-ferrites are a priority for the field of modern materials science, which is engaged in the search and creation of materials for the element base of new-generation spin electronics devices, the principle of which is based on changing the domain configuration of materials under the influence of electric and magnetic fields.
Mishin, Magnetic materials.
Online since: May 2014
Authors: Dietmar Eifler, Guntram Wagner, Matthias Wolf
The reinforced materials are exceedingly different.
The mechanical properties of all three materials are shown in Table 1.
The S-Nf-curves of the investigated materials are given in Fig. 4.
Llorca, Fatigue of particle- and whisker-reinforced metal-matrix composites, Progress in Materials Science, 47(3) (2002) 283-353
Eifler, Cyclic deformation behavior of steels and light-metal alloys, Materials Science and Engineering: A, 468–470 (2007) 259-266
Online since: August 2011
Authors: Xue Mang Guo, Qian Mao, Zhao Qi Fu, Bin Chen
The coefficient is relevant to many factors, including the raw materials, mixture and strength of concrete, working atmosphere of structure such as temperature, humidity, and carbon dioxide concentration and so on.
(11) Where PCl- is the concentration of Cl- in cementitious materials, and 0.21% is the maximum value surveyed.
[3] W.L.Jin, Y.X.Zhao: Journal of Zhejiang University (Engineering Science) Vol. 36, 4 (2002), p. 371-380,403.
Concrete structure, properties and materials (Prentice Hall, New Jersey: Englewood Cliffs 1993)
Wu: Journal of Hohai University(Natural Sciences) Vol. 36, 5 (2008), p. 646-649.
Online since: October 2023
Authors: Oleksii Basmanov, Serhii Hovalenkov, Alexander Savchenko
So for smooth non-impregnable materials only ~ 0.1 kg/m2 of water is retained [19].
Materials.
Journal of Hazardous Materials. 133 (2006) 1–7
Journal of Achievements in Materials and Manufacturing Engineering. 91 (2018) 27–33
Open Journal of Safety Science and Technology. 5 (2015) 21-26
Online since: June 2018
Authors: Rostislav Drochytka, Bozena Dohnalkova
Materials and Compositions Neutralization sludge.
Factors affecting hazardous S/S: A review, Journal of Hazardous Materials B137 (2006) 267–276
I., Immobilization of low and intermediate level of organic radioactive wastes in cement matrices.(2011) Journal of Hazardous Materials, 190 (1-3), pp. 969-979
[8] PLECAS, I.B., DIMOVIC, S., Immobilization of industrial waste in cement-bentonite clay matrix.(2004) Bulletin of Materials Science, 27 (2), pp. 175-178
Journal of Hazardous Materials,2009, 161 (1)