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Online since: March 2014
Authors: Hai Fa Zhang, Qing Lin Xia, Guang Hua Guo, Cun Jun Dong, Zheng Qiang Zhang
Chen, Structure and multiferroic properties of barium hexaferrite ceramics, Journal of Magnetism and Magnetic Materials. 327 (2013) 87-90
Yue, High-frequency magnetic properties of low-temperature sintered Co-Ti substituted barium ferrites, Materials Science and Engineering : B. 99 (2003) 270-273
Progress in Materials Science. 57 (2012)1191-1334
Pollert, Journal of Magnetism and Magnetic Materials. 140-144 (1995) 2103
Gregori, Journal of Magnetism and Magnetic Materials. 220 (2000) 125
Online since: February 2014
Authors: Ying Zhe Wang, Zhong Qiu Zhao, Guang Yu Jiang
Materials and methods Materials.
Zhu: Journal of Agro-Environment Science.
Ma: Journal of Hazardous Materials.
Ma: Journal of Environmental Sciences.
Yang: Journal of Hazardous Materials.
Online since: December 2024
Authors: Nguyen Van Duong, Nguyen Thanh Hung, Nguyen Kien Giang, Le Minh Duc, Nguyen Hong Hai, Hoang Van Vuong, Pham Mai Khanh
Introduction High-entropy alloys (HEAs) are new alloys in materials science with many unique properties and broad application potential.
Progress in Materials Science, 2019. 102: p. 296-345
Progress in Materials Science, 2014. 61: p. 1-93
Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science - METALL MATER TRANS A, 2006. 37: p. 1363-1369
Journal of Materials Science, 2020. 55: p. 1-14
Online since: February 2016
Authors: Olga N. Kryukova, Maria Chepak-Gizbrekht
., Tomsk, 634050, Russia 2Institute of Strength Physics and Materials Science of Siberian Branch Russian Academy of Sciences, 2/4, pr.
In general, the properties of materials are temperature dependent, and the problem becomes non-linear.
Its value for solid materials is missing in reference books.
Olesiak, Problems of thermodiffusion of deformable solids, Materials Science, 34 (3) (1998) 297–303
Uglov, Laser and electron beam treatment of materials.
Online since: December 2012
Authors: Yong Ling Li, Ying Shu Liu, Xiong Yang
Effect of Activated Carbon Materials’ Surface Texture Parameters on Separation Factor for Coal Mine Methane Xiong Yanga, Yingshu Liub and Yongling Lic Beijing Key Laboratory for Energy Saving and Emission Reduction of Metallurgical Industry, University of Science and Technology Beijing,Beijing, China ayangxiong025688@yahoo.com.cn, bysliu@ustb.edu.cn, cyl_li03@me.ustb.edu.cn Keywords: Active carbon; Methane; Adsorption; Coal mine methane; Pore size; Separation Factor Abstract: Nine types of active carbon materials’ adsorption isotherm of nitrogen at 77K were measured, and their surface texture parameters were calculated out.
Procedia Earth and Planetary Science, Vol.1, Sep.2009, pp. 94-99 [2] M.
Journal of china Coal sociaty, vol.35(2010),p.987 [4] A.
Chemical Engineering Science, Vol.59(2004), P.2407 [5] Y Zou, Z L Wu; S X Lu.
Influence of pore geometry on the design of microporous materials for methane storage .
Online since: August 2014
Authors: Ping Zhong, Lin Xiu Cheng
It follows that the hydrochloric acid doped polyaniline is the main material embodied catalytic properties.
Acknowledgements This work was financially supported by National Science Foundation of Jiangxi province (20122BAB213012).
Chen, The preparation of Acid doped nanostructured polyaniline fiber and the study of the esterification performance, Journal of science and technology of kunming university (edition of science), 35(2)(2010)98-101
Yang, The application and research progress of polyaniline in catalytic field, Polymer Materials Science and Engineering, 26 (9) (2010) 159-162
Meng etc., Journal of shandong institute of building materials, 13 (3) (1999) 259-261
Online since: September 2020
Authors: Brahim Boubeker, Mohamed Idiri, Abdellah Tahiri
The addition a small concentration of Re to W increased the strong and plastic deformation of materials W alloy.
Elastic properties are fundamental properties of solid materials.
Applied Physics A: Materials Science & Processing, vol. 77, no. 1, June 2003, pp. 159–61
“Research and Application of Rare Earth Tungsten Electrode Materials.” 
Materials Science Forum, vol. 847, Mar. 2016, pp. 65–71
Online since: February 2012
Authors: Shao Wei Hu
Discontinuous Yield and Large Deformation Analysis on Rotating Disk Based on J2 deformation theory Hu Shaowei1 1Department of Materials and Structural Engineering, Nanjing Hydraulic Research Institute, Nanjing 210024, China Keywords: rotating disk, large deformation, discontinuous yield of material, J2 deformation theory, bursting speed Abstract: Rotating discs are used widely as important structural elements in mechanical engineering.
For the purpose of instability, two specific materials were chosen for analysis.
The two materials were characterized by having the same tensile strength of 77.5 ton/in2.
References [1] Zaid, Full plastic rotating disk with large strains, journal of the aeronautical science, Vol.20, No.6, pp.369-377, june, 1953
[J].International Journal of Mechanical Sciences 1992;34(2):1338
Online since: September 2013
Authors: Feng Ling Bian, He Wang, Zhen Xiao Fu, Hai Shui Wang, Hai Ning Cui, Feng Xu, Sheng Nan Sun, Yi Xin Wang
Introduction p-type semiconductors are important materials for developing optoelectronic devices such as large area flat-panel displays, solar cells and light-emitting diodes.
Of these, Cu2S is considered to be promising materials as absorbers of visible light, due to the bandgap energy between 1.2eV and 2.4eV[1-2].
ZnO has been a heated object in recent years, as a potential ultraviolet, blue and other visible optical device materials owing to its wide and direct band gap about 3.1-3.3eV[3-6].
Applied Surface Science, 2011, 258: 1797−1805
Applied Mechanics and Materials Vols. 271-272 (2013) pp 301-304
Online since: September 2013
Authors: Ke Hua Zhang, Jin Fu Ding, Yong Chao Xu
Zhejiang province science and technology projects (Grant No.2011C21037).
References [1] Schrader, George F; Elshennawy, Ahmad K.; Doyle, Lawrence E. (2000), Manufacturing processes and materials (4th ed.), SME, p. 626, ISBN 978-0-87263-517-3
[2] Schrader, George F.; Elshennawy, Ahmad K.; Doyle, Lawrence E. (2000), Manufacturing processes and materials (4th ed.), SME, p. 626, ISBN 978-0-87263-517-3.Extrude Hone, accessed 2/26/2010 [3] US 3521412, McCarty, Ralph William, "Method of honing by extruding", issued 1970-08-21
International Journal of Machine Tool Design Research, 8 (1968), pp. 33–43.
International Journal of Machine Tool and Manufacture [J], 2011(51):947-957