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Online since: May 2020
Authors: Nina V. Nemchinova, Andrey A. Tyutrin, Sergei N. Fedorov
Therefore, the chemical composition makes these materials a promising source of silicon.
Pelletizing the charge material is one of the ways to optimize the use of such silica-containing raw materials to improve the general production efficiency.
Fereferova, Analytical investigations of silicon production raw materials and products, Journal of Siberian Federal University-Chemistry. 1 (2017) 37-48
Aarhaug, Particulate emissions from electrolysis cells, The Minerals, Metals & Materials Society. (2011) 345-350
Modern problems of science and education. 4 (2012)
Pelletizing the charge material is one of the ways to optimize the use of such silica-containing raw materials to improve the general production efficiency.
Fereferova, Analytical investigations of silicon production raw materials and products, Journal of Siberian Federal University-Chemistry. 1 (2017) 37-48
Aarhaug, Particulate emissions from electrolysis cells, The Minerals, Metals & Materials Society. (2011) 345-350
Modern problems of science and education. 4 (2012)
Online since: December 2010
Authors: Jun Xue, Xue Hua Wang, Hou Kui Xiang, Hong Qiao Ding, Shu Li Pang, Hong Cao
Preparation and Magnetic Properties of Carbon Encapsulated Fe-Cu Alloy Nanoparticles
Jun Xue1, 2, a, Hou Kui Xiang2, Hong Qiao Ding2, Shu Li Pang2, Xue Hua Wang2 and Hong Cao2, b
1Wuhan Research Institute of Materials Protection, Wuhan 430030, China
2School of Materials Science and Engineering, Wuhan Institute of Technology, Wuhan 430074, China
a xuejun027@yahoo.com.cn, b caohong@mail.wit.edu.cn
Keywords: Carbon, Fe-Cu alloys nanoparticle, Core-shell structure, Magnetic property
Abstract.
Ara: Journal of Materials Processing Technology Vol. 181 (2007), p. 199 [7] O.C.
Zaman: Materials Science and Engineering A Vol. 217-218 (1996), p. 371 [10] R.S.
Kimura: Materials Letters Vol. 57 (2003), p. 1955 [13] N.
Liu: Journal of Alloys and Compounds Vol. 482 (2009), p. 122 [16] A.C.
Ara: Journal of Materials Processing Technology Vol. 181 (2007), p. 199 [7] O.C.
Zaman: Materials Science and Engineering A Vol. 217-218 (1996), p. 371 [10] R.S.
Kimura: Materials Letters Vol. 57 (2003), p. 1955 [13] N.
Liu: Journal of Alloys and Compounds Vol. 482 (2009), p. 122 [16] A.C.
Online since: May 2024
Authors: Artur Rękas, Tomasz Kaczmarek, Marek Radke, Marcin Kneć
Materials Science and Engineering. 418 (2018) 012111
Materials Science and Engineering. 418 (2018) 012107
Materials Science and Engineering. 651 (2019) 012007
Materials Science and Engineering. 1157 (2021) 012025
Materials Science and Engineering. 1157 (2021) 012046
Materials Science and Engineering. 418 (2018) 012107
Materials Science and Engineering. 651 (2019) 012007
Materials Science and Engineering. 1157 (2021) 012025
Materials Science and Engineering. 1157 (2021) 012046
Online since: April 2013
Authors: Kyu Seok Yeon, Makoto Kawakami, Yoon Sang Choi, In Bae Seung, Jung Heum Yeon
Materials and Method
Materials
(1) Acrylic resin.
Second, a repulsive force occurred at the interfaces of different materials prevented complete synthesis and thus caused phase separation.
Table 2 Material cost Materials Unit Price per unit (USD) Materials Unit Price per unit (USD) MMA kg 3.48 BPO kg 119.13 PMMA kg 6.96 DMA L 41.74 MAA L 3.48 DMT L 92.17 TMPTMA L 15.65 Filler kg 0.22 Silane kg 78.26 Aggregate kg 0.13 Table 3 Economic efficiency analysis results (a) MAA Curing temp.
[2] Ohama, Y., Kobayashi, T., Working life of polymethly methacrylate concrete and its control, Journal of Society of Materials Science Japan, 32(353), (1979) 215-221
[7] Ahn, N., Moisture sensitivity of polyester and acrylic polymer concretes with metallic monomer powders, Journal of the Applied Polymer Science, 107, (2008) 319-323.
Second, a repulsive force occurred at the interfaces of different materials prevented complete synthesis and thus caused phase separation.
Table 2 Material cost Materials Unit Price per unit (USD) Materials Unit Price per unit (USD) MMA kg 3.48 BPO kg 119.13 PMMA kg 6.96 DMA L 41.74 MAA L 3.48 DMT L 92.17 TMPTMA L 15.65 Filler kg 0.22 Silane kg 78.26 Aggregate kg 0.13 Table 3 Economic efficiency analysis results (a) MAA Curing temp.
[2] Ohama, Y., Kobayashi, T., Working life of polymethly methacrylate concrete and its control, Journal of Society of Materials Science Japan, 32(353), (1979) 215-221
[7] Ahn, N., Moisture sensitivity of polyester and acrylic polymer concretes with metallic monomer powders, Journal of the Applied Polymer Science, 107, (2008) 319-323.
Online since: June 2020
Authors: Jiří Svoboda, Ehsan Saebnoori, Ondrej Chocholaty, Omid Khalaj, Hana Jirková
The Oxide Precipitation Hardened (OPH) steel is a new developed group of materials from Oxide Dispersion Strengthened (ODS) alloys which are well known advanced materials for high temperature properties.
For all materials, the passive regions end at less than 650 mV (vs SCE).
Pareja, "Microstructure and mechanical behavior of ODS and non-ODS Fe–14Cr model alloys produced by spark plasma sintering," Journal of Nuclear Materials, vol. 436, pp. 68-75, 2013
Weisenburger, et al., "Al-containing ODS steels with improved corrosion resistance to liquid lead–bismuth," Journal of Nuclear Materials, vol. 428, pp. 125-130, 2012
Zhang, et al., "The corrosion and stress corrosion cracking behavior of a novel alumina-forming austenitic stainless steel in supercritical water," Journal of Nuclear Materials, vol. 484, pp. 339-346, 2017
For all materials, the passive regions end at less than 650 mV (vs SCE).
Pareja, "Microstructure and mechanical behavior of ODS and non-ODS Fe–14Cr model alloys produced by spark plasma sintering," Journal of Nuclear Materials, vol. 436, pp. 68-75, 2013
Weisenburger, et al., "Al-containing ODS steels with improved corrosion resistance to liquid lead–bismuth," Journal of Nuclear Materials, vol. 428, pp. 125-130, 2012
Zhang, et al., "The corrosion and stress corrosion cracking behavior of a novel alumina-forming austenitic stainless steel in supercritical water," Journal of Nuclear Materials, vol. 484, pp. 339-346, 2017
Online since: March 2015
Authors: Hai Yan Wang, Zhi Chao Ni, Shu Jian Xu, Xin Chao Ding
Materials and Methods
We choose two sections located at the east of Tianbao Mount in Pingyi County of Linyi City were chosen to evaluate the characteristic of magnetic susceptibility of cinnamon soil and brown soil(Fig. 1).
Appel: Science in China(Series D:Earth Sciences) Vol. 39 (2009), p. 1304, In Chinese [6] T.
Lu: Chinese Journal of Soil Science Vol. 40 (2009), p. 1421, In Chinese [15] S.J.
Bian: Earth Science—Journal of China University of Geosciences Vol. 39 (2014), p. 1454, In Chinese [19] Y.J.
Shi: Chinese Journal of Soil Science Vol. 39 (2008), p. 1400, In Chinese
Appel: Science in China(Series D:Earth Sciences) Vol. 39 (2009), p. 1304, In Chinese [6] T.
Lu: Chinese Journal of Soil Science Vol. 40 (2009), p. 1421, In Chinese [15] S.J.
Bian: Earth Science—Journal of China University of Geosciences Vol. 39 (2014), p. 1454, In Chinese [19] Y.J.
Shi: Chinese Journal of Soil Science Vol. 39 (2008), p. 1400, In Chinese
Online since: December 2010
Authors: Li Bing Jin, Xiao Li Xiong
Introduction
With the development of science and technology, the new material, the new structural types and the new construction technology have been creating and improving.
The research on the correlation between accelerated experimental results and natural climate change in the actual has gained some achievements in rubber industry, coating, electronic products, polymer materials, and steel and so on [6-8].
References [1] Jin Libing, Jin Weiliang, and Zhao Yuxi, JOURNAL OF SOUTHEAST UNIVERSITY (Natural Science Edition), Vol. 36, Sup (II) (2006), p. 61.
International Journal of Structural Engineering, Vol. 1(1)(2009), p.40
Journal of Zhejiang University (Engineering Science), Vol. 44(4) (2010), p. 789.
The research on the correlation between accelerated experimental results and natural climate change in the actual has gained some achievements in rubber industry, coating, electronic products, polymer materials, and steel and so on [6-8].
References [1] Jin Libing, Jin Weiliang, and Zhao Yuxi, JOURNAL OF SOUTHEAST UNIVERSITY (Natural Science Edition), Vol. 36, Sup (II) (2006), p. 61.
International Journal of Structural Engineering, Vol. 1(1)(2009), p.40
Journal of Zhejiang University (Engineering Science), Vol. 44(4) (2010), p. 789.
Online since: October 2011
Authors: Bai Lin Zheng, Xin Ming Huang, Cong Cong Han, Qing Yang
The shape memory behavior of SMP materials is described by the principle of viscoelasticity[8].
Shape-memory Polymers-A class of Novel Smart Materials.
Mechanics of Materials,2001,33:545~554
International Journal of Palsticity,2006,22:279~313
Journal of American Ceramic Society. 2002, 65(7): 78-81.
Shape-memory Polymers-A class of Novel Smart Materials.
Mechanics of Materials,2001,33:545~554
International Journal of Palsticity,2006,22:279~313
Journal of American Ceramic Society. 2002, 65(7): 78-81.
Online since: December 2007
Authors: Jing Feng Zhi, Hao Bo Cheng, Yong Tian Wang, Jing Bian
Tool-path Planning Algorithm
The use of the best paths for the CCOS operation permits polishing of odd-shaped workpieces with
reduced edge problems and mid-frequency residual errors, according to Preston equation [9], when
a relative motion occurred between two materials in contact by a force, the wear at any point on one
of the surfaces depends upon the relative velocity V and the pressure P at that point, and the
material removal function W is given as
0
.
Acknowledgements This work is supported by the National Natural Science Foundation of China (Grant No.60508001 and 60644003) and Beijing Nova Program of China (Grant No.2006B24) and Excellent Young Scholars Research Fund of Beijing Institute of Technology (Grant No.2006Y0101).
Negishi M: International Journal of the Japan Society for Precision Engineering Vol. 29(1) (1995), p. 1
Bogdanov: Soviet Journal of Optical Technology Vol. 52(5) (1985), p. 294
Cheng: International Journal of Machine Tools & Manufacture Vol. 45(9) (2005), p. 1085.
Acknowledgements This work is supported by the National Natural Science Foundation of China (Grant No.60508001 and 60644003) and Beijing Nova Program of China (Grant No.2006B24) and Excellent Young Scholars Research Fund of Beijing Institute of Technology (Grant No.2006Y0101).
Negishi M: International Journal of the Japan Society for Precision Engineering Vol. 29(1) (1995), p. 1
Bogdanov: Soviet Journal of Optical Technology Vol. 52(5) (1985), p. 294
Cheng: International Journal of Machine Tools & Manufacture Vol. 45(9) (2005), p. 1085.