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Online since: February 2017
Authors: Amelia Trematerra, Ilaria Lombardi
Green materials are becoming a valid alternative to traditional synthetic materials.
This materials were cut and then they were dried and crushed, at the end the materials were assembled in panels.
So this materials can be used to replace the traditional absorbent materials as polyurethane, foam or PET.
Advances in Materials Science and Engineering 2015 (2015) Article ID 274913. http://dx.doi.org/10.1155/2015/274913 [2] J.
Processing and Properties of Vegetable Fibres, Journal of Natural Fibers 1 (2) (2004) 37-68.
This materials were cut and then they were dried and crushed, at the end the materials were assembled in panels.
So this materials can be used to replace the traditional absorbent materials as polyurethane, foam or PET.
Advances in Materials Science and Engineering 2015 (2015) Article ID 274913. http://dx.doi.org/10.1155/2015/274913 [2] J.
Processing and Properties of Vegetable Fibres, Journal of Natural Fibers 1 (2) (2004) 37-68.
Online since: June 2018
Authors: Sergey Zelenov, Lev Rabinskiy, Ekaterina Kuznetsova, Andrey Ripetskiy
The emergence of new developments in the field of materials science and their possibilities for the creation of products using layer-by-layer method promotes the development of innovative solutions that increase the efficiency of complex technical parts and improves their quality.
Michaleris, Thermomechanical modeling of additive manufacturing large parts, Journal of Manufacturing Science and Engineering. 136(6) (2014) 1-8, http://doi.org/10.1115/1.4028669 [6] W.E.
Rubenchik, Laser powder bed fusion additive manufacturing of metals; physics, computational, and materials challenges.
Michaleris, A line heat input model for additive manufacturing, Journal of Manufacturing Science and Engineering. 138(11) (2016), DOI:10.1115/MSEC2015-9240 [13] M.
Palmer, Modeling forced convection in the thermal simulation of laser cladding processes, International Journal of Advanced Manufacturing Technology, 79(1-4) (2015) 307–320.
Michaleris, Thermomechanical modeling of additive manufacturing large parts, Journal of Manufacturing Science and Engineering. 136(6) (2014) 1-8, http://doi.org/10.1115/1.4028669 [6] W.E.
Rubenchik, Laser powder bed fusion additive manufacturing of metals; physics, computational, and materials challenges.
Michaleris, A line heat input model for additive manufacturing, Journal of Manufacturing Science and Engineering. 138(11) (2016), DOI:10.1115/MSEC2015-9240 [13] M.
Palmer, Modeling forced convection in the thermal simulation of laser cladding processes, International Journal of Advanced Manufacturing Technology, 79(1-4) (2015) 307–320.
Online since: January 2013
Authors: Yi Cui, Qian Wang, Li Ren Wang, Jing Long Bu, Rong Lin Wang
Effects of Recycling Ladle Lining Materials on Phase Composition and Microstructure of Al2O3-SiC-C Castable for Iron Runner
Yi Cui1, a, Ronglin Wang1, b,*,Liren Wang1, c, Jinglong Bu1, d and Qian Wang2, e
1Hebei Provincial Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei United University, Tangshan 063009, Hebei, China
2Hebei Tangyin Iron and Steel Company Limited, Tangshan 063000, Hebei, China
a627445252@qq.com, bwrl@heuu.edu.cn, cnaihuowangliren@163.com, dbjl@heuu.edu.cn, e1281584803@qq.com
Keywords: ladle lining; recycling materials; castable for iron runner; phase composition; microstructure
Abstract.
So the research about recycling of spent refractory materials has great significance [4-8].
In Table 1, the items of SiC, CA75-cement and C, etc materials were merged into excipient.
References [1] TATEDA Masafumi, FUJITA Masanori: Journal of Environmental Sciences Vol. 19 (2007), p.1146
Xue,: Refractory Materials(Chinese) Vol. 41 (2007), p. 460
So the research about recycling of spent refractory materials has great significance [4-8].
In Table 1, the items of SiC, CA75-cement and C, etc materials were merged into excipient.
References [1] TATEDA Masafumi, FUJITA Masanori: Journal of Environmental Sciences Vol. 19 (2007), p.1146
Xue,: Refractory Materials(Chinese) Vol. 41 (2007), p. 460
Online since: August 2010
Authors: Anita Uscilowska
The purpose of this paper is the application of Method of Fundamental Solutions (MFS) to
the torsion problem of hollow rods made with functionally graded materials.
Recently, research activity on functionally graded materials has stimulated investigation also on the torsion problem for inhomogeneous material.
The purpose of this paper is the application of Method of Fundamental Solutions (MFS) to the torsion problem of functionally graded materials.
For functionally graded materials the governing equation is a linear one with variable coefficients.
International Journal of Mechanical Science, vol. 1, pp. 356-365 (1960)
Recently, research activity on functionally graded materials has stimulated investigation also on the torsion problem for inhomogeneous material.
The purpose of this paper is the application of Method of Fundamental Solutions (MFS) to the torsion problem of functionally graded materials.
For functionally graded materials the governing equation is a linear one with variable coefficients.
International Journal of Mechanical Science, vol. 1, pp. 356-365 (1960)
Online since: January 2016
Authors: Ju Long Yuan, Ping Zhao, Fan Li, Fen Fen Zhou, Wei Hang, Long Fen Yu
Key Engineering Materials,300-304,2006
Journal of the Japan Society for Precision Engineering, 1773~1777,1996
Journal of the Japan Society for Precision Engineering, 726~730,1997
Key Engineering Materials,259-260,2004
[8] M.ichikawa, T.takamatsu and N.okabe, “WS4b1-Investigationof crushing strength of Si3N4 balls for ceramic bearing from a statistical point of view”, Mechanical Behaviour of Materials, 683-690, 1992
Journal of the Japan Society for Precision Engineering, 1773~1777,1996
Journal of the Japan Society for Precision Engineering, 726~730,1997
Key Engineering Materials,259-260,2004
[8] M.ichikawa, T.takamatsu and N.okabe, “WS4b1-Investigationof crushing strength of Si3N4 balls for ceramic bearing from a statistical point of view”, Mechanical Behaviour of Materials, 683-690, 1992
Online since: December 2019
Authors: Kateřina Štegnerová, Pavel Tofel, Oldřich Ševeček, Zdenek Hadas, Zdeněk Majer, Ondřej Rubeš
Layered ceramic materials (also referred to as “ceramic laminates”) are becoming one of the most promising areas of materials technology.
Sottos: Journal of Applied Physics, Vol. 101 (2007), 024102
Morrell, "Fractography of Brittle Materials," National Physical Laboratory: Teddigton, (1999)
Sglavo: Science, Vol. 283 (1999), p. 1295
Danzer: International Journal of Materials Research, Vol. 102 (2011), p. 613.
Sottos: Journal of Applied Physics, Vol. 101 (2007), 024102
Morrell, "Fractography of Brittle Materials," National Physical Laboratory: Teddigton, (1999)
Sglavo: Science, Vol. 283 (1999), p. 1295
Danzer: International Journal of Materials Research, Vol. 102 (2011), p. 613.
Online since: October 2010
Authors: Jinn Jong Sheu, Chin Wei Liu, Dong Mei Xu
The dimension accuracy and the too life are the major issues of the machining of hard-to-cut materials.
Armarego, Journal of Manufacturing Science, Vol. 118(1996), p. 216
Osman, Journal of Materials Processing Technology, Vol. 71(1997), p. 247
Ehmann, Journal of Materials Processing Technology, Vol. 170(2005), p. 164
Ostafiev, Journal of Materials Processing Technology, Vol. 89-90(1999), p. 238
Armarego, Journal of Manufacturing Science, Vol. 118(1996), p. 216
Osman, Journal of Materials Processing Technology, Vol. 71(1997), p. 247
Ehmann, Journal of Materials Processing Technology, Vol. 170(2005), p. 164
Ostafiev, Journal of Materials Processing Technology, Vol. 89-90(1999), p. 238
Online since: June 2012
Authors: Kun Luan, Fa Zhang, Li Wei Wu
Journal of Composite Materials, 1989. 23(9): p. 890
Yi, Mechanical behavior of textile composite materials using a hybrid finite element approach.
Journal of Materials Science, 1997. 32(20): p. 5445-5455
Journal of Composite Materials, 2002. 36(1): p. 93
Materials Science and Engineering: A, 2007. 457(1–2): p. 199-204
Yi, Mechanical behavior of textile composite materials using a hybrid finite element approach.
Journal of Materials Science, 1997. 32(20): p. 5445-5455
Journal of Composite Materials, 2002. 36(1): p. 93
Materials Science and Engineering: A, 2007. 457(1–2): p. 199-204
Methods Research and Analysis of Non-Contact Measurement to the Moisture Content of Textile Material
Online since: August 2012
Authors: Jun Feng Jing, Peng Fei Li, Le Sun
When microwave spreads in aqueous materials, water molecules will cause orientation polarization because of microwave filed effect.
But in ordinal material the relative permittivity is less than that value.
Because of these microwave characteristics, it makes the water molecules in the material become the main part of the dielectric constant materials.
Fabric Online Monitoring of Moisture Content, Chinese Journal of Scientific Instrument 2009; 6, 30(6): 671-675
[4] CY Zuo and YM Ding: The Principle and Application with Testing Water Content in Material by Using Microwave Technique, Journal of Microwaves 2005; 4:153-156
But in ordinal material the relative permittivity is less than that value.
Because of these microwave characteristics, it makes the water molecules in the material become the main part of the dielectric constant materials.
Fabric Online Monitoring of Moisture Content, Chinese Journal of Scientific Instrument 2009; 6, 30(6): 671-675
[4] CY Zuo and YM Ding: The Principle and Application with Testing Water Content in Material by Using Microwave Technique, Journal of Microwaves 2005; 4:153-156
Online since: June 2011
Authors: Thotsaphon Threrujirapapong, Hiroyuki Fukuda, Junko Umeda, Katsuyoshi Kondoh
Seal, Materials Science and Engineering A 381 (2004) 249
Ray, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing 527 (2010) 1590
Talianker, Journal of Materials Science 35 (2000) 2529
Endo, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing 527 (2010) 4103
Yuan, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing 499 (2009) 212
Ray, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing 527 (2010) 1590
Talianker, Journal of Materials Science 35 (2000) 2529
Endo, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing 527 (2010) 4103
Yuan, Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing 499 (2009) 212