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Online since: July 2021
Authors: Rostislav Drochytka, Jana Majerová
These fillers are expensive, but there is a possibility to use waste materials.
The main materials used to prepare aggregates in this study were ordinary Portland cement and fly ash.
For that reason, the scientists are finding new fillers from waste materials.
Materials and Methods Conductive sand.
Wang, Experimental Study on deicing performance of carbon fiber reinforced conductive concrete, Journal of Materials Science and Technology. 21 (2005) 113-117
The main materials used to prepare aggregates in this study were ordinary Portland cement and fly ash.
For that reason, the scientists are finding new fillers from waste materials.
Materials and Methods Conductive sand.
Wang, Experimental Study on deicing performance of carbon fiber reinforced conductive concrete, Journal of Materials Science and Technology. 21 (2005) 113-117
Online since: August 2015
Authors: Agus Purwanto, Arif Jumari, Rani Cahyani Fajaryatun, Therecia Wulan Sukardi
MCMB, AB, PVDF, NMP as anode raw materials were weighed by a certain ratio and well mixed to a pasty slurry .
With the same methode and procedure, cathode film was made from materials such as LiFePO4, AB, PVDF and NMP.
[6] Masaki Yoshio and Hideyuki Noguchi, A Review of Positive Electrode Materials for Lithium-Ion Batteries, in: Lithium-ion Batteries: Science and Technologies, Tokyo, 2009, 10
[9] Ying-Da Li, Shi-Xi Zhao, Ce-Wen Nan, Bao-Hua Li, Electrochemical performance of SiO2-coated LiFePO4 cathode materials for lithium ion battery, Journal of Alloys and Compounds. 509 (2011) 957–960
[16] Zhao Dan, Yun-long Feng, Yong-gang Wang, Yong-yao Xia, Electrochemical performance comparison of LiFePO4 supported by various carbon materials, Electrochimica Acta. 88 (2013) 632–638
With the same methode and procedure, cathode film was made from materials such as LiFePO4, AB, PVDF and NMP.
[6] Masaki Yoshio and Hideyuki Noguchi, A Review of Positive Electrode Materials for Lithium-Ion Batteries, in: Lithium-ion Batteries: Science and Technologies, Tokyo, 2009, 10
[9] Ying-Da Li, Shi-Xi Zhao, Ce-Wen Nan, Bao-Hua Li, Electrochemical performance of SiO2-coated LiFePO4 cathode materials for lithium ion battery, Journal of Alloys and Compounds. 509 (2011) 957–960
[16] Zhao Dan, Yun-long Feng, Yong-gang Wang, Yong-yao Xia, Electrochemical performance comparison of LiFePO4 supported by various carbon materials, Electrochimica Acta. 88 (2013) 632–638
Investigation of Material Combinations Processed via Two-Component Metal Injection Moulding (2C-MIM)
Online since: August 2012
Authors: Gabriel Benedet Dutra, Marco Mulser, Roger Calixto, Frank Petzoldt
The connection between the materials with unequal chemical compositions forms an interface.
A crack-free interface between the materials is obtained.
Kokabi, Journal of Materials Science, vol. 43 (2007), pp. 55-63
Johnson, Advances in Powder Metallurgy and Particulate Materials, vol 4(2005), pp. 41-52
Simchi, Journal of Composite Materials, vol. 44 (2010), pp. 417-435
A crack-free interface between the materials is obtained.
Kokabi, Journal of Materials Science, vol. 43 (2007), pp. 55-63
Johnson, Advances in Powder Metallurgy and Particulate Materials, vol 4(2005), pp. 41-52
Simchi, Journal of Composite Materials, vol. 44 (2010), pp. 417-435
Online since: October 2011
Authors: Ke Zhu, E. Pavithra
The materials used for this process are deep drawing steels, high strength steels, inconel, aluminum alloys, magnesium alloys and composite materials [3].
The cladding of two materials can also be done without bonding agent [16].
References [1] S.H.Zhang, Developments in hydroforming, Journal of Materials processing technology vol. 91(1999) p. 236-244
Nielsen, Hydroforming highlights: sheet hydroforming and tube hydroforming, Journal of Materials processing technology, vol. 151 (2004) p. 165-177
Dohmann, Ch.Hartl, Tube hydroforming – research and practical application, Journal of Materials Processing Technology vol. 71 (1997) p.174-186
The cladding of two materials can also be done without bonding agent [16].
References [1] S.H.Zhang, Developments in hydroforming, Journal of Materials processing technology vol. 91(1999) p. 236-244
Nielsen, Hydroforming highlights: sheet hydroforming and tube hydroforming, Journal of Materials processing technology, vol. 151 (2004) p. 165-177
Dohmann, Ch.Hartl, Tube hydroforming – research and practical application, Journal of Materials Processing Technology vol. 71 (1997) p.174-186
Online since: November 2011
Authors: Jun Lin Xie, Hui Ling Guo, Zhi Yan Liu
The oxidizing atmosphere reduces the SO2 emissions, improves the burnability of raw materials, promotes the formation of calcium sulphoaluminate and thus increases the desulfurization degdree.
Journal of fuel chemistry and technology.
Journal of china coal society.
Journal of northeastern university (Natural science).
Journal of mineralogy and petrology.
Journal of fuel chemistry and technology.
Journal of china coal society.
Journal of northeastern university (Natural science).
Journal of mineralogy and petrology.
Online since: December 2014
Authors: Daniel Rodrigues, Elisa Pinto da Rocha, Gilberto V. Concílio, José A. de Castro, Marcos F. de Campos
Typical raw materials are mixtures of epoxy resin and Nd2Fe14B flakes, produced mostly by melt spinning.
Flake aspect is usual for materials produced by melting spinning.
Chen: Journal of Magnetism and Magnetic Materials Vol. 48 (2002), p. 432
In Magnetic Materials in Electrical Machine Applications 2009.
Lins, M.F. de Campos: Materials Science Forum Vols. 727-728 (2012), p 135.
Flake aspect is usual for materials produced by melting spinning.
Chen: Journal of Magnetism and Magnetic Materials Vol. 48 (2002), p. 432
In Magnetic Materials in Electrical Machine Applications 2009.
Lins, M.F. de Campos: Materials Science Forum Vols. 727-728 (2012), p 135.
Online since: April 2019
Authors: Gobwute Rujijanagul, Supalak Manotham, Pharatree Jaita, Tawee Tunkasiri, Narumon Lertcumfu, Suwanan Thammarong, Nattaporn Pimpha
The Effects of Replacement Metakaolin with Diatomite in Geopolymer Materials
Suwanan Thammarong1,2,a, Narumon Lertcumfu1,b, Pharatree Jaita1,c, Supalak Manotham1,d, Tawee Tunkasiri1,3,e, Nattaporn Pimpha4,f,
Gobwute Rujijanagul1,g*
1Department of Physics and Materials Science, Faculty of Science, Chiang Mai University, Chiang Mai, 50200, Thailand
2Graduate School, Chiang Mai University, Chiang Mai, 50200, Thailand
3Materials Science Research Center, Faculty of Science, Chiang Mai University, Chiang Mai, 50200, Thailand
4National Nanotechnology Center, National Science and Technology Development Agency, Thailand Science Park, Phahonyothin Road, Khlong Nueng,Khlong Luang, Pathum Thani 12120, Thailand
asuwanann.tham@gmail.com, bn.lertcumfu@hotmail.com, cpharatree@gmail.com, dsupalak.manotham@gmail.com,etawee.tun@cmu.ac.th, fnuttaporn@nanotec.or.th, grujijanagul@yahoo.com
Keywords: Diatomite, Geopolymer, Compressive strength
Abstract.
Introduction Geopolymers are inorganic polymeric materials.
The category of raw materials used can also affect the properties of geopolymers.
Acknowledgments This work was supported by the STEM (Science, Technology, Engineering, and Mathematics) Workforce, and the departments of Physics and Materials Science and the Faculty of Science of Chiang Mai University.
Nugteren, Geopolymer materials based on natural zeolite, Case Stud.
Introduction Geopolymers are inorganic polymeric materials.
The category of raw materials used can also affect the properties of geopolymers.
Acknowledgments This work was supported by the STEM (Science, Technology, Engineering, and Mathematics) Workforce, and the departments of Physics and Materials Science and the Faculty of Science of Chiang Mai University.
Nugteren, Geopolymer materials based on natural zeolite, Case Stud.
Online since: July 2014
Authors: Alena Vimmrová
All the tested materials can be considered as a vapor permeable materials, which is positive from the point of view of their hygric performance in building envelopes.
Therefore, the commonly produced AAC materials have better properties than the material presented in this paper.
Acknowledgement: This research has been supported by the Czech Science Foundation, under Project No.
Interlaboratory comparison of hygric properties of porous building materials.
Journal of Thermal Envelope and Building Science 27 (2004) 307–25
Therefore, the commonly produced AAC materials have better properties than the material presented in this paper.
Acknowledgement: This research has been supported by the Czech Science Foundation, under Project No.
Interlaboratory comparison of hygric properties of porous building materials.
Journal of Thermal Envelope and Building Science 27 (2004) 307–25
Online since: January 2020
Authors: Peter Kayode Farayibi, Babatunde Olamide Omiyale
It was noted that a high layer thickness (0.254 mm), 0o orientation and 0o raster angle resulted in optimised value of tensile strength (36.50 MPa), flexural strength (52.33 MPa), impact strength (89.51 Jm-1) and compressive strength (35.91 MPa) with a recommendation that other plastic materials and increased level range can be employed as further study.
Materials and Methods Materials and equipment.
Abioye, A study on the awareness level of additive manufacturing technology in south-western Nigeria, African Journal of Science, Technology, Innovation and Development, 9, (2017), 1-6
Tsung, Shape Deviation Modeling for Fused Deposition Modeling Processes, IEEE International Conference on Automation Science and Engineering, Taipei, Taiwan, August 18-22, (2014), 758-763
Prakash, Studies on Parametric Optimization for Fused Deposition Modelling Process, Materials Today: Proceedings, 2, (2015), 1691-1699
Materials and Methods Materials and equipment.
Abioye, A study on the awareness level of additive manufacturing technology in south-western Nigeria, African Journal of Science, Technology, Innovation and Development, 9, (2017), 1-6
Tsung, Shape Deviation Modeling for Fused Deposition Modeling Processes, IEEE International Conference on Automation Science and Engineering, Taipei, Taiwan, August 18-22, (2014), 758-763
Prakash, Studies on Parametric Optimization for Fused Deposition Modelling Process, Materials Today: Proceedings, 2, (2015), 1691-1699
Online since: January 2011
Authors: Hitoshi Takagi
Ousaka: Advanced Composite Materials Vol. 16 (2006) p. 377
Fujiura: Journal of Materials Science Vol. 43 (2008) p. 775
Hinrichsen: Journal of Materials Science Vol. 35 (2000) p. 2589
Ito: Journal of Polymer Science Vol.57 (1962) p. 651
Nakahara: Journal of Materials Science Vol. 39 (2004) p. 1635
Fujiura: Journal of Materials Science Vol. 43 (2008) p. 775
Hinrichsen: Journal of Materials Science Vol. 35 (2000) p. 2589
Ito: Journal of Polymer Science Vol.57 (1962) p. 651
Nakahara: Journal of Materials Science Vol. 39 (2004) p. 1635