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Online since: March 2017
Authors: Ao Xia, Hui Jun Ren, G.Q. Tan, Chi Xu, Cheng Cheng Zhao, Wei Yang
The bamboo-like FeVO4 nanocrystallines were synthesized by a two-step method of the microwave hydrothermal-calcination, using Fe(NO3)3·9H2O and NH4VO3 as raw materials.
As a new member of the vanadate photocatalytic materials family, FeVO4 has been found to have the catalytic capacity of oxidizing hydrocarbon [15].
Conclusions Using Fe(NO3)3·9H2O and NH4VO3 as raw materials, the bamboo-like triclinic FeVO4 nanocrystal is synthesized with microwave hydrothermal-calcination method.
Nano-photocatalytic Materials: Possibilities and Challenges [J].
Materials Research Bulletin, 46(10) (2011) 1654-1658
As a new member of the vanadate photocatalytic materials family, FeVO4 has been found to have the catalytic capacity of oxidizing hydrocarbon [15].
Conclusions Using Fe(NO3)3·9H2O and NH4VO3 as raw materials, the bamboo-like triclinic FeVO4 nanocrystal is synthesized with microwave hydrothermal-calcination method.
Nano-photocatalytic Materials: Possibilities and Challenges [J].
Materials Research Bulletin, 46(10) (2011) 1654-1658
Online since: February 2011
Authors: Jin Nan Chen, Ying Han Cao
Results show that the mixing performance under no-slip condition is better than under full-slip condition, but slip at the wall is good for the extrusion of heat-sensitive materials.
Many particle-filled materials, such as powder/binder mixtures, are known to slip at a solid wall.
This is good for the extrusion of materials that is sensitive to heat, such as PVC.
Results show that the mixing performance under no slip condition is better, but slip at the wall is good for the extrusion of heat-sensitive materials.
Journal of Food Engineering, Vol. 72(2006), p. 179 [17] G.
Many particle-filled materials, such as powder/binder mixtures, are known to slip at a solid wall.
This is good for the extrusion of materials that is sensitive to heat, such as PVC.
Results show that the mixing performance under no slip condition is better, but slip at the wall is good for the extrusion of heat-sensitive materials.
Journal of Food Engineering, Vol. 72(2006), p. 179 [17] G.
Online since: May 2014
Authors: Xiao Ke Zhang
It is the integration of the relationship, emphasizing interdependence, emphasizing the concept of art, expressing the texture of the material, the size of the space, the proportion of size and other performance, so that works with the environment together.
In order to meet the functional needs of a substance and spirit, any kind of garden design are used to organize the material means certain specific space.
Conclusions Computer technology combine art design and computer science closely.
[4] Huang Jianxi: Journal of Geomatics, Vo1. 1 (2003) No.6, p. 43-50
[5] Lan Qiuping, Li Lijun.: Journal of Geomatics, Vo1. 3 (2007) No.2, p. 3-10.
In order to meet the functional needs of a substance and spirit, any kind of garden design are used to organize the material means certain specific space.
Conclusions Computer technology combine art design and computer science closely.
[4] Huang Jianxi: Journal of Geomatics, Vo1. 1 (2003) No.6, p. 43-50
[5] Lan Qiuping, Li Lijun.: Journal of Geomatics, Vo1. 3 (2007) No.2, p. 3-10.
Online since: April 2018
Authors: Thanakorn Wasanapiarnpong, Charusporn Mongkolkachit, Tarit Prasartseree, Noppasint Jiraborvornpongsa
Influence of Lignite Bottom Ash on Pyroplastic Deformation of Stoneware Ceramic Tiles
Tarit Prasartseree1,a, Thanakorn Wasanapiarnpong1,2,b*,
Charusporn Mongkolkachit3,c and Noppasint Jiraborvornpongsa4,d
1Research Unit of Advanced Ceramics, Department of Materials Science, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand
2Center of Excellence on Petrochemical and Materials Technology, Bangkok, 10330, Thailand
3National Metal and Materials Technology Center (MTEC), National Science and Technology-
Development Agency (NSTDA), Pathum Thani 12120, Thailand
4Department of Metallurgy and Ceramics Science, Tokyo Institute of Technology, O-okayama, Meguro-ku, Tokyo, 152-8550, Japan
ataritoui@gmail.com, bthanakorn.w@chula.ac.th, ccharuspm@mtec.or.th, djiraborvornpongsa.n.aa@m.titech.ac.jp
Keywords: Pyroplastic Deformation, Warpage, Anorthite, Lignite Bottom Ash.
The main raw materials for porcelain stoneware tiles are kaolin, quartz and feldspar.
Acknowledgment Thanks you for Research Unit of Advanced Ceramic, Department of Materials Science, Faculty of Science, Chulalongkorn University.
Huang, Preparation and characterization of red porcelain tiles with hematite tailings, Construction and Building Materials 38 (1) (2013) pp. 1083–1088
Riella, Pyroplasticity in porcelain tiles, Materials Science and Engineering A 427 (2006) pp. 316-319 [7] T.
The main raw materials for porcelain stoneware tiles are kaolin, quartz and feldspar.
Acknowledgment Thanks you for Research Unit of Advanced Ceramic, Department of Materials Science, Faculty of Science, Chulalongkorn University.
Huang, Preparation and characterization of red porcelain tiles with hematite tailings, Construction and Building Materials 38 (1) (2013) pp. 1083–1088
Riella, Pyroplasticity in porcelain tiles, Materials Science and Engineering A 427 (2006) pp. 316-319 [7] T.
Online since: July 2013
Authors: Dun Wen Zuo, Hong Feng Wang, J.L. Wang, X.L. Duan, W.W. Song
[2] M.S.Khorrami, M.Kazeminezhad, A.H.Kokabi, Materials Science and Engineering A 543(2012)243-248
Shao, et al, Journal of Functional Materials 41(2010)2029-2033
Chen, Materials Science and Engineering A 553(2012)49-156
[10] P.Xue, D.R.Ni,D.Wang, et al, Materials Science and Engineering A 528(2011)4683-4689
Shao, et al, Journal of Aeronautical Materials 31(2011)31-37.
Shao, et al, Journal of Functional Materials 41(2010)2029-2033
Chen, Materials Science and Engineering A 553(2012)49-156
[10] P.Xue, D.R.Ni,D.Wang, et al, Materials Science and Engineering A 528(2011)4683-4689
Shao, et al, Journal of Aeronautical Materials 31(2011)31-37.
Online since: March 2026
Authors: Sunil J. Raykar, Sanraj S. Bagadi, Tanish A. Barad, Pankaj B. Nandgave, Rahul R. Patil
Materials 14.10 (2021): 2556
Journal of Electronic Materials 44.3 (2015): 771-777
IOP conference series: materials science and engineering.
Materials Sciences and Applications 9.01 (2018): 11
Journal of Manufacturing Science and Engineering 138.2 (2016): 021009
Journal of Electronic Materials 44.3 (2015): 771-777
IOP conference series: materials science and engineering.
Materials Sciences and Applications 9.01 (2018): 11
Journal of Manufacturing Science and Engineering 138.2 (2016): 021009
Online since: December 2012
Authors: Napsiah Binti Ismail, Say Hong Tang, Mohd Khairol Anuar Mohd Ariffin, Shahram Ariafar, Zahra Firoozi
A well-designed layout can promote utilization of manpower, facilitate the production process and decrease material handling cost, lead time and throughput time, while an inefficient layout design leads to inefficiency of manufacturing system by increasing the material handling cost and accumulated work in process.
Sangwan and Kodali, proposed a model that in addition to minimization of the material handling cost, maximized the closeness rates [2, 3].
Husseini, "A simulated annealing solving for facility layout problems under variable demand in cellular manufacturing system," Amirkabir Journal of Science & Technology, vol. 16, pp. 1-11, 2005
Firoozi, "Facility Layout Design for Hybrid Cellular Manufacturing System," International Journal of Physical Sciences, vol. 6, pp. 3551-3556, 2011
Firoozi, "A stochastic facility layout model in cellular manufacturing systems," International Journal of Physical Sciences, vol. 6, pp. 3666-3670, 2011
Sangwan and Kodali, proposed a model that in addition to minimization of the material handling cost, maximized the closeness rates [2, 3].
Husseini, "A simulated annealing solving for facility layout problems under variable demand in cellular manufacturing system," Amirkabir Journal of Science & Technology, vol. 16, pp. 1-11, 2005
Firoozi, "Facility Layout Design for Hybrid Cellular Manufacturing System," International Journal of Physical Sciences, vol. 6, pp. 3551-3556, 2011
Firoozi, "A stochastic facility layout model in cellular manufacturing systems," International Journal of Physical Sciences, vol. 6, pp. 3666-3670, 2011
Online since: March 2013
Authors: Ze Kun Feng, Zhong Yan Chen, Yuan Zhou, Fu Chen
Journal of Magnetism and Magnetic Materials. 265(2003):337-344
Journal of Magentic Materials and Devices.2010, 41(2):22-24,45
Journal of Magnetism and Magnetic Materials 247(2002):257-269
Journal of magnetism and magnetic materials ,2012,28 [7].
Journal of functional materials and devices. 2011, 17(1):69-73.
Journal of Magentic Materials and Devices.2010, 41(2):22-24,45
Journal of Magnetism and Magnetic Materials 247(2002):257-269
Journal of magnetism and magnetic materials ,2012,28 [7].
Journal of functional materials and devices. 2011, 17(1):69-73.
Online since: October 2017
Authors: Onny Ujianto, Dean Margetts, Heru Santoso, Roni Sujarwadi
Materials and Methods
Materials.
Gu, Materials & Design, 30, 4 (2009)
Zhuge, Construction and Building Materials, 37, (2012)
Amico, Journal of Composite Materials, 51, 2 (2016)
Lu, Journal of Applied Polymer Science, 103, 6 (2007)
Gu, Materials & Design, 30, 4 (2009)
Zhuge, Construction and Building Materials, 37, (2012)
Amico, Journal of Composite Materials, 51, 2 (2016)
Lu, Journal of Applied Polymer Science, 103, 6 (2007)
Online since: February 2014
Authors: Su Liang Zou, Yu Peng Xie, Kun Wang, De Wen Tang
The structure and materials of cutting tool must be improved.
Tool Materials Rapid Selection Based on Initial Wear [J].
Journal of Materials Processing Technology, 2000, 103(3): 417~423 [10] Sarhan A, Sayed R, Nassr A A.
Journal of Materials Processing Technology, 2001,109(3):229~235 [11] Remadna M, Rigal J F.
Journal of Materials Processing Technology, 2006, 178(13):67~75 [12] Kun Wang, Shuliang Zou, Dewen Tang.
Tool Materials Rapid Selection Based on Initial Wear [J].
Journal of Materials Processing Technology, 2000, 103(3): 417~423 [10] Sarhan A, Sayed R, Nassr A A.
Journal of Materials Processing Technology, 2001,109(3):229~235 [11] Remadna M, Rigal J F.
Journal of Materials Processing Technology, 2006, 178(13):67~75 [12] Kun Wang, Shuliang Zou, Dewen Tang.