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Online since: January 2021
Authors: Jaksada Thumrongvut, Apichat Tipcharoen, Kamonwan Prathumwong
Materials Science Forum, 941(2018) 2417-2422
Materials Science Forum, 860 (2016) 121-124
Construction and Building Materials, 95 (2015) 74-85
Construction and Building Materials, 15 (2001) 9-15
Journal of Materials in Civil Engineering, 8(4) (1996) 189-194
Materials Science Forum, 860 (2016) 121-124
Construction and Building Materials, 95 (2015) 74-85
Construction and Building Materials, 15 (2001) 9-15
Journal of Materials in Civil Engineering, 8(4) (1996) 189-194
Online since: March 2022
Authors: Wadhah Muwafaq Tawfeeq, Hazaa Alaisaee, Younis Almoqbali, Asma Alsaadi, Khadija Almaqbaliy
Sawdust materials are important for several reasons.
New composite materials were experimented with for determining their mechanical properties by substituting recycled materials in different dosages for fine aggregates.
Materials and Methods Fine Aggregate (Sand).
Fig. 4 shows the experimental program with experimental materials.
The bond between lightweight materials and concrete mixtures decreased sharply as the volume of sawdust material increased. 5.
New composite materials were experimented with for determining their mechanical properties by substituting recycled materials in different dosages for fine aggregates.
Materials and Methods Fine Aggregate (Sand).
Fig. 4 shows the experimental program with experimental materials.
The bond between lightweight materials and concrete mixtures decreased sharply as the volume of sawdust material increased. 5.
Online since: May 2012
Authors: Zer Ran Yu, Be Jen Wang, Yao Ching Hsueh
It is non-toxic, non-flammable, non-explosive, cost-efficient, readily available, and easy to remove from the extracted materials [4].
Materials and methods Materials The dried powder of Spirulina platensis were kindly provided by Biotechnology Research Center, Far East University, Tainan, Taiwan.
Journal of Natural Products Vol. 59 (1996), p. 83-87
Food Science and Technology Today Vol. 14 (2000), p. 186-191
Journal of Food Science Vol. 58 (1993), p. 996-1000
Materials and methods Materials The dried powder of Spirulina platensis were kindly provided by Biotechnology Research Center, Far East University, Tainan, Taiwan.
Journal of Natural Products Vol. 59 (1996), p. 83-87
Food Science and Technology Today Vol. 14 (2000), p. 186-191
Journal of Food Science Vol. 58 (1993), p. 996-1000
Online since: August 2012
Authors: Dayse Iara dos Santos, Jae Geon Kim, Don Qui Shi, Shi Xie Dou, Aureo Murador Filho, Marcos Yukio Kussuda, Camilla dos Santos Zanatta
Recent research showed best properties in composite materials than in pure oxides.
Recent research showed best properties in composite materials than in pure oxides.
Bharadwaj: International Journal of Hydrogen Energy, vol. 34 (2009) p. 3621-3630
Lude: Journal of Wuhan University of Technology – Mat.
Zanatta: Masters Dissertation in Science and Technology Materials , Universidade Estadual Paulista, 2009
Recent research showed best properties in composite materials than in pure oxides.
Bharadwaj: International Journal of Hydrogen Energy, vol. 34 (2009) p. 3621-3630
Lude: Journal of Wuhan University of Technology – Mat.
Zanatta: Masters Dissertation in Science and Technology Materials , Universidade Estadual Paulista, 2009
Online since: August 2003
Authors: Jeff T.M. de Hosson, R. Popma
Petzow, in: Sintering and Catalysis, Materials Science Research, Vol.
10 (edited by G.
Munir, in: Sintering and catalysis, Materials Science Research; Vol. 10 (edited by G.
Lathrop, Journal of Materials Science 13, 921(1978) [17] H.
Veringa, Journal of Materials Science 26, 5985 (1991) [18] R.
Rice, Journal of Materials Science 31, 102(1996) [19] G.
Munir, in: Sintering and catalysis, Materials Science Research; Vol. 10 (edited by G.
Lathrop, Journal of Materials Science 13, 921(1978) [17] H.
Veringa, Journal of Materials Science 26, 5985 (1991) [18] R.
Rice, Journal of Materials Science 31, 102(1996) [19] G.
Online since: October 2010
Authors: Yang Guang, Xu Lin Hu, Pan Chao Cui
Suspended mobile asked magnetic fluid flow is good, the initial low viscosity and good rheological properties of materials.
Vekas: submitted to Journal of Magnetism and Magnetic Materials (1987) [2] L.
Bica: submitted to Journal of Magnetism and Magnetic Materials(1987) [3] S.
A.Sokolov: submitted to Journal of Magnetism and Magnetic Materials(1990) [4] H.Takimoto, Y.Takeda and Masubuchi, et al: submitted to Journal of Modern Physics B(1999) [5] H.Yamaguchi: submitted to Journal of Thermo physics and Heat Transfer(2003) [6] D.Bica , L.Vecas and L.Rasa: submitted to of Magnetism and Magnetic Materials(2002) [7] H.
W.Wang: submitted to Journal of Materials and Manufacturing Processes(2005) Acknowledgements: We are grateful for the support of Natural Science Foundation of Fujian Province (No:2010J01007).
Vekas: submitted to Journal of Magnetism and Magnetic Materials (1987) [2] L.
Bica: submitted to Journal of Magnetism and Magnetic Materials(1987) [3] S.
A.Sokolov: submitted to Journal of Magnetism and Magnetic Materials(1990) [4] H.Takimoto, Y.Takeda and Masubuchi, et al: submitted to Journal of Modern Physics B(1999) [5] H.Yamaguchi: submitted to Journal of Thermo physics and Heat Transfer(2003) [6] D.Bica , L.Vecas and L.Rasa: submitted to of Magnetism and Magnetic Materials(2002) [7] H.
W.Wang: submitted to Journal of Materials and Manufacturing Processes(2005) Acknowledgements: We are grateful for the support of Natural Science Foundation of Fujian Province (No:2010J01007).
Online since: August 2014
Authors: Feng Jiu Li, Qing Mei Jia, Hui Jing Wang
Depth reduction materials are the complex refractory iron ore, and reduction process includes not only the reduction of iron oxides but also the reduction of other minerals and more complex reaction between the minerals [1].
The results showed that the restore sequence of iron oxide in reduction process is Fe2O3 → Fe3O4 → FeO → Fe; The depth reduction process can be divided into three stages: nucleation, reaction and grow, and the finally obtained metallic iron exists in reduction materials in the form of iron particles.
[11] Chengyan Xu, Tichang Sun, Chaoying Qi, etc.: Journal of University of Science and Technology Beijing, 2011, 33 (8) : 905-910
[19] Kanazawa Y, Kamitani M: Journal of Alloys and Compounds, 2006, 408: 1339- 1343
[23] Tichang Sun, Yanna Ji, Mang Jiang: Journal of University of Science and Technology Beijing, 2011, 33 (10) : 1197-1203.
The results showed that the restore sequence of iron oxide in reduction process is Fe2O3 → Fe3O4 → FeO → Fe; The depth reduction process can be divided into three stages: nucleation, reaction and grow, and the finally obtained metallic iron exists in reduction materials in the form of iron particles.
[11] Chengyan Xu, Tichang Sun, Chaoying Qi, etc.: Journal of University of Science and Technology Beijing, 2011, 33 (8) : 905-910
[19] Kanazawa Y, Kamitani M: Journal of Alloys and Compounds, 2006, 408: 1339- 1343
[23] Tichang Sun, Yanna Ji, Mang Jiang: Journal of University of Science and Technology Beijing, 2011, 33 (10) : 1197-1203.
Online since: July 2011
Authors: Wen Hao Hsing, Chien Kuo Yen, Shih Yang Chen
The Study of Two-step Dip System of Conveyer by different Pre-treatment
Chien Kuo yen1a, Wen Hao Hsing2a, Shih Yang Chen2b
1Department of Materials and Textile Science, Oriental of Technology, No.58, Sze Chuan Road sec.2 ., Banqiao Dist, New Taipei City 22061, Chinese Taipei
2Department of Textile Engineering, Chinese Culture University, No.55, Hwa-Kang Road,
Taipei City , Taiwan 11114,Chinese Taipei
afc001@mail.oit.edu.twbhsing@staff.pccu.edu.tw, cllamsyang@gmail.com
Keywords: far-infrared, microwave, pre-treatment, dip
Abstract.
Shyng: Journal of the Hwa Gang Textile Vol.6 No.1 (1999) p. 80-84 [2] C.
Duta: Materials Science and Engineering B 165 (2009) p. 221–226 [3] M.
Run: Journal of the Hwa Gang Textile Vol.12 No.1 (2005) p. 65-66 [5] Y.
Hsing: Journal of the Hwa Gang Textile Vol.9 No.3 (2002) p. 276
Shyng: Journal of the Hwa Gang Textile Vol.6 No.1 (1999) p. 80-84 [2] C.
Duta: Materials Science and Engineering B 165 (2009) p. 221–226 [3] M.
Run: Journal of the Hwa Gang Textile Vol.12 No.1 (2005) p. 65-66 [5] Y.
Hsing: Journal of the Hwa Gang Textile Vol.9 No.3 (2002) p. 276
Online since: September 2017
Authors: N.N. Melnikov, S.P. Mesyats, S.P. Ostapenko, Elena B. Cherepetskaya, Nikolii A. Morozov, Ivan A. Shibaev, Alexander N. Kravcov, Adam Konvalinka
K1-2015-025) and the Russian Science Foundation (grant no. 16-17-10181).
Modeling the triaxial behavior of riverbed and blasted quarried rockfill materials using hardening soil model, Journal of Rock Mechanics and Geotechnical Engineering, Volume 8, Issue 3, 2016, Pages 350–365
Valentino, A Marble Open Pit Quarry in Carrara: An Enhanced and Integrated Monitoring System of Rock Mass Static Conditions, Lecture Notes in Earth Sciences, Volume 104, 2004, Pages 604-613
Impact of weathering on slope stability in soft rock mass, Journal of Rock Mechanics and Geotechnical Engineering, Volume 6, Issue 3, June 2014, Pages 240-250
Effects of porosity on seismic velocities, elastic moduli and Poisson’s rations of solid materials and rocks Journal of Rock Mechanics and Geotechnical Engineering, Volume 8, Issue 1, February 2016, Pages 35-49.
Modeling the triaxial behavior of riverbed and blasted quarried rockfill materials using hardening soil model, Journal of Rock Mechanics and Geotechnical Engineering, Volume 8, Issue 3, 2016, Pages 350–365
Valentino, A Marble Open Pit Quarry in Carrara: An Enhanced and Integrated Monitoring System of Rock Mass Static Conditions, Lecture Notes in Earth Sciences, Volume 104, 2004, Pages 604-613
Impact of weathering on slope stability in soft rock mass, Journal of Rock Mechanics and Geotechnical Engineering, Volume 6, Issue 3, June 2014, Pages 240-250
Effects of porosity on seismic velocities, elastic moduli and Poisson’s rations of solid materials and rocks Journal of Rock Mechanics and Geotechnical Engineering, Volume 8, Issue 1, February 2016, Pages 35-49.
Online since: February 2019
Authors: Sergey N. Lezhnev, Andrey O. Tolkushkin, Abdrakhman B. Naizabekov
Vilotic, Upsetting of bi-metallic ring billets, Journal of Materials Processing Technology, 212 (2012) 817-824
Talebanpour, A novel single pass severe plastic deformation technique: Vortex extrusion, Materials Science and Engineering, A 530 (2011) 469-472
Kim, Finite element analysis of plastic deformation in twist extrusion, Computational Materials Science, 60 (2012) 194-200
Luca, A new severe plastic deformation method by repetitive extrusion and upsetting, Materials Science and Engineering, A 595 (2014) 135-142
[21] A.P Gulyaev, Materials science, Metallurgy, Moscow, 1978.
Talebanpour, A novel single pass severe plastic deformation technique: Vortex extrusion, Materials Science and Engineering, A 530 (2011) 469-472
Kim, Finite element analysis of plastic deformation in twist extrusion, Computational Materials Science, 60 (2012) 194-200
Luca, A new severe plastic deformation method by repetitive extrusion and upsetting, Materials Science and Engineering, A 595 (2014) 135-142
[21] A.P Gulyaev, Materials science, Metallurgy, Moscow, 1978.