Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: February 2011
Authors: Mei Yang, Jun Yang, Xiao Hong Wang, Ping Wang, Zheng Lei
Literature References
[1]Yong.Lee,Kangsoolee,TaehoJung:Electrochemistry Communications.Vol.11(2008),p.1716
[2]Fried R H,Schumann S:Journal of Materials Processing Technology.Vol.117(20017),p.276
[3]Liangliang Li, Zhongping Yao: Heat Treatment of Metals.
Vol.34(2009),p.19(In Chinese) [4]MATH IEUS,RAPNC, HAZANJ: Corrosion Science.
Vol.22(2002),p.300(In Chinese) [6]Jianmin Hao,Hong Chen:The Chinese Journal of Nonferrous Metals.
Vol.13(2003),p.988(In Chinese) [7]Blawert C,Heitmann V,Dietzel W,Nykyforchyn H M,Klapkiv M D:Surface and Coatings Technology.Vol. 201(2007),p.8709 [8]Daran Fang,Jihui Wang:Transactions of Materials and Heat Treatment, Vol. 25(2004) ,p.1072(In Chinese) [9]Krysmann W,Kurze P,Dittrick K H:Crys Res Technol.
Vol.100(1953) ,p.411 [13]Shengli Ma,Xiaotian Jing: Ordnance Material Science and Engineering.
Vol.34(2009),p.19(In Chinese) [4]MATH IEUS,RAPNC, HAZANJ: Corrosion Science.
Vol.22(2002),p.300(In Chinese) [6]Jianmin Hao,Hong Chen:The Chinese Journal of Nonferrous Metals.
Vol.13(2003),p.988(In Chinese) [7]Blawert C,Heitmann V,Dietzel W,Nykyforchyn H M,Klapkiv M D:Surface and Coatings Technology.Vol. 201(2007),p.8709 [8]Daran Fang,Jihui Wang:Transactions of Materials and Heat Treatment, Vol. 25(2004) ,p.1072(In Chinese) [9]Krysmann W,Kurze P,Dittrick K H:Crys Res Technol.
Vol.100(1953) ,p.411 [13]Shengli Ma,Xiaotian Jing: Ordnance Material Science and Engineering.
Online since: April 2011
Authors: Zuo Sun, Jun Ping Zhang, Li Wen Zhang
ACI Materials Journal, 1998, 95(6): 747-755
Journal of Materials in Civil Engineering, 2001, 13(3): 209-215
American Concrete Institute Materials Journal, 2000, 97(6): 703-712
ACI Materials Journal, 1999, 96 (3): 397- 404
Journal of Materials in Civil Engineering, ASCE, 2000, 12 (2): 139-146
Journal of Materials in Civil Engineering, 2001, 13(3): 209-215
American Concrete Institute Materials Journal, 2000, 97(6): 703-712
ACI Materials Journal, 1999, 96 (3): 397- 404
Journal of Materials in Civil Engineering, ASCE, 2000, 12 (2): 139-146
Online since: February 2008
Authors: Fernando Audebert, Walter José Botta Filho, Claudio Shyinti Kiminami, Alberto Moreira Jorge, F. Saporiti, Claudemiro Bolfarini, J.B. Fogagnolo, M.M. Peres
.,
W.J.
1
and Bolfarini, C.
1
1
Department of Materials Engineering - Federal University of São Carlos.
Consequently, development of consolidation processes suitable for nanostructured materials are of interest associated mainly with nanostructured powder materials.
The published research up to date has shown that extrusion is one of the most effective processes for the powder materials consolidation [5-8].
Torralba, Journal of Materials Science , 2002, 37, 4603 - 4607 2 - L.
Busquets, Journal of Materials Processing Technology, 2003, 143-144, 605-611. 4 - C.
Consequently, development of consolidation processes suitable for nanostructured materials are of interest associated mainly with nanostructured powder materials.
The published research up to date has shown that extrusion is one of the most effective processes for the powder materials consolidation [5-8].
Torralba, Journal of Materials Science , 2002, 37, 4603 - 4607 2 - L.
Busquets, Journal of Materials Processing Technology, 2003, 143-144, 605-611. 4 - C.
Online since: October 2014
Authors: Yong Qi Cheng, You Song Sun, Xian Hui Zhou, Peng Zhang, Qiang Zhang
Introduction
Fabric reinforced polymer composites have become important constructive materials in engineering with the advantages such as lightweight, high strength, excellent tribological behaviors, stable geometry and good formability etc[1,2].
Table 1 Lining Materials materials specifications % wt manufacturers Plain weave carbon fabric C06142,T300-1000, thickness 0.15mm Toray, Japan Epoxy (E51,)CYD-128 50% Rongcheng Chem.Co.
References [1]Hufenbach, W.Adam, F.al, Application of transmission-based solutions for automated manufacturing of thermoplastic hybrid sandwich structures, Procedia Materials Science 2 (2013): 83-91
[4]Seong Su Kim, Dong Chang Park, Dai Gil Lee, Characteristics of carbon fiber phenolic composite for journal bearing materials, Composite Structures 66 (2004) 359-366
Science, 2009, 223(C5), 1181-1189
Table 1 Lining Materials materials specifications % wt manufacturers Plain weave carbon fabric C06142,T300-1000, thickness 0.15mm Toray, Japan Epoxy (E51,)CYD-128 50% Rongcheng Chem.Co.
References [1]Hufenbach, W.Adam, F.al, Application of transmission-based solutions for automated manufacturing of thermoplastic hybrid sandwich structures, Procedia Materials Science 2 (2013): 83-91
[4]Seong Su Kim, Dong Chang Park, Dai Gil Lee, Characteristics of carbon fiber phenolic composite for journal bearing materials, Composite Structures 66 (2004) 359-366
Science, 2009, 223(C5), 1181-1189
Online since: June 2023
Authors: Fernando Murilo Gontijo Ramos, E.V.M. Carrasco, L.G. Moura, L.N. Okubo, O.C.P. Ferreira, B.M.O. Pinto, Francisco Carlos Rodrigues
The study of the wave propagation principle applicable to orthotropic materials began in 1880 with the development of Christoffel's equation [15].
This indicates that a correction is needed in the acoustic wave treatment equations since the equations used are for isotropic materials.
Xi, Structural behavior of glubam I-joists, Construction and Building Materials. 224 (2019) 292-305
(Report) Advances in Natural and Applied Sciences. 10(4) (2016) 145-151
Tannert, In situ assessment of structural timber using non-destructive techniques, Materials and Structures. 47 (2014) 749–766
This indicates that a correction is needed in the acoustic wave treatment equations since the equations used are for isotropic materials.
Xi, Structural behavior of glubam I-joists, Construction and Building Materials. 224 (2019) 292-305
(Report) Advances in Natural and Applied Sciences. 10(4) (2016) 145-151
Tannert, In situ assessment of structural timber using non-destructive techniques, Materials and Structures. 47 (2014) 749–766
Online since: October 2014
Authors: Jie Liu, Li Bing Xu, Ming Shun Zhou, Li Wei Zhai, Hui Zhang
However, no systematically fundamental data support is provided to determine the range of sinter basicity that meets the condition of Ansteel’s raw materials according to the high-temperature metallurgical properties of the sinter.
With the development of science and technology, the burden structure of the blast furnace changes gradually under the pressure of the production cost.
However, considering that the appropriate burden structures are different because the external conditions such as raw materials and equipment vary from company to company, the company is supposed to lay stress on reference rather than copy.
Experimental raw materials The sinter with the basicity of 1.80~2.55 has been processed through the sintering pot of the laboratory according to the iron concentrate category within the area of Anshan Iron and Steel and the raw material condition of sintering workshop.
Journal of Central South University (Science and Technology), 2010,41(6):2053-2059.
With the development of science and technology, the burden structure of the blast furnace changes gradually under the pressure of the production cost.
However, considering that the appropriate burden structures are different because the external conditions such as raw materials and equipment vary from company to company, the company is supposed to lay stress on reference rather than copy.
Experimental raw materials The sinter with the basicity of 1.80~2.55 has been processed through the sintering pot of the laboratory according to the iron concentrate category within the area of Anshan Iron and Steel and the raw material condition of sintering workshop.
Journal of Central South University (Science and Technology), 2010,41(6):2053-2059.
Online since: June 2010
Authors: Soon Jong Yoon, Hong Taek Kim, Joo Kyung Park, Joon Seok Park, In Kyu Kang, Jong Hwa Park
In construction industries, new construction materials are needed to overcome some
problems associated with the use of conventional construction materials due to the change of
environmental and social requirements.
It is well known that the FRP is mechanically and chemically superior to the conventional construction materials.
Youn: Key Engineering Materials Vols. 306-308 (2006), p. 1355
Ma: Journal of Structural Engineering, ASCE, Vol. 123, No. 10 (1997), p. 1357
Jones: Mechanics of Composite Materials (Taylor & Francis Inc., Philadelphia 1998).
It is well known that the FRP is mechanically and chemically superior to the conventional construction materials.
Youn: Key Engineering Materials Vols. 306-308 (2006), p. 1355
Ma: Journal of Structural Engineering, ASCE, Vol. 123, No. 10 (1997), p. 1357
Jones: Mechanics of Composite Materials (Taylor & Francis Inc., Philadelphia 1998).
Online since: March 2014
Authors: Rui Zhang, Biao Zhao, Hao Chen, Xiao Xuan Pian, Bing Bing Fan, Chen Yang Wang, Bing Bing Wang, Wen Li, Bing Sun, Liang Zhang
Coal fly ash was transformed into ceramic materials by adding a certain amount of fusing agent.
The highest value of 4.50GPa was obtained for the sample prepared with 40wt% addition of K2CO3·1/2H2O.From these data, it can be concluded that materials obtained from CFA with 20wt% and 30wt% addition of K2CO3·1/2H2O are porous and the properties of the obtained materials are influenced by the amount of total porosity.
Ahmaruzzaman, Science 36 (3) (2010) 327-363
J. hazardous materials 172 (1) (2009) 152-158
Cai, Journal of hazardous materials 120 (1-3) (2005) 265-269
The highest value of 4.50GPa was obtained for the sample prepared with 40wt% addition of K2CO3·1/2H2O.From these data, it can be concluded that materials obtained from CFA with 20wt% and 30wt% addition of K2CO3·1/2H2O are porous and the properties of the obtained materials are influenced by the amount of total porosity.
Ahmaruzzaman, Science 36 (3) (2010) 327-363
J. hazardous materials 172 (1) (2009) 152-158
Cai, Journal of hazardous materials 120 (1-3) (2005) 265-269
Online since: March 2023
Authors: Vlastimil Vodárek, Anastasia Volodarskaja, Renáta Palupčíková, Kryštof Hradečný
Wang, Effect of hot rolling reduction on microstructure, texture and ductility of strip-cast grain-oriented silicon steel with different solidification structures, Materials Science and Engineering: A. 605 (2014) 260-269, doi: 10.1016/j.msea.2014.03.052
Wang, Developments in the production of grain-oriented electrical steel, Journal of Magnetism and Magnetic Materials, 320 (23) (2008) 3229-3233, doi: 10.1016/j.jmmm.2008.07.003
Mechanism of secondary recrystallization of Goss grains in grain-oriented electrical steel, Science and Technology of Advanced Materials, 18 (1) (2017) 480-497, doi: 10.1080/14686996.2017.1341277 [6] K.
Ushigami, Recent progress and future trend on grain-oriented silicon steel, Journal of Magnetism and Magnetic Materials, 215 (2000) 69-73
Key Engineering Materials, 810 (2019) 82-88
Wang, Developments in the production of grain-oriented electrical steel, Journal of Magnetism and Magnetic Materials, 320 (23) (2008) 3229-3233, doi: 10.1016/j.jmmm.2008.07.003
Mechanism of secondary recrystallization of Goss grains in grain-oriented electrical steel, Science and Technology of Advanced Materials, 18 (1) (2017) 480-497, doi: 10.1080/14686996.2017.1341277 [6] K.
Ushigami, Recent progress and future trend on grain-oriented silicon steel, Journal of Magnetism and Magnetic Materials, 215 (2000) 69-73
Key Engineering Materials, 810 (2019) 82-88
Online since: December 2012
Authors: Ze Qiang Fu, Yuan Yuan Xie
Middle product
Raw materials
Raw materials
Raw materials
Raw materials
Metabolic waste
Middle product
Metabolic waste
Raw materials
Metabolic waste
Middle product
Disposal, emissions
Final product
Raw materials
Final product
Disposal, emissions
Raw materials
Final product
Final product
Disposal, emissions
Logistics track
System boundary
Metabolic unit
Disposal, emissions
Disposal, emissions
Disposal, emissions
Disposal, emissions
Final product
Final product
Final product
Middle product
Middle product
Middle product
Middle product
Metabolic waste
Metabolic waste
Metabolic waste
Metabolic waste
Figure 1.Industrial metabolic process generally illustrations
Figure 1 shows that how does raw material through a process or production process change into products and waste.
When part of the waste as recycled ingredients recycling, the input materials include two parts.
One is the new investment of the raw materials (R').
Journal of Natural Resources,2007,22(1):141-152,In Chinese
Research of Environmental Sciences,2010,23(8):1091-1098,In Chinese
When part of the waste as recycled ingredients recycling, the input materials include two parts.
One is the new investment of the raw materials (R').
Journal of Natural Resources,2007,22(1):141-152,In Chinese
Research of Environmental Sciences,2010,23(8):1091-1098,In Chinese