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Online since: August 2011
Authors: Ai Hua Meng, Ming Fan Li, Hua Wei Ji, Han Lin He
Acknowledgements
We would like to acknowledge the financial support of the National Natural Science Foundation of China (50905051and 50805042) and Natural Science Foundation of Zhejiang Province (Y1080004).
Atherton: Journal of Magnetism and Magnetic Materials Vol. 61 (1986), p. 48-60
Xiang: Journal of Zhejiang University - Science A Vol. 8 (2007), p. 1059-1064(in Chinese)
Sun: Journal of Magnetism and Magnetic Materials Vol. 309 (2007), p. 263-271
Zucca: Journal of Magnetism and Magnetic Materials Vol. 320 (2008), p. e915-e919.
Atherton: Journal of Magnetism and Magnetic Materials Vol. 61 (1986), p. 48-60
Xiang: Journal of Zhejiang University - Science A Vol. 8 (2007), p. 1059-1064(in Chinese)
Sun: Journal of Magnetism and Magnetic Materials Vol. 309 (2007), p. 263-271
Zucca: Journal of Magnetism and Magnetic Materials Vol. 320 (2008), p. e915-e919.
Online since: September 2013
Authors: Jian Yao, Shan Wu
Analysis of the application potential of climate adaptive window materials
Shan Wu, Jian Yao*
Faculty of Architectural, Civil Engineering and Environment, Ningbo University, Ningbo, China
email: yaojian@nbu.edu.cn
Keywords: Climate adaptive window materials; building energy; numerical analysis.
This paper gives the numerical analysis method for heat transfer through climate adaptive window materials.
Using the weather data in a typical city in hot summer and cold winter zone, an analysis of the application potential of climate adaptive window materials is given.
Yuan, “Study on Residential Buildings with Energy Saving by 65% in Ningbo,” Journal of Ningbo University (Natural science & engineering edition).vol. 23, pp. 84-87, 2010
[8] Zhou Y. and Zhou D., “Effect of Envelop Insulation for Indoor Thermal Environment in Summer: Tests and Analysis,” Journal of Ningbo University(Natural Science & Engineering Edition), vol. 26, pp. 100-102, 2013.
This paper gives the numerical analysis method for heat transfer through climate adaptive window materials.
Using the weather data in a typical city in hot summer and cold winter zone, an analysis of the application potential of climate adaptive window materials is given.
Yuan, “Study on Residential Buildings with Energy Saving by 65% in Ningbo,” Journal of Ningbo University (Natural science & engineering edition).vol. 23, pp. 84-87, 2010
[8] Zhou Y. and Zhou D., “Effect of Envelop Insulation for Indoor Thermal Environment in Summer: Tests and Analysis,” Journal of Ningbo University(Natural Science & Engineering Edition), vol. 26, pp. 100-102, 2013.
Online since: September 2013
Authors: B. Kareem
The conventional method of mixing materials led to 50 % surplus and shortage of materials in the process as compared with the new scheme.
Major Raw Materials for Cement Production The major raw materials that were required for cement production are enumerated as follows.
Marin-Garcia, A new formulation technique to model materials and operations planning: The generic materials and operations planning (GMOP) problem European Journal of Industrial Engineering 7 (2013) 119-147
Azimi, Scheduling a project to minimize costs of material requirements World Academy of Science, Engineering and Technology 78 (2011) 134-137.
Chang, M Fang, Study on the model for the requirement planning of well-drilling materials Journal of Xi'an Shiyou University, Natural Sciences Edition 25 (2010) 96-98
Major Raw Materials for Cement Production The major raw materials that were required for cement production are enumerated as follows.
Marin-Garcia, A new formulation technique to model materials and operations planning: The generic materials and operations planning (GMOP) problem European Journal of Industrial Engineering 7 (2013) 119-147
Azimi, Scheduling a project to minimize costs of material requirements World Academy of Science, Engineering and Technology 78 (2011) 134-137.
Chang, M Fang, Study on the model for the requirement planning of well-drilling materials Journal of Xi'an Shiyou University, Natural Sciences Edition 25 (2010) 96-98
Online since: January 2009
Authors: Yu Zhang, Jing Liang Xu, Zhen Hong Yuan
Stimuli-responsive Materials Applied as Carriers of
Immobilized Enzymes
Yu ZHANG
1,2,a,Jingliang XU
1,b,and Zhenhong YUAN
1,c
1.
Most widely used temperature-responsive materials were NIPA (N-isopropylacrylamide) derivatives.
Woodward: Journal of biotechnology Vol. 11(1989), p. 14
Khare: World Journal of Microbiology & Biotechnology Vol. 21(2005), p.6
Huang: Biochemical Engineering Journal Vol. 39(2008), p. 7
Most widely used temperature-responsive materials were NIPA (N-isopropylacrylamide) derivatives.
Woodward: Journal of biotechnology Vol. 11(1989), p. 14
Khare: World Journal of Microbiology & Biotechnology Vol. 21(2005), p.6
Huang: Biochemical Engineering Journal Vol. 39(2008), p. 7
Online since: March 2007
Authors: Jian Xin Xie, Chung Jing Wu, Xue Feng Liu, Xin Hua Liu
A NOVEL FORMING PROCESS OF COPPER CLADDING ALUMINUM
COMPOSITE MATERIALS WITH CORE-FILLING CONTINUOUS CASTING
Jianxin XIE
1, a
, Chunjing WU1, b , Xuefeng LIU1, c and Xinhua LIU
1, d
1
School of Materials Science and Engineering, University of Science and Technology Beijing,
Beijing 100083, China
a
email: jxxie@mater.ustb.edu.cn,
b
email: cjwu@mater.ustb.edu.cn, cemail: xuefeng.liu@263.net,
d
email: liuxinhua18@sina.com
Keywords: core-filling continuous casting, bimetal composite materials, copper cladding aluminum,
bonding interface
Abstract.
To simplify forming process of cladding materials with high performance, such as copper cladding aluminum composite materials, and to improve the interface quality of cladding materials, a novel forming process called Core-Filling continuous Casting (CFC) for bimetal composite materials is proposed.
Park: Materials Science & Technology A Vol. 384 (2004), p. 70 [7] J.C.
Hung: Journal of Materials Processing Technology Vol. 104 (2000), p. 226 [8] H.J.
Kwonb: International Journal of Mechanical Sciences Vol. 44 (2002), p. 247 [11] C.G.
To simplify forming process of cladding materials with high performance, such as copper cladding aluminum composite materials, and to improve the interface quality of cladding materials, a novel forming process called Core-Filling continuous Casting (CFC) for bimetal composite materials is proposed.
Park: Materials Science & Technology A Vol. 384 (2004), p. 70 [7] J.C.
Hung: Journal of Materials Processing Technology Vol. 104 (2000), p. 226 [8] H.J.
Kwonb: International Journal of Mechanical Sciences Vol. 44 (2002), p. 247 [11] C.G.
Online since: October 2024
Authors: Anton Chernukha, Olga Skorodumova, Nataliia Lysak, Viacheslav Kurepin
Materials Science Forum, 968 MSF, 361–367
In Materials Science Forum, 1006, pp. 55–61
Materials Science Forum, 1006, 47–54
Materials Science Forum, 1006 MSF, 47–54
Materials Science Forum, 1038, 33–39
In Materials Science Forum, 1006, pp. 55–61
Materials Science Forum, 1006, 47–54
Materials Science Forum, 1006 MSF, 47–54
Materials Science Forum, 1038, 33–39
Online since: August 2010
Authors: Ching Wen Lou, Jia Horng Lin, Chao Tsang Lu, Po Ching Lu, Tzu Hsuan Chao
Many vivo
studies have been done to examine various filling materials, techniques, and hand dexterity.
Figure 2 Solubility results of Chitosan/IRM® composite materials observed on the 1st, 7st and 13th days.
On the 13th day show for figure 3 (c, f, i), microleakages found in all the composite materials mentioned above.
Journal of Endodontics.
Journal of Endodontics.
Figure 2 Solubility results of Chitosan/IRM® composite materials observed on the 1st, 7st and 13th days.
On the 13th day show for figure 3 (c, f, i), microleakages found in all the composite materials mentioned above.
Journal of Endodontics.
Journal of Endodontics.
Online since: August 2014
Authors: Guo Jie Chen, Shao Guang Dong, Xin Chen
The k·p interaction calculations of conduction band and valence band of InN materials
Shaoguang Donga, *, Guojie Chen b, Xin Chen c
Science College of Foshan University, Foshan, Guangdong 528000, China
a email, dshgfosu@126.com; b email, chengj@126.com; c email,451807924@qq.com
Keywords: InN materials; k·p calculations; Conduction band; Valence band
Abstract.
Acknowledgement In this paper, the research was sponsored by the National Nature Science Foundation of China (Project No. 61178030) and Center for Collaborative Innovation of Functional Polymer Materials.
Fundamentals of Semiconductors: Physics and Materials Properties [C].
Journal of Applied Physics. 2003: 94: 6477
Journal of Applied Physics. 2008: 104: 013704
Acknowledgement In this paper, the research was sponsored by the National Nature Science Foundation of China (Project No. 61178030) and Center for Collaborative Innovation of Functional Polymer Materials.
Fundamentals of Semiconductors: Physics and Materials Properties [C].
Journal of Applied Physics. 2003: 94: 6477
Journal of Applied Physics. 2008: 104: 013704
Online since: August 2013
Authors: Maurizio Mor
State of the Art of Shape Memory Materials and Their Applications
Maurizio Mor
Polibrixia Srl, via Branze 45, 25123 - Brescia (BS) - Italy
maurizio.mor@polibrixia.it
Keywords: Shape memory materials, Shape memory actuators, Shape memory applications
Abstract.
State of the art on materials An interesting field of research is on the constitutive model of materials.
Summary The research on shape memory materials and their applications is gaining new important results.
New materials show the possibility of combination of different materials (polymeric and metallic) to realize a multifunctional smart material system.
International Journal of Smart and Nano Materials. 2(3): p. 101-119. (2011) [2] Pellegrini N.: A thermo-dynamical constitutive model based on kinetic approach for shape memory materials. p. 42-48. (2013) [3] Ghosh P., Rao A., and Srinivasa A.R.: Multifunctional Smart Material System (MSMS) using Shape memory alloys and Shape Memory Polymers. (2012) [4] Zhu Y., Zhang Y., and Zhao D.: Micromechanical constitutive model for phase transformation of NiTi polycrystal SMA.
State of the art on materials An interesting field of research is on the constitutive model of materials.
Summary The research on shape memory materials and their applications is gaining new important results.
New materials show the possibility of combination of different materials (polymeric and metallic) to realize a multifunctional smart material system.
International Journal of Smart and Nano Materials. 2(3): p. 101-119. (2011) [2] Pellegrini N.: A thermo-dynamical constitutive model based on kinetic approach for shape memory materials. p. 42-48. (2013) [3] Ghosh P., Rao A., and Srinivasa A.R.: Multifunctional Smart Material System (MSMS) using Shape memory alloys and Shape Memory Polymers. (2012) [4] Zhu Y., Zhang Y., and Zhao D.: Micromechanical constitutive model for phase transformation of NiTi polycrystal SMA.
Online since: February 2018
Authors: Hong Liang Hou, Yan Ling Zhang, Xue Ping Ren, Hai Tao Qu, Qi Jin
Analysis of Thermal residual stresses in TiC coatings on gradient cemented carbide [J], Journal of Sichuan University (Engineering Science Edition), 2012, 1
Materials Science Research International, 9(2) (2003) 125-130
Journal of Zhejiang University SCIENCE A, 7(8) (2006) 1318-1323
Materials Science and Engineering of Powder Metallurgy, 15(5) (2010) 413-420
Journal of Materials Engineering, 0(3) (1998) 11-16
Materials Science Research International, 9(2) (2003) 125-130
Journal of Zhejiang University SCIENCE A, 7(8) (2006) 1318-1323
Materials Science and Engineering of Powder Metallurgy, 15(5) (2010) 413-420
Journal of Materials Engineering, 0(3) (1998) 11-16