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Online since: July 2014
Authors: Fang Yuan, Yan Hua Li, Guo Min Lin
Introduction of Intelligent Materials Intelligent material is the fourth generation materials after the natural materials, polymer materials and artificial materials, it is one of the important development directions of the modern high-tech materials.Concept of intelligent materials was proposed first by Japan scientist in 1989.
Intelligent materials can be divided into optical fiber, shape memory alloys, piezoelectronic materials, magnetostrictive materials and electrostrictive materials etc. according to their different functions.
Relationship between polymer deformation and temperature Conclusion Development and widely application of intelligent materials will result in a major revolution in materials science.
Principles and Applications of Fiber Grating Sensor [J].Journal of Chongqing Normal University, 2009 (04): 64-68 [2] LI Bing.
Journal of Chongqing Institute of Technology: 2009 (2): 131-135 [6] PEI Xianru, GAO Hairong.
Online since: May 2010
Authors: Yi Wan
Acknowledgement This work is supported by foundation of wenzhou science and technology bureau (H20080051), and supported by Natural Science Foundation of Zhejiang Province of China.
Minak: Journal of Testing and Evaluation Vol. 2(2007), p.1-8 [2] J.
Ian: Journal of the Structural Division Vol.12(1989), p.2657-2675 [4] Y.
Wan: Journal of Information & Computational Science Vol.5 (2008), p.1085-1091 [5] Y.
Wan: Journal of Information & Computational Science Vol.5 (2008), p.1813-1818 [6] Y.
Online since: September 2017
Authors: S.G. Abramyan, Oganes V. Oganesyan
Often, multifunctional materials are also called all-purpose materials due to their versatile use.
Sasmal, Evaluation of mechanical characteristics of nano modified epoxy basedpolymers using molecular dynamics, Computational materials science, 96 (2015) 146-158
Aytekin, Modification of bitumen-based roof covering material by glass reinforced polyester recyclate, Journal of material cycles and waste management, 17 (2015) 583-589
Pilon, Thermal conductivity of cementitious composites containing microencapsulated phase change materials, International journal of heat and mass transfer, 104 (2017) 71-82
Balachandra, Polymer nanocomposites processed via self-assembly through introduction of nanoparticles, nanosheets, and nanofibers, Journal of materials science, 52 (4) (2017)
Online since: December 2013
Authors: Li Xia Ma, Kun Qian Wang
Development Trend of Food Packaging Materials Lixia Ma 1, a, Kunqian Wang 2,b 1 Faculty of Arts and Communication, Kunming University of Science and Technology, Yunnan, Kunming 650093, China 2 Faculty of Arts and Communication, Kunming University of Science and Technology, Yunnan, Kunming 650093, China a285965701@qq.com , b1601292016@qq.com Keywords: Food packaging, materials, environmental protection, sustainable Abstract.
Application of green packaging materials.
Journal of Changchun College of Education, 2013 (4):153-156, In Chinese [2] Qingling Feng.
"Overview of biological materials" [M].
Chinese Journal of Health Inspection, 2006 (6): 384-386, In Chinese
Online since: January 2026
Authors: Hussein Jabar Khadim, Luma Saleem Raheem, Ahmed Muhmmed
Materials Today: Proceedings [2] Fouladi, A.
Construction and Building Materials, 131546
Construction and building materials, 102, 349-357
Case Studies in Construction Materials, 18, e02086
Construction and Building Materials, 165, 655-662
Online since: February 2015
Authors: Yu Zhang, Hui Fang Liu, Han Yu Wang
Characteristics of giant magnetostrictive materials and their engineering application.
Application of new functional materials in the piston noncircular pin hole in manufacturing.
Giant magnetostrictive materials and its application research state.
Journal of Alloys Compounds, Vol. 258 (1997) No.8, p.49 [9] H.
Metallic Functional Materials, Vol.2 (1995) No.3, p.107
Online since: November 2011
Authors: Li Ming Ke, Wen Liang Chen, Huang Lu, Chun Ping Huang
Arnberg, Materials Science and Engineering A. 424 (2006) 163-173
Spowage, Materials Science and Engineering A. 374 (2004) 224-233
Celik, Journal of Materials Processing Technology. 141 (2003) 67-76
Du, Journal of Materials Science. 41 (2006) 4137-4142
Kovacevic, Journal of Materials Processing Technology. 172 (2006) 110-122
Online since: June 2013
Authors: Wang Jia, Dai Yong Cao
Calculated,"technique"index optional degrees is 6.731, eliminate the index,its contents and information are merged into "achievement level";"information management"index optional degrees is 6.333,eliminate the index,its contents and information are merged into"material management", then"material management" includes: the fixed assets,the use and management of information.
REFERENCES [1] The ministry of science and technology,education of the P.R.C.
,Chinese academy of sciences,Chinese academy of engineering,national natural science fundation of China.
About the improvement science and technology evaluation decision. 2003,5.
Science and technology evaluation measures . 2003,9.
Online since: June 2012
Authors: Zi Long Tang, Ao Tan, Zhong Tai Zhang, Ye Hong, Yu Xing Xu, Zi Jian Hong
Mixtures of TiO2×0.2H2O and LiFePO4 as Li-ion Battery Cathode Materials Zijian Hong1, Zilong Tang1, a , Yuxing Xu2, Ye Hong1, Ao Tan1 and Zhongtai Zhang1 1State Key Laboratory of New Ceramics and Fine Processing, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, China 2State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China a tzl@tsinghua.edu.cn Key words: Li-ion battery; 2-2 parallel model; Cathode material Abstract.
The mixtures of HTO and LiFePO4 were considered to combine the advantages of both materials.
And that the capacity of 2-2 parallel composite was higher than both materials.
Ceder, Battery materials for ultrafast charging and discharging, Nature. 458 (2009) 190-193
Luo, Z.L.Tang, J.B.Lu, L.F.Hu and Z.T.Zhang, Synthesis and performance of carbon-modified LiFePO4 using an in situ PVA pyrolysis procedure, Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material. 14 (2007) 562-567
Online since: December 2023
Authors: Andreas H. Foitzik, Andrea Böhme, Sandy Speck, Claudio Verona
Development and Characterisation of New Hydrogels for Medical Science Education Sandy Speck1,a*, Claudio Verona2,b, Andrea Böhme1,c, Andreas H.
Foitzik1,d 1Technical University of Applied Science Wildau, Hochschulring 1, 15745, Wildau, Germany 2University of Rome Tor Vergata, Department of Industrial Engineering, Via Orazio Raimondo, 18 - 00173 Roma, Italy a*sndspeck@gmail.com, bclaudio.verona@uniroma2.it candrea.boehme@th-wildau.de dafoitzik@th-wildau.de Keywords: biomaterials, medical science education, Processing, hydrogels Abstract.
Requirements In order to improve the training situation for medical students, medical professionals and surgeons, this work will investigate which materials and manufacturing methods can be used to produce a realistic simulation organ or tissue.
Gelatine with various additives was used as the starting material.
International journal of surgery (London, England) 104: 106813
Showing 731 to 740 of 97011 items