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Online since: May 2011
Authors: Xiong Fei Zhang, Ya Li Wang, Gui Wang, Cui Hua Lin, Yang Hou
Materials Chemistry and Physics, 2010,120: 148-154
Materials letters,2001,49:197-201
Power Metallurgy Materials Science and Engineering, 202, 4(7): 265-270.
Materials Research Bulletin,2003, 38: 161-168
Journal of Jishou University(Natural Science Edition), 2005, 2(26):51-53.
Materials letters,2001,49:197-201
Power Metallurgy Materials Science and Engineering, 202, 4(7): 265-270.
Materials Research Bulletin,2003, 38: 161-168
Journal of Jishou University(Natural Science Edition), 2005, 2(26):51-53.
Online since: October 2013
Authors: Xian Jing Ruan
Application Analysis of Solar Thermal Conversion Thin Film Materials on the New Energy Vehicles
Ruan Xianjing
School of Medical Business, Guangdong Pharmaceutical University,Guangzhou,Guangdong, China
txcf2000@163.com
Keywords: Solar thermal conversion thin film materials, New energy vehicles, TiMoAlON, Selective absorbing, Multi-layer gradient structure.
Spectral selective absorbing coating, by definition, is the coating material of spectral absorption selective.
A material of having spectrally selective absorption characteristics is a composite material, i.e. composed by 2 parts materials of the absorption solar radiation and reflection infrared spectroscopy.
Surface Science, Vol.576(2005), p.19 [2] LiuYan, Dong Yunshan, ZhaoWenji.
International Journal of Refractory Metals and Hard Materials, Vol.25(2007), p. 271-274 [3] Yang.S, Teer.D.G.
Spectral selective absorbing coating, by definition, is the coating material of spectral absorption selective.
A material of having spectrally selective absorption characteristics is a composite material, i.e. composed by 2 parts materials of the absorption solar radiation and reflection infrared spectroscopy.
Surface Science, Vol.576(2005), p.19 [2] LiuYan, Dong Yunshan, ZhaoWenji.
International Journal of Refractory Metals and Hard Materials, Vol.25(2007), p. 271-274 [3] Yang.S, Teer.D.G.
Online since: August 2006
Authors: Yong Chae Chung, Deok Soo Kim, Sang Pil Kim, Sang Won Seo, Chong Min Kim
The structural configurations of atom constituting materials are one of the fundamental
factors in the study of physical properties of materials.
The electronic and chemical characteristics of materials also change by the existence of impurities in the material.
Voronoi diagram has been diversely used for an atomic simulation tool such as molecular dynamics in material science.
Additionally, the result of the structure extraction from Al-Co composite materials is presented.
Kim: Journal of Ceramic Processing Research 6[1] (2004), p. 63-67
The electronic and chemical characteristics of materials also change by the existence of impurities in the material.
Voronoi diagram has been diversely used for an atomic simulation tool such as molecular dynamics in material science.
Additionally, the result of the structure extraction from Al-Co composite materials is presented.
Kim: Journal of Ceramic Processing Research 6[1] (2004), p. 63-67
Online since: November 2013
Authors: Zheng Hua Wang, Bo Zhi Ren, Pu Wang
Materials and Methods
Sunchromine Brilliant Red B (C.I.
Journal of Hazardous Materials.
Jiang, Journal of Hazardous Materials.
Journal of Zhejiang University of Technology.
Li, Journal of Shenyang Jianzhu University (Natural Science).
Journal of Hazardous Materials.
Jiang, Journal of Hazardous Materials.
Journal of Zhejiang University of Technology.
Li, Journal of Shenyang Jianzhu University (Natural Science).
Online since: March 2010
Authors: Jun Li Wang, Rui Dong Xu, Yu Zhi Zhang
Research of Characteristics of Ni-W-P Nanocomposites Containing CeO2
and SiO2 Particles
Junli Wang1,a, Ruidong Xu2, b*
and Yuzhi Zhang3,c
1
Research Center for Analysis and Measurement, Kunming University of Science and Technology,
Kunming, 650093, P.R China
2
Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology,
Kunming, 650093, P.R China
3
Key Laboratory of Inorganic Coating Materials, Chinese Academy of Sciences, Shanghai, 200050,
P.R China
awangjunli78@yahoo.com.cn, brdxupaper@yahoo.com.cn, czhyzh@126.com
Keywords: Pulse electrodepositon, Nanocomposites, Structures, Properties.
Pulse parameters were: forward and reverse pulse duty cycles were controlled at 10% and 30%, forward and reverse average current densities were controlled 15A/dm2 and 1.5A/dm2, forward and reverse pulse woking times were controlled at 300ms and 40ms. 316L stainless steel was used as anode materials and common carbon steel was used as substrate materials.
Acknowledgements Projects from National Natural Science Foundation of China, Opening Project of Key Laboratory of Inorganic Coating Materials of Chinese Academy of Sciences, Applied Basic Research Plans Program and Back-up Personnel Foundation of Academic and Technology Leaders of Yunnan Province of China, Scientific Research Fund of Yunan Provincial Education Department of China, are acknowledged.
References [1] K.Nabeen,Shrestha,S.Kazuaki,M.Masabumi and S.Tetsuo:Surface and Coatings Technology Vol.140(2001),p.175 [2] Z.C.Guo and X.Y.Zhu:Materials Science and Engineering A Vol. 363 (2003), p.325 [3] T.Denny,L.Ronny and B.Andreas:Electrochimica Acta Vol.52(2007),p.7362 [4] A.F.Zimmerman,D.G.Clark,K.T.Aust and U.
Erb:Materials Letters Vol.52(2002), p.85 [5] R.D.Xu,J.L.Wang,Z.C.Guo and H.Wang:Journal of Rare Earths Vol.26(2008),p.579 [6] R.D.Xu,J.L.Wang, L.F.He and Z.C.Guo.Surface and Coatings Technology Vol. 202(2008),p.1574 [7] R.D.Xu,J.L.Wang,Z.C.Guo and H.Wang:Journal of Aeronautical Materials Vol.28(2008), p.46 [8] R.D.Xu,J.L.Wang,Z.C.Guo and H.Wang: Journal of Materials Engineering (2008), p.17 [9] D.S.Wang,Y.H.Huan and Z.J.Tian:Electromachining & Mould Vol.31(2007), p.28
Pulse parameters were: forward and reverse pulse duty cycles were controlled at 10% and 30%, forward and reverse average current densities were controlled 15A/dm2 and 1.5A/dm2, forward and reverse pulse woking times were controlled at 300ms and 40ms. 316L stainless steel was used as anode materials and common carbon steel was used as substrate materials.
Acknowledgements Projects from National Natural Science Foundation of China, Opening Project of Key Laboratory of Inorganic Coating Materials of Chinese Academy of Sciences, Applied Basic Research Plans Program and Back-up Personnel Foundation of Academic and Technology Leaders of Yunnan Province of China, Scientific Research Fund of Yunan Provincial Education Department of China, are acknowledged.
References [1] K.Nabeen,Shrestha,S.Kazuaki,M.Masabumi and S.Tetsuo:Surface and Coatings Technology Vol.140(2001),p.175 [2] Z.C.Guo and X.Y.Zhu:Materials Science and Engineering A Vol. 363 (2003), p.325 [3] T.Denny,L.Ronny and B.Andreas:Electrochimica Acta Vol.52(2007),p.7362 [4] A.F.Zimmerman,D.G.Clark,K.T.Aust and U.
Erb:Materials Letters Vol.52(2002), p.85 [5] R.D.Xu,J.L.Wang,Z.C.Guo and H.Wang:Journal of Rare Earths Vol.26(2008),p.579 [6] R.D.Xu,J.L.Wang, L.F.He and Z.C.Guo.Surface and Coatings Technology Vol. 202(2008),p.1574 [7] R.D.Xu,J.L.Wang,Z.C.Guo and H.Wang:Journal of Aeronautical Materials Vol.28(2008), p.46 [8] R.D.Xu,J.L.Wang,Z.C.Guo and H.Wang: Journal of Materials Engineering (2008), p.17 [9] D.S.Wang,Y.H.Huan and Z.J.Tian:Electromachining & Mould Vol.31(2007), p.28
Online since: October 2013
Authors: Tadeusz Uhl, Krzysztof Grabowski, Paulina Zbyrad
MWCNTs weremixed with polymer and then applied to the materials (fiber glass composites)with the use of screen printing.
They are a family of thermoset plastic materials which do not give off reaction productswhen they cure and so have low cure shrinkage.
It leads to the conclusion that the clusters initially formed were causing higher resistance of the materials.
Science, USA(2002)., 297:787-792 [3] B.
Hisao: A carbon nanotube/polymer strain sensor with linear and anti-symmetric piezoresistivity, Journal of composite materials, (2011) 45(12), pp. 1315-1323
They are a family of thermoset plastic materials which do not give off reaction productswhen they cure and so have low cure shrinkage.
It leads to the conclusion that the clusters initially formed were causing higher resistance of the materials.
Science, USA(2002)., 297:787-792 [3] B.
Hisao: A carbon nanotube/polymer strain sensor with linear and anti-symmetric piezoresistivity, Journal of composite materials, (2011) 45(12), pp. 1315-1323
Online since: July 2014
Authors: Wan Li Yang, Xiao Hui Ju, Li Bian
The brightest trait of the degenerated virtual laminated element is virtual lamination, so the calculation of the stiffness matrix can be divided into different blocks and different materials, and the blocks with no material are virtual blocks, the stiffness of which are set to be zero.
Hence, since an element could contain multiple materials or even no material, the work is much easier when we separate the structure into elements, especially for complicated structures such as box girder, the number of elements can be remarkably reduced.
The formula to calculate the stiffness matrix of an element containing various materials is as follows: (2) In the formula, is the number of material types, is the Jocobi determinant of the coordinate transverse matrix for the very block.
Xu, New laminated block element and its application in engineering[J], China Journal of Highway and Transport, 2002(15)2, pp72-75 [4] Yasuhiro Ohtani and Wai-fah Chen, Multiple Hardening Plasticity for Concrete Materials [J], Journal of the engineering mechanics division, ASCE1988, 114(11) [5] H.C.Wu, J.W.
Xia: Three-Dimensional Non-Orthogonal Smeared Crack Model for Concrete[J], Journal of Hohai University(Natural Sciences),1999(27)5
Hence, since an element could contain multiple materials or even no material, the work is much easier when we separate the structure into elements, especially for complicated structures such as box girder, the number of elements can be remarkably reduced.
The formula to calculate the stiffness matrix of an element containing various materials is as follows: (2) In the formula, is the number of material types, is the Jocobi determinant of the coordinate transverse matrix for the very block.
Xu, New laminated block element and its application in engineering[J], China Journal of Highway and Transport, 2002(15)2, pp72-75 [4] Yasuhiro Ohtani and Wai-fah Chen, Multiple Hardening Plasticity for Concrete Materials [J], Journal of the engineering mechanics division, ASCE1988, 114(11) [5] H.C.Wu, J.W.
Xia: Three-Dimensional Non-Orthogonal Smeared Crack Model for Concrete[J], Journal of Hohai University(Natural Sciences),1999(27)5
Online since: August 2014
Authors: Qin Wang, Wei Wu, Yan Fang Tang, Jian Jian Bian, Song Wei Zhu
Effect of Gamma irradiation on the migration of di(2-ethylhexyl) phthalate from plasticized Poly(vinyl chloride) into air and PVC Resin
Qin Wang1,2,a,Wei Wu1,a,Yanfang Tang2,a,Jianjian Bian2,a,Songwei Zhu1,a
1 Sino-German Joint Research Center of Advanced Materials,School of Materials Science and Engineering, East China University of Science and Technology,200237,China
2Shanghai New Shanghua Polymer Material Co.
Experiment Materials.
Journal of Food Engineering.Vol. 78(2007),p.870–877
Marcilla:Soft PVC foams:Study of the gelation, fusion,and foaming processes.I.Phtha -late ester plasticizers.Journal of Applied Polymer Science.Vol. 121(2011)No.(3),p.1495–1505
[5] A.P.Tüzüm Demir, S.Ulutan:Migration of Phthalate and Non-Phthalate Plasticizers Out of Plasticiz -ed PVC Films into Air.Journal of applied polymer science.Vol.128(2013)No.3,p.1948-1961
Experiment Materials.
Journal of Food Engineering.Vol. 78(2007),p.870–877
Marcilla:Soft PVC foams:Study of the gelation, fusion,and foaming processes.I.Phtha -late ester plasticizers.Journal of Applied Polymer Science.Vol. 121(2011)No.(3),p.1495–1505
[5] A.P.Tüzüm Demir, S.Ulutan:Migration of Phthalate and Non-Phthalate Plasticizers Out of Plasticiz -ed PVC Films into Air.Journal of applied polymer science.Vol.128(2013)No.3,p.1948-1961
Online since: June 2012
Authors: Ze Kun Feng, Jing Yao, Ai Ping Huang, Li Hua Yu
Hexagonal system ferrite materials are widely used in ceramic permanent magnetic materials, high-frequency magnetic head materials, and high-frequency soft magnetic materials due to their excellent electromagnetic properties.
[3] Han Zhiquan: Developments of Ultrahigh Frequency Soft Hexagonal Ferrite and Composite Ferrite Materials[J], Journal of Magnetic Materials and Devices (No. 3, 2010)
[4] Tang Yingming, Jia Lijun, Zhang Huawu, Yin shuiming and Li Tao: Application and Research Status of Z-type Hexaferrites Used in UHF Band[J], Journal of Magnetic Materials and Devices (No. 6, 2010)
[5] Feng Zekun, Huang Aiping, Xu Dandan and Sheng Jinping: Ferroxplana Co2Z Hexagonal Ferrites Materials for Applications at Quasi-microwave Band[J], Journal of Magnetic Materials and Devices(No. 6, 2008)
[6] Hao Sikun, Li Wei, Meng Weimin, Bai Jianmin, Yang Zheng and Wei Fulin: Magnetic properties of Co_2Z type ferrite thin films[J], Journal of Magnetic Materials and Devices (No.3, 2011)
[3] Han Zhiquan: Developments of Ultrahigh Frequency Soft Hexagonal Ferrite and Composite Ferrite Materials[J], Journal of Magnetic Materials and Devices (No. 3, 2010)
[4] Tang Yingming, Jia Lijun, Zhang Huawu, Yin shuiming and Li Tao: Application and Research Status of Z-type Hexaferrites Used in UHF Band[J], Journal of Magnetic Materials and Devices (No. 6, 2010)
[5] Feng Zekun, Huang Aiping, Xu Dandan and Sheng Jinping: Ferroxplana Co2Z Hexagonal Ferrites Materials for Applications at Quasi-microwave Band[J], Journal of Magnetic Materials and Devices(No. 6, 2008)
[6] Hao Sikun, Li Wei, Meng Weimin, Bai Jianmin, Yang Zheng and Wei Fulin: Magnetic properties of Co_2Z type ferrite thin films[J], Journal of Magnetic Materials and Devices (No.3, 2011)
Online since: July 2011
Authors: Quang Cherng Hsu, Yan Chau Huang
Zheng: International Journal of Fatigue, Vol. 23 (2001), p. 751
Mahadevan: International Journal of Fatigue, Vol. 29 (2007), p. 1149
Hull: International Journal of Fatigue, Vol. 24, Issue 11 (2002), p. 1149
Rotem: Materials Science and Engineering, Vol. 34, Issue 2 (1978), p. 147
Yang; International Journal of Fatigue, Vol. 20, Issue 1 (1998), p. 9
Mahadevan: International Journal of Fatigue, Vol. 29 (2007), p. 1149
Hull: International Journal of Fatigue, Vol. 24, Issue 11 (2002), p. 1149
Rotem: Materials Science and Engineering, Vol. 34, Issue 2 (1978), p. 147
Yang; International Journal of Fatigue, Vol. 20, Issue 1 (1998), p. 9