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Online since: March 2013
Authors: S. Saranya, A. Sudha, P. Usha Rajalakshmi, R. Saranya, Rachel Oommen Rachel Oommen
Introduction
Titanium dioxide (TiO2) is a versatile material and has novel properties suitable for a number of technologically important applications.
In addition with the novel properties the material has many advantages such as non-toxicity, high photocatalytic activity, high dielectric constant and it can be synthesised in a cost effective manner.
Sci. 39(2004)2915 [ 9] S.Karuppuchamy, N.Suzuki, S.Ito, T.Endo, Current Applied Physics 2(2009)243-248 [ 10] J.C.Plenet, A.Brioude, E.Bernstein, F.Lequevre, J.Dumas, J.Mugnier, Optical materials 13(2004)2915 [ 11] Arturo I Martinez, Dwight R Acosta, Alcides A Lopez, J.
Battiston, Thin Solid Films 371(2000)126 [ 18] H.M.Pathan, C.D.Lakhande, Bulletin of Material Science, 27(2004)85 [ 19] M.Hemissi, H.Amardjia-Adanani, Digest Journal of Nanomaterials and Biostructures 2(2007) 299 [ 20] S.Subramanian, P.Chitra lekha, D.Pathinettam Padiyam, Current Applied Physics, 9, (2009)1140 [ 21] J.Tauc, R.Grigorovici, A.Vancu, Phys.
Masjuki, International Journal of Chemical and Biological Engineering, 2,(2008)96
In addition with the novel properties the material has many advantages such as non-toxicity, high photocatalytic activity, high dielectric constant and it can be synthesised in a cost effective manner.
Sci. 39(2004)2915 [ 9] S.Karuppuchamy, N.Suzuki, S.Ito, T.Endo, Current Applied Physics 2(2009)243-248 [ 10] J.C.Plenet, A.Brioude, E.Bernstein, F.Lequevre, J.Dumas, J.Mugnier, Optical materials 13(2004)2915 [ 11] Arturo I Martinez, Dwight R Acosta, Alcides A Lopez, J.
Battiston, Thin Solid Films 371(2000)126 [ 18] H.M.Pathan, C.D.Lakhande, Bulletin of Material Science, 27(2004)85 [ 19] M.Hemissi, H.Amardjia-Adanani, Digest Journal of Nanomaterials and Biostructures 2(2007) 299 [ 20] S.Subramanian, P.Chitra lekha, D.Pathinettam Padiyam, Current Applied Physics, 9, (2009)1140 [ 21] J.Tauc, R.Grigorovici, A.Vancu, Phys.
Masjuki, International Journal of Chemical and Biological Engineering, 2,(2008)96
Investigation on Vibration Reduction Effects of a New Vibration Isolation Module for Pier Foundation
Online since: May 2012
Authors: Guang Cai Yan, Zhao Xia Ma, Wei Ping Xie
With the application of high strength and light weight materials, special structural systems and new construction techniques, the footbridge structures grow with longer span and more flexibility.
Material parameters of the soil are shown in Table 1.
Engineering Mechanics,24(12):31-37.China academy of railway science.
Journal of the China Rail Way Society, 18(1): 101-106. (1996)
Journal of Vibration and Shock, 2:14-21. (1990)
Material parameters of the soil are shown in Table 1.
Engineering Mechanics,24(12):31-37.China academy of railway science.
Journal of the China Rail Way Society, 18(1): 101-106. (1996)
Journal of Vibration and Shock, 2:14-21. (1990)
Online since: December 2022
Authors: Dong Feng Guo, Xiao Jun Ma, Xiao Yan Ma, Jian Hong Fang
., Xining 810000, China
2School of Materials Science and Engineering, Chang'an University, Xi'an 710061, China
3Qinghai Research Institute of Transportation, Xining 810016, China
a4849243@qq.com, b2020131068@chd.edu.cn, cmxy-19850102@163.com d13709719909@163.com
Keywords: road engineering, Rubber asphalt, Rheological properties, AFM
Abstract.
Material and Test Material.
Materials & Design, 137:446-462, 2018. https://doi.org/10.1016/j.matdes.2017.10.035 [3] Zeng W., Wu S.
Construction and Building Materials, 160(Jan.30):620-627, 2018. https://doi.org/10.1016/j.conbuildmat.2017.11.047 [4] WANG Q.
Journal of materials Science, 37(3):557-566, 2002. https://doi.org/10.1023/A:1013721708572 [9] Guo S, Zhang Y, Tang H.
Material and Test Material.
Materials & Design, 137:446-462, 2018. https://doi.org/10.1016/j.matdes.2017.10.035 [3] Zeng W., Wu S.
Construction and Building Materials, 160(Jan.30):620-627, 2018. https://doi.org/10.1016/j.conbuildmat.2017.11.047 [4] WANG Q.
Journal of materials Science, 37(3):557-566, 2002. https://doi.org/10.1023/A:1013721708572 [9] Guo S, Zhang Y, Tang H.
Online since: April 2018
Authors: Kai F. Karhausen, Marco Teller, Alexander Kraemer, Holger Aretz, Gerhard Hirt, Zhao Liu
Roll bonding is a joining-by-forming process to permanently join two or more layers of different materials by hot or cold rolling.
Introduction Roll bonding is a widely applied industrial process to permanently combine two or more layers of different materials by hot or cold rolling.
The materials for the top- and base-layer are AA4xxx and AA3xxx, respectively.
Hirt, A New FE-Model for the Investigation of Bond Formation and Failure in Roll Bonding Process, Material Science Forum 854, 2016, 152-157 [8] C.
Allwood, The influence of deformation conditions in solid-state aluminium welding processes on the resulting weld strength, Journal of Materials Processing Technology 214 (2014) 2576–2592 [10] Information on http://abaqus.software.polimi.it/v6.14/books/usb/default.htm [11] R.
Introduction Roll bonding is a widely applied industrial process to permanently combine two or more layers of different materials by hot or cold rolling.
The materials for the top- and base-layer are AA4xxx and AA3xxx, respectively.
Hirt, A New FE-Model for the Investigation of Bond Formation and Failure in Roll Bonding Process, Material Science Forum 854, 2016, 152-157 [8] C.
Allwood, The influence of deformation conditions in solid-state aluminium welding processes on the resulting weld strength, Journal of Materials Processing Technology 214 (2014) 2576–2592 [10] Information on http://abaqus.software.polimi.it/v6.14/books/usb/default.htm [11] R.
Online since: June 2011
Authors: Wei Li, Feng Fei Wang, Xiao Bing Du, Juan Zhang
Through the installation of filters and the selection of the special background material to ensure image quality and reduce the difficulty on image processing.
Fund project: Chang’an University of basic research projects(CHD2009JC080) The postdoctoral granted financial support from China Postdoctoral Science Foundation(20100470085) Reference: [1] Wolf,f T.
ASTM Journal of Testing and Evaluation,2000 :50-62
Research on the Automatic Measurement System of the Asphalt Mixture, Chinese Journal of Scientific Instrument [M], 2006, 4
[5]WuWen liang,Wang Duan yi,Zhang Xiao ning, et al.Stereology method of estimating gradation of asphalt mixtures[J].China Journal of Highway and Transport,2009,22(5):29-33
Fund project: Chang’an University of basic research projects(CHD2009JC080) The postdoctoral granted financial support from China Postdoctoral Science Foundation(20100470085) Reference: [1] Wolf,f T.
ASTM Journal of Testing and Evaluation,2000 :50-62
Research on the Automatic Measurement System of the Asphalt Mixture, Chinese Journal of Scientific Instrument [M], 2006, 4
[5]WuWen liang,Wang Duan yi,Zhang Xiao ning, et al.Stereology method of estimating gradation of asphalt mixtures[J].China Journal of Highway and Transport,2009,22(5):29-33
Online since: February 2020
Authors: Ahmed M. Karmokov, Rustam Kalmykov, Zaira Ansokova
For the synthesized samples, structural and phase changes were investigated, and their influence on the thermoelectric properties of materials was studied.
The authors are grateful to the Center for Collective Use of X-ray Diagnostics of Materials at KBSU for the X-ray phase analysis of the samples studied.
Chijikov Tellurium and telluride, Science, Moscow, 1966
Inorganic materials, 6, 19, 889 (1983)
Series: Journal of Physics: Conf.
The authors are grateful to the Center for Collective Use of X-ray Diagnostics of Materials at KBSU for the X-ray phase analysis of the samples studied.
Chijikov Tellurium and telluride, Science, Moscow, 1966
Inorganic materials, 6, 19, 889 (1983)
Series: Journal of Physics: Conf.
Online since: July 2015
Authors: Vadim Sh. Sufiiarov, Evgenii V. Borisov, Igor A. Polozov, Anatoly A. Popovich, Maxim Yu. Maximov
Supersplavy II: Zharoprochnyye materialy dlya aerokosmicheskikh i energeticheskikh ustanovok [Superalloys II: High-temperature materials for aerospace and industrial plants].
Microstructure and mechanical behaviour of Ti―6Al―7Nb alloy produced by selective laser melting //Materials Characterization. – 2011. – Т. 62. – №. 5. – С. 488-495
Manufacture by selective laser melting and mechanical behavior of commercially pure titanium //Materials Science and Engineering: A. – 2014. – Т. 593. – С. 170-177
As-fabricated and heat-treated microstructures of the Ti-6Al-4V alloy processed by selective laser melting //Metallurgical and Materials Transactions A. – 2011. – Т. 42. – №. 10. – С. 3190-3199
Ph.D. thesis in Engineering Science, Saint-Petersburg: SPbSTU, 2013. - 189 p.
Microstructure and mechanical behaviour of Ti―6Al―7Nb alloy produced by selective laser melting //Materials Characterization. – 2011. – Т. 62. – №. 5. – С. 488-495
Manufacture by selective laser melting and mechanical behavior of commercially pure titanium //Materials Science and Engineering: A. – 2014. – Т. 593. – С. 170-177
As-fabricated and heat-treated microstructures of the Ti-6Al-4V alloy processed by selective laser melting //Metallurgical and Materials Transactions A. – 2011. – Т. 42. – №. 10. – С. 3190-3199
Ph.D. thesis in Engineering Science, Saint-Petersburg: SPbSTU, 2013. - 189 p.
Online since: October 2009
Authors: Feng Chen, Yu Feng Zheng, Li Li, Yi Guo Song
Introduction
Fastener ring is an important practical engineering materials connection method.
The preparation technique of TiNiNb alloy fastener ring is a hot concern for materials engineers.
Zhao: Solid State and Materials Science 9 (2005), p. 296-302 [3] H.X.
Stöver: Journal of Alloys and Compounds 463 (2008), p. 250-256 [4] H.Q.
Xu: Shape memory material (shanghai jiao tong university press, China 2000) [6] Wu Ye, Meng Xiang long, Cai Wei and Zhao Lian cheng: materials science & technology, vo1.13 No.3 June, 2005 [7] L.
The preparation technique of TiNiNb alloy fastener ring is a hot concern for materials engineers.
Zhao: Solid State and Materials Science 9 (2005), p. 296-302 [3] H.X.
Stöver: Journal of Alloys and Compounds 463 (2008), p. 250-256 [4] H.Q.
Xu: Shape memory material (shanghai jiao tong university press, China 2000) [6] Wu Ye, Meng Xiang long, Cai Wei and Zhao Lian cheng: materials science & technology, vo1.13 No.3 June, 2005 [7] L.
Online since: August 2013
Authors: Xiao Chu Liu, Jun Huang, Li Yao, Hao Wang, Shuo Chun Liu
Experimental materials: separate probe (the graphite content is 5%, 10%, 15%, 20%, 25%, 30%, 40%, 50%), multimeter, a voltage adjustable DC power supply, number of wires.
Fig.5 New materials probe with one pin 1- inner core;2-inductor Experimental equipment: soil humidity sensor, one-pin probe graphite content of 5%, 10%, 15%, 20%, 25%, 30%, 40%, 50%, Multimeter, DC power supply, number of wires.
Acknowledgements This study was supported by the Science and Technology Project of Guangdong Province (No. 2010B020314006, No.2012A010800048 and No.2012A020200011) and the Science and Technology Planning Project of Yuexiu District (No.2011-GX-036).
Master of Science Thesis, Mechanical Design and Theory, Guangzhou University, 2010 [3] L.
Journal of UEST of China, Vol. 32 No.6 (2003), p. 639-640
Fig.5 New materials probe with one pin 1- inner core;2-inductor Experimental equipment: soil humidity sensor, one-pin probe graphite content of 5%, 10%, 15%, 20%, 25%, 30%, 40%, 50%, Multimeter, DC power supply, number of wires.
Acknowledgements This study was supported by the Science and Technology Project of Guangdong Province (No. 2010B020314006, No.2012A010800048 and No.2012A020200011) and the Science and Technology Planning Project of Yuexiu District (No.2011-GX-036).
Master of Science Thesis, Mechanical Design and Theory, Guangzhou University, 2010 [3] L.
Journal of UEST of China, Vol. 32 No.6 (2003), p. 639-640
Online since: August 2014
Authors: Rong Shean Lee, Ta Wei Chien
On the contrary, the trend in the first quadrant of FLD often diverges between different materials.
Tiernan, A review of planar biaxial tensile test systems for sheet metal, Journal of materials processing technology, Vol. 198(1) (2008), 1-13
Poggi, Mechanical modelling of monofilament technical textiles, Computational Materials Science 42.4 (2008) 679-691
Ferron, Identification of sheet metal plastic anisotropy using heterogeneous biaxial tensile tests, International Journal of Mechanical Sciences 52.4 (2010) 572-580
Kuroda, Measurement and analysis of differential work hardening in cold-rolled steel sheet under biaxial tension, Journal of Materials Processing Technology 80 (1998) 517-523
Tiernan, A review of planar biaxial tensile test systems for sheet metal, Journal of materials processing technology, Vol. 198(1) (2008), 1-13
Poggi, Mechanical modelling of monofilament technical textiles, Computational Materials Science 42.4 (2008) 679-691
Ferron, Identification of sheet metal plastic anisotropy using heterogeneous biaxial tensile tests, International Journal of Mechanical Sciences 52.4 (2010) 572-580
Kuroda, Measurement and analysis of differential work hardening in cold-rolled steel sheet under biaxial tension, Journal of Materials Processing Technology 80 (1998) 517-523