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Online since: April 2009
Authors: Krzysztof Jan Kurzydlowski, Małgorzata Lewandowska
This offers fast processing of materials, whose superplastic forming would be restricted otherwise.
Second phase particles are inherent microstructural elements of engineering materials.
They also provide the light-weight materials with a competitive edge.
Sci. 43, 7299-7306 [15] Kulczyk M., Pachla W., Mazur A., Diduszko R., Garbacz H., Lewandowska M. and Łojkowski W., Kurzydłowski K.J. (2005) Materials Science Poland 23, 839-846 [16] Horita Z., Fujinami T., Nemoto M. and Langdon T.G. (2001) J.
Sci. 43, 74957500 [24] Schiotz J., di Tolla F.D. and Jacobsen K.W. (1998) Nature 391, 561-563 [25] Kim H.S. and Estrin Y. (2005) Acta mater. 53, 765-772 [26] Dobosz R., Wejrzanowski T. and Kurzydlowski K.J. (2009) Computer Methods in Materials Science, Vol. 9, No. 1 [27] Kurzydlowski K.J. and Bucki J.J. (1993) Acta metal. mater. 42, 3141-3146 [28] Dobosz R. (2009) PhD Thesis, Warsaw University of Technology, Warsaw [29] Lewandowska M. (2006) Journal of Microscopy 224, 34-37 [30] Lewandowska M. (2006) Archives of Metallurgy and Materials 51, 569-574
Online since: November 2010
Authors: Guo Ying Zeng, Deng Feng Zhao
Structural Intensity Analysis of Shells Structure Under Harmonic Excitation Guoying Zenga and Dengfeng Zhaob School of Manufacturing Science and Engineering, Southwest University of Science and Technology, Mianyang, Sichuan Province 621010, P.R.
The material properties of the model are modulus of elasticity E=200GPa, poisson's ratio ν=0.33, density ρ=7850kg/m3, damping ratio η=0.005.
PAVIC: Journal of Sound and Vibration, Vol. 164(1993) No.1, pp.29-43
Lu: Journal of Sound and Vibration, Vol. 280 (2005), pp. 449–454
Lu: International Journal of Impact Engineering, Vol. 31(2005), pp. 957–975
Online since: June 2012
Authors: Juan Cong, Yun Wang, Yun Pu Du, Zhi Dong Huang, Liang Zhao, Guang Yang
Liu: Journal of Yanshan University (1984)No. 1 , p. 18-24 (In Chinese) [2] J.Y.
Wu: Journal of Jiangsu University(Natural Science Edition) Vol. 7 (1986), p. 71-79 (In Chinese) [4] S.P.
Cui: Guangxi Journal of Light Industry (2009)No. 2 , p. 32-33 (In Chinese) [5] Y.M.
Zhang: Journal of Machine Design Vol. 21 (2004), p. 51-52 (In Chinese) [6] E.B.
Wang: Advanced Materials Research Vol. 442 (2012), p. 240-245 [10] F.S.
Online since: December 2012
Authors: Shu Zhen Wu, Tie Hu Wang
Such as cutting tools, welding electrodes, coating materials, lamp filament tube cathode [1,2].
Structures and chemistry of tungsten powder from doped and undoped tungsten blue oxide.submitted to Journal of Materials Science(1989) [[5] A.Pebler, G.G.Sweeney, P.M.Castle.
SIMS analysis of doped tungsten. submitted to Metallurgical and Materials Transactions A.(1975) [[6] J.Brett,S.Friedman.
Metallurgical and Materials Transactions A (1972) [7] Y.YuFeng.
Clem: submitted to Journal of Materials Research (2003) [5] P.G.
Online since: May 2014
Authors: Maria Helena Robert, Janez Kopač, Davorin Kramar, Everton Marques Nascimento, Alexandre Fonseca Jorge
Shaping materials containing porous constituents is a critical issue.
Pilone, Effect of wall microstructure and morphometric parameters on the crush behaviour of Al alloy foams, Materials Science and Engineering A 479 (2008) 58-64
Jorge, Processing and properties of AA7075/porous SiO2-MgO-Al2O3 composite, JAMME, International Journal of Achievement in Materials and Manufacturing Engineering 54 1 (2012) 7-15
Silva, Thixoinfiltration: a new approach to produce cellular and other low density metallic materials, Journal of Achievements in Mechanical and Engineering Manufacturing 34 (2010) 180-187
Kim, Machinability of Engineering Materials in Abrasive Water Jet Machining, International Journal of Water Jet Technology 2 (1995) 103-110
Online since: August 2013
Authors: Yong Jiang Shen, Hai Hao Cui, Biao Deng, Wen Kang
The anti-slide piles and landslide bed rock can be regarded as linear elastic materials in finite element analysis.
Landslide mass soils can be regarded as the elastic-plastic materials.
Acknowledgements This research is financially supported by the National Natural Science Foundation of China (nos. 41102171) and the China Postdoctoral Science Foundation(nos. 2012M521556) and the Fundamental Research Funds for the Central Universities(nos. 2011QNZT115)and the Freedom Explore Program of Central South University and the Postdoctoral Science Foundation of Central South University.
China Journal of Geotechnical Engineering,2008,30(8):1033-1037
Chinese Journal of Rock Mechanics and Engineering,2010,29(supp.1):3034–3038
Online since: October 2015
Preface Starting with 1999, the International Conference on Materials Science and Engineering - BraMat (Brasov Materials), organized every odd year in Brasov at Transilvania University, is one of the main important scientific events in the field of Materials Science and Engineering, from Romania and Europe.
BraMat International Conference 2015 was organized by "Transilvania" University of Brasov - Faculty of Materials Science and Engineering in cooperation with Academy of Technical Sciences from Romania, the Foundry Technical Association of Romania, the Association for Heat Treatment and Surface Engineering and the Romanian Welding Society.
The conference's contributions have been presented, oral or poster, in the frame of the traditional sections of the conference, as follows: Equipment and Technologies in Materials Engineering, Materials Science, Heat Treatment and Surface Engineering, Advanced Welding EcoTechnologies and Safety, Modelling and Simulation in Materials Engineering.
Out of all papers, 69 authors have chosen to publish their contributions in Advanced Materials Research journal edited by Trans Tech Publications.
Conference Steering Committee Daniel MUNTEANU, Conference Chairman Vicerector of Transilvania University of Brasov, ROMANIA Andreas ANAYIOTOS Vicerector of Cyprus University of Technology, Limassol, CYPRUS Luis CUNHA Minho University, Braga, PORTUGAL Teodor MACHEDON-PISU Dean of Materials Science and Engineering Faculty, Transilvania University of Brasov, ROMANIA Cornel SAMOILĂ Academy of Technical Sciences of Romania Transilvania University of Brasov, ROMANIA Sefik SUZER Bilkent University, Ankara,TURKEY Doru M.
Online since: January 2013
Authors: Yan Li, Yong Li, Ming Li Cao, Xing Jun Lv
The results indicated that the pumice concrete could be developed as the green and multi-functional concrete materials in the future.
Pumice can be used in building materials, such as lightweight aggregate pumice concrete [4, 5], cement mixing materials [6], foam microcrystalline glass [7, 8] and pumice block [9-13], pumice plates and so on.
Journal of Jilin University(Earth Science Edition). (2007) 239-242
Heilongjiang Science and Technology Information. 13 (2010) 277-278
Journal of Hebei Institute of Architecture and Civil Engineering. 25 (2007) 1-2
Online since: January 2012
Authors: L. Zheng, X.H. Zhang, Zhen Hua Qing, Dun Wen Zuo, F. Xu
Presently, both materials have found commercial applications.
Presently, both materials have found commercial applications.
Properties and Low-Pressure Synthesis of B-N Materials and Diamond Similarly to carbon, there are some analogue phases in the B-N system and all of them are synthetic materials.
You and N.F.Chen: Journal of inorganic materials Vol 22(3) (2007), p.385–390 [19] Z.J.
Feng, G.J.Xing, G.H.Chen and etc: Journal of functional material and device.
Online since: October 2014
Authors: Yun Ying Liu, Yan Zhang, Long Di Cheng
This paper explains that the origin of the technique of cotton cultivation in China needs further demonstration according to historical data and archaeological materials.
Scholars from Shanghai Textile Science and Technology Research Institute proved that this cotton cloth’s cotton fiber was similar to the cotton blanket which was unearthed from Gao tomb of Lanxi, Zhejiang Province in the Southern Song Dynasty (Fig2), as well as the ceiba of modern Hainan Island [3].
Because of these arguments, the origin of the cotton cultivation in China needs further archeological discoveries and demonstrations The Spread of the Technique of Ancient Cotton Cultivation in Ancient China According to the literary texts before Tang Dynasty,[4] the technique of cotton cultivation before Tang Dynasty was mainly popularized in Yunnan, Hainan, Guangdong, Guangxi, Fujian, and Guizhou Provinces, etc. 2.1 The shrub ceiba and Levant cotton in ancient southwest China The ancient southwest area started from the perennial ceiba,[5] which was similar to the cotton described in the Indian archeological materials.
The cottonseed was small with thick quilt and short flock; it was ash black with brownness and well tended appearance, which was identified by Chinese Academy of Agricultural Sciences as cottonseed, namely African cottonseed.
Cultural Relics.1980(6)12-21 [3] Yang Ruji, Studies on a cotton blanket of the Sung Dynasty, Journal of Donghua University(natural science).1979(2)101-108 [4] Hong Yongbin, The cotton production and industry in Yuan Dynasty, the Chinese History of Science and Technology.1984(3)55-63 [5] Wu Guoqiang,Gong Chunsheng, Study on the cotton cultivation techniques in Ancient China, the Chinese Agricultural Archaeology.2011(1)256-258 [6] Sha Biti, Research on the Xinjiang ancient cotton and textile from the archaeological materials, Cultural Relics.1973(10)49-53