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Online since: June 2014
Authors: Shi Long Yan, Ti Fei Han
Red lead and silicon are the major components, while selenium, antimony, silicon dioxide and some porous materials are commonly as the burning rate modifiers[1].
Hao:Explosive Materials.Vol.33(2004),p.24-27
[5] Jan Jakubko: Journal of Energetic Materials.Vol.15(1997),p.151-161
Lao, etc: Energetic Materials.Vol.13(2005),p.158-162 [11] J.F.
Wang, etc: Energetic Materials.Vol.15(2007),p.144-147
Online since: October 2011
Authors: Qin Zheng, Gui Wen Liu
Journal of Qingdao University of Science and Technology (Social Sciences).Vol. 23(2007), P. 11-16
Journal of Population Studies.
Zhejiang Social Sciences.
Journal of Chongqing Architecture University.
Economics Materials Translation Proceedings.
Online since: July 2012
Authors: Chang Xin Nai, Zhen Chong Wang, Lu Dong, Yong Zhu
Frequency dispersion less than 10 kHz mainly has a tie with induced polarization (IP) effect caused by electrochemistry, and IP frequency dispersion effect is speculated still to be observable if frequency is reduced to below 10 Hz according to the law of spectral induced polarization and the existing actual materials [16].
Journal of the University of Petroleum (Edition of Natural Science), 2003, 27(4):40~43
Journal of Daqing Petroleum Institute, 1994, 18(4):6~10
Journal of Zhejiang University (Science Edition), 2006, 33 (5): 584~587
Journal of Circuits and Systems, 2006, 11(1):143~146
Online since: September 2020
Authors: Dalibor Vojtech, Drahomír Dvorský, Angelina Strakosova
Hazell, Metallic microlattice materials: A current state of the art on manufacturing, mechanical properties and applications, Materials & Design, 95 (2016) 518-533
Ramirez, et al., Fabrication of metal and alloy components by additive manufacturing: Examples of 3D materials science.
Frazier, Metal Additive Manufacturing: A Review, Journal of Materials Engineering and Performance, 23 (2014) 1917-1928
Materials 2017,10, 8
Materials 2019, 12
Online since: December 2013
Authors: Zheng Bing Meng, Guang Liang Wu, Xin Bin Liu, Chao Yang Zhou, Lang He
CABALLERO: Materials Transactions, Vol. 51 (2010) No.4, p.625-634
Liu: Journal Of Materials And Metallurgy, Vol. 6 (2007) No.4, p. 285-289
Wang, Q.U Jiang: Materials Science and Technology, Vol.16 (2008) No. 5, p. 724-727
Duggan: Metallurgical and Materials Transaction, Vol.37 (2006) No.3, p.1055-1064
He: Materials Transactions, Vol.48 (2007) No. 11 p.2809-2815
Online since: May 2021
Authors: Siti Zulaikha Ngah Demon, Nursaadah Ahmad Poad
The rising interest in conjugated organic materials as electronics devices (OLEDs, OFETs OSCs and OPVs) has shown there is always a need to boost their technology applications.
Raman spectroscopy is an inelastic scattering phenomenon that probes molecular vibrations to provide a molecular fingerprint of materials [16].
Magnanelli, Ultrafast Raman Spectroscopy as a Probe of Local Structure and Dynamics in Photoexcited Conjugated Materials, J.
Drozdowski, The molecular structure ordering and orientation of the metallophthalocyanine CoPc, ZnPc, CuPc, and MgPc thin layers deposited on silicon substrate, as studied by micro-Raman spectroscopy, Journal of Materials Science 46 (2011) 6589-6595. https://doi.org/10.1007/s10853-011-5607-4 [14] X.
Sharma, Raman spectroscopy – Basic principle, instrumentation and selected applications for the characterization of drugs of abuse, Egyptian Journal of Forensic Sciences 6 (2016) 209-215. https://doi.org/10.1016/j.ejfs.2015.06.001 [17] Y.
Online since: April 2011
Authors: Ling Liu, Shi Xing Zhang, Yun Wang
Experimental Materials and Methods The birch samples used in the experiment hadn’t crack, flaw, scar or ulcer.
A mass of non-carbon materials break away from carbonization surface, which makes the cell walls become thinner and cell chambers becoming larger.
The application of SEM technology in wood science and the study of artificial boards.
Electrical and elastic properties of new monolithic wood-based carbon materials.
Journal of Materials Science, 2005, 21(40):63-70
Online since: October 2015
Authors: Aytalina A. Okhlopkova, Raisa V. Borisova, Tatyana A. Okhlopkova, Leonid A. Nikiforov
There are huge number of researches about UHMWPE application as a polymer matrix for anti friction materials [5].
Materials and Methods Powdered UHMWPE (Ticona GUR 4120, Germany) with an average molecular weight of 5 × 106 was used as the polymer matrix.
Weisenberger, Carbon nanotube polymer composites, Current Opinion in Solid State and Materials Science. 8 (2004) 31-37
Mechanical and Tribological Properties of Chemically Modified UHMWPE, Journal of Friction and Wear. 3 (2011) 199-204
Springer-Verlag: Berlin, Heidelberg, 2009 [13] Magda Rocha, Alexandra Mansur, Herman Mansur, Characterization and accelerated ageing of UHMWPE used in orthopedic prosthesis by peroxide, Materials. 2 (2009) 562-576 [14] K.
Online since: July 2015
Authors: Sureeporn Uttiya, Ornella Cavalleri, Michele Biasotti, Marcella Pani, Daniele Caviglia, Lorenzo Mattera, Maria Maddalena Carnasciali, Maurizio Canepa
Mesoporous Titanium Dioxide Thin Films on Quartz via Electrochemical Anodisation Process Sureeporn Uttiya1, a, Ornella Cavalleri1, b, Michele Biasotti2, c, Marcella Pani3, d, Maria Maddalena Carnasciali3, 4, e, Daniele Caviglia5, f , Lorenzo Mattera1, g and Maurizio Canepa1, h 1Department of Physics (DIFI), University of Genoa, Italy 2National Institute of Nuclear Physics (INFN), University of Genoa, Italy 3Department of Chemistry and Industrial Chemistry (DCCI), University of Genoa, Italy 4 National Interuniversity Consortium of Materials Science and Technology (INSTM), Italy 5Department of Electrical, Electronic, and Telecommunications Engineering, and Naval Architecture (DITEN), University of Genoa, Italy asureeporn.uttiya@spin.cnr.it, bcavalleri@fisica.unige.it, cmichele.biasotti@ge.infn.it, dmarcella@chimica.unige.it, ecarnasciali.unige@gmail.com, fdaniele.caviglia@gmail.com, gmattera@fisica.unige.it, hcanepa@fisica.unige.it Keywords: Titanium Dioxide, Mesoporous
Materials and Methods Ti films (~600 nm thick) were deposited on cleaned 1 ´ 1 cm2 quartz substrates by electron beam evaporation in high vacuum (10-8 mbar), at evaporation rates of about 20 Å/sec.
Öztürk: International Journal of Hydrogen Energy Vol. 35 (2010), p. 4420
Grimes: Solar Energy Materials & Solar Cells Vol. 90 (2006), p. 2011
Cavalleri: Journal of Materials Science & Nanotechnology Vol. 1 (2014), p. 1
Online since: April 2008
Authors: Wen Yan Liu, Ji Bin Liu, Kai Miao, Rong Dong Han, Ping He Li, Lai Wang
School of Materials Science and Engineering, Dalian Uniersity of Technology, Dalian, China; 2.
Materials and Experimental Procedure 2.1 Materials The steel used in the present study was copper-bearing age-hardening steel.
Welding Journal, Vol.68, No.12(1989), p. 467s-472s
Physical Simulation in Materials and Hot-working.
Science Press, 1999, p.12.