Experimental Study of Whisker Formation and Properties of Spheroplastic under Shock-Wave Loading
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M. Markov | E. Savenkov | Y. Milekhin | D. N. Sadovnichii | S. Malinin | K. Sheremet’ev | A. I. Potapenko | A. A. Cheprunov | R. V. Ul’yanenkov | N. Pertsev
[1] M. Markov,et al. Formation of Nanowhiskers in Tungsten-Containing Syntactic Foam under Nanosecond Relativistic Electron Beam , 2019, Doklady Chemistry.
[2] W. Hager,et al. and s , 2019, Shallow Water Hydraulics.
[3] V. Aulchenko,et al. Investigations of fast processes by X-ray diffraction methods at the Siberian Synchrotron and Terahertz Radiation Center , 2018, Physics-Uspekhi.
[4] V. Matyushenko,et al. Formation of nanostructures during coagulation of semiconductors in superfluid helium , 2017, High Energy Chemistry.
[5] S. A. Bordzilovskii,et al. Time of hot-spot formation in shock compression of microballoons in a condensed medium , 2016 .
[6] S. Bose,et al. Exceptional microwave absorption in soft polymeric nanocomposites facilitated by engineered nanostructures , 2016 .
[7] A. Okotrub,et al. Diagnostics of the structure and composition of ultrafine carbon obtained by detonation , 2014, Journal of Structural Chemistry.
[8] A. S. Zharkov,et al. Results of research into the physicochemical processes of detonation synthesis and nanodiamond applications , 2013, Nanotechnologies in Russia.
[9] V. Khomich,et al. Formation of periodic nanodimensional structures on the surface of solids during phase and structural transformations , 2012 .
[10] V. Choudhary,et al. Improved Electromagnetic Interference Shielding Response of Poly(aniline)-Coated Fabrics Containing Dielectric and Magnetic Nanoparticles , 2012 .
[11] M. S. Sarto,et al. Effect of short carbon fibers and MWCNTs on microwave absorbing properties of polyester composites containing nickel-coated carbon fibers , 2010 .
[12] G. E. Cirlin,et al. Semiconductor nanowhiskers: Synthesis, properties, and applications , 2009 .
[13] Krishna Shankar,et al. Effect of strain rate and density on dynamic behaviour of syntactic foam , 2008 .
[14] K. Ten,et al. Physicochemical model of detonation synthesis of nanoparticles from metal carboxylates , 2008 .
[15] A. Rempel. Nanotechnologies. Properties and applications of nanostructured materials , 2007 .
[16] A A Rempel. Nanotechnologies. Properties and applications of nanostructured materials , 2007 .
[17] S. Priya,et al. Characterization of Mechanical and Electrical Properties of Epoxy-Glass Microballoon Syntactic Composites , 2006 .
[18] N. Gupta,et al. Microballoon Wall Thickness Effects on Properties of Syntactic Foams , 2004 .
[19] D. Kim,et al. Morphology of Si nanowires fabricated by laser ablation using gold catalysts , 2004 .
[20] L. A. Merzhievskii. Simulation of the dynamic compression of porous Al2O3 , 1999 .
[21] E. I. Romenskii. Relaxation model for describing the strain of porous materials , 1988 .
[22] S. Novikov,et al. Propagation of shock waves in foamed polystyrene , 1979 .