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Inherent tensile strength of molybdenum nanocrystals

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Article: 045004 | Received 08 May 2009, Accepted 29 Jul 2009, Published online: 12 Oct 2009

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Miroslav Černý, Petr Řehák & Jaroslav Pokluda. (2017) The origin of lattice instability in bcc tungsten under triaxial loading. Philosophical Magazine 97:32, pages 2971-2984.
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S. Kotrechko, O. Ovsjannikov, N. Stetsenko, I. Mikhailovskij, T. Mazilova & M. Starostenkov. (2016) Yield strength temperature dependence of tungsten nanosized crystals: experiment and simulation. Philosophical Magazine 96:5, pages 473-485.
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T.I. Mazilova, V.A. Ksenofontov, V.N. Voyevodin, E.V. Sadanov & I.M. Mikhailovskij. (2011) Mechanical recrystallization of ultra-strength tungsten nanoneedles. Philosophical Magazine Letters 91:4, pages 304-312.
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Articles from other publishers (20)

Muhammad Jamaluddin Ahmed, Ayesha Afrin & Muhammad Emdadul Haque. (2021) A highly sensitive and selective spectrofluorimetric method for the determination of molybdenum at pico-trace levels in various matrices using N-(pyridin-2-yl)-quinoline-2-carbothioamide. European Journal of Chemistry 12:1, pages 1-12.
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A.A. Mazilov & A.V. Noskov. (2019) TENSILE STRENGTH OF SURFACE NANOFIBERS IN TUNGSTEN. Problems of Atomic Science and Technology, pages 61-66.
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S. О. Kotrechko, O. V. Ovsyannikov & V. V. Lidych. (2018) Influence of Crystallographic Orientation on Regularities of Size Effect under a Tension of a Nanowire of Molybdenum. METALLOFIZIKA I NOVEISHIE TEKHNOLOGII 40:2, pages 183-199.
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Sergiy Kotrechko, Olexandr Ovsijannikov, Igor Mikhailovskij & Nataliya Stetsenko. 2018. Molecular Dynamics. Molecular Dynamics.
Y. Mao, J.W. Coenen, J. Riesch, S. Sistla, J. Almanstötter, B. Jasper, A. Terra, T. Höschen, H. Gietl, Ch. Linsmeier & C. Broeckmann. (2018) Influence of the interface strength on the mechanical properties of discontinuous tungsten fiber-reinforced tungsten composites produced by field assisted sintering technology. Composites Part A: Applied Science and Manufacturing 107, pages 342-353.
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Sergiy Kotrechko, Andrey Timoshevskii, Eugene Kolyvoshko & Yuriy Matviychuk. (2015) Relation between the strength and dimensionality of defect-free carbon crystals. Nanoscale Research Letters 10:1.
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S. Kotrechko, A. Timoshevskii, I. Mikhailovskij, T. Mazilova, N. Stetsenko, O. Ovsijannikov & V. Lidych. (2015) Atomic mechanisms governing upper limit on the strength of nanosized crystals. Engineering Fracture Mechanics 150, pages 184-196.
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J. Pokluda, M. Černý, M. Šob & Y. Umeno. (2015) Ab initio calculations of mechanical properties: Methods and applications. Progress in Materials Science 73, pages 127-158.
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Tatjana I. Mazilova, Igor M. Mikhailovskij & Evgenij V. Sadanov. 2015. Handbook of Mechanical Nanostructuring. Handbook of Mechanical Nanostructuring 67 80 .
G. Sh. Boltachev, N. B. Volkov & E. A. Chingina. (2014) Nanopowders in dynamic magnetic pulse compaction processes. Nanotechnologies in Russia 9:11-12, pages 650-659.
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S. Kotrechko, A. Timoshevskij, S. Yablonovskii, I. Mikhailovskij, T. Mazilova & V. Lidych. (2014) The Absolute Upper Limit of Material Strength and Ways to Reach it. Procedia Materials Science 3, pages 391-396.
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Sergiy Kotrechko, Igor Mikhailovskij, Tatiana Mazilova & Oleksandr Ovsjannikov. (2013) Strength Hierarchy for Nano-Sized Crystals. Key Engineering Materials 592-593, pages 301-306.
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G. Sh. Boltachev, K. E. Lukyashin, V. A. Shitov & N. B. Volkov. (2013) Three-dimensional simulations of nanopowder compaction processes by granular dynamics method. Physical Review E 88:1.
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M. Černý, P. Šesták, J. Pokluda & M. Šob. (2013) Shear instabilities in perfect bcc crystals during simulated tensile tests. Physical Review B 87:1.
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Roman Krahne, Liberato Manna, Giovanni Morello, Albert Figuerola, Chandramohan George & Sasanka DekaRoman Krahne, Liberato Manna, Giovanni Morello, Albert Figuerola, Chandramohan George & Sasanka Deka. 2013. Physical Properties of Nanorods. Physical Properties of Nanorods 241 269 .
Miroslav Černý, Petr Šesták & Jaroslav Pokluda. (2012) Strength of bcc crystals under combined shear and axial loading from first principles. Computational Materials Science 55, pages 337-343.
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J. Pokluda. (2012) Theoretical strength of solids: recent results and applications. Materials Science 47:5, pages 575-582.
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S. A. Kotrechko, A. A. Mazilov, T. I. Mazilova, E. V. Sadanov & I. M. Mikhailovskij. (2012) Experimental determination of the mechanical strength of monatomic carbon chains. Technical Physics Letters 38:2, pages 132-134.
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I. M. Mikhailovskij, T. I. Mazilova, V. N. Voyevodin & A. A. Mazilov. (2011) Inherent strength of grain boundaries in tungsten. Physical Review B 83:13.
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Roman Krahne, Giovanni Morello, Albert Figuerola, Chandramohan George, Sasanka Deka & Liberato Manna. (2011) Physical properties of elongated inorganic nanoparticles. Physics Reports 501:3-5, pages 75-221.
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