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ARTICLES

Dynamic impact model of plastic deformation between micro-particles and flat surfaces without adhesion

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Pages 321-330 | Received 26 Jul 2015, Accepted 26 Jan 2016, Published online: 04 Apr 2016

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Jun Xie, Ming Dong, Sufen Li, Yan Shang & Zheng Fu. (2018) Dynamic characteristics for the normal impact process of micro-particles with a flat surface. Aerosol Science and Technology 52:2, pages 222-233.
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Heino Kuuluvainen, Anssi Arffman, Anssi Järvinen, Juha Harra & Jorma Keskinen. (2017) The effect of materials and obliquity of the impact on the critical velocity of rebound. Aerosol Science and Technology 51:3, pages 301-310.
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I. A. Lyashenko. (2019) Dynamic Model of Elastoplastic Normal Collision of a Spherical Particle with a Half-Space with Allowance for Adhesion Interaction in a Contact Zone. Physics of the Solid State 61:2, pages 163-173.
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M.H. Korayem & H. Khaksar. (2019) Investigating the impact models for nanoparticles manipulation based on atomic force microscope (according to contact mechanics). Powder Technology 344, pages 17-26.
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Aleksandras Chlebnikovas. 2019. Smulkiadispersėms kietosioms dalelėms iš agresyviųjų dujų šalinti patobulinto daugiakanalio ciklono tyrimai ir kūrimas. Smulkiadispersėms kietosioms dalelėms iš agresyviųjų dujų šalinti patobulinto daugiakanalio ciklono tyrimai ir kūrimas.
Jeffrey S. Marshall. (2018) Modeling and sensitivity analysis of particle impact with a wall with integrated damping mechanisms. Powder Technology 339, pages 17-24.
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Brian D. Adamson, Morgan E. C. Miller & Robert E. Continetti. (2017) The aerosol impact spectrometer: a versatile platform for studying the velocity dependence of nanoparticle-surface impact phenomena. EPJ Techniques and Instrumentation 4:1.
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