38 citations to https://www.mathnet.ru/eng/mmj383
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Cornelie Leopold, Handbook of the Mathematics of the Arts and Sciences, 2019, 1
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Chao Gao, Josef Kiendl, “Short review on architectured materials with topological interlocking mechanisms”, Mat Design Process Comm, 1:1 (2019), e31
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A. V. Dyskin, Yuri Estrin, E. Pasternak, Springer Series in Materials Science, 282, Architectured Materials in Nature and Engineering, 2019, 23
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Zareiyan B., Khoshnevis B., “Effects of Interlocking on Interlayer Adhesion and Strength of Structures in 3D Printing of Concrete”, Autom. Constr., 83 (2017), 212–221
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Djumas L., Simon G.P., Estrin Yu., Molotnikov A., “Deformation Mechanics of Non-Planar Topologically Interlocked Assemblies With Structural Hierarchy and Varying Geometry”, Sci Rep, 7 (2017), 11844
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Piirainen V.Y., Estrin Y.Z., “Topological Interlocking as a Principle of Engineering Design in Consruction of Marine and Coastal Structures”, J. Min. Inst., 226 (2017), 480–486
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Siegmund T., Barthelat F., Cipra R., Habtour E., Riddick J., “Manufacture and Mechanics of Topologically Interlocked Material Assemblies”, Appl. Mech. Rev., 68:4 (2016), 040803
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Djumas L., Molotnikov A., Simon G.P., Estrin Yu., “Enhanced Mechanical Performance of Bio-Inspired Hybrid Structures Utilising Topological Interlocking Geometry”, Sci Rep, 6 (2016), 26706
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Li J., Yuan G., Zhang Yu., Zhao Ya., “Study on a General Cutting Algorithm of Complex Blocks”, Geotech. Geol. Eng., 33:5 (2015), 1193–1203
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Zheng Yinhe, Xia Lu, Yu Qingchun, “a Method For Identifying Three-Dimensional Rock Blocks Formed By Curved Fractures”, Comput. Geotech., 65 (2015), 1–11