31 citations to https://www.mathnet.ru/rus/mmj383
  1. Vianney Loing, Olivier Baverel, Jean-François Caron, Romain Mesnil, “Free-form structures from topologically interlocking masonries”, Automation in Construction, 113 (2020), 103117  crossref
  2. Casapulla C., Mousavian E., Zarghani M., “a Digital Tool to Design Structurally Feasible Semi-Circular Masonry Arches Composed of Interlocking Blocks”, Comput. Struct., 221 (2019), 111–126  crossref  isi  scopus
  3. Cornelie Leopold, Handbook of the Mathematics of the Arts and Sciences, 2019, 1  crossref
  4. Cornelie Leopold, Handbook of the Mathematics of the Arts and Sciences, 2019, 1  crossref
  5. Chao Gao, Josef Kiendl, “Short review on architectured materials with topological interlocking mechanisms”, Mat Design Process Comm, 1:1 (2019), e31  crossref
  6. A. V. Dyskin, Yuri Estrin, E. Pasternak, Springer Series in Materials Science, 282, Architectured Materials in Nature and Engineering, 2019, 23  crossref
  7. 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  crossref  isi  scopus
  8. 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  crossref  isi  scopus
  9. 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  isi
  10. 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  crossref  isi  scopus
Предыдущая
1
2
3
4
Следующая