Open Access
Issue
MATEC Web Conf.
Volume 376, 2023
Conference on Advanced Materials for Engineering and Functional Purposes (AMEFP 2022)
Article Number 01008
Number of page(s) 8
Section Advanced Materials Technologies and Application
DOI https://doi.org/10.1051/matecconf/202337601008
Published online 13 April 2023
  1. K.S. Besedina, N.A. Lavrov, V.V. Barskov, Using Additive Technologies in the Manufacture of Polymer Products (Review). News of the St. Petersburg State Technological Institute (Technical University) 44(70), 56-63 (2018) [CrossRef] [Google Scholar]
  2. S.N. Litunov, V.S. Slobodenyuk, D.V. Melnikov, Review and Analysis of Additive Technologies. Part 1. Omsk Scientific Bulletin 1(145), 12-17 (2016) [Google Scholar]
  3. M.A. Petrov, N.V. Kosachev, F.B. Prokopov, Studies to Determine the Force Characteristics of Uniaxial Compression of Cylindrical Specimens Made of ABS Plastic Using the 3D Printing Technique. News of the Tula State University. Engineering Sciences, 10-2 84-90 (2014) [Google Scholar]
  4. V.V. Burlov, K. Spirov, V.K. Kryzhanovsky, (2016) Specifics of Free Deposition of Amorphous Thermoplastic Melts and Its Impact on the Properties of 3D Printing Products. Proceedings of the St. Petersburg State Technological Institute (Technical University), 36(62) 52-57 (2016) [CrossRef] [Google Scholar]
  5. A.V. Balashov, M.I. Markova, Studying the Structure and Properties of 3D Printing Products. Engineering Bulletin of the Don, 1(52), 66 (2019) [Google Scholar]
  6. V.V. Barskov, V.S. Kotov, A.V. Pankratov, Using Additive Technologies in the Manufacture of Gas Turbine Engines for the RF Navy Ships. Shipbuilding 5(840) 41–44 (2018) [Google Scholar]
  7. M.A. Petrov, Eldib Ibrahim Saad Ahmed, A.D. Smirnov, N.V. Kosachev, (2019) Method for Defining the Specific Energy Absorption of Polymer Specimens Made by 3D Printing. News of the Tula State University. Engineering Sciences, 12 110-11 (2019) [Google Scholar]
  8. V.A. Vitrenko, G.V. Syrovoy, A.A. Afoshin, Studying the Strength and Nature of the Destruction of Models Obtained by Changing the Position in 3D Printing. Technical Operation of Water Transport: Issues and Ways of Development 1 137-140 (2020) [Google Scholar]
  9. R.A. Turusov, Kh. Memarianfard, Discrete Model in the Analysis of Residual Stresses in Unidirectional Filament-Wound Reinforced Plastic Cylinders During Cooling. Bulletin of MSCU, 1 27-35 (2015) [Google Scholar]
  10. A.O. Torshin, E.N. Potapova, Prospects for Using a 3D Printer in Construction. Advances in Chemistry and Chemical Technology, 7(176) 118-120 (2016) [Google Scholar]
  11. O.L. Figovsky, A.Z. Steinbock, New in Housing Construction Abroad, Part I. Dona Engineering Bulletin, 9(69) 168-186 (2020) [Google Scholar]
  12. G.V. Samandasyuk, I.A. Slesarev, M.S. Kozhen, Additive Technologies in Construction. Globe: Engineering Sciences 2(33) 18-1 (2020) [Google Scholar]
  13. N.K. Kirillova, A.N. Alekseeva, A.D. Egorova, Using Additive Technologies in Construction and The Manufacture of Ceramic Products. Bulletin of V.G. ShukhovBelgorod State Technological University, 2 134-141 (2020) [CrossRef] [Google Scholar]
  14. M.B. Permiakov, A.F. Permiakov, A.M. Davydova, Additive Technologies in Construction. European research, 1(24) 14-15 (2017) [Google Scholar]
  15. A.I. Reutov, Reliability of Building Products and Structures Made of Polymeric Materials. Bulletin of the Tomsk State University of Architecture and Civil Engineering 1 126-141 (2009) [Google Scholar]
  16. F.S. Vlasenko, A.E. Raskutin, Using Polymer Composite Materials in Building Structures. Proceedings of VIAM 8 3 (2013). [Google Scholar]
  17. B.M. Yaziev, Al-Wali Ibrahim Ahmed Abdula, Al-Hajj Mohnud Abdo Hasan, Using Polymers in Construction. StudNet, 1 (2021) [Google Scholar]
  18. M.A. Petrov, N.V. Kosachev, F.B. Prokopov, Studies to Determine the Force Characteristics of Uniaxial Compression of Cylindrical Specimens Made of ABS Plastic Using the 3D Printing Technique. News of the Tula State University. Engineering Sciences, 10-2 84-90 (2014) [Google Scholar]
  19. V.V. Burlov, K. Spirov, V.K. Kryzhanovsky, Specifics of Free Deposition of Amorphous Thermoplastic Melts and Its Impact on the Properties of 3D Printing Products. Proceedings of the St. Petersburg State Technological Institute (Technical University) 36(62) 52-57 (2016) [CrossRef] [Google Scholar]
  20. A.V. Balashov, M.I. Markova, Studying the Structure and Properties of 3D Printing Products. Engineering Bulletin of the Don, 1(52) 66 (2019) [Google Scholar]
  21. V.V. Barskov, V.S. Kotov, A.V. Pankratov, Using Additive Technologies in the Manufacture of Gas Turbine Engines for the RF Navy Ships. Shipbuilding, 5(840) 41–44 (2018) [Google Scholar]
  22. M.A. Petrov, Eldib Ibrahim Saad Ahmed, A.D. Smirnov, N.V. Kosachev, Method for Defining the Specific Energy Absorption of Polymer Specimens Made by 3D Printing. News of the Tula State University. Engineering Sciences 12 110-11 (2019) [Google Scholar]
  23. A.V. Shmelev, V.I. Ivchenko, A.V. Talaluev, Experimental and Computational Determination of the Strain-Stress Performance of 3D Printed ABS Plastic Specimens in Tension. Engineering Journal: Science and Innovation 4(112) 2 (2021) [Google Scholar]
  24. S.V. Kondrashov, A.A. Pykhtin, S.A. Larionov, A.E. Sorokin, The Impact of FDM Printing Modes and the Composition of Materials Used on the Physico-mechanical Properties of FDM Models (Review). Proceedings of VIAM, 10(82) 34-49 (2019) [CrossRef] [Google Scholar]
  25. V.A. Ermakova, E.V. Gasperovich, A.I. Ermakov, V.V. Litvyak, Studying the StrainStress Performance of 3D-Printed PLA Products. Science and Technology, 21-2 107113 (2022). [Google Scholar]
  26. K.S. Besedina, N.A. Lavrov, D.A. Panfilov, V.V. Barskov, Properties of 3D-Printed ABS and Polyamide Products. Proceedings of the St. Petersburg State Technological Institute (Technical University), 45(71) 60-63 (2018) [Google Scholar]
  27. M.A. Aseev, M.V. Tabanyukhova, Studying Piezo-Optical Properties of Plastic. In the coll.: The Intellectual Potential of Siberia. Materials of the 28th Regional Scientific Student Conference: in 3 Parts. Ed. D.O. Sokolova, Novosibirsk, 79-81 (2020). [Google Scholar]
  28. N.N. Stolyarov, A.D. Sukhikh, M.V. Tabanyukhova, Residual Stresses in 3D-Printed Models. Proceedings of the Novosibirsk State University of Architecture and Civil Engineering (Sibstrin), 24-1/2(79/80) 48-54 (2021) [Google Scholar]
  29. A.D. Sukhikh, N.N. Stolyarov, M.V. Tabanyukhova, The Issue of Residual Stresses in 3D-Printed Models. In the coll.: The Intellectual Potential of Siberia. Collection of Scientific Papers of the 29thRegional Scientific Student Conference dedicated to the Year of Science and Technology in Russia. In 5 Parts. Ed. D.O. Sokolova, Novosibirsk, 8892 (2021) [Google Scholar]
  30. M.A. Aseyev, K.A. Tabanyukhov, M.V. Tabanyukhova, Search for Plastics with PiezoOptical Properties. IOP Conference Series: Materials Science and Engineering. The conference proceedings ICCATS-2020022074 (2020) [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.