Approach to determination stress-strain state of composite bars considering internal self-equilibrium stressed state
Abstract
Keywords
Full Text:
PDF (Українська)References
Jones, R. M. Mechanics of composite materials. Talor and Fransis, Second edition, 1999. 519 p. ISBN 1-56032-712-X. Available at: https://www.researchgate.net/profile/Mahsa-Jahani/post/How-do-you-obtain-calculate-stiffness-degradation-and-viscoelastic-response-of-a-composite-material/attachment/59d6227a79197b8077980cbd/AS%3A302153506197507%401449050419663/download/Mechanics+of+composite+materials-Jones+1999.pdf. (accessed 27.03.2024).
Seers, B., Tomlinson, R., & Fairclough, P. Residual stress in fiber reinforced thermosetting composites: A review of measurement techniques. Polymer Composites, 2021, vol. 42, iss. 4, pp. 1583-2146. DOI: 10.1002/pc.25934.
Shokrieh, M. M. Residual stresses in composite materials. Woodhead Publishing, 2014. 284 p. Available at: https://structures.dhu.edu.cn/_upload/article/files/f6/62/f5c6159f4c86ae7a86fbd6b48811/52671c71-4c4e-41b1-a561-a9b523be64d8.pdf. (accessed 27.03.2024).
Wang, Y., & Wu, Q. Microscale Analysis of Thermal Residual Stresses in Composites with Different Ply Orientations. Materials, 2023, vol. 16, iss. 19, article no. 6567. DOI: 10.3390/ma16196567.
Monge, J. C., & Mantari, J. L. Exact solution of thermo-mechanical analysis of laminated composite and sandwich doubly-curved shell. Composite Structures, 2020, vol. 245, article no. 112323. DOI: 10.1016/j.compstruct.2020.112323.
Vlasov, V. General Theory of Shells and Its Applications in Engineering. NASA technical translation, National Aeronautics and Space Administration, 1964, vol. 99, digitally copied May 2011. Available at: https://www.scirp.org/reference/referencespapers?referenceid=712718. (accessed 27.03.2024).
Vlasov, V. Z. Tonkostennye uprugie sterzhni [Thin-walled elastic rods]. Moscow, Gosgortekhizdat Publ., 1940. 256 p. (In Russian).
Mortensen, F., & Thomsen, O. Analysis of adhesive bonded joints: a unified approach. Composites Science and Technology, June 2002, vol. 62, iss. 7–8, pp. 1011-1031. DOI: 10.1016/S0266-3538(02)00030-1.
Dobrzański, P., & Oleksiak, W. Design and analysis methods for composite bonded joints. Transactions on aerospace research, 2021, vol. 1, iss. 262, pp. 45-63. eISSN 2545-2835. DOI: 10.2478/tar-2021-0004.
Kučera, P., Kondratiev, A., Pîštĕk, V., Taranenko, I., Nabokina, T., & Kaplan, Z. Thin-walled open-profile composite beams under thermo-mechanical loading. Composite Structures, 2023, vol. 312, article no 116844. DOI: 10.1016/j.compstruct.2023.116844.
Taranenko, I., & Kupriianova, T. Exploring the possibility of undesirable manufacturing heritage reduction in parts made of composites and their joints. Technology Audit and Production Reserves, 2024, vol. 1, iss. 3 (75), pp. 24–28. DOI: 10.15587/2706-5448.2024.299227.
Perelʹmuter, A. V. Do rozrakhunku stalevykh konstruktsiy iz tonkostinnykh sterzhniv [To analysis of thin-walled rods steel structures]. Opir materialiv i teoriya sporud - Resistance of materials and theory of structures, 2022, no. 108, pp. 119-130. ISSN 2410-2547. DOI: 10.32347/2410-2547.2022.108.119-130. (In Ukrainian).
Karpov, Ya. S. Soyedineniya detaley i agregatov iz kompozitsionnykh materialov [Connections of parts and assemblies made of composite materials]. Kharkiv, Nat. Aerospace Univ. “KhAI” Publ., 2006. 359 p. (In Russian).
Karpov, Ya. Jointing of high-loaded composite structural components. Part 3. An experimental study of strength of joints with transverse fastening microelements. Strength of Materials, November 2006, vol. 38, pp. 575-585. DOI: 10.1007/s11223-006-0079-5.
Phi, L. T. M., Nguyen, T.-T., & Lee, J. Buckling analysis of open-section beams with thin-walled functionally graded materials along the contour direction. European Journal of Mechanics - A/Solids, August 2021, vol. 88, article no. 104217. DOI: 10.1016/j.euromechsol.2021.104217.
DOI: https://doi.org/10.32620/aktt.2024.3.02