AbstractAbout AuthorsReferences
The paper presents theoretical and numerical studies of the combined static performance of a PVC profile-steel core system subject to arbitrary external distributed loads. The study resulted in the analytical method for calculating the performance of PVC window profiles with a steel core under arbitrary external distributed loads development. The proposed calculation method considers the combined performance of the PVC window profile and the steel core, which are connected with self-tapping screws point fasteners; as well as the PVC profile initial curvature due to its possible thermal shrinkage. The proposed analytical calculation method for reinforced PVC profiles can be applied in engineering practice, primarily in the PVC windows structure development, as well as in the windows design for a specific environmental condition at the steel cores static characteristics selecting.
I.S. AKSENOV1, Candidate of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.),
А.P. KONSTANTINOV1, Candidate of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.);
A.I. MELNIKOV2, Engineer (This email address is being protected from spambots. You need JavaScript enabled to view it.)
А.P. KONSTANTINOV1, Candidate of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.);
A.I. MELNIKOV2, Engineer (This email address is being protected from spambots. You need JavaScript enabled to view it.)
1 National Research Moscow State University of Civil Engineering (26, Yaroslavskoe Highway, Moscow, 129337, Russian Federation)
2 Federal Center for Normation, Standardization and Technical Assessment of Conformity in Construction (6, Furkasovsky Lane, Moscow, 101000, Russian Federation)
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https://doi.org/10.31659/0044-4472-2024-6-49-52
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3. Ke Y., Shen G., Yu H., Xie J. Effects of corner modification on the wind-induced responses of high-rise buildings. Applied Sciences. 2022. Vol. 12 (19). 9739. EDN: WCZTRU. https://doi.org/10.3390/app12199739
4. Konstantinov A., Lambias Ratnayake M. Calculation of PVC windows for wind loads in high-rise buildings. E3S Web of Conferences. 2018. Vol. 33. 02025. EDN: XDEDCG.
https://doi.org/10.1051/e3sconf/20183302025
5. Konstantinov A., Verkhovsky A. Assessment of the wind and temperature loads influence on the PVC windows deformation. IOP Conf. Series: Materials Science and Engineering. 2020. Vol. 753. 032022. EDN: FWUUDF. https://doi.org/10.1088/1757-899X/753/3/032022
6. Аксёнов И.С., Константинов А.П. Аналитический метод расчета напряженно-деформированного состояния оконных профилей ПВХ при действии температурных нагрузок // Вестник МГСУ. 2021. Т. 16. Вып. 11. С. 1437–1451. EDN: MOFGHQ. https://doi.org/10.22227/1997-0935.2021.11.1437-1451
6. Aksenov I.S., Konstantinov A.P. An analytical method for calculating the stress-strain state of PVC window profiles under thermal loading. Vestnik MGSU. 2021. Vol. 16. Iss. 11, pp. 1437–1451. (In Russian). EDN: MOFGHQ.
https://doi.org/10.22227/1997-0935.2021.11.1437-1451
7. Aksenov I.S., Konstantinov A.P. Temperature deformations of PVC window profiles with reinforcement. International Journal for Computational Civil and Structural Engineering. 2022. Vol. 18, No. 2, pp. 98–111. EDN: PSKLLH.
https://doi.org/10.22337/2587-9618-2022-18-2-98-111
8. Аксёнов И.С., Константинов А.П. Аналитический расчет сложного напряженно-деформированного состояния армированного ПВХ профиля при температурной нагрузке // Жилищное строительство. 2022. № 11. С. 19–28. EDN: ISOILC. https://doi.org/10.31659/0044-4472-2022-11-19-28
8. Aksenov I.S., Konstantinov A.P. Analytical calculation of the complex stress-strain state of reinforced PVC profile under temperature load. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2022. No. 11, pp. 19–28. (In Russian). EDN: ISOILC. https://doi.org/10.31659/0044-4472-2022-11-19-28
9. Konstantinov A.P., Aksenov I.S. Engineering method for calculating temperature deformations of PVC window profiles with a reinforcing steel core. Buildings. 2023. No. 13, 1466. EDN: SFZTXM.
https://doi.org/10.3390/buildings13061466
10. Аксёнов И.С. Деформационная устойчивость оконных ПВХ конструкций при температурных нагрузках // Строительство и реконструкция. 2023. № 4. С. 5–18. EDN: FLUFDJ. https://doi.org/10.33979/2073-7416-2023-108-4-5-18
10. Aksenov I.S. Deformation stability of PVC windows under temperature loads. Stroitelstvo i Reconstructcia. 2023. No. 4, pp. 5–18. (In Russian). EDN: FLUFDJ. https://doi.org/10.33979/2073-7416-2023-108-4-5-18
11. Константинов А.П., Аксёнов И.С. Особенности работы анкерных пластин для крепления оконных блоков при действии ветровых нагрузок // Жилищное строительство. 2023. № 12. С. 3–7. EDN: OJVRZU. https://doi.org/10.31659/0044-4472-2023-12-3-7
11. Konstantinov A.P., Aksenov I.S. Features of the operation of anchor plates for fixing windows under the action of wind loads. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2023. No. 12, pp. 3–7. (In Russian). EDN: OJVRZU.
https://doi.org/10.31659/0044-4472-2023-12-3-7
2. Пастушков П.П., Синявин А.А., Чулюнин А.Ю. О величине шага по азимуту ветрового потока при аэродинамических исследованиях высотных зданий // Жилищное строительство. 2024. № 6. С. 49–52. EDN: RPFSJA.
https://doi.org/10.31659/0044-4472-2024-6-49-52
2. Pastushkov P.P., Sinyavin A.A., Chulyunin A.Yu. On the size of the step along the azimuth of the wind flow during aerodynamic studies of high-rise buildings. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2024. No. 6, pp. 49–52. (In Russian). EDN: RPFSJA. https://doi.org/10.31659/0044-4472-2024-6-49-52
3. Ke Y., Shen G., Yu H., Xie J. Effects of corner modification on the wind-induced responses of high-rise buildings. Applied Sciences. 2022. Vol. 12 (19). 9739. EDN: WCZTRU. https://doi.org/10.3390/app12199739
4. Konstantinov A., Lambias Ratnayake M. Calculation of PVC windows for wind loads in high-rise buildings. E3S Web of Conferences. 2018. Vol. 33. 02025. EDN: XDEDCG.
https://doi.org/10.1051/e3sconf/20183302025
5. Konstantinov A., Verkhovsky A. Assessment of the wind and temperature loads influence on the PVC windows deformation. IOP Conf. Series: Materials Science and Engineering. 2020. Vol. 753. 032022. EDN: FWUUDF. https://doi.org/10.1088/1757-899X/753/3/032022
6. Аксёнов И.С., Константинов А.П. Аналитический метод расчета напряженно-деформированного состояния оконных профилей ПВХ при действии температурных нагрузок // Вестник МГСУ. 2021. Т. 16. Вып. 11. С. 1437–1451. EDN: MOFGHQ. https://doi.org/10.22227/1997-0935.2021.11.1437-1451
6. Aksenov I.S., Konstantinov A.P. An analytical method for calculating the stress-strain state of PVC window profiles under thermal loading. Vestnik MGSU. 2021. Vol. 16. Iss. 11, pp. 1437–1451. (In Russian). EDN: MOFGHQ.
https://doi.org/10.22227/1997-0935.2021.11.1437-1451
7. Aksenov I.S., Konstantinov A.P. Temperature deformations of PVC window profiles with reinforcement. International Journal for Computational Civil and Structural Engineering. 2022. Vol. 18, No. 2, pp. 98–111. EDN: PSKLLH.
https://doi.org/10.22337/2587-9618-2022-18-2-98-111
8. Аксёнов И.С., Константинов А.П. Аналитический расчет сложного напряженно-деформированного состояния армированного ПВХ профиля при температурной нагрузке // Жилищное строительство. 2022. № 11. С. 19–28. EDN: ISOILC. https://doi.org/10.31659/0044-4472-2022-11-19-28
8. Aksenov I.S., Konstantinov A.P. Analytical calculation of the complex stress-strain state of reinforced PVC profile under temperature load. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2022. No. 11, pp. 19–28. (In Russian). EDN: ISOILC. https://doi.org/10.31659/0044-4472-2022-11-19-28
9. Konstantinov A.P., Aksenov I.S. Engineering method for calculating temperature deformations of PVC window profiles with a reinforcing steel core. Buildings. 2023. No. 13, 1466. EDN: SFZTXM.
https://doi.org/10.3390/buildings13061466
10. Аксёнов И.С. Деформационная устойчивость оконных ПВХ конструкций при температурных нагрузках // Строительство и реконструкция. 2023. № 4. С. 5–18. EDN: FLUFDJ. https://doi.org/10.33979/2073-7416-2023-108-4-5-18
10. Aksenov I.S. Deformation stability of PVC windows under temperature loads. Stroitelstvo i Reconstructcia. 2023. No. 4, pp. 5–18. (In Russian). EDN: FLUFDJ. https://doi.org/10.33979/2073-7416-2023-108-4-5-18
11. Константинов А.П., Аксёнов И.С. Особенности работы анкерных пластин для крепления оконных блоков при действии ветровых нагрузок // Жилищное строительство. 2023. № 12. С. 3–7. EDN: OJVRZU. https://doi.org/10.31659/0044-4472-2023-12-3-7
11. Konstantinov A.P., Aksenov I.S. Features of the operation of anchor plates for fixing windows under the action of wind loads. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2023. No. 12, pp. 3–7. (In Russian). EDN: OJVRZU.
https://doi.org/10.31659/0044-4472-2023-12-3-7
For citation: Aksenov I.S., Konstantinov A.P., Melnikov A.I. Engineering method for calculating PVC window profiles with a steel core on wind loads. Zhilishchnoe Stroitel'stvo [Housing Construction]. 2025. No. 11, pp. 29–38. (In Russian). https://doi.org/10.31659/0044-4472-2025-11-29-38
