Study of Factors Influencing Sound Insulation Existing Fences with Additional Sound Insulation at the Site Using Layered Vibration-Damped Elements

Resumo

The results of experimental studies of the sound insulating qualities of fences with flexible slabs on the side, made in reverberation rooms, are presented, and an analysis of the influence of some parameters on their sound insulation is given. It has been shown that the installation of flexible slabs is most rational when the airborne noise insulation index of the main structure is in the range of 40–45 dB. At higher indices, the effectiveness of additional sound insulation decreases.

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Sobre autores

N. Kochkin

Vologda State University

Autor responsável pela correspondência
Email: vol.nikit@inbox.ru

Candidate of Sciences (Engineering) 

Rússia, Vologda

A. Ivanova

Vologda State University

Email: kiriatkovaav@vogu35.ru

Candidate of Sciences (Engineering)

Rússia, Vologda

I. Shubin

Scientific-Research Institute of Building Physics of RAACS

Email: niisf@niisf.ru

Doctor of Sciences (Engineering), Correspondent Мember of RAACS, Director

Rússia, Moscow

A. Kochkin

Vologda State University

Email: aakochkin@mail.ru

Doctor of Sciences (Engineering)

Rússia, Vologda

Bibliografia

  1. Kuzmin D.S., Monich D.V., Grebnev P.A., Porozhenko М.А. Ways to increase of sound insulation of light partitions with shotcrete claddings. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2023. No. 7, pp. 10–16. (In Russian). DOI: https://doi.org/10.31659/0044-4472-2023-7-10-16
  2. Antonov A.I., Shubin I.L., Matveeva I.V., Merkusheva N.P. Design of noise protection measures in industrial premises with non-permanent workplaces. Privolzhskii nauchnyi zhurnal. 2023. No. 4 (68), pp. 9–18. (In Russian).
  3. Kuzmin D.S., Monich D.V., Bobylev V.N., Grebnev P.A. Sound insulation of light partitions with shotcrete cladding and acoustic separation of layers. Privolzhskii nauchnyi zhurnal. 2023. No. 1 (65), pp. 57–64. (In Russian).
  4. Kochkin A.A., Shashkova L.E., Kochkin N.A., Ivanova A.V. Methods of increasing sound insulation of building envelopes. Privolzhskii nauchnyi zhurnal. 2022. No. 1 (61), pp. 41–51. (In Russian).
  5. Minaeva N.A. Research on the influence of the innovative material Texaund on the soundproofing properties of construction partitions. BST. 2021. No. 6 (1042), pp. 18–19. (In Russian).
  6. Minaeva N.A. Analysis of sound insulation qualities of frame-sheathing partitions. Academiya. Architectura i stroitel’stvo. 2018. No. 4, pp. 137–141. (In Russian).
  7. Ovsyannikov S.N., Samokhvalov A.S., Lelyuga O.V., Bolshanina T.S. Calculations of sound insulation of one-, two- and three-layer translucent structures. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2022. No. 11, pp. 29–35. (In Russian). DOI: https://doi.org/10.31659/0044-4472-2022-11-29-35
  8. Porozhenko M.A., Minaeva N.A., Sukhov V.N. Assessment of airborne noise insulation by a wall with a flexible slab on the side. Zhilishchnoe Stroitel’stvo [Housing Construction]. 2016. No. 7, pp. 54–56. (In Russian).
  9. Shubin I.L., Aistov V.A., Porozchenko M.A. Sound Insulation of enclosing Structures in high-rise Buildings. Requirements and Methods of Support. Stroitel’nye Materialy [Construction Materials]. 2019. No. 3, pp. 33–43. (In Russian).DOI: https://doi.org/10.31659/0585-430X-2019-768-3-33-43
  10. Kochkin A.A., Shubin I.L., Kochkin N.A., Kiryatkova A.V. On the regulation of sound insulation of layered vibration-damped elements. Izvestiya of higher educational institutions. Textile industry technology. 2016. No. 4 (364), pp. 181–187. (In Russian).
  11. Kochkin A.A., Kiryatkova A.V., Kochkin N.A. Increasing the sound insulation of light fences using layered vibration-damped elements. University science – region. Materials of the XIV All-Russian Scientific Conference. Vologda. 2016, pp. 174–177. (In Russian).
  12. Kochkin A.A., Shashkova L.E. Increasing the sound insulation of layered vibration-damped fences by reducing their bending rigidity. Izvestiya of the South-Western State University. 2011. No. 5 (38). Part 2, pp. 159–162. (In Russian).

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