Araştırma Makalesi

Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric

Sayı: 12 22 Haziran 2026
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Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric

Öz

Background and aims This study aims to investigate the role of reinforcement type in determining the sound absorption performance of wood-based sandwich panels (WBPS) reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric, using a single-component polyurethane adhesive (PUR-D4). Methods As wood-based panels, 4 mm thick beech plywood and 9 mm thick oriented strand board (OSB-2 class) were used, and a single-component polyurethane adhesive (PUR-D4) was used as adhesive. Basalt fiber fabric, glass fiber fabric, and jute fabric were used as reinforcement layers between the wood-based panels. Test samples of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric, and unreinforced wood-based sandwich panels, were tested at four different locations. Results According to the test results, the highest air-dry density (δ₁₂) value was obtained as 740 kg/m³ in WBSP reinforced with glass fiber fabric, while the lowest δ₁₂ value was determined as 687 kg/m³ in unreinforced samples. The highest sound absorption coefficient (SAC) was measured as α = 0.22 in WBSP reinforced with jute fabric, while the lowest SAC value was determined as α = 0.16 in the glass fiber reinforced sample. Similarly, in terms of frequency, the highest SAC value was 1000 Hz (α = 0.35), while the lowest SAC values were measured at 2000 Hz, 2200 Hz, and 2400 Hz (α = 0.12). Conclusion The results suggest that reinforced wood-based sandwich panels offer an effective combination of sound absorption efficiency and material sustainability, making them promising candidates for eco-friendly acoustic panel applications in building and interior environments.

Anahtar Kelimeler

Kaynakça

  1. Altunok, M., Ayan, S., 2012. Determination of sound absorption coefficient values on the laminated panels. Journal of Polytechnic, 15(3), 117-125.
  2. Cao, L., Fu, Q., Si, Y., Ding, B., Yu, J., 2018. Porous materials for sound absorption. Composites Communications, 10, 25-35. https://doi.org/10.1016/j.coco.2018.05.001.
  3. Çavuş, V., Kara. M., 2020. Experimental determination of sound transmission loss of some wood species. Kastamonu University Journal of Forestry Faculty, 20(2), 190-199. https://doi.org/10.17475/kastorman.801786.
  4. da Silva Bertolini, M., de Morais, C. A. G., Christoforo, A. L., Bertoli, S. R., dos Santos, W. N., Lahr, F. A. R., 2019. Acoustic absorption and thermal insulation of wood panels: Influence of porosity. BioResources, 14(2), 3746-3757. https://doi.org/10.15376/biores.14.2.3746-3757.
  5. EN ISO 10534-2 “Acoustic-determination of sound absorption coefficient and impedance in impedance tubes-Part 2: Transfer-function method”. ISO, Geneva, 1998.
  6. Guiman, M. V., Stanciu, M. D., Roșca, I. C., Georgescu, S. V., Năstac, S. M., Câmpean, M., 2023. Influence of the grain orientation of wood upon its sound absorption properties. Materials, 16(17), 5998. https://doi.org/10.3390/ma16175998.
  7. Hussain, M., Abbas, N., Zahra, N., Sajjad, U., Awan, M. B., 2019. Investigating the performance of GFRP/wood-based honeycomb sandwich panels for sustainable prefab building construction. SN Applied Sciences, 1(8), 875. https://doi.org/10.1007/s42452-019-0932-3.
  8. Ivanova, Y., Vitchev, P., Hristodorova, D., 2018. Study on the influence of some factors on the sound absorption characteristics of wood from Scots pine. Chip and Chipless Woodworking Processes, 11(1), 65–72.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Ahşap İşleme

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

22 Haziran 2026

Gönderilme Tarihi

20 Şubat 2026

Kabul Tarihi

18 Haziran 2026

Yayımlandığı Sayı

Yıl 2026 Sayı: 12

Kaynak Göster

APA
Karaman, A. (2026). Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric. Anadolu Orman Araştırmaları Dergisi, 12, 1893430. https://doi.org/10.53516/ajfr.1893430
AMA
1.Karaman A. Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric. AOAD. 2026;(12):1893430. doi:10.53516/ajfr.1893430
Chicago
Karaman, Abdurrahman. 2026. “Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric”. Anadolu Orman Araştırmaları Dergisi, sy 12: 1893430. https://doi.org/10.53516/ajfr.1893430.
EndNote
Karaman A (01 Haziran 2026) Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric. Anadolu Orman Araştırmaları Dergisi 12 1893430.
IEEE
[1]A. Karaman, “Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric”, AOAD, sy 12, s. 1893430, Haz. 2026, doi: 10.53516/ajfr.1893430.
ISNAD
Karaman, Abdurrahman. “Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric”. Anadolu Orman Araştırmaları Dergisi. 12 (01 Haziran 2026): 1893430. https://doi.org/10.53516/ajfr.1893430.
JAMA
1.Karaman A. Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric. AOAD. 2026;:1893430.
MLA
Karaman, Abdurrahman. “Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric”. Anadolu Orman Araştırmaları Dergisi, sy 12, Haziran 2026, s. 1893430, doi:10.53516/ajfr.1893430.
Vancouver
1.Abdurrahman Karaman. Investigation of the sound absorption performance of wood-based sandwich panels reinforced with basalt fiber fabric, glass fiber fabric, and jute fabric. AOAD. 01 Haziran 2026;(12):1893430. doi:10.53516/ajfr.1893430