Tudor Eugenia Mariana, Dettendorfer Anna, Kain Günther, Barbu Marius Catalin, Réh Roman, Krišťák Ľuboš
Forest Products Technology and Timber Construction Department, Salzburg University of Applied Sciences, Markt 136a, 5431 Kuchl, Austria.
Faculty of Wood Engineering, Transilvania University of Brasov, Bld. Eroilor nr.29, 500036 Brasov, Romania.
Polymers (Basel). 2020 Apr 29;12(5):1012. doi: 10.3390/polym12051012.
The objective of this study was to investigate the sound absorption coefficient of bark-based insulation panels made of softwood barks Spruce ( (L.) H. Karst.) and Larch ( Mill.) by means of impedance tube, with a frequency range between 125 and 4000 Hz. The highest efficiency of sound absorption was recorded for spruce bark-based insulation boards bonded with urea-formaldehyde resin, at a level of 1000 and 2000 Hz. The potential of noise reduction of larch bark-based panels glued with tannin-based adhesive covers the same frequency interval. The experimental results show that softwood bark, an underrated material, can substitute expensive materials that involve more grey energy in sound insulation applications. Compared with wood-based composites, the engineered spruce bark (with coarse-grained and fine-grained particles) can absorb the sound even better than MDF, particleboard or OSB. Therefore, the sound absorption coefficient values strengthen the application of insulation panels based on tree bark as structural elements for the noise reduction in residential buildings, and concurrently they open the new ways for a deeper research in this field.
本研究的目的是通过阻抗管研究由软木树皮云杉((L.) H. Karst.)和落叶松(Mill.)制成的树皮基保温板的吸声系数,频率范围为125至4000赫兹。用脲醛树脂粘结的云杉树皮基保温板在1000和2000赫兹时记录到最高吸声效率。用单宁基粘合剂胶合的落叶松树皮基板材的降噪潜力覆盖相同频率区间。实验结果表明,软木树皮这种被低估的材料在隔音应用中可以替代涉及更多灰能量的昂贵材料。与木质复合材料相比,工程化云杉树皮(有粗颗粒和细颗粒)甚至比中密度纤维板、刨花板或定向刨花板更能吸收声音。因此,吸声系数值强化了基于树皮的保温板作为住宅建筑降噪结构元件的应用,同时也为该领域的深入研究开辟了新途径。