Cite

Amares S., Sujatmika E., Hong T.W., Durairaj R., Hamid H.S.H.B., A Review: Characteristics of Noise Absorption Material, ICADME 2017, IOP Conf. Series: Journal of Physics: Conf. Series 908 (2017). Search in Google Scholar

Beom Yeol Yun, Hyun Mi Cho, Young Uk Kim, Sung Chan Lee, Umberto Berardi, Sumin Kim, Circular reutilization of coffee waste for sound absorbing panels: A perspective on material recycling, Korea, 2020. Search in Google Scholar

Bujoreanu C., Nedeff F., Benchea M., Agop M., Experimental and theoretical considerations on sound absorption performance of waste materials including the effect of backing plates, Iaşi, 2017. Search in Google Scholar

Gomez-Campos A., Sablayrolles C., Hamelin L., Rouilly A., Evon P., Vialle C., Towards fossil-carbon free buildings: Production and environmental performance of innovative sound absorbing panels made from sunflower straw, France, 2023. Search in Google Scholar

Howard D.M., Angus J.A.S., Acoustics and Psychoacoustics (Fifth Edition), New York, 2017. Search in Google Scholar

Leitao Cao, Qiuxia Fu, Yang Si, Bin Ding, Jianyong Yu, Porous materials for sound absorption, Shanghai, 2018. Search in Google Scholar

Nowoświat A., Bochen J., Dulak L., Żuchowski R., Investigation studies involving sound absorbing parameters of roadside screen panels subjected to aging in simulated condition, Poland, 2016. Search in Google Scholar

Petrovici A., Cueto J.L., Nedeff V., Nava E., Nedeff F., Hernandez R., Bujoreanu C., Irimiciuc S.A., Agop M., Dynamic Evaluation of Traffic Noise through Standard and Multifractal Models, Symmetry, 2020. Search in Google Scholar

Proença M., Neves e Sousa A., Garrido M., Correi J.R., Acoustic performance of composite sandwich panels for building floors: Experimental tests and numerical-analytical simulation, Portugal, 2020. Search in Google Scholar

Ştefan I., Contribuţii privind îmbunătăţirea confortului acustic urban, Iaşi, 2018. Search in Google Scholar

Tiuc A.-E., Vermeşan H., Gabor T., Vasile O., Improved sound absorption properties of polyurethane foam mixed with textile waste, Romania, 2015. Search in Google Scholar

Wang S., Li F., A broadband sound absorber of hybrid-arranged perforated panels with perforated partitions, China, 2021. Search in Google Scholar

Xinwu Xu, Huixiang Wang, Yan Sun, Jingquan Han, Runzhou Huang, Sound absorbing properties of perforated composite panels of recycled rubber, fiberboard sawdust, and high density polyethylene, China, 2018. https://environment.ec.europa.eu/strategy/zero-pollution-action-plan_en, accessed on 12.04.2023. Search in Google Scholar