Recent Advances in Preparation and Structure of Polyurethane Porous Materials for Sound Absorbing Application

Author:

Dong Shan12,Duan Yinying1,Chen Xinyan1,You Feng1ORCID,Jiang Xueliang1,Wang Dongrui3,Hu Dongdong4,Zhao Pei1

Affiliation:

1. Hubei Key Laboratory of Plasma Chemistry and New Materials School of Materials Science and Engineering Wuhan Institute of Technology Wuhan 430205 China

2. Institute of Advanced Technology University of Science and Technology of China Hefei 230088 China

3. Department of Polymer Science and Engineering School of Chemistry and Biological Engineering University of Science and Technology Beijing Beijing 100083 China

4. State Key Laboratory of Chemical Engineering School of Chemical Engineering East China University of Science and Technology Shanghai 200237 China

Abstract

AbstractVarious acoustic materials are developed to resolve noise pollution problem in many industries. Especially, materials with porous structure are broadly used to absorb sound energy in civil construction and transportation area. Polyurethane (PU) porous materials possess excellent damping properties, good toughness, and well‐developed pore structures, which have a broad application prospect in sound absorption field. This work aims to summarize the recent progress of fabrication and structure for PU porous materials in sound absorption application. The sound absorption mechanisms of porous materials are introduced. Different kinds of structure for typical PU porous materials in sound absorption application are covered and highlighted, which include PU foam, modified PU porous materials, aerogel, templated PU, and special PU porous materials. Finally, the development direction and existing problems of PU material in sound absorption application are briefly prospected. It can be expected that porous PU with high sound absorption coefficient can be obtained by using some facile methods. The design and accurate regulation of porous structures or construction of multilayer sound absorption structure is favorably recommended to fulfill the high demand of industrial and commercial applications in the future work.

Funder

Wuhan Institute of Technology

Publisher

Wiley

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