Flexible Acoustic Polyurethane Foam: An Overview of Physical Structure and Chemical Properties

Article Title EnFlexible Acoustic Polyurethane Foam: An Overview of Physical Structure and Chemical Properties
AuthorsSahar Abdollahi Baghban, Manoucher Khorasani
JournalIran Polymer and Petrochemical Institute
Publication Name EnBasparesh
Dor Codehttps://doi.org/10.22063/basparesh.2017.1960.1365
Presented byDepartment of Polymer and Color Engineering, Amirkabir University of Technology
Page number۹۰
Page Number To100
Volume number۸
IF_
Paper TypeFull Paper
Published At۲۰۱۸-۰۶-۱۸
Journal GradeScientific - promoting
Journal TypeElectronic
Journal CountryIran, Islamic Republic Of

Abstract

Noise is one of the most disturbing environmental problems of today's societies, and this problem becomes more serious with increasing traffic volumes and rapid expansion of industries. One of the ways to solve this problem is to increase the sound absorption coefficient of porous structure materials used as acoustic absorbers. Over the past decade, flexible polyurethane foam has been recognized in the acoustic absorbing industry as efficient materials due to its effective damping power, low density, high formability and easy production. The most important feature of flexible polyurethane foams is the presence of open porosity cavities, which not only control the mechanical properties of foam, but also their sound insulation properties. The purpose of this study is to review the applications, the development of polyurethane foam, the chemical and physical structure and the factors affecting the properties of foams due to their acoustic absorption and mechanical energy loss of sound waves. Considering the role of polyurethane foam as sound insulation, the focus of this study will be on the behavior of polyurethane foam as sound insulation, so some physical concepts related to sound will also be expressed.

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tags: flexible polyurethane foam, acoustic absorber, urea-urethane segmented copolymer, microphase separation , sound absorption coefficient