Dual layered light weight fire resistant PU foam-based composite for acoustical insulation

IF 1.3 4区 医学 Q3 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Navin Banka, Debasish Chatterjee
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引用次数: 0

Abstract

In today's automotive industry, sound package design and optimization is important considering the mounting need for weight reduction and achieving targeted sound absorption and sound transmission loss values. The present paper relates to dual layered light weight (LW) fire resistant (FR) Polyurethane (PU) foam-based composite for engine room insulation, referred herein as Ωµ2 foam comprising of two layers of foam having different densities and flexibility. The composite consists of one layer of semirigid FR PU foam acting as a carrier with sound absorptive property and another layer consisting of flexible FR PU foam acting as higher acoustical absorptive property. This concept is intended for enhancement of acoustical performance by the synergistic effect of dual foam layers besides being FR and LW material, specially designed for passenger vehicles' engine compartment insulations such as firewall/dash panel, bonnet/hood liner insulation and other diverse applications in commercial vehicles. The paper presents material properties and in-depth comparative assessment of sound absorption properties of dual layer (Ωµ2) LW FR PU foam with respect to conventional materials like single layer light weight semi-rigid PU foam and resinated cotton shoddy felt, etc.
双层轻质防火PU泡沫基隔音复合材料
在当今的汽车工业中,考虑到不断增加的减重需求以及实现目标吸声和传声损失值,声封装设计和优化非常重要。本论文涉及用于机舱隔热的双层轻质(LW)耐火(FR)聚氨酯(PU)泡沫基复合材料,此处称为Ωµ2泡沫,由两层具有不同密度和柔韧性的泡沫组成。该复合材料由一层半刚性FR PU泡沫作为具有吸声性能的载体和另一层柔性FR PU泡沫作为具有较高吸声性能的载体组成。除了FR和LW材料外,这一概念旨在通过双泡沫层的协同效应来增强声学性能,专门为乘用车的发动机舱隔热设计,如防火墙/仪表板,发动机罩/发动机罩内衬隔热以及商用车的其他各种应用。本文介绍了材料性能,并对双层(Ωµ2)LW FR PU泡沫与单层轻质半刚性PU泡沫、树脂棉劣质毡等常规材料的吸声性能进行了深入的对比评价。
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来源期刊
Noise & Health
Noise & Health AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY-PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
CiteScore
2.10
自引率
14.30%
发文量
27
审稿时长
6-12 weeks
期刊介绍: Noise and Health is the only International Journal devoted to research on all aspects of noise and its effects on human health. An inter-disciplinary journal for all professions concerned with auditory and non-auditory effects of occupational, environmental, and leisure noise. It aims to provide a forum for presentation of novel research material on a broad range of topics associated with noise pollution, its control and its detrimental effects on hearing and health. It will cover issues from basic experimental science through clinical evaluation and management, technical aspects of noise reduction systems and solutions to environmental issues relating to social and public health policy.
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