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Sound absorption behavior of flexible polyurethane foams including high molecular-weight copolymer polyol

机译:柔性聚氨酯泡沫的吸声行为,包括高分子量共聚物多元醇

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摘要

Noise pollution is an important issue for automotive industries. In this article, the high molecular-weight copolymer polyol is blended in the polyol mixtures for fabricating flexible polyurethane foams to improve sound absorption efficiency. Changes of cavity size and material density of the foams are negligible by inclusion of copolymer polyol in the polyol mixture, but the closed pore ratio and specific airflow resistance increase for the copolymer polyol content higher than 20wt% because of changes of phase separation behavior from drainage flow rate reduction that occurs with increased viscosity. Sound absorption efficiency increases with increasing copolymer polyol content up to 20wt%, but it decreases beyond this point. The sound absorption property mainly results from the closed pore ratio, not from the cavity size. The compression strength increases with increasing copolymer polyol contents by increased amount of hard segments. Therefore, an optimum amount of high molecular-weight polyol is recommended for enhanced sound absorption property.
机译:噪音污染是汽车行业的重要问题。在本文中,高分子量共聚物多元醇在多元醇混合物中混合,用于制造柔性聚氨酯泡沫以提高吸音效率。通过在多元醇混合物中包含共聚物多元醇,泡沫的腔尺寸和材料密度的变化可忽略不计,但由于来自引流的相分离行为的变化,闭合的孔比和特定的气流抗性增加,而且具有高于20wt%的孔含量高于20wt%粘度增加的流速减少。吸音效率随着共聚物多元醇含量增加高达20wt%而增加,但它超出了这一点。声音吸收性主要由闭孔比率产生,而不是从腔体尺寸产生。通过增加的硬段量增加共聚物多元醇含量增加,压缩强度增加。因此,建议使用最佳量的高分子量多元醇用于增强吸声性能。

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