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Rigid/flexible polyurethane foam composite boards with additionudof functional fillers: acoustics evaluations

机译:硬质/柔性聚氨酯泡沫复合板,带添加 ud功能填充剂的选择:声学评估

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摘要

Following rapid technological and industrial development, factories have been equipped with a great deal of machines. The blend of industrial and residential areas in turn resulted in many environmental problems. In particular, machine operation causes noise pollution that easily causes physiological and psychological discomfort for the human body thus makes noise abatement a crucial and urgent issue. In this study, vermiculite functional fillers were added to polyurethane (PU) foam mixtures in order to form sound absorbent PU foams. The correlations between the contents of functional fillers and the sound absorption of flexible and rigid PU foams were then examined. The optimal PU foams were combined with PET/carbon fiber matrices in order to yield the electromagnetic shielding effectiveness. The sound absorption, noise reduction coefficient (NRC), electromagnetic shielding effectiveness and resilience rate of the composite boards were finally evaluated. The test results indicated that rigid PU foam composites can reach a sound absorption coefficient of 0.8 while the flexible PU foam composites have higher mechanical properties.
机译:随着技术和工业的飞速发展,工厂已经配备了许多机器。工业和居民区的融合又导致了许多环境问题。尤其是,机器操作会导致噪声污染,从而容易导致人体的生理和心理不适,从而使噪声消除成为至关重要且紧迫的问题。在这项研究中,ver石功能性填料被添加到聚氨酯(PU)泡沫混合物中,以形成吸声的PU泡沫。然后检查了功能性填料含量与软质和硬质PU泡沫的吸声之间的相关性。最佳的PU泡沫与PET /碳纤维基质结合使用,以产生电磁屏蔽效果。最后评估了复合板的吸声,降噪系数(NRC),电磁屏蔽效果和回弹率。测试结果表明,硬质聚氨酯泡沫复合材料的吸声系数为0.8,而柔韧性聚氨酯泡沫复合材料具有较高的机械性能。

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