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Extrusion Foaming of Lightweight Polystyrene Composite Foams with Controllable Cellular Structure for Sound Absorption Application

机译:可控蜂窝结构的轻质聚苯乙烯复合泡沫的挤出发泡用于吸声

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摘要

Polymer foams are promising for sound absorption applications. In order to process an industrial product, a series of polystyrene (PS) composite foams were prepared by continuous extrusion foaming assisted by supercritical CO2. Because the cell size and cell density were the key to determine the sound absorption coefficient at normal incidence, the bio-resource lignin was employed for the first time to control the cellular structure on basis of hetero-nucleation effect. The sound absorption range of the PS/lignin composite foams was corresponding to the cellular structure and lignin content. As a result, the maximum sound absorption coefficient at normal incidence was higher than 0.90. For a comparison, multiwall carbon nanotube (MWCNT) and micro graphite (mGr) particles were also used as the nucleation agent during the foaming process, respectively, which were more effective on the hetero-nucleation effect. The mechanical property and thermal stability of various foams were measured as well. Lignin showed a fire retardant effect in PS composite foam.
机译:聚合物泡沫有望用于吸声应用。为了加工工业产品,通过在超临界CO2的辅助下进行连续挤出发泡,制备了一系列聚苯乙烯(PS)复合泡沫。由于细胞大小和细胞密度是确定法向入射声吸收系数的关键,因此首次利用生物资源木质素根据异核作用控制细胞结构。 PS /木质素复合泡沫的吸声范围与孔结构和木质素含量相对应。结果,法向入射时的最大吸声系数高于0.90。为了进行比较,在发泡过程中还分别使用了多壁碳纳米管(MWCNT)和微石墨(mGr)颗粒作为成核剂,它们对异种成核效果更有效。还测量了各种泡沫的机械性能和热稳定性。木质素在PS复合泡沫塑料中表现出阻燃作用。

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