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Effect of isocyanate molecular structures in fabricating flexible polyurethane foams on sound absorption behavior

机译:异氰酸酯分子结构在制备软质聚氨酯泡沫塑料中对吸声性能的影响

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Flexible polyurethane foams have attracted significant attention as sound absorption materials for automotive components. Molecular structure of isocyanate components in the fabrication of the foams has a strong effect on the formation of interconnecting pores. Two competitive mechanisms of micro phase separation and drainage flow in the polyurethane urea matrix determine the fractional ratio of closed, partially and fully open pores. This fractional ratio of pore types is crucial for the sound absorption efficiency of the final foam materials. The addition of modified isocyanate containing uretonimine linkages increases, not only the microphase separation of hard domains in the matrix, but also drainage flow in the cell wall. In addition, the decrease of toluene diisocyanate content increases the phase separation of hard domains in polyurethane urea matrix. The optimum amount of uretonimine linkages in the isocyanate for good sound absorption is 4.3 x 10(-5) mol/g, showing the highest partially open pore fraction. Foam properties were analyzed by Fourier transform infrared spectroscopy, atomic force microscopy and scanning electron microscopy. Sound absorption efficiency was analyzed with an impedance tube. (C) 2016 Elsevier Ltd. All rights reserved.
机译:柔性聚氨酯泡沫作为汽车部件的吸声材料引起了广泛的关注。在泡沫的制造中,异氰酸酯组分的分子结构对互连孔的形成具有强烈的影响。聚氨酯脲基体中微相分离和排水流动的两个竞争机制决定了封闭,部分和完全开放的孔隙的分数比。孔隙类型的比例对最终泡沫材料的吸声效率至关重要。包含脲酮亚胺键的改性异氰酸酯的添加不仅增加了基质中硬结构域的微相分离,而且还增加了细胞壁中的排水流。另外,甲苯二异氰酸酯含量的减少增加了聚氨酯脲基体中硬结构域的相分离。异氰酸酯中脲酮亚胺键的最佳吸收量为4.3 x 10(-5)mol / g,表现出最高的部分开孔率,以实现良好的吸声。通过傅立叶变换红外光谱,原子力显微镜和扫描电子显微镜分析泡沫性能。用阻抗管分析吸声效率。 (C)2016 Elsevier Ltd.保留所有权利。

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