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首页> 外文期刊>The Korean journal of chemical engineering >Morphological, acoustical, and physical properties of free-rising polyurethane foams depending on the flow directions
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Morphological, acoustical, and physical properties of free-rising polyurethane foams depending on the flow directions

机译:上升型聚氨酯泡沫的形态,声学和物理性质取决于流动方向

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摘要

Polyurethane foam is widely used for automobile compartments as sound absorption materials due to its excellent noise dissipation characteristics. This sound absorption property is strongly dependent on the cavity and pore structures of the foams, and the cell morphology can be modulated by controlling experimental parameters. Two types of gelling catalysts were demonstrated in fabrications of polyurethane foams to control the cell morphology. The cell morphology of the free-rising polyurethane foams was investigated using dibutyltin-dilaurate and triethylenediamnine gelling catalysts, and the cell structures were analyzed from the free-rising samples obtained in various sampling heights and flow directions. The finer cell morphology was obtained with the organotin type catalyst by the faster gelling reactivity, compared with the amine type catalyst. In addition, the spherical small cavities in the samples obtained from horizontal planes of the free-rising foams revealed higher sound absorption coefficient and physical toughness than the elliptical irregular cavities from vertical planes, due to the higher homogeneity of cavity distributions in the horizontal planes.
机译:聚氨酯泡沫由于其优异的噪声消散特性而被广泛用作汽车隔室的吸声材料。这种吸声特性在很大程度上取决于泡沫的空腔和孔结构,并且可以通过控制实验参数来调节泡孔的形态。在聚氨酯泡沫的制造中证明了两种类型的胶凝催化剂,以控制泡孔的形态。使用二月桂酸二丁基锡和三亚乙基二氨基胶凝催化剂研究了自由上升型聚氨酯泡沫的孔道形态,并根据在不同采样高度和流动方向上获得的自由上升型样品分析了孔道结构。与胺型催化剂相比,有机锡型催化剂通过更快的胶凝反应性获得了更精细的细胞形态。另外,由于水平面内空腔分布的均匀性较高,从自由上升的泡沫的水平面获得的样品中的球形小空腔比垂直平面上的椭圆形不规则空腔具有更高的吸声系数和物理韧性。

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