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Development of cell morphologies in manufacturing flexible polyurethane urea foams as sound absorption materials

机译:在制造用作吸声材料的软质聚氨酯脲泡沫中产生泡孔形态

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摘要

The effect of water content and a type of gelling catalysts [Triethylenediamine (DABCO) and dibutyltin dilaurate (DBTDL)] on chemical and physical structures of the flexible polyurethane foams (the flexible PUFs) is explored by a fourier transform infrared spectroscopy with attenuated total reflectance and a scanning electron microscope techniques. The amount of water usage plays a crucial role in controlling the sizes of cavities and pores of the PUFs. From the two gelling catalysts, the DBTDL reduces the rate of urea formation and NCO (isocyanate functional group) conversion due to the reduced molecular activity from the sterically hindered catalyst structure, comparing with the DABCO catalyst case. Strong gelling effect of the DBTDL can prevent the coalescence of the cavities and thus produce high number of well dispersed pores, but poor cavity and pore morphologies are observed in case of the fast reactions between isocyanate and water with the DABCO catalyst. The size uncertainties of cavity and pores with DBTDL catalyst are relatively smaller than with DABCO catalyst. In the sound absorption characteristics, uniformly distributed cavities and pores show better efficiency than the non-uniform cases.
机译:通过傅立叶变换红外光谱法研究了水含量和一种胶凝催化剂[三乙二胺(DABCO)和二月桂酸二丁锡(DBTDL)]对柔性聚氨酯泡沫(柔性PUF)的化学和物理结构的影响。和扫描电子显微镜技术。用水量在控制PUF的孔洞大小方面起着至关重要的作用。与DABCO催化剂相比,由于空间位阻催化剂结构的分子活性降低,从这两种胶凝催化剂中,DBTDL降低了尿素形成速率和NCO(异氰酸酯官能团)转化率。 DBTDL的强胶凝作用可以防止孔洞的聚结,从而产生大量分散良好的孔,但是在异氰酸酯和水与DABCO催化剂快速反应的情况下,观察到不良的孔洞和孔道形态。 DBTDL催化剂的空腔和孔的尺寸不确定度相对小于DABCO催化剂。在吸声特性上,均匀分布的腔和孔比不均匀的情况显示出更好的效率。

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