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Elaboration of nanostructured polyurethane foams/OMMT using a twin-screw extruder in counter-rotating mode

机译:使用双螺杆挤出机以反向旋转方式加工纳米结构聚氨酯​​泡沫/ OMMT

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In this work, a new elaboration method for nanostructured foam polyurethane/ organo-modified montmorillonite (PUR/OMMT) by in situ polymerization is proposed. A twin-screw extruder in the contra-rotation mode combined with reaction injection molding (RIM) as the polymerization process was used. The blended polyols, copolymer polyol (CPP) were included between the OMMT layers via the twin-screw extruder. Both the formulation of the PUR and the inter-foliar distance in the montmorillonite (MMT) were optimized. The effect of some parameters such as OMMT content and catalyst (triethylenediamine for PUR 3 and triethylenediamine+diamino-1,2 propane for PUR 4) was also investigated. The synthesized materials (OMMT, PUR and PUR/OMMT) were characterized by different methods, i.e., Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results of evaluation tests, such as flammability and the tensile for the PUR 3+OMMT foams revealed that the optimum properties were obtained for PUR 3+2 % OMMT. The PUR 4 foam showed better mechanical and flame- -retardant properties than the PUR 3 (r = –NCO/–OH = 1.15) foam. However, the PUR 4 + 2 % OMMT formula exhibited the most delayed flame diffusion and pronounced rigidity.
机译:在这项工作中,提出了一种通过原位聚合制备纳米结构泡沫聚氨酯/有机改性蒙脱土(PUR / OMMT)的新方法。使用反向旋转模式的双螺杆挤出机结合反应注射成型(RIM)作为聚合过程。经由双螺杆挤出机将共混多元醇,共聚物多元醇(CPP)包括在OMMT层之间。 PUR的配方和蒙脱石(MMT)中的叶间距离都得到了优化。还研究了某些参数的影响,例如OMMT含量和催化剂(对于PUR 3为三亚乙基二胺,对于PUR 4为三亚乙基二胺+二氨基-1,2丙烷)。合成的材料(OMMT,PUR和PUR / OMMT)通过不同的方法进行表征,即傅立叶变换红外光谱(FTIR),X射线衍射(XRD)和扫描电子显微镜(SEM)。 PUR 3 + OMMT泡沫的可燃性和拉伸性等评估测试的结果表明,PUR 3 + 2%OMMT获得了最佳性能。与PUR 3(r = –NCO / –OH = 1.15)泡沫相比,PUR 4泡沫具有更好的机械和阻燃性能。但是,PUR 4 + 2%OMMT配方显示出最延迟的火焰扩散和明显的刚性。

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