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首页> 外文期刊>Iranian polymer journal >Morphology and Mechanical Properties of an Elastomeric Poly(HIPE) Nanocomposite Foam Prepared via an Emulsion Template
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Morphology and Mechanical Properties of an Elastomeric Poly(HIPE) Nanocomposite Foam Prepared via an Emulsion Template

机译:通过乳液模板制备的弹性体聚(HIPE)纳米复合泡沫的形貌和力学性能

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摘要

Open-cellular elastomeric nanocomposite foams were obtained by polymerization of water-in-oil high internal phase emulsions (HIPEs) containing 2-ethylhexylacrylate, styrene, divinylbenzene, and organo-modified montmoril-lonite (org-MMT)s. The effects of various org-MMT contents on the emulsion viscosity and microcellular structure and mechanical properties of the resulting elastomeric foams were investigated. The results showed that the incorporation of modified clay (organoclay) led io lower emulsion torque value, approximately to a characteristic value of the emulsion viscosity. Scanning electron microscopy (SEM) micrographs revealed that the presence of modified clays, 1-5% (by weight), considerably influenced the microstructure of the copolymer solid foam. For instance, the introduction of 1% (by weight) organoclay (Cloisite~® 15A) decreased the mean void diameter from 5.47 to 4.45 μm and the intercellular pore size from 1.39 to 0.86 μm. At above this content of organoclay, the mean void diameter and intercellular pore size increased. The presence of organoclay may influence the separation phase behaviour within the polymerizing monomeric organic phase and it may act as a co-surfactant to vary the sizes of voids and intercellular pores. X-Ray diffraction (XRD) patterns and transmission electron microscopy (TEM) micrographs showed an intercalated nanocomposite structure for the elastomeric composite foams containing Cloisite~® 30B organoclay. TEM Micrographs showed that less hydrophobic Cloisite~® 30B organoclay tends to be located at the interface between aqueous and organic phases of emulsion, while in case of more hydrophobic organoclay, i.e., Cloisite~® 15A, it finds its position away from the interface; inside the continuous organic phase of concentrated emulsion. Surprisingly, adding the organoclays to the emulsions lowers the compressive mechanical properties of the reinforced solid rubbery foams compared with the copolymer foam without any reinforcement. On the whole significant improvement on the compression set was observed.
机译:开孔弹性体纳米复合泡沫材料是通过油包水高内相乳液(HIPE)的聚合而获得的,该乳液包含丙烯酸2-乙基己酯,苯乙烯,二乙烯基苯和有机改性的蒙脱土-朗石(org-MMT)。研究了各种org-MMT含量对所得弹性体乳液的乳液粘度,微孔结构和机械性能的影响。结果表明,改性粘土(有机粘土)的掺入导致较低的乳液扭矩值,大约达到乳液粘度的特征值。扫描电子显微镜(SEM)显微照片表明,改性粘土的存在(1-5%(重量))极大地影响了共聚物固体泡沫的微观结构。例如,引入1%(按重量计)的有机粘土(Cloisite®15A)将平均孔隙直径从5.47降低至4.45μm,细胞间孔径从1.39降低至0.86μm。在该有机粘土含量以上时,平均空隙直径和细胞间孔尺寸增加。有机粘土的存在可能影响聚合单体有机相中的分离相行为,并且它可以充当助表面活性剂以改变空隙和细胞间孔的大小。 X射线衍射(XRD)图和透射电子显微镜(TEM)显微照片显示了含30i有机粘土Cloisite®的弹性体复合泡沫的插层纳米复合结构。 TEM显微照片显示,疏水性Cloisite〜®30B有机粘土倾向于位于乳液的水相和有机相之间的界面,而在疏水性更高的有机粘土(即Cloisite〜®15A)的情况下,其位置远离界面;在浓缩乳液的连续有机相内部。令人惊讶地,与没有任何增强的共聚物泡沫相比,将有机粘土添加到乳液中降低了增强的固体橡胶状泡沫的压缩机械性能。总体上,观察到压缩永久变形的显着改善。

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