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Compatibility studies of bromo butyl and polychloroprene elastomer blends through atomic force microscopy

机译:通过原子力显微镜研究溴化丁基丁基橡胶和聚氯丁二烯弹性体混合物的相容性

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摘要

In order to determine and optimize structure property relationship in polymer blends, knowledge of microscopic morphology is essential. However, much of this microscopic morphology and physical property information work have not been yet done and is not readily available particularly using conventional characterization techniques. In the present study, the capability of topographic and force modulation or phase atomic force microscopy (AFM) for determining the detailed microstructure of bromo butyl (BIIR) and polychloroprene (CR) blends is evaluated. The modulation contrast obtained in this analysis of the blends allows distinguishing a phase and related morphology with ease and good specificity.AFM studies of the BIIR and CR blends in the presence and absence of compatibilizer chlorinated polyethylene (CPE) reveal that the CPE is acting as an efficient compatibilizer. In the presence of CPE as compatibilizer in the blends, the topo image demonstrates the single phase characteristics. Phase image indicates the uniformity in the phase distribution and has been observed in histogram plot which ultimately results in reduction of mean and rms deviations.
机译:为了确定和优化聚合物共混物中的结构性质关系,必须了解微观形态。但是,许多这种微观形态和物理性质信息工作尚未完成,尤其是使用常规表征技术尚不容易获得。在本研究中,评估了地形和力调制或相原子力显微镜(AFM)确定溴丁基(BIIR)和聚氯丁二烯(CR)共混物详细微观结构的能力。在共混物的这种分析中获得的调制对比可以轻松,良好地区分出相和相关的形态。在存在和不存在增容剂氯化聚乙烯(CPE)的情况下,BIIR和CR共混物的AFM研究表明,CPE的作用是有效的增容剂。在共混物中存在CPE作为增容剂时,topo图像显示出单相特性。相位图像表示相位分布的均匀性,并已在直方图中观察到,最终导致均值和均方根偏差的减小。

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