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Effect of organoclays on the degradation of polyoxymethylene homopolymer during melt processing

机译:有机粘土对熔融加工过程中聚甲醛均聚物降解的影响

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摘要

The improvement of Polyoxymethylene (POM) thermomechanical properties through the incorporation of nanofillers such as organoclays can be hindered by a detrimental effect of the latter on the thermal stability of the polymer. In order to be able to develop polyoxymethylene-based nanocomposites, it is necessary to assess the relation between nanofillers chemical properties and the thermal stability of POM. For this purpose, polyoxymethylene nanocomposites containing various organoclays have been processed and thoroughly characterized in this work. It is confirmed that organoclay containing nanocomposites are less thermally stable than neat polyoxymethylene. In this study, we bring evidence that the degradation of the alkylammonium ions of the organoclay is not responsible for polyoxymethylene decreased thermal stability. Moreover, it is demonstrated that the quantity of acidic sites on the organoclay surface accelerates the degradation and more surprisingly that their nature (Bronsted or Lewis) can induce different degradation mechanisms.
机译:通过掺入纳米填料(例如有机粘土),聚甲醛(POM)热机械性能的改善可能会受到后者对聚合物热稳定性的不利影响。为了能够开发基于聚甲醛的纳米复合材料,有必要评估纳米填料的化学性质与POM的热稳定性之间的关系。为此目的,已对含有各种有机粘土的聚甲醛纳米复合材料进行了加工,并在这项工作中进行了全面表征。证实了含有有机粘土的纳米复合材料比纯聚甲醛的热稳定性差。在这项研究中,我们提供证据表明有机粘土的烷基铵离子的降解与聚甲醛降低的热稳定性无关。此外,已证明有机粘土表面上的酸性位点的数量加速了降解,更令人惊讶的是它们的性质(布朗斯台德或路易斯)可以诱导不同的降解机理。

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