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Polyethylene compounds containing mineral fillers modified by acid coatings. 1: Characterization and processing

机译:含矿物填料的聚乙烯化合物,经酸涂层改性。 1:表征和处理

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摘要

Research has been carried out to determine the effect of filler coatings on the processing properties of medium density polyethylene (MDPE) modified by an ultrafine grade of flame-retardant magnesium hydroxide (Mg(OH)(2)) filler. Selected filler coatings were acid-group terminated and were of varying aliphatic chain length. The filler dry-coating process has been optimized by characterizing the reaction between Mg(OH)(2) filler surface and the acid group, using spectroscopic techniques including Fourier transform infrared (FTIR) and X-ray photoelectron spectroscopy (XPS). Using immersion calorimetry, the interactions between the fillers and the polyolefin matrix were shown to decrease on the addition of a fatty-acid coating. Compounding torque and specific energy data relate to filler dispersion; qualitative analysis has demonstrated how the coatings provide a reduction in both size and number of particle agglomerates. MDPE compound processability was assessed by capillary rheometry; wall slip was evident in compounds containing uncoated Mg(OH)(2) filler. Consequently, the development of molecular orientation of the polymer during injection mold filling, quantified by a reversion analysis, is modified by the effects of filler coating chain length and addition level, an effect that has important implications to link the mechanical properties of MDPE-Mg(OH)(2) composites to processing history. [References: 32]
机译:已经进行了研究以确定填料涂层对由超细级阻燃氢氧化镁(Mg(OH)(2))填料改性的中密度聚乙烯(MDPE)的加工性能的影响。选定的填料涂层被酸基封端,并且具有不同的脂肪链长度。通过使用包括傅立叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)在内的光谱技术表征Mg(OH)(2)填料表面与酸基团之间的反应,可以优化填料干涂工艺。使用浸没量热法,显示出填料与聚烯烃基体之间的相互作用随着添加脂肪酸涂层而降低。复合扭矩和比能数据与填料分散有关。定性分析已经证明涂层如何减少颗粒附聚物的尺寸和数量。 MDPE化合物的可加工性通过毛细管流变仪评估;含有未涂覆的Mg(OH)(2)填料的化合物中壁滑明显。因此,在注塑模具填充过程中,聚合物的分子取向发展(通过回归分析进行了量化)被填料涂层链长和添加量的影响所修饰,这一影响对于链接MDPE-Mg的机械性能具有重要意义。 (OH)(2)合成到加工历史。 [参考:32]

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