首页> 外文会议>Proceedings of the Twenty-Sixth Conference of the North American Thermal Analysis Society September 13-15, 1998 Cleveland, Ohio >The impact of high surface area magnesium hydroxide on the stability of vinylidene chloride copolymers
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The impact of high surface area magnesium hydroxide on the stability of vinylidene chloride copolymers

机译:高表面积氢氧化镁对偏二氯乙烯共聚物稳定性的影响

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摘要

Vinylidene chloride copolymers display high barrier to the transport of oxygen, other small molecules, and flavor and aroma agents. For this reason they occupy a place of prominence in the plastic packaging industry. Unfortunately, these polymers undergo facile thermally-induced degradative dehydrochlorination at modest temperatures. To permit the processing of these materials at 150-170deg C an effective stabilization package is required. One component of any stabilization system is a passive base to absorb evolved hydrogen chloride which can form accelerative Lewis acids by interaction with metallic surfaces of process equipment. The availability of a new high-surface area magnesium hydroxide offers potential for development as an effective additive for this purpose. Blends of this material and other commercially available magnesium hydroxides have been examined by thermogravimetry to assess the utility of these materials as potential stabilizers for vinylidene chloride polymers.
机译:偏二氯乙烯共聚物对氧气,其他小分子以及风味剂和香气剂的传输显示出高阻隔性。因此,它们在塑料包装行业中占据着突出的位置。不幸的是,这些聚合物在适中的温度下容易进行热诱导的降解脱氯化氢反应。为了允许在150-170摄氏度下处理这些材料,需要有效的稳定包装。任何稳定系统的一个组成部分都是一种被动碱,用于吸收放出的氯化氢,该放出的氯化氢可通过与加工设备的金属表面相互作用而形成加速路易斯酸。新型高表面积氢氧化镁的实用性为开发有效的添加剂提供了潜力。已经通过热重分析法检查了该材料与其他市售氢氧化镁的共混物,以评估这些材料作为偏二氯乙烯聚合物的潜在稳定剂的用途。

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