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Durability of a reference material over diverse conditions

机译:在不同条件下参考材料的耐久性

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A medium density polyethylene with peak melting point of about 125 deg C and near 61percent crystallinity has been proposed as a reference material for the Oxidative Induction Time by Differential Scanning Calorimetry[1]. The material was stabilized by a high molecular weight hindered phenol antioxidant tetrakis-[methylene 3-(3',5'-di-t-butyl-4'hydroxyphenyl) propionate] methane, (designated as AO-1) and a phosphite synergist. Although Blaine et.al. has characterized the material over several years with a multitude of standard methods, their aim was primarily to establish homogeneity and lab to lab reproducibility. Due to the wide spread use of very similar materials in medical packaging, where long term shelf life storage integrity needs to be assured, and the values in understanding fundamental polymer stability, we have undertaken a study of the material over very diverse conditions, going far beyond the experimental parameters of the original reference[1].
机译:已经提出了具有约125℃和接近61%结晶度的峰值熔点和接近61%结晶度的中密度聚乙烯作为差示扫描量热法作为氧化诱导时间的参考材料[1]。通过高分子量受阻酚抗氧化四 - 甲烷稳定该材料稳定,(3',5'-二叔丁基-4'羟基苯基)丙烷]甲烷,(指定为AO-1)和亚磷酸盐协同作用。虽然Blaine et.al.已经表征了多年来的材料,众多标准方法,其目的主要是建立均匀性和实验室的实验室再现性。由于在医疗包装中使用非常相似的材料的广泛应用,需要保证长期保质期储存完整性,并且了解基础聚合物稳定性的值,我们已经在非常多样化的条件下进行了对材料的研究超出原始参考的实验参数[1]。

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