加入各种过渡金属硬脂酸盐后聚乙烯氧化破坏的动力学特征

IF 0.58 Q4 Materials Science
V. A. Ovchinnikov, Z. R. Abushakhmanova, E. E. Mastalygina, P. V. Pantyukhov, E. A. Mamin, N. G. Kupinsky, A. A. Popov
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引用次数: 0

摘要

摘要 在这项工作中,研究了硬脂酸钙、镁和锌对聚乙烯氧化破坏的能力。为了进行比较,选择了纯聚乙烯和添加了商业添加剂 D2W 的聚乙烯样品。红外光谱数据显示,含有硬脂酸镁的样品在气候箱中暴露 96 小时后,积累了双碳键。在含有硬脂酸锌的样品中,COO 基团的不对称振动在气候箱中暴露 192 小时后消失。所有样品都积累了聚合物链裂解产生的羰基。经过 96 小时的老化后,与其他硬脂酸盐相比,硬脂酸钙样品显示出更好的氧化特性。机械测试数据也证实了这一结论,即在所研究的硬脂酸盐中,硬脂酸钙样品更容易氧化降解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Kinetic Features of the Oxidative Destruction of Polyethylene with Addition of Stearates of Various Transition Metals

Kinetic Features of the Oxidative Destruction of Polyethylene with Addition of Stearates of Various Transition Metals

Kinetic Features of the Oxidative Destruction of Polyethylene with Addition of Stearates of Various Transition Metals

In this work, the ability of calcium, magnesium, and zinc stearates to oxidative destruction of polyethylene was studied. For comparison, the samples of pure polyethylene and polyethylene with the commercial additive D2W were selected. Infrared spectroscopy data showed that samples with magnesium stearate accumulated double carbon bonds after 96 h of exposure in a climate chamber. In samples with zinc stearate, an asymmetric vibrations of COO groups disappear after 192 h of exposure in a climate chamber. All samples accumulated carbonyl groups resulting from polymer chain scission. After 96 h of aging, the sample with calcium stearate showed better oxidizing properties compared to other stearates. Mechanical test data also confirms the conclusion that the sample with calcium stearate is more susceptible to oxidative degradation among the studied stearates.

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来源期刊
Polymer Science, Series D
Polymer Science, Series D Materials Science-Polymers and Plastics
CiteScore
0.80
自引率
0.00%
发文量
87
期刊介绍: Polymer Science, Series D  publishes useful description of engineering developments that are related to the preparation and application of glues, compounds, sealing materials, and binding agents, articles on the adhesion theory, prediction of the strength of adhesive joints, methods for the control of their properties, synthesis, and methods of structural modeling of glued joints and constructions, original articles with new scientific results, analytical reviews of the modern state in the field.
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