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Early detection of degradation in a semi-crystalline polyolefin by a successive self-nucleation and annealing technique

机译:通过连续自成核和退火技术早期检测半结晶聚烯烃中的降解

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摘要

Samples taken from a black pipeline liner that became fragile while in service were analyzed by a Successive Self-Nucleation and Annealing (SSA) technique. Two types of polyethylene, Low-Density Polyethylene (LDPE) and Linear Low-Density Polyethylene (LLDPE) were aged in air, at several temperatures, and changes in the molecular structure were followed simultaneously by infrared and calorimetric techniques. Samples with and without antioxidants were prepared, aged, and evaluated for the same oxidative treatments. The LDPE type was chosen to be identical to the black LDPE originally used for making the pipeline liner. Oxidative reactions of LDPE and LLDPE were quantified via carbonyl group concentrations measured by FTIR. Changes in the crystallization behavior of the original and aged polymers, and of the black pipeline liner, were monitored via the SSA technique. Changes of the fraction of lamellae of specific thickness in the crystallized polymer could be correlated linearly with the formation of carbonyls, and thus this calorimetric method is proposed to be suitable as a tool for early quantitative monitoring of LDPE degradation.
机译:使用连续自成核和退火(SSA)技术分析了在使用中变黑的黑色管道衬里中的样品。将两种类型的聚乙烯,低密度聚乙烯(LDPE)和线性低密度聚乙烯(LLDPE)在空气中于几个温度下老化,然后通过红外和量热技术同时跟踪分子结构的变化。制备具有和不具有抗氧化剂的样品,老化并评估相同的氧化处理。选择的LDPE类型与最初用于制造管道衬管的黑色LDPE相同。 LDPE和LLDPE的氧化反应通过FTIR测量的羰基浓度定量。原始和老化的聚合物以及黑色管道衬里的结晶行为变化通过SSA技术进行监控。结晶聚合物中特定厚度的薄片分数的变化可以与羰基的形成线性相关,因此,该量热方法被认为适合作为早期定量监测LDPE降解的工具。

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