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Grafting Functional Antioxidants on Highly Crosslinked Polyethylene

机译:在高度交联聚乙烯上移植功能性抗氧化剂

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The problem of interference of antioxidants, such as hindered phenols, with peroxide-initiated crosslinking of polyethylene was addressed through the use of functional (reactive) graftable antioxidants (g-AO). Reactive derivatives of hindered phenol and hindered amine antioxidants were synthesised, characterised and used to investigate their grafting reactions in high density polyethylene; both non-crosslinked (PE) and highly peroxide-crosslinked (PEX_a) . Assessment of the extent of in-situ grafting of the antioxidants, their retention after exhaustive solvent extraction in PE and PEXa, and the stabilising performance of the grafted antioxidants (g-AO) in the polymer were examined and benchmarked against conventionally stabilised crosslinked & non-crosslinked polyethylene. It was shown that the functional antioxidants graft to a high extent in PEXa, and that the level of interference of the g-AOs with the polymer crosslinking process was minimal compared to that of conventional antioxidants which bear the same antioxidant function. The much higher level of retention of the g-AOs in PEXa after exhaustive solvent extraction, compared to that of the corresponding conventional antioxidants, accounts for their superior long-term thermal stabilising performance under severe extractive conditions.
机译:抗氧化剂,如受阻酚的干扰的问题,用过氧化物引发的交联聚乙烯的通过使用官能(反应性)的可接枝的抗氧化剂(G-AO)来寻址。受阻酚的反应性衍生物和受阻胺抗氧化剂被合成,其特征在于并用于研究在高密度聚乙烯其接枝反应;两个非交联(PE)和高度过氧化物交联(PEX_a)。的程度的评估原位接枝的抗氧化剂,在PE和PEXa,和在聚合物中的接枝的抗氧化剂(G-AO)的稳定性能详尽溶剂萃取后其保留进行了检查,基准对常规稳定化的交联&非-crosslinked聚乙烯。结果表明官能抗氧化剂接枝到在PEXa高程度,以及相比于其中具有相同的抗氧化功能常规抗氧化剂的g的AO的干扰与聚合物交联过程中的电平是最小的。的高得多的电平的g的AO在PEXa详尽溶剂萃取后的保留的,相比于相应的常规的抗氧化剂,占他们优异的长期热稳定严重萃取条件下的性能。

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