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The Thermooxidation and Resistance to Moulds Action of Some Polyethylene Sorts Used at Anticorrosive Insulation of the Underground Pipelines

机译:在地下管道防腐蚀绝缘中使用的一些聚乙烯的热氧化和抗模具作用

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Polyethylene (PE) insulations have a wide applicability in the insulation of both underground pipelines and underground power cables. In this context, by coupled techniques of thermal analysis (TG/DTG+DTA) and microbiological determinations, have been studied thermooxidability and resistance to moulds action of some polyethylene sorts. Following the processing of the experimental data obtained by thermal analysis it was found that during the applied heat treatment (100 degrees C), in the first approx. 380 h, there is a growth of LDPE (low density polyethylene) polymerization degree by elongation of aliphatic chains, after which the predominant process consists in the structure crosslinking. For MDPE (mean density polyethylene) samples, during the thermal treatment applied, it was found that the crosslinking degree of polyethylene (PE) increased without significant molecular weight change (with all the related consequences of increasing the weight of the tertiary and quaternary carbon atoms in the molecule). Microbiological determinations have highlighted that the resistance to filamentous fungal action of LPDE is higher than that of the investigated MDPE. It was found that after heat treatment applied (1000 h & 100 degrees C), both at LDPE and at MDPE, decreases the resistance to moulds action is decreased. It has also been found that moulds action resistance is substantially decreased when inoculated culture media and PE samples are exposed to an alternative electric field of 50 Hz - 6 V-rms/cm.
机译:聚乙烯(PE)绝缘在地下管道和地下电力电缆的绝缘中具有广泛的适用性。在这种情况下,通过耦合热分析(Tg / DTG + DTA)和微生物测定技术,已经研究了一些聚乙烯的热氧化性和抗模具作用。在通过热分析获得的实验数据处理之后,发现在施加的热处理期间(100摄氏度),首先是大约。 380小时,通过脂族链伸长,存在LDPE(低密度聚乙烯)聚合度的生长,之后主要过程包括结构交联。对于MDPE(平均密度聚乙烯)样品,在施加的热处理期间,发现聚乙烯(PE)的交联度(PE)的交联度增加而无需显着分子量变化(随着增加叔和季碳原子的所有相关后果而增加的所有相关后果在分子中)。微生物测定强调,LPDE对丝状真菌作用的抗性高于研究的MDPE。发现在LDPE和MDPE的施加(1000H&100摄氏度)的热处理后,降低了对模具作用的抗性降低。还发现,当接种培养基和PE样品暴露于50Hz-6V-rms / cm的替代电场时,模具作用抗性显着降低。

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