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Rheological Property and Adhesive Performance of Polymer Coating Film for Telecommunication Plant

机译:电信设备用聚合物涂膜的流变性能和粘合性能

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摘要

Many telecommunication facilities are protected against long-term weather exposure by some type of weathering prevention technology. The steel poles used by radio stations are coated with polymer material to ensure both a long lifetime and reliability. Our goal is to develop a new technique for measuring the adhesive performance of a polymer film coating on galvanized steel by using a rheological approach. Conventional adhesion testing has proved difficult to reproduce, thus limiting its usefulness. In this study, we investigated the dynamic behavior of the poly?mer film, tried to evaluate the adhesive performance, and estimate the trend of the mechanical properties. Addition?ally, we have tried to correlate data obtained in a conventional way with data obtained with the rheological technique to predict the mechanical properties over the lifetime of the material. The result clearly shows the large time depen?dence of the mechanical properties. Continued film degradation during artificial accelerated cycle testing reveals the corresponding trend for dynamic storage and the loss modulus. We also found that it is possible to predict the potential breaking locations and the degree of strength of polymer films by comparing the results of conventional adhesive performance testing and our new rheological findings.
机译:通过某些类型的防风雨技术,可以保护许多电信设施免受长期的天气影响。广播电台使用的钢杆均涂有聚合物材料,以确保长寿命和可靠性。我们的目标是开发一种新技术,通过使用流变学方法来测量镀锌钢板上聚合物膜涂层的粘合性能。事实证明,常规的附着力测试难以复制,因此限制了其实用性。在这项研究中,我们研究了聚合物薄膜的动态行为,试图评估胶粘剂的性能,并估计机械性能的趋势。此外,我们尝试将以常规方式获得的数据与通过流变技术获得的数据进行关联,以预测材料在整个使用寿命期间的机械性能。结果清楚地表明了机械性能的时间依赖性。在人工加速循环测试过程中,薄膜的持续降解揭示了动态存储和损耗模量的相应趋势。我们还发现,通过比较常规胶粘剂性能测试的结果和我们新的流变学发现,可以预测聚合物薄膜的潜在断裂位置和强度。

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