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Thermal activation of impedance measurements on an epoxy coating for the corrosion protection: 1. Dielectric spectroscopy response in the dry state

机译:腐蚀保护环氧涂层对阻抗测量的热激活:1。干燥状态下的介电光谱响应

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In this series, an epoxy varnish for the corrosion protection of carbon steel was analyzed in the dry state by broadband dielectric spectroscopy (part 1) to describe the molecular mobility of the epoxy network. Electrochemical impedance spectroscopy measurements were then performed during immersion in a 0.5M NaCl solution (part 2), with the intent to detect the signature of the molecular mobility in the wet state. The present part 1 focuses on the analysis of the dipolar relaxation times associated with the dielectric manifestation of the glass transition in the dry varnish (alpha-mode). They displayed the characteristic Vogel-Fulcher-Tammann dependence on temperature, which is the typical signature of the amode. The study of the relaxation times showed an anti-plasticizing process upon heating the sample, attributed to the outgassing of absorbed ambient humidity and plasticizers from the formulation. When these elements were completely removed, through an annealing step, the epoxy network became stabilized. The low-frequency electrical conductivity of the varnish presented a very similar temperature dependence to the alpha-mode, meaning that the molecular mobility governs the electrical charge transport processes in this system. Absorbed ambient humidity and plasticizers also had a great influence on the electrical conductivity, resulting in three decades higher values compared to the annealed sample without these elements. The strong influence of plasticizers on both the molecular mobility (through plasticization) and the electrical conductivity should be taken into account in view of the barrier properties of the final coating. Part 1 of this series provides a basis for a molecular mobility analysis of the electrochemical impedance measurements performed in part 2. (c) 2019 Elsevier Ltd. All rights reserved.
机译:在这一系列中,对碳钢的腐蚀保护的环氧树脂清漆在干燥状态下进行了分析由宽带介电谱(第1部分)来描述环氧网络的分子运动性。然后电化学阻抗谱测量在0.5M的NaCl溶液中浸泡(第2部分)期间执行,以意向检测在湿状态下的分子运动性的签名。本第1部分主要与在干燥清漆(α-模式)的玻璃化转变的电介质表现相关联的偶极弛豫时间的分析。它们显示在温度特性沃格尔-富尔彻-塔曼依赖性,这是AMODE的典型签名。弛豫时间的研究表明在加热样品,归因于吸收环境湿度和增塑剂从制剂的除气的抗塑化过程。当这些元件被完全除去,通过退火步骤,所述环氧网络变得稳定。清漆的低频电导率提出了一个非常相似的温度依赖性与α-模式,这意味着分子运动性支配的电荷运输过程在本系统中。吸收环境湿度和增塑剂也对导电性有很大的影响,从而导致三个十年较高值相比于没有这些元件的退火的样品。在两个分子运动性(通过增塑)和电导率增塑剂的强烈影响,应考虑到图的最终涂层的阻隔性能。本系列的第1部分提供了用于在部件2执行的电化学阻抗测量的分子运动性分析的基础保留(C)2019 Elsevier公司所有权利。

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