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Micro-thermal analysis of polyester coatings

机译:聚酯涂料的微热分析

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The application and suitability of micro-thermal analysis to detect changes in the chemical and physical properties of coating due to ageing and especially photo-degradation is demonstrated using a model polyester coating based on neopentyl glycol isophthalic acid. The changes in chemical structure like chain scission and cross-linking are manifested by a shift of the LTA detectable T_g and by a change of the slope of the part of the LTA graph responsible for the penetration of the hot sensor into the material after passing the glass transition temperature. As such LTA is a valuable tool to have a quick look into coating surfaces and especially their ageing. The photo-degradation of polyester in air leads to the formation of a cross-linked network at a surface layer of about 3-4 μm coupled with an increase in hardness and of the glass transition temperature by ~90 K, the effect is less drastic for a photo-degradation in a nitrogen environment. Moreover, the presence of a non-equilibrium dense surface layer with a higher T_g formed during the drying of the coating formulation and the film solidification can be shown.
机译:使用基于新戊二醇间苯二甲酸的聚酯模型涂料,证明了微热分析在检测由于老化,尤其是光降解引起的涂层化学和物理性质变化方面的应用和适用性。化学结构的变化(例如断链和交联)通过LTA可检测的T_g的变化以及LTA图的一部分(负责使热传感器穿过材料后渗透到材料中)的斜率变化来体现。玻璃化转变温度。因此,LTA是快速了解涂层表面,尤其是其老化的宝贵工具。聚酯在空气中的光降解导致在约3-4μm的表层形成交联网络,同时硬度和玻璃化转变温度提高了约90 K,效果不那么明显用于氮环境中的光降解。此外,可以显示在涂层制剂的干燥和膜固化期间形成的具有较高T_g的非平衡致密表面层的存在。

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