首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis of Mehtacrylic Copolymers with Nona-1-butoxy Trititanosiloxane as Side Groups and Its Application as a Thermosetting Resin
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Synthesis of Mehtacrylic Copolymers with Nona-1-butoxy Trititanosiloxane as Side Groups and Its Application as a Thermosetting Resin

机译:壬基-1-丁氧基三钛硅氧烷为侧基的甲基丙烯酸共聚物的合成及其在热固性树脂中的应用

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Methacrylic copolymers with a hydroxyl group on one end of the main chain and nona-1-butoxytrititanosiloxane as side groups (called methacrylic hybrid copoly- mers) were synthesized for use as baked-finish-type coating resins. The chemical structures of the side groups in the methacrylic hybrid copolymers were confirmed with the ash weight of the copolymers after combustion, the elemental ratio analysis of Si and Ti in the ash determined by inductively coupled plasma emission spectrometry, and the characteristic absorption band determined by Fourier transform infrared spectro- photometry .The methacrylic hybrid copolymers were cured at temperatures less than 150 °C in the absence of a curing accelerator. The cured copolymers exhibited a high thermal stability. The curing temperature of the copolymers was determined by the change in the absorption peak strength (peak area) of the 1655 cm-1 band in the IR difference spectrum. The thermal stability of the copolymers was evaluated as the thermal-degradation temperature measured by thermogravimetric analysis. The methacrylic hybrid copolymers were then be used as effective curing resins. The mixture, consisting of thermoplastic methacrylic terpolymer with hydroxyl and car- boxyl groups and the methacrylic hybrid copolymers, were cured at less than 150 °C in the absence of a curing accelerator and exhibited a higher thermal.degradation tem- perature than the copolymers.
机译:合成了在主链的一端具有羟基和侧链九烷基-1-丁氧基三钛基硅氧烷的甲基丙烯酸共聚物(称为甲基丙烯酸杂化共聚物),用作烤漆型涂料树脂。通过燃烧后共聚物的灰分重量,通过电感耦合等离子体发射光谱法测定灰分中的Si和Ti的元素比分析以及通过测定的特征吸收带,确定了甲基丙烯酸杂化共聚物中侧基的化学结构。傅里叶变换红外分光光度法。在没有固化促进剂的情况下,甲基丙烯酸杂化共聚物在低于150°C的温度下固化。固化的共聚物表现出高的热稳定性。共聚物的固化温度通过IR差光谱中1655cm-1谱带的吸收峰强度(峰面积)的变化来确定。评估共聚物的热稳定性,作为通过热重分析法测量的热降解温度。然后将甲基丙烯酸杂化共聚物用作有效的固化树脂。该混合物由具有羟基和羧基的热塑性甲基丙烯酸三元共聚物和甲基丙烯酸杂化共聚物组成,在不存在固化促进剂的情况下,在低于150°C的温度下进行固化,并显示出比共聚物更高的热降解温度。

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