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首页> 外文期刊>Scientific reports. >Effects of UV for Cycloaliphatic Epoxy Resin via Thermokinetic Models, Novel Calorimetric Technology, and Thermogravimetric Analysis
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Effects of UV for Cycloaliphatic Epoxy Resin via Thermokinetic Models, Novel Calorimetric Technology, and Thermogravimetric Analysis

机译:UV通过热动力学模型,新型量热技术和热重分析对环脂族环氧树脂的影响

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The cycloaliphatic epoxy resin selected for this study was 3,4-epoxycyclohexane methyl-3′4′-epoxycyclohexyl-carboxylate (EEC). Epoxy resin has numerous applications, such as varnishes, tires, and electronic materials. However, the extensive used of chlorofluorocarbon (CFC) compounds in the last century has resulted in the formation of a hole in the ozone layer. As a consequence, solar radiation is intensifying gradually; therefore, continuous irradiation by sunlight should be avoided. The results of solar radiation can exacerbate the deterioration and photolysis of compounds. Through thermogravimetry and differential scanning calorimetry, the apparent onset temperature of EEC and EEC was analyzed under UV radiation for different durations. Thermokinetic data were used to determine the parameters of thermal decomposition characteristics through simulation to assess the reaction of EEC and EEC under UV radiation for different durations. The goal of the study was to establish the parameters of thermal decomposition characteristics for the effects of UV on EEC, as well as the probability of severity of thermal catastrophe.
机译:本研究选择的脂环族环氧树脂是3,4-环氧环己烷甲基-3'4'-环氧环己基羧酸酯(EEC)。环氧树脂具有许多应用,例如清漆,轮胎和电子材料。但是,在上个世纪,氯氟烃(CFC)化合物的广泛使用已导致在臭氧层中形成孔。结果,太阳辐射逐渐增强。因此,应避免阳光连续照射。太阳辐射的结果会加剧化合物的降解和光解。通过热重分析和差示扫描量热法,分析了不同持续时间下紫外线辐射下EEC和EEC的表观起始温度。通过热动力学数据通过模拟来评估EEC和EEC在不同持续时间的紫外线辐射下的反应,从而确定热分解特性的参数。该研究的目的是为紫外线对EEC的影响建立热分解特性的参数,以及热灾难严重性的可能性。

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