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首页> 外文期刊>European Polymer Journal >Chemorheological analysis of a gelled resol resin curing under non-isothermal conditions by shear strain
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Chemorheological analysis of a gelled resol resin curing under non-isothermal conditions by shear strain

机译:非等温条件下通过剪切应变固化的胶凝甲阶酚醛树脂的化学流变分析

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摘要

The chemorheological behavior of curing of a resol resin was analyzed under non-isothermal conditions beyond the gelation point. Two heating ramps (0.5 and 1 oC/min) from 0 to 100C were performed. The rheological measurements of the resin were performed using oscillatory shear strain. The obtained profiles for the resin's complex viscosity were applied, after treatment by two calculation methods, to the four- and six-parameter Arrhenius models. These models allow one to establish the viscous flow region of the resin and the kinetic parameters of the material's curing process. The six-parameter Arrhenius model was selected as the best method for modeling of the resin's rheological behavior during its curing process. The viscous-flow activation energies determined for the gelled resol resin curing were 67.1 and 58.3kJ/mol for the 0.5 and 1 oC/min heating rates, respectively. The activation energies of the resin curing process were 41.7 and 67.0kJ/mol for each temperature ramp.
机译:在超过胶凝点的非等温条件下分析了甲阶酚醛树脂固化的化学流变行为。从0到100C进行了两次升温(0.5和1 oC / min)。使用振荡剪切应变进行树脂的流变学测量。经过两种计算方法处理后,将获得的树脂复数粘度曲线应用于四参数和六参数Arrhenius模型。这些模型允许建立树脂的粘性流动区域和材料固化过程的动力学参数。选择六参数Arrhenius模型作为树脂固化过程中流变行为建模的最佳方法。对于0.5和1 oC / min的加热速率,胶凝甲阶酚醛树脂固化所确定的粘流活化能分别为67.1和58.3kJ / mol。对于每个温度斜坡,树脂固化过程的活化能分别为41.7和67.0kJ / mol。

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