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首页> 外文期刊>Materials Chemistry and Physics >Modeling and simulation of curing kinetics for the cardanol-based vinyl ester resin by means of non-isothermal DSC measurements
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Modeling and simulation of curing kinetics for the cardanol-based vinyl ester resin by means of non-isothermal DSC measurements

机译:非等温DSC测量对腰果酚基乙烯基酯树脂的固化动力学进行建模和模拟

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The cure kinetics of vinyl ester-styrene system was studied by non-isothermal differential scanning calorimetric (DSC) technique at four different heating rates. The kinetic parameters of the curing process were determined by isoconversional method for the kinetic analysis of the data obtained by the thermal treatment. Activation energy (E_a = 56.63 kJ mol~(-1)) was evaluated for the cure process and a two-parameter (m, n) autocatalytic model was found to be the most adequate to describe the cure kinetics of the studied cardanol-based vinyl ester resin. Non-isothermal DSC curves, as obtained by using the experimental data, show good agreement with the DSC curves obtained by theoretically calculated data.
机译:通过非等温差示扫描量热法(DSC)研究了四种不同加热速率下乙烯基酯-苯乙烯体系的固化动力学。通过等转化方法确定固化过程的动力学参数,以对通过热处理获得的数据进行动力学分析。评价了活化过程的活化能(E_a = 56.63 kJ mol〜(-1)),发现两参数(m,n)自催化模型最能描述所研究的腰果酚基硫化动力学。乙烯基酯树脂。通过使用实验数据获得的非等温DSC曲线与通过理论计算的数据获得的DSC曲线显示出良好的一致性。

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