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Dielectric Changes During the Curing of Epoxy Resin Based

机译:环氧树脂固化过程中的介电变化

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The curing characteristics of diglycidyl ether of bisphenol A (DGEBA) with diaminodiphenylmethane (DDM) as a curing agent were studied using differential scanning calorimetry (DSC), rheometrics mechanical spectrometry (RMS), and dielectric analysis (DEA). The isothermal curing kinetics measured by DSC were well represented with the generalized auto-catalytic reaction model. With the temperature sweep, the inverse relationship between complex viscosity measured by RMS and ionic conductivity obtained from DEA was established indicating that the mobility of free ions represented by the ionic conductivity in DEA measurement and the chain segment motion as revealed by the complex viscosity measured from RMS are equivalent. From isothermal curing measurements at several different temperatures, the ionic conductivity contribution was shown to be dominant in the dielectric loss factor at the early stage of cure. The contribution of the dipole relaxation in dielectric loss factor became larger as the curing further proceeded. The critical degrees of cure, at which the dipolar contribution in the dielectric loss factor starts to appear, increases as isothermal curing temperature is increased. The dielectric relaxation time at the same degree of cure was shorter for a sample cured at higher curing temperature.
机译:利用差示扫描量热法(DSC),流变学机械能谱(RMS)和介电分析法(DEA)研究了双酚A的二缩水甘油醚(DGEBA)与二氨基二苯甲烷(DDM)作为固化剂的固化特性。用DSC测得的等温固化动力学可以用广义的自动催化反应模型很好地表示。通过温度扫描,建立了通过RMS测得的复数粘度与从DEA获得的离子电导率之间的反比关系,表明由DEA测得的离子电导率所代表的自由离子的迁移率和由DEA测得的复数粘度所揭示的链段运动。 RMS是等效的。根据在几个不同温度下的等温固化测量,在固化初期,离子电导率贡献在介电损耗因子中占主导地位。随着固化的进一步进行,偶极弛豫对介电损耗因子的贡献变得更大。随着等温固化温度的升高,固化的临界程度开始增加,在该临界程度下,介电损耗因子中的偶极作用开始出现。对于在较高固化温度下固化的样品,在相同固化度下的介电弛豫时间较短。

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