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Reaction mechanism, cure behavior and properties of a multifunctional epoxy resin, TGDDM, with latent curing agent dicyandiamide

机译:多功能环氧树脂TGDDM与潜在固化剂双氰胺的反应机理,固化行为和性能

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A novel resin system was prepared using the glycidyl amide type multifunctional epoxy resin N , N , N ′, N ′-tetraglycidyl-4,4′-diaminodiphenylmethane (TGDDM) and latent curing agent dicyandiamide (DICY). The curing reaction mechanism of the TGDDM/DICY system was studied by Fourier transform infrared (FTIR) spectrometry and the non-isothermal cure behaviors of the mixture were investigated with differential scanning calorimetry (DSC) measurements. The FTIR results demonstrated that there were two main reactions occurring in the curing process of the TGDDM/DICY system. The DSC thermogram of the blend exhibited two different cure regimes in the temperature range of 140–358 °C, and the system experienced two autocatalytic curing processes with α = 0.45 as the boundary; the corresponding average activation energies calculated by the Kissinger method were 69.7 and 88.7 kJ mol ~(?1) , respectively. In addition, the correlation between activation energy E _(a) and fractional conversion α was determined by applying model-free isoconversional analysis with Flynn–Wall–Ozawa (FWO) and Starink methods. Results showed that both methods revealed similar trends and possessed approximately the same values at each fractional conversion. Activation energy varied greatly with fractional conversion and the possible causes behind the variations were analyzed in detail. The cured TGDDM/DICY exhibited outstanding mechanical and adhesive properties with tensile and shear strengths of 27.1 MPa at 25 °C and12.6 MPa at 200 °C, good dielectric properties with a low dielectric constant of 3.26 at 1000 kHz and a low water absorption of 0.41%.
机译:使用缩水甘油酰胺型多功能环氧树脂N,N,N',N'-四缩水甘油基-4,4'-二氨基二苯甲烷(TGDDM)和潜在的固化剂双氰胺(DICY)制备了新型树脂体系。通过傅里叶变换红外光谱(FTIR)研究了TGDDM / DICY体系的固化反应机理,并通过差示扫描量热法(DSC)测量了混合物的非等温固化行为。 FTIR结果表明,TGDDM / DICY系统的固化过程中发生了两个主要反应。混合物的DSC热谱图在140–358°C的温度范围内表现出两种不同的固化方式,并且该系统经历了两个以α= 0.45为边界的自催化固化过程。通过基辛格方法计算出的相应平均活化能分别为69.7和88.7 kJ mol〜(?1)。另外,活化能E _(a)与分数转化率α之间的相关性是通过使用Flynn-Wall-Ozawa(FWO)和Starink方法进行的无模型同变换分析来确定的。结果表明,这两种方法都显示出相似的趋势,并且在每次小数转换时都具有大致相同的值。活化能随分数转换而变化很大,并且详细分析了变化背后的可能原因。固化的TGDDM / DICY具有优异的机械和粘合性能,在25°C下的拉伸和剪切强度为27.1 MPa,在200°C下为12.6 MPa,良好的介电性能,在1000 kHz下的介电常数为3.26,并且吸水率低为0.41%。

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