首页> 外文会议>International Materials Symposium >Study of the Cure of a Diglycidyl-ether of Bisphenol-a (DGEBA)/Triethylenetetramine (TETA) Epoxy System by Non-isothermal Differential Scanning Calorimetry (DSC)
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Study of the Cure of a Diglycidyl-ether of Bisphenol-a (DGEBA)/Triethylenetetramine (TETA) Epoxy System by Non-isothermal Differential Scanning Calorimetry (DSC)

机译:非等温差分扫描量热法(DSC)对双酚-A(DGEBA)/三乙基丁二胺(TETA)环氧树脂体系的二炔酰醚的固化研究

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A diglycidyl-ether of bisphenol-A (DGEBA)/Triethylenetetramine (TETA) system was studied by non-isothermal differential scanning calorimetry (DSC) to establish its kinetics of cure. The DGEBA resin was Araldite GZ 601 X75 used in the marine coatings formulations. Previously, the optimum resin/hardener ratio was determined by the reaction heat measuring (ΔHc) calculated from the curing exothermic peak. Tests at different heating rates (10, 15, 20, 25 and 30°C/min) under inert atmosphere were carried out in order to study the reaction kinetics. The activation energy of the cure (Ea) was obtained from these tests data by Borchardt-Daniels, autocatalytic, Duswalt and isoconversional Ozawa methods. Once the activation energy was determined, the master curves method was applied to find the kinetic model which best describes the measured DSC data. The Sestak-Berggren model SB (m,n) was found to be the most adequate for the system studied.
机译:通过非等温差分扫描量热法(DSC)研究了双酚-A(DGEBA)/三乙烯丁二胺(TETA)系统的二炔酰醚,以建立固化动力学。 DGEBA树脂是在船上涂料配方中使用的亚亚硝GZ 601 X75。以前,通过由固化放热峰计算的反应热测量(ΔHC)确定最佳树脂/硬化率。进行惰性气氛下的不同加热速率(10,15,20,25和30℃/ min的试验以研究反应动力学。通过Borchardt-daniels,自催化,杜兰瓦尔和异核ozawa方法从这些测试数据中获得固化剂(EA)的激活能量。一旦确定激活能量,应用主曲线方法以找到最能描述测量的DSC数据的动力学模型。发现SESTAK-BERGGREN模型SB(M,N)是研究的最适合所研究的。

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