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Chemical shrinkage and diffusion-controlled reaction of an epoxy molding compound

机译:环氧模塑料的化学收缩和扩散控制反应

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摘要

A methodology for the study of cure kinetics of a highly filled epoxy molding compound is presented. An equation relating the glass transition temperature-conversion relationship was first established. The degree of conversion can then be estimated when the calorimetric method is inadequate in measuring the heat of reaction in the diffusion-controlled regime. The cure reaction is modeled as a reaction of shifting order: it first reacts autocatalytically and later switches into diffusion control. The reaction in the diffusion-controlled regime is very slow and is modeled by an nth order kinetic equation. Both the linear coefficients of thermal expansion above and below the glass transition temperature decrease linearly with degree of conversion. Based on this linear coefficient of thermal expansion-conversion relationship, it is found that chemical shrinkage is an important factor that causes interfacial stresses when the epoxy molding compound adheres to a substrate of different materials. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 26]
机译:提出了一种研究高填充环氧模塑化合物固化动力学的方法。首先建立与玻璃化转变温度-转化关系有关的方程。当量热法不足以在扩散控制状态下测量反应热时,可以估算转化度。固化反应被建模为转移顺序的反应:它首先进行自催化反应,然后切换为扩散控制。扩散控制状态下的反应非常缓慢,并通过n阶动力学方程建模。在玻璃化转变温度之上和之下的线性热膨胀系数均随转化率线性降低。基于该线性热膨胀-转换关系系数,发现化学收缩是当环氧模塑化合物粘附到不同材料的基材上时引起界面应力的重要因素。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:26]

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