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Analysis of Curing Reaction for Epoxy Resin Used for Electrical Insulators: Part IV Stress-Strain Analysis with Fracture Model on Interface of Epoxy Resin

机译:电绝缘子用环氧树脂固化反应分析:第四部分环氧树脂界面断裂模型应力 - 应变分析

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摘要

Our previous report proposed a gradual adhesion model for the interface of epoxy resin used as an electric insulator. The model can deal with the flow and gelling of epoxy resin but it cannot deal with the fracture of the interface. In order to solve the fracture problem, two new fracture models are proposed for the epoxy resin interface.1) One model proposes that partial adhesion remains after the fracture of the interface of epoxy resin occurs. The calculated strain change using this model does not give good agreement with experimental values.2) Another model proposes that partial adhesion remains after the shrinkage strain from the curing reaction is released by the fracture of the interface. The calculated strain change from this model gives good agreement with experimental values.These results indicate that the weak adhesion region breaks away when the fracture of the epoxy resin interface occurs. The temperature distribution of the epoxy resin during the curing reaction does not change with the fracture of the interface. The internal stress of the epoxy resin goes up with the adhesion and goes down with the fracture of the epoxy resin interface.
机译:我们以前的报告提出了用作电绝缘体的环氧树脂界面的渐进粘附模型。该模型可以处理环氧树脂的流动和胶凝,但不能处理界面的断裂。为了解决断裂问题,提出了两种新的环氧树脂界面断裂模型。1)一种模型提出环氧树脂界面发生断裂后仍保留部分粘结。使用该模型计算出的应变变化与实验值不一致。2)另一个模型提出,固化反应的收缩应变通过界面的断裂释放后,仍保留了部分粘附力。由该模型计算出的应变变化与实验值吻合得很好,这些结果表明当环氧树脂界面发生断裂时,弱的粘合区域会消失。固化反应过程中环氧树脂的温度分布不会随着界面的断裂而改变。环氧树脂的内应力随着附着力的增加而上升,并且随着环氧树脂界面的断裂而下降。

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