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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Modelling of Phase Transitions and Residual Thermal Stress of CTBN Rubber Modified Epoxy Resins during a Pultrusion Process
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Modelling of Phase Transitions and Residual Thermal Stress of CTBN Rubber Modified Epoxy Resins during a Pultrusion Process

机译:拉挤过程中CTBN橡胶改性环氧树脂的相变和残余热应力建模

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The implicit finite difference and fourth order Runge-Kutta method are used both to solve the heat transfer problem in the pultrusion reaction and to calculate the temperature and conversion distributions within a thermoset composite profile.The aim of our work is to study the influence of a rubbery phase added to the epoxy matrix in production conditions.The results have shown that the rubber modified systems have a low exothermic temperature peak value,so that neither the amount of cured resin nor the final product properties are limited.First of all we will show that the phase transition(gelation and vitrification)zones within the die change as the amount of rubber varies in the resin.The relationship between the position and of these zones and the resin systems will be discussed.We calculate the residual thermal stresses for all the investigated fibre/resin systems,showing a reduction when the rubber amount increases in the epoxy blend.
机译:隐式有限差分法和四阶Runge-Kutta方法不仅可以解决拉挤成型反应中的传热问题,还可以计算热固性复合材料轮廓内的温度和转化率分布。在生产条件下将橡胶相添加到环氧基质中。结果表明,橡胶改性体系的放热温度峰值较低,因此既不限制固化树脂的量也不影响最终产品的性能。首先,我们将证明模具中的相变(胶凝和玻璃化)区域随树脂中橡胶含量的变化而变化。将讨论这些区域的位置和位置与树脂体系之间的关系。我们计算所有树脂的残余热应力对纤维/树脂体系的研究表明,当环氧共混物中的橡胶含量增加时,该数量减少。

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