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首页> 外文期刊>Journal of Composite Materials >Optimizing cure cycle of nanoclay-reinforced unsaturated polyester resins considering various curing kinetic models
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Optimizing cure cycle of nanoclay-reinforced unsaturated polyester resins considering various curing kinetic models

机译:考虑各种固化动力学模型的纳米粘土增强不饱和聚酯树脂的优化固化循环

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In this research, a method has been presented for optimizing cure cycle of neat unsaturated polyester resin and polyester resin containing 3wt% nanoclay Cloisite (R) 10A (UP/10A) and nanoclay Cloisite (R) 30B (UP/30B) in thin components. We refer to this optimization method as the directed grid search method. To model cure behaviour of unsaturated polyester resin, four different kinetic models were considered, including advanced iso-conversional method, Kamal method, Kamal method with Chern diffusion factor, and Kamal method with Sbirrazzuoli diffusion factor. The comparison of our proposed optimized cure cycles indicates that addition of nanoclay to the resin causes the cure cycle duration and also the maximum temperature during the cure to decrease. In addition, by adding nanoclay to the resin, the optimal cure cycle is transformed from a five-stage cure cycle to a four-stage one. Our investigations indicate that optimal cure cycles for the UP/10A and UP/30B systems do not significantly differ. This is because the pre-exponential factor can influence the optimal cure cycle as much as the activation energy. Our results show that the optimal cure cycle obtained from the Kamal model is much shorter than the optimal cure cycle obtained from the advanced iso-conversional method, while the optimal cure cycle obtained from the Kamal model with Chern diffusion factor is very similar to the cure cycle resulting from the advanced iso-conversional method.
机译:在该研究中,已经提出了一种方法,用于在薄组分中优化含有3wt%纳米粘土(r)10a(上/ 10a)和纳米粘土(up / 30b)的纯净的不饱和聚酯树脂和含有3wt%纳米粘土(r)10a(up / 10b)的聚酯树脂的固化循环。我们将此优化方法称为定向网格搜索方法。为了模拟不饱和聚酯树脂的固化行为,考虑了四种不同的动力学模型,包括高级ISO-交易方法,KAMAL方法,具有CHERN扩散因子的KAMAL方法,以及具有SBORAZZUOLI扩散因子的KAMAL方法。我们所提出的优化固化循环的比较表明将纳米粘土添加到树脂中导致固化循环持续时间以及治疗过程中的最高温度降低。另外,通过将纳米粘土添加到树脂中,最佳固化循环从五级固化循环转化为四级固化循环。我们的调查表明,UP / 10A和UP / 30B系统的最佳固化循环没有显着不同。这是因为预指导因子可以影响最佳固化循环作为激活能量。我们的研究结果表明,从Kamal模型获得的最佳固化循环比从先进的ISO-一致方法获得的最佳固化循环短得多,而从塞尔扩散因子获得的最佳固化循环与CHERN扩散因子获得的最佳固化循环与固化非常相似由高级ISO-Connestional方法产生的周期。

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