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首页> 外文期刊>Advances in Materials >Comparism of Cure Modeling of Unsaturated Polyester Based Composites Using Microwave and Autoclave Assisted Hand Lay-Up Process in Cylinderical Mould
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Comparism of Cure Modeling of Unsaturated Polyester Based Composites Using Microwave and Autoclave Assisted Hand Lay-Up Process in Cylinderical Mould

机译:微波和高压釜辅助手糊工艺在圆柱模具中不饱和聚酯基复合材料的固化建模比较

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Modeling of composite curing process is required prior to composite production as this would help in establishing correct production parameter and method of curing thereby eliminating costly trial and producing an effective method of curing a particular polymeric composite. The main objective of this work is to compare the difference between modeled microwave and conventional autoclave heating methods in producing polyester-aluminum and polyester- carbon black composites. This will establish the effectiveness of a curing method in the production of a particular polymer composite i. e, prediction of best possible trends during microwave and conventional autoclave heating with regards to effect of heating rate on degree of cure of the composites. The numerical models were constructed by taking into account heat transferred by electromagnetic energy (microwave) and heat transferred by conduction (conventional autoclave) through the resin/filler mixture, as well as kinetic heat generated by cure reaction. The numerical solution of the mathematical models presented were discretized using forward finite differences of the RungeKuta method and finally solved using MATLAB® Computer programming language. It was observed that curing of the samples was achieved faster in microwave than conventional autoclave method as microwave heat transfer by electromagnetic energy produces volumetric heat flow as compared to conventional autoclave whose heat transfer by conduction generates transverse heat flow to the samples. This implies that in the production process of polymer-matrix composites, electromagnetic energy through microwave was able to produce faster heating rate; thus, an effective method of curing in the production process of polymer-metal composites.
机译:在复合材料生产之前需要对复合材料固化过程进行建模,因为这将有助于建立正确的生产参数和固化方法,从而消除了昂贵的试验并提供了一种固化特定聚合物复合材料的有效方法。这项工作的主要目的是比较在生产聚酯-铝和聚酯-炭黑复合材料时,模拟微波与传统高压釜加热方法之间的区别。这将建立固化方法在生产特定聚合物复合材料的有效性。 e,关于加热速率对复合物固化程度的影响,预测微波和常规高压釜加热过程中的最佳可能趋势。通过考虑通过电磁能(微波)传递的热量和通过树脂/填料混合物的传导(常规高压釜)传递的热量以及固化反应产生的动热来构建数值模型。提出的数学模型的数值解决方案使用RungeKuta方法的正向有限差分进行离散化,最后使用MATLAB®计算机编程语言进行求解。观察到,在微波中样品的固化比常规高压釜方法更快,这是因为通过电磁能进行的微波热传递产生了体积热流,而通过传导进行热传递的常规高压釜则产生了向样品的横向热流。这意味着在聚合物基复合材料的生产过程中,通过微波产生的电磁能能够产生更快的加热速率。因此,这是在聚合物-金属复合材料生产过程中进行固化的有效方法。

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