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A Review of Thermoplastic Resin Transfer Molding: Process Modeling and Simulation

机译:热塑性树脂传递模塑综述:过程建模与仿真

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摘要

The production and consumption of polymer composites has grown continuously through recent decades and has topped 10 Mt/year. Until very recently, polymer composites almost exclusively had non-recyclable thermoset matrices. The growing amount of plastic, however, inevitably raises the issue of recycling and reuse. Therefore, recyclability has become of paramount importance in the composites industry. As a result, thermoplastics are coming to the forefront. Despite all their advantages, thermoplastics are difficult to use as the matrix of high-performance composites because their high viscosity complicates the impregnation process. A solution could be reactive thermoplastics, such as PA-6, which is synthesized from the ε-caprolactam (ε-CL) monomer via anionic ring opening polymerization (AROP). One of the fastest techniques to process PA-6 into advanced composites is thermoplastic resin transfer molding (T-RTM). Although nowadays T-RTM is close to commercial application, its optimization and control need further research and development, mainly assisted by modeling. This review summarizes recent progress in the modeling of the different aspects of the AROP of ε-CL. It covers the mathematical modeling of reaction kinetics, pressure-volume-temperature behavior, as well as simulation tools and approaches. Based on the research results so far, this review presents the current trends and could even plot the course for future research.
机译:聚合物复合材料的生产和消费在最近几十年中一直在持续增长,并已超过10 Mt /年。直到最近,聚合物复合材料几乎只具有不可回收的热固性基质。然而,塑料数量的增加不可避免地引起了回收和再利用的问题。因此,可回收性在复合材料工业中已变得至关重要。因此,热塑性塑料正走在前列。尽管具有所有优点,热塑性塑料仍难以用作高性能复合材料的基质,因为它们的高粘度使浸渍过程变得复杂。解决方案可以是反应性热塑性塑料,例如PA-6,它是由ε-己内酰胺(ε-CL)单体通过阴离子开环聚合(AROP)合成的。热塑性树脂传递模塑(T-RTM)是将PA-6加工成高级复合材料的最快技术之一。尽管当今T-RTM已接近商业应用,但其优化和控制仍需进一步研究和开发,主要是通过建模来辅助。这篇综述总结了ε-CLAROP不同方面建模的最新进展。它涵盖了反应动力学,压力-体积-温度行为的数学建模以及仿真工具和方法。根据目前为止的研究结果,本综述介绍了当前的趋势,甚至可以为将来的研究绘制路线。

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