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Integrated analysis of unsaturated polyester and vinylester resins in vacuum-assisted resin transfer molding (SCRIMP).

机译:真空辅助树脂传递模塑(SCRIMP)中不饱和聚酯和乙烯基酯树脂的综合分析。

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Seemann Composites Resin Infusion Molding Process (SCRIMP) has already been used for marine, civil infrastructure, transportation and defense applications to produce large composite parts because of its low cost, processing flexibility, high fiber-to-resin ratio, and near-zero emission of volatile organic chemicals. The process, however, is not thoroughly understood, and most technologies developed to date are based on experience or trial-and-error approaches. Therefore, there is considerable potential for improving the process through greater technical understanding.; A systematic study of reaction kinetics and rheological behaviors of two widely used SCRIMP resins (e.g., unsaturated polyester and vinylester resins) cured at low temperatures is conducted. A differential scanning calorimeter (DSC), a Fourier transform infrared spectrometer (FTIR), and a rheometrics dynamic analyzer (RDA) are used to study the reaction kinetics and rheological behaviors. The effects of curing agents including initiator, promoter, inhibitor and retarder on the low temperature polymerization are investigated. A model is developed to quantify the effects of temperature and various curing agents on the gel time. The effects of styrene concentration on curing kinetics of styrene/vinylester systems are also studied. The microstructure formation in the primary polymer is studied based on the analysis of particle size distribution. An atomic force microscopy (AFM) is used to investigate the micrographs and topologies of the cured resins, and an electron spin resonance (ESR) spectroscope is used to track the behavior of free radicals during curing. A series of well-defined unsaturated polyester resins are used to further study the effects of resin chemistry on the reaction kinetics and rheological behaviors.; Considering the diffusion-controlled propagation reaction, a mechanistic kinetic model is proposed to predict the reaction rate and conversion profiles of various resins cured at different temperatures. The developed kinetic model in conjunction with a heat transfer model is used to simulate the mold curing process. The results of this research provide a comprehensive analysis tool for optimizing SCRIMP.
机译:Seemann复合材料树脂灌注成型工艺(SCRIMP)已被用于海洋,民用基础设施,运输和国防应用中,以生产大型复合零件,因为它的成本低,加工灵活性强,纤维与树脂的比率高且排放几乎为零。挥发性有机化学物质。但是,该过程尚未得到完全理解,并且迄今为止开发的大多数技术都是基于经验或反复试验的方法。因此,通过更多的技术了解,有很大的潜力来改进该过程。对在低温下固化的两种广泛使用的SCRIMP树脂(例如,不饱和聚酯和乙烯基酯树脂)的反应动力学和流变行为进行了系统研究。差示扫描量热仪(DSC),傅立叶变换红外光谱仪(FTIR)和流变动力学分析仪(RDA)用于研究反应动力学和流变行为。研究了引发剂,促进剂,抑制剂和缓凝剂等固化剂对低温聚合的影响。开发了一个模型来量化温度和各种固化剂对凝胶时间的影响。还研究了苯乙烯浓度对苯乙烯/乙烯基酯体系固化动力学的影响。基于粒度分布的分析,研究了初级聚合物中的微观结构形成。原子力显微镜(AFM)用于研究固化树脂的显微照片和拓扑结构,电子自旋共振(ESR)光谱仪用于跟踪固化过程中自由基的行为。一系列定义明确的不饱和聚酯树脂用于进一步研究树脂化学对反应动力学和流变行为的影响。考虑扩散控制的扩散反应,提出了一种力学动力学模型来预测在不同温度下固化的各种树脂的反应速率和转化率。结合动力学模型开发的动力学模型用于模拟模具固化过程。这项研究的结果为优化SCRIMP提供了全面的分析工具。

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