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Study of the Proper Sintering Conditions of Anionically-Polymerized Polyamide 6 Matrices for the Fabrication of Greencomposites

机译:阴离子聚合聚酰胺6基质正确制备绿色复合材料的烧结条件研究

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The present research work assesses the manufacture of long fiber thermoplastic matrix composite materials (GreenComposites). Thermoplastic matrices are too viscous to be injected into the conventional LCM (Liquid Composite Molding) molds, and then epoxy, polyester or vinylester resins are used. Nevertheless, the groundbreaking anionic polymerization of caprolactam allows such a synthesis of a thermoplastic APA6 matrix inside the mold. This matrix is sintered from the starting monomers, and presents high mechanical performance and recyclability. In order to do the reactive injection in a LCM mold, it is necessary to control the polymerization mechanism of such a thermoplastic matrix. This paper puts special emphasis on detecting and solving all problems which arose during synthesis. For instance, moisture values were assessed for all starting reactants, since humidity keeps polymerization from occurring. It is thought that once the synthesis and the resulting material characterization are well controlled, the manufacture of GreenComposites through in situ polymerization, as well as addition of state-of-the-art fabrics such as basalt, can proceed successfully.
机译:本研究工作评估了长纤维热塑性基体复合材料(GreenComposites)的制造。热塑性基体太粘而无法注入传统的LCM(液体复合成型)模具中,然后使用环氧,聚酯或乙烯基酯树脂。然而,己内酰胺的突破性阴离子聚合反应允许在模具内部进行热塑性APA6基质的这种合成。该基质是由起始单体烧结而成的,具有很高的机械性能和可回收性。为了在LCM模具中进行反应性注射,必须控制这种热塑性基质的聚合机理。本文特别强调检测和解决在合成过程中出现的所有问题。例如,评估所有起始反应物的水分值,因为湿度会阻止聚合发生。据认为,一旦合成和所得的材料表征得到良好控制,就可以成功进行通过原位聚合以及添加最先进的织物(如玄武岩)生产GreenComposites。

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