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Micromechanical finite element parametric study of polyamide 6 based single polymer composites reinforced by woven textile structures

机译:机织纺织结构增强聚酰胺6基单聚合物复合材料的微机械有限元参数研究

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摘要

This study presents a finite element-based micromechanical analysis of woven single polymer composites (WSPC), prepared by compression molding from polyamide 6 (PA6) woven fabrics powder-coated with PA6 microparticles. Initially, the PA6 microparticles (MP) were synthesized by solution/precipitation activated anionic ring-opening polymerization of epsilon-caprolactam. After the powder coating, the MP fraction upon each textile ply was transformed into the continuous PA6 matrix by hot pressing at a temperature lower than the melting of the PA6 textile reinforcements. Plain and satin PA6 woven fabrics were selected as reinforcements that were stretched and annealed prior to molding so as to enhance their mechanical performance. The tensile and Izod impact properties of WSPC were characterized in relation to the reinforcement architecture, fiber content and ply orientation. Finite element analysis was used for a parametric study of woven reinforcements and to correlate the deformation and stress distribution of the structures with the tensile failure of the composites. Moreover, to assess the interfacial matrix-reinforcements bonding state, a study of the surfaces fracture, obtained by SEM topography, using image processing was performed.
机译:这项研究提出了一种基于有限元的机织单聚合物复合材料(WSPC)的微机械分析,该复合材料是通过粉末包覆有PA6微粒的聚酰胺6(PA6)机织织物进行压缩成型而制备的。最初,通过溶液/沉淀活化的ε-己内酰胺阴离子开环聚合反应合成PA6微粒(MP)。在粉末涂覆之后,通过在低于PA6织物增强材料的熔融温度的温度下进行热压,将每个织物层上的MP级分转化为连续的PA6基质。选择平纹和缎面PA6机织织物作为增强材料,在成型之前将其拉伸和退火以增强其机械性能。 WSPC的拉伸和悬臂梁冲击性能与增强结构,纤维含量和层定向有关。有限元分析用于机织增强材料的参数研究,并将结构的变形和应力分布与复合材料的拉伸破坏相关联。而且,为了评估界面基质-增强物的结合状态,使用图像处理对通过SEM形貌获得的表面断裂进行了研究。

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