首页> 外文期刊>Journal of Reinforced Plastics and Composites >Correlated Rules between Complex Structure ofComposite Components and ManufacturingDefects in Autoclave Molding Technology
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Correlated Rules between Complex Structure ofComposite Components and ManufacturingDefects in Autoclave Molding Technology

机译:高压釜成型技术中复合部件复杂结构与制造缺陷之间的相关规律

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摘要

Based on statistical analysis, considerable defect information obtained by nondestructive identification (NDI) techniques for composite components, different type defects which often form in autoclave molding of composites were summarized, and the effect rules of complex structure in composite components on manufacturing defects were also revealed. Combined with statistical results and defect micrographs, the strong correlation between geometric characteristics (for instance, thickness, gradient of thickness variation, curvature radius) in composite components and controllability of manufacturing defects was discussed in detail. It was found that delamination, pore, void, and rich resin were the four main defects in autoclave molding, and that the ratio of defect appearance was remarkably influenced by complex structure of composite components. Especially, geometric characteristics of composite components had a significant influence on the defect type and defect ratio. For example, too thin or too thick components, too small radius and abrupt change of thickness in components would obviously increase the ratio of defect production. Thickness, curvature radius, and gradient of thickness variation would probably lead to the defects of delamination and void, and gradient of thickness variation would also result in rich resin around the overlap region of long fiber and short fiber in the thickness transition zone.
机译:在统计分析的基础上,总结了通过复合材料无损识别技术获得的大量缺陷信息,总结了复合材料高压灭菌成型中经常形成的不同类型的缺陷,并揭示了复合材料中复杂结构对制造缺陷的影响规律。 。结合统计结果和缺陷显微照片,详细讨论了复合部件中的几何特征(例如厚度,厚度变化梯度,曲率半径)与制造缺陷的可控制性之间的强相关性。结果发现,分层,孔隙,空隙和富集树脂是高压釜成型的四个主要缺陷,并且缺陷外观的比率显着地受到复合部件的复杂结构的影响。特别地,复合部件的几何特性对缺陷类型和缺陷率有重大影响。例如,部件太薄或太厚,半径太小以及部件厚度的突然变化都将明显增加缺陷产生率。厚度,曲率半径和厚度变化的梯度可能会导致分层和空隙的缺陷,并且厚度变化的梯度还将在厚度过渡区域中的长纤维和短纤维的重叠区域周围产生富树脂。

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