Inspection benchmarking of Fiber Reinforced Polymers produced by Additive Manufacturing

M. Machado, Henrique V. Silva, João Pazadinhas, M. Carvalho, Telmo G. Santos
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Abstract

The production of Polymer Matrix Composites (PMCs) through Additive Manufacturing (AM) presents new defects, and the detection of these is crucial for proper functioning. Non-destructive testing (NDT) techniques such as terahertz (THz), air-coupled ultrasounds, and active thermography are fast, automatable, non-invasive, and noncontact inspection methods. The aim of this study is to investigate the use of NDT techniques for detecting defects in PMCs produced by AM. Six samples were produced using polylactic acid (PLA) as the base material and reinforced with continuous fibers of Kevlar, glass, and carbon. Two types of samples were created: one with a full-thickness reinforcement defect in a specific area and the other with a partial reinforcement defect, with a layer of fibers missing in the same area. The samples were then tested using three NDT techniques: THz, non-contact ultrasonic, and active thermography. The results showed that THz was only able to detect the defect in the carbon fiber sample with full-thickness reinforcement, ultrasonic testing was able to detect the defects in Kevlar and carbon fiber samples with missing three layers of fibers, and active thermography was the most reliable technique, detecting all samples with missing three layers of fibers as well as partial reinforcement defects.
增材制造技术生产的纤维增强聚合物的检测基准
增材制造(AM)技术在聚合物基复合材料(PMCs)生产中出现了新的缺陷,而这些缺陷的检测对其正常工作至关重要。无损检测(NDT)技术,如太赫兹(THz)、空气耦合超声波和主动热成像是快速、自动化、非侵入性和非接触的检测方法。本研究的目的是研究使用无损检测技术来检测增材制造的pmc中的缺陷。以聚乳酸(PLA)为基材,用凯夫拉纤维、玻璃纤维和碳纤维连续增强,制备了6个样品。创建了两种类型的样品:一种在特定区域具有全层增强缺陷,另一种具有部分增强缺陷,在同一区域缺少一层纤维。然后使用三种无损检测技术对样品进行测试:太赫兹,非接触式超声波和主动热成像。结果表明,太赫兹只能检测到全层增强的碳纤维样品中的缺陷,超声波检测能够检测到凯夫拉和缺失三层纤维的碳纤维样品中的缺陷,而主动热成像是最可靠的技术,可以检测到所有缺失三层纤维的样品以及部分增强缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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