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Fast Ultrasonic Imaging with Total Focusing Method (TFM) for Inspection of Additively Manufactured Polymer Composite Component

机译:快速超声波成像与总关注法(TFM)检查加碱化聚合物复合组分的检查

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Ultrasonic adaptive imaging based on the phased-array technology and the synthetic focusing algorithm Total Focusing Method (TFM) is proposed for fast ultrasonic nondestructive evaluation of additively manufactured composite materials. Nondestructive evaluation and inspection of additively manufactured Darts and components are necessary for quality assurance of the materials. Effective detection of defects and anomalies in manufactured parts prevents extra cost and production time. However, there are several limitations encountered when using conventional methods of nondestructive inspection for as built additively manufactured parts due to surface conditions and geometrical complexity. Post-processing operations, such as machining, are usually needed to detect possible defects such as layer disband, micro-cracks, and voids in the composite parts. The capability of aperture focusing in phased array ultrasonic methods provides the opportunity for the adjustment of the delay laws in ultrasonic beams and reduces the noise and beam distortion for better imaging. An additively manufactured carbon fiber reinforced Acrylonitrile Butadiene Styrene (ABS) composite sample with artificial side and bottom, drilled holes of different sizes, used to represent defects, was successfully inspected using the Total Focusing Method (TFM). Unlike conventional ultrasonic techniques, results show a promising way to provide inspection of as built additively manufactured composite parts with rough surface finishes. The proposed method helps to decrease inspection time and eliminate extra machining and preparation costs.
机译:基于相控阵技术的超声自适应成像和合成聚焦算法总对焦方法(TFM),用于快速超声波非破坏性评价对加质制造的复合材料。对材料质量保证是必要的无损评估和检查瘾制造的飞镖和组件。有效地检测制造部件中的缺陷和异常防止额外的成本和生产时间。然而,当使用表面条件和几何复杂性使用常规的非破坏性检查时,使用常规非破坏性检查方法存在若干限制。通常需要处理后处理操作,例如加工,以检测复合部件中的可能缺陷,例如层分配,微裂缝和空隙。聚焦在相控阵超声波方法中的孔径的能力提供了调整超声波束中延迟法的机会,并降低了更好的成像的噪声和光束失真。使用总对焦方法(TFM)成功检查了用人造侧和底部,钻孔的含有含量侧和底部,不同尺寸的钻孔的碳纤维增强丙烯腈丁二烯苯乙烯(ABS)复合样品。与传统的超声技术不同,结果表明了一种有前途的方法,可以提供具有粗糙表面饰面的构建粘接性复合部件的检查。该方法有助于减少检查时间并消除额外加工和制备成本。

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