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Non-destructive testing of layer-to-layer fusion of a 3D print using ultrahigh resolution optical coherence tomography

机译:使用超高分辨率光学相干断层扫描技术对3D打印的层到层融合进行无损测试

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摘要

Within the last decade, 3D printing has moved from a costly approach of building mechanical items to the present state-of-the-art phase where access to 3D printers is now common, both in industry and in private places. The plastic printers are the most common type of 3D printers providing prints that are light, robust and of lower cost. The robustness of the structure printed is only maintained if each layer printed is properly fused to its previously printed layers. In situations where the printed component has to accomplish a key mechanical role there is a need to characterize its mechanical strength. This may only be revealed by in-depth testing in order to discover unwanted air-gaps in the structure. Optical coherence tomography (OCT) is an in-depth imaging method, that is sensitive to variations in the refractive index and therefore can resolve with high resolution translucid samples. We report on volume imaging of a 3D printed block made with 100% PLA fill. By employing ultrahigh resolution OCT (UHR-OCT) we show that some parts of the PLA volume reveal highly scattering interfaces which likely correspond to transitions from one layer to another. In doing so, we document that UHR-OCT can act as a powerful tool that can be used in detecting fractures between layers stemming from insufficient fusion between printed structure layers. UHR-OCT can therefore serve as an useful assessment method of quality of 3D prints.
机译:在过去的十年中,3D打印已从制造机械物品的昂贵方法转变为目前的最新阶段,在此阶段,无论在工业领域还是在私人场所,访问3D打印机的情况现在都很普遍。塑料打印机是最常见的3D打印机类型,可提供轻巧,坚固且成本较低的打印。仅当每个印刷层都正确融合到其先前印刷的层时,才能维持印刷结构的坚固性。在印刷部件必须完成关键的机械作用的情况下,需要表征其机械强度。只有通过深入测试才能发现这一点,以便发现结构中不需要的空隙。光学相干断层扫描(OCT)是一种深度成像方法,对折射率的变化敏感,因此可以用高分辨率的半透明样品分辨。我们报告了用100%PLA填充制成的3D打印块的体积成像。通过使用超高分辨率OCT(UHR-OCT),我们表明PLA体积的某些部分显示出高度散射的界面,这很可能对应于从一层到另一层的过渡。通过这样做,我们证明UHR-OCT可以充当强大的工具,可用于检测由于印刷结构层之间的融合不足而引起的层间裂缝。因此,UHR-OCT可以用作3D打印质量的有用评估方法。

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