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PRELIMINARY NONDESTRUCTIVE TESTING ANALYSIS ON 3D PRINTED STRUCTURE USING PULSED THERMOGRAPHY

机译:脉冲热成像三维印刷结构的初步无​​损检测分析

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Additive Manufacturing (AM) processes have vastly improved over the years and 3D-printed parts are no longer solely being used for prototyping but also as final products. Where AM parts are used in low-volume products, non-destructive testing is critical to validate product performance. This paper will discuss using an infrared thermography technique known as Pulsed Thermography (PT) based on the analysis of a theoretical one-dimensional solution as a non-destructive testing method for quantitatively measuring defect depths within a 3D-printed part made from a thermoplastic ABS. This method has previously been applied to composites, ceramics, and metals for quantification of defects, but no work has been done for thermoplastic 3D printed parts. This technique can potentially be integrated into existing equipment for online monitoring during part construction. This paper will demonstrate the ability of a low-cost PT system to characterize the surface of 3D-printed parts and detect the effect of common parameter variations. The capability of a PT system as a viable NDT method to quantitatively analyze a 3D-printed part would allow for post process quality control in comparison to initial design and simulation.
机译:添加剂制造(AM)过程多年来大大提高,3D印刷部件不再仅用于原型,而且是最终产品。在低批量产品中使用的am零件,无损检测对于验证产品性能至关重要。本文将根据理论一维解决方案的分析,使用称为脉冲热成像(PT)的红外热成像技术作为非破坏性测试方法,用于定量测量由热塑性ABS制成的3D印刷部件内的缺陷深度。此方法先前已被应用于复合材料,陶瓷和金属,用于定量缺陷,但是对于热塑性3D印刷部件没有完成任何工作。该技术可能集成到部分施工期间的现有设备中进行在线监测。本文将展示低成本PT系统表征3D印刷部件的表面并检测常见参数变化的效果的能力。 PT系统作为用于定量分析3D印刷部分的可行性NDT方法的能力将允许与初始设计和仿真相比的工艺质量控制。

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