Health Monitoring Using Acoustic Emission Technique During Fused Filament Fabrication Printing Process

Ke Xu, S. Manoochehri
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Abstract

Fused Filament Fabrication (FFF) is one of the most popular additive manufacturing technologies for manufacturing prototypes with various complex geometries. However, current commercial FFF machines have limitations in terms of process reliability and product quality. In order to overcome these limitations and improve the accuracy and reliability of these machines, a real-time monitoring system is needed to make sure that any part defects can be detected during the printing process and printing parameters can be identified that can be modified to resolve the printing anomalies resulting in minimization of waste and improvement of efficiency. In this study, a method for in-situ monitoring of FFF machine conditions is proposed utilizing an acoustic emission (AE) technology. The AE sensor is used to monitor the vibration signals generated during the whole printing process in real-time. The AE signal is then analyzed and processed, and categorized according to the selected objective characteristics. The proposed method can be utilized to identify the abnormal states of machine conditions. The time-domain features of AE hits after post-processing are used as key indicators. Experimental results show that this method has the potential to be used as a non-invasive diagnostic and prognostic tool for FFF machine maintenance and process control.
用声发射技术监测熔丝制造印刷过程中的健康状况
熔丝制造(FFF)是最流行的增材制造技术之一,用于制造各种复杂几何形状的原型。然而,目前的商用FFF机器在工艺可靠性和产品质量方面存在局限性。为了克服这些限制,提高这些机器的精度和可靠性,需要一个实时监控系统,以确保在打印过程中可以检测到任何零件缺陷,并确定可以修改的打印参数,以解决打印异常,从而最大限度地减少浪费,提高效率。在本研究中,提出了一种利用声发射(AE)技术对FFF机器状态进行现场监测的方法。声发射传感器用于实时监测整个打印过程中产生的振动信号。然后对声发射信号进行分析和处理,并根据选定的目标特征进行分类。该方法可用于识别机器的异常状态。以声发射命中信号后处理后的时域特征作为关键指标。实验结果表明,该方法有潜力作为FFF机器维护和过程控制的无创诊断和预后工具。
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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