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A photoacoustic imaging method for in-situ monitoring of laser assisted ceramic additive manufacturing

机译:用于激光辅助陶瓷添加剂制造的原位监测光声成像方法

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摘要

We propose an in-situ monitoring method of laser assisted ceramic additive manufacturing (AM) fabrication process using photoacoustic (PA) imaging technique. This method is potentially very practical and of low cost, as it can be easily implemented with little modification to the original AM system. A major advantage of this method is that it does not require any complex or expensive component to be installed, just need a microphone to be setup near the work-piece and a data processing program to analyse the acoustic data. By collecting the photoacoustic wave that produced by the laser scanning during the AM process, a spectrogram of the acoustic signal can be generated using short-time Fourier transform (STFT). The PA signal can be extracted by specifying the modulation frequency of the laser in the spectrogram. Combining with the scanning position of the laser beam, the PA image of the layer under processing can be obtained. Detection of two kinds of defects (metal defect and dried paste defect) have been demonstrated. Although there are many other kinds of possible defects in additive manufacturing processes, this method could be a practical and low cost way to monitor most of them with proper choice of parameters of the laser and detection system. The parameters of the system that can influence the PA image quality have also been discussed.
机译:我们提出了一种使用光声(PA)成像技术的激光辅助陶瓷添加剂制造(AM)制造工艺的原位监测方法。这种方法可能非常实用,成本低,因为它可以很容易地实现对原始AM系统的微量修改。这种方法的一个主要优点是它不需要安装任何复杂或昂贵的组件,只需要在工作片附近设置麦克风和数据处理程序来分析声学数据。通过收集通过激光扫描期间的激光扫描产生的光声波,可以使用短时傅里叶变换(STFT)产生声学信号的频谱图。可以通过在频谱图中指定激光的调制频率来提取PA信号。组合与激光束的扫描位置,可以获得在处理下的层的PA图像。已经证明了检测两种缺陷(金属缺陷和干糊糊状物)。 Although there are many other kinds of possible defects in additive manufacturing processes, this method could be a practical and low cost way to monitor most of them with proper choice of parameters of the laser and detection system.还讨论了能够影响PA图像质量的系统的参数。

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