Ultrasonic Evaluation of Laser Scanning Speed Effect on the Spectral Properties of Three-Dimensional-Printed Metal Phononic Crystal Artifacts.

IF 2.3 4区 工程技术 Q3 ENGINEERING, MANUFACTURING
3D Printing and Additive Manufacturing Pub Date : 2024-06-18 eCollection Date: 2024-06-01 DOI:10.1089/3dp.2022.0259
Enamul Hasan Rozin, Tipu Sultan, Hossein Taheri, Cetin Cetinkaya
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引用次数: 0

Abstract

Additive manufacturing/three-dimensional printing (AM/3DP) processes promise a flexible production modality to fabricate a complex build directly from its digital design file with minimal postprocessing. However, some critical shortcomings of AM/3DP processes related to the build quality and process repeatability are frequently experienced and reported in the literature. In this study, an in situ real-time nondestructive monitoring framework based on the dispersive properties of phononic crystal artifacts (PCAs) to address such quality challenges is described. Similar to a witness coupon, a PCA is printed alongside a build while it is interrogated and monitored with ultrasound. A PCA is substantially smaller than the actual build. Due to its periodic internal structures, a PCA creates pass and stop bands in its spectral response, which are sensitive to the variations in its process and material parameters. These periodic structures, representing the geometric complexities of an actual build, are designed for a specific monitoring objective(s) in AM/3DP. As a model application, in this demonstration study, the effect of the laser scanning speed of a slective laser melting (SLM) printer on the spectral properties of metal PCAs (mPCAs) is ultrasonically evaluated offline. The dependency of the pressure and shear wave speeds, the apparent Young's and shear moduli, and Poisson's ratio on the scanning speed are quantified, and it is found that they are highly sensitive to the laser scanning speed of an SLM printer. The sensitivity of the peaks of the pressure and shear spectral waveforms acquired for the identical mPCA designs printed on the same build plate with the same process parameters is also quantified. For powder-based AM/3DP technologies, where scanning speed is among the crucial process parameters such as laser power and bed temperature, the reported correlations between scanning speeds and the mechanical and spectral features of the mPCAs are expected to be instrumental in developing in situ real-time monitoring systems.

激光扫描速度对三维印刷金属声子晶体伪像光谱特性影响的超声评价
快速成型制造/三维打印(AM/3DP)工艺是一种灵活的生产模式,可直接根据数字设计文件制造复杂的建筑,只需进行最少的后处理。然而,AM/3DP 工艺在制造质量和工艺可重复性方面存在一些严重缺陷,这在文献中也经常有报道。本研究介绍了一种基于声子晶体伪影(PCA)色散特性的原位实时无损监测框架,以应对此类质量挑战。与见证券类似,PCA 也是在构建过程中打印出来的,同时用超声波对其进行询问和监测。PCA 比实际的构建物要小得多。由于其内部结构具有周期性,PCA 会在其频谱响应中产生通带和阻带,这对其工艺和材料参数的变化非常敏感。这些周期性结构代表了实际构建的几何复杂性,是为 AM/3DP 中的特定监测目标而设计的。作为示范应用,在本演示研究中,离线超声评估了选择性激光熔化(SLM)打印机的激光扫描速度对金属 PCAs(mPCAs)光谱特性的影响。对压力波和剪切波速度、表观杨氏模量和剪切模量以及泊松比与扫描速度的关系进行了量化,发现它们对 SLM 打印机的激光扫描速度高度敏感。此外,还量化了在相同模板上以相同工艺参数打印的相同 mPCA 设计所获得的压力和剪切光谱波形峰值的灵敏度。对于基于粉末的 AM/3DP 技术(扫描速度是激光功率和床温等关键工艺参数之一),所报告的扫描速度与 mPCA 的机械和光谱特征之间的相关性预计将有助于开发原位实时监控系统。
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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来源期刊
3D Printing and Additive Manufacturing
3D Printing and Additive Manufacturing Materials Science-Materials Science (miscellaneous)
CiteScore
6.00
自引率
6.50%
发文量
126
期刊介绍: 3D Printing and Additive Manufacturing is a peer-reviewed journal that provides a forum for world-class research in additive manufacturing and related technologies. The Journal explores emerging challenges and opportunities ranging from new developments of processes and materials, to new simulation and design tools, and informative applications and case studies. Novel applications in new areas, such as medicine, education, bio-printing, food printing, art and architecture, are also encouraged. The Journal addresses the important questions surrounding this powerful and growing field, including issues in policy and law, intellectual property, data standards, safety and liability, environmental impact, social, economic, and humanitarian implications, and emerging business models at the industrial and consumer scales.
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