Melt Pool Monitoring and X-ray Computed Tomography-Informed Characterisation of Laser Powder Bed Additively Manufactured Silver–Diamond Composites

IF 2.1 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Machines Pub Date : 2023-11-21 DOI:10.3390/machines11121037
J. Robinson, Abul Arafat, A. Vance, A. Arjunan, A. Baroutaji
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Abstract

In this study, silver (Ag) and silver–diamond (Ag-D) composites with varying diamond (D) content are fabricated using laser powder bed fusion (L-PBF) additive manufacturing (AM). The L-PBF process parameters and inert gas flow rate are optimised to control the build environment and the laser energy density at the powder bed to enable the manufacture of Ag-D composites with 0.1%, 0.2% and 0.3% D content. The Ag and D powder morphology are characterised using scanning electron microscopy (SEM). Ag, Ag-D0.1%, Ag-D0.2% and Ag-D0.3% tensile samples are manufactured to assess the resultant density and tensile strength. In-process EOSTATE melt pool monitoring technology is utilised as a comparative tool to assess the density variations. This technique uses in-process melt pool detection to identify variations in the melt pool characteristics and potential defects and/or density deviations. The resultant morphology and associated defect distribution for each of the samples are characterised and reported using X-ray computed tomography (xCT) and 3D visualisation techniques. Young’s modulus, the failure strain and the ultimate tensile strength of the L-PBF Ag and Ag-D are reported. The melt pool monitoring results revealed in-process variations in the build direction, which was confirmed through xCT 3D visualisations. Additionally, the xCT analysis displayed density variations for all the Ag-D composites manufactured. The tensile results revealed that increasing the diamond content reduced Young’s modulus and the ultimate tensile strength.
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激光粉末床快速制造银-金刚石复合材料的熔池监测和 X 射线计算机断层扫描信息表征
本研究利用激光粉末床熔融(L-PBF)增材制造(AM)技术制造了不同金刚石(D)含量的银(Ag)和银-金刚石(Ag-D)复合材料。对 L-PBF 工艺参数和惰性气体流速进行了优化,以控制构建环境和粉末床的激光能量密度,从而制造出金刚石含量分别为 0.1%、0.2% 和 0.3% 的银-金刚石复合材料。使用扫描电子显微镜(SEM)对Ag和D粉末的形态进行了表征。制作了Ag、Ag-D0.1%、Ag-D0.2%和Ag-D0.3%拉伸样品,以评估其密度和拉伸强度。过程中 EOSTATE 熔池监测技术被用作评估密度变化的比较工具。该技术使用过程中熔池检测来识别熔池特性的变化以及潜在的缺陷和/或密度偏差。使用 X 射线计算机断层扫描 (xCT) 和三维可视化技术对每个样品的形态和相关缺陷分布进行表征和报告。报告了 L-PBF Ag 和 Ag-D 的杨氏模量、破坏应变和极限拉伸强度。熔池监测结果显示了建造方向上的过程变化,这一点通过 xCT 三维可视化技术得到了证实。此外,xCT 分析还显示了所有 Ag-D 复合材料的密度变化。拉伸结果显示,增加金刚石含量会降低杨氏模量和极限拉伸强度。
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来源期刊
Machines
Machines Multiple-
CiteScore
3.00
自引率
26.90%
发文量
1012
审稿时长
11 weeks
期刊介绍: Machines (ISSN 2075-1702) is an international, peer-reviewed journal on machinery and engineering. It publishes research articles, reviews, short communications and letters. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. Full experimental and/or methodical details must be provided. There are, in addition, unique features of this journal: *manuscripts regarding research proposals and research ideas will be particularly welcomed *electronic files or software regarding the full details of the calculation and experimental procedure - if unable to be published in a normal way - can be deposited as supplementary material Subject Areas: applications of automation, systems and control engineering, electronic engineering, mechanical engineering, computer engineering, mechatronics, robotics, industrial design, human-machine-interfaces, mechanical systems, machines and related components, machine vision, history of technology and industrial revolution, turbo machinery, machine diagnostics and prognostics (condition monitoring), machine design.
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