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选择性激光熔化增材制造参数对Inconel 718高温合金的影响。

Influence of Selective Laser Melting Additive Manufacturing Parameters in Inconel 718 Superalloy.

作者信息

Kladovasilakis Nikolaos, Charalampous Paschalis, Tsongas Konstantinos, Kostavelis Ioannis, Tzovaras Dimitrios, Tzetzis Dimitrios

机构信息

Centre for Research and Technology Hellas, Information Technologies Institute (CERTH/ITI), 57001 Thessaloniki, Greece.

Digital Manufacturing and Materials Characterization Laboratory, School of Science and Technology, International Hellenic University, 57001 Thessaloniki, Greece.

出版信息

Materials (Basel). 2022 Feb 12;15(4):1362. doi: 10.3390/ma15041362.

Abstract

Selective laser melting (SLM) is one of the most reliable and efficient procedures for Metal Additive Manufacturing (AM) due to the capability to produce components with high standards in terms of dimensional accuracy, surface finish, and mechanical behavior. In the past years, the SLM process has been utilized for direct manufacturing of fully functional mechanical parts in various industries, such as aeronautics and automotive. Hence, it is essential to investigate the SLM procedure for the most commonly used metals and alloys. The current paper focuses on the impact of crucial process-related parameters on the final quality of parts constructed with the Inconel 718 superalloy. Utilizing the SLM process and the Inconel 718 powder, several samples were fabricated using various values on critical AM parameters, and their mechanical behavior as well as their surface finish were examined. The investigated parameters were the laser power, the scan speed, the spot size, and their output Volumetric Energy Density (VED), which were applied on each specimen. The feedstock material was inspected using Scanning Electron Microscopy (SEM), Energy-dispersive X-ray spectroscopy (EDX) analysis, and Particle-size distribution (PSD) measurements in order to classify the quality of the raw material. The surface roughness of each specimen was evaluated via multi-focus imaging, and the mechanical performance was quantified utilizing quasi-static uniaxial tensile and nanoindentation experiments. Finally, regression-based models were developed in order to interpret the behavior of the AM part's quality depending on the process-related parameters.

摘要

选择性激光熔化(SLM)是金属增材制造(AM)中最可靠、最高效的工艺之一,因为它能够生产出在尺寸精度、表面光洁度和机械性能方面达到高标准的部件。在过去几年中,SLM工艺已被用于航空航天和汽车等各个行业直接制造功能齐全的机械零件。因此,研究最常用金属和合金的SLM工艺至关重要。本文重点研究关键工艺相关参数对用Inconel 718超级合金制造的零件最终质量的影响。利用SLM工艺和Inconel 718粉末,在关键增材制造参数上采用不同值制造了多个样品,并对其机械性能和表面光洁度进行了检测。所研究的参数包括激光功率、扫描速度、光斑尺寸及其输出体积能量密度(VED),这些参数应用于每个试样。使用扫描电子显微镜(SEM)、能量色散X射线光谱(EDX)分析和粒度分布(PSD)测量对原料进行检查,以对原材料质量进行分类。通过多焦点成像评估每个试样的表面粗糙度,并利用准静态单轴拉伸和纳米压痕实验对机械性能进行量化。最后,建立了基于回归的模型,以解释增材制造零件质量随工艺相关参数的变化情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ca3/8876338/f3bf29553e03/materials-15-01362-g001.jpg

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