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Metallographic Analysis of the Suitability of a WC-Co Powder Blend for Selective Laser Melting Technology

机译:金相分析适用于选择性激光熔化技术的WC-Co粉末共混物

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摘要

The main objective of this article is to familiarize readers with the first outputs from PhD research by David Bricín, especially with the metallographic analysis, which was carried out on the first series of printed samples. The PhD thesis deals with the processing of powder mixtures based on WC-Co using selective laser melting (SLM) and other technologies. This article specifically deals with the use of SLM for the processing of a WC-Co powder mix. The grains of this powder mixture are not granular, but separate grains of carbides and binders. This powder blend was processed on a 3D SLM printer using various printing parameters. Variable parameters included laser power and scanning speed. Other print parameters were kept constant. The properties of the powder mixture and the printed samples were evaluated by metallographic analysis using light and scanning electron microscopy. These analyses were further supplemented by X-ray diffraction phase analysis, chemical analysis by EDX, and analysis of mechanical properties by compression strength testing. The evaluation of the analyses determined how the printing parameters and the type of powder used affect the development and distribution of the structure in the printed samples and how the mechanical properties of the print are then affected. For example, it has been found that increasing the scanning speed results in a more pronounced mixing between the carbide grains and the binder, which then has a positive influence on the mechanical properties of the print. In addition, the experiments found the energy at which the porosity in the printed samples was significantly reduced, and the direction in which further experiments are to take.
机译:本文的主要目的是使读者熟悉DavidBricín博士研究的第一批成果,尤其是对第一批印刷样品进行的金相分析。博士论文涉及使用选择性激光熔化(SLM)和其他技术对基于WC-Co的粉末混合物进行处理。本文专门介绍了SLM在处理WC-Co粉末混合物中的用途。该粉末混合物的颗粒不是粒状的,而是碳化物和粘合剂的分开的颗粒。使用各种打印参数在3D SLM打印机上处理此粉末混合物。可变参数包括激光功率和扫描速度。其他打印参数保持不变。通过使用光和扫描电子显微镜的金相分析来评估粉末混合物和印刷样品的性质。 X射线衍射相分析,EDX进行化学分析以及抗压强度测试对机械性能进行分析,进一步补充了这些分析。对分析的评估确定了印刷参数和所用粉末的类型如何影响印刷样品中结构的发展和分布以及随后如何影响印刷的机械性能。例如,已经发现提高扫描速度导致碳化物颗粒和粘合剂之间更明显的混合,这然后对印刷的机械性能产生积极影响。此外,实验发现,打印样品的孔隙率显着降低的能量以及进一步实验的方向。

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