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A Study on Using the Additive Manufacturing Process for the Development of a Closed Pump Impeller for Mechanically Pumped Fluid Loop Systems

机译:用封闭式泵叶轮开发用于机械泵送流体回路系统的研究

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摘要

The efficiency of a centrifugal pump for mechanical pump fluid loops, apart from the design, relies on the performance of the closed impeller which is linked to the manufacturing process in terms of dimensional accuracy and the surface quality. Therefore, the activities of this paper were focused on defining the manufacturing process of a closed impeller using the additive manufacturing technology for mechanically pumped fluid loop (MPFL) systems in space applications. Different building orientations were studied to fabricate three closed impellers using selective laser melting technology and were subjected to dimensional accuracy and surface quality evaluations in order to identify the optimal building orientation. The material used for the closed impeller is Inconel 625. The results showed that both geometrical stability and roughness were improved as the building orientation increased, however, the blade thickness presented small deviations, close to imposed values. Finishing processes for inaccessible areas presented significant results in terms of roughness, nevertheless, the process can be further improved. Abrasive flow machining (AFM) post-processing operations have been considered and the results show major improvements in surface quality. Thus, important steps were made towards the development of complex structural components, consequently increasing the technological readiness level of the additive manufacturing process for space applications.
机译:除了设计之外,用于机械泵流体环的离心泵的效率依赖于闭合叶轮的性能,这在尺寸精度和表面质量方面与制造过程相关联。因此,本文的活性集中在利用添加剂制造技术在太空应用中使用添加剂制造技术来定义闭孔叶轮的制造过程。研究了不同的建筑方向,用于使用选择性激光熔化技术制造三个闭孔叶轮,并进行尺寸精度和表面质量评估,以确定最佳的建筑方向。用于封闭叶轮的材料是Inconel 625.结果表明,随着建筑方向的增加,改善了几何稳定性和粗糙度,然而,叶片厚度呈现小偏差,接近施加的值。对于无法访问的地区的整理过程在粗糙度方面提出了显着的结果,尽管如此,该过程可以进一步提高。已经考虑了磨料流动加工(AFM)后处理操作,结果显示了表面质量的重大改进。因此,对复杂结构部件的发展进行了重要的步骤,从而提高了空间应用的添加剂制造过程的技术准备水平。

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