Qualification process of additive manufactured attachment Supports for the Space Rider Body Flap Assembly

Stefania Franchitti , Rosario Borrelli , Angelo De Fenza , Roberto Fauci , Mario De Stefano Fumo , R. Gardi , Giuseppe Rufolo
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Abstract

The paper describes the progress in the development, manufacturing and qualification of the Support Attachments of the Body Flaps Assembly (BFA) of the ESA funded SPACE RIDER re-entry vehicle, involving innovative Additive Layer Manufacturing (ALM) techniques.

The SPACE RIDER program aims to define and to develop an affordable reusable European space transportation system to be launched by the ESA VEGA-C launcher and able to perform experimentation and demonstration of multiple future application missions in low Earth orbit. The proposed BFA design is based on a hybrid approach: Ceramic Matrix Composite (CMC) control surfaces capable to withstand the harsh environment of re-entry combined with high temperature metallic components allowing the connection of the control surfaces to the cold structure.

In particular, these support attachments have been designed as Ti6Al4V components and due to their geometrical complexity manufactured by using ALM technique.

The paper describes the ALM technology used, that is the Electron Beam Melting (EBM) process, and it is focused on the development activities for the qualification of ALM process and of the components for space applications according to ESA ECSS standards.

太空骑手车身挡板组件添加剂制造附件支撑的鉴定过程
本文介绍了由欧空局资助的 SPACE RIDER 再入飞行器襟翼总成(BFA)支撑附件的开发、制造和鉴定进展情况,其中涉及创新的增材制造(ALM)技术。SPACE RIDER 计划旨在定义和开发一种可负担得起的可重复使用的欧洲空间运输系统,该系统将由欧空局 VEGA-C 发射装置发射,能够在低地球轨道上执行实验和演示多种未来应用任务。拟议的 BFA 设计基于一种混合方法:本文介绍了所使用的 ALM 技术,即电子束熔化 (EBM) 工艺,并重点介绍了根据欧空局 ECSS 标准对 ALM 工艺和太空应用组件进行鉴定的开发活动。
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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CiteScore
1.70
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