首页> 外文会议>Design automation conference;ASME international design engineering technical conferences and computers and information in engineering conference >REDESIGNING A REACTION CONTROL THRUSTER FOR METAL-BASED ADDITIVE MANUFACTURING: A CASE STUDY IN DESIGN FOR ADDITIVE MANUFACTURING
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REDESIGNING A REACTION CONTROL THRUSTER FOR METAL-BASED ADDITIVE MANUFACTURING: A CASE STUDY IN DESIGN FOR ADDITIVE MANUFACTURING

机译:重新设计基于金属的增材制造的反应控制控制器:以增材制造设计为例

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Prior research has shown that powder bed fusion additive manufacturing (AM) can be used to make functional, end-use components from powdered metallic alloys, such as Inconel® 718 super alloy. However, these end-use products are often based on designs developed for more traditional subtractive manufacturing processes without taking advantage of the unique design freedoms afforded by AM. In this paper, we present a case study involving the redesign of NASA's existing "Pencil" thruster used for spacecraft attitude control. The initial "Pencil" thruster was designed for, and manufactured using, traditional subtractive methods. The main focus in this paper is to (a) review the Design for Additive Manufacturing (DfAM) concepts and considerations used in redesigning the thruster and (b) compare it with a parallel development effort redesigning the original thruster to be manufactured more effectively using subtractive processes. The results from this study show how developing end-use AM components using DfAM guidelines can significantly reduce manufacturing time and costs while introducing new and novel design geometries.
机译:先前的研究表明,粉末床熔合增材制造(AM)可用于由粉末金属合金(例如Inconel®718超级合金)制造功能性最终用途组件。但是,这些最终用途产品通常基于为更传统的减法制造工艺开发的设计,而没有利用AM提供的独特设计自由。在本文中,我们提供了一个案例研究,其中涉及对NASA现有的“ Pencil”推进器进行重新设计,该推进器用于航天器姿态控制。最初的“铅笔”推力器是为传统减法设计和制造的。本文的主要重点是(a)回顾用于重新设计推进器的增材制造设计(DfAM)概念和注意事项,以及(b)将其与并行开发工作进行比较,以重新设计可通过减法法更有效地制造的原始推进器流程。这项研究的结果表明,使用DfAM准则开发最终使用的AM组件如何在引入新的新颖几何形状的同时显着减少制造时间和成本。

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