3D Printing Techniques for Paraffin-Based Fuel Grains

Riccardo Gelain, Artur Elias De Morais Bertoldi, Adrien Hauw, Patrick Hendrick
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Abstract

Hybrid rocket propulsion systems have proved to be a suitable option for some specific applications in the space transportation domain such as in launch vehicle upper stages, orbit transfer spacecrafts, decelerator engines for re-entry capsules, and small satellites launchers. Part of the renewed interest in hybrid rocket propulsion is due mainly to the safety aspects, cost reduction, and the use of paraffin-based fuel that impacts positively in terms of the solid fuel regression rate. However, paraffin solid fuel grains have poor structural characteristics and sometimes low performance due to the fuel internal ballistics behaviour. More recently, various studies have been carried out to overcome these drawbacks of paraffin-based fuels, such as the addition of energetic nano-sized metallic powder and 3D printing techniques. This study presents a review of the principal concepts of 3D printing processes and extrusion techniques that can be suitable for paraffin grains manufacturing and the conceptual design of a prototype for a 3D printer system under development at the Aero-Thermo-Mechanics Department of Université Libre de Bruxelles.

石蜡基燃料颗粒的3D打印技术
混合火箭推进系统已被证明是空间运输领域中一些特定应用的合适选择,例如运载火箭的上级、轨道转移航天器、再入太空舱的减速发动机和小型卫星发射器。对混合火箭推进重新产生兴趣的部分原因主要是由于安全方面、降低成本和使用对固体燃料回归率有积极影响的石蜡基燃料。然而,由于燃料的内弹道特性,石蜡固体燃料颗粒结构特性较差,有时性能较低。最近,人们进行了各种研究来克服石蜡基燃料的这些缺点,例如添加高能纳米金属粉末和3D打印技术。本研究介绍了适用于石蜡颗粒制造的3D打印工艺和挤出技术的主要概念,以及布鲁塞尔自由大学航空热机械系正在开发的3D打印机系统原型的概念设计。
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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