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Additively manufactured aluminium nested composite hybrid rocket fuel grains with breathable blades

Authors :
Dandan Qu
Xin Lin
Kun Zhang
Zhiyong Li
Zezhong Wang
Guoliang Liu
Yang Meng
Gengxing Luo
Ruoyan Wang
Xilong Yu
Source :
Virtual and Physical Prototyping, Vol 18, Iss 1 (2023)
Publication Year :
2023
Publisher :
Taylor & Francis Group, 2023.

Abstract

Hybrid rocket engines suffer from the restricted mechanical properties and low regression rates of current polymeric fuel grains. We propose a three-dimensional printed aluminium (Al) nested composite fuel grain with millimetre-scale lattice pores (referred to as Al-L). In this study, breathable Al blades with micrometer-scale interconnected pores (Al-B) and blades combining millimetre-scale and micrometer-scale pores (Al-B&L) are designed. The formation mechanisms, characteristics, and effects of the breathable blades are analysed in simulations, micro-computed tomography, and cyclic compression tests. The mechanical properties of the composite fuel grains are investigated numerically and in compression tests. Al-B has the highest Young’s modulus at more than 15 times that of a paraffin-based fuel grain and Al-B&L has the highest yield stress at 4 times that of the paraffin-based fuel grain. Referring to combustion properties, the regression rates of the Al-B and Al-B&L grains are respectively 63.3% and 58.2% greater than the regression rate of the paraffin-based fuel grain.

Details

Language :
English
ISSN :
17452759 and 17452767
Volume :
18
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Virtual and Physical Prototyping
Publication Type :
Academic Journal
Accession number :
edsdoj.8bf6c53a402544aa9faf096f547c9f99
Document Type :
article
Full Text :
https://doi.org/10.1080/17452759.2023.2235680