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Energetic Solid Fuels for Ducted Rockets (III)

✍ Scribed by N. Kubota; K. Miyata; T. Kuwahara; M. Mitsuno; I. Nakagawa


Book ID
105355810
Publisher
John Wiley and Sons
Year
1992
Tongue
English
Weight
372 KB
Volume
17
Category
Article
ISSN
0721-3115

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✦ Synopsis


Abstract

Ducted rockets operate with the combustion of fuel‐rich gas generated in a primary combustor and the ram‐air induced from the atmosphere to a secondary combustor. Thus, the combustion performance depends on the mixing and reaction processes of the fuel‐rich gas and the air flow in the secondary combustor. The energetic solid fuels examined in this study consisted of ammonium perchlorate based composite propellants containing boron particles. The combustion efficiency of boron particles in the secondary combustor was determined as a function of air‐mixing process and air/fuel ratio. Two types of air‐inlet were used to evaluate the combustion of boron particles. Combustion tests conducted by direct connect flow indicate that the combustion efficiency increased significantly when a multi‐port consisting of two forward‐ports and two rear‐ports was used.


📜 SIMILAR VOLUMES


Energetic Solid Fuels for Ducted Rockets
✍ N. Kubota; Y. Yano; K. Miyata; T. Kuwahara; M. Mitsuno; I. Nakagawa 📂 Article 📅 1991 🏛 John Wiley and Sons 🌐 English ⚖ 462 KB

## Abstract The combustion characteristics of variable‐flow ducted rockets were evaluated in order to obtain optimum design parameters of the gas generators. The energetic solid fuels used for the gas generators were glycidyl azide polymer (GAP) with burning rate catalysts. The burning rate of GAP

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## Abstract Energetic solid fuels composed of modified GAP (glycidyl azide polymer) propellants were formulated in order to obtain optimized combustion characteristics for variable flow ducted rockets. Burning rate in a primary combustor and the combustion efficiency in a secondary combustor were s