A Study of Fuel-rich Solid Propellant Characteristic for Boron-bead Particle Size
Jongung Won, Sunghan Choi, Wonbok Lee, Hak Jun Kim, Hwang Gab-Sung, Bocksun Park
Abstract
Open-access reader
Jongung Won, Sunghan Choi, Wonbok Lee, Hak Jun Kim, Hwang Gab-Sung, Bocksun Park
Abstract
Open-access reader
공기흡입형 추진기관의 가스발생기에 사용하기 위한 연료과농(Fuel-rich) 고체 추진제의 특성에 대한 연구를 수행하였다. 일반적인 고체 추진제는 평균 60%이상의 산화제를 포함하는 데, 연료과농 고체 추진제를 개발히기 위해 산화제 함량을 30%내외로 낮추고 매우 높은 부피당 열량을 가지는 비정질 붕소를 입자화(Bead)하여 금속연료 함량을 증가시켜 고체 추진제의 제조 공정성 및 연소속도 특성을 확인하였다. 과립화붕소의 입도가 작을수록 추진제 제조 공정에서 초기 점도가 높아지고, 입도가 클수록 연소속도 및 압력지수가 증가하는 것을 확인할 수 있었다. A study of gas generator Fuel-Rich propellant for air-breathing propulsion system was performed in this paper. General solid propellant comprises a mean of 60% or more oxidizing agents. but, to develop the fuel-rich solid propellant increased the content of the metal fuel and reduced the content of the oxidizing agents by approximately 30%. Very high amount of heat per volume of fuel into the metal having the Boron was used. Amorphous Boron Powder was applied to propellant as beads type and it allowed to design more amount of metal fuel in the fuel-rich propellant. And the Combustion characteristics and properties of fuel-rich solid propellant according to the Boron-bead sizes were confirmed.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
공기흡입형 추진기관의 가스발생기에 사용하기 위한 연료과농(Fuel-rich) 고체 추진제의 특성에 대한 연구를 수행하였다. 일반적인 고체 추진제는 평균 60%이상의 산화제를 포함하는 데, 연료과농 고체 추진제를 개발히기 위해 산화제 함량을 30%내외로 낮추고 매우 높은 부피당 열량을 가지는 비정질 붕소를 입자화(Bead)하여 금속연료 함량을 증가시켜 고체 추진제의 제조 공정성 및 연소속도 특성을 확인하였다. 과립화붕소의 입도가 작을수록 추진제 제조 공정에서 초기 점도가 높아지고, 입도가 클수록 연소속도 및 압력지수가 증가하는 것을 확인할 수 있었다. A study of gas generator Fuel-Rich propellant for air-breathing propulsion system was performed in this paper. General solid propellant comprises a mean of 60% or more oxidizing agents. but, to develop the fuel-rich solid propellant increased the content of the metal fuel and reduced the content of the oxidizing agents by approximately 30%. Very high amount of heat per volume of fuel into the metal having the Boron was used. Amorphous Boron Powder was applied to propellant as beads type and it allowed to design more amount of metal fuel in the fuel-rich propellant. And the Combustion characteristics and properties of fuel-rich solid propellant according to the Boron-bead sizes were confirmed.
Key concepts: Propellant, Materials science, Oxidizing agent, Boron, Combustion, Bead, Particle size, Solid fuel