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Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant

A composite solid propellant which generates high propulsive force in a short time is typically composed of an oxidizer, a metal fuel powder and a binder. Among these, the binder is an important component. The binder maintains the mechanical properties of propellant grains and endures several therma...

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Autores principales: Hwang, Kiwon, Mun, Hyunsung, Jung, Jin Young, Cho, Hye Lim, Kim, Sung June, Min, Byoung Sun, Jeon, Heung Bae, Kim, Wonho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6960581/
https://www.ncbi.nlm.nih.gov/pubmed/31795493
http://dx.doi.org/10.3390/polym11121966
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author Hwang, Kiwon
Mun, Hyunsung
Jung, Jin Young
Cho, Hye Lim
Kim, Sung June
Min, Byoung Sun
Jeon, Heung Bae
Kim, Wonho
author_facet Hwang, Kiwon
Mun, Hyunsung
Jung, Jin Young
Cho, Hye Lim
Kim, Sung June
Min, Byoung Sun
Jeon, Heung Bae
Kim, Wonho
author_sort Hwang, Kiwon
collection PubMed
description A composite solid propellant which generates high propulsive force in a short time is typically composed of an oxidizer, a metal fuel powder and a binder. Among these, the binder is an important component. The binder maintains the mechanical properties of propellant grains and endures several thermal and mechanical stresses in the engine. Several studies have been reported for the development of energetic propellant binders for increasing the propellant′s propulsive force. While several materials have been studied for the synthesis of energetic prepolymers, a nitramine-group-containing prepolymer is a suitable candidate because these types of prepolymers are less toxic and more cost-effective when compared to the traditional glycidyl azide polymers (GAP) and triazole-based prepolymers. Considering the lack of studies for the binder using a nitramine-group-containing prepolymers, we synthesized a nitramine-group-containing monomer and polymerized a nitramine-group-containing prepolymer. The prepolymer was then used for the preparation of the binder and its thermal and mechanical properties, as well as the effect of the plasticizer, were studied. The binder that was prepared using the prepolymer containing a nitramine-group showed very high elongation, tensile strength. Nitrate-ester (NE)-type plasticizer could reduce the glassy transition temperature (T(g))of the binder successfully. Also, high-energy is released due to the decomposition of the nitramine-group at around 245 °C, thus exhibiting the efficiency of the nitramine-group-containing prepolymer as an excellent energetic binder material.
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spelling pubmed-69605812020-01-23 Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant Hwang, Kiwon Mun, Hyunsung Jung, Jin Young Cho, Hye Lim Kim, Sung June Min, Byoung Sun Jeon, Heung Bae Kim, Wonho Polymers (Basel) Article A composite solid propellant which generates high propulsive force in a short time is typically composed of an oxidizer, a metal fuel powder and a binder. Among these, the binder is an important component. The binder maintains the mechanical properties of propellant grains and endures several thermal and mechanical stresses in the engine. Several studies have been reported for the development of energetic propellant binders for increasing the propellant′s propulsive force. While several materials have been studied for the synthesis of energetic prepolymers, a nitramine-group-containing prepolymer is a suitable candidate because these types of prepolymers are less toxic and more cost-effective when compared to the traditional glycidyl azide polymers (GAP) and triazole-based prepolymers. Considering the lack of studies for the binder using a nitramine-group-containing prepolymers, we synthesized a nitramine-group-containing monomer and polymerized a nitramine-group-containing prepolymer. The prepolymer was then used for the preparation of the binder and its thermal and mechanical properties, as well as the effect of the plasticizer, were studied. The binder that was prepared using the prepolymer containing a nitramine-group showed very high elongation, tensile strength. Nitrate-ester (NE)-type plasticizer could reduce the glassy transition temperature (T(g))of the binder successfully. Also, high-energy is released due to the decomposition of the nitramine-group at around 245 °C, thus exhibiting the efficiency of the nitramine-group-containing prepolymer as an excellent energetic binder material. MDPI 2019-11-29 /pmc/articles/PMC6960581/ /pubmed/31795493 http://dx.doi.org/10.3390/polym11121966 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hwang, Kiwon
Mun, Hyunsung
Jung, Jin Young
Cho, Hye Lim
Kim, Sung June
Min, Byoung Sun
Jeon, Heung Bae
Kim, Wonho
Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant
title Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant
title_full Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant
title_fullStr Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant
title_full_unstemmed Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant
title_short Nitramine-Group-Containing Energetic Prepolymer: Synthesis, and Its Properties as a Binder for Propellant
title_sort nitramine-group-containing energetic prepolymer: synthesis, and its properties as a binder for propellant
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6960581/
https://www.ncbi.nlm.nih.gov/pubmed/31795493
http://dx.doi.org/10.3390/polym11121966
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