Preparation and Properties of a Novel High-Toughness Solid Propellant Adhesive System Based on Glycidyl Azide Polymer–Energetic Thermoplastic Elastomer/Nitrocellulose/Butyl Nitrate Ethyl Nitramine

Author:

Zhang Jing1,Wang Zhen1,Sun Shixiong23,Luo Yunjun1ORCID

Affiliation:

1. School of Materials Science and Technology, Beijing Institute of Technology, Beijing 100081, China

2. School of Chemistry and Chemical Engineering, North University of China, Taiyuan 030051, China

3. Dezhou Industrial Technology Research Institute of North University of China, Dezhou 253034, China

Abstract

Glycidyl azide polymer (GAP)–energetic thermoplastic elastomer (GAP-ETPE) propellants have high development prospects as green solid propellants, but the preparation of GAP-ETPEs with excellent performance is still a challenge. Improving the performance of the adhesive system in a propellant by introducing a plasticizer is an effective approach to increasing the energy and toughness of the propellant. Herein, a novel high-strength solid propellant adhesive system was proposed with GAP-ETPEs as the adhesive skeleton, butyl nitrate ethyl nitramine (Bu-NENA) as the energetic plasticizer, and nitrocellulose (NC) as the reinforcing agent. The effects of the structural factors on its properties were studied. The results showed that the binder system would give the propellant better mechanical and safety properties. The results can provide a reference for the structure design, forming process, and parameter selection of high-performance GAP-based green solid propellants.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference29 articles.

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