Cargando…

Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances

The solid–solid phase transition, poor mechanical properties, and high sensitivity has impeded further practical applications of 1,3,5,7-tetranitro-1,3,5,7-tetrazocane (HMX) based polymer bonded explosives (PBXs). To address these issues together, a facile and effective route was employed to achieve...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Congmei, Gong, Feiyan, Yang, Zhijian, Zhao, Xu, Li, Yubin, Zeng, Chengcheng, Li, Jiang, Guo, Shaoyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6473810/
https://www.ncbi.nlm.nih.gov/pubmed/30960552
http://dx.doi.org/10.3390/polym11030568
_version_ 1783412511813402624
author Lin, Congmei
Gong, Feiyan
Yang, Zhijian
Zhao, Xu
Li, Yubin
Zeng, Chengcheng
Li, Jiang
Guo, Shaoyun
author_facet Lin, Congmei
Gong, Feiyan
Yang, Zhijian
Zhao, Xu
Li, Yubin
Zeng, Chengcheng
Li, Jiang
Guo, Shaoyun
author_sort Lin, Congmei
collection PubMed
description The solid–solid phase transition, poor mechanical properties, and high sensitivity has impeded further practical applications of 1,3,5,7-tetranitro-1,3,5,7-tetrazocane (HMX) based polymer bonded explosives (PBXs). To address these issues together, a facile and effective route was employed to achieve a coating of polydopamine (PDA) on the surface of explosive crystals via in situ polymerization of dopamine. Additionally, PBXs based on HMX@PDA microcapsules were prepared with a fluoropolymer as polymer binder. Improved storage modulus, static mechanical strength and toughness, and creep resistance has been achieved in as-prepared PDA modified PBXs. The β-δ phase transition temperature of as-obtained PBXs based on conventional HMX (C-HMX)@PDA was improved by 16.3 °C. The friction sensitivity of the C-HMX based PBXs showed a dramatic drop after the PDA coating. A favorable balance proposed in this paper among thermal stability, mechanical properties, and sensitivity was achieved for C-HMX based PBXs with the incorporation of PDA.
format Online
Article
Text
id pubmed-6473810
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-64738102019-04-29 Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances Lin, Congmei Gong, Feiyan Yang, Zhijian Zhao, Xu Li, Yubin Zeng, Chengcheng Li, Jiang Guo, Shaoyun Polymers (Basel) Article The solid–solid phase transition, poor mechanical properties, and high sensitivity has impeded further practical applications of 1,3,5,7-tetranitro-1,3,5,7-tetrazocane (HMX) based polymer bonded explosives (PBXs). To address these issues together, a facile and effective route was employed to achieve a coating of polydopamine (PDA) on the surface of explosive crystals via in situ polymerization of dopamine. Additionally, PBXs based on HMX@PDA microcapsules were prepared with a fluoropolymer as polymer binder. Improved storage modulus, static mechanical strength and toughness, and creep resistance has been achieved in as-prepared PDA modified PBXs. The β-δ phase transition temperature of as-obtained PBXs based on conventional HMX (C-HMX)@PDA was improved by 16.3 °C. The friction sensitivity of the C-HMX based PBXs showed a dramatic drop after the PDA coating. A favorable balance proposed in this paper among thermal stability, mechanical properties, and sensitivity was achieved for C-HMX based PBXs with the incorporation of PDA. MDPI 2019-03-26 /pmc/articles/PMC6473810/ /pubmed/30960552 http://dx.doi.org/10.3390/polym11030568 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
Lin, Congmei
Gong, Feiyan
Yang, Zhijian
Zhao, Xu
Li, Yubin
Zeng, Chengcheng
Li, Jiang
Guo, Shaoyun
Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances
title Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances
title_full Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances
title_fullStr Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances
title_full_unstemmed Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances
title_short Core-Shell Structured HMX@Polydopamine Energetic Microspheres: Synergistically Enhanced Mechanical, Thermal, and Safety Performances
title_sort core-shell structured hmx@polydopamine energetic microspheres: synergistically enhanced mechanical, thermal, and safety performances
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6473810/
https://www.ncbi.nlm.nih.gov/pubmed/30960552
http://dx.doi.org/10.3390/polym11030568
work_keys_str_mv AT lincongmei coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances
AT gongfeiyan coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances
AT yangzhijian coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances
AT zhaoxu coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances
AT liyubin coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances
AT zengchengcheng coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances
AT lijiang coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances
AT guoshaoyun coreshellstructuredhmxpolydopamineenergeticmicrospheressynergisticallyenhancedmechanicalthermalandsafetyperformances