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The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX

In order to investigate and compare the effects of RDX crystal quality on the safety and mechanical properties of pressed PBX, different RDX-based PBXs were prepared by a water suspension granulation method. The surface morphology, thermal decomposition properties, impact sensitivity, and mechanical...

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Autores principales: Chen, Shixiong, Qian, Hua, Liu, Bingxin, Xu, Feiyang, Rui, Jiuhou, Liu, Dabin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840089/
https://www.ncbi.nlm.nih.gov/pubmed/35161131
http://dx.doi.org/10.3390/ma15031185
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author Chen, Shixiong
Qian, Hua
Liu, Bingxin
Xu, Feiyang
Rui, Jiuhou
Liu, Dabin
author_facet Chen, Shixiong
Qian, Hua
Liu, Bingxin
Xu, Feiyang
Rui, Jiuhou
Liu, Dabin
author_sort Chen, Shixiong
collection PubMed
description In order to investigate and compare the effects of RDX crystal quality on the safety and mechanical properties of pressed PBX, different RDX-based PBXs were prepared by a water suspension granulation method. The surface morphology, thermal decomposition properties, impact sensitivity, and mechanical properties of high-quality RDX (H-RDX) and PBX were characterized by SEM, optical microscope, DSC, impact sensitivity tester, and universal material testing machines. The results have shown that the H-RDX crystal has a smoother surface, regular shape, higher density, fewer defects, better thermal stability, and lower impact sensitivity than raw RDX. The activation energy of H-RDX-based PBX is 26.0% higher than that of raw RDX-based PBX, and H(50) increased by 2.8 cm, indicating that the application of H-RDX to PBX can effectively improve its thermal stability and reduce the impact sensitivity in the safety performance. However, the compressive strength of pressed H-RDX-based PBX is 36% lower than that of pressed raw RDX-based PBX, showing that H-RDX results in the deterioration of the compressive strength of pressed PBX in mechanical performance. Fortunately, this study found a strategy on how to effectively improve mechanical performance, which is changing the type of binder and increasing the pressing pressure. Under the same pressing conditions, the order of compressive strength of PBX prepared by the three binders is FKM DS2603 > Viton A > PVAc. Moreover, the compressive strength of H-RDX-based PBX with FKM DS2603 can be increased by 33.7% compared with PVAc. When the pressing pressure is 200 MPa, the average compressive strength of H-RDX-based PBX with FKM DS2603 reaches 10.00 MPa, which can basically meet application requirements.
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spelling pubmed-88400892022-02-13 The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX Chen, Shixiong Qian, Hua Liu, Bingxin Xu, Feiyang Rui, Jiuhou Liu, Dabin Materials (Basel) Article In order to investigate and compare the effects of RDX crystal quality on the safety and mechanical properties of pressed PBX, different RDX-based PBXs were prepared by a water suspension granulation method. The surface morphology, thermal decomposition properties, impact sensitivity, and mechanical properties of high-quality RDX (H-RDX) and PBX were characterized by SEM, optical microscope, DSC, impact sensitivity tester, and universal material testing machines. The results have shown that the H-RDX crystal has a smoother surface, regular shape, higher density, fewer defects, better thermal stability, and lower impact sensitivity than raw RDX. The activation energy of H-RDX-based PBX is 26.0% higher than that of raw RDX-based PBX, and H(50) increased by 2.8 cm, indicating that the application of H-RDX to PBX can effectively improve its thermal stability and reduce the impact sensitivity in the safety performance. However, the compressive strength of pressed H-RDX-based PBX is 36% lower than that of pressed raw RDX-based PBX, showing that H-RDX results in the deterioration of the compressive strength of pressed PBX in mechanical performance. Fortunately, this study found a strategy on how to effectively improve mechanical performance, which is changing the type of binder and increasing the pressing pressure. Under the same pressing conditions, the order of compressive strength of PBX prepared by the three binders is FKM DS2603 > Viton A > PVAc. Moreover, the compressive strength of H-RDX-based PBX with FKM DS2603 can be increased by 33.7% compared with PVAc. When the pressing pressure is 200 MPa, the average compressive strength of H-RDX-based PBX with FKM DS2603 reaches 10.00 MPa, which can basically meet application requirements. MDPI 2022-02-04 /pmc/articles/PMC8840089/ /pubmed/35161131 http://dx.doi.org/10.3390/ma15031185 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Shixiong
Qian, Hua
Liu, Bingxin
Xu, Feiyang
Rui, Jiuhou
Liu, Dabin
The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX
title The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX
title_full The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX
title_fullStr The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX
title_full_unstemmed The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX
title_short The Effect of High-Quality RDX on the Safety and Mechanical Properties of Pressed PBX
title_sort effect of high-quality rdx on the safety and mechanical properties of pressed pbx
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840089/
https://www.ncbi.nlm.nih.gov/pubmed/35161131
http://dx.doi.org/10.3390/ma15031185
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