Jump to main content
US EPA
United States Environmental Protection Agency
Search
Search
Main menu
Environmental Topics
Laws & Regulations
About EPA
Health & Environmental Research Online (HERO)
Contact Us
Print
Feedback
Export to File
Search:
This record has one attached file:
Add More Files
Attach File(s):
Display Name for File*:
Save
Citation
Tags
HERO ID
7764661
Reference Type
Journal Article
Title
Enhancing the explosive characteristics of a Semtex explosive by involving admixtures of BCHMX and HMX
Author(s)
Elbeih, A; Hussein, AK; Elshenawy, T; Zeman, S; Hammad, SM; Baraka, A; Elsayed, MA; Gobara, M; Tantawy, H
Year
2020
Publisher
China Ordnance Society
Volume
16
Issue
2
Page Numbers
487-492
Language
English
DOI
10.1016/j.dt.2019.05.012
Web of Science Id
WOS:000534501100010
Abstract
A well-known ternary plastic explosive, Czech Semtex 1H, contains a mixture of PETN and RDX softened by SBR. In this work, BCHMX was used to replace PETN in Semtex 1H to form Sem-BC+RDX. In addition, another mixture based on BCHMX and HMX as energetic fillers bonded by the polymeric matrix of Semtex 1H (Sem-BC+HMX) was studied. The particle size distribution of each individual explosive was determined to obtain the optimum mixing conditions. Friction and impact sensitivities were determined. The velocity of detonation was reported practically and the detonation properties were calculated by EXPLO5 code. The explosive strength of each sample was measured by the ballistic mortar test. The conclusion confirms that the velocity of detonation of Sem-BC+HMX was the highest in comparison with the prepared samples. Sem-BC+RDX has the least impact and frictions sensitivities. Sem-BC+RDX has higher detonation velocity, detonation properties and explosive strength than Semtex 1H. Addition of BCHMX in Semtex 1H as a replacement for PETN is the candidate to produce a high performance advanced Czech plastic explosive. © 2019 The Authors
Keywords
Semtex; Explosives; Combustion; Sensitivity; Detonation; Explosive strength
Home
Learn about HERO
Using HERO
Search HERO
Projects in HERO
Risk Assessment
Transparency & Integrity