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GAP/CL-20-Based Compound Explosive: A New Booster Formulation Used in a Small-Sized Initiation Network
Authors:Wei Yanju  An Chongwei  Li Hequn  Wen Xiaomu  Yu Binshuo
Affiliation:School of Chemical and Environmental Engineering, North University of China, Taiyuan Shanxi, China
Abstract:With ε-2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane (CL-20) and glycidyl azide polymer (GAP) as the solid filler and binder, respectively, GAP/CL-20-based compound explosives were designed and prepared. Using micro injection charge technology, the compound explosives were packed into small grooves to explore their application in a small-sized initiation network. The detonation reliability, detonation velocity, mechanical sensitivity, shock sensitivity, and brisance of the explosive were measured and analyzed. The results show that when the solid content of CL-20 is 82 wt%, the explosive charged in the groove has a smooth surface from a macroscopic view. From a microscopic view, a coarse surface is bonded with many CL-20 particles by GAP binder. The GAP/CL-20-based explosive charge successfully generates detonation waves in a groove larger than 0.6 mm × 0.6 mm. When the charge density in the groove is 1.68 g·cm?3 (90% theoretical maximum density), the detonation velocity reaches 7,290 m·s?1. Moreover, this kind of explosive is characterized by low impact and shock sensitivity.
Keywords:CL-20  detonation velocity  GAP  propagation reliability  sensitivity
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