Anomalous sensitivity related to crystal characteristics of 2,6-diamino-3,5-dinitropyrazing-1-oxide (LLM-105)

Sensitivity is one of the greatest concerns in explosive materials, and its underlying mechanism remains ambiguous. In this study, 2,6-diamino-3,5- dinitropyrazine -1-oxide (LLM-105) crystals with different morphologies, such as crosswise, needle, plate, block, diamond, and spherical shapes, were pr...

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Bibliographic Details
Published inEnergetic materials frontiers Vol. 1; no. 3-4; pp. 178 - 185
Main Authors Li, Hongzhen, Zhou, Xiaoqing, Xu, Rong, Hao, Shilong, Chen, Dong, Zhou, Xin
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.12.2020
KeAi Communications Co. Ltd
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Summary:Sensitivity is one of the greatest concerns in explosive materials, and its underlying mechanism remains ambiguous. In this study, 2,6-diamino-3,5- dinitropyrazine -1-oxide (LLM-105) crystals with different morphologies, such as crosswise, needle, plate, block, diamond, and spherical shapes, were prepared using a solution crystallization method, and their crystal characteristics and sensitivity were investigated. It was found that the H50 values (impact sensitivity) of LLM-105 vary within an extremely wide range of 33.8–112.2 cm and are mainly influenced by the particle morphology, crystal integrity, particle surface defects, and roughness, but are mostly independent of intracrystalline defects and particle sizes. The friction sensitivities of all samples are zero and are unaffected by the crystal characteristics. The G50 values (shock sensitivity) are within the range of 0–6.9 mm, increasing with decreasing particle sizes and the apparent crystal density. Notably, LLM-105 crystals with a spherical shape, good integrity, smooth surface, and fewer defects are insensitive to impact and shock impulse. The relationships between the crystal characteristics and the sensitivity of LLM-105 are extremely complex and show some abnormal phenomena, which can be attributed to the crystal packing style and aggregated microstructures of LLM-105. LLM-105 crystals with a spherical shape, good integrity, smooth surface, and fewer defects are insensitive to impact and shock impulse. The relationships between the crystal characteristics and sensitivity of LLM-105 are extremely complex and show some abnormal phenomena, which could be attributed to the crystal packing style and aggregated microstructures of LLM-105. [Display omitted]
ISSN:2666-6472
2666-6472
DOI:10.1016/j.enmf.2020.12.001