Abstract
Microscopic defects affect shock sensitivity remarkably. We exhibit a molecular dynamics study of defective β-cyclotetramethylene tetranitramine (HMX) crystals with void (VH), entrained oxygen (OH), and entrained amorphous carbon (CH), as well as a perfect HMX crystal (PH) for contrast. The crystals were shocked with 9 km/s shock velocity perpendicular to the (010) plane for 50 ps using a ReaxFF-lg force field. The results demonstrate that the shock sensitivity of HMX crystals with different defects is enhanced to different degrees. OH has the highest shock sensitivity, which is slightly higher than that in VH; both OH and VH crystals have much higher shock sensitivity than that in CH. Obvious local high temperature areas are found in defective systems, which are not found in PH. The initial reaction is N-NO2 bond cleavage in PH and is N-NO2 and N-O bond cleavages in defective systems. More products are found in defective HMX crystals during shock simulations, while fewer immediate products and no final product are found in PH. The average temperature, pressure, and decrement of potential energy during simulation are much higher in defective systems compared to the perfect ones.
| Original language | English |
|---|---|
| Article number | 195101 |
| Journal | Journal of Applied Physics |
| Volume | 125 |
| Issue number | 19 |
| Online published | 17 May 2019 |
| DOIs | |
| Publication status | Published - 21 May 2019 |
Publisher's Copyright Statement
- COPYRIGHT TERMS OF DEPOSITED FINAL PUBLISHED VERSION FILE: This article may be downloaded for personal use only. Any other use requires prior permission of the author and AIP Publishing. This article appeared in Xiaona Huang, Zhiqiang Qiao, Xiaogan Dai, Kaili Zhang, Ming Li, Gang Pei, and Yushi Wen , "Effects of different types of defects on ignition mechanisms in shocked β-cyclotetramethylene tetranitramine crystals: A molecular dynamics study based on ReaxFF-lg force field", Journal of Applied Physics 125, 195101 (2019) and may be found at https://doi.org/10.1063/1.5086916.
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