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Supercritical Antisolvent Processing of Nitrocellulose: Downscaling to Nanosize Reducing Friction Sensitivity and Introducing Burning Rate Catalyst

机译:硝酸纤维素的超临界抗溶剂加工:沿纳米尺寸缩小降低摩擦敏感性和引入燃烧率催化剂

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摘要

A supercritical antisolvent process has been applied to obtain the nitrocellulose nanoparticles with an average size of 190 nm from the nitrocellulose fibers of 20 μm in diameter. Compared to the micron-sized powder, nano-nitrocellulose is characterized with a slightly lower decomposition onset, however, the friction sensitivity has been improved substantially along with the burning rate increasing from 3.8 to 4.7 mm·s−1 at 2 MPa. Also, the proposed approach allows the production of stable nitrocellulose composites. Thus, the addition of 1 wt.% carbon nanotubes further improves the sensitivity of the nano-nitrocellulose up to the friction-insensitive level. Moreover, the simultaneous introduction of carbon nanotubes and nanosized iron oxide catalyzes the combustion process evidenced by a high-speed filming and resulting in the 20% burning rate increasing at 12 MPa. The presented approach to the processing of energetic nanomaterials based on the supercritical fluid technology opens the way to the production of nitrocellulose-based nanopowders with improved performance.
机译:已经施加超临界的抗溶剂方法,得到硝酸纤维素纳米颗粒,其平均尺寸为190nm的直径为20μm的硝酸纤维纤维。与微米尺寸的粉末相比,纳米硝化纤维素的特征在于略低的分解发作,然而,摩擦敏感性基本上随着2MPa的3.8至4.7mm·S-1增加而增加。此外,所提出的方法允许生产稳定的硝酸纤维素复合材料。因此,加入1wt%。%碳纳米管进一步改善了纳米硝化纤维素的敏感性直至摩擦不敏感水平。此外,同时引入碳纳米管和纳米氧化氧化铁催化通过高速拍摄证明的燃烧过程,并导致12MPa的20%燃烧速率增加。基于超临界流体技术的高能纳米材料加工的提出的方法为生产硝化纤维素的纳米粉,具有改进的性能的方式开辟了含量的方式。

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