CHINESE JOURNAL OF ENERGETIC MATERIALS
+Advanced Search

Thermal Decomposition and Combustion Characteristics of TKX-50 with Network Nanostructure Fabricated by Rapid Freeze-Drying Method
Author:
Affiliation:

School of Environment and Safety Engineering, North University of China, Taiyuan 030051, China

Fund Project:

  • Article
  • |
  • Figures
  • |
  • Metrics
  • |
  • Reference
  • |
  • Related
  • |
  • Cited by
  • |
  • Materials
    Abstract:

    To study the thermal decomposition properties and combustion characteristics of nano-scale dihydroxylammonium 5,5′-bistetrazole-1,1′-diolate(TKX-50), TKX-50 samples with network-like nanostructure were prepared by rapid freeze-drying method. Their morphologies and structures were characterized by scanning electron microscope(SEM)and X-ray diffractometer (XRD). Thermal decomposition properties was measured by thermogravimetric analysis-differential scanning calorimetry (TG-DSC). Combustion process was tested by camera. The effects of nano-sized structure on the thermal decomposition and combustion characteristics of TKX-50 were discussed. Results show that the nano-scale TKX-50 obtained by rapid freeze-drying method has a nano-level network-like connection structure and good crystal stability. The two-step thermal decomposition peak temperatures of nano-scaleTKX-50 are 238.0 ℃ and 267.7 ℃, compared with raw TKX-50, which are decreased by 12.1 ℃ and 5.6 ℃, respectively. The nano-scaleTKX-50 samples have lower ignition delay and higher burning rate, revealing that compared with raw TKX-50, the surface active atoms and groups of nano-scale TKX-50 samples prepared by rapid freeze-drying method are increased and samples are easily activated, which promotes the thermal decomposition and combustion of TKX-50.

    Reference
    Related
    Cited by
Article Metrics
  • PDF:
  • HTML:
  • Abstract:
  • Cited by:
Get Citation

曹雄,杨丽媛,王华煜,等.快速冷冻干燥法制备网络纳米结构TKX-50的热分解和燃烧特性[J].含能材料,2018,26(12):1044-1048.
CAO Xiong, YANG Li-yuan, WANG Hua-yu, et al. Thermal Decomposition and Combustion Characteristics of TKX-50 with Network Nanostructure Fabricated by Rapid Freeze-Drying Method[J]. Chinese Journal of Energetic Materials,2018,26(12):1044-1048.

Cope
History
  • Received:October 12,2018
  • Revised:November 02,2018
  • Adopted:October 30,2018
  • Online: October 31,2018
  • Published: December 25,2018