CHINESE JOURNAL OF ENERGETIC MATERIALS
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Preparation and Performance of Al-LiH Composite Fuel
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1.Science and Technology on Aerospace Chemical Power Laboratory, Xiangyang 441003, China;2.Hubei Institute of Aerospace Chemotechnology, Xiangyang 441003, China

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    Abstract:

    To improve the combustion efficiency of aluminum powders, Al-LiH composite fuels with mass contents of 3%, 5%, 10%, and 15% were prepared using the ball milling method, respectively. The sample structure, morphology, and particle size are characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), and particle size analyzer. The thermal oxidation performance was characterized using the DSC-TG. Finally, their combustion performance was investigated using the CO2 laser ignition device, high-speed camera, and oxygen bomb calorimeter. The results show that LiH can be embedded into Al powder through the ball milling method, and the LiH content is a key factor affecting its microstructure, particle size, and particle size distribution. The addition of LiH increases the mass calorific value of fuel. At the same time, with the increase of LiH content, the combustion flame intensity of Al-LiH composite fuel increases and the ignition delay time significantly decreases. Among them, Al-3LiH and Al-10LiH composite fuels achieve second oxidation after the first oxidation. The analysis suggests that the second oxidation phenomenon is caused by the microexplosion phenomenon of Al-LiH composite fuel at high temperatures.

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王芳,张鑫鹏,王鼎程,等. Al-LiH复合燃料制备及性能[J].含能材料,2024,32(1):12-19.
WANG Fang, ZHANG Xin-peng, WANG Ding-cheng, et al. Preparation and Performance of Al-LiH Composite Fuel[J]. Chinese Journal of Energetic Materials,2024,32(1):12-19.

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History
  • Received:September 12,2023
  • Revised:December 04,2023
  • Adopted:November 25,2023
  • Online: November 27,2023
  • Published: January 25,2024