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Evaluation of the Thermal Stability of LA and CMC-LA by Dynamic Vacuum Stability Test Method
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(Beijing Institute of Technology, Beijing 100081, China)

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    Abstract:

    The thermal decomposition process of lead azide (LA) and carboxymethylcellulose lead azide (CMC-LA) was studied by dynamic vacuum stability test (DVST) method. The test data were analyzed by differential method. The reaction mechanism function and apparent activation energy of CMC-LA and LA were obtained. The influence rule of sodium carboxymethyl cellulose crystal control agent on the stability and kinetic parameters of the thermal decomposition reaction of LA was analyzed. Results show that in the non-isothermal stage, the mechanism function of the thermal decomposition reaction of LA in the temperature range from 60 ℃ to 100 ℃ is the Zhuralev-Lesokin-Tempelman equation, the apparent activation energy(Ea)is 86.53, 42.26, 39.43, 38.09 kJ·mol-1 and 10.84 kJ·mol-1, while thermal decomposition mechanism function of CMC-LA in the temperature range from 60 ℃ to 70 ℃ is the Avrami-Erofeev equation with Ea of 133.02 kJ·mol-1 and 41.87 kJ·mol-1 and thermal decomposition reaction mechanism of CMC-LA in the temperature range from 80 ℃ to 100 ℃ is the deceleration type α-t curve with Ea of 43.07, 34.34 kJ·mol-1 and 33.46 kJ·mol-1. Addding sodium carboxymethylcellulose changes the reaction mechanism function of LA, leading the gas production of CMC-LA smaller at 60 ℃ to 70 ℃, and with a better thermal stability.

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刘剑超,姜雨彤,张同来,等.动态真空安定性方法评估LA和CMC-LA热安定性[J].含能材料,2015,23(10):1020-1023.
LIU Jian-chao, JIANG Yu-tong, ZHANG Tong-lai, et al. Evaluation of the Thermal Stability of LA and CMC-LA by Dynamic Vacuum Stability Test Method[J]. Chinese Journal of Energetic Materials,2015,23(10):1020-1023.

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History
  • Received:April 13,2015
  • Revised:May 07,2015
  • Adopted:May 11,2015
  • Online: September 01,2015
  • Published: September 10,2015