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The effect of microencapsulation with nitrocellulose on thermal properties of sodium azide particles

Journal

PROGRESS IN ORGANIC COATINGS
Volume 65, Issue 2, Pages 269-274

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.porgcoat.2008.12.004

Keywords

Sodium azide particles; Gas generator; Coating; Solvent/non-solvent; Thermal stability; Microencapsulation

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Based on the coacervation principle a solvent/non-solvent method has been used for microencapsulation of sodium azide (NaN3) with fibrous nitrocellulose (NC). Scanning electron microscopy (SEM) was employed to examine the coating morphology. The thermal behavior of solid samples has been studied by means of thermogravimetry (TG) and differential scanning calorimetry (DSC). The results of TG-DTA analysis revealed that the main thermal degradation for the pure NC and NaN3 occurs in the temperature ranges of 192-220 and 415-420 degrees C, respectively. The effects of some parameters, such as NC to NaN3 weight ratio and volume and addition time of non-solvent, on coating quality and thermal properties have been investigated by SEM and thermal methods. The results of these experiments showed that the decomposition temperature of most stabilized coated sodium azide is about 50 C higher than that of the pure sample. The DSC experiments were conducted to study the influence of the heating rate (5, 10, 15 and 20 degrees C/min) on the thermal decomposition processes of the pure NC, coated and pure NaN3 samples. The results revealed that, as the heating rate was increased, decomposition temperature of the Compounds was increased. Also, the kinetic parameters Such as activation energy and frequency factor Of the decomposition processes Were obtained from the DSC data by non-isothermal methods proposed by ASTM E696 and Ozawa. Our finding showed that coated NaN3 has lower decomposition rate with respect to the pure one. (C) 2009 Elsevier B.V. All rights reserved.

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