硅基纳米含能亚稳态复合物Si@PVDF/CL-20的制备及热分解特性

Translated title of the contribution: Preparation and Thermal Decomposition Characteristics of Energetic Metastable Intermolecular Composite Si@PVDF/CL-20

Bei Lin Zuo, Qiu Jin Liang, Jia Ling Zhang, Rui Qing Zhao, Pei Jin Liu, Qi Long Yan

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

In order to improve the energy efficiency of composite nano-metal materials, the energetic intermolecular complexes Si@PVDF/CL-20 with different silicon content (20%, 30% and 40%)were prepared by electrostatic spray method. The heat of combustion of PVDF/CL-20 composites with different ratios was obtained by bomb calorimeter. The morphology of PVDF/CL-20 composite was clarified by using SEM. The effect of Si content on the morphology of Si@PVDF/CL-20 composite particles was also analyzed. The thermal behavior of energetic compounds with different silicon content was studied by DSC-TG, and the kinetic paramters of thermal decomposition were calculated. The thermal analyses indicate that when the PVDF/CL-20 mass ratio is 1: 6, the heat of combustion reaches a maximum value, which can be used as the optimal ratio incoating of nano-Si powder. The SEM results show that when the silicon content is 30%, the composite particles (Si-30%@PVDF/CL-20) exhibite the best sphericity. The DSC results show that when the silicon content is 20%, a runaway chemical reaction was likely occurred. The effect of Si powder on the decomposition of PVDF/CL-20 composite plays less significant role with the increase of content. The apparent activation energies of Si@PVDF/CL-20 composites calculated by Friedman method are 470.6, 182.1, 91.7kJ/mol, respectively. The complex decomposition process of Si-20%@PVDF/CL-20 cannot be described by a single kinetic model, whereas those of Si-30%@PVDF/CL-20 and Si-40%@PVDF/CL-20 can be well described by a nucleation and growth model.

Translated title of the contributionPreparation and Thermal Decomposition Characteristics of Energetic Metastable Intermolecular Composite Si@PVDF/CL-20
Original languageChinese (Traditional)
Pages (from-to)548-556
Number of pages9
JournalHuozhayao Xuebao/Chinese Journal of Explosives and Propellants
Volume42
Issue number6
DOIs
StatePublished - 1 Dec 2019

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