ENHANCED ENERGETIC PERFORMANCE OF POLYVINYLIDENE FLUORIDE-COATED ZIRCONIUM PARTICLE

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초록

In this study, energetic behaviors of polyvinylidene fluoride (PVDF)-coated zirconium (Zr) powders were investigated using thennogravimetric analyzer-differential scanning calorimetry (TGA-DSC). PVDF-coated Zr powder had 1.5 times higher heat flow than ZrO2-passivated Zr powder. PVDF-coated Zr powder had a Zr-F compound formed on its surface by its strong chemical bond. This compound acted as an oxidation-protecting layer, providing an efficient combustion path to inner pure Zr particle while thermal oxidation was progressing at the same time. PVDF coating layers also made thermal reaction start at a lower temperature than ZrO2-passivated Zr powder. It was obtained that the surface PVDF coating layer evaporated at approximately 673 K, but the surface oxide layer fully reacted at approximately 923 K by DSC analysis. Hence, Zr powders showed enhanced energetic properties by the PVDF-coated process.

키워드

PVDF; Zirconium; Coating; Energetic Behaviors; ALUMINUM; NANOPARTICLES; STABILITY; COATINGS
제목
ENHANCED ENERGETIC PERFORMANCE OF POLYVINYLIDENE FLUORIDE-COATED ZIRCONIUM PARTICLE
저자
Heo, Won Young; Bae, Sung Hwa; Son, Injoon
DOI
10.24425/amm.2021.136369
발행일
2021
유형
Article
저널명
Archives of Metallurgy and Materials
권
66
호
3
페이지
725 ~ 728