TY - JOUR
T1 - Effect of Metal Oxides on the Combustion Behavior and Reaction Dynamics of Mg-Based Thermites
AU - Cai, Yue
AU - He, Chuan
AU - Liu, Xueli
AU - Yang, Guimei
AU - Zhang, Yachuan
AU - Liu, Jinxu
N1 - Publisher Copyright:
© 2026 Taylor & Francis Group, LLC.
PY - 2026
Y1 - 2026
N2 - Magnesium (Mg) is a promising metallic fuel in thermite formulations. However, there is a notable scarcity of systematic comparisons between different metal oxides (MxOy). This study investigates the influence of different metal oxides on the combustion performance of Mg/MxOy thermites. Five metal oxides (Bi2O3, MoO3, CuO, Fe2O3, and MnO2) were evaluated under rapid heating conditions for their impact on key combustion parameters, including heat of reaction, burning rate, flame temperature, relative intensity, ignition delay time, and pressure characteristics. The results indicate significant differences in these parameters depending on the metal oxide used, highlighting their crucial role in influencing combustion characteristics. Additionally, the thermal behavior and the reaction mechanism were investigated. This study provides insights into the role of metal oxides in determining the combustion characteristics of Mg/MxOy thermites, providing a foundation for the development of advanced fuels with tailored properties.
AB - Magnesium (Mg) is a promising metallic fuel in thermite formulations. However, there is a notable scarcity of systematic comparisons between different metal oxides (MxOy). This study investigates the influence of different metal oxides on the combustion performance of Mg/MxOy thermites. Five metal oxides (Bi2O3, MoO3, CuO, Fe2O3, and MnO2) were evaluated under rapid heating conditions for their impact on key combustion parameters, including heat of reaction, burning rate, flame temperature, relative intensity, ignition delay time, and pressure characteristics. The results indicate significant differences in these parameters depending on the metal oxide used, highlighting their crucial role in influencing combustion characteristics. Additionally, the thermal behavior and the reaction mechanism were investigated. This study provides insights into the role of metal oxides in determining the combustion characteristics of Mg/MxOy thermites, providing a foundation for the development of advanced fuels with tailored properties.
KW - combustion performance
KW - Magnesium
KW - reactivity
KW - thermal behavior
KW - thermites
UR - https://www.scopus.com/pages/publications/105047437958
U2 - 10.1080/00102202.2026.2717375
DO - 10.1080/00102202.2026.2717375
M3 - Article
AN - SCOPUS:105047437958
SN - 0010-2202
JO - Combustion Science and Technology
JF - Combustion Science and Technology
ER -