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A review on BCC-structured high-entropy alloys for hydrogen storage
Recently, high entropy alloys (HEAs) with body-centred cubic (BCC) single phase structures
have attracted wide attention in many fields including hydrogen storage, due to their unique …
have attracted wide attention in many fields including hydrogen storage, due to their unique …
Flame propagation characteristics and surface functional groups changes of corn starch dust during the combustion process
C Zhang, P **, C Chen, X Zhang, Z Zhou, S Geng… - Powder Technology, 2023 - Elsevier
Corn starch (CS) is one of the most common powders in industrial production and daily life,
but its inherent risks of ignition and explosion cannot be disregarded. In this study, the flame …
but its inherent risks of ignition and explosion cannot be disregarded. In this study, the flame …
Insight into energy release characteristics of TiH2 dust explosion through ignition experiments and molecular dynamic simulations
T Zhang, J Zhang, S Geng, X Zhang, R Liu, G Fu… - Process Safety and …, 2024 - Elsevier
TiH 2 is an efficient hydrogen storage material with high energy density and relatively stable
chemical quality, which is commonly used in metal sponge production, hydrogen storage …
chemical quality, which is commonly used in metal sponge production, hydrogen storage …
Under-expansion jet flame propagation characteristics of premixed H2/air in explosion venting
W Cao, Z Zhou, W Li, Y Zhao, Z Yang, Y Zhang… - International Journal of …, 2021 - Elsevier
In premixed H 2/air explosion venting, an under-expansion jet may be caused by the
pressure difference between the inside and outside of the explosion vent. Based upon the …
pressure difference between the inside and outside of the explosion vent. Based upon the …
Energy output characteristics and safety design of Al-AlH3 composite dust for energetic material additive
W Cao, X Zhang, Y Jia, Z Zhou, W Li, Q **ao, S Xu… - Combustion and …, 2023 - Elsevier
Aluminum (Al) is the most widely used metal additive in energetic materials, but its
application is limited due to its oxidizable nature. However, aluminum hydride (AlH 3) could …
application is limited due to its oxidizable nature. However, aluminum hydride (AlH 3) could …
Experimental and numerical study of the influence of initial temperature on explosion limits and explosion process of syngas-air mixtures
F Jiao, H Zhang, W Li, Y Zhao, J Guo, X Zhang… - International Journal of …, 2022 - Elsevier
To study the effect of initial temperature of 30, 60, 90, and 120° C on the explosion limits and
the explosion process of the syngas-air mixtures, the explosion limits were tested by the …
the explosion process of the syngas-air mixtures, the explosion limits were tested by the …
Effect of dimensionless vent ratio on the flame-shock wave evolution dynamics of blended LPG/DME gas explosion venting
G Zhou, Y Kong, Q Zhang, R Li, X Qian, H Zhao, J Ding… - Fuel, 2024 - Elsevier
To reveal the flow field-shock wave-flame coupling evolution law of LPG/DME blended gas
explosion venting under different dimensionless vent ratio (KV), the numerical model for …
explosion venting under different dimensionless vent ratio (KV), the numerical model for …
Experimental research on the synergy effect of resistance/inhibition on the syngas explosion
X Cao, J Zhou, X Zhou, Z Wang, Z Wang, Y Sheng - Fuel, 2024 - Elsevier
This experimental research focused on the combined effect of wire mesh and spray mist on
the syngas explosion. The difference between flame propagation and pressure rise under …
the syngas explosion. The difference between flame propagation and pressure rise under …
The flow field behaviours of under-expansion jet flame in premixed hydrogen/air explosion venting
The short chemical reaction time and high heat release of hydrogen fuel make a fine
propulsion performance. Hydrogen is recognized as an excellent new resource. However …
propulsion performance. Hydrogen is recognized as an excellent new resource. However …
Thermal decomposition, flame propagation, and combustion reactions behaviours of stearic acid by experiments and molecular dynamic simulation
W Li, X Zhang, R Liu, S Xu, S Xu, Y Lan, Y Fu… - Chemical Engineering …, 2023 - Elsevier
To better look into the thermal decomposition and combustion progress of stearic acid (C 18
H 36 O 2), the experimental tests and Reaction Force Field (ReaxFF) molecular dynamics …
H 36 O 2), the experimental tests and Reaction Force Field (ReaxFF) molecular dynamics …