Micrometric spherical particles of iron in two narrow size ranges of (38–45) µm and (45–53) µm were injected in a bench scale, transparent drop-tube furnace (DTF), electrically heated to 1400 K. Upon experiencing high heating rates (104–105 K/s) the iron particles ignited and burned. Their combustion behavior was monitored pyrometrically and cinematographically at three different oxygen mole fractions (21%, 50% and 100%) in nitrogen. The results revealed that iron particles ignited readily and exhibited a bright stage of combustion followed by a dimmer stage. There was evidence of formation of envelope micro-flames around iron particles (nanometric particle mantles) during the bright stage of combustion. As the burning iron particles fell b...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
To further our understanding of iron particle combustion, especially in the liquid state, in situ op...
Following the ignition and solid-to-liquid phase transition of a fine (on the order of 10–100 µm in ...
Micrometric spherical particles of iron in two narrow size ranges of (38–45) µm and (45–53) µm were ...
Micrometric spherical particles of iron in two narrow size ranges of (38–45) µm and (45–53) µm were ...
Micrometric spherical particles of iron in two narrow size ranges of (38–45) µm and (45–53) µm were ...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
Temporally, spatially, and thermally resolved measurements of in situ nanoparticle cloud formation d...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
Temporally, spatially, and thermally resolved measurements of in situ nanoparticle cloud formation d...
We present a numerical study of the combustion of single iron particles in an O 2-N 2 atmosphere. By...
We present a numerical study of the combustion of single iron particles in an O 2-N 2 atmosphere. By...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
To further our understanding of iron particle combustion, especially in the liquid state, in situ op...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
To further our understanding of iron particle combustion, especially in the liquid state, in situ op...
Following the ignition and solid-to-liquid phase transition of a fine (on the order of 10–100 µm in ...
Micrometric spherical particles of iron in two narrow size ranges of (38–45) µm and (45–53) µm were ...
Micrometric spherical particles of iron in two narrow size ranges of (38–45) µm and (45–53) µm were ...
Micrometric spherical particles of iron in two narrow size ranges of (38–45) µm and (45–53) µm were ...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
Temporally, spatially, and thermally resolved measurements of in situ nanoparticle cloud formation d...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
Temporally, spatially, and thermally resolved measurements of in situ nanoparticle cloud formation d...
We present a numerical study of the combustion of single iron particles in an O 2-N 2 atmosphere. By...
We present a numerical study of the combustion of single iron particles in an O 2-N 2 atmosphere. By...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
To further our understanding of iron particle combustion, especially in the liquid state, in situ op...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
The combustion behavior of single laser-ignited iron particles is investigated. Transient particle r...
To further our understanding of iron particle combustion, especially in the liquid state, in situ op...
Following the ignition and solid-to-liquid phase transition of a fine (on the order of 10–100 µm in ...