In this article, we report an investigation of laser-initiated ignition of pure iron rods, using optical pyrometry, video observations, and analysis of metallographic cross section of quenched burning liquid on copper plates. When ignition occurs, caused by the melting of metal, the combustion takes place in the liquid. Two distinct superposed phases (L1 and L2) are identified in the liquid, according to the known phase diagram of the iron oxide system. Our observations show that the L1 and L2 phases can be either distinct and immiscible or mixing together. The temperature of the transition at which the mixing occurs is around 2350 K. Two mechanisms are proposed to explain the mixing occurring at high temperature: the spontaneous emulsifica...
Macroscopic kinetic analysis of the burning of 0.1 and 0.2-cm-diameter iron rods in pure oxygen at p...
Macroscopic kinetic analysis of the burning of 0.1 and 0.2-cm-diameter iron rods in pure oxygen at p...
The combustion of 0.32-cm-diameter pure iron rods at 6.9 MPa oxygen pressure was investigated. Durin...
In this article, we report an investigation of laser-initiated ignition of pure iron rods, using opt...
International audienceIn this article, we report an investigation of laser-initiated ignition of pur...
International audienceIn this article, we report an investigation of laser-initiated ignition of pur...
The ignition of pure iron, mild steel S355J, and stainless steel 316L has been investigated. The who...
The ignition of pure iron, mild steel S355J, and stainless steel 316L has been investigated. The who...
The effects of oxygen flow speed and pressure on the iron and mild steel combustion are investigated...
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...
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...
The combustion of 0.32-cm-diameter pure iron rods at 6.9 MPa oxygen pressure was investigated. Durin...
The combustion of 0.32-cm-diameter pure iron rods at 6.9 MPa oxygen pressure was investigated. Durin...
Macroscopic kinetic analysis of the burning of 0.1 and 0.2-cm-diameter iron rods in pure oxygen at p...
Macroscopic kinetic analysis of the burning of 0.1 and 0.2-cm-diameter iron rods in pure oxygen at p...
The combustion of 0.32-cm-diameter pure iron rods at 6.9 MPa oxygen pressure was investigated. Durin...
In this article, we report an investigation of laser-initiated ignition of pure iron rods, using opt...
International audienceIn this article, we report an investigation of laser-initiated ignition of pur...
International audienceIn this article, we report an investigation of laser-initiated ignition of pur...
The ignition of pure iron, mild steel S355J, and stainless steel 316L has been investigated. The who...
The ignition of pure iron, mild steel S355J, and stainless steel 316L has been investigated. The who...
The effects of oxygen flow speed and pressure on the iron and mild steel combustion are investigated...
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...
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...
The combustion of 0.32-cm-diameter pure iron rods at 6.9 MPa oxygen pressure was investigated. Durin...
The combustion of 0.32-cm-diameter pure iron rods at 6.9 MPa oxygen pressure was investigated. Durin...
Macroscopic kinetic analysis of the burning of 0.1 and 0.2-cm-diameter iron rods in pure oxygen at p...
Macroscopic kinetic analysis of the burning of 0.1 and 0.2-cm-diameter iron rods in pure oxygen at p...
The combustion of 0.32-cm-diameter pure iron rods at 6.9 MPa oxygen pressure was investigated. Durin...