Metal heat treating systems that control the ratio of hydrogen to water vapor in metal heat treating atmospheres
A system for heat treating a metal product has an annealing zone having a first preselected atmosphere condition, a cooling zone having a second preselected atmosphere condition different than the first preselected atmosphere condition, and a blueing zone having a third preselected atmosphere condition different than the first and second preselected atmosphere conditions. A graphical user interface allows an operator select one of the zones for displaying processing information pertaining to the selected zone. The processing information includes a computed ratio of gaseous hydrogen H 2 (g) to water vapor H 2 O (g) for the respective preselected atmosphere condition. The graphical user interface allows an operator to control the respective preselected atmosphere based, at least in part, upon the computed ratio.
1. A system for heat treating a metal product comprising
an annealing zone having a first preselected atmosphere condition,
a cooling zone having a second preselected atmosphere condition different than the first preselected atmosphere condition,
a blueing zone having a third preselected atmosphere condition different than the first and second preselected atmosphere conditions, and
a graphical user interface including a control for selecting one of the annealing zone, the cooling zone, and blueing zone, a display for showing processing information pertaining to the selected one of the zones, the processing information including a computed ratio of gaseous hydrogen H 2 (g) to water vapor H 2 O (g) for the respective preselected atmosphere condition computed as a function of a first electrical input provided by an oxygen sensor located in contact with the respective preselected gas atmosphere condition and a second electrical input provided by a temperature sensor located in contact with the respective preselected gas atmosphere condition, and a control for controlling the respective preselected atmosphere condition based, at least in part, upon the computed ratio.
2. A system according to claim 1
wherein the first preselected atmosphere condition comprises a reducing and decarburizing atmosphere.
3. A system according to claim 2
wherein the second preselected atmosphere condition comprises a preselected temperature not greater than a temperature at which wustite (FeO) forms.
4. A system according to claim 2
wherein the third preselected atmosphere condition comprises an oxidizing atmosphere and a preselected temperature not greater than a temperature at which wustite (FeO) forms.
5. A system according to claim 1
wherein the first preselected atmosphere condition comprises a mixture of nitrogen and hydrogen, and
wherein the control controls introduction of steam into the first preselected atmosphere condition.
6. A system according to claim 1
wherein the first preselected atmosphere condition comprises an exothermic-based atmosphere, and
wherein the control controls an air-to-fuel ratio of the first preselected atmosphere condition.
7. A system according to claim 1
wherein the annealing zone and cooling zone comprise spaced apart end ends of a common chamber.
8. A system according to claim 1
wherein the annealing zone and cooling zone comprise separate chambers.
9. A system according to claim 1
wherein the oxygen sensor comprises an in situ oxygen sensor.
10. A system according to claim 1
wherein the temperature sensor comprises an in situ temperature sensor.