Inlet assembly
US-2024384869-A1 · Nov 21, 2024 · US
US11428408B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11428408-B2 |
| Application number | US-201716635697-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 18, 2017 |
| Priority date | Oct 18, 2017 |
| Publication date | Aug 30, 2022 |
| Grant date | Aug 30, 2022 |
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A premix burner for combusting premixed gas containing fuel and air mixed in advance includes a plurality of combustion nozzles including a first nozzle having an ignition rod disposed therein and a second nozzle other than the first nozzle, a first premixed gas passage for supplying the premixed gas to the first nozzle, and a second premixed gas passage for supplying the premixed gas to the second nozzle. The first premixed gas passage and the second premixed gas passage are fluidically isolated from each other.
Opening claim text (preview).
The invention claimed is: 1. A premix burner for combusting a premixed gas containing a fuel and air mixed in advance, comprising: a plurality of combustion nozzles including a first nozzle having an ignition rod disposed therein and a second nozzle other than the first nozzle; a first premixed gas passage for supplying a premixed gas to the first nozzle; and a second premixed gas passage for supplying a premixed gas to the second nozzle, wherein the first premixed gas passage and the second premixed gas passage are fluidically isolated, wherein the premix burner further comprises: a pipe in which the ignition rod is inserted and which forms at least a part of the first premixed gas passage inside thereof; a back plate through which the pipe penetrates: a front plate disposed between the back plate and the plurality of combustion nozzles; and a second cylindrical member extending between the front plate and the back plate, wherein the second premixed gas passage includes a second chamber formed by at least the front plate, the back plate, and an inner wall surface of the second cylindrical member, and wherein the pipe extends through the second chamber to the front plate, wherein the premix burner further comprises: a first cylindrical member disposed opposite to the second cylindrical member across the back plate; and a first chamber which is a part of the first premixed gas passage, the first chamber being formed by at least the first cylindrical member, wherein at least a part of the pipe is inserted in the first cylindrical member. 2. The premix burner according to claim 1 , wherein the first nozzle is a nozzle for producing a pilot flame by combusting the premixed gas supplied to the first nozzle. 3. The premix burner according to claim 1 , further comprising: a seal member disposed so as to reduce leakage of the premixed gas between the first chamber and the second chamber via a hole in the back plate through which the pipe penetrates. 4. The premix burner according to claim 1 , further comprising: a seal member disposed so as to close a gap between an outer peripheral surface of the pipe and an inner peripheral surface of the first cylindrical member. 5. The premix burner according to claim 1 , wherein the pipe includes an end portion having a male thread, and wherein the pipe is fastened to the front plate by screwing the end portion into a thread hole formed in the front plate. 6. A premix burner for combusting a premixed gas containing a fuel and air mixed in advance, comprising: a plurality of combustion nozzles including a first nozzle having an ignition rod disposed therein and a second nozzle other than the first nozzle; a first premixed gas passage for supplying a premixed gas to the first nozzle; and a second premixed gas passage for supplying a premixed gas to the second nozzle, wherein the first premixed gas passage and the second premixed gas passage are fluidically isolated, wherein the premix burner further comprising a combustion tube disposed so as to surround the plurality of combustion nozzles and configured to impinge a flame produced by combustion of the premixed gas from outlets of the plurality of combustion nozzles, wherein the combustion tube includes a tapered portion having a diameter which gradually decreases from the outlets of the combustion nozzles toward an opening portion of the combustion tube in an axial direction of the combustion tube, and wherein the ignition rod is positioned so that at least a part of the ignition rod overlaps the tapered portion in a radial direction of the combustion tube. 7. The premix burner according to claim 1 , wherein the first nozzle is configured to be supplied with a constant flow rate of the premixed gas. 8. A heat treatment facility for metal plate, comprising: the premix burner according to claim 1 ; a first premixed gas supply line connected to the first premixed gas passage; and a second premixed gas supply line connected to the second premixed gas passage; wherein a flow rate of a premixed gas in the first premixed gas supply line and a flow rate of a premixed gas in the second premixed gas supply line are separately adjustable. 9. A heat treatment facility for metal plate, comprising: a premix burner for combusting a premixed gas containing a fuel and air mixed in advance, the premix burner comprising: a plurality of combustion nozzles including a first nozzle having an ignition rod disposed therein and a second nozzle other than the first nozzle; a first premixed gas passage for supplying a premixed gas to the first nozzle; and a second premixed gas passage for supplying a premixed gas to the second nozzle, wherein the first premixed gas passage and the second premixed gas passage are fluidically isolated, wherein the heat treatment facility further comprises: a first premixed gas supply line connected to the first premixed gas passage; and a second premixed gas supply line connected to the second premixed gas passage; wherein a flow rate of a premixed gas in the first premixed gas supply line and a flow rate of a premixed gas in the second premixed gas supply line are separately adjustable, wherein the heat treatment facility further comprises: a first mixer for producing the premixed gas to be supplied to the first nozzle via the first premixed gas supply line; a second mixer for producing the premixed gas to be supplied to the second nozzle via the second premixed gas supply line; a first fuel supply line, connected to the first mixer, for supplying a fuel to the first mixer; a first air supply line, connected to the first mixer, for supplying air to the first mixer; a second fuel supply line, connected to the second mixer, for supplying a fuel to the second mixer; a second air supply line, connected to the second mixer, for supplying air to the second mixer; at least one first valve, provided in at least one of the first fuel supply line or the first air supply line, for adjusting a fuel/air mixture ratio of the premixed gas produced at the first mixer; and at least one second valve, provided in at least one of the second fuel supply line or the second air supply line, for adjusting a fuel/air mixture ratio of the premixed gas produced at the second mixer. 10. The heat treatment facility for metal plate according to claim 8 , further comprising: a first mixer for producing the premixed gas to be supplied to the first nozzle; a first fuel supply line, connected to the first mixer, for supplying a fuel to the first mixer; a first air supply line, connected to the first mixer, for supplying air to the first mixer; and a valve configured to adjust a flow rate of the first fuel supply line or the first air supply line so that a ratio of the flow rate of the first fuel supply line and the flow rate of the first air supply line is constant. 11. The heat treatment facility for metal plate according to claim 8 , further comprising: a second mixer for producing the premixed gas to be supplied to the second nozzle; a second fuel supply line, connected to the second mixer, for supplying a fuel to the second mixer; a second air supply line, connected to the second mixer, for supplying air to the second mixer; a second fuel valve provided in the second fuel supply line; a second air valve provided in the second air supply line; and a controller configured to control an opening degree of the second fuel valve and an opening degree of the second air valve so that a flow rate of the second fuel supply line and a flow rate of the second air supply line change, respectively. 12. A heat treatment facility for metal plate, c
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