CN204594212U - Energy-conservation crucible stove - Google Patents
Energy-conservation crucible stove Download PDFInfo
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- CN204594212U CN204594212U CN201520052323.5U CN201520052323U CN204594212U CN 204594212 U CN204594212 U CN 204594212U CN 201520052323 U CN201520052323 U CN 201520052323U CN 204594212 U CN204594212 U CN 204594212U
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- flue
- conservation
- energy
- crucible
- intake stack
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Abstract
The energy-conservation crucible stove that the utility model relates to, comprise combustion chamber, Feng Tang room, heating clamber and smoke exhaust pipe, combustion chamber is provided with into fuel port, air inlet and bocca; Air inlet is in communication with the outside by intake stack; Heating clamber one end is communicated with combustion chamber flame-throwing mouth, the heating clamber other end is communicated with flue, flue is communicated with smoke exhaust pipe, its designing points is: intake stack is arranged in flue, sinuous inlet channel is had in intake stack, inlet channel one end and the cold wind inlet communication be positioned at outside flue, the inlet channel other end is communicated with combustion chamber air inlet through warm-air pipe.The purpose of this utility model is providing a kind of fuel combustion thorough, the energy-conservation crucible stove that combustion heat supplying efficiency is high.
Description
Technical field
The utility model relates to crucible stove, particularly a kind of energy-conservation crucible stove.
Background technology
Boiler is widely used in people's daily life, produces heat for people's heating and baking, drying article by boiler combustion.The combustion chamber of existing boiler is provided with into fuel port, cold wind import and bocca; Combustion chamber is for receiving fuel combustion; Cold wind import is in communication with the outside by intake stack, and extraneous cold wind, through the air blast of Feng Tang room, is sent in combustion chamber through intake stack, cold wind import by hair-dryer; The hot-air that combustion chamber produces and cigarette enter in heating clamber through bocca, and heating clamber one end is communicated with combustion chamber flame-throwing mouth, and the heating clamber other end is discharged through smoke exhaust pipe; The heat assembled in heating clamber is used for crucible body in heating kettle body of heater or directly toast being placed on the paper of body of heater upper surface, cloth, metal or food etc., dries, provides the mode such as drying room or baking oven to heat.
Because combustion chamber cold wind import is directly in communication with the outside by pipeline, outside air enters combustion chamber and becomes high temperature air intermediate demand and absorb a part of heat, is also unfavorable for fuel in combustion chamber Thorough combustion, reduces combustion chamber heating efficiency.The flue gas of discharging through smoke exhaust pipe then takes away a part of heat energy, and this part heat wave is discharged in outside air in vain, also reduces combustion chamber heating efficiency equally.Therefore, be necessary to improve existing crucible furnace structure, fuel combustion obtained more thorough, improve combustion heat supplying efficiency.
Utility model content
The purpose of this utility model is the deficiency overcome existing for prior art, provides a kind of fuel combustion thorough, the energy-conservation crucible stove that combustion heat supplying efficiency is high.
In order to solve the problems of the technologies described above, the utility model is achieved through the following technical solutions:
Energy-conservation crucible stove, comprises combustion chamber, Feng Tang room, heating clamber and smoke exhaust pipe, and combustion chamber is provided with into fuel port, air inlet and bocca; Air inlet is in communication with the outside by intake stack; Heating clamber one end is communicated with combustion chamber flame-throwing mouth, the heating clamber other end is communicated with flue, flue is communicated with smoke exhaust pipe, it is characterized in that: intake stack is arranged in flue, bending inlet channel is had in intake stack, inlet channel one end and the cold wind inlet communication be positioned at outside flue, the inlet channel other end is communicated with combustion chamber air inlet through warm-air pipe.
Energy-conservation crucible stove described above, it is characterized in that: in described flue, be arranged at intervals with multiple demarcation strip, demarcation strip is divided into upper and lower two groups, setting handed over by demarcation strip on upper and lower two component dividing plates, make between demarcation strip, to form sinuous flue path, the above-mentioned flue path of described intake stack wind through.
Energy-conservation crucible stove described above, is characterized in that: the snakelike setting of described intake stack, makes to form the inlet channel wriggled in intake stack.
Energy-conservation crucible stove described above, is characterized in that: described flue circular arc is arranged, and makes to form bending flue path in flue, and described intake stack bends through above-mentioned flue path.
Energy-conservation crucible stove described above, it is characterized in that: described intake stack has multiple, multiple intake stack be arranged in parallel.
Energy-conservation crucible stove described above, it is characterized in that: energy-conservation crucible stove comprises the crucible of a surplus tapping body, crucible is positioned at described heating clamber, the rotating tubular body risen along crucible outer wall peripheral helical is also provided with in heating clamber, rotating tubular body lower end is docked with described bocca, be distributed with fiery grid along rotating tubular body, rotating tubular body is distributed with fire jetting hole.
Energy-conservation crucible stove described above, is characterized in that: energy-conservation crucible furnace bottom is provided with flow liquid detector, is provided with liquid drain tube below crucible, and flow liquid detector is positioned at liquid drain tube.
Energy-conservation crucible stove described above, is characterized in that: energy-conservation crucible stove outer covering upper surface is provided with bake station, and described heating clamber and smoke exhaust pipe lay respectively at described flue two ends, and it is bake station heating that flue is arranged on the downside of bake station.
Compared with prior art, the beneficial effects of the utility model have following some:
1, cold wind enters combustion chamber from intake stack, Feng Tang room, heating clamber one end is communicated with combustion chamber flame-throwing mouth, the heating clamber other end is communicated with flue, intake stack is arranged in flue, intake stack one end and the cold wind inlet communication be positioned at outside flue, the intake stack other end is communicated with combustion chamber air inlet through warm-air pipe, the heat that such structural design allows intake stack heating clamber enter flue heats intake stack, and the air quantity making Feng Tang room have very high-temperature enters combustion chambers burn.
2, energy-conservation crucible stove outer covering upper surface is provided with bake station, heating clamber and smoke exhaust pipe are connected with flue two ends respectively, it is bake station heating that flue is arranged on the downside of bake station, and the hot cigarette that the design's smoke exhaust pipe is discharged can carry out again heating up to the object be placed in bake station or fooling dry.
Accompanying drawing explanation
Fig. 1 is that horizontal the cuing open of energy-conservation crucible stove embodiment one shows structural representation.
Fig. 2 is that longitudinal the cuing open of energy-conservation crucible stove embodiment one shows structural representation.
Fig. 3 is rotating tubular body helical structure schematic diagram.
Fig. 4 is energy-conservation crucible stove embodiment two structural representation.
Fig. 5 is intake stack embodiment one structural representation.
Fig. 6 is intake stack embodiment two structural representation.
Fig. 7 is intake stack embodiment three structural representation.
Fig. 8 is intake stack embodiment four structural representation.
1, clean-up port; 2, refractory material; 3, heating clamber; 4, shell; 5, flue; 6, crucible; 7, airduct assessment hook; 8, flue sealing; 9, rotating tubular body; 10, intake stack; 11, liquid drain tube; 12, flow liquid detector; 13, bottom heat-insulation layer; 14, metal base plate; 15 for fuel part; 17, warm-air pipe; 19, exhaust opening; 21, clean-up port, combustion chamber; 22, the smoke evacuation mouth of pipe; 23, bocca; 24, smoke exhaust pipe; 25, smoke exhaust pipe containment vessel; 26, boiler body upper cover; 27, heat insulating material for external; 28, replaceable combustion chamber upper cover; 29, interchangeable combustion chamber; 30, clean-up port door; 31, Feng Tang room; 32, Feng Tang clean-up port; 33, burn grate; 34, main clean-up port passage; 35, body of heater bracing piece; 100, burning aisle; 101, bake station; 102, hot blast air inlet pipe; 103, cold wind import.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, the utility model is described in further detail, but is not the restriction to the utility model structure.
As shown in Figure 1, Figure 2, shown in Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7 and Fig. 8, energy-conservation crucible stove, comprise combustion chamber, Feng Tang room, heating clamber and smoke exhaust pipe, combustion chamber is provided with into fuel port, air inlet and bocca, and air inlet is in communication with the outside by intake stack; Extraneous cold wind, through the air blast of Feng Tang room, is sent in combustion chamber through cold wind import, intake stack, air inlet by hair-dryer; Heating clamber one end is communicated with combustion chamber flame-throwing mouth, the heating clamber other end is communicated with flue, flue is communicated with smoke exhaust pipe, intake stack is arranged in flue, bending inlet channel is had in intake stack, inlet channel one end and the cold wind inlet communication be positioned at outside flue, the inlet channel other end is communicated with combustion chamber air inlet through warm-air pipe.
Intake stack implements structure one (see figure 5): be arranged at intervals with multiple demarcation strip 51 in flue 5, demarcation strip 51 is divided into upper and lower two groups, setting handed over by demarcation strip on upper and lower two component dividing plates 51, make between demarcation strip, to form sinuous flue path, the above-mentioned flue path of intake stack 10 wind through.
Intake stack implements structure two (see figure 6): the snakelike setting of intake stack 10, makes to form the inlet channel wriggled in intake stack 10.
Intake stack implements structure three (see figure 7): multiple admission line 10 is arranged perpendicular to flue 5, is communicated with the inlet channel that formation one is wriggled between each admission line 10 in turn.
Intake stack implements structure four (see figure 8): flue 5 circular arc is arranged, and makes to form bending flue path in flue, and intake stack 10 bends through above-mentioned flue path, and intake stack 10 bends to circular arc.
Energy-conservation crucible stove embodiment one (see Fig. 1, Fig. 2 and Fig. 3):
Energy-conservation crucible stove comprises clean-up port 1, refractory material 2, heating clamber 3, shell 4, flue 5, crucible 6, airduct assessment hook 7, flue sealing 8, rotating tubular body 9, intake stack 10, liquid drain tube 11, flow liquid detector 12, bottom heat-insulation layer 13, metal base plate 14, for fuel part 15, warm-air pipe 17, exhaust opening 19, clean-up port, combustion chamber 21, the smoke evacuation mouth of pipe 22, bocca 23, smoke exhaust pipe 24, smoke exhaust pipe containment vessel 25, boiler body upper cover 26, heat insulating material for external 27, replaceable combustion chamber upper cover 28, interchangeable combustion chamber 29, clean-up port door 30, Feng Tang room 31, Feng Tang clean-up port 32, grate 33, main clean-up port passage 34, body of heater bracing piece 35, crucible 6 is positioned at heating clamber 3, and be also provided with the rotating tubular body 9 risen along crucible 6 outer wall peripheral helical in heating clamber 3, rotating tubular body lower end is docked with bocca 23, is distributed with fiery grid along rotating tubular body 9, and rotating tubular body 9 is distributed with fire jetting hole.Consider damage in crucible use procedure, for avoiding causing time and money to lose, energy-conservation crucible furnace bottom is provided with flow liquid detector 12, is provided with liquid drain tube 11 below crucible 6, and flow liquid detector 12 is positioned at liquid drain tube 11.Flow liquid detector 12 is just reported to the police or is cut off under having visited liquid stream and heats, and opens liquid drain tube 11 at once and liquid is discharged.
Power economized boiler is in combustion process: supply fuel to combustion chamber 29 for fuel part 15, hair-dryer to jet out flames heating clamber 3 from bocca 23 to after the burning of Feng Tang room 31 air feed, rotating tubular body 9 and along rotating tubular body 9 distribute fiery grid make flame produce rotate, make fire burning more violent, crucible 6 be heated evenly, make crucible 6 longer service life.Fiery cigarette after rotary combustion is discharged to flue 5 by exhaust opening 19, intake stack 10 of heating in flue 5, makes in Feng Tang room, other end 31, to become high temperature from the distinguished and admirable of a natural temperature in intake stack 10, allows the fuel combustion on grate 33 go out higher temperature.Exhaust opening 19 more cuts the end through flue 5 after-combustion, then discharges from the smoke evacuation mouth of pipe 22 of smoke exhaust pipe 24, has accomplished energy-conserving and environment-protective completely.
Energy-conservation crucible stove embodiment two (see figure 4): energy-conservation crucible stove outer covering upper surface is provided with bake station 101, heating clamber is communicated with formation one and burns aisle 100 with flue, smoke exhaust pipe is positioned at flue end, and it is bake station heating that flue is arranged on the downside of bake station; Intake stack 10 is arranged in flue, has bending inlet channel in intake stack 10, and inlet channel one end is communicated with the cold wind import 103 be positioned at outside flue, and the inlet channel other end is communicated with combustion chamber 104 through hot blast air inlet pipe 102.
Claims (8)
1. energy-conservation crucible stove, comprises combustion chamber, Feng Tang room, heating clamber and smoke exhaust pipe, and combustion chamber is provided with into fuel port, air inlet and bocca; Air inlet is in communication with the outside by intake stack; Heating clamber one end is communicated with combustion chamber flame-throwing mouth, the heating clamber other end is communicated with flue, flue is communicated with smoke exhaust pipe, it is characterized in that: described intake stack is arranged in flue, bending inlet channel is had in intake stack, inlet channel one end and the cold wind inlet communication be positioned at outside flue, the inlet channel other end is communicated with combustion chamber air inlet through warm-air pipe.
2. energy-conservation crucible stove according to claim 1, it is characterized in that: in described flue, be arranged at intervals with multiple demarcation strip, demarcation strip is divided into upper and lower two groups, setting handed over by demarcation strip on upper and lower two component dividing plates, make between demarcation strip, to form sinuous flue path, the above-mentioned flue path of described intake stack wind through.
3. energy-conservation crucible stove according to claim 1, is characterized in that: the snakelike setting of described intake stack, makes to form the inlet channel wriggled in intake stack.
4. energy-conservation crucible stove according to claim 1, is characterized in that: described flue circular arc is arranged, and makes to form bending flue path in flue, and described intake stack bends through above-mentioned flue path.
5. energy-conservation crucible stove according to claim 1, it is characterized in that: described intake stack has multiple, multiple intake stack be arranged in parallel.
6. energy-conservation crucible stove according to claim 1 or 2 or 3 or 4 or 5, it is characterized in that: energy-conservation crucible stove comprises the crucible of a surplus tapping body, crucible is positioned at described heating clamber, the rotating tubular body risen along crucible outer wall peripheral helical is also provided with in heating clamber, rotating tubular body lower end is docked with described bocca, be distributed with fiery grid along rotating tubular body, rotating tubular body is distributed with fire jetting hole.
7. energy-conservation crucible stove according to claim 6, is characterized in that: energy-conservation crucible furnace bottom is provided with flow liquid detector, is provided with liquid drain tube below crucible, and flow liquid detector is positioned at liquid drain tube.
8. energy-conservation crucible stove according to claim 1, is characterized in that: energy-conservation crucible stove outer covering upper surface is provided with bake station, and described heating clamber and smoke exhaust pipe lay respectively at described flue two ends, and flue is arranged on the downside of bake station.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520052323.5U CN204594212U (en) | 2015-01-26 | 2015-01-26 | Energy-conservation crucible stove |
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CN201520052323.5U CN204594212U (en) | 2015-01-26 | 2015-01-26 | Energy-conservation crucible stove |
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CN204594212U true CN204594212U (en) | 2015-08-26 |
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CN201520052323.5U Expired - Fee Related CN204594212U (en) | 2015-01-26 | 2015-01-26 | Energy-conservation crucible stove |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104596242A (en) * | 2015-01-26 | 2015-05-06 | 金进帼 | Energy-saving boiler |
CN105783508A (en) * | 2016-03-14 | 2016-07-20 | 奉化市精翔热处理设备厂 | Biomass fuel crucible furnace |
-
2015
- 2015-01-26 CN CN201520052323.5U patent/CN204594212U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104596242A (en) * | 2015-01-26 | 2015-05-06 | 金进帼 | Energy-saving boiler |
CN105783508A (en) * | 2016-03-14 | 2016-07-20 | 奉化市精翔热处理设备厂 | Biomass fuel crucible furnace |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150826 Termination date: 20170126 |