CN203704029U - Numerical-controlled semi-gasification multi-return-stroke efficient heating stove - Google Patents
Numerical-controlled semi-gasification multi-return-stroke efficient heating stove Download PDFInfo
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- CN203704029U CN203704029U CN201320728852.3U CN201320728852U CN203704029U CN 203704029 U CN203704029 U CN 203704029U CN 201320728852 U CN201320728852 U CN 201320728852U CN 203704029 U CN203704029 U CN 203704029U
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- heating stove
- cavity
- stove
- pipe
- body cavity
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Abstract
The utility model discloses a numerical-controlled semi-gasification multi-return-stroke efficient heating stove. The numerical-controlled semi-gasification multi-return-stroke efficient heating stove comprises a double-layered stove body composed of a stove body and an inner container; the body cavity is formed; a soot cleaning opening, an air inlet, a ignition and slag cleaning opening are formed in the left side of the stove body; a feeding opening, soot cleaning openings, a smoke outlet, a water outlet, and a pressure gauge seat are arranged in the stove body; an explosion-proof device seat is arranged at the upper part of the right side of the stove body; a water return opening and a soot cleaning opening are formed in two sides on the right side of the stove body; a three-dimensional partition wall made of a material plate is formed inside the inner container; a cavity communicated with the body cavity is formed; a fuel chamber is formed together by the left side of the partition wall and the inner container; two three-dimensional partition walls of which the inner cavities are communicated with the body cavity are formed by the material plates on the right side of the fuel chamber; a stove range is arranged below a precombustion chamber and a combustion chamber; a fan-shaped air outlet body is arranged inside a blower air inlet below the stove range, and faces the precombustion chamber and the combustion chamber; the lower opening of the inner container is completely sealed by a baseplate; circular stove feet equipped with corners are arranged on the lower side of the baseplate. The numerical-controlled semi-gasification multi-return-stroke efficient heating stove can be reasonably butted with a blower and a microcomputer to realize humanization.
Description
Technical field
The utility model relates to a kind of heating stove, especially a kind of numerical control many stroke efficients heating stove that partly gasifies.
Background technology
Heating stove is a lot of in the market, but not only efficient but also environmental protection was rare, designer has declared many stroke efficients heating stove that partly gasifies that the patent No. is 201320604190.9, but do not dock with microcomputer digital control, the purpose of this utility model is to provide a kind of numerical control many stroke efficients heating stove that partly gasifies, for a contribution is done in national efforts at environmental protection.
Summary of the invention
The purpose of this utility model is to provide a kind of numerical control many stroke efficients heating stove that partly gasifies, it is on the basis of designer ZL201320604190.9 patent, micro computer automatic control technology and designer ZL201320677860.X patent are docked with the science of this utility model, make its not only environmental protection and energy saving, and operation automatically.
The utility model is achieved in that it includes body of heater and inner bag, described body of heater and inner bag composition double-layer furnace body, form body cavity, cleaning door is established in left side at body of heater, air inlet, the breast hole of igniting, on body of heater, establish feeding port, cleaning door, outlet flue, delivery port and pressure gauge base, establish explosion-proof apparatus seat in the right upper portion of body of heater, establish water return outlet and cleaning door in both sides, body of heater the right, in inner bag inside, form three-dimensional partition wall together by flitch, and form the cavity communicating with body cavity, the left side of this partition wall and inner bag have formed fuel chambers jointly, its right side has formed two three-dimensional partition walls that internal cavity communicates with body cavity by flitch, fire grate is located at below precombustion chamber and combustion chamber, the pipe communicating with body cavity and the cast iron eccentric swing axle that can swing, jointly support and can move left and right the horizontal straight casting furnace grate that unloads ash, it unloads grey principle: two casting furnace grates that face mutually, one motionless, one moves left and right, reach machinery and unload grey object, following air inlet the inside of this fire grate, towards precombustion chamber and combustion chamber direction, fan-shaped air-out body is set, make it that wind is blowed to precombustion chamber and combustion chamber more uniformly, base plate all seals the end opening of inner bag, base plate arrange below with angle around shape stove pin.
Described fire grate that can be movable uses the pipe communicating with body cavity to substitute, and can increase heat-exchange surface, energy-saving and emission-reduction.
Below described drop-bottom, balance arranges flitch, its surrounding is connected with body of heater, and form the cavity communicating with body cavity, now substitute the pipe of cast iron co-shaping fire grate, for convenience of operation, bendable turns to down, insert on base plate, its cavity communicates with body cavity, two three-dimensional cavity partition walls on right side in described inner bag, its upper end is connected with inner bag top by pipe respectively, one of its lower end is connected with base plate by pipe, and another is connected with base plate at its correspondence direction, and the three-dimensional partition wall after connection all above lower circulation style communicates with body cavity.
Right side in described inner bag, the pipe communicating with body cavity and baffle plate and pug have formed the three-dimensional partition wall of first jointly, by another row's pipe communicating with body cavity and baffle plate and the three-dimensional partition wall of the common second forming of pug, they and inner bag have formed two quirks jointly.
Described feeding port is arranged on facade top, body of heater left side.
The place that described drop-bottom is upper and lower corresponding with fire grate is empty, can be to the ash that falls, and now cleaning door can save.
In described combustion chamber, be provided with the pipe that some, its cavity of some rows communicate with body cavity.
In two described quirks, be respectively arranged with some Zhi Ruogan and arrange the pipe that its cavity and body cavity communicate.
Described water pipe furnace grate can longitudinally arrange, and the pipe that now supports fire grate saves with the eccentric cast iron axle that can swing and the casting furnace grate that can move left and right and can not move left and right, and air inlet can be located at any position of three facades of fuel chambers.
Described explosion-proof apparatus seat is located at above body of heater.
Described cleaning door, is arranged on the one side on body of heater right side, and corresponding another side arranges water return outlet.
Described outlet flue both sides arrange the cleaning door of two dust stratifications that clean flues downwards.
Described cleaning door can be with plug-type ash bucket deashing supporting with it.
Below described drop-bottom, balance arranges a flitch, and its surrounding is connected with body of heater, and has formed the cavity communicating with body cavity.
Accompanying drawing explanation
Below in conjunction with drawings and Examples, the utility model is further illustrated.
Fig. 1, Fig. 2, Fig. 3, Fig. 4 are structural representations of the present utility model.
The specific embodiment
As shown in Figure 1: body of heater 2 and inner bag 3 form double-layer furnace body, form body cavity 4, establish cleaning door 30 in the left side of body of heater 2, air inlet 31, the breast hole 34 of igniting, on body of heater 2, establish feeding port 1, cleaning door 6, 8, outlet flue 9, the pressure gauge base that delivery port 10 and delivery port are set up in parallel, establish explosion-proof apparatus seat 11 in the right upper portion of body of heater 2, establish water return outlet 20 and cleaning door 22 in body of heater 2 both sides, the right, in inner bag 3 inside, by flitch 38 three-dimensional partition wall together with 39 have formed, and form the cavity 37 communicating with body cavity 4, the left side of this partition wall and inner bag 3 have formed fuel chambers 36 jointly, its right side has formed two three-dimensional partition walls that its internal cavity 18 and 15 communicates with body cavity 4 jointly by flitch 5 and flitch 17 and flitch 14, by flitch 24, it longitudinally being obturaged below and between base plate 21 of the partition wall in left side, between the top of right side partition wall and inner bag 3 tops, longitudinally obturaged by flitch 12, moving grate 27 and can moving grate 25 not be located at precombustion chamber 33 and combustion chamber 35 below, the pipe 26 communicating with body cavity 4 and the eccentric cast iron axle 32 that can swing, jointly support to move left and right and unload the horizontal straight casting furnace grate 27 of ash and the casting furnace grate that can not move left and right 25 being arranged side by side, moving grate 27 and casting furnace grate 25 that can be movable below, the inside of air inlet 31, towards precombustion chamber 33 and combustion chamber 35 directions, fan-shaped air-out body 28 is set, make it that wind is blowed to precombustion chamber 33 and combustion chamber 35 uniformly, base plate 21 all seals the end opening of inner bag 3, on base plate 21 right sides, establish cleaning door 22, base plate 21 arrange below with angle around shape stove pin 29.
With moving grate 27 balance settings be can be movable fixed fire grate 25, such one moves forward and backward, one motionless, can reach and unload grey object.
As shown in Figure 2: the pipe 40 that described fixed fire grate 25 use communicate with body cavity 4 substitutes, and can increase heat-exchange surface, energy-saving and emission-reduction.
As shown in Figure 3: below described drop-bottom 21, balance arranges flitch 45, its surrounding is connected with body of heater 2, and form the cavity communicating with body cavity 4, now substitute the pipe fire grate 40 of cast iron fixed fire grate 25, for convenience of operation, under bendable turns to, resembling pipe 44 inserts on base plate 21, its cavity communicates with body cavity, two three-dimensional cavity partition walls on described inner bag 3 interior right sides, its upper end is respectively by pipe 41, 42 are connected with inner bag top, one of its underpart is connected with base plate 21 by pipe 43, another is connected with base plate 21 at its correspondence direction, three-dimensional partition wall after the connection all mode of above lower circulation communicates with body cavity 4.
As shown in Figure 4: the right side in described inner bag 3, the pipe 50 communicating with body cavity 4 and baffle plate 51 and pug 49 have formed the three-dimensional partition wall of first jointly, by the pipe 47 communicating with body cavity 4 and baffle plate 48 and the three-dimensional partition wall of the common second forming of pug 46, they and inner bag 3 have formed 16 and 19 two quirks jointly.
Make so partly the gasify fuel reserve of many stroke efficients heating stove of numerical control, a fully mechanical body of burning and heat exchange, the blower air quantity control that is 201320677860.X by the design people's the patent No. and air outlet automatic closing system are arranged on the air inlet of this stove, utilize its control wind function, the range of operation of setting at micro computer, reach the object of automatic operation, the hot water that stove produces is discharged body of heater by the water pump under computer control, send into heating region, allow like this micro computer replace people, even more careful than people, more accurate, more perfectly complete independent heating work more among a small circle, the thermal flow process approach of this stove is: wind is blown into air inlet 31 by air blast, by fan-shaped air-out body 28, wind is sent to precombustion chamber 33 and combustion chamber 35 equably, fire is wherein under the effect of wind-force, in combustion chamber 35, burning moves to reversal chamber 7 operation downwards and enters quirk 19, continuation is discharged body of heater from pipe 9 after turning to quirk 16 upwards to move to remittance smoke-box 13 while moving to reversal chamber 23 downwards again, the feature of this stove: one, because instead burn, so environmental protection, two, because of many backhauls, so energy-conservation, three, because feed bin reserves are large, so long-time regardless of it, four, because of simplicity of design, so easy to operate.
Claims (15)
1. a numerical control many stroke efficients heating stove that partly gasifies, it is characterized in that: body of heater (2) and inner bag (3) composition double-layer furnace body, form body cavity (4), establish cleaning door (30) in the left side of body of heater (2), air inlet (31), the breast hole (34) of igniting, on body of heater (2), establish feeding port (1), cleaning door (6), (8), outlet flue (9), the pressure gauge base that delivery port (10) and delivery port are set up in parallel, establish explosion-proof apparatus seat (11) in the right upper portion of body of heater (2), establish water return outlet (20) and cleaning door (22) in both sides, body of heater (2) the right, in inner bag (3) inside, form three-dimensional partition wall together by flitch (38) and (39), and form the cavity (37) communicating with body cavity (4), the left side of this partition wall and inner bag (3) have formed fuel chambers (36) jointly, its right side has formed by flitch (5) and flitch (17) and flitch (14) the three-dimensional partition wall that two its internal cavities (18) and (15) communicate with body cavity (4) jointly, by flitch (24), it longitudinally being obturaged below and between base plate (21) of the partition wall in left side, the top of right side partition wall and inner bag (3) are longitudinally obturaged by flitch (12) between top, moving grate (27) and fixed grate (25) are located at the following of precombustion chamber (33) and combustion chamber (35), the pipe (26) communicating with body cavity (4) and the eccentric cast iron axle (32) that can swing, jointly support to move left and right and unload the horizontal straight casting furnace grate (27) of ash and the casting furnace grate that can not move left and right (25) being arranged side by side, moving grate (27) and fixed grate (25) that can be movable below, the inside of air inlet (31), towards precombustion chamber (33) and combustion chamber (35) direction, fan-shaped air-out body (28) is set, make it that wind is blowed to precombustion chamber (33) and combustion chamber (35) uniformly, base plate (21) all seals the end opening of inner bag (3), above right side, establish cleaning door (22) at base plate (21), base plate (21) arrange below with angle around shape stove pin (29).
2. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, it is characterized in that: described fixed fire grate (25) uses the pipe (40) communicating with body cavity (3) to substitute, can increase heat-exchange surface, energy-saving and emission-reduction.
3. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, it is characterized in that: below drop-bottom (21), balance arranges flitch (45), its surrounding is connected with body of heater (2), and form the cavity communicating with body cavity (4), substitute the pipe (40) of fixed cast-iron fire grate (25) that can be unmovable, for convenience of operation, under bendable turns to, resemble pipe (44) and insert base plate (21) above, its cavity communicates with body cavity (4).
4. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, it is characterized in that: two three-dimensional cavity partition walls on the described interior right side of inner bag (3), its upper end is connected with inner bag top by pipe (41), (42) respectively, one of its underpart is connected with base plate (21) by pipe (43), another is connected with base plate (21) at its correspondence direction, and the three-dimensional partition wall after the connection all mode of above lower circulation communicates with body cavity (4).
5. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, it is characterized in that: the right side in described inner bag (3), the pipe (50) communicating with body cavity (4) and baffle plate (51) and pug (49) have formed the three-dimensional partition wall of first jointly, by the pipe (47) communicating with body cavity (4) and baffle plate (48) and the three-dimensional partition wall of the common second forming of pug (46), they and inner bag (3) have formed quirk (16) and quirk (19) jointly.
6. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, is characterized in that: described feeding port (1) is arranged on facade top, body of heater (2) left side.
7. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, it is characterized in that: the place that drop-bottom (21) and flitch (45) are upper and lower corresponding with fire grate (27) is empty, can be to the ash that falls, now cleaning door (30) can save.
8. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, is characterized in that: in described combustion chamber (35), be provided with the pipe that some, its cavity of some rows communicate with body cavity (4).
9. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, is characterized in that: in quirk (19) and quirk (16), be respectively arranged with some Zhi Ruogan and arrange the pipe that its cavity and body cavity (4) communicate.
10. numerical control according to claim 1 many stroke efficients heating stove that partly gasifies, it is characterized in that: water pipe furnace grate (40) can longitudinally arrange, now support the pipe (26) of fire grate and the eccentric cast iron axle (32) that can swing and movably casting furnace grate (27) and the fixed cast-iron fire grate (25) that can not move save, air inlet (31) can be located at any position of (36) three facades of fuel chambers.
11. numerical controls according to claim 1 many stroke efficients heating stove that partly gasifies, is characterized in that: described explosion-proof apparatus seat (11) is located at body of heater (2) above.
12. numerical controls according to claim 1 many stroke efficients heating stove that partly gasifies, is characterized in that: described cleaning door (22), be arranged on the one side on body of heater (2) right side, and corresponding another side arranges water return outlet (20).
13. numerical controls according to claim 1 many stroke efficients heating stove that partly gasifies, is characterized in that: the described available plug-type ash bucket of cleaning door (30) deashing supporting with it.
14. numerical controls according to claim 1 many stroke efficients heating stove that partly gasifies, is characterized in that: described outlet flue both sides arrange the cleaning door of two dust stratifications that clean flues downwards.
15. numerical controls according to claim 1 many stroke efficients heating stove that partly gasifies, it is characterized in that: below drop-bottom (21), balance arranges flitch (45), its surrounding is connected with body of heater (2), and has formed the cavity communicating with body cavity (4).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201320728852.3U CN203704029U (en) | 2013-11-19 | 2013-11-19 | Numerical-controlled semi-gasification multi-return-stroke efficient heating stove |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201320728852.3U CN203704029U (en) | 2013-11-19 | 2013-11-19 | Numerical-controlled semi-gasification multi-return-stroke efficient heating stove |
Publications (1)
Publication Number | Publication Date |
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CN203704029U true CN203704029U (en) | 2014-07-09 |
Family
ID=51054463
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201320728852.3U Expired - Fee Related CN203704029U (en) | 2013-11-19 | 2013-11-19 | Numerical-controlled semi-gasification multi-return-stroke efficient heating stove |
Country Status (1)
Country | Link |
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CN (1) | CN203704029U (en) |
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2013
- 2013-11-19 CN CN201320728852.3U patent/CN203704029U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140709 Termination date: 20161119 |
|
CF01 | Termination of patent right due to non-payment of annual fee |