Smoke-purifying strong fire furnace

By introducing a blower mechanism and waste combustion design into the high-power furnace, the problem of incomplete combustion is solved, achieving efficient co-combustion of waste and solid fuel, reducing harmful gas emissions and fuel costs.

CN120845795APending Publication Date: 2025-10-28阿巴拜科日·约麦尔江
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Patent Information

Application Number
CN202511296750.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2025-10-28

AI Technical Summary

Technical Problem

Existing high-powered furnaces do not burn completely, producing a large amount of flue gas and harmful gases, which increases operating costs.

Method used

A smoke-free, high-powered furnace was designed, which delivers oxygen to the combustion chamber and combustion drawer through a blower mechanism, and utilizes waste and solid fuel for co-combustion to improve thermal efficiency and reduce harmful gas emissions.

Benefits of technology

It achieves the co-combustion of waste and solid fuel, improves thermal efficiency, reduces flue gas spillage and harmful gas emissions, and lowers fuel costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a smoke purifying strong fire furnace which comprises a strong fire furnace assembly, and the strong fire furnace assembly comprises a furnace body, an air blowing mechanism, a mounting plate and a combustion drawer; the combustion chamber is filled with waste combustible materials, a large amount of smoke is generated after the waste combustible materials are ignited, then the solid combustible materials are put into the combustion drawer to be ignited, the air blowing mechanism is started, external oxygen is conveniently conveyed into the combustion chamber and the circular through hole, and the oxygen conveying speed is controlled through the adjusting valve; smoke generated in a combustion chamber can be conveniently transmitted into a combustion cavity through a second pipe body, the smoke in the combustion cavity is transmitted into a combustion drawer through a first pipe body, then oxygen transmitted through a circular through hole is used for conducting mixed combustion on solid combustible materials and the smoke in the combustion drawer, smoke overflow is avoided, and the combustion efficiency is improved. Waste gasification and solid fuel synergistic combustion are utilized, the heat efficiency is improved, harmful gas emission is reduced, waste materials can be utilized, the fuel cost is reduced, and the device is suitable for wide popularization.
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Description

Technical Field

[0001] This invention relates to the field of high-powered furnace technology, and in particular to a smoke-reducing high-powered furnace. Background Technology

[0002] A high-powered stove has a strong firepower that far exceeds that of a regular household gas stove, so it is often used in restaurants and other places that require high-temperature and rapid cooking. Existing high-powered stoves produce a large amount of smoke due to incomplete combustion, resulting in incomplete combustion and the generation of a large amount of harmful gases, thus increasing the cost of use. To address this, a smoke-free high-powered stove is proposed. Summary of the Invention

[0003] In view of this, embodiments of the present invention provide a smoke-reducing, high-power stove to solve or alleviate the technical problems existing in the prior art, and at least provide a beneficial alternative.

[0004] The technical solution of this invention is implemented as follows: A smoke-reducing high-powered stove includes a high-powered stove assembly, which includes a stove body, a blower mechanism, a mounting plate, and a combustion drawer. The upper surface of the stove body has a combustion chamber, and the interior of the stove body has a combustion chamber located below the combustion chamber. The outer wall of the stove body has movable grooves, all of which communicate with the combustion chamber and the combustion cavity. The outer wall of the mounting plate is located on the inner wall of the combustion cavity, and the upper surface of the mounting plate has a circular through hole. Symmetrical support blocks are arranged on the inner wall of the combustion cavity, and the lower surface of the combustion drawer is attached to the upper surface of the support blocks, while the outer wall of the combustion drawer is attached to the inner wall of the combustion cavity. The blower mechanism is mounted on the stove body and is located on the inner wall of the circular through hole.

[0005] In some embodiments, the high-powered furnace assembly further includes a door, a sealing plate, a first tube, and a plurality of second tubes, wherein the bottom end of the first tube penetrates the inner bottom wall of the combustion drawer, and the combustion drawer and the first tube are integrally formed; the bottom ends of the plurality of second tubes uniformly penetrate the inner bottom wall of the combustion chamber, and the plurality of second tubes are fixedly connected to the furnace body; the sealing plate is disposed on the outer wall of the combustion drawer, and the outer wall of the sealing plate is attached to the inner wall of the movable groove; the door is hinged to the inner wall of the combustion chamber.

[0006] In some embodiments, the blower mechanism includes a first ventilation pipe, a fan, a three-way pipe, a second ventilation pipe, and an annular pipe body. The annular pipe body is disposed on the inner wall of the circular through-hole, and an annular cavity is formed inside the annular pipe body. The inner wall of the annular pipe body is uniformly provided with gasification holes, and several of the gasification holes communicate with the interior of the annular cavity. The second ventilation pipe sequentially passes through the furnace body and the annular pipe body, and is fixedly connected to the furnace body. The second ventilation pipe is connected to the annular cavity and fixedly connected to the annular pipe body. One end of the three-way pipe is disposed at one end of the second ventilation pipe, and the fan is disposed at the other end of the three-way pipe. One end of the first ventilation pipe is disposed at the bottom end of the three-way pipe, and the other end of the first ventilation pipe passes through the furnace body. The first ventilation pipe is fixedly connected to the furnace body and communicates with the interior of the combustion chamber. A regulating valve is disposed on the outer wall of the first ventilation pipe.

[0007] In some embodiments, an observation hole is provided on the front surface of the door body, a movable limiting through hole is provided on the inner wall of the observation hole, a baffle plate is attached to the inner wall of the movable limiting through hole, and a movable handle is provided on the front surface of the baffle plate, the movable handle passing through the observation hole.

[0008] In some embodiments, the lower surface of the furnace body is provided with support legs that are symmetrically arranged with each other.

[0009] In some embodiments, a flue pipe extends through the rear surface of the furnace body, the flue pipe is connected to the interior of the combustion chamber, and the flue pipe and the furnace body are fixedly connected.

[0010] In some embodiments, a handle is provided on the front surface of the door.

[0011] In some embodiments, the front surface of the sealing plate is provided with a U-shaped handle.

[0012] In some embodiments, the lower surface of the support leg is provided with a rubber pad.

[0013] The embodiments of the present invention have the following advantages due to the adoption of the above technical solutions: This invention involves filling a combustion chamber with combustible waste, which, when ignited, produces a large amount of smoke. Solid combustibles are then added to a combustion drawer for further ignition. A blower mechanism is activated to deliver external oxygen to both the combustion chamber and the circular through-hole. A regulating valve controls the oxygen delivery rate, facilitating the transfer of smoke generated in the combustion chamber through a second pipe to the combustion chamber. Smoke in the combustion chamber is then transferred through a first pipe to the combustion drawer. Oxygen delivered through the circular through-hole is used to mix and burn the solid combustibles and smoke in the combustion drawer, preventing smoke leakage. By utilizing waste gasification and co-combustion of solid fuel, thermal efficiency is improved, harmful gas emissions are reduced, waste materials are utilized, fuel costs are lowered, and the invention is suitable for widespread application.

[0014] The above overview is for illustrative purposes only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of the invention will become readily apparent from the accompanying drawings and the following detailed description. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a structural diagram of the present invention; Figure 2 For the present invention Figure 1 Enlarged structural diagram of area A; Figure 3 For the present invention Figure 1 Internal structure diagram; Figure 4 For the present invention Figure 3 Enlarged structural diagram of region B; Figure 5 For the present invention Figure 3 Enlarged structural diagram of region C; Figure 6 For the present invention Figure 3 Enlarged structural diagram of region D; Figure 7 This is a front view structural diagram of the present invention; Figure 8 For the present invention Figure 7 EE side section structural diagram; Figure 9 For the present invention Figure 8 Enlarged structural diagram of region F; Figure 10This is a diagram showing the door of the present invention in use when open.

[0017] Reference numerals: 1. High-powered furnace assembly; 2. Combustion chamber; 3. Exhaust pipe; 4. U-shaped handle; 5. Pull handle; 6. Regulating valve; 7. Support leg; 8. Rubber pad; 9. Movable groove; 10. Furnace body; 11. Door; 12. Sealing plate; 13. Blower mechanism; 14. Mounting plate; 15. Combustion drawer; 16. First pipe body; 17. Second pipe body; 20. Combustion chamber; 21. Circular through hole; 22. Annular cavity; 23. Gasification hole; 24. Support block; 25. Observation hole; 26. Movable limit through hole; 27. Baffle plate; 28. Movable handle; 130. First ventilation pipe; 131. Fan; 132. T-pipe; 133. Second ventilation pipe; 134. Annular pipe body. Detailed Implementation

[0018] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of the invention. Therefore, the drawings and description are considered to be exemplary in nature and not restrictive.

[0019] It is important to note that terms such as "first," "second," "symmetric," "array," "set in," and "set with" are used only to distinguish between descriptive and positional descriptions and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, features specified with terms such as "first" or "symmetric" may explicitly or implicitly include one or more of that feature; similarly, when the quantity of certain features is not limited by words such as "two" or "three," it should be noted that such features also explicitly or implicitly include one or more features.

[0020] In this invention, unless otherwise explicitly specified and limited, terms such as "installation," "connection," and "fixation" should be interpreted broadly; for example, they can refer to a fixed connection, a detachable connection, or an integral molding; they can refer to a mechanical connection, a direct connection, a welding connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the accompanying drawings and specific circumstances.

[0021] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.

[0022] like Figures 1-10As shown, this embodiment of the invention provides a smoke-free high-power stove, including a high-power stove assembly 1. The high-power stove assembly 1 includes a stove body 10, a blower mechanism 13, a mounting plate 14, and a combustion drawer 15. The upper surface of the stove body 10 has a combustion chamber 2, and the interior of the stove body 10 has a combustion chamber 20 located below the combustion chamber 2. The outer wall of the stove body 10 has movable grooves 9, which are all connected to the combustion chamber 2 and the combustion chamber 20. The outer wall of the mounting plate 14 is located on the inner wall of the combustion chamber 2, and the upper surface of the mounting plate 14 has a circular through hole 21. The inner wall of the combustion chamber 2 is symmetrically provided with support blocks 24, and the lower surface of the combustion drawer 15 is attached to the upper surface of the support blocks 24. The outer wall of the combustion drawer 15 is attached to the inner wall of the combustion chamber 2. The blower mechanism 13 is located on the stove body 10 and is located on the inner wall of the circular through hole 21.

[0023] In this embodiment, specifically, the high-powered furnace assembly 1 also includes a door 11, a sealing plate 12, a first tube 16, and several second tubes 17. The bottom end of the first tube 16 penetrates the inner bottom wall of the combustion drawer 15, and the combustion drawer 15 and the first tube 16 are integrally formed. The bottom ends of several second tubes 17 penetrate the inner bottom wall of the combustion chamber 2, and the several second tubes 17 are fixedly connected to the furnace body 10. The sealing plate 12 is disposed on the outer wall of the combustion drawer 15, and the outer wall of the sealing plate 12 is attached to the inner wall of the movable groove 9. The door 11 is hinged to the inner wall of the combustion chamber 2. After the oxygen in the combustion chamber 20 is mixed with the smoke generated in the combustion chamber 20, it is transmitted to the bottom of the combustion drawer 15 through the second tubes 17. After that, the mixed smoke is transmitted to the combustion chamber 2 through the first tube 16 and mixed with the solid combustibles ignited on the combustion drawer 15 for combustion. The door 11 is used to seal the combustion chamber 2 and the combustion chamber 20.

[0024] In this embodiment, the blower mechanism 13 specifically includes a first ventilation pipe 130, a fan 131, a three-way pipe 132, a second ventilation pipe 133, and an annular pipe 134. The annular pipe 134 is disposed on the inner wall of the circular through hole 21, and an annular cavity 22 is formed inside the annular pipe 134. Atomization holes 23 are evenly and circumferentially formed on the inner wall of the annular pipe 134, and several atomization holes 23 are connected to the interior of the annular cavity 22. The second ventilation pipe 133 passes through the annular pipe in sequence. The furnace body 10 and the annular pipe 134 are connected together, and the second ventilation pipe 133 is fixedly connected to the furnace body 10 and the annular cavity 22. The second ventilation pipe 133 is fixedly connected to the annular pipe 134. One end of the three-way pipe 132 is located at one end of the second ventilation pipe 133, and the fan 131 is located at the other end of the three-way pipe 132. One end of the first ventilation pipe 130 is located at the bottom end of the three-way pipe 132, and the other end of the first ventilation pipe 130 passes through the furnace body 10. A ventilation pipe 130 is fixedly connected to the furnace body 10. The first ventilation pipe 130 is connected to the interior of the combustion chamber 20. A regulating valve 6 is provided on the outer wall of the first ventilation pipe 130. With the above settings, relevant personnel start the blower 131. The blower 131 facilitates the transmission of external oxygen to the three-way pipe 132. The three-way pipe 132 transmits oxygen to the second ventilation pipe 133 and the first ventilation pipe 130 respectively. The oxygen in the first ventilation pipe 130 is transmitted to the combustion chamber 20. The oxygen in the combustion chamber 20 mixes with the smoke generated in the combustion chamber 20 and is then transmitted through the second pipe 17 to the bottom of the combustion drawer 15. After that, the mixed smoke is transmitted through the first pipe 16 to the combustion chamber 2 and mixes and burns with the solid combustibles ignited on the combustion drawer 15. The oxygen in the second ventilation pipe 133 is transmitted to the annular cavity 22. The gas in the annular cavity 22 is discharged through the vaporization hole 23 to enhance the combustion of smoke and solid combustibles and reduce the generation of flue gas.

[0025] The regulating valve 6 is used to adjust the oxygen flow rate in the first ventilation pipe 130, precisely control the oxygen intake, and adjust the combustion efficiency.

[0026] In this embodiment, specifically, an observation hole 25 is provided on the front surface of the door 11, and a movable limiting through hole 26 is provided on the inner wall of the observation hole 25. A baffle plate 27 is attached to the inner wall of the movable limiting through hole 26, and a movable handle 28 is provided on the front surface of the baffle plate 27. The movable handle 28 passes through the observation hole 25. With the above configuration, relevant personnel hold the movable handle 28 to move the baffle plate 27 within the movable limiting through hole 26, so as to facilitate relevant personnel to observe the combustion and smoke generated in the combustion chamber 20.

[0027] In this embodiment, specifically, the lower surface of the furnace body 10 is symmetrically provided with support legs 7, which are used to stabilize the furnace body 10 during use.

[0028] In this embodiment, specifically, a flue pipe 3 runs through the rear surface of the furnace body 10. The flue pipe 3 is connected to the interior of the combustion chamber 2. The flue pipe 3 and the furnace body 10 are fixedly connected. The hot gas generated by combustion is discharged through the flue pipe 3.

[0029] In this embodiment, specifically, a handle 5 is provided on the front surface of the door 11, so that relevant personnel can hold the handle 5 to open and close the door 11.

[0030] In this embodiment, specifically, a U-shaped handle 4 is provided on the front surface of the sealing plate 12, so that relevant personnel can move the sealing plate 12 by holding the U-shaped handle 4.

[0031] In this embodiment, specifically, a rubber pad 8 is provided on the lower surface of the support leg 7. The rubber pad 8 is provided to enhance the friction between the support leg 7 and the ground.

[0032] When the invention is in operation: relevant personnel open the door 11 to facilitate the addition of waste combustibles into the combustion chamber 20, then put solid combustibles into the combustion drawer 15, and then relevant personnel ignite the waste combustibles and solid combustibles in the combustion chamber 20.

[0033] After the combustible waste filling the combustion chamber 20 is ignited, a large amount of smoke is produced. Then, the relevant personnel start the blower 131, which facilitates the transmission of external oxygen to the three-way pipe 132. The three-way pipe 132 transmits the oxygen to the second ventilation pipe 133 and the first ventilation pipe 130 respectively. The oxygen in the first ventilation pipe 130 is transmitted to the combustion chamber 20. The oxygen in the combustion chamber 20 mixes with the smoke generated in the combustion chamber 20 and is then transmitted through the second pipe 17 to the bottom of the combustion drawer 15. The mixed smoke is then transmitted through the first pipe 16 to the combustion chamber 2 and mixes with the solid combustibles ignited on the combustion drawer 15 for combustion. The oxygen in the second ventilation pipe 133 is transmitted to the annular cavity 22. The gas in the annular cavity 22 is discharged through the vaporization hole 23 to enhance the combustion of smoke and solid combustibles and reduce the generation of smoke. The hot gas generated by combustion is discharged through the exhaust pipe 3.

[0034] The regulating valve 6 is used to adjust the oxygen flow rate in the first ventilation pipe 130, precisely control the oxygen intake, and adjust the combustion efficiency.

[0035] After combustion is complete, the relevant personnel hold the U-shaped handle 4 to move the sealing plate 12 out of the movable groove 9. The sealing plate 12 then moves the combustion drawer 15 out of the combustion chamber 2 and the movable groove 9. After removing the combustion residue from the combustion drawer 15, the relevant personnel hold the U-shaped handle 4 to move the sealing plate 12 and the combustion drawer 15 into the movable groove 9 and the combustion chamber 2.

[0036] Afterwards, the relevant personnel used handle 5 to open door 11, so that the relevant personnel could clean up the combustion residue in combustion chamber 20.

[0037] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various variations or substitutions within the technical scope disclosed in the present invention, and these should all be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. A smoke-reducing high-powered stove, comprising a high-powered stove assembly (1), characterized in that: The high-powered furnace assembly (1) includes a furnace body (10), a blower mechanism (13), a mounting plate (14), and a combustion drawer (15), wherein, The upper surface of the furnace body (10) is provided with a combustion chamber (2), and the interior of the furnace body (10) is provided with a combustion chamber (20), which is located below the combustion chamber (2); The outer wall of the furnace body (10) is provided with movable grooves (9), and the movable grooves (9) are all connected to the combustion chamber (2) and the combustion chamber (20); The outer wall of the mounting plate (14) is disposed on the inner wall of the combustion chamber (2), and a circular through hole (21) is provided on the upper surface of the mounting plate (14). The inner wall of the combustion chamber (2) is symmetrically provided with support blocks (24), and the lower surface of the combustion drawer (15) is attached to the upper surface of the support block (24), and the outer wall of the combustion drawer (15) is attached to the inner wall of the combustion chamber (2). The blower mechanism (13) is disposed on the furnace body (10) and the blower mechanism (13) is disposed on the inner wall of the circular through hole (21).

2. The smoke-reducing, high-powered stove according to claim 1, characterized in that: The high-powered furnace assembly (1) also includes a door (11), a sealing plate (12), a first tube (16), and several second tubes (17), wherein, The bottom end of the first tube (16) penetrates the inner bottom wall of the combustion drawer (15), and the combustion drawer (15) and the first tube (16) are integrally formed. The bottom ends of several second tubes (17) evenly penetrate the inner bottom wall of the combustion chamber (2), and several second tubes (17) are fixedly connected to the furnace body (10); The sealing plate (12) is disposed on the outer wall of the combustion drawer (15), and the outer wall of the sealing plate (12) is attached to the inner wall of the movable groove (9), and the door (11) is hinged to the inner wall of the combustion chamber (2).

3. The smoke-reducing, high-powered stove according to claim 1, characterized in that: The blower mechanism (13) includes a first ventilation pipe (130), a fan (131), a three-way pipe (132), a second ventilation pipe (133), and an annular pipe body (134), wherein, The annular tube (134) is disposed on the inner wall of the circular through hole (21), and an annular cavity (22) is opened inside the annular tube (134). A gasification hole (23) is uniformly opened in an annular shape on the inner wall of the annular tube (134), and several gasification holes (23) are connected to the interior of the annular cavity (22). The second ventilation pipe (133) passes through the furnace body (10) and the annular pipe (134) in sequence, and the second ventilation pipe (133) is fixedly connected to the furnace body (10); The second ventilation pipe (133) is connected to the annular cavity (22), and the second ventilation pipe (133) is fixedly connected to the annular pipe (134); One end of the three-way pipe (132) is located at one end of the second ventilation pipe (133), and the fan (131) is located at the other end of the three-way pipe (132); One end of the first ventilation pipe (130) is located at the bottom end of the three-way pipe (132), and the other end of the first ventilation pipe (130) passes through the furnace body (10). The first ventilation pipe (130) is fixedly connected to the furnace body (10), and the first ventilation pipe (130) is connected to the interior of the combustion chamber (20). A regulating valve (6) is provided on the outer wall of the first ventilation pipe (130).

4. The smoke-reducing, high-powered stove according to claim 2, characterized in that: The front surface of the door (11) is provided with an observation hole (25), the inner wall of the observation hole (25) is provided with a movable limiting through hole (26), the inner wall of the movable limiting through hole (26) is fitted with a baffle plate (27), the front surface of the baffle plate (27) is provided with a movable handle (28), and the movable handle (28) passes through the observation hole (25).

5. The smoke-reducing, high-powered stove according to claim 1, characterized in that: The lower surface of the furnace body (10) is provided with symmetrical support legs (7).

6. The smoke-reducing, high-powered stove according to claim 1, characterized in that: The rear surface of the furnace body (10) is provided with a flue pipe (3), which is connected to the interior of the combustion chamber (2). The flue pipe (3) and the furnace body (10) are fixedly connected.

7. The smoke-reducing, high-powered stove according to claim 2, characterized in that: A handle (5) is provided on the front surface of the door (11).

8. The smoke-reducing, high-powered stove according to claim 2, characterized in that: The front surface of the sealing plate (12) is provided with a U-shaped handle (4).

9. The smoke-reducing, high-powered stove according to claim 5, characterized in that: A rubber pad (8) is provided on the lower surface of the support leg (7).