CN210035489U - Energy-saving stove - Google Patents

Energy-saving stove Download PDF

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Publication number
CN210035489U
CN210035489U CN201920667078.7U CN201920667078U CN210035489U CN 210035489 U CN210035489 U CN 210035489U CN 201920667078 U CN201920667078 U CN 201920667078U CN 210035489 U CN210035489 U CN 210035489U
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China
Prior art keywords
air
gas
branch pipe
pipe
fire
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CN201920667078.7U
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Chinese (zh)
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沈新辉
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HUNAN LAOHUTOU ENERGY-SAVING ENVIRONMENTAL PROTECTION TECHNOLOGY Co Ltd
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HUNAN LAOHUTOU ENERGY-SAVING ENVIRONMENTAL PROTECTION TECHNOLOGY Co Ltd
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Priority to CN201920667078.7U priority Critical patent/CN210035489U/en
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Abstract

The utility model relates to an energy-saving stove, carve the furnace end of setting on the kitchen body including the kitchen body with mutually, the internal gas mixing chamber that is provided with of kitchen, be provided with the gas mixing in the gas mixing chamber and be responsible for, gas mixing branch pipe an, gas mixing branch pipe b, the air is responsible for, air branch pipe a, air branch pipe b, outlet duct an and outlet duct b, gas mixing branch pipe an, b one end is responsible for with the gas mixing and is linked together, the other end is linked together with the gas pipe, the gas mixing is responsible for the central fire chamber of one end and is linked together, outlet duct a, b sets up respectively in gas mixing branch pipe a, in the b, and respectively with air branch pipe an, b's one end is linked together, air branch pipe, b's the other end is responsible for with the air respectively and is linked together, outlet duct an, be provided with the aperture of giving vent. The energy-saving stove can fully mix air and fuel gas, so that the fuel gas is fully combusted, and the fuel gas waste is reduced, therefore, compared with the traditional gas stove, the energy-saving stove is more energy-saving.

Description

Energy-saving stove
Technical Field
The utility model relates to an energy-saving stove.
Background
Compared with the traditional kitchen range, the energy-saving kitchen range can be divided into a household energy-saving kitchen range and a commercial energy-saving kitchen range according to purposes. The fuel can be divided into a coal-fired energy-saving stove, a gas-fired energy-saving stove, a fuel oil energy-saving stove, a firewood energy-saving stove and a high-power electromagnetic energy-saving stove according to the fuel. According to the induction mode, the induction type energy-saving stove can be divided into an infrared induction type energy-saving stove, a photoelectric induction type energy-saving stove and a pressure induction type energy-saving stove. Classifying according to an energy-saving principle: infrared energy-saving stove, physics energy-saving stove. However, almost half of the gas in the existing gas range is wasted, and the reason for the waste of the gas is mainly because the gas is not in full contact with the air and the supply of the air is insufficient to support the gas to be fully combusted.
Disclosure of Invention
The utility model aims at improving and innovating the defects and problems existing in the background technology and providing an energy-saving stove.
The technical proposal of the utility model is to construct an energy-saving stove, which comprises a stove body and a stove head, and is characterized in that the stove head is carved on the stove body, an air mixing chamber is arranged in the stove body, a main gas mixing pipe, a branch gas mixing pipe a, a branch gas mixing pipe b, a main air pipe, a branch air pipe a, a branch air pipe b, an outlet pipe a and an outlet pipe b are arranged in the air mixing chamber, one end of the branch gas mixing pipe a and the branch gas mixing pipe b is communicated with the main gas mixing pipe, the other end is communicated with a gas pipe, one end of the main gas mixing pipe is communicated with a central fire cavity arranged at the center of the stove body, the outlet pipe a and the outlet pipe b are respectively arranged in the branch gas mixing pipe a and the branch gas mixing pipe b and are respectively communicated with one end of the branch air pipe a and the branch air pipe b, the other end of the branch air pipe a and the branch air pipe b are respectively communicated with, the gas mixing branch pipe a and the gas mixing branch pipe b are internally provided with rotating blades a, the rotating blades a are positioned in front of the gas outlet pipe a and the gas outlet pipe b, and the gas mixing main pipe is internally provided with rotating blades b
In one embodiment, the burner of the energy-saving stove comprises a stove body, a central fire cavity, outer ring fire cavities and fire covers, wherein the outer ring fire cavities are uniformly arranged on the stove body around the central fire cavity, the number of the outer ring fire cavities is four or more, the outer ring fire cavities are communicated with one another through arc-shaped air ducts, the central fire cavity is communicated with the outer ring fire cavities through linear air ducts, a wedged hole is formed in the stove body, a wedged column is arranged at the bottom of the fire cover, the fire covers are mutually wedged and arranged on the stove body through the wedged column and the wedged hole, a fire outlet is formed in each fire cover and located above the central fire cavity, the outer ring fire cavities, the arc-shaped air ducts and the linear air ducts, an igniter is arranged on each fire cover, and the igniter is located above the central fire cavity.
In one embodiment, the outer ring fire cavity of the energy-saving stove is communicated with an auxiliary gas pipeline, the outer end of the auxiliary gas pipeline is communicated with an auxiliary gas main pipe, the auxiliary gas main pipe is annularly provided with a stove body, the auxiliary gas main pipe is communicated with an air inlet pipe, and a V-shaped pipe a is arranged in the communication way.
In one embodiment, V-shaped pipes b are arranged at the positions where the air outlet pipe a of the energy-saving stove is communicated with the air branch pipe a and the air outlet pipe b is communicated with the air branch pipe b.
In one embodiment, heat insulation porcelain is arranged between the stove body and the stove body of the energy-saving stove.
In one embodiment, the gas pipe of the energy-saving stove is provided with a control valve.
In one embodiment, a pot frame is arranged on a stove body at a stove head of the energy-saving stove.
The utility model has the advantages and beneficial effect:
the gas mixing main pipe, the gas mixing straight pipe a and the gas mixing straight pipe b arranged in the gas mixing chamber of the energy-saving stove can fully mix air and gas, so that the gas is fully combusted, the waste of the gas is reduced, and the gas stove is more energy-saving compared with the traditional gas stove.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
FIG. 2 is a schematic structural view of a part of the present invention
Fig. 3 is a top view of the furnace end of the present invention.
Fig. 4 is a top view of the range body of the present invention.
Fig. 5 is a bottom view of the fire cover of the present invention.
Description of the figures:
1. the stove comprises a stove body, 2, a stove head, 3, a gas mixing chamber, 4, a gas mixing main pipe, 5, gas mixing branch pipes a, 6, gas mixing branch pipes b, 7, an air main pipe, 8, air branch pipes a, 9, air branch pipes b, 10, a gas pipe, 11, gas outlet pipes a, 12, gas outlet pipes b, 13, gas outlet small holes, 14, rotary vanes a, 15, rotary vanes b, 19, wedge holes, 17, a central fire cavity, 18, an outer ring fire cavity, 19, wedge holes, 20, a fire cover, 21, wedge columns, 22, an arc-shaped air channel, 23, a linear air channel, 24, a fire outlet hole, 25, an igniter, 26, an auxiliary gas pipeline, 27, an auxiliary gas main pipe, 28, an air inlet pipe, 29, a V-shaped pipe a, 30, a V-shaped pipe b, 31, heat insulation porcelain, 32, a control valve, 33 and a pot frame.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "disposed" or "connected" to another element, it can be directly disposed or connected to the other element or intervening elements may also be present.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description presented herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
Specifically, as shown in fig. 1 and fig. 2, an energy saving stove comprises a stove body 1 and a stove head 2, wherein the stove head 2 is arranged on the stove body 1 in a wedged manner, a gas mixing chamber 3 is arranged in the stove body 1, a gas mixing main pipe 4, a gas mixing branch pipe a5, a gas mixing branch pipe b6, an air main pipe 7, an air branch pipe a8, an air branch pipe b9, an air outlet pipe a11 and an air outlet pipe b12 are arranged in the gas mixing chamber 3, one end of the gas mixing branch pipe a5 and one end of the gas mixing branch pipe b6 are communicated with the gas mixing main pipe 4, the other end of the gas mixing main pipe 4 is communicated with a central fire cavity 17 arranged in the center of the stove body 16 of the stove head 2, the air outlet pipe a11 and the air outlet pipe b12 are respectively arranged in the gas mixing branch pipe a5 and the gas mixing branch pipe b6 and are respectively communicated with one end of the air branch pipe a8 and one end of the air branch pipe b9, the other ends of the, the air outlet pipe a11 and the air outlet pipe b12 are provided with small air outlet holes 13 in a penetrating manner, the air mixing branch pipe a5 and the air mixing branch pipe b6 are both internally provided with rotary blades a14, the rotary blades a14 are positioned in front of the air outlet pipe a11 and the air outlet pipe b12, and the air mixing main pipe 4 is internally provided with rotary blades b 15. The gas is divided into two and gets into gas mixing branch pipe a and gas mixing branch pipe b and air mixing, and the volume of mixing is less relatively when consequently mixing, is favorable to the misce bene more, mixes the gas in gas mixing main pipe can gas mixing branch pipe a and the gas mixing branch pipe b again, consequently mixes more evenly, and is provided with the aperture of giving vent to anger on outlet duct a and the outlet duct b, and the aperture dispersion blowout can be followed to the air, consequently more adds to have the benefit to mix with the gas.
Specifically, as shown in fig. 3, 4 and 5, the furnace end 2 includes a furnace body 16, a central fire cavity 17, outer ring fire cavities 18 and fire covers 20, the outer ring fire cavities 18 are uniformly arranged on the furnace body 16 around the central fire cavity 17, the number of the outer ring fire cavities 18 is four or more, the outer ring fire cavities 18 are communicated with each other through arc-shaped air ducts 22, the central fire cavity 17 is communicated with the outer ring fire cavities through linear air ducts 23, the furnace body 16 is provided with wedge holes 19, the bottom of the fire cover 20 is provided with wedge posts 21, the fire covers 20 are arranged on the furnace body 16 through wedge posts 21 and wedge holes 19, the fire outlets 20 are provided with fire outlets 24, the fire outlets 24 are located above the central fire cavity 17, the outer ring fire cavity 18, the arc-shaped air ducts 22 and the linear air ducts 23, the fire covers 20 are provided with igniters 25, and the igniters 25 are located above the central fire cavity 17, because the outer ring fire cavities are uniformly arranged on the furnace body around the central fire cavity, the outer ring fire cavities are communicated with each other through the arc-shaped air ducts, and the central fire cavity is communicated with the outer ring fire cavities through the linear air ducts, and the fire outlet is positioned above the central fire cavity, the outer ring fire cavity, the arc-shaped air duct and the linear air duct, after the igniter is started to ignite, the flame can be firstly ignited at the fire outlet on the central fire cavity, and then gradually ignited at the fire outlet on the linear type air duct, the fire outlet on the outer ring fire cavity and the fire outlet on the arc type air duct, it can be seen that the gas of the energy-saving stove is not ignited at once but ignited gradually, so the phenomenon of deflagration of the traditional gas stove can not occur, and the energy-saving cooking range is provided with an outer ring fire cavity which is uniformly arranged around the central combustion cavity, therefore, the flame generated by the energy-saving stove is not concentrated at one position like the traditional energy-saving stove but is uniformly distributed at the bottom of the pot.
Specifically, as shown in fig. 3 and 4, the outer ring fire cavity 18 is communicated with an auxiliary gas pipeline 26, an outer end of the auxiliary gas pipeline 26 is communicated with an auxiliary gas main pipe 27, the auxiliary gas main pipe 27 is annularly provided with the furnace body 16, the auxiliary gas main pipe 27 is communicated with an air inlet pipe 28, a V-shaped pipe a29 is arranged at the communication position, and the V-shaped pipe a is used for increasing the pressure and the flow rate of air entering the auxiliary gas main pipe when the air is pressurized.
Specifically, as shown in fig. 1 and fig. 2, V-shaped tubes b30 are arranged at the positions where the air outlet tube a11 is communicated with the air branch tube a8 and the air outlet tube b12 is communicated with the air branch tube b9, and the V-shaped tubes b are used for pressurizing to increase the pressure of air entering the air outlet tube a and the air outlet tube b, so that the air can be sprayed out from the small air outlet holes.
Specifically, as shown in fig. 1, a heat insulation porcelain 31 is disposed between the furnace body 16 and the range body 1, and the heat insulation porcelain can prevent heat from flowing away from the range body.
Specifically, as shown in fig. 1, the gas pipe 10 is provided with a control valve 32 for controlling the amount of gas entering and exiting.
Specifically, as shown in fig. 1, a pot frame 33 is arranged on the stove body 1 around the stove head 2, and the pot frame is used for placing a cooker.
The utility model discloses the working process:
the control valve is opened to connect with the gas pipe, the gas enters the gas mixing branch pipe a and the gas mixing branch pipe b after passing through the gas pipe, the air enters the air branch pipe a and the air branch pipe b after passing through the air main pipe, the air is sprayed out from the small holes on the air outlet pipe a and the air outlet pipe b to be mixed with the gas, the gas and the air flow to the rotary blade a after being mixed, the rotary blade uniformly mixes the gas and the air, the air and the gas enter the gas mixing main pipe after being mixed in the gas mixing branch pipe a and the gas mixing branch pipe b and finally being combined into one, the rotary blade b in the gas mixing main pipe uniformly mixes the air and the gas mixture from the gas mixing branch pipe a and the gas mixing branch pipe b, the air and the gas mixture after being mixed uniformly enters the central fire cavity and then is diffused into the outer fire cavity through the arc-shaped air duct and the straight-shaped line air duct, and finally the igniter is started to ignite the gas, flame is from going out the fire hole blowout, and the air can follow air intake pipe, assist the gas in proper order simultaneously and be responsible for and assist the gas pipeline and enter into the outer loop fire chamber, and the air that supplyes in the outer loop fire chamber prevents that the air is not enough in the outer loop fire chamber and leads to the gas in the outer loop fire chamber to fail the abundant burning.
The embodiments of the present invention are only descriptions of the preferred embodiments of the present invention, not right the present invention is designed and limited, without departing from the design concept of the present invention, the technical personnel in the field should fall into the protection scope of the present invention for various modifications and improvements made by the technical solution of the present invention, and the technical contents of the present invention are all recorded in the claims.

Claims (7)

1. The utility model provides an energy-saving stove, includes the kitchen body (1), furnace end (2), its characterized in that furnace end (2) are carved mutually and are set up on the kitchen body (1), be provided with gas mixing chamber (3) in the kitchen body (1), be provided with in gas mixing chamber (3) and mix gas owner (4), mix gas branch pipe a (5), mix gas branch pipe b (6), air owner (7), air branch pipe a (8), air branch pipe b (9), outlet duct a (11) and outlet duct b (12), mix gas branch pipe a (5) and mix gas branch pipe b (6) one end and mix gas owner (4) and be linked together, the other end is linked together with gas pipe (10), mix gas owner (4) one end and set up at central fire chamber (17) at furnace end (2) furnace body (16) center and be linked together, outlet duct a (11) and outlet duct b (12) set up respectively at mix gas branch pipe a (5), Mix in gas branch pipe b (6), and be linked together with the one end of air branch pipe a (8), air branch pipe b (9) respectively, the other end of air branch pipe a (8), air branch pipe b (9) is responsible for (7) with the air respectively and is linked together, it is provided with air outlet hole (13) to link up on outlet duct a (11) and outlet duct b (12), mix and all be provided with rotor blade a (14) in gas branch pipe a (5), the gas branch pipe b (6) of mixing, just rotor blade a (14) are located the place ahead of outlet duct a (11) and outlet duct b (12), it is provided with rotor blade b (15) to mix and be responsible for (4).
2. The energy-saving stove according to claim 1, characterized in that the stove head (2) comprises a stove body (16), a central fire chamber (17), outer ring fire chambers (18) and fire covers (20), the outer ring fire chambers (18) are uniformly arranged on the stove body (16) around the central fire chamber (17), the number of the outer ring fire chambers is four or more, the outer ring fire chambers (18) are communicated with each other through arc-shaped vent channels (22), the central fire chamber (17) is communicated with the outer ring fire chambers through linear vent channels (23), the stove body (16) is provided with wedge holes (19), the bottom of the fire cover (20) is provided with wedge columns (21), the fire cover (20) is arranged on the stove body (16) through the wedge columns (21) and the wedge holes (19), the fire holes (24) are arranged on the fire cover (20), and the fire holes (24) are located in the central fire chamber (17), The fire cover is characterized in that an igniter (25) is arranged on the fire cover (20), and the igniter (25) is located above the central fire cavity (17) above the outer ring fire cavity (18), the arc-shaped air duct (22) and the linear air duct (23).
3. The energy-saving stove according to claim 2, characterized in that the outer ring fire cavity (18) is communicated with an auxiliary gas pipeline (26), the outer end of the auxiliary gas pipeline (26) is communicated with an auxiliary gas main pipe (27), the auxiliary gas main pipe (27) is arranged around the stove body (16), the auxiliary gas main pipe (27) is communicated with an air inlet pipe (28), and a V-shaped pipe a (29) is arranged at the communication position.
4. The energy-saving stove according to claim 1, characterized in that V-shaped pipes (30) are arranged at the communication part of the air outlet pipe a (11) and the air branch pipe a (8) and the communication part of the air outlet pipe b (12) and the air branch pipe b (9).
5. The energy-saving stove according to claim 1 characterized in that a heat insulation porcelain (31) is arranged between the stove body (16) and the stove body (1).
6. The energy saving range according to claim 1, wherein the gas pipe (10) is provided with a control valve (32).
7. The energy saving stove according to claim 1 characterized in that a pot holder (33) is provided on the body (1) around the burner (2).
CN201920667078.7U 2019-05-10 2019-05-10 Energy-saving stove Active CN210035489U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920667078.7U CN210035489U (en) 2019-05-10 2019-05-10 Energy-saving stove

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920667078.7U CN210035489U (en) 2019-05-10 2019-05-10 Energy-saving stove

Publications (1)

Publication Number Publication Date
CN210035489U true CN210035489U (en) 2020-02-07

Family

ID=69364618

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920667078.7U Active CN210035489U (en) 2019-05-10 2019-05-10 Energy-saving stove

Country Status (1)

Country Link
CN (1) CN210035489U (en)

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