Efficient energy-saving fire distributor
By adopting an innovative design of the shell, flame distribution plate and baffle plate in the flame distributor, the problem of low heating efficiency of existing flame distributors is solved, and the uniform dispersion and complete combustion of combustible gas are achieved, thereby improving heating efficiency and achieving energy-saving effect.
Patent Information
- Application Number
- CN202520287889.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-22
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-02-22
AI Technical Summary
The existing annular flame spreader has low heating efficiency, resulting in slow heating of the heating coil and low efficiency.
It adopts a structural design including a shell, a flame distribution plate and a baffle plate. The flame distribution plate is provided with multiple regular hexagonal prism flame distribution columns and honeycomb distribution. Combined with the baffle plate, it is used for slow and uniform gas dispersion. The shell is provided with an air inlet and a one-way valve to control the gas inflow.
It achieves uniform dispersion and complete combustion of combustible gases, improves heating efficiency, and has energy-saving effects.
Smart Images

Figure CN223895988U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to combustible gas divides fire and burns technical field, concretely relates to a kind of high-efficiency energy-saving fire divider. BACKGROUND
[0002] In the process of using domestic combustible gas, fire divider is needed to be used to disperse combustible gas, so that the heated object can be heated more evenly when combustible gas burns.
[0003] But the structure of the existing fire divider is generally circular, and corresponding air holes are provided on the edge of the circular ring. The combustible gas is injected to the lower side of the heated object through the air holes. However, this circular fire divider can only form multiple heating rings in the form of a ring during use. The heated object is heated by the heating ring, which results in slower heating and lower efficiency of the multiple heating points under the condition of consuming the same volume of combustible gas. UTILITY MODEL CONTENT
[0004] In view of the above situation, in order to overcome the defects of the prior art, the purpose of the utility model is to provide a high-efficiency energy-saving fire divider, which effectively solves the problem of low heating efficiency of the existing heating ring type fire divider.
[0005] The technical solution solved by the utility model is a high-efficiency energy-saving fire divider, which comprises a shell, a fire plate and a blocking plate. One side of the shell is open to accommodate the fire plate and the blocking plate. The fire plate is arranged in the shell to discharge gas. The blocking plate is arranged below the fire plate and is used for slow gas passing.
[0006] The fire plate comprises a plate body, a fire hole and a fire column. The fire column is arranged on one side of the plate body facing the outside of the shell. The fire column is multiple and evenly distributed on the side of the plate body. A fire groove is provided between two adjacent fire columns. The fire hole is provided on the fire groove and the fire column and is in communication with the inside of the shell.
[0007] Preferably, the fire column is in the shape of a regular hexagonal prism, and the multiple fire columns are distributed in a honeycomb shape.
[0008] Preferably, the shell opening is provided with a bearing surface for bearing the fire plate. The shell is provided with a support surface inside the bearing surface and in a stepped distribution with the bearing surface. The blocking plate is mounted on the support surface.
[0009] Preferably, the shell is detachably connected with a blocking ring for shielding the fire plate. The inner side of the blocking ring is threadedly connected with the shell. The upper end of the blocking ring is provided with a shielding plate with an inner diameter smaller than the outer diameter of the fire plate.
[0010] Preferably, the shell outer edge surface is provided with an air inlet hole communicating with the outside, and the air inlet hole is provided with an air inlet one-way valve with an opening facing the inside of the shell.
[0011] Preferably, the shell outer edge surface is provided with an air inlet hole communicating with the outside, and the air inlet hole is provided with an air inlet one-way valve with an opening facing the inside of the shell.
[0012] Preferably, the shell outer edge surface is provided with an air inlet hole communicating with the outside, and the air inlet hole is provided with an air inlet one-way valve with an opening facing the inside of the shell.
[0013] Preferably, the shell outer edge surface is provided with an air inlet hole communicating with the outside, and the air inlet hole is provided with an air inlet one-way valve with an opening facing the inside of the shell.
[0014] The utility model discloses a beneficial effect is:
[0015] The utility model discloses a blocking plate is arranged close to the inside of the shell to realize the slow and uniform emission of combustible gas, and has the advantages of energy saving and high efficiency compared with the direct emission of the existing fire.
[0016] The utility model discloses a plurality of honeycomb distribution fire columns on the fire plate can be more evenly distributed on the side of the fire plate, and the fire groove is arranged between two adjacent fire columns, and the combustible gas can be more evenly dispersed through the fire groove, and the gas dispersion is uniform and the combustion is more sufficient compared with the existing ring fire. DRAWINGS
[0017] Fig. 1 It is the three-dimensional structure schematic diagram of the utility model;
[0018] Fig. 2 It is the cut main view structure schematic diagram of the utility model;
[0019] Fig. 3 It is the cut right view structure schematic diagram of the utility model;
[0020] In the drawing, 1 is the shell;2 is the blocking plate;3 is the plate body;4 is the fire hole;5 is the fire column;6 is the fire groove;7 is the bearing surface;8 is the support surface;9 is the stop ring;10 is the shielding plate;11 is the air inlet hole;12 is the air inlet one-way valve;13 is the frame;14 is the fixed ring;15 is the limiting bayonet;16 is the limiting hole;17 is the clamping hole;18 is the auxiliary hole. DETAILED DESCRIPTION
[0021] The utility model discloses a further detailed description of the specific implementation of the utility model is made below in conjunction with the drawings.
[0022] Refer to the description attached Figs. 1-3 A kind of high-efficiency energy-saving spark producer, including shell 1, spark plate and baffle 2, wherein shell 1 is the hollow cylinder of one side opening, spark plate is set to the opening of shell 1 and the opening of shell 1 is shielded, in order to make the combustible gas in shell 1 can be more evenly from spark plate place, spark plate is equipped with baffle 2 on the inner side of shell 1 opening, baffle 2 uses gas-permeable material, such as polyimide, polyethylene, polytetrafluoroethylene etc. Material is prepared into the film with certain porosity, when combustible gas--mostly natural gas, gush into shell 1 inside, it will be evenly passed through baffle 2, so that the combustible gas evenly from the opening of spark plate is scattered out;
[0023] Since baffle 2 can play certain blocking effect to the combustible gas in shell 1, thus avoid the scattering of excessive combustible gas, play corresponding energy-saving effect.
[0024] Shell 1 outer edge surface is equipped with gas inlet hole 11 that is communicated with outside, gas inlet hole 11 is also equipped with gas inlet check valve 12 with opening towards shell 1 inside, combustible gas enters shell 1 through gas inlet hole 11, can keep the sealing of shell 1 inside under the action of gas inlet check valve 12, while gas inlet check valve 12 can ensure that gas can only enter shell 1 inside one-way along gas inlet hole 11.
[0025] Shell 1 outer edge surface is equipped with gas inlet fixed frame corresponding to gas inlet hole 11 on the outer side of gas inlet hole 11, and the end of the gas inlet pipe for outputting combustible gas is fixed through the gas inlet fixed frame, wherein the gas inlet fixed frame includes a frame body 13 and a fixed ring 14, the frame body 13 is directly fixedly connected with the outer edge surface of the shell 1, and the fixed ring 14 is threadedly connected with the frame body 13 to limit and fix the gas inlet pipe.
[0026] A plurality of limiting sockets 15 are uniformly distributed along the center of the fixed ring 14, and a limiting plate is arranged on the gas inlet pipe and inserted into the limiting socket 15, so that the limiting plate and the gas inlet pipe are hingedly connected to achieve the purpose of being inserted into the limiting socket 15 and being limited.
[0027] A limiting hole 16 with a diameter larger than the gas inlet hole 11 is formed in the fixed ring 14, the gas inlet pipe is inserted into the gas inlet hole 11 through the limiting hole 16, and the end of the gas inlet pipe inserted into the gas inlet hole 11 is conical to be more convenient to insert into the gas inlet hole 11.
[0028] The frame body 13 is further provided with a clamping hole 17, and the fixing ring 14 is provided with an auxiliary hole 18 corresponding to the clamping hole 17.
[0029] The fire plate further comprises a plate body 3, a fire hole 4 and a fire column 5, the plate body 3 is installed at the opening of the shell 1 and is used for shielding the opening of the shell 1, the fire column 5 is provided on the side of the plate body 3 away from the opening of the shell 1, a fire groove 6 is provided between two adjacent fire columns 5, and the fire hole 4 is provided on the fire groove 6 and the fire column 5, and the natural gas is dispersed to the outside through the fire hole 4, since the fire column 5 is higher than the fire groove 6 and the area of the fire column 5 is larger than that of the fire groove 6, more fire holes 4 are provided on the fire column 5, and the height advantage of the fire column 5 can make the flame closer to the object to be heated, so that the object to be heated can be heated more efficiently than the ordinary fire device.
[0030] The fire column 5 is in the shape of a regular hexagonal prism, and a plurality of fire columns 5 are distributed in a honeycomb shape, the regular hexagonal prism and the honeycomb shape are matched with each other, and the regular hexagonal prism can form a more dense honeycomb shape, so that the object to be heated can be heated more efficiently.
[0031] The opening of the shell 1 is provided with a bearing surface 7 for bearing the fire plate, and the shell 1 is also provided with a support surface 8 in a stepped distribution with the bearing surface 7, the support surface 8 is used for supporting the blocking plate 2, the bearing surface 7 is used for supporting the fire plate, and the two surfaces in a stepped distribution can be used to increase the sealing performance of the opening of the shell 1.
[0032] In order to dismount and install the fire plate and the blocking plate 2, the shell 1 is further provided with a blocking ring 9 threadedly connected to the outer edge surface of the shell 1, the blocking ring 9 is provided with a shielding plate 10 which is contracted to the opening of the shell 1, the shielding plate 10 is gradually close to the end surface of the fire column 5 through the thread connection between the blocking ring 9 and the shell 1, and the diameter of the shielding plate 10 is smaller than the outer diameter of the fire plate, so that the fire plate is pressed and limited by the shielding plate 10.
[0033] When the utility model is used, the staff first places the blocking plate 2 in the shell 1, the support surface 8 in the shell 1 limits and supports the blocking plate 2, then the fire plate is placed on the bearing surface 7 of the shell 1, the fire plate is supported by the bearing surface 7, the fire column 5 on the fire plate is located away from the shell 1, when the fire plate is installed, the shielding plate 10 on the blocking ring 9 is pressed to the edge of the fire plate through the thread connection between the blocking ring 9 and the shell 1, so that the fire plate is fixed in the shell 1.
[0034] The other end of the shell 1 is clamped with the limiting card hole 15 through the limiting plate on the gas inlet pipe, and the end of the gas inlet pipe is inserted into the limiting hole 16 and the inlet hole 11 in turn, and the switch of the gas inlet pipe is opened under the action of the inlet one-way valve 12, so that the combustible gas enters the shell 1 through the inlet hole 11, and when the switch of the gas inlet pipe is closed, the combustible gas in the shell 1 cannot overflow from the inlet hole 11 due to the one-way action of the inlet one-way valve 12.
[0035] The present application has the advantages of energy saving and high efficiency by setting the blocking plate 2 close to the inner side of the shell 1 to realize the slow and uniform dispersion of the combustible gas.
[0036] The combustible gas can be more uniformly distributed on the side of the fire plate through the plurality of honeycomb-shaped fire distribution columns 5 on the fire plate, and the fire distribution grooves 6 are arranged between two adjacent fire distribution columns 5, so that the combustible gas can be more uniformly dispersed, and the present application has the advantages of uniform gas dispersion and more sufficient combustion compared with the existing ring-shaped fire distributor.
Claims
1. A high-efficiency and energy-saving flame distributor, characterized in that, It includes a housing (1), a flame spreader and a baffle plate (2). One side opening of the housing (1) is used to accommodate the flame spreader and the baffle plate (2). The flame spreader is disposed inside the housing (1) for gas to escape. The baffle plate (2) is disposed below the flame spreader and for gas to pass through slowly. The fire distribution plate includes a plate body (3), fire distribution holes (4), and fire distribution columns (5). The fire distribution columns (5) are disposed on the side of the plate body (3) facing the outside of the shell (1). There are multiple fire distribution columns (5) and they are evenly distributed on the side of the plate body (3). A fire distribution groove (6) is provided between two adjacent fire distribution columns (5). The fire distribution holes (4) are opened on the fire distribution grooves (6) and the fire distribution columns (5) and communicate with the inside of the shell (1).
2. The high-efficiency energy-saving flame distributor according to claim 1, characterized in that: The fire-dividing columns (5) are in the shape of regular hexagonal prisms, and the multiple fire-dividing columns (5) are distributed in a honeycomb pattern.
3. The high-efficiency energy-saving flame distributor according to claim 2, characterized in that: The housing (1) has a bearing surface (7) for supporting the fire distribution plate at the opening. The housing (1) has a support surface (8) located inside the bearing surface (7) and distributed in a stepped manner with the bearing surface (7). The baffle plate (2) is installed on the support surface (8).
4. The high-efficiency energy-saving flame distributor according to claim 1, characterized in that: A retaining ring (9) for shielding the fire distribution plate is detachably connected to the housing (1). The inner side of the retaining ring (9) is threadedly connected to the housing (1). The upper end of the retaining ring (9) is provided with a shielding plate (10) with an inner diameter smaller than the outer diameter of the fire distribution plate.
5. The high-efficiency energy-saving flame distributor according to claim 4, characterized in that: An air inlet (11) communicating with the outside is provided on the outer edge of the housing (1), and an air inlet one-way valve (12) with its opening facing the inside of the housing (1) is provided in the air inlet (11).
6. The high-efficiency energy-saving flame distributor according to claim 5, characterized in that: The outer edge of the housing (1) is provided with an air intake fixing frame corresponding to the air intake hole (11). The air intake fixing frame is used to fix the gas intake pipe. The air intake fixing frame includes a frame body (13) and a fixing ring (14). The frame body (13) is fixedly connected to the housing (1), and the fixing ring (14) is threadedly connected to the frame body (13) for limiting the gas intake pipe.
7. The high-efficiency energy-saving flame distributor according to claim 6, characterized in that: The fixing ring (14) has multiple limiting slots (15) evenly distributed along its center. The gas inlet pipe has a limiting plate that can be inserted into the limiting slots (15). The fixing ring (14) has a limiting hole (16) with a diameter larger than the inlet hole (11). The gas inlet pipe is inserted into the inlet hole (11) through the limiting hole (16).
8. A high-efficiency energy-saving flame distributor according to claim 6, characterized in that: The frame (13) has a locking hole (17), and the fixing ring (14) has an auxiliary hole (18) corresponding to the locking hole (17). The auxiliary hole (18) and the locking hole (17) are used to limit and fix the frame (13) and the fixing ring (14).