Novel fuel stove core

By incorporating multiple vaporization chambers and specific component combinations within the burner core of the fuel-fired stove, the problem of achieving high-temperature, high-fire combustion in fuel-fired stoves has been solved, resulting in improved combustion efficiency and energy-saving and emission-reduction effects.

CN223726425UActive Publication Date: 2025-12-26SHANDONG YUANJUYUAN ENVIRONMENTAL PROTECTION & ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202520170690.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-25
Publication Date
2025-12-26
Estimated Expiration
2035-01-25

AI Technical Summary

Technical Problem

Existing fuel-fired stove cores are difficult to achieve rapid combustion at high temperatures in commercial restaurants, and there are problems with oil dripping and gum formation.

Method used

A novel fuel-fired stove core has been designed, comprising multiple vaporization chambers. Through the combination of components such as a concentrator, a baffle plate, a baffle ring, an oil pan, a vaporization bowl, an energy-saving core, and a flame suppressor, the fuel is vaporized multiple times within the stove core, enhancing combustion efficiency and stability.

Benefits of technology

It achieves efficient combustion of fuel stoves under both high and low flame conditions, reduces noise, extends service life, saves energy, reduces pollution, and is suitable for multi-functional use in commercial restaurants.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel fuel oil stove core, and relates to the field of stove cores, in particular to a novel fuel oil stove core which comprises an air gathering bowl, an air correcting ring, an air correcting disc, an air oil disc, a fire gathering ring, a gasification bowl, an energy-saving core and a fire banking cap. Wherein a combustion chamber of the novel fuel oil stove core is divided into three relatively independent gasification spaces, namely a primary gasification chamber, a secondary gasification chamber and a tertiary gasification chamber by the air oil disc, the gasification bowl, the energy-saving core and the banking-up cap, so that fuel oil is heated, pressurized and gasified for multiple times in the combustion chamber of the fuel oil stove, and the fuel oil in the fuel oil stove can be quickly and sufficiently combusted; therefore, the fuel oil stove is sufficient in combustion and free of oil dripping when used for cooking soup, the fuel oil stove can be rapidly heated when used for cooking dishes with big fire, fuel oil is sufficient in combustion and free of oil dripping, and the effects of multifunctional use, energy conservation and emission reduction are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model discloses a novel fuel stove core, and particularly relates to the field of stove core. BACKGROUND

[0002] In daily life, fuel stove, natural gas stove and gas stove are widely used, wherein the stove core is the key part of various fuel stoves and gas stoves, especially the fuel stove, which has the characteristics of high burning temperature and low use cost, so the fuel stove is widely used in commercial restaurants, but because the fuel has the characteristic of high ignition point, in the prior art, in order to realize the full combustion of fuel in the stove core and to avoid oil dripping and glue forming, the method of reducing the oil amount in the stove core of the fuel stove and increasing the pressure in the stove core of the fuel stove is adopted, so that the firepower of the fuel stove is reduced, and the high temperature and rapid large fire required when cooking in commercial restaurants cannot be met. CONTENT OF THE UTILITY MODEL

[0003] The utility model mainly solves the technical problem that a novel fuel stove core is provided, a plurality of gasification chambers are arranged in the novel fuel stove core, fuel entering the fuel stove core can be circularly heated and gasified in the plurality of gasification chambers, the passage of fuel in the fuel stove core is increased, the fuel in the fuel stove core can complete the process of rapid gasification, the fuel in the fuel stove can be rapidly and fully combusted, the fuel stove can achieve cold stove small fire without oil dripping, large fire with strong firepower without oil spraying, the firepower of the fuel stove is increased, the high temperature and rapid large fire required when cooking in commercial restaurants are met, the effects of multifunctional use and energy saving and emission reduction are achieved, and the purpose of being applicable to different use scenes can also be achieved.

[0004] To achieve the above object, the utility model provides following technical scheme: the novel fuel stove core includes: wind gathering bowl, wind rectifying disc, wind rectifying ring, wind oil disc, gasification bowl, energy saving core, fire pressure cap and fire gathering shunt ring, is equipped with air inlet, oil return hole and fixed groove 1 on wind gathering bowl, is installed on wind gathering bowl to oil nozzle, primary ignition needle and secondary ignition needle, wind rectifying disc is the disc structure of inverted buckle, is installed on oil nozzle, is fixed through nut, the disc structure of inverted buckle carries out pressure and wind direction correction to the wind that air inlet enters wind gathering bowl, increases the wind speed when air inlet enters wind gathering bowl, simultaneously facilitates the oil drop that cold stove ignition produces to flow into wind gathering bowl along the wind shield disc, wind rectifying ring is placed on fixed groove 1, is equipped with wind page and positioning tooth on wind rectifying ring, positioning tooth is clamped on primary ignition needle, avoids wind rectifying ring rotation, wind oil disc is placed on wind gathering bowl, is equipped with fixed tooth 1, drainage groove 1, wind oil hole 1 and wind eye 1 on wind oil disc, wind oil hole 1 is arranged at the center position of wind oil disc, is opposite oil nozzle, gasification bowl is placed on wind oil disc, and the gasification bowl is bowl structure, is equipped with fire eye 1, gasification groove, positioning groove and wind oil hole 2 on the gasification bowl, fire eye 1 is evenly distributed on the lateral wall of gasification bowl, gasification groove is arranged at the bottom of gasification bowl, positioning groove is buckled on fixed tooth 1, avoids the gasification bowl to rotate on wind oil disc, causes the situation that fixed tooth 1 blocks gasification groove, wind oil hole 2 is arranged at the center position of gasification bowl, is opposite oil nozzle, energy saving core is placed on the gasification bowl, is equipped with fire eye 2, backflow hole, fixed tooth 2 and wind oil hole 3 on the energy saving core, fire eye 2 is arranged at the lateral wall of energy saving core, and is evenly distributed on the lateral wall of energy saving core, backflow hole is arranged at the bottom of energy saving core, and is evenly distributed on the bottom of energy saving core, fixed tooth 2 is arranged at the lateral wall of energy saving core, wind oil hole 3 is arranged at the center position of energy saving core, is opposite oil nozzle, fire pressure cap is placed on the energy saving core, and carries out pressure to fuel stove core, is equipped with drainage groove 2 on fire pressure cap, and drainage groove 2 can guide the fuel that has been gasified in the middle of fuel stove core to fire pressure cap, and fire gathering shunt ring is placed on wind oil disc, and is sleeved on the outside of gasification bowl, energy saving core and fire pressure cap, is equipped with drainage groove 3, fixed groove 2 and wind eye 2 on the fire gathering shunt ring, drainage groove 3 is evenly distributed on the inner wall of fire gathering shunt ring, and the direction of the flame that is emitted by fire eye 1 and fire eye 2 is corrected, fixed groove 2 is opposite fixed tooth 2, and the energy saving core is fixed, avoids the energy saving core to rotate, makes wind eye 2 opposite fire eye 2, and the wind that is emitted by wind eye 2 is convenient for the flame that is emitted by fire eye 2 to assist oxygen and combustion, simultaneously corrects the direction of the flame, avoids the flame to directly burn fire gathering shunt ring, reduces the noise when burning, increases the service life of fire gathering shunt ring, wherein wind oil disc and gasification bowl constitute primary gasification chamber, and the gasification bowl and energy saving core constitute secondary gasification chamber, and the energy saving core and fire pressure cap constitute tertiary gasification chamber, and the triple gasification chamber gasifies fuel multiple times, so that fuel can be fully gasified in fuel stove core, reaches the effect that fuel is fully combusted.

[0005] Preferably, the bottom of the wind gathering bowl has a slope, which is higher near the center, so that the oil drops generated during cold stove ignition can be prevented from flowing out of the fuel stove from the air inlet.

[0006] Preferably, the oil return hole is arranged at the lower part of the bottom of the wind collecting bowl 1, and the oil return hole is connected to the oil storage tank through an oil return pipe, so that the oil drops generated during the cold ignition of the fuel stove can flow back into the oil storage tank for reuse, avoiding the accumulation of fuel in the fuel stove core.

[0007] Preferably, the wind correcting ring is provided with three wind leaves, and the width of the wind leaves is the same as the width of the primary ignition needle. The three wind leaves and the protruding part of the primary ignition needle jointly correct the wind entering the wind collecting bowl, so that the wind in the wind collecting bowl is stable and uniform.

[0008] Preferably, the gasification groove is staggered with the fixed teeth ① around the bottom edge of the gasification bowl, so that the fuel is dispersed when passing through the gasification groove, increasing the gasification degree of the fuel, and at the same time, adjusting the pressure in the primary gasification chamber.

[0009] Preferably, the wind oil hole ③ extends into the gasification bowl, so that most of the fuel can smoothly enter the three-stage gasification chamber composed of the fire cap and the energy-saving core.

[0010] Preferably, the angle of the fire eye ① is perpendicular to the upper side wall of the gasification bowl, avoiding direct burning of the components in the fuel stove core, reducing the noise in the fuel stove core, and increasing the service life of the fuel stove.

[0011] Preferably, the total ventilation area of the backflow hole is greater than the total ventilation area of the fire eye ②, which can effectively adjust the pressure in the three-stage gasification chamber.

[0012] Preferably, the wind oil disc and the wind collecting bowl are connected with a gap, the wind enters the gap between the wind oil disc and the wind collecting bowl through the fire eye ①, and then is sprayed out through the fire eye ②, so that the airflow sprayed out of the fire eye ② is more stable.

[0013] In specific implementation, when cooking with large fire, the fuel oil is ignited by the primary ignition needle, and the ignited fuel oil enters the fuel stove core to preheat the fuel stove core, and then the secondary ignition needle is opened to ignite at the fire outlet hole ②. At this time, the fuel stove core is in a high-temperature and high-pressure state, so there is no open flame in the fuel stove core. The wind enters the wind collecting bowl through the air inlet, and the fuel oil is sprayed from the oil nozzle. Under the joint action of the wind correcting disc and the wind correcting ring, the wind and the fuel oil mixed in the wind collecting bowl are forced into the wind oil disc. Part of the fuel oil enters the bottom of the wind collecting bowl and enters the oil storage tank through the oil return hole. The wind and the fuel oil rotate into the primary gasification chamber through the wind oil hole ① under the action of the drainage groove ①. In the primary gasification chamber, the fuel oil is heated, pressurized, and fully mixed with the wind to increase the residence time of the fuel oil in the primary gasification chamber. Part of the fuel oil is dispersed into the gap between the wind oil disc and the gasification bowl through the gasification groove. Most of the fuel oil enters the secondary gasification chamber composed of the gasification bowl and the energy-saving core through the wind oil hole ②, and continues to be heated, pressurized, and gasified. Part of the fully gasified fuel oil is sprayed from the fire eye ① and ignited, and the wind oil disc, the gasification bowl, and the energy-saving core are continuously heated to maintain the temperature in the fuel stove core. The fuel oil sprayed from the gasification groove is heated, gasified, and ignited. Most of the fuel oil enters the tertiary gasification chamber composed of the energy-saving core and the fire cap through the wind oil hole ③. The fire cap pressurizes the fuel oil in the secondary gasification chamber and the tertiary gasification chamber. The fuel oil in the tertiary gasification chamber flows around the fire cap under the action of the pressure and the drainage groove ②, is dispersed and gasified again through the backflow hole, and enters the secondary gasification chamber. Part of the fully gasified fuel oil is sprayed from the fire eye ② and ignited, and the energy-saving core and the fire cap are continuously heated to maintain the temperature in the fuel stove core. The wind sprayed from the fire eye ② again assists the combustion of the flame sprayed from the fire eye ②, and the flame direction is corrected together with the flame collecting and dividing ring. Because the wind oil hole ①, the wind oil hole ②, and the wind oil hole ③ are directly opposite the oil nozzle, the flow rate of the fuel oil between the wind oil hole ①, the wind oil hole ②, and the wind oil hole ③ is relatively large, which forms a micro-low pressure state at the center of the fuel stove core, enabling the fuel oil to circulate and heat in the secondary gasification chamber and the tertiary gasification chamber, and then the fully gasified fuel oil is sprayed from the fire eye ① and the fire eye ② to burn.

[0014] When using small fire, the fuel oil sprayed from the oil nozzle can directly pass through the wind oil hole ①, the wind oil hole ②, and the wind oil hole ③ into the tertiary gasification chamber, so that the pressure in the tertiary gasification chamber rapidly increases, achieving the effect of rapidly increasing the pressure and gasifying the fuel oil in the tertiary gasification chamber when using small fire.

[0015] The beneficial effects of the above technical scheme are that: the multiple gasification chambers are arranged, the fuel stove core has faster pressure rise, faster temperature rise, slower heat energy loss, the internal pressure is more stable, the gasification is more sufficient, the combustion is more energy-saving and the noise during combustion is smaller, the fuel is fully gasified, the fuel combustion rate is improved, the energy is saved, the pollution is reduced, the stable pressure in the core avoids the phenomena of smoldering and insufficient combustion of oil, a new fuel stove core can achieve the effects of energy saving and emission reduction whether it is used for frying or stewing, the fuel is gasified in the fuel stove core and is combusted outside the fuel stove core, the internal parts of the fuel stove core are effectively protected, the service life of the new fuel stove core is improved, and the cost is saved. BRIEF DESCRIPTION OF DRAWINGS

[0016] The specific implementation of the new fuel stove core will be further described in detail below in combination with the drawings.

[0017] FIG. 1 is a sectional view of the new fuel stove core of the present application; Figure 1 FIG. 2 is a sectional view of the new fuel stove core of the present application;

[0018] FIG. 3 is a sectional view of the new fuel stove core of the present application; Figure 2 FIG. 4 is a sectional view of the new fuel stove core of the present application;

[0019] FIG. 5 is a sectional view of the new fuel stove core of the present application; Figure 3 FIG. 6 is a sectional view of the new fuel stove core of the present application;

[0020] FIG. 7 is a sectional view of the new fuel stove core of the present application; Figure 4 FIG. 8 is a sectional view of the new fuel stove core of the present application;

[0021] FIG. 9 is a sectional view of the new fuel stove core of the present application; Figure 5 FIG. 10 is a sectional view of the new fuel stove core of the present application;

[0022] FIG. 11 is a sectional view of the new fuel stove core of the present application; Figure 6 FIG. 12 is a sectional view of the new fuel stove core of the present application;

[0023] FIG. 13 is a sectional view of the new fuel stove core of the present application; Figure 7 FIG. 14 is a sectional view of the new fuel stove core of the present application;

[0024] FIG. 15 is a sectional view of the new fuel stove core of the present application; Figure 8 FIG. 16 is a sectional view of the new fuel stove core of the present application;

[0025] FIG. 17 is a sectional view of the new fuel stove core of the present application; Figure 9 FIG. 18 is a sectional view of the new fuel stove core of the present application;

[0026] Wherein: 1, wind bowl, 101, air inlet, 102, oil return hole, 103, fixed groove ①, 104, oil nozzle, 105, primary ignition needle, 106, secondary ignition needle, 2, wind correction disc, 3, wind correction ring, 301, positioning tooth, 302, wind page, 4, wind oil disc, 401, fixed tooth ①, 402, drainage groove ①, 403, wind oil hole ①, 404, wind eye ①, 5, gasification bowl, 501, fire eye ①, 502, gasification groove, 503, positioning groove, 504, wind oil hole ②, 6, energy-saving core, 601, fire eye ②, 602, backflow hole, 603, fixed tooth ②, 604, wind oil hole ③, 7, fire suppression cap, 701, drainage groove ②, 8, fire gathering and shunting ring, 801, drainage groove ③, 802, fixed groove ②, 803, wind eye ②, 9, primary gasification chamber, 10, secondary gasification chamber, 11, tertiary gasification chamber. DETAILED DESCRIPTION

[0027] The preferred embodiment of the novel fuel stove core of the utility model is described in detail below in combination with the drawings.

[0028] ATTACHMENT Figures 1-9The utility model discloses a novel fuel stove core's specific implementation mode: the novel fuel stove core includes: wind bowl 1, rectification wind disc 2, rectification wind ring 3, wind oil tray 4, gasification bowl 5, energy saving core 6, fire pressure cap 7 and gather fire shunt ring 8, be equipped with air inlet 101, oil return hole 102 and fixed groove 103 on wind bowl 1, spray nozzle 104, primary ignition needle 105 and secondary ignition needle 106 are installed on wind bowl 1, rectification wind disc 2 is the inverted disc structure, is installed on spray nozzle 104, is fixed through nut, and the inverted disc structure carries out pressure and wind direction correction to the wind that enters wind bowl 1 of air inlet 101, increases the wind speed when air inlet 101 enters wind bowl 1, simultaneously, the oil drop produced when cold stove ignition is easy along the wind shield disc and flows into wind bowl 1, rectification wind ring 3 is placed on fixed groove 103, is equipped with wind page 302 and positioning tooth 301 on rectification wind ring 3, positioning tooth 301 is clamped on primary ignition needle 105, avoids rectification wind ring 3 rotation, wind oil tray 4 is placed on wind bowl 1, is equipped with fixed tooth 401, drainage groove 402, wind oil hole 403 and wind eye 404 on wind oil tray 4, wind oil hole 403 is arranged at the center position of wind oil tray 4, and opposite spray nozzle 104, gasification bowl 5 is placed on wind oil tray 4, and gasification bowl 5 is bowl structure, is equipped with fire eye 501, gasification groove 502, positioning groove 503 and wind oil hole 504 on gasification bowl 5, fire eye 501 evenly distributes on the lateral wall of gasification bowl 5, gasification groove 502 is arranged at the bottom of gasification bowl 5, positioning groove 503 is buckled on fixed tooth 401, avoids gasification bowl 5 rotation on wind oil tray 4, causes fixed tooth 401 to appear the condition of gasification groove 502 being blocked, wind oil hole 504 is arranged at the center position of gasification bowl 5, and opposite spray nozzle 104, energy saving core 6 is placed on gasification bowl 5, is equipped with fire eye 601, backflow hole 602, fixed tooth 603 and wind oil hole 604 on energy saving core 6, fire eye 601 is arranged at the lateral wall of energy saving core 6, and evenly distributes on the lateral wall of energy saving core 6, backflow hole 602 is arranged at the bottom of energy saving core 6, and evenly distributes on the bottom of energy saving core 6, fixed tooth 603 is arranged at the lateral wall of energy saving core 6, wind oil hole 604 is arranged at the center position of energy saving core 6, and opposite spray nozzle 104, fire pressure cap 7 is placed on energy saving core 6, carries out pressure to fuel stove core, is equipped with drainage groove 701 on fire pressure cap 7, and drainage groove 701 can guide the fuel that has been gasified in the middle of fuel stove core to fire pressure cap 7, gather fire shunt ring 8 is placed on wind oil tray 4, and is sleeved in gasification bowl 5, energy saving core 6 and fire pressure cap 7 outside, is equipped with drainage groove 801, fixed groove 802 and wind eye 803 on gather fire shunt ring 8, drainage groove 801 evenly distributes on the inner wall of gather fire shunt ring 8, and the direction of the flame that rectification fire eye 501 and fire eye 601 sprays is corrected, fixed groove 802 is opposite fixed tooth 603, and energy saving core 6 is fixed, avoids energy saving core 6 rotation, makes wind eye 803 opposite fire eye 601, and it is easy for the wind that wind eye 803 sprays to the flame that fire eye 601 sprays and oxygenates combustion, simultaneously, the direction of the flame is corrected,The flame is not directly burned on the gathering fire diversion circle 8, the noise during burning is reduced, and the service life of the gathering fire diversion circle 8 is increased, wherein the wind oil pan 4 and the gasification bowl 5 form a primary gasification chamber 9, the gasification bowl 5 and the energy-saving core 6 form a secondary gasification chamber 10, and the energy-saving core 6 and the fire suppression cap 7 form a tertiary gasification chamber 11.

[0029] Preferably, the bottom of the wind gathering bowl 1 has a slope, and the center is higher, which can prevent oil droplets generated during cold stove ignition from flowing out of the fuel stove through the air inlet 101.

[0030] Preferably, the oil return hole 102 is arranged at the lower part of the bottom of the wind gathering bowl 1, and the oil return hole 102 is connected to the oil storage tank through an oil return pipe, so that the oil droplets generated during cold stove ignition of the fuel stove can flow back into the oil storage tank for reuse, and the accumulation of fuel in the stove core of the fuel stove is avoided.

[0031] Preferably, the wind straightening ring 3 is provided with three wind leaves 302, the width of the wind leaves 302 is the same as the width of the primary ignition needle 105, and the three wind leaves 302 and the protruding part of the primary ignition needle 105 together correct the wind entering the wind gathering bowl 1 through the air inlet 101, so that the wind in the wind gathering bowl is stable and uniform.

[0032] Preferably, the gasification grooves 502 are staggered around the edge of the bottom of the gasification bowl 5 and the fixed teeth 401, so that the fuel passing through the gasification grooves 502 is dispersed, the degree of fuel gasification is increased, and the pressure in the primary gasification chamber 9 is adjusted.

[0033] Preferably, the wind oil hole 304 extends into the gasification bowl 5, so that most of the fuel can smoothly enter the tertiary gasification chamber 11 formed by the fire suppression cap 7 and the energy-saving core 6.

[0034] Preferably, the angle of the fire eye 501 is perpendicular to the upper side wall of the gasification bowl 5, which avoids burning the parts in the stove core of the fuel stove directly, reduces the noise in the stove core of the fuel stove, and increases the service life of the fuel stove.

[0035] Preferably, the total ventilation area of the backflow hole 602 is greater than the total ventilation area of the fire eye 601, which can effectively adjust the pressure in the tertiary gasification chamber 11.

[0036] Preferably, a gap is left at the connection between the wind oil pan 4 and the wind gathering bowl 1, the wind enters the gap through the wind eye 401, and then is sprayed out through the wind eye 802, so that the airflow sprayed out of the wind eye 802 is more stable.

[0037] In actual implementation, when cooking with large fire, the fuel oil is sprayed from the oil nozzle 104 and ignited by the primary ignition needle 105. The ignited fuel oil enters the fuel stove core, preheats the fuel stove core, and then closes. Then the secondary ignition needle 106 is opened and ignited at the fire outlet hole ②. At this time, the fuel stove core is in a high-temperature and high-pressure state, so there is no open flame in the fuel stove core. The wind enters the wind collecting bowl 1 from the air inlet 101. At the same time, the oil nozzle 104 sprays fuel oil, which, under the joint action of the wind correcting disc 2 and the wind correcting ring 3, mixes with the wind entering the wind collecting bowl 1 and helps the fuel oil enter the wind oil disc 4. Part of the fuel oil enters the bottom of the wind collecting bowl 1 from the oil return hole 102 and enters the oil storage tank. The wind and fuel oil rotate and enter the primary gasification chamber 9 under the action of the flow guide groove ① 402 through the wind oil hole ① 403. In the primary gasification chamber 9, the fuel oil is heated, pressurized, and fully mixed with the wind, increasing the residence time of the fuel oil in the primary gasification chamber 9. Part of the fuel oil is dispersed into the gap between the wind oil disc 4 and the gasification bowl 5 through the gasification groove 502. Most of the fuel oil enters the secondary gasification chamber 10 composed of the gasification bowl 5 and the energy-saving core 6 through the wind oil hole ② 504, continues to be heated, pressurized, and gasified. Part of the fully gasified fuel oil is sprayed from the fire eye ① 501 and ignited, continuously heating the wind oil disc 4, the gasification bowl 5, and the energy-saving core 6, maintaining the temperature in the fuel stove core, and heating, gasifying, and igniting the fuel oil sprayed from the gasification groove 502. Most of the fuel oil enters the tertiary gasification chamber 11 composed of the pressure cap 7 and the energy-saving core 6 through the wind oil hole ③ 604. The pressure cap 7 pressurizes the fuel oil in the secondary gasification chamber 10 and the tertiary gasification chamber 11. The fuel oil in the tertiary gasification chamber 11 flows around the pressure cap 7 under the action of the pressure and the flow guide groove ② 701, is dispersed and gasified again through the backflow hole 602, and enters the secondary gasification chamber 10. Part of the fully gasified fuel oil is sprayed from the fire eye ② 601 and ignited, continuously heating the energy-saving core 6 and the pressure cap 7, maintaining the temperature in the fuel stove core. At the same time, the wind sprayed from the wind eye ② 803 helps the flame from the fire eye ② 601 burn with oxygen, and the flame direction is corrected together with the flame collecting and dividing ring 8. Because the wind oil hole ① 403, the wind oil hole ② 504, and the wind oil hole ③ 604 are all directly opposite the oil nozzle 104, the flow rate of the fuel oil in the middle of the wind oil hole ① 403, the wind oil hole ② 504, and the wind oil hole ③ 604 is relatively high, forming a slightly low pressure at the center of the fuel stove core, which enables the fuel oil to circulate and heat in the secondary gasification chamber 10 and the tertiary gasification chamber 11, and then the fully gasified fuel oil is sprayed from the fire eye ① 501 and the fire eye ② 601 and burned.

[0038] When using small fire, the fuel oil sprayed from the oil nozzle 104 can directly pass through the wind oil hole ① 403, the wind oil hole ② 504, and the wind oil hole ③ 604 and enter the tertiary gasification chamber 11, rapidly increasing the pressure in the tertiary gasification chamber 11, achieving the effect of rapidly increasing the pressure and gasifying the fuel oil in the tertiary gasification chamber 11 when using small fire.

[0039] Obviously, the above merely describes some embodiments of the present utility model, and is not intended to limit the present utility model, and for those skilled in the art, the present utility model can have combinations and variations of the foregoing various technical features, and those skilled in the art can improve, vary, or equivalently replace the present utility model without departing from the concept and scope of the present utility model, or use the structure or method of the present utility model in other fields to achieve the same effect, which all belong to the protection scope of the present utility model.

Claims

1. A novel fuel burner burner core characterized in that: The new fuel stove core comprises a wind collecting bowl (1), a wind correcting disc (2), a wind correcting ring (3), a wind and oil disc (4), a gasification bowl (5), an energy saving core (6), a fire suppressing cap (7) and a fire collecting and distributing ring (8), the wind collecting bowl (1) is provided with an air inlet (101), an oil return hole (102) and a fixing groove (103), an oil nozzle (104), a primary ignition needle (105) and a secondary ignition needle (106) are installed on the wind collecting bowl (1), the wind correcting disc (2) is a disc structure with a reverse buckle, the wind correcting disc (2) is installed on the oil nozzle (104) and fixed by a nut, the wind correcting ring (3) is placed on the fixing groove (103), the wind correcting ring (3) is provided with a positioning tooth (301) and a wind vane (302), the positioning tooth (301) is clamped on the primary ignition needle (105), the wind and oil disc (4) is placed on the wind collecting bowl (1), the wind and oil disc (4) is provided with a fixing tooth (401), a drainage groove (402), a wind and oil hole (403) and a wind eye (404), the wind and oil hole (403) is arranged at the center of the wind and oil disc (4) and opposite to the oil nozzle (104), the gasification bowl (5) is placed on the wind and oil disc (4), the gasification bowl (5) is a bowl structure, the gasification bowl (5) is provided with a fire eye (501), a gasification groove (502), a positioning groove (503) and a wind and oil hole (504), the fire eye (501) is uniformly distributed on the side wall of the gasification bowl (5), the gasification groove (502) is arranged at the bottom of the gasification bowl (5), the positioning groove (503) is buckled on the fixing tooth (401), the wind and oil hole (504) is arranged at the center of the gasification bowl (5) and opposite to the oil nozzle (104), the energy saving core (6) is placed on the gasification bowl (5), the energy saving core (6) is provided with a fire eye (601), a return hole (602), a fixing tooth (603) and a wind and oil hole (604), the fire eye (601) is arranged on the side wall of the energy saving core (6) and uniformly distributed on the side wall of the energy saving core (6), the return hole (602) is arranged at the bottom of the energy saving core (6) and uniformly distributed at the bottom of the energy saving core (6), the fixing tooth (603) is arranged on the side wall of the energy saving core (6), the wind and oil hole (604) is arranged at the center of the energy saving core (6) and opposite to the oil nozzle (104), the fire suppressing cap (7) is placed on the energy saving core (6), the fire suppressing cap (7) is provided with a drainage groove (701), the fire collecting and distributing ring (8) is placed on the wind and oil disc (4) and covers the gasification bowl (5), the energy saving core (6) and the fire suppressing cap (7), the fire collecting and distributing ring (8) is provided with a drainage groove (801), a fixing groove (802) and a wind eye (803), the drainage groove (801) is uniformly distributed on the inner wall of the fire collecting and distributing ring (8), the fixing groove (802) is opposite to the fixing tooth (603), the wind eye (803) is opposite to the fire eye (601), the wind and oil disc (4) and the gasification bowl (5) form a primary gasification chamber (9), the gasification bowl (5) and the energy saving core (6) form a secondary gasification chamber (10), and the energy saving core (6) and the fire suppressing cap (7) form a tertiary gasification chamber (11).

2. A novel fuel burner burner core as claimed in claim 1, wherein: The bottom of the wind collecting bowl (1) has a slope and is higher at the center.

3. A novel fuel burner burner core as claimed in claim 1, wherein: The oil return hole (102) is arranged at the lower part of the bottom of the wind gathering bowl (1).

4. A novel fuel burner burner core as claimed in claim 1, wherein: The wind circle (3) is provided with three wind leaves (302), and the width of the wind leaves (302) is the same as that of the primary ignition needle (105).

5. A novel fuel burner burner core as claimed in claim 1, wherein: The gasification groove (502) is distributed alternately with the fixed tooth ① (401) around the bottom edge of the gasification bowl (5).

6. A novel fuel burner burner core as claimed in claim 1, wherein: The oil hole ③ (604) extends into the gasification bowl (5).

7. A novel fuel burner burner core as claimed in claim 1, wherein: The angle of the fire eye ① (501) is perpendicular to the upper side wall of the gasification bowl (5).

8. A novel fuel burner burner core as claimed in claim 1, wherein: The total ventilation area of the backflow hole (602) is greater than that of the fire eye ② (601).

9. A novel fuel burner burner core as claimed in claim 1, wherein: The wind oil disc (4) and the wind gathering bowl (1) are connected with a gap.