Portable gas heating device
By designing a portable gas heating device, combined with a contoured burner, a flameout protection module and an anti-dump switch, the problems of lack of aesthetics and safety of traditional gas heaters are solved, and portability and safety are improved.
Patent Information
- Application Number
- CN202422609483.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-10-29
AI Technical Summary
Traditional desktop gas heaters lack aesthetics and safety, and are not easy to carry.
A portable gas heating device was designed, which includes an air intake manifold, a main burner system, a contoured burner head, a flameout protection module, and an anti-dumping switch. Temperature differences were achieved through the side and top interlayer cavities, and the gas supply was controlled by a temperature sensor and a solenoid valve to prevent accidental flameout and dumping.
It improves the ornamental value and safety of use, is easy to carry, and ensures that the gas device will automatically shut down when it falls over or is accidentally extinguished, thereby reducing risks.
Smart Images

Figure CN223345442U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heating equipment, in particular to a portable gas heating device. Background Art
[0002] Traditional desktop gas heaters or fire bowls cannot achieve the same ornamental effect as real fire fireplaces, their tops and four sides cannot be effectively protected, and the temperature of their handles and outer frames cannot meet the requirements of portable mobile heaters; furthermore, traditional gas heating equipment has safety deficiencies and there are certain risks when using it. Utility Model Content
[0003] The purpose of the utility model is to provide a portable gas heating device to solve the problems existing in the above-mentioned prior art, improve the ornamental value and safety of use, and be easy to carry.
[0004] To achieve the above purpose, the present invention provides the following solutions:
[0005] The utility model provides a portable gas heating device, comprising an air intake main pipe, a main body frame, a flameout protection module and an anti-dumping switch installed on a base in the main body frame, and a main burner system installed in the main body frame, wherein the air intake main pipe is used to connect a gas tank, and the air intake main pipe can pass gas to the flameout protection module and the main burner system under the control of a main valve, and the main burner system comprises a nozzle, an oxygen mixing pipe and a contoured burner head that can be firmly installed in the main body frame, and the main body frame can protect the circumference of the contoured burner head, and at least one side wall of the main body frame is provided with a side interlayer cavity, and the upper top of the main body frame is provided with a top interlayer cavity, and the lower end of the side interlayer cavity is communicated with the outside world, so The upper end of the side interlayer cavity is connected to the air inlet of the top interlayer cavity, and the exhaust port of the top interlayer cavity is connected to the outside world. The flameout protection module includes a low-fire burner system, an ignition needle and a temperature sensor. The low-fire burner system includes a small nozzle, a small oxygen mixing hole and a low-fire burner. When the low-fire burner system is ignited by the ignition needle and burns stably, the temperature sensor detects the temperature signal and transmits it to the solenoid valve on the main valve. The solenoid valve on the main valve controls the air intake manifold to supply gas to the main burner system. The flame on the low-fire burner system can ignite the gas overflowing from the surface of the contoured burner head. The anti-dumping switch can send a signal to the solenoid valve on the main valve to stop all gas supply when it detects that the main body frame has dumped.
[0006] Preferably, an internal circulation channel is provided inside the shaped burner head, a metal tube is installed on the shaped burner head, both ends of the metal tube are respectively connected to one end of the internal circulation channel and the air intake manifold, a plurality of grooves are provided on the outer surface of the shaped burner head, small holes are provided on the outer surface of the shaped burner head or in the grooves, the small holes can be connected to the internal circulation channel, and a metal wire is installed in the groove.
[0007] Preferably, the contoured burner head is made of refractory material; screws are installed at the bottom of the contoured burner head, and the screws can pass through the bottom plate of the main body frame and be fastened by nuts.
[0008] Preferably, at least one side wall of the main body frame is a non-closed side wall, and the area of the non-closed portion of the non-closed side wall accounts for at least 30% of the non-closed side wall.
[0009] Preferably, the thickness of the side interlayer cavity and the top interlayer cavity is between 5 mm and 50 mm.
[0010] Preferably, the first end of the air intake manifold is used to connect the gas tank, the second end of the air intake manifold is connected to the air inlet of the main valve, the first air outlet of the main valve is connected to the air inlet of the small fire burner gas pipe of the small fire burner system, the air outlet of the small fire burner gas pipe of the small fire burner system is the small fire burner, the second air outlet of the main valve is connected in sequence to the nozzle and the oxygen mixing pipe of the main burner system and then to the shaped burner head, when the small fire burner is burning stably, the temperature sensor on the flameout protection module detects a stable signal and transmits it to the solenoid valve on the main valve, the battery valve on the main valve opens the gas supply restriction of the main burner system, and the gas is supplied to the shaped burner head by rotating the knob of the main valve, and the gas overflows onto the surface of the shaped burner head and is ignited by the flame of the small fire burner, and the knob is used to control the gas supply to the small fire burner, control the ignition of the small fire burner, control the gas supply to the shaped burner head of the main burner system and adjust the gas amount.
[0011] Preferably, the temperature sensor is close to the edge of the low-fire burner, and when the low-fire burner is ignited, the temperature sensor can detect the temperature of the edge flame of the low-fire burner, and when a stable temperature signal is detected, the solenoid valve on the main valve is released from the restriction, and the knob on the main valve is rotated to supply gas to the contoured burner head of the main burner system. When the flames of the low-fire burner and the main burner system are accidentally extinguished and the oxygen content in the surrounding air is lower than the safe content for the human body, the temperature around the temperature sensor will change, and the temperature sensor detects the temperature change signal and sends it to the solenoid valve on the main valve. The solenoid valve on the main valve closes all gas supplies from the main valve to the main burner system and the low-fire burner.
[0012] Preferably, the anti-dump switch can send a signal to the solenoid valve of the main valve when the tilt angle of the main frame is greater than a set angle, and the solenoid valve on the main valve closes the gas supply from the main valve to the low-fire burner and the main burner system.
[0013] Preferably, the knob includes an ignition position and a high and low fire adjustment position. When the knob is rotated to the ignition position, the main valve can supply gas to the low-fire burner system. When the knob is pressed, the ignition switch is triggered to control the ignition needle to ignite the low-fire burner. After the temperature sensor senses the stable flame temperature on the low-fire burner, it transmits a signal to the solenoid valve on the main valve. After receiving the signal, the solenoid valve on the main valve opens the main valve to limit the gas supply to the main burner system. By rotating the knob to the low-fire or high-fire position, different flow rates of gas are supplied to the contoured burner head of the main burner system.
[0014] Preferably, a pressure reducing valve is installed on the main body frame, the air outlet of the pressure reducing valve is connected to the air inlet main pipe, the air inlet interface of the pressure reducing valve can directly install a portable small gas tank, and the air inlet interface of the pressure reducing valve can also be connected to other gas tanks or gas sources through an external pipe.
[0015] Compared with the prior art, the utility model has achieved the following technical effects:
[0016] The portable gas heating device provided by the present invention has an air intake main pipe for connecting to a gas tank, which facilitates the gas in the gas tank to be respectively introduced into a small-fire combustion system and a main burner system through the air intake main pipe. The main burner system includes a nozzle, an oxygen mixing pipe and a shaped burner head that can be firmly installed in the main body frame, thereby ensuring the safety and portability of the product. The main body frame can protect the circumference of the shaped burner head to improve the protection effect. At least one side wall of the main body frame is provided with a side interlayer cavity, and the upper top of the main body frame is provided with a top interlayer cavity. The lower end of the side interlayer cavity is connected to the outside world, and the upper end of the side interlayer cavity is connected to the air inlet of the top interlayer cavity, and the exhaust port of the top interlayer cavity is connected to the outside world. Therefore, when the main burner system is burning for heating, there is a large temperature difference between the upper and lower parts of the main body frame, thereby causing the air to be heated from a low temperature to a high temperature. Flow, realize the automatic flow of air to cool the main body frame, play the role of cooling the main body frame, and meet the temperature requirements of the outer frame of the portable gas heating device. The flameout protection module includes a low-fire burner system, an ignition needle and a temperature sensor. The small burner system includes a small nozzle, a small oxygen mixing hole and a low-fire burner. When the low-fire burner system is ignited by the ignition needle and burns stably, the temperature sensor detects the temperature signal and transmits it to the solenoid valve on the main valve. The solenoid valve on the main valve controls the air intake manifold to supply gas to the main burner system. The flame on the low-fire burner system can ignite the gas overflowing from the surface of the contoured burner head, which plays a role of safe ignition. The anti-dump switch can send a signal to the solenoid valve on the main valve to stop all gas supply when it detects that the main frame is tilted, thereby playing a role of flameout protection, avoiding accidents and reducing risks. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0018] Figure 1 This is a schematic structural diagram of the portable gas heating device of the present invention at an angle;
[0019] Figure 2 This is a schematic structural diagram of the portable gas heating device of the present invention from another angle;
[0020] Figure 3 This is a schematic diagram of the installation position of the main burner system in the present utility model;
[0021] Figure 4 This is a schematic diagram of the structure of the flameout protection module and the main burner system in the present invention;
[0022] Figure 5 This is a schematic diagram of the circuit connection in the present utility model;
[0023] Figure 6 This is a schematic structural diagram of the contoured burner head in the present invention;
[0024] Figure 7 This is a schematic diagram of the arrangement of the gas outlet slots on the contoured burner head of the present invention;
[0025] Figure 8 It is a cross-sectional view of the contoured burner head in the present utility model;
[0026] In the figure: 1-main body frame, 2-handle, 3-fuel tank, 4-knob, 5-top interlayer cavity, 6-side interlayer cavity, 7-contoured burner head, 8-temperature sensor, 9-low-fire burner system, 10-ignition needle, 11-pressure reducing valve, 12-air intake manifold, 13-main burner system, 14-main valve, 15-solenoid valve, 16-main burner gas pipe, 17-low-fire burner gas pipe, 18-flameout protection module, 19-anti-dump switch, 20-metal pipe, 21-screw, 22-small hole, 23-metal wire, 24-internal circulation channel. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0028] The purpose of the utility model is to provide a portable gas heating device to solve the problems existing in the prior art, improve the ornamental value and safety of use, and be easy to carry.
[0029] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0030] like Figures 1-8As shown, this embodiment provides a portable gas heating device, including an air intake manifold 12, a main frame 1, a flameout protection module 18 and an anti-dumping switch 19 installed on the base of the main frame 1, and a main valve 14 installed in the main frame 1. The air intake manifold 12 is used to connect the gas tank, and then facilitate the gas in the gas tank to pass through the main valve 14 through the air intake manifold 12 and then into the low-fire burner system 9 and the main burner system 13 respectively. The main burner system 13 includes a nozzle, an oxygen mixing pipe and a nozzle that can be firmly installed on the main frame. The shaped burner head 7 in the frame ensures that the shaped burner head 7 is safe and does not move when carried. The main body frame 1 can protect the circumference of the shaped burner head 7, such as glass, metal plate, metal grille, metal mesh and metal line frame. Those skilled in the art can adaptably select according to actual needs to improve the protection effect. At least one side wall of the main body frame 1 is provided with a side interlayer cavity 6, and the top of the main body frame 1 is provided with a top interlayer cavity 5. The lower end of the side interlayer cavity 6 is connected to the outside world, and the upper end of the side interlayer cavity 6 is connected to the air inlet of the top interlayer cavity 5. The exhaust port of the top interlayer cavity 5 is connected to the outside world, and when the profiling burner 7 is burning for heating, there is a large temperature difference between the upper and lower parts of the main frame, so that the air is heated and flows from the low temperature to the high temperature, realizing the automatic flow of air to cool the outer frame of the product to meet the outer frame temperature requirements when in use. The flameout protection module 18 includes a small fire burner system 9, an ignition needle 10 and a temperature sensor 8. The small burner system 9 includes a small nozzle, a small oxygen mixing hole and a small fire burner. The small fire burner system 9 is ignited by the ignition needle 10 and During stable combustion, the temperature sensor 8 detects the temperature signal and transmits it to the solenoid valve 15 on the main valve 14. The main valve 14 controls the air intake manifold 12 to supply gas to the contoured burner head 7 through the knob 4. The flame on the low-fire burner system 9 can ignite the gas overflowing from the surface of the contoured burner head 7, thereby playing a role in safe ignition. The anti-dump switch 19 can send a signal to the solenoid valve 15 on the main valve 14 to stop all gas supply when it detects that the main body frame 1 is tilted to a set angle, thereby playing a role in flameout protection, avoiding accidents and reducing risks.
[0031] Specifically, the shaped burner head 7 can be various decorative shapes such as imitating wood and volcanoes, thereby imitating the effect of flames burning on wood or other decorative shapes of the shaped burner head 7, which has better ornamental value. An internal circulation channel 24 is provided inside the shaped burner head 7 for the circulation of gas. A metal pipe 20 is installed on the shaped burner head 7, and the two ends of the metal pipe 20 are respectively connected to one end of the internal circulation channel 24 and the air intake manifold 12, and then the gas in the gas tank is passed into the internal circulation channel 24 through the metal pipe 20 and the air intake manifold 12. The outer surface of the shaped burner head 7 is provided with a plurality of grooves. A small hole 22 is opened on the outer surface or in the groove, and the small hole 22 can be connected to the internal circulation channel 24, so that the gas in the internal circulation channel 24 can overflow through the small hole 22 and burn outside the small hole 22, so as to form the effect of burning on the surface of the contoured burner 7. A metal wire 23 is installed in the groove. The metal wire 23 can withstand high temperatures. The metal wire 23 is used to disperse and mix the gas overflowing from the small hole 22 with oxygen, so that the combustion is more complete, thereby reducing the carbon monoxide content in the flue gas emissions. At the same time, the metal wire 23 will be burned red during the combustion process, thereby increasing the combustion atmosphere and increasing the heat radiation heating effect.
[0032] The profiling burner head 7 is made of refractory material and only serves to imitate the burning effect of real wood.
[0033] A screw 21 is installed at the bottom of the contoured burner head 7. The screw 21 can pass through the bottom plate of the main body frame 1 and be fastened by a nut, thereby fixing the contoured burner head 7 in the main body frame 1 to prevent the contoured burner head 7 from moving when moving and carrying.
[0034] At least one side wall of the main frame 1 is an open side wall. The open portion of the open side wall accounts for at least 30% of the open side wall. This allows for observation of the combustion flame on the contoured burner head 7 while facilitating air circulation between the main frame 1 and the outside world. This allows for effective air flow into the main frame 1 to enhance combustion efficiency and facilitates the discharge of hot gases generated by combustion. A handle 2 is provided at the upper end of the main frame 1.
[0035] The thickness of the side interlayer cavity 6 and the top interlayer cavity 5 is between 5mm and 50mm, so that air can flow effectively in the side interlayer cavity 6 and the top interlayer cavity 5, thereby achieving heat dissipation. The side interlayer cavity 6 and the top interlayer cavity 5 of the main body frame 1 can also have other air inlet or outlet holes, and the side interlayer cavity 6 and the top interlayer cavity 5 can have various shapes.
[0036] The flameout protection module 18 is an ODS (OXYGRN DEPLETION SENSOR) protection module. The first end of the air intake manifold 12 is used to connect to the gas tank. The second end of the air intake manifold 12 is connected to the air inlet of the main valve 14, and then the gas in the gas tank is passed into the main valve 14 through the air intake manifold 12 to realize the gas supply. When the knob 4 of the main valve 14 is rotated to the ignition position, the low-fire burner system 9 includes a small nozzle, a small oxygen mixing pipe and a low-fire burner. The first air outlet of the main valve 14 is connected to the low-fire burner through the low-fire burner gas pipe 17 of the low-fire burner system 9 to supply gas to the low-fire burner. The gas is discharged through the small nozzle of the low-fire burner. The second air outlet of the main valve 14 is connected in sequence to the nozzle and the oxygen mixing pipe of the main burner system 13 and then to the contoured burner head 7. When gas is supplied to the low-fire burner, the low-fire burner is turned on. By pressing the knob 4 of the main valve 14, the ignition switch is triggered, and the low-fire burner is burned through the ignition needle 10. The temperature sensor 8 on the flameout protection module 18 senses a stable temperature signal and sends a signal to the solenoid valve 15 on the main valve 14. The solenoid valve 15 opens the restriction of the second air outlet of the main valve 14, and the knob 4 on the main valve 14 is rotated to the low-fire or high-fire position. The main valve 14 supplies gas to the contoured burner 7 through the main burner gas pipe 16 of the main burner system 13 and overflows. The gas overflowing from the surface of the contoured burner 7 is ignited by the flame on the low-fire burner, achieving safe ignition and combustion. The knob 4 is used to control the gas supply to the low-fire burner, and is also used to trigger the ignition switch to energize the ignition needle 10 for ignition, and is also used to control the gas supply to the contoured burner 7 and adjust the gas supply amount.
[0037] The temperature sensor 8 is close to the edge of the low-fire burner, and when the low-fire burner is ignited, the temperature sensor 8 can detect the temperature of the low-fire burner, and when a stable high-temperature signal is detected (at this time the low-fire burner is burning stably), the solenoid valve 15 opens the restriction on the main valve 14, turns on the gas through the knob 4, and supplies the gas to the contour burner 7 through the main burner gas pipe 16 of the main burner system 13. The flame on the low-fire burner ignites the gas overflowing from the contour burner 7 to the surface of the contour burner 7. The flame starts to burn, and the device starts to work. When the flame on the low-fire burner or the contour burner 7 is accidentally extinguished (for example, by wind and rain), or the oxygen content in the surrounding air is lower than the safe oxygen content required by the human body, the temperature sensor 8 detects the temperature change and sends a signal to the solenoid valve 15 on the main valve 14. The solenoid valve 15 controls the main valve 14 to actively shut off all gas supplies. At this time, the low-fire burner and the contour burner 7 will have no gas supply and will go out, thereby preventing the risk of gas overflow during accidental extinguishment and the safety risk caused by insufficient oxygen content in the surrounding area, thereby ensuring safety of use.
[0038] The anti-dump switch 19 can send an angle signal to the solenoid valve 15 on the main valve 14 when the main body frame 1 dumps to a dumping angle greater than the set angle, and control the main valve 14 to shut off all gas supplies through the solenoid valve 15, thereby actively shutting off the gas flameout when dumping.
[0039] The knob 4 includes an ignition position and a large and small fire adjustment position. When the knob 4 is rotated to the ignition position, the main valve 14 can control the gas supply to the small fire burner system 9. When the knob 4 is pressed, the main valve 14 can trigger the ignition switch to control the ignition needle 10 to ignite the small fire burner. When the flames of the small fire burner and the main burner system 13 are accidentally extinguished and the oxygen content in the surrounding air is lower than the safe content for the human body, the temperature around the temperature sensor 8 will change. After sensing the stable flame temperature on the small fire burner, the temperature sensor 8 transmits a signal to the solenoid valve 15 on the main valve 14. After receiving the signal, the solenoid valve 15 opens the restriction on the gas supply to the contoured burner head 7 on the main valve 14. By rotating the knob 4 to different positions in the large and small fire adjustment position, the amount of gas supplied to the contoured burner head 7 can be adjusted, and then the size of the burning flame on the contoured burner head 7 can be adjusted.
[0040] A pressure reducing valve 11 is installed on one side of the main body frame 1. The air outlet of the pressure reducing valve 11 is connected to the air inlet main pipe 12. The air inlet interface on the pressure reducing valve 11 can be directly installed with a portable small gas tank, and the air inlet interface of the pressure reducing valve 11 can also be connected to other gas tanks or gas sources through an external pipe, thereby realizing the portability of this embodiment.
[0041] A fuel bin 3 is installed on one side of the main body frame 1, and the fuel bin 3 is used to place a gas tank.
[0042] Through the above-mentioned design, this embodiment can weigh less than 20 kg (excluding the net weight of the gas cylinder and packaging), making it easy to carry. It can use popular gas cylinder specifications, has a noticeable aesthetic and heating effect, and complies with relevant market safety regulations. Furthermore, the portable gas heating device provided by this embodiment can be adapted to actual needs in terms of the contoured burner head shape and fixing method, the size and position of each interface, the size of the small hole 22 and the gas outlet slot, and the material and size of the metal wire 23. The gas can be propane, butane, or a propane-butane mixture.
[0043] like Figure 5 As shown in the figure, it is a circuit connection diagram of the flameout protection module 18 in this embodiment, wherein the dotted line is the pulse valve microswitch controlling the pulse power supply circuit, the single-dash line is the ignition circuit from the pulse power supply to the ignition needle 10, and the double-dash line is the series circuit from the flameout protection module 18 to the anti-dump switch 19 to the solenoid valve 15.
[0044] The present invention uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only intended to help understand the method and core concept of the present invention. At the same time, those skilled in the art will find that the specific implementation methods and application scopes may vary based on the concept of the present invention. In summary, the contents of this specification should not be construed as limiting the present invention.
Claims
1. A portable gas heating device, characterized in that: The utility model comprises an air intake manifold, a main body frame, a flameout protection module and an anti-dump switch installed on a base inside the main body frame, and a main burner system installed in the main body frame. The air intake manifold is used to connect a gas tank. The air intake manifold can supply gas to the flameout protection module and the main burner system under the control of a main valve. The main burner system comprises a nozzle, an oxygen mixing pipe and a shaped burner head which can be firmly installed in the main body frame. The main body frame can protect the circumference of the shaped burner head, and at least one side wall of the main body frame is provided with a side interlayer cavity, the upper top of the main body frame is provided with a top interlayer cavity, the lower end of the side interlayer cavity is communicated with the outside world, and the upper end of the side interlayer cavity is connected to the outside world. The air inlet of the top interlayer cavity is connected, and the exhaust port of the top interlayer cavity is connected to the outside world. The flameout protection module includes a low-fire burner system, an ignition needle and a temperature sensor. The low-fire burner system includes a small nozzle, a small oxygen mixing hole and a low-fire burner. When the low-fire burner system is ignited by the ignition needle and burns stably, the temperature sensor detects the temperature signal and transmits it to the solenoid valve on the main valve. The solenoid valve on the main valve controls the air intake manifold to supply gas to the main burner system. The flame on the low-fire burner system can ignite the gas overflowing from the surface of the contoured burner head. The anti-dumping switch can send a signal to the solenoid valve on the main valve to stop all gas supply when it detects that the main body frame has dumped.
2. The portable gas heating device according to claim 1, characterized in that: An internal circulation channel is provided inside the shaped burner head, and a metal tube is installed on the shaped burner head. The two ends of the metal tube are respectively connected to one end of the internal circulation channel and the air intake manifold. A plurality of grooves are provided on the outer surface of the shaped burner head. Small holes are provided on the outer surface of the shaped burner head or in the grooves. The small holes can be connected to the internal circulation channel, and a metal wire is installed in the groove.
3. The portable gas heating device according to claim 2, characterized in that: The contoured burner head is made of refractory material; screws are installed at the bottom of the contoured burner head, and the screws can pass through the bottom plate of the main body frame and be fastened by nuts.
4. The portable gas heating device according to claim 1, characterized in that: At least one side wall of the main body frame is a non-enclosed side wall, and an area of a non-enclosed portion of the non-enclosed side wall accounts for at least 30% of the non-enclosed side wall.
5. The portable gas heating device according to claim 1, characterized in that: The thickness of the side interlayer cavity and the top interlayer cavity is between 5mm and 50mm.
6. The portable gas heating device according to claim 1, characterized in that: The first end of the air intake manifold is used to connect the gas tank, the second end of the air intake manifold is connected to the air inlet of the main valve, the first air outlet of the main valve is connected to the air inlet of the small fire burner gas pipe of the small fire burner system, the air outlet of the small fire burner gas pipe of the small fire burner system is the small fire burner, the second air outlet of the main valve is connected in sequence to the nozzle and the oxygen mixing pipe of the main burner system and then to the shaped burner head. When the small fire burner is burning stably, the temperature sensor on the flameout protection module detects a stable signal and transmits it to the solenoid valve on the main valve. The solenoid valve on the main valve opens the gas supply restriction of the main burner system. By rotating the knob of the main valve, the main valve is opened to supply gas to the shaped burner, and the gas overflows onto the surface of the shaped burner and is ignited by the flame of the small fire burner. The knob is used to control the gas supply to the small fire burner, control the ignition of the small fire burner, control the gas supply to the shaped burner head of the main burner system, and adjust the gas volume.
7. The portable gas heating device according to claim 6, characterized in that: The temperature sensor is close to the edge of the small fire burner, and when the small fire burner is ignited, the temperature sensor can detect the temperature of the edge flame of the small fire burner, and when a stable temperature signal is detected, the solenoid valve on the main valve is released from the restriction, and the knob on the main valve is rotated to supply gas to the contoured burner head of the main burner system. When the flames of the small fire burner and the main burner system are accidentally extinguished and the oxygen content in the surrounding air is lower than the safe content for the human body, the temperature around the temperature sensor will change, and the temperature sensor detects the temperature change signal and sends it to the solenoid valve on the main valve. The solenoid valve on the main valve closes all gas supplies from the main valve to the main burner system and the small fire burner.
8. The portable gas heating device according to claim 7, characterized in that: The anti-dump switch can send a signal to the solenoid valve of the main valve when the tilt angle of the body frame is greater than a set angle, and the solenoid valve on the main valve closes the gas supply from the main valve to the small fire burner and the main burner system.
9. The portable gas heating device according to claim 8, characterized in that: The knob includes an ignition position and a high and low fire adjustment position. When the knob is rotated to the ignition position, the main valve can supply gas to the low-fire burner system. When the knob is pressed, the ignition switch is triggered to control the ignition needle to ignite the low-fire burner. After the temperature sensor senses the stable flame temperature on the low-fire burner, it transmits a signal to the solenoid valve on the main valve. After receiving the signal, the solenoid valve on the main valve opens the main valve to limit the gas supply to the main burner system. By rotating the knob to the low-fire or high-fire position, different flow rates of gas are supplied to the contoured burner head of the main burner system.
10. The portable gas heating device according to claim 1, characterized in that: A pressure reducing valve is installed on the main body frame, the air outlet of the pressure reducing valve is connected to the air inlet main pipe, the air inlet interface of the pressure reducing valve can directly install a portable small gas tank, and the air inlet interface of the pressure reducing valve can also be connected to an external pipe.