CN218295796U - Be applied to ignition of some carbon machines - Google Patents
Be applied to ignition of some carbon machines Download PDFInfo
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- CN218295796U CN218295796U CN202222010916.8U CN202222010916U CN218295796U CN 218295796 U CN218295796 U CN 218295796U CN 202222010916 U CN202222010916 U CN 202222010916U CN 218295796 U CN218295796 U CN 218295796U
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Abstract
An ignition device applied to a carbon point machine comprises a shell, a combustion cylinder, a fuel injection mechanism, an ignition mechanism and a blowing device. The casing comprises a casing main body and a casing rear cover. The fuel injection mechanism comprises an electromagnetic pump, a fuel nozzle seat and an atomizing nozzle. The ignition mechanism comprises an ignition needle and an ignition transformer. The blowing device comprises a motor and an impeller. The ignition needle is arranged on one side of the oil nozzle base, and the extending directions of the free ends of the two ignition needles are crossed together. When the shell is connected with the combustion cylinder into a whole, the atomizing nozzle and the ignition needle are contained in the combustion cylinder, and the impeller is contained in the shell main body. The ignition device applied to the carbon counting machine is simple in structure, time-saving and labor-saving, saves fuel cost and is high in carbon counting efficiency.
Description
Technical Field
The utility model belongs to the technical field of some carbon equipment, especially an ignition of being applied to some carbon machine.
Background
Along with the improvement of living standard of people, leisure life is gradually popularized, and food is cooked outdoors or outdoors by taking various heating means as heat sources, so that the food becomes a more popular food culture. Particularly, charcoal barbecue is one of outdoor or field cooking modes which are popular among many people due to delicious taste and unique flavor of cooked food, so that a plurality of barbecue tools special for charcoal barbecue appear on the market. When charcoal is used for barbecue, the charcoal needs to be ignited first, so that a charcoal igniter is produced on the market to accelerate the ignition of the charcoal.
For example, the chinese patent is an outdoor ignition device for barbecue, which is CN202120680233.6 and comprises a fire collecting device, a charcoal burning device, a main frame, a fire adjusting device and an air supply device, wherein the fire collecting device is arranged on the main frame, the charcoal burning device is arranged on the main frame, the fire adjusting device is arranged on the main frame, and the air supply device is arranged on the main frame. This ignition passes through the volume that the valve regulation sprayed into the gas to adjust the flame size, but this ignition has increased the use amount of gas, has increased the cost, is unfavorable for the user to use.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides a cost-effective ignition who is applied to some carbon machines to satisfy the industrial demand.
An ignition device applied to a carbon lighting machine comprises a machine shell, a combustion cylinder arranged on the machine shell, a fuel injection mechanism arranged on the machine shell, an ignition mechanism arranged on the machine shell and an air blowing device arranged on the machine shell. The casing comprises a casing main body and a casing rear cover arranged at one end of the casing main body. The fuel injection mechanism comprises an electromagnetic pump arranged on the casing, a nozzle base arranged on the casing and connected with the electromagnetic pump, and an atomizing nozzle arranged at the free end of the nozzle base. The ignition mechanism comprises two ignition needles arranged on the shell and an ignition transformer arranged on the shell and connected with the ignition needles. The blowing device comprises a motor arranged on the casing and an impeller arranged on the motor. The ignition needles are arranged on one side of the oil nozzle base, the extending directions of the free ends of the two ignition needles are crossed together, when the shell is connected with the combustion cylinder into a whole, the atomizing nozzle and the ignition needles are contained in the combustion cylinder, and the impeller is contained in the shell main body.
Further, the fuel injection mechanism also comprises at least one wind-guiding fireproof rubber strip arranged on the oil nozzle base.
Furthermore, the ignition device applied to the carbon counting machine also comprises a sealing gasket arranged at one end of the combustion cylinder facing the casing.
Furthermore, the combustion cylinder comprises an inner cylinder, an outer cylinder sleeved outside the inner cylinder and a flame stabilizing disc arranged in the inner cylinder.
Further, the central axes of the atomizing nozzle, the oil nozzle seat and the combustion cylinder are overlapped.
Further, the free end of each ignition needle is in an inverted L shape.
Compared with the prior art, the utility model provides an ignition who is applied to some carbon machines passes through electromagnetic pump transmits the fuel extremely among the fuel injection mechanism nozzle seat and atomizer will fire the fuel atomization blowout, among the ignition mechanism ignition transformer will two the clearance produces the spark between the ignition needle, will atomizer spun fuel is lighted. In the blowing device, the motor drives the impeller to rotate, so that flame flows out of one end of the combustion cylinder in a concentrated manner under the action of wind power, and the heating effect is improved. The ignition device applied to the carbon counting machine is simple in structure, time-saving and labor-saving, saves fuel cost and is high in carbon counting efficiency.
Drawings
Fig. 1 is a schematic structural diagram of the ignition device applied to the carbon counting machine.
Fig. 2 is an exploded view of the ignition device applied to the carbon lighting machine of fig. 1.
Detailed Description
Specific examples of the present invention will be described in further detail below. It should be understood that the description herein of embodiments of the invention is not intended to limit the scope of the invention.
As shown in fig. 1 to fig. 2, it is a schematic structural diagram of an ignition device applied to a carbon counting machine according to the present invention. The ignition device applied to the carbon lighting machine comprises a machine shell 10, a combustion cylinder 20 arranged on the machine shell, a fuel injection mechanism 30 arranged on the machine shell, an ignition mechanism 40 arranged on the machine shell, a blowing device 50 arranged on the machine shell, and a sealing gasket 60 arranged at one end of the combustion cylinder 20 facing the machine shell 10. The ignition device applied to the carbon counting machine further comprises other functional modules, such as assembling components, electrical connecting components, atomizing devices, and the like, which are well known to those skilled in the art, and will not be described in detail herein.
The housing 10 includes a housing body 11, and a housing back cover 12 disposed at one end of the housing body 11. The casing 10 and the combustion cylinder 20 are connected as a whole, and the fuel injection mechanism 30, the ignition mechanism 40 and the blowing device 50 are covered therein.
The rear cover 12 of the housing is used for supporting the fuel injection mechanism 30, the ignition mechanism 40 and the blower 50, and the fuel injection mechanism 30, the ignition mechanism 40 and the blower 50 are integrated.
The combustion cylinder 20 comprises an inner cylinder 21, an outer cylinder 22 sleeved outside the inner cylinder 21, and a flame stabilizing disc 23 arranged in the inner cylinder 21.
The fuel injection mechanism 30 comprises an electromagnetic pump 31 arranged on the casing 10, a nozzle base 32 arranged on the casing and connected with the electromagnetic pump, an atomizing nozzle 33 arranged at the free end of the nozzle base, and at least one wind-guiding fireproof rubber strip 34 arranged on the nozzle base 32.
The electromagnetic pump 31 is a device for driving a fluid to move by generating a pressure gradient under the action of an electromagnetic force, and the electromagnetic pump 31 is a prior art and will not be described herein again.
The nozzle seat 32 connects the electromagnetic pump 31 and the atomizer 33 together, and conducts fuel to the atomizer 33.
The atomizer 33 is a device capable of atomizing and spraying fuel oil and suspending the fuel oil evenly in the air, the atomizer 33, the nozzle seat 32 and the central axis of the combustion cylinder 10 are overlapped, so that flame flows out conveniently, and the atomizer 33 is a prior art and is not described herein again.
The wind-guiding fireproof rubber strips 34 are used for guiding the wind generated by the blowing device 50 to flow to the atomizing nozzle 33 and the free end of the combustion cylinder 20.
The ignition mechanism 40 includes two ignition needles 41 disposed on the housing 10, and an ignition transformer 42 disposed on the housing 10 and connected to the ignition needles 41.
The free end of each ignition needle 32 is inverted to be L-shaped, the ignition needle 41 is arranged on one side of the oil nozzle seat 32, the ignition needle 41 performs point discharge, the fuel of the atomizer 33 is ignited by the spark ignition of the discharge, and the ignition needle 41 is a prior art.
The ignition transformer 42 converts the low voltage into the high voltage, and the gap between the two ignition needles 41 generates sparks to ignite the fuel sprayed from the atomizer 33. The ignition transformer 42 is a prior art and will not be described in detail herein.
The blowing device 50 includes a motor 51 provided on the cabinet 10, and an impeller 52 provided on the motor 51. The motor 51 drives the impeller 52 to rotate, thereby generating wind power.
The sealing gasket 60 is interposed between the casing 10 and the combustion cylinder 20 to ensure the sealing performance of the connection position between the casing 10 and the combustion cylinder 20, and the sealing gasket 60 is a prior art and will not be described herein again.
When the casing 10 is integrally connected to the combustion cylinder 20, the atomizer 33 and the ignition needle 41 are accommodated in the combustion cylinder 20, the impeller 52 is accommodated in the casing main body 11,
when the ignition device applied to the carbon igniter is ignited, the fuel injection mechanism 30 injects fuel from the atomizing nozzle 33, at this time, the ignition mechanism 40 in the ignition mechanism 40 generates sparks between the ignition needles 41 to ignite the fuel injected from the atomizing nozzle 33, the motor 51 in the blowing device 50 drives the impeller 52 to rotate, so that wind power is generated, and flame is enabled to intensively flow out of one end of the combustion cylinder 10 under the action of the wind power, so that the heating effect is improved.
Compared with the prior art, the utility model provides an ignition who is applied to some carbon machines passes through electromagnetic pump 31 transmits the fuel among fuel injection mechanism 30 to nozzle seat 32 and atomizer 33 will fire the fuel atomization blowout, among the ignition mechanism 40 ignition transformer 42 will two the clearance produces the spark between the ignition needle 41, will atomizer 33 spun fuel ignites. In the blowing device 50, the motor 51 drives the impeller 52 to rotate, so that the flame intensively flows out of one end of the combustion cylinder 10 under the action of wind force, and the heating effect is improved. The ignition device applied to the carbon counting machine is simple in structure, time-saving and labor-saving, saves fuel cost and is high in carbon counting efficiency.
The above are only preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and any modifications, equivalent replacements, or improvements within the spirit of the present invention are all encompassed in the scope of the claims of the present invention.
Claims (6)
1. An ignition device applied to a carbon point machine is characterized in that: the ignition device applied to the carbon counting machine comprises a machine shell, a combustion cylinder arranged on the machine shell, a fuel injection mechanism arranged on the machine shell, an ignition mechanism arranged on the machine shell, and a blowing device arranged on the machine shell, wherein the machine shell comprises a machine shell main body and a machine shell rear cover arranged at one end of the machine shell main body, the fuel injection mechanism comprises an electromagnetic pump arranged on the machine shell, an oil nozzle seat arranged on the machine shell and connected with the electromagnetic pump, and an atomizing nozzle arranged at the free end of the oil nozzle seat, the ignition mechanism comprises two ignition needles arranged on the machine shell, an ignition transformer arranged on the machine shell and connected with the ignition needles, the blowing device comprises a motor arranged on the machine shell and an impeller arranged on the motor, the ignition needles are arranged on one side of the oil nozzle seat, the extending directions of the free ends of the two ignition needles are crossed, and when the machine shell is connected with the combustion cylinder into a whole, the atomizing nozzle and the ignition needle are accommodated in the machine shell main body.
2. The ignition device applied to the carbon dotting machine according to claim 1, wherein: the fuel injection mechanism further comprises at least one wind-guiding fireproof rubber strip arranged on the oil nozzle base.
3. The ignition device applied to the carbon dotting machine according to claim 1, wherein: the ignition device applied to the carbon point machine further comprises a sealing gasket arranged at one end head of the combustion cylinder, which faces the shell.
4. The ignition device applied to the carbon dotting machine according to claim 1, wherein: the combustion barrel comprises an inner barrel, an outer barrel sleeved on the outer side of the inner barrel and a flame stabilizing disc arranged in the inner barrel.
5. The ignition device applied to the carbon dotting machine according to claim 1, wherein: the central axes of the atomizing nozzle, the oil nozzle seat and the combustion cylinder are superposed.
6. The ignition device applied to the carbon dotting machine according to claim 1, wherein: the free end of each ignition needle is inverted and is in an L shape.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222010916.8U CN218295796U (en) | 2022-07-26 | 2022-07-26 | Be applied to ignition of some carbon machines |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222010916.8U CN218295796U (en) | 2022-07-26 | 2022-07-26 | Be applied to ignition of some carbon machines |
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Publication Number | Publication Date |
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CN218295796U true CN218295796U (en) | 2023-01-13 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202222010916.8U Active CN218295796U (en) | 2022-07-26 | 2022-07-26 | Be applied to ignition of some carbon machines |
Country Status (1)
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CN (1) | CN218295796U (en) |
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2022
- 2022-07-26 CN CN202222010916.8U patent/CN218295796U/en active Active
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