A novel boiler ignition oil gun and ignition rod structure and a method of using the same
By adding scale markings to the boiler ignition gun and ignition rod, the problem of cumbersome adjustment process in the existing technology is solved, the ignition success rate and efficiency are improved, and the phenomenon of fuel failing to ignite is avoided.
Patent Information
- Application Number
- CN202411334019.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2044-09-24
AI Technical Summary
In existing technologies, adjusting the position of the boiler ignition oil gun and ignition rod requires frequent extraction from inside the boiler burner for measurement, which is a cumbersome process that results in low ignition efficiency and may lead to boiler flameout.
Add graduation marks to the ignition nozzle and ignition lever, and adjust their insertion length in the burner housing using the graduation marks to ensure that the spark generated by the spark plug is within the range of the fuel sprayed from the ignition nozzle.
It improves the ignition success rate, avoids the problem of fuel not igniting due to unsuitable size, simplifies the adjustment process, and improves ignition efficiency.
Smart Images

Figure CN119267902B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of boiler maintenance, more specifically, it relates to a novel boiler ignition oil gun and ignition rod structure and its use method. BACKGROUND
[0002] The prior art needs to pull out the ignition oil gun and the ignition rod from the inside of the boiler burner when adjusting the position of the ignition oil gun and the ignition rod, and after determining the relative size position of the ignition oil gun and the ignition rod, the ignition oil gun and the ignition rod are reinserted into the inside of the boiler burner for adjustment and matching. There is no scale on the surface of the ignition oil gun and the ignition rod, and when ignition fails, the position of the ignition oil gun and the ignition rod needs to be adjusted by pulling out the ignition oil gun and the ignition rod from the inside of the boiler burner for measurement, which is complicated and inefficient, and the ignition oil gun cannot be put into use in time, which may even cause the boiler to go out of fire in serious cases. SUMMARY
[0003] In order to solve the above technical problems, the present application provides a novel boiler ignition oil gun and ignition rod structure and its use method to solve the problems raised in the background art.
[0004] The novel boiler ignition oil gun and ignition rod structure and its use method are achieved by the following specific technical means:
[0005] A novel boiler ignition oil gun and ignition rod structure and its use method: including a burner shell, an ignition oil gun and an ignition rod; the burner shell is overall cylindrical, provided with an ignition oil gun sleeve and an ignition rod sleeve, and the ignition oil gun and the ignition rod are arranged inside the burner shell.
[0006] Further, the burner shell comprises an ignition oil gun sleeve and an ignition rod sleeve; the ignition oil gun sleeve is opened in the inside of the burner shell and penetrates the burner shell; the ignition rod sleeve is opened on one side of the ignition oil gun sleeve and penetrates the burner shell.
[0007] Further, the ignition oil gun sleeve is inserted into the ignition oil gun, and the ignition oil gun is inserted into the inside of the burner shell through the ignition oil gun sleeve.
[0008] Further, the ignition oil gun comprises an ignition nozzle; the ignition nozzle is arranged at the oil outlet of the ignition oil gun.
[0009] Further, the ignition oil gun further comprises an ignition oil gun shell; the ignition oil gun shell is arranged on the periphery of the ignition oil gun.
[0010] Further, a scale mark for displaying the length of the ignition oil gun is added to the surface of the ignition oil gun shell.
[0011] Further, the striking rod sleeve is inserted into the striking rod, and the striking rod is inserted into the burner shell through the striking rod sleeve.
[0012] Further, the striking rod comprises a striking rod shell, and the striking rod shell is arranged on the periphery of the striking rod.
[0013] Further, the striking rod further comprises a spark plug, and the spark plug is arranged at the end of the striking rod.
[0014] Further, a scale mark for displaying the length of the striking rod is added to the surface of the striking rod shell.
[0015] Further, the scale marks on the surface of the ignition oil gun shell and the surface of the striking rod shell are used to adjust the size of the ignition oil gun and the striking rod entering the burner, so that the spark generated by the spark plug of the striking rod is within the range of the ignition fuel sprayed by the ignition nozzle of the ignition oil gun.
[0016] Further, when the ignition oil gun and the striking rod are changed in length due to adjustment, maintenance and other reasons, the spark generated by the spark plug may not be within the range of the ignition fuel sprayed by the ignition nozzle, so that the fuel cannot be ignited. When the position of the ignition oil gun changes, the length of the striking rod inserted into the burner shell can be known according to the scale mark on the surface of the striking rod shell, so that the scale mark on the surface of the ignition oil gun shell can be observed to adjust the length of the ignition oil gun inserted into the burner shell, so that the range of the ignition fuel sprayed by the ignition nozzle of the ignition oil gun covers the spark generated by the spark plug at the end of the striking rod, thereby achieving the purpose of igniting the ignition fuel. Similarly, when the position of the striking rod changes, the length of the ignition oil gun inserted into the burner shell can be known according to the scale mark on the surface of the ignition oil gun shell, so that the scale mark on the surface of the striking rod shell can be observed to adjust the length of the striking rod inserted into the burner shell, so that the spark generated by the spark plug of the striking rod is within the range of the ignition fuel sprayed by the ignition nozzle of the ignition oil gun, thereby achieving the purpose of igniting the ignition fuel.
[0017] Compared with the prior art, the present application has the following beneficial effects:
[0018] 1. When the positions of the ignition oil gun and the striking rod are adjusted, the scale marks of the ignition oil gun and the striking rod inserted into the burner are displayed, so that the ignition fuel cannot be ignited due to the improper size of the ignition oil gun and the striking rod inserted into the burner, and the ignition success rate of the ignition fuel can be effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the present application.
[0020] Figure 2 It is a schematic diagram of the burner shell of the present application.
[0021] Figure 3 This is a schematic diagram of the ignition oil gun of the present invention.
[0022] Figure 4 This is a schematic diagram of the ignition rod of the present invention.
[0023] Figure 5 This is an enlarged schematic diagram of the ignition oil gun scale of the present invention.
[0024] Figure 6 This is an enlarged schematic diagram of the ignition rod scale of the present invention.
[0025] In the diagram, the correspondence between component names and drawing numbers is as follows:
[0026] 1. Burner casing;
[0027] 2. Ignition oil gun;
[0028] 3. Ignition rod;
[0029] 4. Ignition oil gun sleeve;
[0030] 5. Ignition rod sleeve;
[0031] 6. Ignition nozzle;
[0032] 7. Ignition oil gun housing;
[0033] 8. Spark plugs;
[0034] 9. Ignition rod housing. Detailed Implementation
[0035] The present invention will be further described below with reference to specific embodiments, and the advantages and features of the present invention will become clearer as a result. However, these embodiments are merely exemplary and do not constitute any limitation on the scope of the present invention. Those skilled in the art should understand that modifications or substitutions can be made to the details and form of the technical solutions of the present invention without departing from the spirit and scope of the present invention, but all such modifications and substitutions fall within the protection scope of the present invention.
[0036] Example:
[0037] As attached Figure 1 To be continued Figure 6 As shown:
[0038] This invention provides a novel structure and method of using a boiler ignition oil gun and ignition rod, comprising a burner housing 1, an ignition oil gun 2, and an ignition rod 3; the burner housing 1 is cylindrical in shape and is provided with an ignition oil gun sleeve 4 and an ignition rod sleeve 5, with the ignition oil gun 2 and ignition rod 3 located inside the burner housing 1.
[0039] The burner shell 1 is fixed on the outer wall of the boiler, the inner side of the outer wall of the boiler where the burner shell 1 is fixed is the boiler furnace, the cavity of the burner shell 1 is through the boiler furnace, and the boiler furnace is the place where fuel is burned.
[0040] The burner shell 1 comprises an ignition oil gun sleeve 4 and a fire rod sleeve 5; the ignition oil gun sleeve 4 is arranged inside the burner shell 1 and penetrates the burner shell 1; and the fire rod sleeve 5 is arranged on one side of the ignition oil gun sleeve 4 and penetrates the burner shell 1.
[0041] The ignition oil gun 2 and the fire rod 3 penetrate the burner shell 1 through the ignition oil gun sleeve 4 and the fire rod sleeve 5, thereby penetrating into the boiler furnace and performing ignition operation in the boiler furnace.
[0042] The ignition oil gun 2 is inserted into the ignition oil gun sleeve 4, and the ignition oil gun 2 is inserted into the burner shell 1 through the ignition oil gun sleeve 4.
[0043] The ignition oil gun sleeve 4 provides a channel for the ignition oil gun 2 to be inserted into the burner shell 1 and penetrate into the boiler furnace, and provides a supporting effect.
[0044] The ignition oil gun 2 comprises an ignition nozzle 6 arranged at the oil outlet of the ignition oil gun 2.
[0045] When the ignition oil gun 2 is operated, the fuel inside the ignition oil gun 2 is sprayed through the ignition nozzle 6 at the same time, so as to achieve fuel atomization effect and facilitate ignition.
[0046] The ignition oil gun 2 further comprises an ignition oil gun shell 7 arranged on the periphery of the ignition oil gun 2.
[0047] The ignition oil gun shell 7 provides a flow channel for fuel flowing to the ignition nozzle 6.
[0048] The ignition oil gun shell 7 is provided with a scale mark on the surface for displaying the length of the ignition oil gun 2.
[0049] When the ignition oil gun 2 is inserted into the burner shell 1 through the ignition oil gun sleeve 4, the length of the ignition oil gun 2 inserted into the burner shell 1 can be identified through the scale mark on the surface of the ignition oil gun shell 7, thereby facilitating subsequent adjustment.
[0050] The fire rod 3 is inserted into the fire rod sleeve 5, and the fire rod 3 is inserted into the burner shell 1 through the fire rod sleeve 5.
[0051] The fire rod sleeve 5 provides a channel for the fire rod 3 to be inserted into the burner shell 1 and penetrate into the boiler furnace, and provides a supporting effect.
[0052] The ignition rod 3 comprises an ignition rod shell 9. The ignition rod shell 9 is arranged on the outer periphery of the ignition rod 3.
[0053] The ignition rod shell 9 is internally provided with a high-voltage cable for providing high-voltage electricity to the spark plug.
[0054] The ignition rod 3 further comprises a spark plug 8. The spark plug 8 is arranged at the end of the ignition rod 3.
[0055] The spark plug 8 receives high-voltage electricity to generate sparks to ignite the atomized ignition fuel sprayed by the ignition nozzle 6.
[0056] The ignition rod shell 9 is provided with a scale mark on the surface thereof for indicating the length of the ignition rod 3, which is convenient for subsequent adjustment.
[0057] When the ignition rod 3 is inserted into the burner shell 1 through the ignition rod sleeve 5, the length of the ignition rod 3 inserted into the burner shell 1 can be identified by the scale mark on the surface of the ignition rod shell 9.
[0058] The scale mark on the surface of the ignition oil gun shell 7 and the scale mark on the surface of the ignition rod shell 9 are used to adjust the size of the ignition oil gun 2 and the ignition rod 3 entering the burner, so that the sparks generated by the spark plug 8 of the ignition rod 3 are within the range of the ignition fuel sprayed by the ignition nozzle 6 of the ignition oil gun 2.
[0059] The size of the ignition oil gun 2 and the ignition rod 3 entering the burner is matched, so that the spark plug 8 ignites the atomized ignition fuel sprayed by the ignition nozzle 6, and the final purpose is achieved, that is, the fuel passes through the ignition oil gun shell 7 and enters the furnace through the burner shell 1, and burns stably inside the furnace.
[0060] When the ignition oil gun 2 and the ignition rod 3 are adjusted, repaired or for other reasons, the length of the ignition oil gun 2 and the ignition rod 3 inserted into the burner shell 1 changes, which may cause the sparks generated by the spark plug 8 to be out of the range of the ignition fuel sprayed by the ignition nozzle 6, resulting in that the fuel cannot be ignited. When the position of the ignition oil gun 2 changes, the length of the ignition rod 3 inserted into the burner shell 1 can be known according to the scale mark on the surface of the ignition rod shell 9, so that the scale mark on the surface of the ignition oil gun shell 7 can be observed to adjust the length of the ignition oil gun 2 inserted into the burner shell 1, so that the range of the ignition fuel sprayed by the ignition nozzle 6 of the ignition oil gun 2 covers the sparks generated by the spark plug 8 at the end of the ignition rod 3, thereby achieving the purpose of igniting the ignition fuel. Similarly, when the position of the ignition rod 3 changes, the length of the ignition oil gun 2 inserted into the burner shell 1 can be known according to the scale mark on the surface of the ignition oil gun shell 7, so that the scale mark on the surface of the ignition rod shell 9 can be observed to adjust the length of the ignition rod 3 inserted into the burner shell 1, so that the sparks generated by the spark plug 8 of the ignition rod 3 are within the range of the ignition fuel sprayed by the ignition nozzle 6 of the ignition oil gun 2, thereby achieving the purpose of igniting the ignition fuel.
[0061] The specific use and role of the embodiment are as follows:
[0062] In the present application, when the length of the ignition oil gun 2 and the striking rod 3 into the burner housing 1 changes due to adjustment, maintenance, etc., the spark generated by the spark plug 8 may not be within the range of the ignition fuel sprayed by the ignition nozzle 6, resulting in the failure of the fuel to be ignited. When the position of the ignition oil gun 2 changes, the length of the striking rod 3 into the burner housing 1 can be known according to the scale on the surface of the striking rod housing 9, so that the scale on the surface of the ignition oil gun housing 7 can be observed to adjust the length of the ignition oil gun 2 into the burner housing 1, so that the range of the ignition fuel sprayed by the ignition nozzle 6 of the ignition oil gun 2 covers the spark generated by the spark plug 8 at the end of the striking rod 3, so as to achieve the purpose of igniting the ignition fuel. Similarly, when the position of the striking rod 3 changes, the length of the ignition oil gun 2 into the burner housing 1 can be known according to the scale on the surface of the ignition oil gun housing 7, so that the scale on the surface of the striking rod housing 9 can be observed to adjust the length of the striking rod 3 into the burner housing 1, so that the spark generated by the spark plug 8 of the striking rod 3 is within the range of the ignition fuel sprayed by the ignition nozzle 6 of the ignition oil gun 2, thereby achieving the purpose of igniting the ignition fuel.
[0063] The above is only the preferred embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A novel boiler ignition oil gun and fire stick structure, comprising a burner housing (1), an ignition oil gun (2), and a fire stick (3); characterized in that: The burner shell (1) is cylindrical as a whole, and is provided with an ignition oil gun sleeve (4) and a firing rod sleeve (5), the ignition oil gun (2) and the firing rod (3) are arranged inside the burner shell (1), the burner shell (1) comprises: the ignition oil gun sleeve (4) and the firing rod sleeve (5); the ignition oil gun sleeve (4) is arranged inside the burner shell (1), and the ignition oil gun sleeve (4) penetrates the burner shell (1); the firing rod sleeve (5) is arranged on one side of the ignition oil gun sleeve (4), and the firing rod sleeve (5) penetrates the burner shell (1), the ignition oil gun sleeve (4) is inserted with the ignition oil gun (2), and the ignition oil gun (2) is inserted into the burner shell (1) through the ignition oil gun sleeve (4), the ignition oil gun (2) further comprises: an ignition oil gun shell (7), the ignition oil gun shell (7) is arranged on the periphery of the ignition oil gun (2), a scale mark for showing the length of the ignition oil gun (2) is added on the surface of the ignition oil gun shell (7), the firing rod sleeve (5) is inserted with the firing rod (3), and the firing rod (3) is inserted into the burner shell (1) through the firing rod sleeve (5), a scale mark for showing the length of the firing rod (3) is added on the surface of the firing rod sleeve (5), the surface scale of the ignition oil gun shell (7) and the surface scale of the firing rod sleeve (5) are used to judge the size of the ignition oil gun (2) and the firing rod (3) entering the burner, so that the spark plug (8) of the firing rod (3) produces spark in the ignition fuel spray range of the ignition oil gun (2) ignition spray head (6).
2. A novel boiler ignition oil gun and firing rod structure according to claim 1, characterized in that: The ignition oil gun (2) comprises: an ignition spray head (6); the ignition spray head (6) is arranged at the oil outlet of the ignition oil gun (2).
3. A novel boiler ignition oil gun and firing rod structure according to claim 1, characterized in that: The firing rod (3) comprises: a spark plug (8) and a firing rod shell (9); the firing rod shell (9) is arranged on the periphery of the firing rod (3); the spark plug (8) is arranged at the end of the firing rod (3).
4. The method of using the novel boiler ignition oil gun and firing rod structure according to any one of claims 1-3, characterized in that: When the length of the ignition oil gun (2) and the striking rod (3) into the burner housing (1) changes due to adjustment and maintenance, the spark generated by the spark plug (8) will not be in the range of the ignition fuel sprayed by the ignition nozzle (6), which will cause the fuel to be unable to be ignited; when the position of the ignition oil gun (2) changes, the length of the striking rod (3) into the burner housing (1) can be known according to the scale on the surface of the striking rod housing (9), so that the scale on the surface of the ignition oil gun housing (7) can be observed to adjust the length of the ignition oil gun (2) into the burner housing (1), so that the range of the ignition fuel sprayed by the ignition nozzle (6) of the ignition oil gun (2) covers the spark generated by the spark plug (8) at the end of the striking rod (3), so as to achieve the purpose of igniting the ignition fuel; similarly, when the position of the striking rod (3) changes, the length of the ignition oil gun (2) into the burner housing (1) can be known according to the scale on the surface of the ignition oil gun housing (7), so that the scale on the surface of the striking rod housing (9) can be observed to adjust the length of the striking rod (3) into the burner housing (1), so that the spark generated by the spark plug (8) of the striking rod (3) is in the range of the ignition fuel sprayed by the ignition nozzle (6) of the ignition oil gun (2), so as to achieve the purpose of igniting the ignition fuel.
Citation Information
Patent Citations
Fuel saving lighting coal powder combustor
CN201289073Y
Ignition gun for boiler of thermal power plant
CN216667747U