CN212029597U - Flow regulating mechanism for ignition oil of boiler - Google Patents

Flow regulating mechanism for ignition oil of boiler Download PDF

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Publication number
CN212029597U
CN212029597U CN202020387133.XU CN202020387133U CN212029597U CN 212029597 U CN212029597 U CN 212029597U CN 202020387133 U CN202020387133 U CN 202020387133U CN 212029597 U CN212029597 U CN 212029597U
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China
Prior art keywords
ignition
oil
gun body
frame
oil feeding
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CN202020387133.XU
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Chinese (zh)
Inventor
刘瑞峰
胡立东
崔风陈
王军
戚晓虎
徐迎春
庄朋刚
刘源
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Linyi City Yangguang Heating Power Co ltd
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Linyi City Yangguang Heating Power Co ltd
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Abstract

The utility model relates to the technical field of boiler ignition tools, in particular to a boiler ignition oil flow adjusting mechanism, which comprises an ignition gun body, a gun barrel and a traction support rod, wherein an oil feeding pipeline is arranged at the middle part of the ignition gun body in an integrated way, a storage cavity is communicated with one side of the oil feeding pipeline, the top part of the ignition gun body is connected with an oil feeding pipe orifice, and through a sealing washer, a positioning block, a movable block, a connecting rod and the traction support rod which are arranged, under the sealing matching of the hollow part of an inclined groove body and the sealing washer, the traction support rod after traction passes through the connecting rod, the movable block with the shape of a conical structure is carried, the inclined outward drawing operation is carried out along the inclined edge line at the bottom of the positioning block, the change of the size of a crack between the movable block and the positioning block is realized, and the whole oil, the whole adjusting process is more convenient and labor-saving, and the phenomenon of overflow of oil liquid in the adjusting process is effectively avoided.

Description

Flow regulating mechanism for ignition oil of boiler
Technical Field
The utility model relates to a boiler ignition tool technical field specifically is boiler ignition oil flow control mechanism.
Background
The boiler ignition finger is characterized in that a pilot fuel valve is opened after the boiler is ready to be ignited through an igniter and pilot fuel, then an ignition switch is opened, after combustion flame is stabilized and normal, the process of an ignition system is closed, the internal pressure of the boiler is increased, the temperature is increased, the boiler fuel enters a hearth to be stably ignited and stably combusted, and an ignition oil gun is a commonly used ignition tool in the process of igniting the boiler.
In the ignition operation process of the boiler, the ignition oil gun on the market realizes ignition operation of the boiler in an oil atomization ignition mode, uncontrolled amount of oil is brought out, the phenomenon that the oil can not be ignited or the oil is too violent in combustion is extremely easy to occur, and an adjusting mechanism which is not fixed in position is extremely easy to be impacted by external force, so that the boiler ignition oil flow adjusting mechanism is provided for solving the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a boiler ignition oil flow adjustment mechanism to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
the boiler ignition oil flow regulating mechanism comprises an ignition gun body, a gun barrel and a traction support rod, wherein an oil feeding pipeline is arranged in the middle of the ignition gun body through an integrated arrangement, a storage cavity is communicated with one side of the oil feeding pipeline, an oil inlet pipe orifice is connected to the top of the ignition gun body, an air inlet pipe orifice is arranged on one side of the oil inlet pipe orifice, the gun barrel is arranged at the upper end and the lower end of the oil feeding pipeline, the gun barrel is connected with the ignition gun body through an integrated arrangement, a distributor is fixed on one side of the ignition gun body, a bubble generating frame is sleeved on the outer end of the distributor, a nozzle is fixedly connected to one side of the bubble generating frame, a positioning block is fixed inside the oil feeding pipeline, a movable block is installed below the positioning block, a connecting rod is fixed to the oblique upper side of the movable block, a sealing gasket is sleeved at the joint of the connecting rod and the ignition gun body, and, the utility model discloses a lighting gun, including the ignition rifle body, the opposite side welding of ignition rifle body has metal decking, the bottom of drawing branch is fixed with the screw thread frame, and pegs graft in the inside of screw thread frame and have the reference column, the middle part of reference column sets up through integrated into one piece and is fixed with the screwed joint, and one side welding of reference column has fixed frame, the inside welded fastening of fixed frame has the magnetic plate, the opposite side of reference column is connected with the extension rod through movable axis body.
Preferably, the transverse central axis of the ignition gun body and the transverse central axis of the oil feeding pipeline are overlapped, and the interior of the oil feeding pipeline is communicated with the interior of the oil inlet pipe orifice through the storage cavity.
Preferably, the air inlet pipe orifice is fixedly connected with the ignition gun body through integrated forming, and the inside of the ignition gun body is communicated through the distributor, the bubble generation frame and the nozzle.
Preferably, the appearance of locating piece and movable block all is the toper structure and distributes the setting, and one side of movable block is connected with the connecting rod that is the slope column structure and distributes the setting, the connecting rod is through agreeing with cell body and ignition gun body staggered connection.
Preferably, draw mutually perpendicular between branch and the screw thread frame, and the screw thread frame passes through screwed joint and reference column constitution helical structure, the reference column is connected through fixed frame, magnetic plate and metal decking magnetism, and the appearance of fixed frame is "U" type structural distribution and sets up, the reference column constitutes the active structure through activity axis body and extension rod.
Compared with the prior art, the beneficial effects of the utility model are that:
1. in the utility model, through the arranged sealing washer, the positioning block, the movable block, the connecting rod and the traction support rod, along with the hollow inclined groove body and the sealing matching of the sealing washer, the traction support rod after traction passes through the connecting rod to carry the movable block with the shape of a conical structure, the inclined outward drawing operation is carried out along the inclined edge line arranged at the bottom of the positioning block, the whole oil flow regulation operation is realized by changing the size of the crack between the movable block and the positioning block, and the flow regulation is carried out by overturning the valve plate relative to the prior art, the whole regulation process is more convenient and labor-saving, and the phenomenon that the oil overflows in the regulation process is effectively avoided;
2. the utility model discloses in, threaded joint through the setting, the reference column, metal decking, fixed frame and magnetic plate, combine the staff according to the mode of screw thread regulation, carry the reference column through threaded joint, fixed frame and magnetic plate realize circling round the external stretching, the magnetic plate is under the connection cooperation of the fixed frame of "U" type structure in the appearance, will realize magnetism with metal decking and be connected, this ignition is with the help of the state that this magnetism is connected, make the position behind the fluid flow control obtain certain location, fix through the position after in time adjusting the flow, can avoid later stage external force factor because of the skew that striking adjustment mechanism caused effectively.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the structure at A of FIG. 1 according to the present invention;
FIG. 3 is a schematic view of the internal structure of the movable block of the present invention when it is pulled out;
fig. 4 is a schematic structural diagram of the point B in fig. 3 according to the present invention.
In the figure: 1-an ignition gun body, 2-an oil feeding pipeline, 3-a storage cavity, 4-an oil inlet pipe orifice, 5-a gun barrel, 6-an air inlet pipe orifice, 7-a distributor, 8-a bubble generation frame, 9-a spray head, 10-a positioning block, 11-a movable block, 12-a connecting rod, 13-a sealing gasket, 14-a traction supporting rod, 15-a metal panel, 16-a threaded frame, 17-a positioning column, 18-a threaded connector, 19-a fixing frame, 20-a magnetic plate and 21-an extension rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution:
the boiler ignition oil flow regulating mechanism comprises an ignition gun body 1, a gun barrel 5 and a traction support rod 14, wherein an oil feeding pipeline 2 is arranged in the middle of the ignition gun body 1 in an integrated mode, a storage cavity 3 is communicated with one side of the oil feeding pipeline 2, an oil inlet pipe orifice 4 is connected to the top of the ignition gun body 1, an air inlet pipe orifice 6 is arranged on one side of the oil inlet pipe orifice 4, the gun barrel 5 is arranged at the upper end and the lower end of the oil feeding pipeline 2, the gun barrel 5 is connected with the ignition gun body 1 through an integrated forming device, a distributor 7 is fixed to one side of the ignition gun body 1, an air bubble generating frame 8 is sleeved at the outer end of the distributor 7, a spray head 9 is fixedly connected to one side of the air bubble generating frame 8, a positioning block 10 is fixed inside the oil feeding pipeline 2, a movable block 11 is installed below the positioning block 10, a connecting rod 12 is fixed above the movable block 11 in an oblique direction, draw branch 14 to set up in one side below of connecting rod 12 through welded fastening, the opposite side welding of the ignition gun body 1 has metal decking 15, the bottom of drawing branch 14 is fixed with screw thread frame 16, and the inside of screw thread frame 16 is pegged graft and is had reference column 17, the middle part of reference column 17 sets up through integrated into one piece and is fixed with threaded joint 18, and the welding of one side of reference column 17 has fixed frame 19, the inside welded fastening of fixed frame 19 has magnetic plate 20, the opposite side of reference column 17 is connected with extension rod 21 through movable axis body.
The transverse central axis of the ignition gun body 1 and the transverse central axis of the oil feeding pipeline 2 are mutually overlapped, the interior of the oil feeding pipeline 2 is communicated with the interior of the oil feeding pipe orifice 4 through the storage cavity 3, and by combining the hollow matching of the interior of the oil feeding pipe orifice 4, a worker can feed oil required in the ignition process into the interior of the oil feeding pipeline 2 through the storage cavity 3, so that a certain oil condition is provided for the ignition operation carried out in the later period; the air inlet pipe orifice 6 is fixedly connected with the ignition gun body 1 through integral forming, the inside of the ignition gun body 1 is communicated through the distributor 7, the bubble generation frame 8 and the inside of the spray head 9, when the whole ignition device works, the ignition device atomizes oil liquid in the distributor 7 under the cooperation of air supply of the air inlet pipe orifice 6, so that the oil liquid becomes UM-grade particles, the oil liquid is fully combusted through air distribution and ignition, fire bundles generated in the combustion process can be brought out by the aid of the hollow inside of the spray head 9, after raw materials in the boiler are ignited, the ignition operation of the whole ignition oil gun can be realized, and the structure relates to the working principle of the ignition oil gun, and the structure belongs to the prior art; the shapes of the positioning block 10 and the movable block 11 are distributed in a conical structure, one side of the movable block 11 is connected with connecting rods 12 distributed in an inclined structure, the connecting rods 12 are in staggered connection with the ignition gun body 1 through a fit groove body, when oil flow regulation operation needs to be carried out before ignition, under the sealing matching of the hollow of the inclined groove body and a sealing washer 13, a worker can carry the movable block 11 with the shape of the conical structure by drawing the supporting rods 14 and the connecting rods 12, inclined outward drawing operation is carried out along an inclined edge line arranged at the bottom of the positioning block 10, the ignition device realizes the whole oil flow regulation operation by changing the size of a crack between the movable block 11 and the positioning block 10 in the drawing process, and the whole ignition device has a flow regulation mechanism and simultaneously replaces the conventional valve plate overturning for flow regulation by utilizing a direct inclined drawing mode, the whole adjusting process is more convenient and labor-saving, and the phenomenon of overflow of oil liquid in the adjusting process is effectively avoided; the traction support rod 14 and the thread frame 16 are perpendicular to each other, the thread frame 16 forms a spiral structure through a thread joint 18 and a positioning column 17, the positioning column 17 is magnetically connected with the metal panel 15 through a fixed frame 19, a magnetic plate 20 and the metal panel 15, the fixed frame 19 is distributed in a U-shaped structure, the positioning column 17 forms a movable structure through a movable shaft body and an extension rod 21, because an adjusting mechanism at one side end is easily interfered by external force factors when being directly exposed to the outside, after the whole adjusting operation is completed, under the connection and matching of the thread frame 16, a worker rotates around along a thread tooth surface arranged inside the thread frame 16 through the thread joint 18 according to a thread adjusting mode until the thread joint 18 carries the positioning column 17, the fixed frame 19 and the magnetic plate 20 to be stretched outwards through thrust in a spiral process, and the magnetic plate 20 is under the connection and matching of the fixed frame 19 with the U-shaped structure, will utilize the magnetic force that self has, realize the magnetism with the metal decking 15 that is fixed in the 1 one side of the ignition gun body and connect, this ignition is with the help of the state that this magnetism is connected, make the position behind the fluid flow control obtain certain location, this structure is when making whole ignition have a magnetic force location structure, fix through the position after in time flow control, can avoid later stage external force factor because of the skew that striking adjustment mechanism caused effectively, and when adjusting the biggest fluid velocity of flow, whole magnetic force location structure's length can be under the connection cooperation of activity axis body, adjust the horizontality with it through upset extension rod 21, realize the holistic extension operation to magnetic force location structure, it will be more convenient to carry out the location operation in the later stage.
The working process is as follows: when the whole ignition device works, under the cooperation of air supply of the air inlet pipe orifice 6, the ignition device atomizes oil in the distributor 7 to enable the oil to become UM-grade particles, the oil is fully combusted through air distribution and ignition, fire beams generated in the combustion process can be brought out by virtue of the hollow inside the spray head 9, after raw materials in the boiler are ignited, the ignition operation of the whole ignition oil gun can be realized, under the sealing cooperation of the hollow inside the inclined groove body and the sealing washer 13, a worker can carry the movable block 11 with the conical shape by drawing the support rod 14 and the connecting rod 12 to perform inclined outward drawing operation along the inclined edge line arranged at the bottom of the positioning block 10, the ignition device realizes the whole oil flow regulation operation by virtue of the change of the size of a crack between the movable block 11 and the positioning block 10 in the drawing process, after the whole adjusting operation is completed, a worker carries the positioning column 17, the fixing frame 19 and the magnetic plate 20 through the threaded joint 18 according to a threaded adjusting mode to realize convolution and outward stretching, the magnetic plate 20 is magnetically connected with the metal panel 15 fixed on one side of the ignition gun body 1, and the ignition device enables the position of the oil liquid after the oil liquid flow adjustment to be positioned to a certain extent by means of the magnetic connection state.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. Boiler ignition oil flow adjustment mechanism, including the ignition rifle body (1), barrel (5) and pull branch (14), its characterized in that: an oil feeding pipeline (2) is arranged in the middle of the ignition gun body (1) through an integrated structure, a storage cavity (3) is communicated with one side of the oil feeding pipeline (2), an oil feeding pipe orifice (4) is connected to the top of the ignition gun body (1), an air inlet pipe orifice (6) is arranged on one side of the oil feeding pipe orifice (4), the gun barrel (5) is arranged at the upper end and the lower end of the oil feeding pipeline (2), the gun barrel (5) is connected with the ignition gun body (1) through an integrated forming structure, a distributor (7) is fixed on one side of the ignition gun body (1), an air bubble generating frame (8) is sleeved on the outer end of the distributor (7), a spray head (9) is fixedly connected to one side of the air bubble generating frame (8), a positioning block (10) is fixed inside the oil feeding pipeline (2), and a movable block (11) is installed below the positioning block (10), the utility model discloses a portable electronic ignition gun, including the pivot, the oblique top of movable block (11) is fixed with connecting rod (12), and connecting rod (12) and the ignition gun body (1) junction cup jointed seal ring (13), it sets up in one side below of connecting rod (12) through welded fastening to pull branch (14), the opposite side welding of the ignition gun body (1) has metal decking (15), the bottom of pulling branch (14) is fixed with screw thread frame (16), and pegs graft in the inside of screw thread frame (16) and have reference column (17), the middle part of reference column (17) sets up through integrated into one piece and is fixed with screwed joint (18), and the welding of one side of reference column (17) has fixed frame (19), the inside welded fastening of fixed frame (19) has magnetic plate (20), the opposite side of reference column (17) is connected with extension rod (21) through the activity.
2. The boiler ignition oil flow adjusting mechanism according to claim 1, characterized in that: the horizontal axis of the ignition gun body (1) and the horizontal axis of the oil feeding pipeline (2) are overlapped, and the inside of the oil feeding pipeline (2) is communicated with the inside of the oil inlet pipe orifice (4) through the storage cavity (3).
3. The boiler ignition oil flow adjusting mechanism according to claim 1, characterized in that: the air inlet pipe orifice (6) is fixedly connected with the ignition gun body (1) through integrated forming, and the inside of the ignition gun body (1) is communicated through the distributor (7), the bubble generation frame (8) and the spray head (9).
4. The boiler ignition oil flow adjusting mechanism according to claim 1, characterized in that: the appearance of locating piece (10) and movable block (11) all is the toper structure and distributes and set up, and one side of movable block (11) is connected with connecting rod (12) that are the distribution of slope column structure and set up, connecting rod (12) are through agreeing with cell body and ignition gun body (1) staggered connection.
5. The boiler ignition oil flow adjusting mechanism according to claim 1, characterized in that: draw mutually perpendicular between branch (14) and screw frame (16), and screw frame (16) constitute helical structure through screwed joint (18) and reference column (17), reference column (17) are connected through fixed frame (19), magnetic plate (20) and metal decking (15) magnetism, and the appearance of fixed frame (19) is "U" type structure distribution and sets up, reference column (17) constitute the active structure through activity axis body and extension rod (21).
CN202020387133.XU 2020-03-24 2020-03-24 Flow regulating mechanism for ignition oil of boiler Active CN212029597U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020387133.XU CN212029597U (en) 2020-03-24 2020-03-24 Flow regulating mechanism for ignition oil of boiler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020387133.XU CN212029597U (en) 2020-03-24 2020-03-24 Flow regulating mechanism for ignition oil of boiler

Publications (1)

Publication Number Publication Date
CN212029597U true CN212029597U (en) 2020-11-27

Family

ID=73487768

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020387133.XU Active CN212029597U (en) 2020-03-24 2020-03-24 Flow regulating mechanism for ignition oil of boiler

Country Status (1)

Country Link
CN (1) CN212029597U (en)

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