Aviation pipeline pulse cleaning device
By designing the pulse cleaning aviation pipeline device, the pulse cleaning machine and buffer structure are used to solve the problem of impurities accumulation in the aviation pipeline, effectively cleaning and impurity collection are achieved, and the normal use of the pipeline is ensured.
Patent Information
- Application Number
- CN202510652349.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-21
- Publication Date
- 2025-08-01
AI Technical Summary
Rust and impurities accumulate inside the aviation pipeline after a long period of use, which affects normal use and requires effective cleaning methods.
A pulse cleaning aviation pipeline device is designed, including a rectangular base and a collection bucket. A pulse cleaning structure is provided on the rectangular base, and a buffer structure is installed in the collection bucket. The cleaning and impurity collection of aviation pipelines are achieved through a pulse cleaning machine and buffer structure.
Effective cleaning of aviation pipelines, cleaning up internal impurities, ensuring normal use of the pipelines, and reducing the impact force of sewage through buffer structures, simplifying the collection process of impurity sewage.
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Figure CN120394481A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of pulse cleaning of aviation pipelines, and in particular to a device for pulse cleaning of aviation pipelines. Background Art
[0002] When aviation pipelines are used for a long time, a large amount of rust or impurity particles accumulate inside, resulting in restrictions on the use of aviation pipelines. Therefore, reasonable cleaning is required to prevent the aviation pipelines from affecting normal use. Summary of the Invention
[0003] The purpose of the present invention is to solve the above problems and design a device for pulse cleaning of aviation pipelines.
[0004] To achieve the above object, the technical solution of the present invention is a device for pulse cleaning of aviation pipelines, including a rectangular base 1 and a collection bucket 2;
[0005] A pulse cleaning structure is provided on the rectangular base 1;
[0006] A buffer structure is installed in the collection bucket 2.
[0007] The pulse cleaning structure includes: a pulse cleaning machine 3, a bearing 4, a first connecting rod 5, and a second connecting rod 6;
[0008] A pair of the first connecting rods 5 are arranged on the upper wall surface of the rectangular base 1 and are correspondingly positioned;
[0009] The second connecting rod 6 is sleeved on the first connecting rod 5;
[0010] A pair of the second connecting rods 6 are provided with a bearing plate 7;
[0011] A top frame 8 is installed on the bearing plate 7;
[0012] The pulse cleaning machine 3 is stored on the bearing plate 7 and fixed by the top frame 8;
[0013] A support frame 9 is fixed to the lower wall surface of the bearing plate 7;
[0014] Circular grooves corresponding in position are formed on the side wall surface of the support frame 9;
[0015] The bearing 4 is inserted into the circular groove, and a cross bar 10 is installed between the bearings 4;
[0016] The cross bar 10 is sleeved with an annular frame 11;
[0017] An arc-shaped groove is formed on the annular frame 11;
[0018] A plurality of arc-shaped notches are formed on the bearing plate 7;
[0019] A hook 12 is hinged to the side wall surface of the bearing plate 7 at the edge of the arc-shaped notch;
[0020] A clamping groove matching the hook 12 is formed on the side wall surface of the bearing plate 7.
[0021] The buffer structure includes: a screen cover 13, a conical cover 14, and a shielding cover 15;
[0022] The conical cover 14 is arranged in the collecting bucket 2;
[0023] The shielding cover 15 is arranged on the upper wall surface of the collecting bucket 2;
[0024] A fixing frame 16 is installed on the shielding cover 15, a jack is formed on the fixing frame 16, and a plug rod 17 is installed in the jack;
[0025] One end of the plug rod 17 is movably connected with an arc-shaped plate 18;
[0026] A sleeve 19 covering a part of the plug rod 17 is installed on the fixing frame 16;
[0027] The screen cover 13 is arranged in the collecting bucket 2 and is located above the conical cover 14.
[0028] An annular washer 20 is installed on the cross bar 10;
[0029] A first positioning port is formed on the annular washer 20;
[0030] A positioning groove matching the first positioning port is formed on the support frame 9;
[0031] A positioning rod 21 lapping with the positioning groove is inserted in the first positioning port.
[0032] A rectangular through hole is formed on the side wall surface of the collecting bucket 2;
[0033] A door 22 matching the rectangular through hole is hinged to the side wall surface of the collecting bucket 2;
[0034] A liquid outlet pipe 23 is formed on the lower wall surface of the collecting bucket 2;
[0035] A control valve is installed on the liquid outlet pipe 23.
[0036] A first threaded port is formed on the second connecting rod 6;
[0037] A first threaded groove matching the first threaded port is formed on the first connecting rod 5;
[0038] A first screw 24 lapping with the first threaded groove is inserted in the first threaded port.
[0039] On both sides of the rectangular base 1, a first handle 25 is installed;
[0040] At the edge of the rectangular base 1, a rubber pad is installed.
[0041] A bracket 26 is sleeved on the collection bucket 2;
[0042] On the bracket 26, a support rod 27 is installed;
[0043] At the lower end of the support rod 27, a first roller 30 is installed;
[0044] On the bracket 26, a second handle 31 is installed.
[0045] On the sleeve 19, a second threaded opening is provided;
[0046] On the insertion rod 17, a second threaded groove matching the second threaded opening is provided;
[0047] In the second threaded opening, a second screw 32 is inserted and lapped with the second threaded groove.
[0048] On the lower wall surface of the rectangular base 1, a column 33 is fixed;
[0049] On the column 33, a gasket 29 is installed;
[0050] On the column 33, a slot is provided;
[0051] In the slot, the insertion rod 17 is inserted;
[0052] On the insertion rod 17, a second roller 28 is installed.
[0053] The advantages of this application are as follows:
[0054] A pulse cleaning aviation pipeline device manufactured by using the technical solution of the present invention can facilitate the reasonable flushing of the aviation pipeline through pulse cleaning, clean the impurities inside the aviation pipeline, enable the normal use of the aviation pipeline, and the buffer structure is convenient for collecting and cleaning the impurity sewage. Through the buffer structure, the impact force of the sewage is reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0055] Figure 1 is a schematic structural diagram of a pulse cleaning aviation pipeline device according to the present invention;
[0056] Figure 2 is a front view of the buffer structure of a pulse cleaning aviation pipeline device according to the present invention;
[0057] Figure 3 is a top view of the shielding cover of a pulse cleaning aviation pipeline device according to the present invention;
[0058] Figure 4It is the top view of the bracket of a pulse cleaning device for aviation pipelines according to the present invention;
[0059] Figure 5 It is the top view of the bearing plate of a pulse cleaning device for aviation pipelines according to the present invention;
[0060] In the figure, 1 is a rectangular base; 2 is a collection bucket; 3 is a pulse cleaning machine; 4 is a bearing; 5 is a first connecting rod; 6 is a second connecting rod; 7 is a bearing plate; 8 is a top frame; 9 is a support frame; 10 is a cross bar; 11 is an annular frame; 12 is a hook; 13 is a screen cover; 14 is a conical cover; 15 is a shielding cover; 16 is a fixing frame; 17 is an insertion rod; 18 is an arc plate; 19 is a sleeve; 20 is an annular gasket; 21 is a positioning rod; 22 is a shutter; 23 is a liquid outlet pipe; 24 is a first screw; 25 is a first handle; 26 is a bracket; 27 is a support rod; 28 is a second roller; 29 is a gasket; 30 is a first roller; 31 is a second handle; 32 is a second screw; 33 is a column. Detailed implementation manner
[0061] The present invention will be specifically described below with reference to the accompanying drawings. As Figures 1-5 shown, a pulse cleaning device for aviation pipelines includes a rectangular base 1 and a collection bucket 2. A pulse cleaning structure is provided on the rectangular base 1, and a buffer structure is installed in the collection bucket 2. Through pulse cleaning, it is convenient to reasonably wash the aviation pipelines, clean the impurities inside the aviation pipelines, and enable the normal use of the aviation pipelines. The buffer structure is convenient for collecting and cleaning the impurity sewage, and reduces the impact force of the sewage through the buffer structure.
[0062] In this embodiment, it includes a rectangular base 1 and a collection bucket 2. A pulse cleaning structure is provided on the rectangular base 1, and a buffer structure is installed in the collection bucket 2.
[0063] The pulse cleaning structure includes: a pulse cleaning machine 3, a bearing 4, a first connecting rod 5, and a second connecting rod 6;
[0064] The first connecting rod 5 is placed on the upper wall surface of the rectangular base 1 and corresponds to each other in position. The second connecting rod 6 is sleeved on the first connecting rod 5. A bearing plate 7 is installed on a pair of second connecting rods 6. A top frame 8 is installed on the bearing plate 7. The pulse cleaning machine 3 is stored on the bearing plate 7 and fixed by the top frame 8. The lower wall surface of the bearing plate 7 is fixed with a support frame 9. A circular groove corresponding to the position is opened on the side wall surface of the support frame 9. The bearing 4 is inserted into the circular groove. A cross bar 10 is installed between the bearings 4. An annular frame 11 is sleeved on the cross bar 10. An arc groove is opened on the annular frame 11. A plurality of arc notches are opened on the bearing plate 7. Hooks 12 are hinged on the side wall surface of the bearing plate 7 and at the edge of the arc notches. A clamping groove matching the hook 12 is opened on the side wall surface of the bearing plate 7;
[0065] It should be noted that: The second connecting rod 6 on the first connecting rod 5 can pull to adjust the use height of the bearing plate 7, which is convenient for improving the use effect. The bearing plate 7 is convenient for the installation of the pulse cleaning machine 3. The pulse cleaning machine 3 is used to reasonably flush the aviation pipeline. The support frame 9 plays a supporting role, which is used to support the annular frame 11 on the cross bar 10 of the bearing 4. The arc-shaped groove on the annular frame 11 is convenient for winding and collecting the pipelines used by the pulse cleaning machine 3 itself. The arc-shaped notch is convenient for placing the pipelines. The pipelines are clamped and supported by the hook 12 to limit the pipelines.
[0066] The buffer structure includes: a screen cover 13, a conical cover 14, and a shielding cover 15;
[0067] The conical cover 14 is arranged in the collection bucket 2, and the shielding cover 15 is arranged on the upper wall surface of the collection bucket 2. A fixing frame 16 is installed on the shielding cover 15. A jack is opened on the fixing frame 16, and a plug rod 17 is installed in the jack. One end of the plug rod 17 is movably connected with an arc-shaped plate 18. A sleeve 19 that wraps part of the plug rod 17 is installed on the fixing frame 16. The screen cover 13 is arranged in the collection bucket 2 and is located above the conical cover 14;
[0068] It should be noted that: The conical cover 14 is installed in the collection bucket 2, which plays a role in filtering impurities and buffering. The screen cover 13 plays a buffering role. Through the shielding cover 15, it is convenient to insert the connecting pipe connected to the aviation pipeline into the interior. Then, the plug rod 17 is pushed, and the connecting pipe is clamped by the arc-shaped plate 18, which is convenient for the stable connection of the connecting pipe.
[0069] As a preferred technical solution, further, a circular washer 20 is installed on the cross bar 10. A first positioning port is opened on the circular washer 20. A positioning groove matching the first positioning port is opened on the support frame 9. A positioning rod 21 that overlaps with the positioning groove is inserted into the first positioning port; Through the positioning rod 21, it is convenient to fix the cross bar 10, thereby fixing the annular frame 11, so that the pipelines are stably placed after being wound.
[0070] As a preferred technical solution, further, a rectangular through hole is opened on the side wall surface of the collection bucket 2. A door 22 matching the rectangular through hole is connected to the side wall surface of the collection bucket 2 through a hinge. A liquid outlet pipe 23 is opened on the lower wall surface of the collection bucket 2, and a control valve is installed on the liquid outlet pipe 23; Through the liquid outlet pipe 23, it is convenient for the water in the collection bucket 2 to flow out. Through the rectangular through hole, it is convenient to clean the collection bucket 2.
[0071] As a preferred technical solution, further, a first threaded port is opened on the second connecting rod 6. A first threaded groove matching the first threaded port is opened on the first connecting rod 5. A first screw 24 that overlaps with the first threaded groove is inserted into the first threaded port; Through the first screw 24, it is convenient to fix the first connecting rod 5 and the second connecting rod 6.
[0072] As a preferred technical solution, further, first handles 25 are installed on both sides of the rectangular base 1, and rubber pads are installed at the edges of the rectangular base 1.
[0073] As a preferred technical solution, further, a bracket 26 is sleeved on the collection bucket 2, a support rod 27 is installed on the bracket 26, a first roller 30 is installed at the lower end of the support rod 27, and a second handle 31 is installed on the bracket 26; through the first roller 30, it is convenient to move the collection bucket 2.
[0074] As a preferred technical solution, further, a second threaded port is opened on the sleeve 19, a second threaded groove matching the second threaded port is opened on the insertion rod 17, and a second screw 32 lapping with the second threaded groove is inserted into the second threaded port; through the second screw 32, it is convenient to fix the insertion rod 17, thereby clamping the connecting pipe stably.
[0075] As a preferred technical solution, further, a column 33 is fixed on the lower wall surface of the rectangular base 1, a gasket 29 is installed on the column 33, a slot is opened on the column 33, the insertion rod 17 is inserted into the slot, and a second roller 28 is installed on the insertion rod 17; the column 33 is convenient for fixing and supporting the device, and through the installation of the insertion rod 17, it is convenient to move the device.
[0076] The above are only specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can make several deformations or substitutions, which should all be covered by the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. A pulsed cleaning device for aviation pipelines, characterized in that it includes a rectangular base (1) and a collection bucket (2); a pulsed cleaning structure is provided on the rectangular base (1); a buffer structure is installed in the collection bucket (2).
2. The pulsed cleaning device for aviation pipelines according to claim 1, characterized in that the pulsed cleaning structure includes: a pulsed cleaning machine (3), a bearing (4), a first connecting rod (5) and a second connecting rod (6); a pair of the first connecting rods (5) are arranged on the upper wall surface of the rectangular base (1) and are correspondingly positioned; the second connecting rod (6) is sleeved on the first connecting rod (5); a pair of the second connecting rods (6) are provided with a bearing plate (7); a top frame (8) is installed on the bearing plate (7); the pulsed cleaning machine (3) is stored on the bearing plate (7) and is fixed by the top frame (8); a support frame (9) is fixed on the lower wall surface of the bearing plate (7); circular grooves corresponding in position are opened on the side wall surface of the support frame (9); the bearing (4) is inserted into the circular groove, and a cross bar (10) is installed between the bearings (4); a ring frame (11) is sleeved on the cross bar (10); an arc-shaped groove is opened on the ring frame (11); a plurality of arc-shaped slits are opened on the bearing plate (7); a hook (12) is hinged to the side wall surface of the bearing plate (7) and at the edge of the arc-shaped slit; a card slot matching the hook (12) is opened on the side wall surface of the bearing plate (7).
3. The pulsed cleaning device for aviation pipelines according to claim 1, characterized in that the buffer structure includes: a screen cover body (13), a conical cover body (14) and a shielding cover (15); the conical cover body (14) is arranged in the collection bucket (2); the shielding cover (15) is arranged on the upper wall surface of the collection bucket (2); a fixing frame (16) is installed on the shielding cover (15), an insertion hole is opened on the fixing frame (16), and a plug rod (17) is installed in the insertion hole; one end of the plug rod (17) is movably connected with an arc-shaped plate (18); a sleeve (19) that wraps a part of the plug rod (17) is installed on the fixing frame (16); the screen cover body (13) is arranged in the collection bucket (2) and is located above the conical cover body (14).
4. The pulsed cleaning device for aviation pipelines according to claim 2, characterized in that a ring gasket (20) is installed on the cross bar (10); a first positioning port is opened on the ring gasket (20); a positioning groove matching the first positioning port is opened on the support frame (9); a positioning rod (21) that overlaps with the positioning groove is inserted into the first positioning port.
5. The pulsed cleaning device for aviation pipelines according to claim 1, characterized in that a rectangular through hole is opened on the side wall surface of the collection bucket (2); a door (22) matching the rectangular through hole is hinged to the side wall surface of the collection bucket (2); a liquid outlet pipe (23) is opened on the lower wall surface of the collection bucket (2); a control valve is installed on the liquid outlet pipe (23).
6. The pulse cleaning aviation pipeline device according to claim 2, characterized in that a first threaded opening is provided on the second connecting rod (6); a first threaded groove matching the first threaded opening is provided on the first connecting rod (5); a first screw (24) lapping with the first threaded groove is inserted in the first threaded opening.
7. The pulse cleaning aviation pipeline device according to claim 1, characterized in that first handles (25) are installed on both sides of the rectangular base (1); a rubber pad is installed at the edge of the rectangular base (1).
8. The pulse cleaning aviation pipeline device according to claim 1, characterized in that a bracket (26) is sleeved on the collection bucket (2); a support rod (27) is installed on the bracket (26); a first roller (30) is installed at the lower end of the support rod (27); a second handle (31) is installed on the bracket (26).
9. The pulse cleaning aviation pipeline device according to claim 3, characterized in that a second threaded opening is provided on the sleeve (19); a second threaded groove matching the second threaded opening is provided on the insertion rod (17); a second screw (32) lapping with the second threaded groove is inserted in the second threaded opening.
10. The pulse cleaning aviation pipeline device according to claim 1, characterized in that, a column (33) is fixed on the lower wall surface of the rectangular base (1); a gasket (29) is installed on the column (33); a slot is provided on the column (33); the insertion rod (17) is inserted in the slot; a second roller (28) is installed on the insertion rod (17).