CN220048718U - Metal tube surface antioxidant coating device - Google Patents

Metal tube surface antioxidant coating device Download PDF

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Publication number
CN220048718U
CN220048718U CN202321013023.7U CN202321013023U CN220048718U CN 220048718 U CN220048718 U CN 220048718U CN 202321013023 U CN202321013023 U CN 202321013023U CN 220048718 U CN220048718 U CN 220048718U
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China
Prior art keywords
coating
wall
box
metal tube
tube surface
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Application number
CN202321013023.7U
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Chinese (zh)
Inventor
周涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tianjin Hongren Metal Material Co ltd
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Tianjin Hongren Metal Material Co ltd
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Priority to CN202321013023.7U priority Critical patent/CN220048718U/en
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Publication of CN220048718U publication Critical patent/CN220048718U/en
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Abstract

The utility model relates to the technical field of coating devices, and discloses a metal tube surface antioxidant coating device which comprises a coating box, wherein a material box is fixedly arranged on the outer wall of the coating box, an inflator pump is arranged on the material box, a material cavity is formed in the coating box, the material box is communicated with one end of a communicating pipe, the other end of the communicating pipe is communicated with the interior of the material cavity, a coating cavity is formed in the middle of the coating box, and a coating mechanism is arranged in the coating box. This metal tube surface antioxidant coating device passes through the setting of coating mechanism, through the extrusion of metal tube to the brush handle in carrying out the coating in-process, makes the extrusion piece upward movement open the breach between material chamber and the coating chamber, makes the coating material follow guiding gutter flow direction brush at last and coats the metal tube on the brush handle, and the extrusion piece downward movement closes the breach after the coating is finished, prevents the waste of coating material.

Description

Metal tube surface antioxidant coating device
Technical Field
The utility model relates to the technical field of coating devices, in particular to a metal tube surface antioxidant coating device.
Background
At present, the automobile parts are usually metal products, metal pipes are used in the automobile parts, the quality of the metal pipes is good, the metal pipes are not easy to damage, but the metal pipes are easy to oxidize in the using process, so that the metal pipes are required to be subjected to oxidation-preventing treatment in the production process of the metal pipes.
In the existing coating device, the steel pipe is generally coated by being placed in a coating box in the coating process, and the coating is always in a conveying state in the coating process, so that more waste is caused in the actual coating process, and the steel pipe is required to be frequently recycled by workers; in view of this, we propose an antioxidant coating apparatus for metal pipe surfaces.
Disclosure of Invention
The utility model aims to provide an antioxidant coating device for the surface of a metal pipe, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a metal tube surface antioxidant coating device, includes the coating case, fixed mounting has the material case in addition on the outer wall of coating case, be provided with the pump on the material case, the material chamber has been seted up to the coating incasement portion, material case and communicating pipe's one end intercommunication, communicating pipe's the other end and the inside intercommunication in material chamber, the coating chamber has been seted up in the middle of the coating case, the inside of coating case is provided with coating mechanism, coating mechanism is including:
the fixed box is fixedly arranged on the inner wall of the material cavity;
the extrusion spring is fixedly arranged on the inner wall of the fixed box;
the extrusion block is fixedly arranged at the end part of the extrusion spring and is in sliding connection with the inner wall of the fixed box.
Preferably, the bottom wall of the extrusion block is fixedly provided with a sleeve, the outer wall of the sleeve is provided with guide grooves, and the guide grooves are distributed in an array on the outer wall of the sleeve.
Preferably, the inner wall of the sleeve is connected with a sliding plate in a sliding manner, and the bottom wall of the sliding plate is connected with a rotating rod in a rotating manner.
Preferably, the end of the rotating rod is rotatably connected with the outer wall of the brush handle, and the brush handle is positioned in the coating cavity.
Preferably, the outer wall of the rotating rod is fixedly connected with one end of the torsion spring, the other end of the torsion spring is elastically connected with the bottom wall of the sliding plate, and the torsion spring is in a stretching state.
Preferably, the outer wall of the rotating rod is fixedly provided with a limit ruler, the inner wall of the sleeve is provided with a caliper, and the caliper and the limit ruler are clamped with each other.
Compared with the prior art, the utility model provides a metal tube surface antioxidant coating device, which has the following beneficial effects:
1. this metal tube surface antioxidant coating device passes through the setting of coating mechanism, through the extrusion of metal tube to the brush handle in carrying out the coating in-process, makes the extrusion piece upward movement open the breach between material chamber and the coating chamber, makes the coating material follow guiding gutter flow direction brush at last and coats the metal tube on the brush handle, and the extrusion piece downward movement closes the breach after the coating is finished, prevents the waste of coating material.
2. This metal tube surface antioxidant coating device drives the limit ruler through the bull stick and rotates and the slide caliper rule between spacing being relieved, and then drives the position of brush handle through the bull stick and be adjusted, and then makes the device carry out coating work to the metal tube of different model sizes.
Drawings
FIG. 1 is a schematic diagram of the overall front view of the present utility model;
FIG. 2 is an enlarged schematic view of the structure A of FIG. 1 according to the present utility model;
FIG. 3 is a schematic view of a part of the structure of the present utility model.
In the figure: 1. a coating box; 2. a material box; 3. an inflator pump; 4. a communicating pipe; 5. a material cavity; 6. a coating chamber; 7. a coating mechanism; 71. a fixed box; 72. extruding a spring; 73. extruding a block; 74. a sleeve; 75. a diversion trench; 76. a slide plate; 77. a rotating rod; 78. a torsion spring; 79. a limit ruler; 710. a caliper; 711. a brush handle.
Detailed Description
As shown in fig. 1-3, the present utility model provides a technical solution: the utility model provides a metal tube surface antioxidant coating device, including coating case 1, fixed mounting has material case 2 in addition on the outer wall of coating case 1, be provided with pump 3 on the material case 2, material chamber 5 has been seted up to the inside of coating case 1, the material that makes in the material case 2 flows to the inside in material chamber 5 through communicating pipe 4 through starting pump 3, material case 2 communicates with the one end of communicating pipe 4, the other end of communicating pipe 4 communicates with the inside in material chamber 5, coating chamber 6 has been seted up in the centre of coating case 1, the inside of coating case 1 is provided with coating mechanism 7.
In this embodiment, the inside of coating case 1 is provided with coating mechanism 7, through the setting of coating mechanism 7, through the extrusion of tubular metal resonator to brush 711 in carrying out the coating process, make extrusion piece 73 upward movement open the breach between material chamber 5 and the coating chamber 6, make the coating material follow guiding gutter 75 flow direction brush handle 711 go on coating to tubular metal resonator at last, extrusion piece 73 downward movement is closed the breach after the coating, prevent the waste of coating material from appearing, drive limit ruler 79 through the bull stick 77 simultaneously and rotate and the slide caliper rule 710 between spacing being relieved, and then drive the position of brush handle 711 through bull stick 77 and be adjusted, and then make the device carry out the coating work to the tubular metal resonator of different model sizes.
The coating mechanism 7 comprises a fixed box 71, the fixed box 71 is fixedly arranged on the inner wall of a material cavity 5, the inner wall of the fixed box 71 is fixedly connected with one end of a pressing spring 72, the pressing spring 72 is fixedly connected with a pressing block 73, the pressing block 73 moves downwards to reset to close a notch through the elasticity of the pressing spring 72, waste of coating materials is prevented, the pressing block 73 and the inner wall of the fixed box 71 are slidably connected, the pressing block 73 moves upwards to open the notch, the coating materials flow from a guide groove 75 to a brush handle 711 to coat a metal pipe, a sleeve 74 is fixedly arranged on the bottom wall of the pressing block 73, a guide groove 75 is arranged on the outer wall of the sleeve 74, the guide groove 75 is distributed and arranged on the outer wall of the sleeve 74 in an array mode, a sliding plate 76 is slidably connected on the inner wall of the sleeve 74, a rotating rod 77 is connected with a rotating rod 77 on the bottom wall of the sliding plate 76, the end portion of the rotating rod 77 is connected with the outer wall of the brush handle 711 in a rotating mode, the brush handle 711 is enabled to move upwards through the metal pipe to push the brush handle 711, the brush handle 77 is enabled to be located in the inside the coating cavity 6, the guide groove 75 flows to the brush handle 711 to the metal pipe to coat a metal pipe, a torsion spring is fixedly arranged on the bottom wall of the sleeve 74 is fixedly connected with the guide groove 75, the guide groove is connected with the torsion spring 79, and the torsion spring 79 is fixedly connected with the torsion spring 79, and the torsion spring 79 is arranged between the end of the guide plate 79 and the torsion spring is fixedly arranged between the guide rule 710 and the end is fixedly connected with the torsion spring 79 on the end of the guide rule wire through the guide rule 75 and the torsion spring.
During operation (or during use), firstly, the inflator pump 3 is started to enable materials in the material box 2 to flow into the material cavity 5 through the communicating pipe 4, then the metal pipe is pushed into the coating cavity 6, and then the brush handle 711 is extruded through the metal pipe, the brush handle 711 drives the rotating rod 77 to move upwards, the limiting ruler 79 is clamped with the caliper 710 through the limiting ruler 79, the rotating rod 77 drives the extrusion block 73 fixedly arranged at the top of the sleeve 74 to move upwards, the extrusion block 73 moves towards the inside of the fixed box 71 to open a gap between the material cavity 5 and the coating cavity 6, then the coating materials flow from the guide groove 75 formed in the outer wall of the sleeve 74, the materials drop onto the brush handle 711 to coat the metal pipe, after coating, the brush handle 711 is not extruded through the metal pipe, and then the extrusion block 73 moves downwards to reset the gap to close through the elastic force of the extrusion spring 72, waste of the coating materials is prevented, meanwhile, the limiting ruler 79 is driven to rotate through the rotating rod 77 to be limited between the caliper 710, and the position of the brush handle 77 is adjusted, and the thick coating device can not be further used for coating the metal pipe.
The foregoing utility model has been generally described in great detail, but it will be apparent to those skilled in the art that modifications and improvements can be made thereto. Accordingly, it is intended to cover modifications or improvements within the spirit of the inventive concepts.

Claims (6)

1. The utility model provides a metal tube surface anti-oxidant coating device, includes coating case (1), fixed mounting has material case (2) in addition on the outer wall of coating case (1), be provided with inflator pump (3), its characterized in that on material case (2): the utility model discloses a coating box, including material chamber (5) have been seted up to inside of coating box (1), material chamber (2) and the one end intercommunication of communicating pipe (4), the other end of communicating pipe (4) communicates with the inside of material chamber (5), coating chamber (6) have been seted up in the centre of coating box (1), the inside of coating box (1) is provided with coating mechanism (7), coating mechanism (7) are including:
the fixed box (71), the fixed box (71) is fixedly installed on the inner wall of the material cavity (5);
a pressing spring (72), wherein the pressing spring (72) is fixedly arranged on the inner wall of the fixed box (71);
the extrusion block (73), extrusion block (73) fixed mounting is in the tip of extrusion spring (72), extrusion block (73) and the inner wall sliding connection of fixed box (71).
2. A metal tube surface antioxidant coating apparatus as set forth in claim 1, wherein: the bottom wall of the extrusion block (73) is fixedly provided with a sleeve (74), the outer wall of the sleeve (74) is provided with guide grooves (75), and the guide grooves (75) are distributed in an array on the outer wall of the sleeve (74).
3. A metal tube surface antioxidant coating apparatus as set forth in claim 2, wherein: the inner wall of the sleeve (74) is connected with a sliding plate (76) in a sliding manner, and the bottom wall of the sliding plate (76) is connected with a rotating rod (77) in a rotating manner.
4. A metal tube surface antioxidant coating apparatus as set forth in claim 3 wherein: the end of the rotating rod (77) is rotatably connected with the outer wall of the brush handle (711), and the brush handle (711) is positioned in the coating cavity (6).
5. The metal tube surface antioxidant coating apparatus of claim 4 wherein: the outer wall of bull stick (77) and the one end fixed connection of torsional spring (78), the other end of torsional spring (78) and the diapire elastic connection of slide (76), torsional spring (78) are in the state of stretching.
6. A metal tube surface antioxidant coating apparatus as set forth in claim 5 wherein: the outer wall of the rotating rod (77) is fixedly provided with a limit ruler (79), the inner wall of the sleeve (74) is provided with a caliper (710), and the caliper (710) is clamped with the limit ruler (79).
CN202321013023.7U 2023-04-28 2023-04-28 Metal tube surface antioxidant coating device Active CN220048718U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321013023.7U CN220048718U (en) 2023-04-28 2023-04-28 Metal tube surface antioxidant coating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321013023.7U CN220048718U (en) 2023-04-28 2023-04-28 Metal tube surface antioxidant coating device

Publications (1)

Publication Number Publication Date
CN220048718U true CN220048718U (en) 2023-11-21

Family

ID=88785605

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321013023.7U Active CN220048718U (en) 2023-04-28 2023-04-28 Metal tube surface antioxidant coating device

Country Status (1)

Country Link
CN (1) CN220048718U (en)

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