Surface anticorrosive coating curing tool for pressure gauge production

By designing a corrosion-resistant curing fixture that combines support, compression, and rotation components with a blowing component, the problem of uneven heating of the pressure gauge coating was solved, achieving uniform curing of the coating and improving adhesion, thus preventing peeling.

CN223959944UActive Publication Date: 2026-03-03HANGZHOU SHUANGPU INSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

In the prior art, the anti-corrosion coating of pressure gauges is prone to uneven heating during the drying process, which leads to a decrease in coating adhesion and may cause the coating to fall off.

Method used

A corrosion-resistant coating curing fixture was designed, comprising a support component, an extrusion component, a rotation component, and a blowing component. The support component supports the pressure gauge, the extrusion component fixes the pressure gauge, the rotation component drives the pressure gauge to rotate, and the blowing component provides uniform hot air to ensure uniform curing of the coating.

Benefits of technology

It achieves uniform curing of the anti-corrosion coating, improves the coating's adhesion, avoids coating peeling during use, and makes operation more convenient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a surface anti-corrosion layer curing tool for pressure gauge production, and relates to the technical field of anti-corrosion layer curing. The drying device comprises a drying box, a supporting assembly is arranged in the drying box, an extrusion assembly is arranged in the supporting assembly, a rotating assembly is arranged in the drying box, and the rotating assembly is in power connection with the supporting assembly. According to the pressure gauge drying device, the threaded pipe at the bottom of the pressure gauge is inserted into the supporting assembly, so that the pressure gauge can be vertically located in the drying box, and hot air blown by the air blowing assembly makes contact with the surface of the pressure gauge from the side edge; in addition, a rotating assembly drives the pressure gauge to rotate in the drying box through a supporting assembly, so that an anti-corrosion coating on the surface of the pressure gauge is heated more uniformly during curing, a protective coating can be better adsorbed to the surface of the pressure gauge, and meanwhile, the phenomenon that when the pressure gauge is used, the pressure gauge is damaged can be effectively avoided; and the anti-corrosion coating is prevented from falling off.
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Description

Technical Field

[0001] This utility model belongs to the field of anti-corrosion layer curing technology, and specifically relates to a surface anti-corrosion layer curing tool for pressure gauge production. Background Technology

[0002] Pressure gauges are often used in complex industrial environments, and many industrial production processes involve corrosive media, so the surface of the pressure gauge needs to be treated with anti-corrosion coating. After the pressure gauge has undergone anti-corrosion treatment, if the coating has not cured, its structure is loose. Therefore, it is necessary to use a fixing fixture to cure the coating, so that the anti-corrosion coating can better adhere to the surface of the pressure gauge.

[0003] When fixing pressure gauges coated with anti-corrosion coatings, the pressure gauges are usually placed directly inside a drying oven to allow the anti-corrosion coating to cure quickly. However, this placement method can obstruct some areas of the anti-corrosion coating on the outer surface of the pressure gauge. As a result, the anti-corrosion coating may be heated unevenly when heated, affecting its adhesion. This can lead to the anti-corrosion coating peeling off during subsequent use.

[0004] No effective solutions have yet been proposed to address the problems in the relevant technologies. Utility Model Content

[0005] In view of the problems in the related technologies, this utility model proposes a surface anti-corrosion layer curing tool for pressure gauge production, so as to overcome the above-mentioned technical problems existing in the existing related technologies.

[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0007] This utility model is a surface anti-corrosion coating curing tool for pressure gauge production, including a drying box. The tool is characterized in that a support component is provided inside the drying box, a pressing component is provided inside the support component, a rotating component is provided inside the drying box, the rotating component is poweredly connected to the support component, and a blowing component is provided on one side of the drying box.

[0008] The support assembly is used to support the pressure gauge, the compression assembly is used to compress and fix the pressure gauge, the rotation assembly is used to drive the support assembly to rotate, so that the support assembly drives the pressure gauge to rotate, and the blowing assembly is used to dry the anti-corrosion coating.

[0009] Furthermore, the support assembly includes a support platform, the top of which is fixedly connected to a plurality of support tubes, the height of which decreases progressively from the inside to the outside, and handles are provided on both sides of the support platform.

[0010] Furthermore, the extrusion assembly includes a movable groove, which is formed inside the support platform. A movable disk is movably connected inside the movable groove. A plurality of extrusion rods are fixedly connected inside the movable disk to the corresponding support tubes. The extrusion rods are movably connected to the corresponding support tubes. A screw is rotatably connected inside the movable groove, and the screw is threadedly connected to the movable disk.

[0011] Furthermore, one end of the screw passes through the support platform and is fixedly connected to a rotating disk, a guide rod is fixedly connected to the inner wall of the moving groove, the guide rod is movably connected to the moving disk, and the top of the extrusion rod is tapered.

[0012] Furthermore, the rotating assembly includes a rotating table, the top of which has a socket groove, and a socket base is movably connected inside the socket groove. The socket base is fixedly connected to a support platform, and a motor is fixedly installed at the bottom of the drying oven. The output end of the motor is fixedly connected to the rotating table.

[0013] Furthermore, the blowing assembly includes a blowing trough, which is opened on one side of the drying box. A hot air blower is fixedly installed on the outside of the drying box corresponding to the blowing trough, and a steam exhaust port is provided on the top of the drying box.

[0014] Furthermore, the drying oven has a hinged door on the front and a support leg fixedly connected to the bottom.

[0015] This utility model has the following beneficial effects:

[0016] 1. This utility model inserts the threaded tube at the bottom of the pressure gauge into the support assembly, allowing the pressure gauge to be vertically positioned inside the drying chamber under the support of the support assembly. During the curing process, the hot air blown by the blowing assembly comes into contact with the surface of the pressure gauge from the side. In addition, the rotating assembly drives the pressure gauge to rotate inside the drying chamber through the support assembly, which makes the anti-corrosion coating on the surface of the pressure gauge heat more evenly during curing. This allows the protective coating to be better adhered to the surface of the pressure gauge, and also effectively prevents the anti-corrosion coating from peeling off when the pressure gauge is used.

[0017] 2. This utility model uses a rotating disk to rotate the screw. The moving disk moves inside the moving groove under the drive of the screw. At the same time, several extrusion rods can move inside the corresponding threaded tubes under the drive of the moving disk, so that the extrusion rods come into contact with the inner wall of the threaded tube and extrude it. This setting ensures that the pressure gauges on the top of the support tube will not fall off when the support platform is transferred or rotated. In addition, all pressure gauges on the support platform can be fixed by simply rotating the rotating disk, making the operation relatively convenient.

[0018] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the utility model embodiments, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the external outline structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the internal structure of the drying oven of this utility model;

[0022] Figure 3 This is a schematic diagram of the rotating component structure of this utility model;

[0023] Figure 4 This is a schematic diagram of the support component structure of this utility model;

[0024] Figure 5 This is a schematic diagram of the extrusion assembly structure of this utility model;

[0025] Figure 6 This is a schematic diagram of the support platform structure of this utility model from a bottom view.

[0026] The attached diagram lists the components represented by each number as follows:

[0027] 1. Drying oven; 2. Support assembly; 201. Support platform; 202. Support tube; 203. Handle; 3. Extrusion assembly; 301. Moving groove; 302. Moving disc; 303. Extrusion rod; 304. Screw; 305. Rotating disc; 306. Guide rod; 4. Rotation assembly; 401. Rotating table; 402. Socket groove; 403. Socket base; 404. Motor; 5. Blowing assembly; 501. Blowing duct; 502. Hot air blower; 503. Steam outlet; 6. Shielding door; 7. Support leg. Detailed Implementation

[0028] The technical solutions of the utility model embodiments will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the utility model, and not all embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the utility model.

[0029] In the description of this utility model, it should be understood that the terms "opening", "upper", "lower", "top", "middle", "inner", etc., which indicate orientation or positional relationship, are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the utility model.

[0030] Please see Figures 1-6 As shown, this utility model is a surface anti-corrosion layer curing tool for pressure gauge production, including a drying box 1, a support component 2 is provided inside the drying box 1, a pressing component 3 is provided inside the support component 2, a rotating component 4 is provided inside the drying box 1, the rotating component 4 is poweredly connected to the support component 2, and a blowing component 5 is provided on one side of the drying box 1.

[0031] The support component 2 is used to support the pressure gauge, the compression component 3 is used to compress and fix the pressure gauge, the rotating component 4 is used to drive the support component 2 to rotate, so that the support component 2 drives the pressure gauge to rotate, and the blowing component 5 is used to dry the anti-corrosion coating.

[0032] By placing the threaded tubes at the bottom of several pressure gauges inside the corresponding support end of the support assembly 2, and then pressing and fixing the threaded tubes inside the support end by the extrusion assembly 3, the support assembly 2 is placed on top of the rotating assembly 4, so that the rotating assembly 4 drives several pressure gauges to rotate inside the drying chamber 1 through the support assembly 2. At the same time, the blowing assembly 5 continuously blows hot air onto the surface of the pressure gauges, thereby completing the drying of the anti-corrosion coating.

[0033] By inserting the threaded tube at the bottom of the pressure gauge into the support assembly 2, the pressure gauge can be vertically positioned inside the drying chamber 1 under the support of the support assembly 2. During the curing process, the hot air blown by the blower assembly 5 comes into contact with the surface of the pressure gauge from the side. In addition, the rotating assembly 4 drives the pressure gauge to rotate inside the drying chamber 1 through the support assembly 2, so that the anti-corrosion coating on the surface of the pressure gauge is heated more evenly during curing. This allows the protective coating to be better adhered to the surface of the pressure gauge, and also effectively prevents the anti-corrosion coating from peeling off when the pressure gauge is used.

[0034] In one embodiment, the support component 2 includes a support platform 201, the top of which is fixedly connected to a plurality of support tubes 202, the height of which decreases from the inside to the outside, and handles 203 are provided on both sides of the support platform 201.

[0035] By moving the threaded tube at the bottom of the pressure gauge directly into the support tube 202, the support tube 202 can support the pressure gauge. When several pressure gauges are placed inside the corresponding support tubes 202, the height of the pressure gauges on the support platform 201 decreases from the inside to the outside. This design ensures that the pressure gauges on the outside do not obstruct the pressure gauges on the inside, thus guaranteeing the heating effect during the curing of the anti-corrosion coating on the surface of the pressure gauges. Furthermore, the pressure gauges can be placed inside the support tubes 202 from outside the drying chamber 1. After the pressure gauges are placed, the support platform 201 carrying the pressure gauges can be moved into the drying chamber 1 using the handle 203. This design makes it convenient to place and retrieve the pressure gauges.

[0036] In one embodiment, the extrusion assembly 3 includes a moving groove 301, which is formed inside the support platform 201. A moving disk 302 is movably connected inside the moving groove 301. A plurality of extrusion rods 303 are fixedly connected inside the moving disk 302 to the corresponding support tube 202. The extrusion rods 303 are movably connected to the corresponding support tube 202. A screw 304 is rotatably connected inside the moving groove 301 and is threadedly connected to the moving disk 302.

[0037] After placing the threaded tube of the pressure gauge inside the support tube 202, the extrusion rod 303 can be placed inside the threaded tube. After all the pressure gauges are placed, the screw 304 is rotated directly, causing the screw 304 to drive the moving disk 302 to move inside the moving groove 301. The moving disk 302 then drives several extrusion rods 303 to move inside the corresponding threaded tubes, so that the extrusion rods 303 come into contact with the inner wall of the threaded tube and extrude pressure. This design ensures that the pressure gauges at the top of the support tube 202 will not fall off when the support platform 201 is transferred or rotated. At the same time, all the pressure gauges can be fixed by simply rotating the screw 304, making the operation relatively convenient.

[0038] In one embodiment, for the screw 304, one end of the screw 304 passes through the support platform 201 and is fixedly connected to the rotating disk 305. The inner wall of the moving groove 301 is fixedly connected to the guide rod 306, which is movably connected to the moving disk 302. The top of the extrusion rod 303 is tapered.

[0039] When the threaded tube at the bottom of the pressure gauge is moved into the support tube 202, and the threaded tube is fitted onto the outside of the extrusion rod 303, the tapered top of the extrusion rod 303 provides a guiding function, making it easier to place the pressure gauge. The screw 304 can be rotated via the rotating disk 305, and the outer surface of the rotating disk 305 is provided with anti-slip grooves to prevent slippage during rotation. When the moving disk 302 moves within the moving groove 301, the guide rod 306 guides the moving disk 302, ensuring its stability during movement.

[0040] In one embodiment, the rotating component 4 includes a rotating table 401, the top of which is provided with a socket groove 402, and a socket base 403 is movably connected inside the socket groove 402. The socket base 403 is fixedly connected to the support platform 201, and a motor 404 is fixedly installed at the bottom of the drying oven 1. The output end of the motor 404 is fixedly connected to the rotating table 401.

[0041] The support platform 201 can be moved into the drying chamber 1 via handle 203. Simultaneously, the socket base 403 at the bottom of the support platform 201 can be directly moved into the socket groove 402. This arrangement facilitates the connection of the support platform 201 to the rotary table 401. During the curing of the anti-corrosion coating, the motor 404 is directly started, causing the rotary table 401 to rotate. The rotary table 401, in turn, drives the support platform 201 to rotate via the socket groove 402 and socket base 403, thereby allowing the support platform 201 to rotate several pressure gauges inside the drying chamber 1.

[0042] In one embodiment, the blower assembly 5 includes a blower trough 501, which is located on one side of the drying chamber 1. A hot air blower 502 is fixedly installed on the outside of the drying chamber 1 corresponding to the blower trough 501, and a steam outlet 503 is provided on the top of the drying chamber 1.

[0043] By driving the hot air blower 502, hot air is delivered into the drying chamber 1 through the air duct 501. The hot air is blown by the hot air blower 502 and comes into contact with the pressure gauge from the side. At this time, the pressure gauge rotates continuously in a vertical position, so that the hot air can cure the anti-corrosion coating on the surface of the pressure gauge relatively evenly. The steam generated during the curing of the anti-corrosion coating can be discharged from the steam outlet 503.

[0044] In one embodiment, the drying oven 1 is hinged to a shielding door 6 on its front and a support leg 7 is fixedly connected to its bottom.

[0045] The drying chamber 1 can be sealed by the shielding door 6, so that the inside of the drying chamber 1 can remain relatively sealed during the curing of the anti-corrosion coating. The support leg 7 can support the drying chamber 1, so that the bottom of the drying chamber 1 is a certain distance from the ground. This setting can ensure the heat dissipation effect of the motor 404 at the bottom of the drying chamber 1 during operation.

[0046] Through the above technical solution, 1. By inserting the threaded tube at the bottom of the pressure gauge into the support assembly 2, the pressure gauge can be vertically positioned inside the drying chamber 1 under the support of the support assembly 2. During the curing process, the hot air blown by the blowing assembly 5 comes into contact with the surface of the pressure gauge from the side. In addition, the rotating assembly 4 drives the pressure gauge to rotate inside the drying chamber 1 through the support assembly 2, so that the anti-corrosion coating on the surface of the pressure gauge is heated more evenly during curing, which allows the protective coating to be better adhered to the surface of the pressure gauge. At the same time, it can also effectively prevent the anti-corrosion coating from peeling off when the pressure gauge is used; 2. The screw 304 is rotated by the rotating disk 305, and the moving disk 302 moves inside the moving groove 301 under the drive of the screw 304. At the same time, several extrusion rods 303 can move inside the corresponding threaded tubes under the drive of the moving disk 302, so that the extrusion rods 303 come into contact with the inner wall of the threaded tube and extrude it. This setting ensures that the pressure gauges on the top of the support tube 202 will not fall off when the support platform 201 is transferred or rotated. At the same time, all the pressure gauges on the support platform 201 can be fixed by simply rotating the rotating disk 305, which is also convenient to operate.

[0047] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0048] The preferred embodiments of the utility model disclosed above are merely illustrative of the utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the utility model, thereby enabling those skilled in the art to better understand and utilize it. The utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A surface anticorrosion layer curing tool for pressure gauge production, comprising a drying oven (1), characterized in that, The inside of the drying box (1) is provided with a supporting assembly (2), the inside of the supporting assembly (2) is provided with an extrusion assembly (3), the inside of the drying box (1) is provided with a rotating assembly (4), the rotating assembly (4) is power-connected with the supporting assembly (2), one side of the drying box (1) is provided with a blowing assembly (5). The supporting assembly (2) is used for supporting the pressure gauge, the extrusion assembly (3) is used for extruding and fixing the pressure gauge, the rotating assembly (4) is used for driving the supporting assembly (2) to rotate, so that the supporting assembly (2) drives the pressure gauge to rotate, and the blowing assembly (5) is used for drying the anticorrosive coating. The extrusion assembly (3) comprises a moving groove (301) which is formed in the inside of a supporting table (201), a moving disc (302) which is movably connected in the inside of the moving groove (301), a plurality of extrusion rods (303) which are fixedly connected with the corresponding supporting tubes (202) in the inside of the moving disc (302), and a screw rod (304) which is rotatably connected in the inside of the moving groove (301) and is threadedly connected with the moving disc (302).

2. The surface anticorrosion layer curing tool for pressure gauge production according to claim 1, characterized in that, The supporting assembly (2) comprises the supporting table (201), a plurality of supporting tubes (202) which are fixedly connected to the top of the supporting table (201) and have heights decreasing from inside to outside, and handles (203) which are arranged on the two sides of the supporting table (201).

3. The surface anticorrosion layer curing tool for pressure gauge production according to claim 2, characterized in that, One end of the screw rod (304) penetrates through the supporting table (201) and is fixedly connected with a rotating disc (305), the inner wall of the moving groove (301) is fixedly connected with a guide rod (306), the guide rod (306) is movably connected with the moving disc (302), and the top of the extrusion rod (303) is conically arranged.

4. The surface anticorrosion layer curing tool for pressure gauge production according to claim 1, characterized in that, The rotating assembly (4) comprises a rotating table (401), a sleeving groove (402) which is formed in the top of the rotating table (401), a sleeving base (403) which is movably connected in the inside of the sleeving groove (402) and is fixedly connected with the supporting table (201), and a motor (404) which is fixedly installed at the bottom of the drying box (1) and is fixedly connected with the rotating table (401).

5. The surface anticorrosion layer curing tool for pressure gauge production according to claim 1, characterized in that, The blowing assembly (5) comprises a blowing groove (501) which is formed in one side of the drying box (1), a hot air machine (502) which is fixedly installed outside the drying box (1) and corresponds to the blowing groove (501), and a steam exhaust port (503) which is arranged at the top of the drying box (1).

6. The surface anticorrosion layer curing tool for pressure gauge production according to claim 1, characterized in that, The front of the drying box (1) is hingedly connected with a shielding door (6), and the bottom of the drying box (1) is fixedly connected with supporting legs (7).