Stirring and roll-coating integrated construction device for water-based anticorrosive paint of steel structure
By designing a steel structure water-based anticorrosion coating stirring and roller coating integrated construction device including a brushing component and a conveying component, the problem of difficulty in uniform adhesion of paint in the prior art is solved, and the uniform adhesion and corrosion resistance of steel column structures are improved.
Patent Information
- Application Number
- CN202421911798.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The existing anti-corrosion coating spraying method of steel structures is difficult to achieve uniform adhesion of the paint, resulting in unstable steel column structures in corrosive environments.
A steel structure water-based anticorrosion coating integrated construction device is designed, including a brushing assembly and a conveying assembly. It is connected in a circular array through multiple brushes. The driving member drives the connection end to rotate to tighten the brush to form a spiral state to ensure uniform adhesion of the water-based anticorrosion coating.
The uniform adhesion of water-based anti-corrosion coating on the steel column structure is achieved, the corrosion resistance of the steel structure is enhanced, and the long-term stability in the corrosion environment is ensured.
Smart Images

Figure CN222956728U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of steel structure equipment, in particular to a construction device for stirring and rolling a water-based anti-corrosion coating for steel structures in an integrated manner. Background Technique
[0002] A steel structure is a structure composed of steel materials and is one of the main types of building structures. The structure is mainly composed of sections and steel plates, etc., so as to provide good stability for the erected steel structure. The existing steel structures are mainly supported and erected by steel columns and some steel structure plates are carried for erection, so as to obtain an overall steel structure with stable structure. Therefore, the steel column structure component is the most important part of the steel structure. In order to ensure that the steel column structure component in the erected steel structure itself has the ability to resist corrosion, after the steel structure is erected, a corrosion-resistant coating is applied to its surface, so that the steel structure component has the ability to resist corrosion. The most common construction method of anti-corrosion coating is to use spraying construction, that is, the coating is evenly sprayed onto the steel column structure through spraying equipment. However, this method requires manual spraying construction by workers, and it is more difficult to construct for steel column structures with heavier structural quality; at the same time, for anti-corrosion coatings, many of the properties of the construction coatings are water-based anti-corrosion coatings. Therefore, when spraying the column structure of the steel structure, it is easy to cause uneven coating due to the problem of coating fluidity, so that the water-based anti-corrosion coating cannot effectively play its anti-corrosion effect.
[0003] Based on the above problems, it is necessary to set up a construction device for stirring and rolling a water-based anti-corrosion coating for steel structures in an integrated manner, which can ensure that the water-based anti-corrosion coating effectively adheres to the steel column components of the steel structure, so that the steel columns used to build the steel structure have the ability to resist corrosion, and further ensure that the erected steel structure can be stable for a long time in a corrosive environment. Content of the Utility Model
[0004] The purpose of the utility model is to provide a construction device for stirring and rolling a water-based anti-corrosion coating for steel structures in an integrated manner, which can ensure that the water-based anti-corrosion coating effectively adheres to the steel column components of the steel structure, so that the steel columns used to build the steel structure have the ability to resist corrosion, and further ensure that the erected steel structure can be stable for a long time in a corrosive environment.
[0005] In order to achieve the above purpose, the utility model is realized through the following technical solutions:
[0006] A waterborne anti-corrosion coating stirring and rolling integrated construction device for steel structures, comprising a coating component and a conveying component. The coating component includes connecting ends and coating brushes. A plurality of the coating brushes are connected in a circumferential array between the two connecting ends; the connecting ends are connected with a driving member, and the driving member drives the connecting ends to rotate to tighten the plurality of coating brushes; the conveying component is a pushing mechanism, and the pushing mechanism pushes the steel column to a position between the two connecting ends.
[0007] The coating brush is of a hollow structure, and penetration holes are equidistantly arranged on the coating brush. The waterborne anti-corrosion coating enters the interior of the coating brush through the hollow structure of the coating brush and flows out from the positions of the penetration holes.
[0008] A flexible brush is covered on the coating brush, and the flexible brush is made of a water-absorbing material.
[0009] The connecting end is of a circular ring structure, and a felt is covered on the inner circular position of the connecting end.
[0010] The pushing mechanism includes a crane and a pushing cylinder. The crane lifts the steel structure member to a position matching the connecting end, and the pushing cylinder pushes the steel structure member to a position between the two connecting ends.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0012] When this device is set up, through the setting of the coating component and the conveying component, the brushing operation of the waterborne anti-corrosion coating on the steel column structure is realized. When setting up, through the setting of two connecting ends, and connecting the two connecting ends with a plurality of coating brushes. When in use, the steel column is conveyed to a position between the two connecting ends by the conveying component, and the driving member drives the connecting ends to rotate to tighten the plurality of coating brushes, so that the waterborne anti-corrosion coating attached to the plurality of coating brushes adheres to the steel column structure. At the same time, because after the plurality of coating brushes rotate and tighten, the plurality of coating brushes are in a spiral structure at this time, so that the waterborne anti-corrosion coating can be evenly attached to the surface of the steel column, thereby realizing the coating operation of the waterborne anti-corrosion coating on the steel column structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] FIG Figure 1 is a schematic structural diagram of the present utility model.
[0014] FIG Figure 2 is a schematic partial structural diagram of the present utility model.
[0015] Reference numerals shown in the drawings:
[0016] 1. Connection end; 2. Coating brush; 3. Penetration hole; 4. Ring structure. Detailed implementation manner
[0017] The following further elaborates on the present utility model in conjunction with specific embodiments. It should be understood that these embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model. In addition, it should be understood that after reading the content taught by the present utility model, those skilled in the art can make various changes or modifications to the present utility model, and these equivalent forms also fall within the scope defined by this application.
[0018] For the steel column assembly used in steel structure construction, its own mass is relatively heavy. Therefore, it is relatively difficult for manual operation to apply anti-corrosion paint to the steel column assembly. At the same time, when applying anti-corrosion paint, the uniformity of the paint should be ensured as much as possible, that is, to ensure that the anti-corrosion paint is effectively attached to the entire steel column assembly as much as possible. This is even more difficult for manual operation. Therefore, the automated operation of attaching anti-corrosion paint to the steel column assembly should be realized as much as possible to ensure that the steel column assembly effectively has anti-corrosion performance.
[0019] Therefore, a steel structure water-based anti-corrosion paint stirring and rolling integrated construction device includes a coating component and a conveying component. The coating component includes a connection end 1 and a coating brush 2. A plurality of the coating brushes 2 are connected in a circumferential array between the two connection ends 1; the connection end 1 is connected with a driving member, and the driving member drives the connection end 1 to rotate to tighten the plurality of coating brushes 2; the conveying component is a pushing mechanism, and the steel column is pushed to the position between the two connection ends 1 through the pushing mechanism. When setting here, the coating of the water-based anti-corrosion paint on the steel column assembly is realized through the setting of the coating component and the conveying component; first, the steel column assembly is conveyed to the position of the coating component through the set conveying component, that is, the position between the two connection ends 1; secondly, the coating operation of the steel column assembly can be carried out through the coating component. Because the steel column assembly is located between the two connection ends 1, one of the connection ends 1 at one end can be rotated under the rotation of the driving member, so that the plurality of coating brushes 2 are distorted after contacting the steel column assembly, so that the plurality of coating brushes 2 are attached to the steel column assembly in a spiral state, and then the water-based anti-corrosion paint attached to the coating brushes 2 is squeezed off the coating brushes 2 and attached to the steel column assembly. Because the plurality of coating brushes 2 here will be in a spiral state after rotating and twisting, the water-based paint on the coating brushes 2 can be effectively dispersed to each position on the steel column assembly after being extruded, so as to achieve the purpose of effectively attaching the water-based paint to the steel column assembly.
[0020] Further design and optimization of the above structure:
[0021] The painting brush 2 has a hollow structure, and penetration holes 3 are arranged at equal intervals on the painting brush 2. The water-based anticorrosive paint enters the interior of the painting brush 2 through the hollow structure of the painting brush 2 and flows out from the positions of the penetration holes 3. Since it is necessary to adhere sufficient water-based paint to the painting brush 2 so that when the painting brush 2 is squeezed, the water-based anticorrosive paint adhered thereto can be squeezed onto the steel column assembly, the painting brush 2 is set to have a hollow structure, and the penetration holes 3 are arranged at equal intervals on the painting brush 2. During use, the water-based anticorrosive paint is conveyed into the hollow structure of the painting brush 2, so that the painting brush 2 has sufficient water-based paint. After the painting brush 2 is squeezed, the water-based paint inside it penetrates outward from the positions of the penetration holes 3, so that the water-based paint can be evenly adhered to the steel column assembly. Here, in order to ensure that the water-based paint adheres more evenly to the steel column assembly, a flexible brush is covered and arranged on the painting brush 2, and the flexible brush is made of a water-absorbing material; to ensure that through the setting of the flexible brush, the water-based paint can evenly penetrate into the overall structure of the painting brush 2, so as to ensure that when the painting brush 2 is squeezed subsequently, the water-based paint can be effectively adhered to the steel column assembly.
[0022] Furthermore, the connecting end 1 has a circular ring structure 4, and a felt is covered and arranged at the inner circular position of the connecting end 1. It should be noted here that since it is necessary to ensure the fixation of the steel column assembly relative to the two connecting ends 1, when setting here, it is necessary to ensure that the two ends of the steel column assembly are stably erected at the positions of the two connecting ends 1, that is, at the center position of the circular ring structure 4, so as to ensure that when applying paint to the steel column assembly, its structure has a stable state.
[0023] The pushing mechanism includes a crane and a pushing cylinder. The steel structure member is lifted by the crane to a position matching the connecting end 1, and the steel structure member is pushed by the pushing cylinder to a position between the two connecting ends 1.
[0024] Therefore, a construction device for stirring and roller coating of water-based anticorrosive paint for steel structures can ensure that the water-based anticorrosive paint is effectively adhered to the steel column assembly of the steel structure, so that the steel column used for building the steel structure has corrosion resistance, and further ensure that the built steel structure can be stable for a long time in a corrosive environment.
Claims
1. A device for stirring and rolling steel structure water-based anti-corrosion coating, characterized in that: The invention comprises a painting brush assembly and a conveying assembly, wherein the painting brush assembly comprises a connecting end (1) and a painting brush (2), wherein a plurality of the painting brushes (2) are connected in a circular array and arranged between two connecting ends (1); the connecting end (1) is connected to a driving member, and the connecting end (1) is driven by the driving member to rotate so as to tighten the plurality of painting brushes (2); The conveying component is a pushing mechanism, through which the steel column is pushed to a position between the two connecting ends (1).
2. According to claim 1, a steel structure water-based anti-corrosion paint stirring and rolling integrated construction device is characterized in that: The coating brush (2) is a hollow structure, and penetration holes (3) are arranged at equal intervals on the coating brush (2). The water-based anti-corrosion paint enters the interior of the coating brush (2) through the hollow structure of the coating brush (2) and flows out from the penetration holes (3).
3. According to claim 2, a steel structure water-based anti-corrosion paint stirring and rolling integrated construction device is characterized in that: The painting brush (2) is covered with a flexible brush, and the flexible brush is made of a water-absorbing material.
4. According to claim 3, a steel structure water-based anti-corrosion paint stirring and rolling integrated construction device is characterized in that: The connecting end (1) is a circular ring structure (4), and the inner circle of the connecting end (1) is covered with felt.
5. According to claim 1, a steel structure water-based anti-corrosion paint stirring and rolling integrated construction device is characterized in that: The pushing mechanism comprises a crane and a pushing cylinder. The crane is used to lift the steel structure to a position matching the connecting end (1), and the pushing cylinder is used to push the steel structure to a position between the two connecting end (1).