A plant net rack anticorrosion and durability treatment equipment in high-cold and high-altitude area

CN224657077UActive Publication Date: 2026-08-21CHINA CONSTR FIRST GRP THE SECOND CONSTR +1
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Patent Information

Application Number
CN202521784721.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-21
Publication Date
2026-08-21
Estimated Expiration
2035-08-21

AI Technical Summary

Technical Problem

[0004]本实用新型的目的是为了解决现有技术中存在处理范围受限,劳动强度大的缺点,而提出的一种高寒高海拔地区的厂房网架防腐耐久处理设备

Benefits of technology

1、厂房网架可以放在支撑辊和托辊的顶部,厂房网架穿过两个弧形喷涂管之间;

✦ Generated by Eureka AI based on patent content.

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    Figure CN224657077U_ABST
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Abstract

The utility model belongs to the field of steel construction especially a kind of factory building net rack anticorrosive durable treatment equipment in high-cold high-altitude area, it includes processing box, the factory building net rack anticorrosive durable treatment equipment in high-cold high-altitude area further includes: support roller, support roller is equipped with two, two support rollers are respectively rotationally connected in the two sides of processing box top portion;Roller, roller rotationally connects in the top of processing box inside middle end;Support frame, support frame bolt connection in the top of processing box;Transmission case, transmission case bolt connection in the top of support frame;High-cold high-altitude area factory building net rack anticorrosive durable treatment assembly, in the utility model, factory building net rack is located in the middle of arc-shaped spraying pipe, by electric push cylinder and adjusting mechanism, the position of two arc-shaped spraying pipes can be adjusted, it is convenient to spray anticorrosive agent to factory building net rack, protect factory building net rack, need not manual spray gun to carry out anticorrosive treatment, and labor intensity is low, and spraying speed is fast.
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Description

Technical Field

[0001] This utility model relates to the field of steel structure building technology, and in particular to a corrosion-resistant and durable treatment device for the steel structure frame of a factory in high-altitude and cold regions. Background Technology

[0002] The construction and maintenance of factory space frames in high-altitude and frigid regions place extremely high demands on corrosion resistance and durability. This necessitates the use of corrosion protection and durability treatment equipment specifically designed for such environments. This equipment provides efficient, reliable, and long-lasting corrosion protection for steel space frame structures. Its core objective is to overcome the adverse effects of harsh environments, ensuring the quality of corrosion protection treatment and the long-term protective performance of the final coating. In the existing technology, Chinese patent application number 202420775813.7 discloses a steel structure surface corrosion protection treatment device.

[0003] However, due to structural defects, the above technical solution still has the following problems: 1. The structure of the spray gun limits its ability to process only a portion of the factory's space frame, thus restricting its processing range and impacting the efficiency of processing the space frame. 2. The entire process requires manual handling, which is labor-intensive and affects the efficiency of processing the factory's space frame. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies, such as limited processing range and high labor intensity, and to propose a corrosion-resistant and durable treatment device for factory space frames in high-altitude and cold regions.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A corrosion protection and durability treatment device for factory building space frames in high-altitude and cold regions includes a treatment box. This device also includes: Support rollers, there are two support rollers, and the two support rollers are rotatably connected to the two sides of the top of the processing box; The idler roller is rotatably connected to the top of the middle part of the inside of the processing box; Support frame, bolted to the top of the processing box; The transmission box is bolted to the top of the support frame; The anti-corrosion and durability treatment component for the space frame of a factory building in high-altitude and cold regions includes a slider, an electric push cylinder, and an arc-shaped spray pipe. There are two sliders, two electric push cylinders, and two arc-shaped spray pipes. The surfaces of the two sliders are slidably connected to the top of the inner side of the support frame. The bottom of the slider is bolted to the top of the electric push cylinder. The output end of the electric push cylinder is bolted to the top of the arc-shaped spray pipe. The adjustment mechanism is connected to the slider. The factory building space frame is located in the middle of the arc-shaped spray pipe. The position of the two arc-shaped spray pipes can be adjusted by the electric push cylinder and the adjustment mechanism, so as to facilitate the spraying of anti-corrosion agent on the factory building space frame and protect the factory building space frame. There is no need for manual spray gun anti-corrosion treatment, the labor intensity is low and the spraying speed is fast.

[0006] As a preferred embodiment of this utility model, the adjustment mechanism includes a power motor, a rotating shaft, a main bevel gear, and a transmission assembly. The output end of the power motor is keyed to one end of the rotating shaft. There are two main bevel gears, both of which are keyed to the rotating shaft. The main bevel gears mesh with the transmission assembly.

[0007] Furthermore, the power supply to the motor is turned on. The power supply can be an external or internal power supply and is controlled by a controller. The motor can drive the shaft to rotate, and the shaft can drive the two main bevel gears to rotate. The two main bevel gears are symmetrically arranged, and the main bevel gears can drive the rotation of the transmission components.

[0008] As a preferred embodiment of this utility model, the transmission assembly includes a secondary bevel gear, a swing rod, and a sliding sleeve. There are two secondary bevel gears, two swing rods, and two sliding sleeves. The teeth of the primary bevel gear mesh with the teeth of the secondary bevel gear. The axis of the secondary bevel gear is keyed to the top end of the swing rod. The bottom end of the surface of the swing rod is slidably connected to the inside of the sliding sleeve. The sliding sleeve is hinged to the slider.

[0009] Furthermore, the main bevel gear can drive the two secondary bevel gears to rotate, the secondary bevel gears can drive the swing rod to rotate inward, the swing rod can slide inside the sliding sleeve and drive the sliding sleeve to move, and the sliding sleeve can drive the two sliders to move closer to each other.

[0010] In a preferred embodiment of this utility model, the surface of the power motor is rotatably sleeved with the inner side of the transmission box, and the other end of the rotating shaft is rotatably sleeved with a hole inside the transmission box.

[0011] Furthermore, the power motor is positioned by the transmission box, which facilitates the power motor to drive the rotating shaft to rotate. The rotating shaft is rotatably connected to the transmission box via bearings, which facilitates the rotating shaft to drive the main bevel gear to rotate.

[0012] In a preferred embodiment of this utility model, the shaft of the secondary bevel gear is rotatably connected to the hole in the transmission box, and the swing rod is located on the outside of the transmission box.

[0013] Furthermore, the secondary bevel gear is rotatably mounted to the transmission box via bearings, ensuring the smooth rotation of the secondary bevel gear, and the swing rod facilitates transmission.

[0014] As a preferred embodiment of this utility model, a guide rod is bolted to the top of the inner side of the support frame, and the surface of the guide rod is slidably connected to the sliding hole of the slider.

[0015] Furthermore, the support frame guides the slider via guide rods to ensure the stability of the slider's movement and prevent it from sliding uncontrollably.

[0016] As a preferred embodiment of this utility model, the inlet of the arc-shaped spraying pipe is connected to a conveying pipe, and the conveying pipe adopts a corrugated pipe structure.

[0017] Furthermore, the delivery pipe is connected to the source of the anti-corrosion liquid, through which the anti-corrosion liquid can be sprayed out from the inside of the arc-shaped spray pipe.

[0018] As a preferred embodiment of this utility model, the arc-shaped spray pipe has a semi-ring structure, with two arc-shaped spray pipes forming a ring, and the nozzle of the arc-shaped spray pipe is located on the inner side.

[0019] Furthermore, the structure of the arc-shaped spray pipe facilitates spraying the steel structure at the axis, and the spray ring formed by two arc-shaped spray pipes can reduce the dead angles of spraying.

[0020] Beneficial effects: 1. The factory building frame can be placed on top of the support rollers and idler rollers, and the factory building frame passes between two arc-shaped spray pipes; 2. The adjustment mechanism can drive two sliders to move, the sliders can drive the electric push cylinder to move, and the electric push cylinder can drive the arc-shaped spray pipes to move, so that the two arc-shaped spray pipes are aligned with the factory grid frame for spraying. In this utility model: the factory building space frame is located in the middle of the arc-shaped spray pipe. The position of the two arc-shaped spray pipes can be adjusted by an electric push cylinder and an adjustment mechanism, which facilitates the spraying of anti-corrosion agent onto the factory building space frame and protects the factory building space frame. There is no need for manual spray gun anti-corrosion treatment, the labor intensity is low, and the spraying speed is fast. Attached Figure Description

[0021] Figure 1 An overall perspective view of a corrosion-resistant and durability treatment device for a factory building space frame in high-altitude and cold regions proposed in this utility model. Figure 2 A perspective view of a support frame for a corrosion-resistant and durable treatment device for a factory space frame in high-altitude and cold regions, as proposed in this utility model. Figure 3 A three-dimensional view of the internal transmission box of a corrosion-resistant and durable treatment device for a factory grid structure in high-altitude and cold regions, as proposed in this utility model. Figure 4 This utility model presents a perspective view of the swing rod of a corrosion-resistant and durable treatment device for a factory building space frame in high-altitude and cold regions. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Example

[0023] Reference Figure 1-4 A corrosion and durability treatment device for factory building space frames in high-altitude and cold regions includes a treatment box 1. This device also includes: Support roller 2, there are two support rollers 2, and the two support rollers 2 are respectively rotatably connected to the two sides of the top of the processing box 1; The idler roller 3 is rotatably connected to the top of the middle inner side of the processing box 1; Support frame 4 is bolted to the top of processing box 1; Transmission box 5 is bolted to the top of support frame 4; The anti-corrosion and durability treatment component for the steel frame of a factory building in high-altitude and cold regions includes a slider 6, an electric push cylinder 7, and an arc-shaped spray pipe 9. There are two sliders 6, two electric push cylinders 7, and two arc-shaped spray pipes 9. The surfaces of the two sliders 6 are slidably connected to the top of the inner side of the support frame 4. The bottom of the slider 6 is bolted to the top of the electric push cylinder 7. The output end of the electric push cylinder 7 is bolted to the top of the arc-shaped spray pipe 9. The adjustment mechanism is connected to the slider 6. The factory grid frame is located in the middle of the arc-shaped spray pipe 9. The position of the two arc-shaped spray pipes 9 can be adjusted by the electric push cylinder 7 and the adjustment mechanism to facilitate the spraying of anti-corrosion agent on the factory grid frame and protect the factory grid frame. There is no need for manual spray gun anti-corrosion treatment, the labor intensity is low and the spraying speed is fast.

[0024] In order to provide the power for the movement of slider 6, such as Figure 3 As shown, the adjustment mechanism includes a power motor 10, a rotating shaft 11, main bevel gears 12, and a transmission assembly. The output end of the power motor 10 is keyed to one end of the rotating shaft 11. There are two main bevel gears 12, both of which are keyed to the rotating shaft 11. The main bevel gears 12 mesh with the transmission assembly. When the power motor 10 is powered on, the power supply can be either an external or internal power supply, and it is controlled by a controller. The power motor 10 can drive the rotating shaft 11 to rotate, and the rotating shaft 11 can drive the two main bevel gears 12 to rotate. The two main bevel gears 12 are symmetrically arranged, and the main bevel gears 12 can drive the transmission assembly to rotate.

[0025] To move slider 6, adjust the distance between the two sliders 6, such as... Figure 4As shown, the transmission assembly includes a secondary bevel gear 13, a swing rod 14, and a sliding sleeve 15. There are two secondary bevel gears 13, two swing rods 14, and two sliding sleeves 15. The teeth of the main bevel gear 12 mesh with the teeth of the secondary bevel gear 13. The shaft of the secondary bevel gear 13 is keyed to the top end of the swing rod 14. The bottom end of the surface of the swing rod 14 is slidably connected to the inside of the sliding sleeve 15. The sliding sleeve 15 is hinged to the slider 6. The main bevel gear 12 can drive the two secondary bevel gears 13 to rotate. The secondary bevel gears 13 can drive the swing rod 14 to rotate inward. The swing rod 14 can slide inside the sliding sleeve 15 and drive the sliding sleeve 15 to move. The sliding sleeve 15 can drive the two sliders 6 to move closer to each other.

[0026] To ensure the long-term operation of the power motor 10 and the rotating shaft 11, such as Figure 3 As shown, the surface of the power motor 10 is rotatably sleeved with the inner side of the transmission box 5, and the other end of the rotating shaft 11 is rotatably sleeved with the hole inside the transmission box 5. The power motor 10 is positioned by the transmission box 5, which facilitates the power motor 10 to drive the rotating shaft 11 to rotate. The rotating shaft 11 is rotatably set with the transmission box 5 through the bearing, which facilitates the rotating shaft 11 to drive the main bevel gear 12 to rotate.

[0027] To ensure stable operation of the secondary bevel gear 13 and prevent wobbling, such as Figure 3 As shown, the shaft of the secondary bevel gear 13 is rotatably connected to the hole of the transmission box 5, and the swing rod 14 is located on the outside of the transmission box 5. The secondary bevel gear 13 is rotatably set with the transmission box 5 through the bearing to ensure the smooth rotation of the secondary bevel gear 13, and the swing rod 14 facilitates transmission.

[0028] To guide slider 6, as Figure 2 As shown, a guide rod 16 is bolted to the top of the inner side of the support frame 4. The surface of the guide rod 16 is slidably connected to the sliding hole of the slider 6. The support frame 4 guides the slider 6 through the guide rod 16 to ensure the stability of the slider 6's movement and prevent the slider 6 from sliding stably.

[0029] To facilitate the application of anti-corrosion liquid, such as Figure 1 As shown, the inlet of the arc-shaped spray pipe 9 is connected to the conveying pipe 8. The conveying pipe 8 adopts a corrugated pipe structure and is connected to the source of the anti-corrosion liquid. The anti-corrosion liquid can be sprayed out from the inside of the arc-shaped spray pipe 9 through the conveying pipe 8.

[0030] To align the curved spray pipe 9 with the central steel structure of the factory building, such as... Figure 2 As shown, the arc-shaped spray pipe 9 has a semi-ring structure, and two arc-shaped spray pipes 9 form a ring. The nozzle of the arc-shaped spray pipe 9 is located on the inner side. The structure of the arc-shaped spray pipe 9 facilitates spraying the steel structure at the axis. The spray ring formed by the two arc-shaped spray pipes 9 can reduce the dead angles of spraying.

[0031] It should be noted that the specific model of electric push cylinder 7 and power motor 10 used shall be selected by those skilled in the art. Furthermore, the electric push cylinder 7 and power motor 10 mentioned above are all existing technologies and will not be elaborated upon in this solution.

[0032] The working principle of this utility model is as follows: The factory building frame is placed on the support rollers 2 and rollers 3 on the top of the processing box 1. The factory building frame can be moved by the support rollers 2 and rollers 3. Then, the power supply of the power motor 10 is turned on. The power supply can be an external power supply or an internal power supply, and it is controlled by a controller. The power motor 10 can drive the rotating shaft 11 to rotate. The rotating shaft 11 can drive the two main bevel gears 12 to rotate. The two main bevel gears 12 are symmetrically arranged. The main bevel gears 12 can drive the two secondary bevel gears 13 to rotate. The secondary bevel gears 13 can drive the swing rod 14 to rotate inward. The swing rod 14 can slide inside the sliding sleeve 15 and drive the sliding sleeve 15 to move. The sliding sleeve 15 can drive the two sliders 6 to move closer to each other. The sliders 6 are guided by the support frame 4. The sliders 6 can drive the electric push cylinder 7 to move. The electric push cylinder 7 can drive the arc spray pipe 9 to move, so that the two arc spray pipes 9 are aligned with the factory building frame. The conveying pipe 8 is connected to the anti-corrosion liquid vacuum pump, and the anti-corrosion liquid is sprayed onto the factory building frame through the conveying pipe 8 and the arc spray pipe 9.

[0033] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A corrosion-resistant and durability treatment device for factory building space frames in high-altitude and cold regions, comprising a treatment box (1), characterized in that, The equipment for corrosion protection and durability treatment of the steel structure of factory buildings in high-altitude and cold regions also includes: Support roller (2), there are two support rollers (2), and the two support rollers (2) are rotatably connected to the two sides of the top of the processing box (1); The idler roller (3) is rotatably connected to the top of the middle of the inner side of the processing box (1); Support frame (4) is bolted to the top of the processing box (1); The transmission box (5) is bolted to the top of the support frame (4); The anti-corrosion and durability treatment component for the steel frame of a factory building in high-altitude and cold regions includes a slider (6), an electric push cylinder (7), and an arc spray pipe (9). There are two sliders (6), two electric push cylinders (7), and two arc spray pipes (9). The surfaces of the two sliders (6) are slidably connected to the top of the inner side of the support frame (4). The bottom of the slider (6) is bolted to the top of the electric push cylinder (7). The output end of the electric push cylinder (7) is bolted to the top of the arc spray pipe (9). Adjustment mechanism, which is connected to slider (6).

2. The anti-corrosion and durability treatment equipment for factory space frames in high-altitude and cold regions according to claim 1, characterized in that, The adjustment mechanism includes a power motor (10), a rotating shaft (11), a main bevel gear (12), and a transmission assembly. The output end of the power motor (10) is keyed to one end of the rotating shaft (11). There are two main bevel gears (12), both of which are keyed to the rotating shaft (11). The main bevel gears (12) mesh with the transmission assembly.

3. The anti-corrosion and durability treatment equipment for factory space frames in high-altitude and cold regions according to claim 2, characterized in that, The transmission assembly includes a secondary bevel gear (13), a swing rod (14), and a sliding sleeve (15). There are two secondary bevel gears (13), two swing rods (14), and two sliding sleeves (15). The teeth of the main bevel gear (12) mesh with the teeth of the secondary bevel gear (13). The axis of the secondary bevel gear (13) is keyed to the top of the swing rod (14). The bottom end of the surface of the swing rod (14) is slidably connected to the inside of the sliding sleeve (15). The sliding sleeve (15) is hinged to the slider (6).

4. The anti-corrosion and durability treatment equipment for factory space frames in high-altitude and cold regions according to claim 2, characterized in that, The surface of the power motor (10) is rotatably sleeved with the inner side of the transmission box (5), and the other end of the shaft (11) is rotatably sleeved with the hole inside the transmission box (5).

5. The anti-corrosion and durability treatment equipment for factory space frames in high-altitude and cold regions according to claim 1, characterized in that, The shaft of the secondary bevel gear (13) is rotatably connected to the hole of the transmission box (5), and the swing rod (14) is located on the outside of the transmission box (5).

6. The anti-corrosion and durability treatment equipment for factory space frames in high-altitude and cold regions according to claim 1, characterized in that, The top of the inner side of the support frame (4) is bolted with a guide rod (16), and the surface of the guide rod (16) is slidably connected to the sliding hole of the slider (6).

7. The anti-corrosion and durability treatment equipment for factory space frames in high-altitude and cold regions according to claim 1, characterized in that, The inlet of the arc-shaped spray pipe (9) is connected to a conveying pipe (8), which adopts a corrugated pipe structure.

8. The anti-corrosion and durability treatment equipment for factory space frames in high-altitude and cold regions according to claim 1, characterized in that, The arc-shaped spray pipe (9) has a semi-ring structure, and two arc-shaped spray pipes (9) form a ring. The nozzle of the arc-shaped spray pipe (9) is located on the inner side.

Citation Information

Patent Citations

  • Steel structure surface anti-corrosion treatment equipment

    CN222132326U