Push-pull type steel structure factory building

By designing an automatic cleaning mechanism driven by servo motors in a push-pull steel structure factory, the problem of difficulty in cleaning garbage at the top of the factory is solved, and cleaning efficiency and convenience are improved.

CN222909581UActive Publication Date: 2025-05-27QINGDAO RUIYU STEEL STRUCTURE CO LTD
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Patent Information

Application Number
CN202421950537.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-05-27
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

When the existing steel structure factory is in use, a large amount of garbage will fall on the top of the factory, making it difficult to clean up and increase the labor intensity of the staff.

Method used

A push-pull steel structure factory was designed, using a servo motor to drive the threaded shaft to rotate. The threaded shaft drives the threaded rod to rotate through the transmission gear, and the threaded rod drives the first cleaning brush to move, realizing automatic cleaning of garbage on the top of the factory.

Benefits of technology

Through the setting of the automatic cleaning mechanism, the labor intensity for staff is reduced and the efficiency and convenience of garbage cleaning are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a steel structure factory building, belongs to the technical field of steel structures, and particularly relates to a push-pull type steel structure factory building which comprises two track seats, a fixed factory building is fixedly connected to the two track seats together, and a movable factory building is arranged in the fixed factory building. Through the arrangement of the cleaning mechanism, a servo motor drives a threaded shaft to rotate, the threaded shaft rotates to drive a movable block and a movable plant to move, then the movable plant can be pulled out, and therefore the indoor area of the plant is increased; the threaded rod rotates to drive the first cleaning brush to move in the direction of the servo motor, the first cleaning brush can move to clean garbage at the top of the fixed workshop, the second cleaning brush can clean garbage at the top of the movable workshop through arrangement of the second cleaning brush, and the problem that when garbage at the top of the workshop is cleaned, the cleaning difficulty is large, and the cleaning efficiency is high is solved. And the labor intensity of workers is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel structures, in particular to a push-pull type steel structure workshop. Background Technique

[0002] For the convenience of engineering construction, production temporary workshops are often built within the project site during the construction process. The production temporary workshops are used as steel structure processing and manufacturing workshops during the engineering construction process. According to the requirements of different stages of the project, some steel structure components are large, and some steel structure components are small. The large steel structure components are suitable for open-air processing and assembly, and the small steel structure components are suitable for indoor processing and manufacturing.

[0003] After retrieving the Chinese patent with the publication number CN212295802U, it discloses a push-pull type steel structure workshop, which includes a first steel structure workshop and a second steel structure workshop. The first steel structure workshop is slidably connected to the ground, and the second steel structure workshop is also slidably connected to the ground. The first steel structure workshop and the second steel structure workshop can slide horizontally relative to each other and cover one steel structure workshop outside the second steel structure workshop.

[0004] Based on the above retrieval and combined with the prior art, it is found that:

[0005] When the existing steel structure workshop is in use, a large amount of garbage will fall on the top of the workshop, and the staff needs to regularly clean the garbage on the top of the workshop. Due to the great difficulty of cleaning, the labor intensity of the staff is increased. Summary of the Utility Model

[0006] In order to solve the above technical problems, the utility model provides a push-pull type steel structure workshop. A servo motor drives a threaded shaft to rotate. The rotation of the threaded shaft drives a threaded rod to rotate through two transmission gears. The rotation of the threaded rod drives a first cleaning brush to move towards the direction of the servo motor. The movement of the first cleaning brush can clean the garbage on the top of the fixed workshop.

[0007] The technical solution for achieving the purpose of the utility model is: a push-pull type steel structure workshop, including two track seats, a fixed workshop is fixedly connected to the two track seats in common, and a movable workshop is arranged in the fixed workshop. It also includes;

[0008] A cleaning mechanism, the cleaning mechanism is located on the fixed workshop;

[0009] The cleaning mechanism includes a motor base fixedly connected to one end of the fixed factory building. A servo motor is fixedly connected to the motor base. The output end of the servo motor is connected to a threaded shaft through a coupling. Two fixed seats are fixedly connected to the other end of the fixed factory building. Guide rails are fixedly connected to one side of each of the two fixed seats. A first cleaning brush is slidably sleeved on the two guide rails together. The first cleaning brush is in contact with the fixed factory building. A threaded rod is rotatably connected to one of the fixed seats. Transmission gears are fixedly connected to one ends of the threaded rod and the threaded shaft respectively. The two transmission gears are meshed with each other.

[0010] In some embodiments, two mounting seats are fixedly connected to one end of the fixed factory building. One ends of the two guide rails are respectively fixedly connected to the two mounting seats. One end of the threaded rod is rotatably connected to one of the mounting seats.

[0011] In some embodiments, a movable block is fixedly connected to the movable factory building. A strip-shaped hole is formed in the fixed factory building. One end of the movable block penetrates through the strip-shaped hole and is screwed onto the threaded shaft.

[0012] In some embodiments, a row of rollers are fixedly connected to both bottom ends of the movable factory building. Fixed tracks are fixedly connected to both track seats. The two rows of rollers are respectively rollingly connected to the two fixed tracks.

[0013] In some embodiments, a mounting block is fixedly connected to the other end of the fixed factory building. A sliding plate is slidably connected to the mounting block. A second cleaning brush is fixedly connected to the top end of the sliding plate. The second cleaning brush is adapted to the movable factory building. A threaded column is rotatably connected to the bottom end of the mounting block. The bottom end of the sliding plate is screwed onto the threaded column. A crank is fixedly connected to the bottom end of the threaded column.

[0014] In some embodiments, two fixing blocks are screwed onto the threaded shaft. One ends of the two fixing blocks are respectively fixedly connected to both ends of the fixed factory building.

[0015] Compared with the prior art, the remarkable advantages of this utility model are:

[0016] Through the setting of the cleaning mechanism of the present utility model, the servo motor drives the threaded shaft to rotate. The rotation of the threaded shaft drives the movable block and the movable factory building to move, so that the rollers on the movable factory building roll on the fixed track, and then the movable factory building can be pulled out, thereby increasing the indoor area of the factory building. The rotation of the threaded shaft drives the threaded rod to rotate through the two transmission gears. The rotation of the threaded rod drives the first cleaning brush to move towards the direction of the servo motor. The movement of the first cleaning brush can clean the garbage on the top of the fixed factory building. Through the setting of the second cleaning brush, when the movable factory building is retracted, the second cleaning brush can clean the garbage on the top of the movable factory building.

[0017] It solves the problem that when cleaning the garbage on the top of the existing factory building, due to the great difficulty of cleaning, the labor intensity of the staff is increased. Brief Description of the Drawings

[0018] The following further explains the present utility model in conjunction with the drawings and embodiments:

[0019] Figure 1 is a schematic diagram of the overall three-dimensional structure provided by the present utility model in one embodiment;

[0020] Figure 2 is a schematic diagram of the overall three-dimensional structure from another perspective provided by the present utility model in one embodiment;

[0021] Figure 3 is a schematic diagram of the three-dimensional structure of the cleaning mechanism provided by the present utility model in one embodiment;

[0022] Figure 4 is a schematic diagram of the three-dimensional structure of the cooperation between the threaded shaft and the sliding plate provided by the present utility model in one embodiment.

[0023] Description of the Reference Numerals in the Drawings:

[0024] 1. Rail seat; 11. Fixed workshop; 12. Movable workshop; 13. Roller; 14. Fixed track; 15. Strip hole; 2. Motor seat; 21. Servo motor; 22. Fixed block; 23. Threaded shaft; 24. Movable block; 25. Transmission gear; 26. Fixed seat; 27. Threaded rod; 28. Guide rail; 29. First cleaning brush; 210. Mounting seat; 3. Mounting block; 31. Sliding plate; 32. Second cleaning brush; 33. Threaded column; 34. Crank. Detailed Embodiment

[0025] The following details the present utility model, clearly and completely describes the technical solutions in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0026] The present utility model provides a push-pull type steel structure workshop through improvement. The technical solution of the present utility model is as follows:

[0027] As Figures 1 - 4As shown in the figure, a push-pull type steel structure workshop includes two track seats 1. A fixed workshop 11 is fixedly connected to the two track seats 1 together. An active workshop 12 is arranged inside the fixed workshop 11. It also includes a cleaning mechanism, and the cleaning mechanism is located on the fixed workshop 11. The cleaning mechanism includes a motor seat 2 fixedly connected to one end of the fixed workshop 11. A servo motor 21 is fixedly connected to the motor seat 2. The output end of the servo motor 21 is connected to a threaded shaft 23 through a coupling. Two fixed seats 26 are fixedly connected to the other end of the fixed workshop 11. A guiding slide rail 28 is fixedly connected to one side of each of the two fixed seats 26. A first cleaning brush 29 is slidably sleeved on the two guiding slide rails 28 together. The first cleaning brush 29 is in contact with the fixed workshop 11. A threaded rod 27 is rotatably connected to one of the fixed seats 26. Transmission gears 25 are fixedly connected to one ends of the threaded rod 27 and the threaded shaft 23 respectively. The two transmission gears 25 are meshed with each other. Through the setting of the cleaning mechanism, the servo motor 21 drives the threaded shaft 23 to rotate. The rotation of the threaded shaft 23 drives the threaded rod 27 to rotate through the two transmission gears 25. The rotation of the threaded rod 27 drives the first cleaning brush 29 to move in the direction of the servo motor 21. The movement of the first cleaning brush 29 can clean the garbage on the top of the fixed workshop 11.

[0028] As Figure 3 shown, in one embodiment, two mounting seats 210 are fixedly connected to one end of the fixed workshop 11. One ends of the two guiding slide rails 28 are respectively fixedly connected to the two mounting seats 210. One end of the threaded rod 27 is rotatably connected to one of the mounting seats 210. Through the setting of the mounting seats 210, the stability of the threaded rod 27 is improved.

[0029] As Figure 1 shown, in one embodiment, a movable block 24 is fixedly connected to the active workshop 12. A strip-shaped hole 15 is formed in the fixed workshop 11. One end of the movable block 24 penetrates through the strip-shaped hole 15 and is screwed onto the threaded shaft 23. Through the setting of the movable block 24, the rotation of the threaded shaft 23 drives the movable block 24 and the active workshop 12 to move, and thus the active workshop 12 can be pulled out, thereby increasing the indoor area of the workshop.

[0030] As Figure 2 shown, in one embodiment, a row of rollers 13 are fixedly connected to both bottom ends of the active workshop 12. Fixed tracks 14 are fixedly connected to both of the two track seats 1. The two rows of rollers 13 are respectively in rolling connection with the two fixed tracks 14. Through the setting of the rollers 13, it is realized that it is easier to move the active workshop 12.

[0031] As Figure 4As shown, in one embodiment, an installation block 3 is fixedly connected to the other end of the fixed workshop 11. A sliding plate 31 is slidably connected to the installation block 3. A second cleaning brush 32 is fixedly connected to the top end of the sliding plate 31. The second cleaning brush 32 is adapted to the movable workshop 12. A threaded column 33 is rotatably connected to the bottom end of the installation block 3. The bottom end of the sliding plate 31 is screwed onto the threaded column 33. A crank 34 is fixedly connected to the bottom end of the threaded column 33. Through the arrangement of the threaded column 33, the threaded column 33 drives the sliding plate 31 and the second cleaning brush 32 to move, realizing the adjustment of the second cleaning brush 32.

[0032] As Figure 3 shown, in one embodiment, two fixing blocks 22 are screwed onto the threaded shaft 23. One ends of the two fixing blocks 22 are respectively fixedly connected to both ends of the fixed workshop 11. Through the arrangement of the fixing blocks 22, the stability of the threaded shaft 23 is improved.

[0033] The specific working method is as follows: When the movable workshop 12 needs to be unfolded, rotate the threaded column 33 to drive the sliding plate 31 and the second cleaning brush 32 to move upward, so that when the movable workshop 12 moves outward, it will not contact the second cleaning brush 32. Start the servo motor 21 to drive the threaded shaft 23 to rotate. The threaded shaft 23 rotates to drive the movable block 24 and the movable workshop 12 to move, so that the rollers 13 on the movable workshop 12 roll on the fixed track 14, and then the movable workshop 12 can be pulled out, thereby increasing the indoor area of the workshop. The rotation of the threaded shaft 23 drives the threaded rod 27 to rotate through two transmission gears 25. The pitch of the threaded rod 27 is greater than the pitch of the threaded shaft 23. The rotation of the threaded rod 27 drives the first cleaning brush 29 to move in the direction of the servo motor 21. The movement of the first cleaning brush 29 can clean the garbage on the top of the fixed workshop 11. When the movable workshop 12 needs to be retracted, rotate the threaded column 33 in the reverse direction to drive the second cleaning brush 32 to move downward to contact the movable workshop 12. Start the servo motor 21 to drive the threaded shaft 23 to rotate in the reverse direction. The threaded shaft 23 rotates to drive the movable block 24 and the movable workshop 12 to reset, and the second cleaning brush 32 can clean the garbage on the top of the movable workshop 12.

[0034] The technical means disclosed in the solution of the present utility model are not limited to the technical means disclosed by the above technical means, but also include the technical solutions composed of equivalent replacements of the above technical features. The matters not covered in the present utility model belong to the common general knowledge of those skilled in the art.

Claims

1. A push-pull steel structure factory building, comprising two track seats (1), a fixed factory building (11) being fixedly connected to the two track seats (1), a movable factory building (12) being arranged inside the fixed factory building (11), characterized in that: Also includes; A cleaning mechanism, the cleaning mechanism being located on a fixed plant building (11); The cleaning mechanism comprises a motor seat (2) fixedly connected to one end of a fixed plant (11), a servo motor (21) fixedly connected to the motor seat (2), an output end of the servo motor (21) connected to a threaded shaft (23) via a coupling, two fixed seats (26) fixedly connected to the other end of the fixed plant (11), one side of the two fixed seats (26) fixedly connected to a guide rail (28), a first cleaning brush (29) slidably sleeved on the two guide rails (28), the first cleaning brush (29) in contact with the fixed plant (11), one of the fixed seats (26) rotatably connected to a threaded rod (27), one end of the threaded rod (27) and the threaded shaft (23) fixedly connected to a transmission gear (25), the two transmission gears (25) meshing with each other.

2. A push-pull steel structure factory building according to claim 1, characterized in that: One end of the fixed plant (11) is fixedly connected to two mounting seats (210), one end of two guide rails (28) is respectively fixedly connected to the two mounting seats (210), and one end of the threaded rod (27) is rotatably connected to one of the mounting seats (210).

3. A push-pull steel structure factory building according to claim 2, characterized in that: A movable block (24) is fixedly connected to the movable plant (12), a strip hole (15) is provided on the fixed plant (11), and one end of the movable block (24) passes through the strip hole (15) and is screwed onto the threaded shaft (23).

4. A push-pull type steel structure factory building according to claim 3, characterized in that: The two bottom ends of the movable factory building (12) are fixedly connected to a row of rollers (13), the two track seats (1) are fixedly connected to fixed tracks (14), and the two rows of rollers (13) are respectively rollingly connected to the two fixed tracks (14).

5. The push-pull type steel structure factory building according to claim 1 is characterized by: The other end of the fixed plant (11) is fixedly connected to a mounting block (3), a sliding plate (31) is slidably connected to the mounting block (3), a second cleaning brush (32) is fixedly connected to the top of the sliding plate (31), the second cleaning brush (32) is adapted to the movable plant (12), a threaded column (33) is rotatably connected to the bottom end of the mounting block (3), the bottom end of the sliding plate (31) is screwed onto the threaded column (33), and a crank (34) is fixedly connected to the bottom end of the threaded column (33).

6. The push-pull type steel structure factory building according to claim 5 is characterized by: Two fixing blocks (22) are screwed onto the threaded shaft (23), and one end of the two fixing blocks (22) is fixedly connected to two ends of the fixed plant (11) respectively.

Citation Information

Patent Citations

  • Push-pull type steel structure factory building

    CN212295802U