A construction pouring and supporting device for load-bearing columns in a concrete factory building

By designing an automated concrete factory load-bearing column construction casting support device, and using the linkage mechanism between screws and linkage rods to realize the automatic movement and assembly of the baffle, the problem of waste of manpower and time during traditional construction is solved and the construction efficiency is improved.

CN116201355BActive Publication Date: 2025-06-24CHINA CONSTR SECOND ENG BUREAU LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310344657.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-03
Publication Date
2025-06-24
Estimated Expiration
2043-04-03

AI Technical Summary

Technical Problem

During the construction of traditional concrete factory load-bearing columns, mold splicing requires a lot of manpower and time, resulting in an increase in construction hours.

Method used

A concrete factory load-bearing column construction casting support device is designed, including brackets, screws, rotating seats, linkage rods and baffles. Through the linkage mechanism between screws and linkage rods, the baffles are automatically moved and assembled, reducing manual splicing time.

Benefits of technology

Through the automated baffle assembly mechanism, the construction time is significantly reduced, construction efficiency is improved, and human resources waste is reduced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116201355B_ABST
    Figure CN116201355B_ABST
Patent Text Reader

Abstract

The present invention discloses a construction pouring support device for load-bearing columns in a concrete factory building, which relates to the technical field of construction engineering. A construction pouring support device for load-bearing columns in a concrete factory building includes a bracket and a handrail. A screw rod is threadedly connected in the horizontal direction of the bracket. A handle is provided at the input end of the screw rod, and a third baffle is provided at the output end of the screw rod. A rotating seat is provided on the screw rod. Corresponding first linkage rods are respectively connected to both sides of the rotating seat. One end of the first linkage rod is connected to the second linkage rod and the third linkage rod at both ends of the bracket. The other ends of the second linkage rod and the third linkage rod are connected to a first baffle, and a second baffle is provided at the other end of the first baffle. By providing a screw rod on the bracket, the screw rod can drive the third baffle and the rotating seat to move simultaneously. When the first linkage rod moves towards the position of the load-bearing column, the third baffle, the first baffle and the second baffle will synchronously wrap the load-bearing column, thereby completing the support, and the efficiency can be improved through the setting.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of construction engineering, and particularly relates to a construction pouring support device for a load-bearing column of a concrete factory building. Background Art

[0002] During the construction of the load-bearing column of a factory building, it is necessary to first build baffles and assemble them into a mold. The baffles will form the basic shape of the load-bearing column. Then, concrete is poured between the molds to build a road. The baffles not only limit the shape of the road but also protect the load-bearing column.

[0003] However, the following problems exist in the practical use process by the applicant:

[0004] When traditional molds are spliced, workers need to place the baffles around the outer circle of the steel bars, and each end face of the steel bars needs to be placed. This placement process not only wastes time but also a large amount of human resources, resulting in an increase in the construction working hours during the entire construction process.

[0005] Therefore, it is necessary to provide a construction pouring support device for a load-bearing column of a concrete factory building to solve the above technical problems. Summary of the Invention

[0006] The technical problem to be solved by the present invention is to provide a construction pouring support device for a load-bearing column of a concrete factory building in view of the above defects of the prior art.

[0007] The technical solution adopted by the present invention to solve its technical problems is to construct a construction pouring support device for a load-bearing column of a concrete factory building, including a bracket and a handrail. A screw rod is threadedly connected to the horizontal direction of the bracket. A handle is provided at the input end of the screw rod, and a third baffle is provided at the output end of the screw rod. A rotating seat is provided on the screw rod. The two sides of the rotating seat are respectively connected to the corresponding first linkage rods. One side end of the first linkage rod is connected to the second linkage rod and the third linkage rod at both ends of the bracket. The other side ends of the second linkage rod and the third linkage rod are connected to the first baffle, and a second baffle is provided at the other end of the first baffle.

[0008] In a construction pouring support device for a load-bearing column of a concrete factory building provided by the present invention, a handrail is provided at the top of the bracket. A limiting rod is provided on one side of the bracket at the parallel position of the screw rod. One side end of the limiting rod is connected to the third baffle, and an extension rod is provided on the side edge of the rotating seat of the screw rod.

[0009] In a construction pouring support device for a load-bearing column of a concrete factory building provided by the present invention, the two extension rods are respectively hinged to one side end of the first linkage rod, and the other side of the first linkage rod is hinged to the second linkage rod and the third linkage rod through a first movable rod.

[0010] In a construction pouring and supporting device for a load-bearing column of a concrete factory building provided by the present invention, the second linkage rod and the third linkage rod have the same shape. Support rods are arranged on the inner sides of the second linkage rod and the third linkage rod, and the support rods of the second linkage rod and the third linkage rod are arranged in an up-and-down position.

[0011] In a construction pouring and supporting device for a load-bearing column of a concrete factory building provided by the present invention, second movable rods are respectively arranged on the corresponding brackets of the second linkage rod and the third linkage rod. The support rods of the second linkage rod and the third linkage rod are respectively hinged on the upper and lower sides of the second movable rod, and support seats are arranged on the first baffles corresponding to the other ends of the second linkage rod and the third linkage rod.

[0012] In a construction pouring and supporting device for a load-bearing column of a concrete factory building provided by the present invention, a third movable rod is arranged on the support seat. The upper and lower ends of the third movable rod are respectively hinged to the ends of the corresponding second linkage rod and the third linkage rod, and a limiting frame is arranged on the first baffle on one side of the support seat.

[0013] In a construction pouring and supporting device for a load-bearing column of a concrete factory building provided by the present invention, a guide rod is arranged on one end of the limiting frame. A side groove is opened on the corresponding support of the guide rod, and the side groove is opened on the upper and lower sides of the edge groove, and the edge groove is opened on one end face of the bracket.

[0014] In a construction pouring and supporting device for a load-bearing column of a concrete factory building provided by the present invention, outer seats are arranged on the two first baffles. Inner plates are hinged on the outer seats. An arc-shaped plate is connected to the outer end of the inner plate. A second baffle is arranged on one end of the arc-shaped plate, and the two second baffles correspond to each other. An outer plate is arranged at the other end of the arc-shaped plate. A first ejector rod is arranged in the vertical direction of the outer plate. A second ejector rod is arranged on the first linkage rod corresponding to the first ejector rod, and a pull rod is arranged between the first ejector rod and the second ejector rod.

[0015] In a construction pouring and supporting device for a load-bearing column of a concrete factory building provided by the present invention, an outer groove is opened on the side end of one of the first baffles. A U-shaped mounting bracket is arranged on the first baffle outside the outer groove. A sliding rod is slidably connected to the mounting bracket. A disc is arranged at the input end of the sliding rod, and a long plate is arranged at the output end of the sliding rod.

[0016] In a construction pouring and supporting device for a load-bearing column of a concrete factory building provided by the present invention, a rubber ball is arranged on the end face of the long plate facing the outer groove. An elliptical plate is arranged on one side of the disc, and the elliptical plate is arranged at the output end of the first motor. The first motor is detachably connected to the mounting plate of the mounting bracket. A first spring is sleeved on the sliding rod between the long plate and the mounting bracket.

[0017] Compared with the related technologies, a construction pouring support device for the load-bearing columns of a concrete factory building provided by the present invention has the following beneficial effects:

[0018] The present invention provides a construction pouring support device for the load-bearing columns of a concrete factory building. In this solution, a movable screw is arranged on a bracket, and a third baffle is arranged at the output end of the screw. The third baffle can move towards the position of the load-bearing column following the screw. A rotating seat is arranged on the screw, and the rotating seat can also move towards the position of the load-bearing column following the screw. An extension rod is arranged on the side edge of the rotating seat, and a first linkage rod is hinged to the extension rod. The first linkage rods are respectively arranged on both sides of the rotating seat. The other ends of each first linkage rod are respectively provided with a second linkage rod and a third linkage rod. The second linkage rod and the second linkage rod are hinged to the bracket through a support rod. When the first linkage rod moves towards the position of the load-bearing column following the rotating seat, the lengths of the first linkage rods on both sides will gradually increase, thereby pushing the side ends of the second linkage rod and the second linkage rod towards the direction of the third baffle. The second linkage rod and the second linkage rod are hinged to the support seat of the first baffle, and the second linkage rod and the third linkage rod will drive the first baffles on both sides to approach each other. When the first baffle and the third baffle are placed on the side end face of the load-bearing column, the three side end faces of the load-bearing column can be wrapped and supported, so that individual assembly is not required, and the support efficiency can be improved through the setting.

[0019] The present invention provides a construction pouring support device for the load-bearing columns of a concrete factory building. In this solution, an outer seat is arranged on the first baffle, and an inner plate is hinged to the outer seat. The inner plate can rotate around the outer seat. An arc-shaped plate is arranged at the outer end of the inner plate. The arc-shaped plate is integrally arranged in a semi-circular shape. One side end of the arc-shaped plate is connected to the second baffle. When the arc-shaped plate rotates towards the position of the first baffle, it can drive the second baffle to rotate towards the outer end of the first baffle, and the second baffle will be arranged perpendicular to the first baffle. The second baffles on both sides can form a baffle with the same area as the third baffle. The second baffle, the first baffle, and the third baffle can completely support the end face of the load-bearing column. An outer plate is arranged on one side of the arc-shaped plate, and a first ejector rod is arranged on the outer plate. A second ejector rod is arranged at the position corresponding to the first linkage rod on the first ejector rod. A pull rod is connected between the first ejector rod and the second ejector rod. When the pull rod moves towards the position of the load-bearing column following the first linkage rod, it will push the outer plate to rotate, thereby driving the second baffle to rotate towards the position of the first baffle, so as to wrap the load-bearing column at the same time. Through the setting, the construction efficiency can be improved and the construction working hours can be shortened. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a structural schematic diagram of a construction pouring support device for the load-bearing columns of a concrete factory building provided by the present invention Figure 1 ;

[0021] Figure 2Structural schematic of a construction pouring support device for load-bearing columns in a concrete factory building provided by the present invention Figure 2 ;

[0022] Figure 3 Structural schematic of a construction pouring support device for load-bearing columns in a concrete factory building provided by the present invention Figure 3 ;

[0023] Figure 4 Connection schematic of the guide rod in a construction pouring support device for load-bearing columns in a concrete factory building provided by the present invention;

[0024] Figure 5 Connection schematic of the first linkage rod in a construction pouring support device for load-bearing columns in a concrete factory building provided by the present invention;

[0025] Figure 6 Connection schematic of the disc in a construction pouring support device for load-bearing columns in a concrete factory building provided by the present invention;

[0026] Figure 7 Connection schematic of the rubber ball in a construction pouring support device for load-bearing columns in a concrete factory building provided by the present invention.

[0027] Reference numerals in the figure: 1. Bracket; 2. Limiting rod; 3. Extending rod; 4. Screw rod; 5. Rotating seat; 6. Handrail; 7. First baffle; 8. Second baffle; 9. Third baffle; 10. Outer seat; 11. Arc plate; 12. Inner plate; 13. Outer plate; 14. First ejector rod; 15. Pull rod; 16. Second ejector rod; 17. Handle; 18. Support seat; 19. Side groove; 20. Side slot; 21. Guide rod; 22. Limiting frame; 23. First linkage rod; 24. First movable rod; 25. Second linkage rod; 26. Support rod; 27. Third movable rod; 28. Second movable rod; 29. Third linkage rod; 30. Outer slot; 31. Rubber ball; 32. Mounting frame; 33. Long plate; 34. First spring; 35. Mounting plate; 36. Slide rod; 37. Disc; 38. First motor; 39. Elliptic plate. Embodiment

[0028] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. The typical embodiments of the present invention are shown in the drawings. Embodiment 1:

[0029] As Figure 1As shown in the figure, a construction pouring support device for a load-bearing column of a concrete factory building according to the present invention includes a bracket 1 and a handrail 6. A screw rod 4 is threadedly connected in the horizontal direction of the bracket 1. A handle 17 is provided at the input end of the screw rod 4, and a third baffle 9 is provided at the output end of the screw rod 4. A rotating seat 5 is provided on the screw rod 4. Two sides of the rotating seat 5 are respectively connected to corresponding first linkage rods 23. One side end of the first linkage rod 23 is connected to second linkage rods 25 and third linkage rods 29 at both ends of the bracket 1. The other side ends of the second linkage rod 25 and the third linkage rod 29 are connected to a first baffle 7. A second baffle 8 is provided at the other end of the first baffle 7. By providing the screw rod 4 on the bracket 1, the screw rod 4 can drive the third baffle 9 and the rotating seat 5 to move simultaneously. The rotating seat 5 is connected to the third linkage rod 29 and the second linkage rod 25 on the bracket 1 through the first linkage rod 23. The second linkage rod 25 and the third linkage rod 29 are connected to the first baffle 7. One side of the first baffle 7 is connected to the second baffle 8 through an arc-shaped plate 11. The arc-shaped plate 11 is connected to the first linkage rod 23 through a pull rod 15. When the first linkage rod 23 moves towards the position of the load-bearing column, the third baffle 9, the first baffle 7, and the second baffle 8 will synchronously wrap the load-bearing column, thereby completing the support, and the efficiency can be improved through the setting.

[0030] As Figure 2 shown, a handrail 6 is provided at the top of the bracket 1. A limiting rod 2 is provided on one side of the bracket 1 at the parallel position of the screw rod 4. One side end of the limiting rod 2 is connected to the third baffle 9. An extension rod 3 is provided on the side edge of the rotating seat 5 of the screw rod 4. Through the setting of the extension rod 3, the rotation of the first linkage rod 23 can be realized.

[0031] As an optional solution, in an embodiment of the present invention, as Figure 3 shown, the two side extension rods 3 are respectively hinged to one side end of the first linkage rod 23. The other side of the first linkage rod 23 is hinged to the second linkage rod 25 and the third linkage rod 29 through a first movable rod 24. By hinging the first linkage rod 23 with the second linkage rod 25 and the third linkage rod 29, the pushing of the second linkage rod 25 and the third linkage rod 29 can be realized.

[0032] In implementation, in this solution, a movable screw rod 4 is arranged on the bracket 1, and a third baffle 9 is arranged at the output end of the screw rod 4. The third baffle 9 can move towards the load-bearing column position following the screw rod 4. A rotating seat 5 is arranged on the screw rod 4, and the rotating seat 5 can also move towards the load-bearing column position following the screw rod 4. An extension rod 3 is arranged on the side edge of the rotating seat 5, and a first linkage rod 23 is hinged on the extension rod 3. The first linkage rods 23 are respectively arranged on both sides of the rotating seat 5. On the other end of each first linkage rod 23, a second linkage rod 25 and a third linkage rod 29 are respectively arranged. The second linkage rods 25 and the second linkage rods 25 are hinged on the bracket 1 through a support rod 26. When the first linkage rods 23 follow the rotating seat 5 to move towards the load-bearing column position, the lengths of the first linkage rods 23 on both sides will gradually increase, thereby pushing the side ends of the second linkage rods 25 and the second linkage rods 25 towards the direction of the third baffle 9. The second linkage rods 25 and the second linkage rods 25 are hinged to the support seats 18 of the first baffle 7. The second linkage rods 25 and the third linkage rods 29 will drive the first baffles 7 on both sides to approach each other. When the first baffle 7 and the third baffle 9 are placed on the side end face of the load-bearing column, the three side end faces of the load-bearing column can be wrapped and supported, so that individual assembly is not required, and the support efficiency can be improved through the setting. Embodiment 2:

[0033] As Figure 4 and Figure 5 shown, on the basis of Embodiment 1, the present invention provides a technical solution: The second linkage rod 25 and the third linkage rod 29 have the same shape. Support rods 26 are arranged on the inner sides of the second linkage rod 25 and the third linkage rod 29. The support rods 26 of the second linkage rod 25 and the third linkage rod 29 are arranged in an up-and-down position. Through the arrangement of the support rods 26, the second linkage rod 25 and the third linkage rod 29 will rotate around the bracket 1;

[0034] Second movable rods 28 are respectively arranged on the bracket 1 corresponding to the second linkage rod 25 and the third linkage rod 29. The support rods 26 of the second linkage rod 25 and the third linkage rod 29 are respectively hinged on the upper and lower sides of the second movable rod 28. Support seats 18 are arranged on the first baffle 7 corresponding to the other end of the second linkage rod 25 and the third linkage rod 29. Through the arrangement of the support seats 18, the second linkage rod 25 and the third linkage rod 29 can rotate;

[0035] A third movable rod 27 is arranged on the support seat 18. The upper and lower ends of the third movable rod 27 are respectively hinged to the ends of the corresponding second linkage rod 25 and the third linkage rod 29. A limiting frame 22 is arranged on the first baffle 7 on one side of the support seat 18. Through the arrangement of the limiting frame 22, the translation of the first baffle 7 can be realized;

[0036] One end of the limiting frame 22 is provided with a guide rod 21. A side groove 20 is formed in the corresponding support of the guide rod 21. The side groove 20 is formed on the upper and lower sides of the edge groove 19. The edge groove 19 is formed on one end face of the bracket 1. By forming the side groove 20, the limiting frame 22 will not be displaced.

[0037] As an alternative solution, in this embodiment, as Figure 5 , Figure 6 and Figure 7 shown, outer seats 10 are provided on both sides of the first baffle 7. An inner plate 12 is hinged to the outer seat 10. An arc-shaped plate 11 is connected to the outer end of the inner plate 12. A second baffle 8 is provided at one end of the arc-shaped plate 11. The second baffles 8 on both sides correspond to each other. An outer plate 13 is provided at the other end of the arc-shaped plate 11. A first ejector rod 14 is provided in the vertical direction of the outer plate 13. A second ejector rod 16 is provided on the corresponding first linkage rod 23 of the first ejector rod 14. A pull rod 15 is provided between the first ejector rod 14 and the second ejector rod 16. By providing the arc-shaped plate 11, the second baffle 8 can be driven to rotate towards the position of the first baffle 7, so as to realize the wrapping of the load-bearing column; an outer groove 30 is formed at the side end of one side of the first baffle 7. A U-shaped mounting bracket 32 is provided on the first baffle 7 outside the outer groove 30. A sliding rod 36 is slidably connected to the mounting bracket 32. A disc 37 is provided at the input end of the sliding rod 36. A long plate 33 is provided at the output end of the sliding rod 36. By providing the sliding rod 36, the long plate 33 can be telescoped under the drive of the sliding rod 36; a rubber ball 31 is provided on the end face of the long plate 33 facing the outer groove 30. An elliptical plate 39 is provided on one side of the disc 37. The elliptical plate 39 is provided at the output end of the first motor 38. The first motor 38 is detachably connected to the mounting plate 35 of the mounting bracket 32. A first spring 34 is sleeved on the sliding rod 36 between the long plate 33 and the mounting bracket 32. By driving the elliptical plate 39 to rotate by the first motor 38, the disc 37 will drive the sliding rod 36 to extend outwards. When the elliptical plate 39 does not press against the disc 37, the first spring 34 on the sliding rod 36 will press against the long plate 33 to move towards the outer groove 30, and the rubber ball 31 on the long plate 33 will reciprocally hammer the first baffle 7, so that vibration will be realized during concrete pouring to make the concrete pouring more uniform, and the later concrete vibration will be more time-saving.

[0038] In implementation, in this solution, an outer seat 10 is arranged on the first baffle 7, and an inner plate 12 is hinged on the outer seat 10. The inner plate 12 can rotate around the outer seat 10. An arc-shaped plate 11 is arranged at the outer end of the inner plate 12. The arc-shaped plate 11 is integrally semicircular. One side end of the arc-shaped plate 11 is connected to the second baffle 8. When the arc-shaped plate 11 rotates towards the first baffle 7, it can drive the second baffle 8 to rotate towards the outer end of the first baffle 7. The second baffle 8 will be perpendicularly arranged with the first baffle 7. The two second baffles 8 on both sides can form a baffle with the same area as the third baffle 9. The second baffle 8, the first baffle 7, and the third baffle 9 can completely support the end face of the load-bearing column. An outer plate 13 is arranged on one side of the arc-shaped plate 11. A first ejector rod 14 is arranged on the outer plate 13. A second ejector rod 16 is arranged at the position corresponding to the first linkage rod 23 on the first ejector rod 14. A pull rod 15 is connected between the first ejector rod 14 and the second ejector rod 16. When the pull rod 15 moves towards the load-bearing column following the first linkage rod 23, it will push against the outer plate 13 to rotate, thereby driving the second baffle 8 to rotate towards the first baffle 7, and thus wrapping the load-bearing column at the same time. Through this setting, the construction efficiency can be improved and the construction working hours can be shortened.

[0039] The working principle of a construction pouring support device for a load-bearing column in a concrete factory building provided by the present invention is as follows:

[0040] Implementation steps of the first innovation point:

[0041] The first step: In this solution, a movable screw rod 4 is arranged on the bracket 1. A third baffle 9 is arranged at the output end of the screw rod 4. The third baffle 9 can move towards the load-bearing column following the screw rod 4. A rotating seat 5 is arranged on the screw rod 4. The rotating seat 5 can also move towards the load-bearing column following the screw rod 4. An extension rod 3 is arranged on the side edge of the rotating seat 5. The extension rod 3 is hinged with a first linkage rod 23.

[0042] The second step: The first linkage rods 23 are respectively arranged on both sides of the rotating seat 5. The other side ends of each first linkage rod 23 are respectively provided with a second linkage rod 25 and a third linkage rod 29. The second linkage rods 25 and 25 are hinged to the bracket 1 through a support rod 26. When the first linkage rod 23 moves towards the load-bearing column following the rotating seat 5, the lengths of the two first linkage rods 23 on both sides will gradually increase, and thus will push against one side end of the second linkage rods 25 and 25 to move towards the third baffle 9.

[0043] The third step: The second linkage rods 25 and 25 are hinged to the support seat 18 of the first baffle 7. The second linkage rods 25 and the third linkage rods 29 will drive the two first baffles 7 on both sides to approach each other. When the first baffle 7 and the third baffle 9 are placed on the side end face of the load-bearing column, they can wrap and support the three side end faces of the load-bearing column, so that individual assembly is not required. Through this setting, the support efficiency can be improved.

[0044] Implementation steps of the second innovation point:

[0045] Step 1: In this solution, an outer seat 10 is arranged on the first baffle 7, and an inner plate 12 is hinged on the outer seat 10. The inner plate 12 can rotate around the outer seat 10. An arc-shaped plate 11 is arranged at the outer end of the inner plate 12. The arc-shaped plate 11 is integrally semicircular. One end of the arc-shaped plate 11 is connected to the second baffle 8. When the arc-shaped plate 11 rotates towards the first baffle 7, it can drive the second baffle 8 to rotate towards the outer end of the first baffle 7.

[0046] Step 2: The second baffle 8 will be arranged perpendicular to the first baffle 7. The two second baffles 8 on both sides can form a baffle with the same area as the third baffle 9. The second baffle 8, the first baffle 7, and the third baffle 9 can completely support the end face of the load-bearing column. An outer plate 13 is arranged on one side of the arc-shaped plate 11. A first ejector rod 14 is arranged on the outer plate 13. A second ejector rod 16 is arranged at the position corresponding to the first linkage rod 23 on the first ejector rod 14.

[0047] Step 3: A pull rod 15 is connected between the first ejector rod 14 and the second ejector rod 16. When the pull rod 15 moves towards the load-bearing column following the first linkage rod 23, it will push against the outer plate 13 to rotate, thereby driving the second baffle 8 to rotate towards the first baffle 7, so as to simultaneously wrap the load-bearing column. Through this setting, the construction efficiency can be improved and the construction time can be shortened.

[0048] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements will not make the essence of the corresponding technical solutions deviate from the protection scope of the technical solutions of the embodiments of the present invention.

Claims

1. A construction pouring and supporting device for load-bearing columns in a concrete factory building, comprising a bracket (1) and a handrail (6), characterized in that: The screw rod (4) is threadedly connected to the bracket (1) in the horizontal direction. A handle (17) is provided at the input end of the screw rod (4), and a third baffle (9) is provided at the output end of the screw rod (4). A rotating seat (5) is provided on the screw rod (4). The two sides of the rotating seat (5) are respectively connected to the corresponding first linkage rods (23). One side end of the first linkage rod (23) is connected to the second linkage rod (25) and the third linkage rod (29) at both ends of the bracket (1). The other side ends of the second linkage rod (25) and the third linkage rod (29) are connected to the first baffle (7). A second baffle (8) is provided at the other end of the first baffle (7). A limiting rod (2) is provided on one side of the bracket (1) at the parallel position of the screw rod (4). One side end of the limiting rod (2) is connected to the third baffle (9). Second movable rods (28) are respectively provided on the bracket (1) corresponding to the second linkage rod (25) and the third linkage rod (29). The support rods (26) of the second linkage rod (25) and the third linkage rod (29) are respectively hinged on the upper and lower sides of the second movable rod (28).

2. The construction pouring and supporting device for the load-bearing column of a concrete factory building according to claim 1, characterized in that, An armrest (6) is provided at the top of the bracket (1), and an extension rod (3) is provided on the side edge of the rotating seat (5) of the screw rod (4).

3. The construction pouring and supporting device for the load-bearing columns of a concrete factory building according to claim 2, characterized in that, The two extension rods (3) are respectively hinged to one side end of the first linkage rod (23), and the other side of the first linkage rod (23) is hinged to the second linkage rod (25) and the third linkage rod (29) through a first movable rod (24).

4. A construction pouring and supporting device for a load-bearing column of a concrete factory building according to claim 1, characterized in that, The second linkage rod (25) and the third linkage rod (29) have the same shape. Support rods (26) are provided on the inner sides of the second linkage rod (25) and the third linkage rod (29). The support rods (26) of the second linkage rod (25) and the third linkage rod (29) are arranged in the up and down positions.

5. A construction pouring and supporting device for the load-bearing columns of a concrete factory building according to claim 1, characterized in that, A support seat (18) is provided on the first baffle (7) corresponding to the other side ends of the second linkage rod (25) and the third linkage rod (29).

6. The construction pouring and supporting device for the load-bearing column of a concrete factory building according to claim 5, characterized in that A third movable rod (27) is provided on the support seat (18). The upper and lower ends of the third movable rod (27) are respectively hinged to the ends of the corresponding second linkage rod (25) and the third linkage rod (29). A limiting frame (22) is provided on the first baffle (7) on one side of the support seat (18).

7. A construction pouring and supporting device for a load-bearing column of a concrete factory building according to claim 6, characterized in that, A guide rod (21) is provided at one side end of the limiting frame (22). A side groove (20) is opened on the corresponding support of the guide rod (21). The side groove (20) is opened on the upper and lower sides of the edge groove (19), and the edge groove (19) is opened on one side end face of the bracket (1).

8. A construction pouring and supporting device for a load-bearing column of a concrete factory building according to claim 1, characterized in that, On both sides of the first baffle (7), an outer seat (10) is provided. An inner plate (12) is hinged on the outer seat (10). An arc-shaped plate (11) is connected to the outer end of the inner plate (12). A second baffle (8) is provided at one end of the arc-shaped plate (11). The second baffles (8) on both sides correspond to each other. An outer plate (13) is provided at the other end of the arc-shaped plate (11). A first ejector rod (14) is provided in the vertical direction of the outer plate (13). A second ejector rod (16) is provided on the first linkage rod (23) corresponding to the first ejector rod (14). A pull rod (15) is provided between the first ejector rod (14) and the second ejector rod (16).

9. The construction pouring and supporting device for the load-bearing column of a concrete factory building according to claim 1, wherein, An outer groove (30) is formed at the side end of the first baffle (7) on one side. A U-shaped mounting bracket (32) is provided on the first baffle (7) outside the outer groove (30). A slide bar (36) is slidably connected to the mounting bracket (32). A disc (37) is provided at the input end of the slide bar (36). A long plate (33) is provided at the output end of the slide bar (36).

10. A construction pouring and supporting device for a load-bearing column of a concrete factory building according to claim 9, characterized in that, A rubber ball (31) is provided on the end face of the long plate (33) facing the outer groove (30). An elliptical plate (39) is provided on one side of the disc (37). The elliptical plate (39) is arranged at the output end of the first motor (38). The first motor (38) is detachably connected to the mounting plate (35) of the mounting bracket (32). A first spring (34) is sleeved on the slide bar (36) between the long plate (33) and the mounting bracket (32).

Citation Information

Patent Citations

  • Formwork system for rectangular stand column pouring

    CN106639307A

  • Pull rod convenient to disassemble and assemble and used for concrete pouring formwork

    CN216516919U