Concrete pouring device

By designing a concrete casting device including anti-inclined support plate, lifting support rod and slope adjustment rod, the problems of small support range and fixed inclined angle of the existing device are solved, and a more stable and flexible casting process is achieved.

CN223000812UActive Publication Date: 2025-06-20ZHEJIANG SHUANGXIN PREFABRICATED PARTS CO LTD
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Patent Information

Application Number
CN202421395464.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-19
Publication Date
2025-06-20
Estimated Expiration
2034-06-19

AI Technical Summary

Technical Problem

The existing concrete casting device has a small support range during placement and use, which can easily cause the device to tilt and fall, and the inclination angle is fixed, so it cannot be adjusted according to actual conditions.

Method used

A concrete pouring device including placing a load bearing plate, an anti-absorbent support plate, a lift support rod and an inclination adjustment rod is designed. Through the flip-up and expansion of the anti-absorbing support plate and the use of lifting support rods, the support range of the device is expanded; through the installation of the slope adjustment rod and the linkage support rod, the adjustment of the inclination angle of the device is achieved.

Benefits of technology

It effectively solves the problems of instability and fixed inclination angle during placement and use, improves the stability and flexibility of the device, and facilitates the casting process of concrete poles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a concrete pouring device, which relates to the technical field of concrete poles and comprises a device body. The device body is provided with a placement bearing plate in the left-right direction, bearing rods in the up-down direction are arranged on the left side and the right side of the top end face of the placement bearing plate in the front-back direction, threaded columns are arranged on the top end faces of the bearing rods of the placement bearing plate, and two nuts are installed on the threaded columns of the placement bearing plate. Strip-shaped grooves in the left-right direction are formed in the front portion and the rear portion of the middle of the top end face of the containing bearing plate, and a vertical plate with a left-right through hole is arranged at the left end of the top end face of the containing bearing plate, so that the anti-inclination supporting plate can be conveniently arranged on a bearing rod of the containing bearing plate in a sleeving mode to be overturned, folded and unfolded, and auxiliary supporting is achieved through the lifting supporting rod; the problems that in the placing and using process of the device, the supporting range is small, the device is prone to inclining and tilting, and auxiliary supporting measures are inconvenient to add on the device to expand the placing and supporting range of the device are solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of concrete poles, in particular to a concrete pouring device. Background Art

[0002] Concrete poles are poles made of concrete and steel bars or steel wires. The tensile strength of the steel bars and the compressive strength of the concrete complement each other to form a structure with a very high load-bearing capacity. Concrete poles are poles for laying wires and are bridges of electricity, allowing electricity to be transported to various places. Concrete poles need to be produced and processed through concrete pouring equipment during the production process.

[0003] Based on the above, the inventors found that the existing concrete pouring device has the following deficiencies:

[0004] 1. The support range of the device during placement and use is small, which easily causes the device to tilt and fall, and it is inconvenient to add auxiliary support measures to the device to expand the placement support range of the device;

[0005] 2. The inclination angle of the device is fixed and cannot be adjusted according to the actual situation of concrete pole pouring. It is not convenient to install slope adjustment measures on the device to adjust the inclination angle of the device. Utility Model Content

[0006] In order to solve the above technical problems, the utility model provides a concrete pouring device to solve the problems that the existing device has a small support range during placement and use, which easily causes the device to tilt and fall, and it is inconvenient to install auxiliary support measures on the device to expand the placement support range of the device; the inclination angle of the device is fixed and cannot be adjusted according to the actual situation of concrete pole pouring, and it is inconvenient to install slope adjustment measures on the device to adjust the inclination angle of the device.

[0007] The purpose and effect of the concrete pouring device of the utility model are achieved by the following specific technical means:

[0008] A concrete pouring device, comprising a device body; the device body is provided with a placement and bearing plate in the left-right direction, and there are bearing rods in the up-down direction arranged before and after on both the left and right sides of the top end face of the placement and bearing plate. The top end face of the bearing rods of the placement and bearing plate is provided with threaded columns, and two nuts are installed on the threaded columns of the placement and bearing plate. There are strip-shaped grooves in the left-right direction arranged before and after in the middle of the top end face of the placement and bearing plate. On the left end of the top end face of the placement and bearing plate, there is a vertical plate with a left-right through hole, and on the right end of the top end face of the placement and bearing plate, there is a bearing plate with a left-right through hole. On the front and rear of the top end face of the bearing plate of the placement and bearing plate, there are semi-circular head blocks with front-back through holes. An anti-tilt support plate in the left-right direction is sleeved on the bearing rods of the placement and bearing plate. The outer end of the anti-tilt support plate is provided with a sleeve in the up-down direction, and the inner end of the anti-tilt support plate is provided with an internally threaded cylinder in the up-down direction. A lifting support rod in the up-down direction is installed inside the internally threaded cylinder of the anti-tilt support plate. Threads are provided on the outer circumference of the lifting support rod. A regular hexagonal prism is provided on the top end face of the lifting support rod, and a grounding circular plate is provided on the bottom end face of the lifting support rod.

[0009] Further, five limit bearing blocks arranged in the left-right direction and in the front-back direction are installed on the top end face of the bearing and flipping plate through bolts. Threaded blind holes are arranged before and after on the bottom end face of the limit bearing blocks, and a trapezoidal groove that penetrates left and right is arranged in the middle of the top end face of the limit bearing blocks.

[0010] Further, a bearing and flipping plate in the left-right direction is installed inside the right end limit groove of the linkage support rod through a fixed shaft. A semi-circular head block with a front-back through hole is arranged in the middle of the bottom end face of the bearing and flipping plate. A semi-circular head with a front-back through hole is arranged at the right end of the bearing and flipping plate. Five through holes that penetrate up and down and are arranged in the left-right direction are provided before and after on the bearing and flipping plate. The semi-circular head of the bearing and flipping plate is installed between the semi-circular head blocks of the placement and bearing plate through a fixed shaft.

[0011] Further, a linkage support rod in the left-right direction is installed on the semi-circular head block of the adjustment and moving block through a fixed shaft. Semi-circular heads with front-back through holes are arranged at both ends of the linkage support rod, and limit grooves that penetrate up and down are arranged in the middle of the left and right end faces of the linkage support rod.

[0012] Further, an adjustment and moving block is installed on the outer circumference of the slope adjustment rod through threads. A threaded hole that penetrates left and right is arranged in the middle of the adjustment and moving block. A semi-circular head block with a front-back through hole is arranged in the middle of the top end face of the adjustment and moving block.

[0013] Further, fixed columns are arranged on the left and right end faces of the slope adjustment rod, and a regular hexagonal prism is arranged at the left end of the slope adjustment rod.

[0014] Further, a slope adjustment rod in the left-right direction is installed between the vertical plate and the bearing plate of the placement and bearing plate through a bearing. Threads are provided on the outer circumference of the slope adjustment rod.

[0015] Compared with the prior art, the utility model has the following beneficial effects:

[0016] It is convenient for the anti-tilt support plate to be sleeved on the load-bearing rod for placing the load-bearing plate and to be turned over and unfolded. It is convenient for the anti-tilt support plate to be turned over and unfolded and to achieve auxiliary support through the lifting support rod, solving the problem that the support range during the placement and use of the device is small, which easily causes the device to tilt and fall, and it is not convenient to install auxiliary support measures on the device to expand the placement and support range of the device.

[0017] It is convenient for the slope adjustment rod to be installed on the load-bearing plate through a bearing to carry the adjustment moving block, and it is convenient for the adjustment moving block to drive the load-bearing turning plate to turn over and adjust the slope through the linkage support rod, solving the problem that the tilt angle of the device is fixed and cannot be adjusted according to the actual situation of the concrete pole casting, and it is not convenient to install slope adjustment measures on the device to adjust the tilt angle of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the front view structural schematic diagram of the utility model.

[0019] Figure 2 is the disassembled structural schematic diagram of the utility model.

[0020] Figure 3 is the unfolded schematic diagram of the anti-tilt support plate of the utility model.

[0021] Figure 4 is the tilt schematic diagram of the load-bearing turning plate of the utility model.

[0022] Figure 5 is the bottom view schematic diagram of the load-bearing turning plate of the utility model.

[0023] Figure 6 is the bottom view schematic diagram of the limit load-bearing block of the utility model.

[0024] In the figure: 1, device body; 2, load-bearing plate for placement; 3, anti-tilt support plate; 4, lifting support rod; 5, slope adjustment rod; 6, adjustment moving block; 7, linkage support rod; 8, load-bearing turning plate; 9, limit load-bearing block. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0025] The following further describes in detail the embodiments of the present invention with reference to the drawings and embodiments.

[0026] Embodiment 1:

[0027] As shown in the attached Figure 1 to the attached Figure 6 shown:

[0028] The utility model provides a concrete pouring device, including a device body 1; the device body 1 is provided with a placement and bearing plate 2 in the left-right direction, which is convenient for bearing various components. On the top end face of the placement and bearing plate 2, bearing rods in the up-down direction are arranged on both the front and rear sides of the left and right, which is convenient for the anti-tilt support plate 3 to be sleeved and rotated. On the top end face of the bearing rod of the placement and bearing plate 2, a threaded column is arranged, which is convenient for the installation of nuts. Two nuts are installed on the threaded column of the placement and bearing plate 2, which is convenient for preventing the anti-tilt support plate 3 from coming off. On the top end face of the placement and bearing plate 2, strip-shaped grooves in the left-right direction are respectively opened in the front and rear of the middle, which is convenient for the lifting support rod 4 to be placed inside. On the left end of the top end face of the placement and bearing plate 2, a vertical plate with a left-right through hole is arranged, which is convenient for the left end of the slope adjustment rod 5 to be installed through a bearing. On the right end of the top end face of the placement and bearing plate 2, a bearing plate with a left-right through hole is arranged, which is convenient for the right end of the slope adjustment rod 5 to be installed through a bearing. On the top end face of the bearing plate of the placement and bearing plate 2, semi-circular head blocks with front-back through holes are respectively arranged on the front and rear, which is convenient for the bearing turnover plate 8 to be installed through a fixed shaft. The anti-tilt support plate 3 in the left-right direction is sleeved on the bearing rod of the placement and bearing plate 2, which is convenient for the anti-tilt support plate 3 to be turned over and unfolded. A sleeve in the up-down direction is arranged at the outer end of the anti-tilt support plate 3, which is convenient for sleeving and turning over. An internal threaded cylinder in the up-down direction is arranged at the inner end of the anti-tilt support plate 3, which is convenient for the lifting support rod 4 to be installed and lifted through threads. The lifting support rod 4 is installed inside the internal threaded cylinder of the anti-tilt support plate 3, which is convenient for the lifting support rod 4 to be lifted through thread engagement. Threads are provided on the outer circumference of the lifting support rod 4, which is convenient for installation through threads. A regular hexagonal prism is arranged on the top end face of the lifting support rod 4, which is convenient for being rotated by a tool. A grounding circular plate is arranged on the bottom end face of the lifting support rod 4, which is convenient for contacting the placement ground. A slope adjustment rod 5 in the left-right direction is installed between the vertical plate and the bearing plate of the placement and bearing plate 2 through a bearing, which is convenient for the slope adjustment rod 5 to rotate. Threads are provided on the outer circumference of the slope adjustment rod 5, which is convenient for the adjusting moving block 6 to be installed through threads.

[0029] Among them, fixed columns are provided on the left and right end faces of the slope adjustment rod 5, which is convenient for installation through bearings. A regular hexagonal prism is provided at the left end of the slope adjustment rod 5, which is convenient for rotation by tools. An adjustment moving block 6 is installed on the outer circumference of the slope adjustment rod 5 through threads, which is convenient for the adjustment moving block 6 to move left and right through thread engagement. A thread hole penetrating left and right is provided in the middle of the adjustment moving block 6, which is convenient for the slope adjustment rod 5 to be installed through threads. A semi-circular head block with a front and rear through hole is provided in the middle of the top end face of the adjustment moving block 6, which is convenient for the linkage support rod 7 to be installed through a fixed shaft for flipping. The linkage support rod 7 in the left-right direction is installed on the semi-circular head block of the adjustment moving block 6 through a fixed shaft, which is convenient for the linkage support rod 7 to flip. Semi-circular heads with front and rear through holes are provided at both ends of the linkage support rod 7, which is convenient for the linkage support rod 7 to be installed through a fixed shaft for flipping. Upper and lower through-limiting grooves are provided in the middle of the left and right end faces of the linkage support rod 7, which is convenient for the semi-circular head blocks of the adjustment moving block 6 and the load-bearing flipping plate 8 to be inserted for limiting. The load-bearing flipping plate 8 in the left-right direction is installed inside the right-end limiting groove of the linkage support rod 7 through a fixed shaft, which is convenient for driving the load-bearing flipping plate 8 to flip. A semi-circular head block with a front and rear through hole is provided in the middle of the bottom end face of the load-bearing flipping plate 8, which is convenient for the linkage support rod 7 to be installed through a fixed shaft. A semi-circular head with a front and rear through hole is provided at the right end of the load-bearing flipping plate 8, which is convenient for flipping through fixed shaft installation. Five through holes penetrating up and down and arranged left and right are provided in the front and rear of the load-bearing flipping plate 8, which is convenient for the limit load-bearing block 9 to be installed through bolts. The semi-circular head of the load-bearing flipping plate 8 is installed between the semi-circular head blocks of the placement load-bearing plate 2 through a fixed shaft, which is convenient for the load-bearing flipping plate 8 to flip up and down to adjust the slope. Five limit load-bearing blocks 9 arranged left and right and in the front-rear direction are installed on the top end face of the load-bearing flipping plate 8 through bolts, which is convenient for carrying the concrete pole casting mold. Threaded blind holes are provided in the front and rear of the bottom end face of the limit load-bearing block 9, which is convenient for installation through bolts. A trapezoidal groove penetrating left and right is provided in the middle of the top end face of the limit load-bearing block 9, which is convenient for the concrete pole casting mold to be placed and limited.

[0030] Specific usage and function of this embodiment:

[0031] In the present utility model, when Figure 1 as shown, when the anti-slope support plate 3 is unfolded, the anti-slope support plate 3 is flipped outward by ninety degrees, and the lifting support rod 4 is rotated by a tool to engage with the anti-slope support plate 3 through threads, so that the lifting support rod 4 descends through thread engagement, and the bottom end face of the lifting support rod 4 contacts the ground, and the state is as Figure 3 shown. Thus, the unfolding operation of the anti-slope support plate 3 is completed, and the stability of the device body 1 during placement is improved. On the contrary, the operation is the retraction operation of the anti-slope support plate 3. When Figure 3When the shown load-bearing turning plate 8 is tilted and adjusted, the slope adjustment rod 5 is rotated by a tool to be in threaded engagement with the adjustment moving block 6, causing the adjustment moving block 6 to move to the right through threaded engagement. The left end of the linkage support rod 7 is driven by the adjustment moving block 6 to move to the right synchronously, and the right end of the linkage support rod 7 pushes the load-bearing turning plate 8 to turn upward, in the state as Figure 4 shown, thereby completing the adjustment of the tilt angle of the load-bearing turning plate 8.

[0032] Embodiment 2:

[0033] The difference from Embodiment 1 is that the regular hexagonal prism of the lifting support rod 4 can also be set as a regular heptagonal prism, so that the lifting support rod 4 needs to be rotated by a special tool that cooperates with the regular heptagonal prism, preventing non-staff from rotating and adjusting the lifting support rod 4.

[0034] Embodiment 3:

[0035] The difference from Embodiment 1 is that the regular hexagonal prism of the slope adjustment rod 5 can also be set as a regular heptagonal prism, so that the slope adjustment rod 5 needs to be rotated by a special tool that cooperates with the regular heptagonal prism, preventing non-staff from rotating and adjusting the slope adjustment rod 5.

Claims

1. A concrete pouring device, characterized in that: The device body (1) comprises a placing load-bearing plate (2), the placing load-bearing plate (2) having load-bearing rods arranged in the up-down direction on both the left and right sides of the top end surface, a threaded column arranged on the top end surface of the load-bearing rod, two nuts installed on the threaded column of the placing load-bearing plate (2), a strip groove in the left-right direction is arranged in the front and back of the middle of the top end surface of the placing load-bearing plate (2), a vertical plate with left-right through holes is arranged at the left end of the top end surface of the placing load-bearing plate (2), and a load-bearing rod with left-right through holes is arranged at the right end of the top end surface of the placing load-bearing plate (2). A plate, a semicircular head block with front and rear through holes is arranged at the front and rear of the top end face of the bearing plate for placing the bearing plate (2), an anti-slant support plate (3) is sleeved on the bearing rod for placing the bearing plate (2), the outer end of the anti-slant support plate (3) is provided with a sleeve in the up-down direction, the inner end of the anti-slant support plate (3) is provided with an internal threaded cylinder in the up-down direction, a lifting support rod (4) is installed inside the internal threaded cylinder of the anti-slant support plate (3), the outer circumference of the lifting support rod (4) is provided with a thread, the top end face of the lifting support rod (4) is provided with a regular hexagonal prism, and the bottom end face of the lifting support rod (4) is provided with a ground contacting circular plate.

2. A concrete pouring device as claimed in claim 1, characterized in that: An inclination adjustment rod (5) is installed between the vertical plate on which the bearing plate (2) is placed and the bearing plate via a bearing, and a thread is provided on the outer circumference of the inclination adjustment rod (5).

3. A concrete pouring device as claimed in claim 2, characterized in that: The left and right end surfaces of the inclination adjustment rod (5) are provided with fixing columns, and the left end of the inclination adjustment rod (5) is provided with a regular hexagonal prism.

4. A concrete pouring device as claimed in claim 3, characterized in that: The outer circumference of the inclination adjustment rod (5) is threadedly mounted with an adjustment moving block (6), the middle of the adjustment moving block (6) is provided with a threaded hole penetrating left and right, and the middle of the top end surface of the adjustment moving block (6) is provided with a semicircular head block with front and rear penetrating holes.

5. A concrete pouring device as claimed in claim 4, characterized in that: A linkage support rod (7) is mounted on the semicircular head block of the adjusting moving block (6) via a fixed shaft, and semicircular heads with front and rear through holes are arranged at both ends of the linkage support rod (7), and a vertically penetrating limit groove is arranged in the middle of the left and right end surfaces of the linkage support rod (7).

6. A concrete pouring device as claimed in claim 5, characterized in that: A bearing flip plate (8) is installed inside the limiting groove at the right end of the linkage support rod (7) via a fixed shaft, a semicircular head block with front and rear through holes is arranged in the middle of the bottom end surface of the bearing flip plate (8), a semicircular head with front and rear through holes is arranged at the right end of the bearing flip plate (8), five through holes arranged left and right and penetrating up and down are opened at the front and back of the bearing flip plate (8), and the semicircular head of the bearing flip plate (8) is installed between the semicircular head blocks on which the bearing plate (2) is placed via a fixed shaft.

7. A concrete pouring device as claimed in claim 6, characterized in that: The top end surface of the bearing flip plate (8) is bolted with five position-limiting bearing blocks (9) arranged in a left-right and a right-left direction, the bottom end surface of the position-limiting bearing block (9) is provided with threaded blind holes at the front and rear, and the top end surface of the position-limiting bearing block (9) is provided with a trapezoidal groove running through from left to right in the middle.