Fabricated beam manufacturing pedestal

By designing prefabricated beam pedestals, using spliced ​​base columns and support members to combine the outer and side forms of the beam box, the existing concrete beam pedestals are solved, and the effect of stable support and easy disassembly is achieved.

CN222958897UActive Publication Date: 2025-06-10CHINA TIESIJU CIVIL ENGINEERING GROUP CO LTD +1
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Patent Information

Application Number
CN202422033386.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-06-10
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The existing beam-making pedestal is a concrete structure, with complex forming processes and cannot be reused, and subsequent demolition is difficult.

Method used

A prefabricated beam-making pedestal is designed, including spliced ​​base columns, lower mold support and upper mold support, beam box outer mold, lower beam box side mold and upper beam box side mold. These components are used to form a complete beam-making pedestal to achieve stable support and facilitate disassembly and reuse.

Benefits of technology

It realizes stable support for the beam-making pedestal, and has the advantages of reuse and easy disassembly, avoiding the problem of subsequent demolition difficulties.

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Abstract

The utility model relates to the technical field of beam manufacturing equipment, in particular to an assembly type beam manufacturing pedestal which comprises a splicing type base stand column, two sets of lower side die supporting pieces and two sets of upper side die supporting pieces. The upper side mold supporting piece is connected to the end of the lower side mold supporting piece through a bolt, the splicing type base stand column is matched with the lower side mold supporting piece and the upper side mold supporting piece to form a section of supporting base, the multiple supporting bases are arranged side by side to form a supporting set, and the lower side mold supporting piece and the upper side mold supporting piece are connected through a bolt. A beam box outer mold is laid on the surface of the lower side mold supporting piece, the lower beam box side mold and the upper beam box side mold are supported by the lower side mold supporting piece and the upper side mold supporting piece respectively, the beam box outer mold, the lower beam box side mold and the upper beam box side mold form a complete beam making pedestal, and the complete beam pedestal can provide stable supporting. And meanwhile, the device can be assembled again for repeated use after being disassembled, and the problem that subsequent forcible entry is difficult does not exist.
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Description

Technical Field

[0001] The utility model relates to the technical field of beam manufacturing equipment, in particular to an assembled beam manufacturing pedestal. Background Technique

[0002] The beam manufacturing pedestal is a component that provides support for the prefabrication of beam boxes in the beam manufacturing yard. Under the support of the beam manufacturing pedestal, the outer mold of the beam box can maintain a stable setting state;

[0003] Common beam manufacturing pedestals are usually of concrete structure. According to the shape of the outer mold of the beam box, a concrete pedestal that fits the outer mold of the beam box is made. The advantages of the concrete pedestal are high structural strength and good stability, which can provide sufficient support for the outer membrane of the beam box. The disadvantages are complex forming processes, inability to be reused, and difficulty in subsequent demolition. For this reason, an assembled beam manufacturing pedestal is proposed. Content of the Utility Model

[0004] In order to solve the technical problems existing in the above-mentioned prior art, the utility model provides an assembled beam manufacturing pedestal.

[0005] In order to solve the above technical problems, the utility model provides the following technical solution: an assembled beam manufacturing pedestal, including a spliced base column, two groups of lower side mold supports and two groups of upper side mold supports. The lower side mold supports are installed on the side of the spliced base column, and the upper side mold supports are connected to the ends of the lower side mold supports by bolts. The spliced base column, the lower side mold supports and the upper side mold supports cooperate to form a section of support seat. A plurality of support seats are provided, and the plurality of support seats are arranged side by side to form a support group. The surface of the lower side mold support is paved with an outer mold of the beam box. A group of lower beam box side molds are fixed at both ends of the outer mold of the beam box, and an upper beam box side mold is fixed at the end of the lower beam box side mold;

[0006] The outer mold of the beam box is supported by the spliced base column, and the lower beam box side mold and the upper beam box side mold are respectively supported by the lower side mold support and the upper side mold support. The outer mold of the beam box, the lower beam box side mold and the upper beam box side mold form a complete beam manufacturing pedestal.

[0007] Preferably, the total length of the spliced base column is the same as the total length after splicing a plurality of groups of outer molds of the beam box, and a plurality of groups of the outer molds of the beam box are fixedly connected to the spliced base column by bolts.

[0008] Preferably, the lower side mold support includes a lower side mold back frame, a lower adjustable column and a lateral tie rod. The lower adjustable column is arranged on the side of the spliced base column. The lower side mold back frame is arranged between the bottom end of the lower adjustable column and the ground. The lower side mold back frame supports the lower adjustable column. The lateral tie rod is installed on one side of the end of the lower adjustable column, and one end of the lateral tie rod is connected to the outer mold of the beam box laid on the spliced base column.

[0009] Preferably, the upper die support member includes an upper die backrest and an upper adjustable column. The upper adjustable column is arranged on the side of the lower adjustable column. The upper adjustable column is rotatably connected to the upper end of the lower adjustable column. The upper die backrest is arranged between the upper adjustable column and the ground, and the upper die backrest supports the upper adjustable column.

[0010] Preferably, a reinforcing side support rod is connected between a group of the upper die backrests and a group of the lower adjustable columns, and the arrangement directions between adjacent two groups of side support rods are opposite.

[0011] Preferably, a ventilation hole mandrel fixing assembly is arranged in the middle of the beam box outer mold, and the ventilation hole mandrel fixing assembly is arranged horizontally.

[0012] Preferably, edge baffles are installed at the ends of two groups of the upper beam box side molds, and tracks for a planisher to travel are installed at the ends of the two groups of edge baffles.

[0013] Preferably, a maintenance ladder assembly is installed on one side of the upper die support member, a side ladder assembly is installed on the outer side of the maintenance ladder assembly, and the side ladder assembly is connected to the upper beam box side mold.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0015] 1. The present invention is provided with a spliced base column, a lower die support member, an upper die support member, a beam box outer mold, a lower beam box side mold and a beam box side mold. The beam box outer mold is supported by the spliced base column, and the lower beam box side mold and the upper beam box side mold are respectively supported by the lower die support member and the upper die support member. The beam box outer mold, the lower beam box side mold and the upper beam box side mold form a complete beam manufacturing pedestal. The complete beam pedestal can provide stable support, and can be disassembled and reassembled again for repeated use, and there is no problem of difficult subsequent demolition;

[0016] 2. A maintenance ladder assembly is arranged in the present invention, and it can enter between the lower die support member and the upper die support member through the maintenance ladder assembly, so as to facilitate regular inspection of the installation states of the lower die support member and the upper die support member and check and maintain the connection states of the lower die support member, the upper die support member and the side support rods;

[0017] 3. A side ladder assembly is arranged in the present invention, and the staff can directly go up to the upper part of the upper beam box side mold through the side ladder assembly, which is convenient for the staff to observe the forming situation of the concrete. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a front view structural schematic diagram of the present invention;

[0019] Figure 2This is a partial side view structural schematic diagram of the present utility model.

[0020] The numbers in the figure indicate:

[0021] 1. Split-type base column; 2. Lower side formwork support member; 21. Lower side formwork back frame; 22. Lower adjustable column; 23. Lateral pull rod; 3. Upper side formwork support member; 31. Upper side formwork back frame; 32. Upper adjustable column; 4. Beam box outer formwork; 41. Ventilation hole core rod fixing assembly; 5. Lower beam box side formwork; 6. Upper beam box side formwork; 7. Side support rod; 8. Edge baffle; 9. Maintenance ladder assembly; 10. Side ladder assembly. Specific embodiments

[0022] The following further elaborates the present utility model in combination with the accompanying drawings and embodiments for the above and other technical features and advantages of the present utility model. However, the following embodiments are only the preferred embodiments of the present utility model and not all of them.

[0023] Embodiment:

[0024] As Figure 1 - Figure 2 shown, the present utility model provides a prefabricated beam-making pedestal, including a split-type base column 1, two groups of lower side formwork support members 2 and two groups of upper side formwork support members 3. The lower side formwork support member 2 is installed at the side of the split-type base column 1, and the upper side formwork support member 3 is bolted to the end of the lower side formwork support member 2. The split-type base column 1 cooperates with the lower side formwork support member 2 and the upper side formwork support member 3 to form a support seat for one section. A plurality of support seats are provided, and the plurality of support seats are arranged side by side to form a support group. The surface of the lower side formwork support member 2 is laid with a beam box outer formwork 4. A group of lower beam box side formworks 5 are fixed at both ends of the beam box outer formwork 4, and an upper beam box side formwork 6 is fixed at the end of the lower beam box side formwork 5;

[0025] The beam box outer formwork 4 is supported by the split-type base column 1, and the lower beam box side formwork 5 and the upper beam box side formwork 6 are respectively supported by the lower side formwork support member 2 and the upper side formwork support member 3. The beam box outer formwork 4, the lower beam box side formwork 5 and the upper beam box side formwork 6 constitute a complete beam-making pedestal.

[0026] The total length of the split-type base column 1 is the same as the total length after splicing of several groups of beam box outer formworks 4. Several groups of beam box outer formworks 4 are all fixedly connected to the split-type base column 1 by bolts. Under the support of the split-type base column 1, the beam box outer formworks 4 can be laid and spliced to form the bottom part of the beam box outer formwork. At the same time, the beam box outer formwork 4 also serves as the side fixing foundation when the lower side formwork support member 2 is arranged.

[0027] The lower side formwork support member 2 includes a lower side formwork back frame 21, a lower adjustable column 22 and a lateral pull rod 23, and the upper side formwork support member 3 includes an upper side formwork back frame 31 and an upper adjustable column 32;

[0028] The lower adjustable column 22 is arranged on the side of the spliced base column 1. The lower side formwork backrest 21 is arranged between the bottom end of the lower adjustable column 22 and the ground. The lower side formwork backrest 21 supports the lower adjustable column 22. The lateral tie rod 23 is installed on one side of the end of the lower adjustable column 22. One end of the lateral tie rod 23 is connected to the beam box outer formwork 4 laid on the spliced base column 1. Under the fixing action of the lateral tie rod 23, the lower adjustable column 22 maintains a stable connection state with the beam box outer formwork 4. At the same time, the beam box outer formwork 4 reversely restricts the installation position of the lower adjustable column 22 through the lateral tie rod 23.

[0029] The upper adjustable column 32 is arranged on the side of the lower adjustable column 22. The upper adjustable column 32 is rotatably connected to the upper end of the lower adjustable column 22. The lower adjustable column 22 and the upper adjustable column 32 cooperate to support the lower beam box side formwork 5 and the upper beam box side formwork 6.

[0030] The lower side formwork backrest 21 is arranged between the bottom end of the lower adjustable column 22 and the ground. The lower side formwork backrest 21 supports the lower adjustable column 22. The upper side formwork backrest 31 is arranged between the upper adjustable column 32 and the ground. The upper side formwork backrest 31 supports the upper adjustable column 32. Under the common support of the upper side formwork backrest 31 and the lower side formwork backrest 21, the upper adjustable column 32 and the lower adjustable column 22 maintain an open connection state.

[0031] A reinforcing side support rod 7 is connected between a group of upper side formwork backrests 31 and a group of lower adjustable columns 22. The setting directions between adjacent two groups of side support rods 7 are opposite. The alternately arranged side support rods 7 can mutually limit the upper side formwork backrest 31 and the lower adjustable column 22 to realize the limitation of the relative position, thereby improving the stability and structural strength between the overall structures.

[0032] A ventilation hole core rod fixing assembly 41 is arranged in the middle of the beam box outer formwork 4. The ventilation hole core rod fixing assembly 41 is horizontally arranged. The ventilation hole core rod is restricted by the ventilation hole core rod fixing assembly 41. During the solidification process of the concrete, the ventilation hole core rod fixing assembly 41 always remains at the set position, avoiding deflection of the ventilation hole core rod fixing assembly 41 affected by the vibration and compaction of the concrete.

[0033] Edge baffles 8 are installed at the ends of the two groups of upper beam box side formworks 6. The edge baffles 8 are used to restrict the upper concrete. Tracks for the paver to travel are installed at the ends of the two groups of edge baffles 8. After the concrete is poured, the paver is placed between the tracks. The paver moves forward along the tracks, and the forward-moving paver levels the poured concrete.

[0034] On one side of the upper die support member 3, a maintenance ladder assembly 9 is installed. Through the maintenance ladder assembly 9, the staff can enter between the lower die support member 2 and the upper die support member 3, so as to regularly inspect the installation status of the lower die support member 2 and the upper die support member 3 and maintain the connection status of the lower die support member 2, the upper die support member 3 and the side support rod 7, so as to ensure the support stability of the lower die support member 2 and the upper die support member 3 for the lower beam box side die 5 and the upper beam box side die 6;

[0035] On the outside of the maintenance ladder assembly 9, a side ladder assembly 10 is installed. The side ladder assembly 10 is connected to the upper beam box side die 6. The staff can directly go up above the upper beam box side die 6 through the side ladder assembly 10, which is convenient for the staff to observe the concrete forming situation.

[0036] The above are only the preferred embodiments of the present invention, which are illustrative rather than restrictive to the present invention. Those skilled in the art understand that many changes, modifications and even equivalents can be made within the spirit and scope defined by the claims of the present invention, but all of them will fall within the protection scope of the present invention.

Claims

1. An assembled beam-making pedestal, characterized in that: It comprises a spliced ​​base column (1), two groups of lower side mold support members (2) and two groups of upper side mold support members (3), wherein the lower side mold support member (2) is installed at the side of the spliced ​​base column (1), and the upper side mold support member (3) is connected to the end of the lower side mold support member (2) by bolts, and the spliced ​​base column (1) cooperates with the lower side mold support member (2) and the upper side mold support member (3) to form a section of a support seat, wherein a plurality of support seats are provided, and the plurality of support seats are arranged in parallel to form a support group, and a beam box outer mold (4) is laid on the surface of the lower side mold support member (2), and a group of lower beam box side molds (5) are fixed at both ends of the beam box outer mold (4), and an upper beam box side mold (6) is fixed at the end of the lower beam box side mold (5); The beam box outer mold (4) is supported by a spliced ​​base column (1), and the lower beam box side mold (5) and the upper beam box side mold (6) are supported by a lower side mold support member (2) and an upper side mold support member (3) respectively. The beam box outer mold (4), the lower beam box side mold (5) and the upper beam box side mold (6) constitute a complete beam manufacturing pedestal.

2. The assembled beam-making pedestal according to claim 1, characterized in that: The total length of the spliced ​​base column (1) is consistent with the total length of several groups of beam box outer molds (4) after splicing, and the several groups of beam box outer molds (4) are fixedly connected to the spliced ​​base column (1) by bolts.

3. The assembled beam-making pedestal according to claim 2, characterized in that: The lower side mold support member (2) includes a lower side mold back frame (21), a lower adjustable column (22) and a lateral pull rod (23), wherein the lower adjustable column (22) is arranged on the side of the spliced ​​base column (1), and the lower side mold back frame (21) is arranged between the bottom end of the lower adjustable column (22) and the ground, and the lower side mold back frame (21) supports the lower adjustable column (22), and the lateral pull rod (23) is installed on one side of the end of the lower adjustable column (22), and one end of the lateral pull rod (23) is connected to the beam box outer mold (4) laid on the spliced ​​base column (1).

4. The assembled beam-making pedestal according to claim 2, characterized in that: The upper mold support member (3) comprises an upper mold back frame (31) and an upper adjustable column (32), wherein the upper adjustable column (32) is arranged on the side of the lower adjustable column (22), and the upper adjustable column (32) is rotatably connected to the upper end of the lower adjustable column (22), and the upper mold back frame (31) is arranged between the upper adjustable column (32) and the ground, and the upper mold back frame (31) supports the upper adjustable column (32).

5. The assembled beam-making pedestal according to claim 4, characterized in that: A reinforcement side support rod (7) is connected between a group of the upper mold back frames (31) and a group of lower adjustable columns (22), and the side support rods (7) of two adjacent groups are arranged in opposite directions.

6. The assembled beam-making pedestal according to claim 5, characterized in that: A ventilation hole core rod fixing assembly (41) is arranged in the middle of the beam box outer mold (4), and the ventilation hole core rod fixing assembly (41) is arranged horizontally.

7. The assembled beam-making pedestal according to claim 5, characterized in that: The ends of the two groups of upper beam box side molds (6) are both installed with edge baffles (8), and the ends of the two groups of edge baffles (8) are both installed with tracks for the leveling machine to travel.

8. The assembled beam-making pedestal according to claim 7, characterized in that: A maintenance ladder assembly (9) is installed on one side of the upper side mold support (3), and a side ladder assembly (10) is installed on the outer side of the maintenance ladder assembly (9), and the side ladder assembly (10) is connected to the upper beam box side mold (6).