Wall connecting piece erecting structure of frame column

Through the wall connecting parts of the frame column, and the structures such as fixtures, locking components and rubber strips, the problem of insecure connection between the wall connecting parts and the column in the prior art is solved, and higher connection strength and scaffolding stability are achieved.

CN223048425UActive Publication Date: 2025-07-01HUIYANG GRP CO LTD
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Patent Information

Application Number
CN202422280338.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-01
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

When the existing wall connecting piece erecting structure is connected to the column, the connection is not guaranteed, which may affect the stability of the scaffolding.

Method used

The wall connecting piece erected structure of the frame column is adopted, and the two wall connecting pieces are surrounded by two short rods. The fixing parts, locking components and rubber strips are used to ensure the stable connection between the wall connecting piece and the short rod, and the friction is enhanced by the locking components when the scaffold is inclined.

Benefits of technology

It improves the connection strength between the connecting wall parts and the column, enhances the stability of the scaffolding, reduces the risk of pouring or collapse, and is suitable for cylinders with different edge lengths.

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Abstract

The utility model relates to a wall connecting piece erecting structure of a frame column, and belongs to the field of wall connecting piece erecting structures, the wall connecting piece erecting structure comprises two wall connecting pieces and two short rods, the wall connecting pieces are cylindrical round rods, and the two wall connecting pieces and the two short rods are sequentially connected and are arranged on the periphery of a column body in a mutually perpendicular mode. Each end of the short rod is provided with a fixing piece, and the fixing pieces are located on the two sides, close to the column body in the length direction of the short rod, of the short rod respectively. The fixing piece is provided with a via hole in the axis direction of the wall connecting piece, and the wall connecting piece penetrates through the via hole to be connected with the short rod. The fixing piece is provided with a locking assembly, and the locking assembly is located on the side, close to the column body, of the fixing piece. The locking assembly comprises a driving rod and a driven rod, the driving rod abuts against the column body and can move in the direction close to or away from the column body in the fixing piece, and the driven rod can move in the direction close to the wall connecting piece under the action of the driving rod and abut against the wall connecting piece. The wall connecting piece has the effect of enhancing the connecting strength of the wall connecting piece and the column body.
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Description

Technical Field

[0001] The present application relates to the field of wall connection member erection structures, and in particular to a wall connection member erection structure for a frame column. Background Art

[0002] Building wall ties generally refer to components that strengthen the stability of other structures by connecting to reliable fixed ends. In construction projects, they are used to connect scaffolding frames to the main structure of the building and are capable of transmitting tension and pressure.

[0003] The wall connection achieved by wall ties plays an important role in strengthening the overall stability of the scaffolding, improving its stable bearing capacity and avoiding major accidents such as tipping or collapse. Conventional wall ties are usually divided into the tension and support combination method, the pre-buried steel pipe method, the post-anchoring method and the hoop column method. The hoop column method generally sets up column holding measures around the column, and then connects the horizontal short steel pipe or the column holding rod with the frame through fasteners for tensioning.

[0004] With regard to the above-mentioned related technologies, the frame and the steel pipe are connected by fasteners, which cannot ensure the firmness of the connection between the wall connecting parts and the columns, and may affect the stability of the scaffolding. Utility Model Content

[0005] In order to ensure the connection strength between the wall connecting member and the column, the present application provides a wall connecting member erection structure for a frame column.

[0006] The present application provides a frame column wall connection member erection structure adopts the following technical solution:

[0007] A wall connection piece erection structure for a frame column comprises two wall connections and two short rods, wherein the two wall connections and the two short rods are connected in sequence and are arranged perpendicularly to each other around the column; a fixing piece is arranged at each end of the short rod, and the fixing pieces are respectively located at the two sides of the short rod close to the column along the length direction of the short rod; the fixing piece is provided with a through hole along the length direction of the wall connection piece, and the wall connection piece is connected to the short rod inside the through hole; the fixing piece is provided with a locking assembly, and the locking assembly is located at a side of the fixing piece close to the column; the locking assembly comprises an active rod and a driven rod, the active rod abuts against the column and can move inside the fixing piece in a direction close to or away from the column, and the driven rod can move in a direction close to the wall connection piece and abut against the wall connection piece under the action of the active rod.

[0008] By adopting the above technical solution, two wall connecting members and two short rods jointly surround the column. The fixing member connects the two wall connecting members and the two short rods, ensuring the stability of the connection between the two wall connecting members and the two short rods. The active rod of the fixing member abuts against the column. When the scaffold tilts in the direction of approaching or moving away from the column, the column pushes the active rod to move away from the column. Under the action of the active rod, the driven rod moves towards the wall connecting member. By squeezing the wall connecting member, the driven rod increases the frictional force between the fixing member and the wall connecting member, further improving the stability of the erected structure of the wall connecting member.

[0009] Optionally, the end of the active rod close to the driven rod is a bevel surface, and the bevel surface inclines towards the column from the side away from the through hole to the side close to the through hole; the position where the driven rod abuts against the active rod is set as a smooth surface.

[0010] By adopting the above technical solution, when the active rod moves, the driven rod is driven to move through the bevel surface. The end surface where the driven rod contacts the active rod is a smooth surface, reducing the sliding friction when the active rod and the driven rod move relatively, making the movement of the driven rod smoother.

[0011] Optionally, one end of the driven rod close to the wall connecting member is set as a conical shape.

[0012] By adopting the above technical solution, when the scaffold tilts, the conical spike part of the driven rod contacts the surface of the wall connecting member, which can increase the biting force of the driven rod on the wall connecting member. The more severely the scaffold tilts, the greater the biting force of the driven rod on the wall connecting member, thus improving the stability of the connection between the fixing member and the wall connecting member.

[0013] Optionally, a return spring is arranged on the driven rod, and the return spring applies a force to the driven rod away from the wall connecting member.

[0014] By adopting the above technical solution, by arranging a return spring on the driven rod, when the tilting situation of the scaffold improves or the erected structure is separated from the column, the return spring can help the driven rod move away from the wall connecting member, reducing the complexity of the operation and the need for manual intervention.

[0015] Optionally, a chute along the length direction of the short rod is opened at the position of the short rod corresponding to the fixing member, and the fixing member can slide or be locked in the chute.

[0016] By adopting the above technical solution, the fixing member can slide along the length direction of the short rod, making the erected structure applicable to columns with different edge lengths, providing greater flexibility and applicability for the erected structure.

[0017] Optionally, a connecting plate for supporting the short rod is arranged at the bottom of the short rod, and the connecting plate is connected to the surface of the column.

[0018] By adopting the above technical solution, the connecting plate is located at the bottom of the short rod to support the short rod, thereby playing a supporting role for the entire erection structure, ensuring that the entire erection structure will not move downward, and enhancing the stability of the overall structure.

[0019] Optionally, a rubber strip is provided on the inner wall of the fixing member, and the rubber strip is located between the fixing member and the wall connecting member.

[0020] By adopting the above technical solution, using the rubber strip to tightly connect the driven rod and the wall connecting member can increase the friction between the wall connecting member and the short rod, reduce the possibility of the wall connecting member sliding in the fixing member, and ensure the firmness of the erection structure.

[0021] Optionally, corner guard plates are provided at the positions corresponding to the fixing members on the inner side where the short rod is connected to the wall connecting member, and the corner guard plates are located at the four corners of the column body.

[0022] By adopting the above technical solution, the corner guard plates are arranged at the four corners of the column body, playing a role in protecting the column body, preventing the column corners from being damaged during the installation or use of the structure, affecting the strength and appearance of the column body, and improving the practicability of the device.

[0023] In summary, the present application includes at least one of the following beneficial technical effects:

[0024] 1. The wall connecting member and the short rod are stably connected through the fixing member, and at the same time, when the scaffold tilts, the locking assembly can lock the fixing member and the wall connecting member, ensuring the stability of the erection structure;

[0025] 2. By using the rubber strip and the spiked part of the driven rod to squeeze the wall connecting member, the friction between the wall connecting member and the fixing member can be increased, further enhancing the connection strength between the wall connecting member and the fixing member, and ensuring the firmness of the erection structure;

[0026] 3. The fixing member can slide along the length direction of the short rod, making the erection structure applicable to column bodies with different edge lengths. Operators can adjust the position of the fixing member according to the actual situation to ensure the tightness and stability of the connection, providing greater flexibility and applicability. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a schematic structural diagram of a wall connecting member erection structure of a frame column according to an embodiment of the present application.

[0028] Figure 2 is a cross-sectional view of a wall connecting member erection structure of a frame column according to an embodiment of the present application, highlighting the locking assembly.

[0029] Figure 3 is a schematic structural diagram of a fixing member of a wall connecting member erection structure of a frame column according to an embodiment of the present application.

[0030] Explanation of the reference numerals in the accompanying drawings: 1. Column; 2. Wall connecting member; 3. Short rod; 31. Slide groove; 4. Fixing member; 41. Opening and closing part; 42. Fixing part; 43. Rubber strip; 5. Locking assembly; 51. Active rod; 52. Driven rod; 53. Reset spring; 6. Connecting plate; 7. Corner guard plate. DETAILED DESCRIPTION

[0031] The following is combined with Figures 1-3 This application is described in further detail.

[0032] In this application, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a communication; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0033] In the present application, unless otherwise clearly specified and limited, a first feature "above" or "below" a second feature may be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in an appropriate manner in any one or more embodiments or examples.

[0034] The present application embodiment discloses a wall connection structure for a frame column. Figure 1 and Figure 2, A structure for installing connecting members of a frame column includes two connecting members 2 and two short rods 3. The connecting member 2 is a cylindrical round rod, and the short rod 3 is a cylindrical square rod. The two connecting members 2 and the two short rods 3 are sequentially connected and perpendicular to each other. The two connecting members 2 and the two short rods 3 are all horizontally abutted against the periphery of the column 1. Each end of the short rod 3 is slidably connected with a fixing member 4. The fixing member 4 is provided with a through hole along the axial direction of the connecting member 2. The connecting member 2 passes through the through hole and abuts against the inner wall of the fixing member 4 to achieve a tight connection between the connecting member 2 and the short rod 3. The fixing members 4 at the ends where the two short rods 3 are close to each other are all connected to the connecting member 2 on the same side of the column 1, and the connecting member 2 and the connected fixing member 4 are coaxially arranged. The short rod 3 is provided with a chute 31 along the length direction of the short rod 3 at the position corresponding to the fixing member 4. The two fixing members 4 are fixedly connected with T-shaped sliders, and the sliders can slide in the chute 31. The fixing member 4 is threadedly connected with a bolt, and the fixing member 4 can be locked with the short rod 3 through the bolt. The fixing member 4 can slide along the length direction of the short rod 3, ensuring that the installation structure can be applied to columns 1 with different edge lengths. The fixing member 4 is provided with a locking assembly 5, and the locking assembly 5 is located on the side of the fixing member 4 close to the column 1. The locking assembly 5 includes a driving rod 51 and a driven rod 52. The driving rod 51 abuts against the column 1 and can move in the fixing member 4 in the direction of approaching or departing from the column 1. The driven rod 52 can move in the direction of approaching the connecting member 2 under the action of the driving rod 51 and abut against the connecting member 2.

[0035] The two connecting members 2 and the two short rods 3 jointly surround the periphery of the column 1. The fixing member 4 connects the two connecting members 2 and the two short rods 3. The driving rod 51 of the fixing member 4 abuts against the column 1. When the scaffold tilts in the direction of approaching or departing from the column 1, the connecting member 2 drives the fixing member 4 to squeeze the column 1. The column 1 pushes the driving rod 51 to move in the direction away from the column 1. The driven rod 52 moves in the direction of approaching the connecting member 2 under the action of the driving rod 51. The driven rod 52 increases the friction force between the fixing member 4 and the connecting member 2 by squeezing the connecting member 2, improving the stability of the installation structure of the connecting member 2.

[0036] Refer to Figure 2, the length direction of the active rod 51 is arranged parallel to the axis direction of the through hole, and the mutually approaching ends of two active rods 51 close to the same connecting member 2 are both abutted against the column 1. The driven rod 52 is arranged along the radial direction of the through hole, and one end of the driven rod 52 is abutted against the end of the active rod 51 far from the column 1. One end of the active rod 51 close to the driven rod 52 is an inclined surface, and the inclined surface inclines from the side far from the through hole to the side close to the through hole towards the column 1. When the active rod 51 moves, the active rod 51 drives the driven rod 52 to move through the inclined surface. The end of the driven rod 52 abutted against the active rod 51 is a smooth surface, and the smooth surface can be one of an arc shape, a hemispherical shape or a plane with the same inclination direction as the inclined surface of the active rod 51. The smooth surface of the driven rod 52 reduces the sliding friction force between the active rod 51 and the driven rod 52, making the movement of the driven rod 52 smoother. One end of the driven rod 52 close to the connecting member 2 is opened into a conical shape. When the driven rod 52 moves towards the connecting member 2, the end surface of the conical shape of the driven rod 52 abuts against and presses the connecting member, increasing the biting force of the driven rod 52 on the connecting member 2. A first chute along the length direction of the active rod 51 is opened at the position of the fixing member 4 corresponding to the active rod 51, and the first chute extends to the end of the fixing member 4 close to the column 1. A second chute along the length direction of the driven rod 52 is opened at the position of the fixing member 4 corresponding to the driven rod 52, and the second chute communicates with the through hole. The active rod 51 can move in the first chute in the direction close to or far from the column 1, and the driven rod 52 can move in the second chute towards the direction close to the connecting member 2 under the action of the active rod 51 and abut against the connecting member 2. A return spring 53 is coaxially arranged on the driven rod 52. One end of the return spring 53 close to the active rod 51 is fixedly connected to the driven rod 52, and the other end is fixedly connected to the side wall of the second chute. The return spring 53 gives a force to the driven rod 52 away from the connecting member 2. When the scaffolding is reset, the return spring 53 can drive the driven rod 52 to separate from the connecting member 2, thereby helping the driven rod 52 to realize an automatic reset operation.

[0037] Refer to Figure 1 and Figure 3, the fixing member 4 is divided into an opening and closing portion 41 and a fixing portion 42. The opening and closing portion 41 and the fixing portion 42 are evenly divided along the radial direction of the through hole. The opening and closing portion 41 and the fixing portion 42 are hinged on the same side. The opening and closing portion 41 can rotate around the hinge point. The side of the opening and closing portion 41 and the fixing portion 42 away from the hinge point is locked by bolts. The T-shaped slider is fixedly connected to the fixing portion 42. The semi-open structure of the fixing member 4 ensures that the short rod 3 and the fixing member 4 can be installed from the bottom of the connecting wall member 2, making the installation of the fixing member 4 more convenient and faster, and more conducive to the operation of workers. A rubber strip 43 is provided on the inner wall of the fixing member 4. The rubber strip 43 is located between the fixing member 4 and the connecting wall member 2. The rubber strip 43 is provided with a relief hole corresponding to the position of the driven rod 52. The rubber strip 43 can increase the friction force between the connecting wall member 2 and the fixing member 4, making the connection between the short rod 3 and the connecting wall member 2 more stable. An L-shaped connecting plate 6 for supporting the short rod 3 is provided at the bottom of the short rod 3. The vertical portion of the connecting plate 6 is bolted to the surface of the column body 1, and the horizontal portion abuts against the bottom of the short rod 3. The connecting plate 6 acts on the short rod 3 to ensure that the erected structure will not slide down along the column body 1. A corner guard plate 7 is fixedly connected to the inner side of the connection between the short rod 3 and the connecting wall member 2 corresponding to the position of the fixing member 4. The corner guard plate 7 is located at the four corners of the column body 1 and serves to protect the column body 1.

[0038] The implementation principle of the connecting wall member erection structure of a frame column in an embodiment of the present application is as follows: Install the corner guard plates 7 around the column body 1, and adjust the distance between adjacent fixing members 4 according to the edge length of the column body 1. Place the connecting wall member 2 on both sides of the column body 1 and abut it against the corner guard plates 7, and install the short rod 3 and the fixing member 4 from below the connecting wall member 2. Place the connecting wall member 2 in the through hole from the position of the opening and closing portion 41, and lock the opening and closing portion 41 and the fixing portion 42 to realize the tight connection between the connecting wall member 2 and the short rod 3 and surround the column body 1. At the same time, install a connecting frame at the bottom of the short rod 3, and the connecting frame connects the column body 1 and the short rod 3 to ensure that the short rod 3 will not move down. In the normal situation of this erection structure, the end of the active rod 51 abuts against the corner guard plate 7. When the scaffold tilts in the direction of approaching or departing from the column body 1, the connecting wall member 2 drives the fixing member 4 to squeeze the column body 1, and the column body 1 pushes the active rod 51 to move away from the column body 1. Under the action of the active rod 51, the driven rod 52 moves towards the connecting wall member 2, and the driven rod 52 squeezes the connecting wall member 2, increasing the biting force between the driven rod 52 and the connecting wall member 2, increasing the friction force between the fixing member 4 and the connecting wall member 2, and improving the stability of the connecting wall member 2 erection structure.

[0039] The embodiment of the present application has the effect of enhancing the connection strength between the connecting wall member 2 and the column body 1.

[0040] The above are all the preferred embodiments of the present application. The protection scope of the present application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A wall connection structure for a frame column, characterized in that: The invention comprises two wall connecting members (2) and two short rods (3), wherein the two wall connecting members (2) and the two short rods (3) are connected in sequence and are arranged perpendicularly to each other around the column (1); each end of the short rod (3) is provided with a fixing member (4), and the fixing members (4) are respectively located at two sides of the short rod (3) close to the column (1) along the length direction of the short rod (3); the fixing member (4) is provided with a through hole along the length direction of the wall connecting member (2), and the wall connecting member (2) is connected to the short rod (3) inside the through hole; The fixing member (4) is provided with a locking assembly (5), and the locking assembly (5) is located at a position on one side of the fixing member (4) close to the column (1); the locking assembly (5) comprises an active rod (51) and a driven rod (52), the active rod (51) abuts against the column (1) and can move in a direction close to or away from the column (1) inside the fixing member (4), and the driven rod (52) can move in a direction close to the wall connecting member (2) and abut against the wall connecting member (2) under the action of the active rod (51).

2. The wall connection member erection structure of a frame column according to claim 1, characterized in that: The end of the active rod (51) close to the driven rod (52) is an inclined surface, and the inclined surface is inclined toward the column (1) from the side away from the through hole to the side close to the through hole; the abutment position of the driven rod (52) and the active rod (51) is set as a smooth surface.

3. The wall connection member erection structure of a frame column according to claim 1, characterized in that: The driven rod (52) is configured in a conical shape at one end close to the wall connecting member (2).

4. The wall connection member erection structure of a frame column according to claim 1, characterized in that: The driven rod (52) is provided with a return spring (53), and the return spring (53) applies a force to the driven rod (52) to move away from the wall connecting member (2).

5. The wall connection member erection structure of a frame column according to claim 1, characterized in that: The short rod (3) is provided with a sliding groove (31) along the length direction of the short rod (3) at a position corresponding to the fixing member (4), and the fixing member (4) can slide or lock in the sliding groove (31).

6. The wall connection member erection structure of a frame column according to claim 1, characterized in that: A connecting plate (6) for supporting the short rod (3) is provided at the bottom of the short rod (3), and the connecting plate (6) is connected to the surface of the column (1).

7. The wall connection member erection structure of a frame column according to claim 1, characterized in that: The inner wall of the fixing member (4) is provided with a rubber strip (43), and the rubber strip (43) is located between the fixing member (4) and the wall connecting member (2).

8. The wall connection member erection structure of a frame column according to claim 1, characterized in that: A corner guard plate (7) is provided at the position of the fixing member (4) corresponding to the inner side where the short rod (3) is connected to the wall connecting member (2), and the corner guard plate (7) is located at the four corners of the column (1).