Integrated embedded anchoring device for gate groove

By using an integrated pre-embedded anchoring device for the gate slot, the problems of displacement and deformation of the pre-embedded parts are solved through the cooperation of the installation anchor rod, the connection anchor rod and the fixing mechanism. This achieves high-precision and stable installation of the gate slot, simplifies the construction process and reduces costs.

CN121024013APending Publication Date: 2025-11-28KUNMING UNIV OF SCI & TECH
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Patent Information

Application Number
CN202511524174.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2025-11-28

AI Technical Summary

Technical Problem

In traditional gate slot installation methods, embedded parts are prone to displacement and deformation, leading to installation difficulties, increased construction period and cost, and traditional anchoring devices are split-type, making installation complicated.

Method used

An integrated pre-embedded anchoring device for the gate slot is adopted, including the installation of anchor rods, the connection of anchor rods and the fixing mechanism. Through the cooperation of wedge blocks and transmission components, the position of the installed anchor rods is ensured to be stable during the concrete pouring process, forming an integral structure, distributing the load and preventing loosening.

Benefits of technology

It improves the accuracy and stability of gate slot installation, simplifies the installation process, shortens construction time, and reduces costs.

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Abstract

The invention relates to a gate groove integrated pre-embedded anchoring device, and belongs to the technical field of water conservancy projects. The anchoring unit comprises mounting anchor rods which are inserted into the side, close to the gate groove, of the gate pouring mold at intervals and are used for mounting the gate groove; the connecting anchor rods are inserted into the sides, located in the mold, of the multiple mounting anchor rods and used for fixing the multiple mounting anchor rods; the moving rod is movably arranged in the mounting anchor rod; in the concrete pouring process, the mold can be subjected to external force such as vibration, the connecting anchor rods are connected to the sides, located in the mold, of the multiple mounting anchor rods in an inserted mode, and the scattered mounting anchor rods are connected into a whole; the integral structure can effectively disperse the load generated in the opening and closing process of the gate, and the deformation resistance of the anchoring unit is enhanced.
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Description

Technical Field

[0001] This invention relates to an integrated pre-embedded anchoring device for gate slots, belonging to the field of water conservancy engineering technology. Background Technology

[0002] In water conservancy projects, gates are key facilities for controlling water flow, and the gate slot, as the basic structure for gate installation and operation, is of paramount importance in terms of installation accuracy and stability. Traditional gate slot installation methods typically combine pre-embedded components with post-installation. That is, some foundation components are first pre-embedded in the concrete structure, and after the concrete is poured and reaches a certain strength, the gate slot is then installed onto the pre-embedded components through welding, bolting, or other methods.

[0003] Existing equipment has the following drawbacks: Firstly, during concrete pouring, the embedded parts are prone to displacement and deformation due to factors such as vibration, making it difficult to install the gate slot later and affecting the normal operation of the gate. Secondly, traditional anchoring devices are split-type, requiring multiple installations, which increases the construction period and cost.

[0004] Therefore, the present invention proposes an integrated pre-embedded anchoring device for gate slots to solve the above-mentioned problems. Summary of the Invention

[0005] The technical problem to be solved by the present invention is: the present invention provides an integrated pre-embedded anchoring device for gate slots to solve the problem that the above-mentioned pre-embedded parts are prone to displacement and deformation, which leads to difficulties in the later installation of gate slots, affects the normal operation of the gate, and increases the construction period and cost; the present invention improves the structural stability of the entire pre-embedded anchoring device.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an integrated pre-embedded anchoring device for gate slots, comprising an anchoring unit disposed inside the gate casting mold for installing the gate slots: The anchoring unit includes: Install anchor bolts, which are intermittently inserted into the gate casting mold on the side near the gate slot for installing the gate slot; Connecting anchor rods are inserted into one side of the multiple installation anchor rods located inside the mold, for fixing the multiple installation anchor rods; The movable rod is movably disposed inside the mounting anchor rod; A fixing mechanism is adjustablely disposed inside the mounting anchor rod, used to fix the mounting anchor rod inside the mold under the push of the moving rod.

[0007] The upper end of the installation anchor rod is fixed with a positioning plate for limiting the depth of the installation anchor rod inserted into the mold.

[0008] The installation anchor rod has a slot for inserting the connecting anchor rod.

[0009] The movable rod has a wedge-shaped block on one side inside the slot, and the wedge-shaped block is inclined upward towards the side closer to the fixing mechanism. The inside of the anchor rod is provided with a movable groove for the movable rod to move.

[0010] The fixing mechanism includes: The movable component is adjustablely disposed in the mounting groove inside the mounting anchor rod and located at the power output end of the movable rod; A fastener is provided on the inner wall of the mounting groove to support the component; A transmission component, mounted on the fixed component and connected to the movable component, is used to rotate along the center of the mounting groove under the push of the movable component; A positioning block is disposed on the side of the transmission component away from the moving component and inserted into the inside of the mold, for fixing the mounting anchor rod to the mold.

[0011] The moving component includes: A movable disk is adjustablely positioned inside the mounting slot; The connecting seat is set at an equal angle on the outside of the movable disk.

[0012] The fastener includes: The mounting base is fixed inside the mounting slot; A mounting shaft is disposed on the mounting base to support the transmission component.

[0013] The transmission component includes: A push rod is mounted on the connecting seat; A swing arm is provided at the power output end of the push rod and sleeved on the mounting shaft; An adjusting rod is located on the side of the swing rod away from the push rod and is connected to the positioning block.

[0014] The installation anchor rod is provided with a through hole for the positioning block to move.

[0015] The mold has a positioning groove at the position corresponding to the positioning block for fixing the positioning block.

[0016] The beneficial effects of this invention are: 1. This invention sets up a device that inserts the installation anchor rods at intervals into the gate casting mold near the gate slot, providing a precise reference position for the installation of the gate slot. Through reasonable spacing, it ensures that the positions of each part of the gate slot are accurate during installation, meeting design requirements and improving the overall performance of the gate system. The fixing mechanism is adjustable and located inside the installation anchor rods, and is fixed inside the mold by the push of the moving rod. During concrete pouring, the mold is subjected to external forces such as vibration; the fixing mechanism ensures that the position of the installation anchor rods inside the mold remains stable, further improving the installation accuracy of the gate slot. The connecting anchor rod is inserted into one side of the multiple installation anchor rods located inside the mold, connecting the dispersed installation anchor rods into a whole. This integrated structure effectively disperses the load generated during the opening and closing of the gate, enhances the deformation resistance of the anchoring unit, prevents the installation anchor rods from loosening or being damaged due to excessive local stress, and improves the structural stability of the entire pre-embedded anchoring device.

[0017] 2. The movable component of this invention is located in the mounting groove inside the anchor rod and at the power output end of the movable rod. It can receive the power output by the movable rod. When the connecting anchor rod is inserted into the slot inside the anchor rod, it squeezes the wedge block, causing the movable rod to push the movable component to move inside the mounting groove. This drives the transmission component to rotate, and the transmission component drives the positioning block to flip along the fixing component, thus locking it from deep inside the anchor rod and fixing it inside the mold. This completes the fixing of the anchor rod and the mold. The fixing component provides a stable support foundation for the transmission component, and the transmission component can move on the fixing component. Driven by the moving part, it rotates along the center of the installation groove, converting the linear motion of the moving part into rotational motion. Finally, it is inserted into the mold through the positioning block, realizing a stable fixation between the installation anchor and the mold. This effectively prevents the installation anchor from shifting or shaking during concrete pouring and subsequent use, ensuring the accuracy of the gate slot installation position. By setting this fixing mechanism, when fixing multiple installation anchors, the installation anchor can be automatically fixed to the mold. The entire installation process is simple and quick, requiring no complicated tools or professional skills, shortening the installation time and improving construction efficiency. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the main structure in one embodiment of the present invention; Figure 2 This is a top view of the structure in one embodiment of the present invention; Figure 3 This is a cross-sectional structural schematic diagram of one embodiment of the present invention; Figure 4 This is a schematic diagram of the internal structure of the mold in one embodiment of the present invention; Figure 5 This is a schematic diagram of the structure of the molded concrete and the installed anchor rod in one embodiment of the present invention; Figure 6 This is a schematic diagram of the gate slot after installation in one embodiment of the present invention; Figure 7 This is a schematic diagram of the connection between the anchoring unit and the mold in one embodiment of the present invention; Figure 8 This is a schematic diagram of the connection between the positioning plate and the mounting anchor in one embodiment of the present invention; Figure 9 This is a schematic diagram of the fixing mechanism in one embodiment of the present invention; Figure 10 This is a schematic diagram of the moving rod and fixing mechanism in one embodiment of the present invention; Figure 11 This is a schematic diagram of the fixing mechanism and the mold fixing in one embodiment of the present invention; Figure 12 This is a cross-sectional structural diagram of the fixing mechanism and the mold fixing in one embodiment of the present invention; Figure 13 This is a schematic diagram of the structure of the movable rod inside the installation anchor rod in one embodiment of the present invention; Figure 14 for Figure 7 Enlarged structural diagram of section A in the middle; Figure 15 This is a schematic diagram of the connection between the adjustment mechanism and the mold in one embodiment of the present invention; Figure 16 This is a cross-sectional schematic diagram of the adjustment mechanism in one embodiment of the present invention; Figure 17 This is a schematic diagram of the structure of the adjustment mechanism moving inside the mounting slot in one embodiment of the present invention; Figure 18 This is a schematic diagram of the adjustment mechanism in one embodiment of the present invention; Figure 19 This is a schematic diagram of the structure for installing the elastic element in one embodiment of the present invention.

[0019] The labels in the diagram are as follows: 1-Mold, 101-Positioning groove, 102-Fixing groove, 2-Gate groove, 3-Anchoring unit, 31-Anchor bolt installation, 3101-Moving groove, 3102-Installation groove, 3103-Through hole, 3104-Slot, 3105-Adjusting groove, 3106-Limiting groove, 32-Connecting anchor bolt, 33-Moving rod, 331-Wedge block, 34-Fixing mechanism, 341-Moving disk, 3411-Connecting seat, 342-Push rod. 343-Swing rod, 344-Mounting base, 345-Adjusting rod, 346-Positioning block, 35-Positioning disc, 351-Positioning rod, 36-Adjusting mechanism, 361-Support ring, 362-Adjusting component, 3621-Support plate, 3622-Vertical plate, 3623-Screw, 3624-Rotating block, 363-Connector, 3631-Mounting plate, 3632-Fixing rod, 3633-Limiting block, 364-Elastic component, 4-Molded concrete. Detailed Implementation

[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example 1

[0021] Please see Figures 1-19 This invention provides a technical solution: an integrated pre-embedded anchoring device for gate slots, comprising an anchoring unit 3 disposed inside a gate casting mold 1 for installing gate slots 2. The anchoring unit 3 includes: installation anchor rods 31, which are interlocked at intervals on the side of the gate casting mold 1 near the gate slots 2 for installing the gate slots 2; connecting anchor rods 32, which are interlocked on the side of the plurality of installation anchor rods 31 located inside the mold 1 for fixing the plurality of installation anchor rods 31; a movable rod 33, which is movably disposed inside the installation anchor rods 31; and a fixing mechanism 34, which is adjustablely disposed inside the installation anchor rods 31 for fixing the installation anchor rods 31 inside the mold 1 under the push of the movable rod 33.

[0022] It should be noted that during operation, mold 1 is installed at the designated gate installation position. Then, the installation anchor rods 31 are inserted one by one into mold 1. Next, connecting anchor rods 32 are inserted into the installation anchor rods 31. When the connecting anchor rod 32 is inserted into the installation anchor rod 31, it pushes the moving rod 33 to move inside the installation anchor rod 31, thereby pushing the fixing mechanism 34 inside the installation anchor rod 31 to move. This causes the fixing mechanism 34 to engage and fix inside the installation anchor rod 31 and mold 1, ensuring the installation anchor rod 31 is stably fixed inside mold 1. The connecting anchor rod 32 can connect multiple installation anchor rods 31 to form an integrated anchoring device. Then, concrete is poured into the mold 1. After the concrete has solidified, mold 1 is disassembled, and the installation anchor rods 31 are fixed at designated positions on the molded concrete 4. This device allows the installation anchor rods 31 to be intermittently inserted into the gate casting mold 1 near the gate slot 2, thus securing the gate. The installation of slot 2 provides a precise reference position. Through reasonable spacing settings, it can be ensured that the positions of each part of the gate slot 2 are accurate during installation and meet the design requirements, thereby improving the overall performance of the gate system. The fixing mechanism 34 is adjustablely set inside the installation anchor rod 31 and, under the push of the moving rod 33, fixes the installation anchor rod 31 inside the mold 1. During the concrete pouring process, the mold 1 will be subjected to external forces such as vibration. The fixing mechanism 34 can ensure that the position of the installation anchor rod 31 inside the mold 1 remains stable, further improving the installation accuracy of the gate slot 2. The connecting anchor rod 32 is inserted into one side of the multiple installation anchor rods 31 located inside the mold 1, connecting the dispersed installation anchor rods 31 into a whole. This integrated structure can effectively distribute the load generated during the opening and closing of the gate, enhance the deformation resistance of the anchoring unit 3, prevent the installation anchor rod 31 from loosening or being damaged due to excessive local stress, and improve the structural stability of the entire pre-embedded anchoring device.

[0023] In one embodiment, a positioning disc 35 is fixed to the upper end of the mounting anchor 31 to limit the depth of the mounting anchor 31 inserted into the mold 1.

[0024] This design is for reference. Figure 8 The positioning plate 35 is fixed to the upper end of the installation anchor 31, providing a clear and fixed reference for the depth of the installation anchor 31 inserted into the mold 1. During the process of inserting the installation anchor 31 into the gate casting mold 1, the construction personnel only need to use the contact between the positioning plate 35 and the surface of the mold 1 as the basis for judgment to ensure that each installation anchor 31 is inserted to the same depth, which meets the design requirements. This makes it easier and faster to insert the subsequent connection anchor 32 into the installation anchor 31. Moreover, this avoids the installation deviation of the gate slot 2 caused by inconsistent insertion depth, and ensures the flatness and verticality of the gate slot 2 during subsequent installation, thereby improving the installation accuracy of the entire gate system.

[0025] In one embodiment, the mounting anchor 31 has a slot 3104 for inserting and connecting the anchor 32.

[0026] This design is for reference. Figures 7-8 , Figure 10 as well as Figure 13 The design of the slot 3104 allows the connecting anchor 32 to be precisely inserted into the installation anchor 31. After the installation anchor 31 is inserted into the mold 1 and the positioning plate 35 abuts against the mold 1, the slot 3104 on the installation anchor 31 is inserted into the set position inside the mold 1, with the upper opening of the slot 3104 facing upwards, making it convenient to insert the connecting anchor 32 into the slot 3104 later. During the subsequent gate pouring process, the concrete will wrap the installation anchor 31 and the connecting anchor 32 into a whole. The slot 3104 can effectively restrict the connecting anchor 32, ensuring that the connecting anchor 32 and the installation anchor 31 are tightly connected, thereby ensuring the long-term stable operation of the gate system.

[0027] In one embodiment, a wedge block 331 is provided on one side of the moving rod 33 inside the slot 3104, and the wedge block 331 is inclined upward towards the side closer to the fixing mechanism 34.

[0028] This design is for reference. Figure 10 , Figure 13 ,as well as Figure 14 The installation anchor rod 31 has a moving groove 3101 inside for the moving rod 33 to move. When the connecting anchor rod 32 is inserted into the slot 3104, it will squeeze the wedge block 331 inside the slot 3104. As the connecting anchor rod 32 is continuously inserted into the slot 3104, due to the inclined structure of the wedge block 331, the moving rod 33 can retract into the moving groove 3101 under the push of the connecting anchor rod 32. As the wedge block 331 continues to advance, the squeezing force between the moving rod 33 and the fixing mechanism 34 continues to increase. This strong squeezing force can fix the installation anchor rod 31 more firmly inside the mold 1, effectively preventing the installation anchor rod 31 from being displaced or loosened due to external forces such as vibration during the concrete pouring process, thereby ensuring the accuracy of the gate slot 2 installation position. This can then push the fixing mechanism 34 to move inside the installation anchor rod 31, thereby allowing the fixing mechanism 34 to be inserted and fixed inside the mold 1. Example 2

[0029] In one embodiment, the fixing mechanism 34 includes: a movable member, adjustablely disposed in the mounting groove 3102 inside the mounting anchor rod 31 and located at the power output end of the movable rod 33; a fixing member, disposed on the inner wall of the mounting groove 3102, for supporting the component; a transmission member, disposed on the fixing member and connected to the movable member, for rotating along the center of the mounting groove 3102 under the push of the movable member; and a positioning block 346, disposed on the side of the transmission member away from the movable member and inserted into the mold 1, for fixing the mounting anchor rod 31 to the mold 1.

[0030] This design is for reference. Figures 7-12 The movable component is located in the mounting groove 3102 inside the mounting anchor rod 31 and at the power output end of the movable rod 33. It can receive the power output from the movable rod 33. When the connecting anchor rod 32 is inserted into the slot 3104 inside the mounting anchor rod 31, it squeezes the wedge block 331, causing the movable rod 33 to push the movable component to move inside the mounting groove 3102, thereby driving the transmission component to rotate. The transmission component drives the positioning block 346 to flip along the fixing component, thereby moving it from deep inside the mounting anchor rod 31 and then locking it inside the mold 1, completing the fixing of the mounting anchor rod 31 and the mold 1. The fixing component provides a stable support foundation for the transmission component. The upper part can rotate along the center of the mounting groove 3102 under the push of the moving part, converting the linear motion of the moving part into rotational motion. Finally, it is inserted into the mold 1 through the positioning block 346, realizing a stable fixation between the mounting anchor 31 and the mold 1. This effectively prevents the mounting anchor 31 from shifting or shaking during concrete pouring and subsequent use, ensuring the accuracy of the installation position of the gate groove 2. By setting this fixing mechanism 34, when fixing multiple mounting anchors 31 with the connecting anchor 32, the mounting anchor 31 can be automatically fixed to the mold 1. The whole installation process is simple and quick, without the need for complicated tools and professional skills, shortening the installation time and improving construction efficiency.

[0031] In one embodiment, the movable component includes: a movable disk 341, which is adjustablely disposed inside the mounting groove 3102; and a connecting seat 3411, which is disposed at an equal angle outside the movable disk 341.

[0032] This design is for reference. Figure 10 ,as well as Figure 11The movable disk 341 is adjustablely disposed inside the mounting groove 3102. When the movable rod 33 applies power to the movable disk 341, the connecting seat 3411 on the movable disk 341 will push the connecting member to rotate along the center of the mounting groove 3102. The connecting seats 3411 are equally spaced on the outside of the movable disk 341 so that the connecting seats 3411 can be connected to the transmission member at the same angle and distance. During the rotation or movement of the movable disk 341, each connecting seat 3411 can transmit power to the transmission member simultaneously and with equal force, further ensuring the uniformity of power transmission, thereby achieving stable fixation between the installation anchor rod 31 and the mold 1.

[0033] In one embodiment, the fastener includes: a mounting base 344, fixed inside the mounting groove 3102; and a mounting shaft, disposed on the mounting base 344, for supporting the transmission component.

[0034] This design is for reference. Figures 9-12 The mounting base 344 is fixed inside the mounting groove 3102, providing a stable base platform for the entire fixing component. The mounting shaft is set on the mounting base 344 as a support component for the transmission component, which can provide support for the transmission component. The stable mounting base 344 can ensure that the mounting shaft will not bend or deform when subjected to force, thereby providing continuous and stable support for the transmission component and ensuring the normal operation of the transmission component.

[0035] In one embodiment, the transmission component includes: a push rod 342, which is disposed on a connecting seat 3411; a swing rod 343, which is disposed at the power output end of the push rod 342 and sleeved on the mounting shaft; and an adjusting rod 345, which is disposed on the side of the swing rod 343 away from the push rod 342 and connected to the positioning block 346.

[0036] This design is for reference. Figures 9-12 The push rod 342 is mounted on the connecting seat 3411 and can directly receive power from the moving plate 341. When the moving plate 341 is pushed by the moving rod 33, it will drive the push rod 342 to move through the connecting seat 3411. The push rod 342 will push the adjusting rod 345 fixed on its outer side to rotate along the mounting shaft, so that the positioning block 346 extends out from the inside of the mounting anchor rod 31 and is then inserted and fixed inside the mold 1. The adjusting rod 345 is located on the side of the swing rod 343 away from the push rod 342 and is connected to the positioning block 346. It transmits the swing power of the swing rod 343 to the positioning block 346 and guides the positioning block 346 to move in a predetermined direction. The presence of the adjusting rod 345 ensures that the positioning block 346 can be accurately inserted into the inside of the mold 1, so as to achieve a firm fixation between the mounting anchor rod 31 and the mold 1.

[0037] In one embodiment, the mounting anchor 31 is provided with a through hole 3103 for the positioning block 346 to move.

[0038] This design is for reference. Figures 9-12 The perforation 3103 provides a clear track for the positioning block 346, reducing the possibility of it shifting or shaking during movement. When the anchor rod 31 is fixed to the mold 1, the positioning block 346 needs to be accurately inserted into a specific position on the mold 1. The guiding effect of the perforation 3103 can ensure that the positioning block 346 moves along the predetermined path, thereby achieving precise positioning, ensuring that the connection position between the anchor rod 31 and the mold 1 is accurate and correct, and improving the installation quality.

[0039] In one embodiment, a positioning groove 101 for fixing the positioning block 346 is provided at the position of the corresponding positioning block 346 in the mold 1.

[0040] This design is for reference. Figure 11 ,as well as Figure 12 The positioning groove 101 provides a clear installation position for the positioning block 346. During the installation process, the positioning block 346 can be smoothly inserted along the contour of the positioning groove 101, ensuring that the relative position between the installation anchor rod 31 and the mold 1 is accurate. After the positioning block 346 is inserted into the positioning groove 101, a tight fit will be formed between the two. This fit increases the connection strength between the installation anchor rod 31 and the mold 1, so that the anchoring device may not shift during subsequent concrete pouring, thereby improving the installation accuracy of the entire anchoring device and thus improving the installation accuracy of the subsequent gate slot 2. Example 3

[0041] In one embodiment, a positioning rod 351 is provided on the side of the positioning plate 35 near the mold 1, and a fixing groove 102 for fixing the positioning rod 351 is provided on the mold 1; the anchoring unit 3 further includes: an adjustment mechanism 36, which is provided on the side of the mounting base 344 away from the moving rod 33, for retracting the positioning block 346 into the interior of the mounting anchor rod 31 when the mold 1 is disassembled; the adjustment mechanism 36 includes a support ring 361 movably disposed inside the mounting groove 3102 and grounded to the inner wall of the mounting groove 3102, a connector 363 disposed on the mounting base 344 and connected to the support ring 361, and an adjustment member 362 disposed on the other side of the support ring 361; the connector 363 includes a mounting plate 3631 fixed on the mounting base 344 and a fixing rod 361 disposed on the mounting plate 3631 and connected to the support ring 361. 32. A limiting block 3633 is provided at the position where the mounting plate 3631 connects with the inner wall of the mounting anchor rod 31. A limiting groove 3106 is provided on the mounting anchor rod 31 for the limiting block 3633 to move. The adjusting component 362 includes a support plate 3621 fixed on the support ring 361, a vertical plate 3622 fixed at the lower end of the support plate 3621 and passing through the mounting anchor rod 31, a screw 3623 threadedly connected to the vertical plate 3622 at a position outside the mounting anchor rod 31 and rotatably connected to the positioning disk 35, and a rotating block 3624 fixed on the side of the screw 3623 away from the positioning disk 35. An adjusting groove 3105 is provided on the mounting anchor rod 31 for the vertical plate 3622 to move. An elastic element 364 is provided between the moving disk 341 and the support ring 361. The elastic element 364 is made of a damped spring or an elastic pad.

[0042] This design is for reference. Figures 15-19 After the concrete 4 has solidified, rotating block 3624 is rotated, causing screw 3623 to rotate on positioning plate 35. This, in turn, drives vertical plate 3622 to move away from moving rod 33 inside adjusting groove 3105. This, in turn, pulls support ring 361 to move away from moving rod 33. Then, support ring 361 drives limiting block 3633 to move via fixing rod 3632, thereby causing mounting base 344 to move away from moving rod 33. This causes moving plate 341 to separate from moving rod 33. At this time, the elastic element 364 pushes the moving disk 341 to move away from the support ring 361, so that the pushing rod 342 removes the positioning block 346 from the positioning groove 101, releasing the restriction of the positioning block 346 on the mold 1, thus facilitating the subsequent disassembly of the mold 1. When the installation anchor rod 31 is inserted into the mold 1, the positioning rod 351 on the positioning disk 35 is inserted and fixed in the fixing groove 102, so that the slot 3104 on the installation anchor rod 31 faces upward, making it convenient to insert the connecting anchor rod 32 into the installation anchor rod 31.

[0043] The specific embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A gate slot integrated pre-embedded anchoring device, comprising an anchoring unit (3) disposed inside a gate casting mold (1) for installing a gate slot (2), characterized in that: The anchoring unit (3) includes: Install anchor bolts (31) and insert them at intervals into the gate casting mold (1) on the side near the gate slot (2) for installing the gate slot (2); Connecting anchor rods (32) are inserted into one side of the plurality of installation anchor rods (31) located inside the mold (1) to fix the plurality of installation anchor rods (31); The movable rod (33) is movable inside the mounting anchor rod (31); The fixing mechanism (34) is adjustablely disposed inside the mounting anchor (31) and is used to fix the mounting anchor (31) inside the mold (1) under the push of the moving rod (33).

2. The gate slot integrated pre-embedded anchoring device according to claim 1, characterized in that: The upper end of the installation anchor (31) is fixed with a positioning plate (35) for limiting the depth of the installation anchor (31) inserted into the mold (1).

3. The gate slot integrated pre-embedded anchoring device according to claim 1, characterized in that: The installation anchor (31) has a slot (3104) for inserting the connecting anchor (32).

4. The gate slot integrated pre-embedded anchoring device according to claim 3, characterized in that: The movable rod (33) is provided with a wedge block (331) on one side inside the slot (3104), and the wedge block (331) is inclined upward towards the side close to the fixing mechanism (34); the inside of the mounting anchor rod (31) is provided with a movable groove (3101) for the movable rod (33) to move.

5. The gate slot integrated pre-embedded anchoring device according to claim 1, characterized in that: The fixing mechanism (34) includes: The movable part is adjustablely disposed in the mounting groove (3102) inside the mounting anchor rod (31) and located at the power output end of the movable rod (33); A fastener is provided on the inner wall of the mounting groove (3102) for supporting the component; A transmission component, disposed on the fixed component and connected to the movable component, is used to rotate along the center of the mounting groove (3102) under the push of the movable component; A positioning block (346) is disposed on the side of the transmission member away from the moving member and inserted into the mold (1) for fixing the mounting anchor (31) to the mold (1).

6. The gate slot integrated pre-embedded anchoring device according to claim 5, characterized in that: The movable component includes: A movable disk (341) is adjustablely disposed inside the mounting slot (3102); The connecting seat (3411) is set at an equal angle on the outside of the movable disk (341).

7. The gate slot integrated pre-embedded anchoring device according to claim 6, characterized in that: The fastener includes: Mounting base (344) is fixed inside the mounting slot (3102); The mounting shaft is disposed on the mounting base (344) for supporting the transmission component.

8. The gate slot integrated pre-embedded anchoring device according to claim 7, characterized in that: The transmission component includes: A push rod (342) is disposed on the connecting seat (3411); A swing rod (343) is disposed at the power output end of the push rod (342) and sleeved on the mounting shaft; An adjusting rod (345) is disposed on the side of the swing rod (343) away from the push rod (342) and connected to the positioning block (346).

9. The gate slot integrated pre-embedded anchoring device according to claim 5, characterized in that: The installation anchor (31) is provided with a through hole (3103) for the positioning block (346) to move.

10. The gate slot integrated pre-embedded anchoring device according to claim 5, characterized in that: The mold (1) has a positioning groove (101) at the position corresponding to the positioning block (346) for fixing the positioning block (346).

Citation Information

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