Buckle cable anchor box device
By designing a rotatable cable anchor box device, the problems of angle adjustment and reuse in cable hoisting were solved, improving hoisting efficiency and stability and ensuring construction safety.
Patent Information
- Application Number
- CN202422902230.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Existing cable hoisting anchor boxes are difficult to adapt to changing hoisting needs, and cannot achieve automatic angle adjustment and reuse, resulting in low hoisting stability and efficiency.
Design a cable anchor box device, including a movable body and an anchor plate. The movable body can rotate along two vertical planes, and the anchor plate is provided with multiple mounting holes. The cable is detachably connected, and the angle can be adjusted according to the hoisting requirements and overcome installation errors to achieve stable hoisting at multiple angles.
This improved the efficiency and stability of the cable hoisting system, reduced the frequency of material replacement, enabled the reuse of anchor boxes, avoided facility interference, and ensured construction safety.
Smart Images

Figure CN223766711U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cable hoisting technology, and in particular to a cable anchor box device. Background Technology
[0002] In the construction of arch bridges and suspension bridges, cable-stayed rigging systems are commonly used. As a crucial component of modern engineering hoisting technology, the design and application of the cable-stayed rigging system largely determine the safety and efficiency of the hoisting operation. The anchoring system, as the core component of the cable-stayed rigging system, primarily functions to temporarily anchor the hoisted structure before the arch bridge is closed; its anchoring stability is critical to the overall main structure hoisting.
[0003] As projects expand in scale and complexity, the angles and directions of anchoring vary widely. Existing anchor boxes are primarily custom-made for specific anchoring angles, which are often insufficient to meet the changing lifting requirements. Each anchor box must correspond to a specific backsling angle, making it difficult to reuse anchor boxes in the anchoring area and thus lacking versatility. Furthermore, existing anchor boxes struggle to adapt to angle changes and cannot automatically adjust the anchoring angle according to actual lifting needs.
[0004] Therefore, it is necessary to provide a new cable anchor box device to solve the above-mentioned technical problems. Utility Model Content
[0005] The main purpose of this utility model is to provide a cable anchor box device, which aims to solve the problem that existing cable hoisting methods cannot adapt to different hoisting needs.
[0006] To achieve the above objectives, the present invention proposes a cable anchor box device comprising a movable body, an anchor plate, and a cable. The movable body is rotatable along a first plane and a second plane, with the first plane and the second plane being perpendicular to each other. The anchor plate is disposed on the movable body and has a plurality of arrayed mounting holes. The cable is disposed in any of the mounting holes and is detachably connected to the anchor plate by fasteners.
[0007] Optionally, the number of the buckles is one or more, and the one or more buckles are detachably installed in any corresponding number of the mounting holes by means of fasteners.
[0008] Optionally, the movable body includes a base, a first hinge seat, and a second hinge seat. The base is disposed on the ground or a bridge facility. The first hinge seat is hinged to the base and is rotatable around the base along a first plane. The second hinge seat is hinged to the first hinge seat and is rotatable around the first hinge seat along a second plane. The anchor plate is disposed at the end of the second hinge seat away from the first hinge seat.
[0009] Optionally, the base is provided with at least two spaced-apart ear seats; the first hinge seat includes a mounting part and at least two hinge arms spaced-apart on the mounting part, the mounting part is hinged to the second hinge seat, the hinge arms are correspondingly provided with the ear seats, and the hinge arms include two spaced-apart ear plates; the ear seat is disposed between the two ear plates and is rotatably connected to the two ear plates by a first pin.
[0010] Optionally, the second hinge seat includes two mounting plates, which are respectively disposed on both sides of the mounting part and hinged to the mounting part by a second pin; the anchor plate is connected between the two mounting plates, and a hollow space is formed between the anchor plate and the mounting part; one end of the buckle passes through the anchor plate and extends into the hollow space, and is threadedly connected to the end of the buckle extending into the hollow space by a fastener to limit the buckle.
[0011] Optionally, the anchor plate has two mounting grooves, the mounting grooves are matched with the shape of the mounting plate and are correspondingly arranged, the mounting plate extends into the corresponding mounting groove and is welded to the edge of the mounting groove.
[0012] Optionally, the number of anchor plates is two or more, the two or more anchor plates are spaced apart along the length direction of the second hinge seat, and adjacent two anchor plates are connected by a reinforcing plate; multiple fasteners pass through two or more anchor plates in sequence and are connected to each anchor plate by fasteners respectively.
[0013] Optionally, the number of mounting holes is two to three times the number of buckles.
[0014] In this utility model's technical solution, the movable body can rotate along the first plane and the second plane respectively. During cable hoisting operations, the movable body can adjust the hooking angle according to different hoisting requirements, so that the cable hoisting hooking system can maintain the best working state at different angles. The anchor plate is provided with multiple universal mounting holes, and the hooking cable can be detachably connected to the anchor plate through any mounting hole according to the actual operation. This can not only overcome installation errors, but also flexibly adjust the position of the hooking cable on the anchor plate to meet different hoisting requirements, and effectively avoid interference with surrounding facilities, ensuring the stability of the hoisting operation. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0016] Figure 1 This is a schematic diagram of the cable anchor box device in an embodiment of the present invention;
[0017] Figure 2 for Figure 1 Sectional view of aa in the middle;
[0018] Figure 3 This is a schematic diagram of the anchor plate in an embodiment of the present invention.
[0019] Explanation of icon numbers:
[0020] 1. Main body of the device; 1.1. First hinge seat; 1.1.1. Mounting part; 1.1.2. Hinge arm; A. Ear plate; 1.2. Second hinge seat; 1.2.1. Mounting plate; 1.3. First pin; 1.4. Second pin; 2. Anchor plate; 2.1. Mounting hole; 2.2. Mounting groove; 3. Buckle; 4. Hollowed-out space; 5. Fastener; 6. Reinforcing plate.
[0021] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0022] The embodiments of the present invention will be described in detail below with reference to the accompanying drawings. However, the present invention can be implemented in many different ways as defined and covered by the claims.
[0023] This utility model proposes a cable anchor box device, which aims to solve the problems of existing cable hoisting systems being unable to adapt to different hoisting needs and having low stability.
[0024] like Figures 1 to 3 As shown, the cable anchor box device includes a movable body 1, an anchor plate 2, and a cable 3. The movable body 1 can rotate along a first plane and a second plane, with the first plane perpendicular to the second plane. The anchor plate 2 is mounted on the movable body 1 and has multiple arrayed mounting holes 2.1. The cable 3 is installed in any of the mounting holes 2.1 and is detachably connected to the anchor plate 2 by fasteners 5. The movable body 1 can rotate along the first plane and the second plane. During cable hoisting operations, the movable body 1 can automatically adjust the hooking angle according to different hoisting requirements, ensuring that the cable hoisting hooking system maintains optimal working condition at different angles. The anchor plate 2 has multiple universal mounting holes 2.1. The cable 3 can be detachably connected to the anchor plate 2 through any of the mounting holes 2.1 according to the actual operation, which can overcome installation errors and flexibly adjust the position of the cable on the anchor plate to meet different hoisting requirements. It can also effectively avoid interference with surrounding facilities and ensure the stability of the hoisting operation.
[0025] During the installation of the arch rib of an arch bridge, the anchoring points change with the curvature of the arch rib segments. Therefore, the angle of the anchor box must also be adjusted according to the curvature of the arch rib to achieve anchoring. To achieve more precise control of the anchor box angle, this invention adopts a micro-innovation to improve the anchor box of the anchoring system. By adding pins through segmented assembly, the anchor box can be adaptively adjusted, ensuring not only vertical rotation but also unrestricted lateral rotation. This adapts to the anchoring installation of all anchoring systems. Furthermore, a universal row of holes is provided, allowing different numbers of anchor cables to be used. This enables the reuse of anchor boxes in the anchoring area. Both anchor cables and anchor boxes can be effectively removed after use, preserved, and reused, thus better realizing economic and social benefits.
[0026] The cable anchor box device in this embodiment utilizes mechanical principles for mechanical analysis and optimized design. Through the meticulously designed movable body 1, its load-bearing capacity and service life are greatly improved, ensuring high efficiency and stability during the hoisting process. Whether in angle adjustment or stability during hoisting, this cable anchor box device performs excellently, thereby enhancing the overall efficiency of the cable hoisting system. Furthermore, its compact structural design makes transportation and installation more convenient. Simultaneously, its installation steps are relatively simple, allowing for quick installation and commissioning, shortening the construction cycle. This device is not only suitable for cable hoisting operations in large-scale projects such as bridges and high towers, but can also be applied to other hoisting scenarios requiring angle adaptation. Its wide applicability makes this device a promising candidate for application in the engineering construction field.
[0027] The number of ties 3 is one or more, and each of the ties 3 is detachably installed in any corresponding number of mounting holes 2.1 via fasteners 5. Multiple universal mounting holes 2.1 can accommodate different numbers of ties 3, reducing the frequency and quantity of material replacement and enabling the reuse of anchor boxes in the anchoring area; moreover, multiple ties 3 can be arranged in any way on the anchor plate 2 to adapt to different hoisting requirements, and can avoid obstacles according to the surrounding facilities, improving the stability of hoisting operations.
[0028] Specifically, the main body 1 includes a base, a first hinge seat 1.1, and a second hinge seat 1.2. The base is set on the ground or bridge facilities. The first hinge seat 1.1 is hinged to the base and can rotate around the base along a first plane. The second hinge seat 1.2 is hinged to the first hinge seat 1.1 and can rotate around the first hinge seat 1.1 along a second plane. Anchor plate 2 is set at the end of the second hinge seat 1.2 away from the first hinge seat 1.1. The first hinge seat 1.1 and the second hinge seat 1.2 enable the cable anchor box device to rotate on the first and second planes. The second plane is always perpendicular to the first plane. Precise adjustment of the fastening angle through the first hinge seat 1.1 and the second hinge seat 1.2 can reduce the risk of accidents caused by improper hoisting and ensure the safety of construction personnel. Unlike existing technologies, each anchor box no longer corresponds one-to-one with the back cable angle, achieving universality and avoiding engineering safety accidents caused by incorrect use of anchor boxes due to small angle differences.
[0029] Furthermore, the base is provided with at least two spaced-apart lugs; the first hinge seat 1.1 includes a mounting part 1.1.1 and at least two spaced-apart hinge arms 1.1.2 on the mounting part 1.1.1. The mounting part 1.1.1 is hinged to the second hinge seat 1.2. The hinge arms 1.1.2 are correspondingly arranged with the lugs, and the hinge arms 1.1.2 include two spaced-apart lugs A; the lugs are disposed between the two lugs A and are rotatably connected to the two lugs A by a first pin 1.3. The two hinge arms 1.1.2 of the first hinge seat 1.1 are respectively hinged to the two lugs by the first pin 1.3, and the lugs are disposed between the two lugs A, thereby effectively improving the fit strength between the first hinge seat 1.1 and the base, which is beneficial to improving the stability of the overall structure.
[0030] Furthermore, the second hinge seat 1.2 includes two mounting plates 1.2.1, which are respectively located on both sides of the mounting part 1.1.1 and hinged to the mounting part 1.1.1 via a second pin 1.4. An anchor plate 2 is connected between the two mounting plates 1.2.1, and a hollow space 4 is formed between the anchor plate 2 and the mounting part 1.1.1. One end of the buckle 3 passes through the anchor plate 2 and extends into the hollow space 4, and is threadedly connected to the end of the buckle 3 extending into the hollow space 4 via a fastener 5 to limit the buckle 3. The anchor plate 2 is hinged to the mounting part 1.1.1 of the first hinge seat 1.1 via the two mounting plates 1.2.1 to ensure that the anchor plate 2 can rotate along the second plane with the two mounting plates 1.2.1 during the rotation of the first hinge seat 1.1, realizing flexible adjustment of the setting angle of the anchor plate 2. The hollow space 4 between the anchor plate 2 and the mounting part 1.1.1 facilitates the disassembly and installation of the buckle 3 during operation.
[0031] In this embodiment, two mounting grooves 2.2 are formed on the anchor plate 2. The mounting grooves 2.2 match the shape of the mounting plate 1.2.1 and are correspondingly arranged. The mounting plate 1.2.1 extends into the corresponding mounting groove 2.2 and is welded to the edge of the mounting groove 2.2. The two mounting plates 1.2.1 are respectively welded into the two mounting grooves 2.2 to enhance the connection strength between the mounting plate 1.2.1 and the anchor plate 2, which is beneficial to improving the structural stability of the cable anchor box device.
[0032] In this embodiment, there are two or more anchor plates 2, which are spaced apart along the length of the second hinge seat 1.2, and adjacent anchor plates 2 are connected by a reinforcing plate 6. Multiple fasteners 3 pass through two or more anchor plates 2 in sequence and are connected to each anchor plate 2 by fasteners 5. Setting multiple anchor plates 2 can effectively enhance the connection strength between the fasteners 3 and the anchor plates 2, and can keep the fasteners 3 and the anchor plates 2 as perpendicular to each other as possible, avoiding bending of the fasteners 3 and affecting the operation.
[0033] In this embodiment, the number of mounting holes 2.1 is 2 to 3 times the number of buckles 3. When multiple buckles 3 are set on the anchor plate 2, the multiple mounting holes 2.1 exceeding the number of buckles 3 can meet any arrangement of the multiple buckles 3, providing high flexibility.
[0034] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A shroud anchor pod apparatus, characterized by, The anchor cable device comprises a movable main body (1), an anchor plate (2) and a cable (3), the movable main body (1) can rotate along a first plane and a second plane respectively, and the first plane is arranged perpendicularly to the second plane; the anchor plate (2) is arranged on the movable main body (1), and a plurality of arrayed mounting holes (2.1) are formed in the anchor plate (2), and the cable (3) is arranged in any mounting hole (2.1) and is detachably connected with the anchor plate (2) through a fastener (5); The movable main body (1) comprises a base, a first hinge seat (1.1) and a second hinge seat (1.2), the base is arranged on the ground or a bridge facility; the first hinge seat (1.1) is hinged with the base, and the first hinge seat (1.1) can rotate along the first plane around the base; the second hinge seat (1.2) is hinged with the first hinge seat (1.1), and the second hinge seat (1.2) can rotate along the second plane around the first hinge seat (1.1), and the anchor plate (2) is arranged at one end of the second hinge seat (1.2) away from the first hinge seat (1.1).
2. The chock anchor assembly of claim 1, wherein, The number of the cable (3) is more than one, and the more than one cable (3) is detachably arranged in any corresponding number of mounting holes (2.1) through fasteners (5).
3. The line anchor device of claim 2, wherein, At least two spaced ear seats are arranged on the base; the first hinge seat (1.1) comprises a mounting part (1.1.1) and at least two spaced hinge arms (1.1.2) arranged on the mounting part (1.1.1), the mounting part (1.1.1) is hinged with the second hinge seat (1.2), the hinge arms (1.1.2) are arranged correspondingly with the ear seats, the hinge arms (1.1.2) comprise two spaced ear plates (A), and the ear seats are arranged between the two ear plates (A) and are rotationally connected with the two ear plates (A) through a first pin shaft (1.3).
4. The line anchor device of claim 3, wherein the line anchor device is configured to be attached to a line of a kite. The second hinge seat (1.2) comprises two mounting plates (1.2.1), the two mounting plates (1.2.1) are arranged on both sides of the mounting part (1.1.1) and are hinged with the mounting part (1.1.1) through a second pin shaft (1.4); the anchor plate (2) is connected between the two mounting plates (1.2.1), and a hollow space (4) is formed between the anchor plate (2) and the mounting part (1.1.1), one end of the cable (3) penetrates through the anchor plate (2) into the hollow space (4), and is threadedly connected with the other end of the cable (3) penetrating into the hollow space (4) through a fastener (5) to limit the cable (3).
5. The line anchor device of claim 4, wherein the line anchor device is configured to be attached to a line of a kite. Two mounting grooves (2.2) are formed in the anchor plate (2), the mounting grooves (2.2) are matched with the shapes of the mounting plates (1.2.1) and are arranged correspondingly, the mounting plates (1.2.1) penetrate into the corresponding mounting grooves (2.2) and are welded with the edges of the mounting grooves (2.2).
6. The line anchor device of any one of claims 1 to 5, wherein, The number of the anchor plates (2) is two or more, the two or more anchor plates (2) are arranged at intervals along the length direction of the second hinge seat (1.2), and the adjacent two anchor plates (2) are connected through a reinforcing plate (6); a plurality of buckle cables (3) pass through the two or more anchor plates (2) in sequence and are connected with the anchor plates (2) through fasteners (5) respectively.
7. The line anchor device of any one of claims 1 to 5, wherein, The number of the mounting holes (2.1) is 2 to 3 times the number of the buckle cables (3).