Pay-off device for silo sizing bearing platform

By designing an automated wire-laying device for silo shaping platforms, the problems of space waste and wire thickness adaptability during transportation were solved, achieving efficient wire-laying and recycling operations.

CN223480527UActive Publication Date: 2025-10-28CHINA RAILWAY 20TH BUREAU GRP FIFTH ENG CO LTD +1
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Patent Information

Application Number
CN202423136948.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-10-28
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

The existing wire feeding device for silo fixed support platforms takes up too much space during transportation, resulting in waste, and its fixed length cannot accommodate wires of different thicknesses.

Method used

A wire feeding device was designed, comprising a base, moving wheels, pusher, controller, wire feeding assembly, and sliding assembly. Through the control of motors, the wire feeding and retrieval operations are automated, adapting to the needs of wires of different thicknesses.

Benefits of technology

It solves the problem of wasted space during transportation and can adapt to the wire laying requirements of different thicknesses, improving transportation efficiency and equipment flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pay-off, and discloses a pay-off device for a silo shaping bearing platform, which comprises a base, moving wheels are fixedly assembled at the bottom of the base, a pushing handle is fixedly mounted on the outer wall of the base, a controller is fixedly mounted at the top of the pushing handle, a fixing plate is fixedly assembled at the top of the base, and a pay-off rack is fixedly mounted at the bottom of the fixing plate. A pay-off assembly is arranged on the top of the fixing plate, and an upper fixing cover is arranged on the outer wall of the pay-off assembly. A controller transmits a signal, so that a motor can start to work, the motor can drive a sleeve to rotate through a first limiting plate, the device can achieve the paying-off effect, a clamping block slides on the inner wall of a sliding groove, a sliding barrel can slide out of the inner wall of the sleeve, and when paying-off is not conducted, the clamping block can slide on the inner wall of the sliding groove, and the sliding barrel can slide out of the inner wall of the sleeve; and the clamping blocks can slide towards the direction of the motor to be recycled, so that the problem of space waste caused by excessive occupied space in the recycling and transporting process is greatly solved, and the recycling and transporting cost is fundamentally reduced.
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Description

Technical Field

[0001] This utility model relates to the field of wire feeding technology, specifically a wire feeding device for silo shaping support. Background Technology

[0002] Regarding the layout device for silo foundation shaping, firstly, the technology of silo positioning and layout is involved in building engineering surveying, which is an important step to ensure the accuracy of silo construction.

[0003] The existing wire feeding device for silo shaping foundations is too large, which makes it difficult to transport and wastes space. In addition, the width of the existing wire feeding device for silo shaping foundations is fixed, which limits the length of wire that can be fed and wound. Therefore, it needs to be improved. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a wire-laying device for silo shaping support platforms, which has the advantage of not occupying too much space during the recycling and transportation process, thus solving the problems mentioned in the background art.

[0005] This utility model provides the following technical solution: a wire feeding device for a silo shaping support, including a base, a moving wheel fixedly mounted on the bottom of the base, a pusher fixedly mounted on the outer wall of the base, a controller fixedly mounted on the top of the pusher, a fixing plate fixedly mounted on the top of the base, a wire feeding assembly provided on the top of the fixing plate, an upper fixing cover provided on the outer wall of the wire feeding assembly, a lower fixing cover installed on the top of the upper fixing cover by fixing bolts, and a sliding assembly provided on the top of the base.

[0006] As a preferred embodiment of this utility model, the wire feeding assembly includes a motor, a limiting plate one is fixedly mounted on the power output shaft of the motor, a sleeve is fixedly installed on the outer wall of the limiting plate one, a sliding groove is provided on the top of the sleeve, a sliding cylinder is slidably connected to the inner wall of the sleeve, a locking block is fixedly installed on the top of the sliding cylinder, a connecting shaft is fixedly installed on the outer wall of the sliding cylinder on the side away from the sleeve, and a limiting plate two is fixedly sleeved on the outer wall of the sliding cylinder.

[0007] As a preferred embodiment of this utility model, the motor and the controller are electrically connected, the diameter of the slide groove is adapted to the diameter of the locking block, and the locking block is located on the inner wall of the slide groove. The locking block slides on the inner wall of the slide groove, and the outer diameter of the slide cylinder is adapted to the inner diameter of the sleeve.

[0008] As a preferred embodiment of this utility model, the sliding assembly includes a motor, the power output shaft of the motor is fixedly mounted with a rotating shaft, the bottom of the rotating shaft is provided with a slide rail, the outer wall of the rotating shaft is fixedly mounted with a sliding plate, and the outer wall of the sliding plate is provided with a circular groove.

[0009] As a preferred embodiment of this utility model, there are two motors, two rotating shafts, and two slide rails, which are symmetrically distributed on the top of the base. The diameter of the circular groove is adapted to the diameter of the rotating shaft, and the circular groove slides on the outer wall of the rotating shaft. The motor and the controller are electrically connected.

[0010] As a preferred embodiment of this utility model, there are four movable wheels, which are evenly distributed at the bottom of the base. The movable wheels have the function of brakes, and the four corners of the base are rounded.

[0011] Compared with the prior art, the present invention has the following beneficial effects:

[0012] 1. The wire feeding device for the silo shaping platform, through a signal emitted by the controller, enables the motor to start working. The motor drives the sleeve to rotate through the limit plate, enabling the device to feed wire. The locking block slides on the inner wall of the chute, allowing the chute to slide outward from the inner wall of the sleeve. When not feeding wire, the locking block can be slid towards the motor for recycling. This greatly solves the problem of excessive space wastage during recycling and transportation, fundamentally reducing the transportation cost of recycling.

[0013] 2. The wire feeding device for the silo shaping support can start the motor by transmitting a signal from the controller, thereby enabling the rotating shaft to rotate. This allows the sliding plate to slide along the inner wall of the slide rail through the circular groove, and the top of the sliding plate to slide on the top of the base. This allows the distance between the sliding plate and the fixed plate to change, enabling the device to feed wires of different thicknesses. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0015] Figure 2 This is a schematic diagram of the other side of the structure of this utility model;

[0016] Figure 3 This is a schematic cross-sectional view of the present invention.

[0017] Figure 4 This is a schematic diagram of the wire feeding assembly structure of this utility model;

[0018] Figure 5 This is a schematic diagram of the sliding component structure of this utility model.

[0019] In the diagram: 1. Base; 2. Moving wheel; 3. Pusher; 4. Controller; 5. Fixing plate; 6. Line feeding assembly; 601. Motor; 602. Limiting plate one; 603. Sleeve; 604. Slide groove; 605. Slide cylinder; 606. Locking block; 607. Connecting shaft; 608. Limiting plate two; 7. Upper fixing cover; 8. Sliding assembly; 801. Motor; 802. Rotating shaft; 803. Slide rail; 804. Sliding plate; 805. Circular groove; 9. Lower fixing cover; 10. Fixing bolt. Detailed Implementation

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

[0021] Please see Figure 1-Figure 5 A wire feeding device for a silo shaping support includes a base 1, a moving wheel 2 fixedly mounted on the bottom of the base 1, a pusher 3 fixedly mounted on the outer wall of the base 1, a controller 4 fixedly mounted on the top of the pusher 3, a fixing plate 5 fixedly mounted on the top of the base 1, a wire feeding assembly 6 on the top of the fixing plate 5, an upper fixing cover 7 on the outer wall of the wire feeding assembly 6, a lower fixing cover 9 mounted on the top of the upper fixing cover 7 by fixing bolts 10, and a sliding assembly 8 on the top of the base 1.

[0022] By utilizing the above structure and the rounded corners of the outer wall of the base 1, it can be seen that the device will not easily cause injury to the workers during the wire laying operation, thus improving the safety of the device.

[0023] In a preferred embodiment, the wire feeding assembly 6 includes a motor 601, a limiting plate 602 fixedly mounted on the power output shaft of the motor 601, a sleeve 603 fixedly mounted on the outer wall of the limiting plate 602, a sliding groove 604 opened on the top of the sleeve 603, a slide cylinder 605 slidably connected to the inner wall of the sleeve 603, a locking block 606 fixedly mounted on the top of the slide cylinder 605, a connecting shaft 607 fixedly mounted on the outer wall of the slide cylinder 605 away from the sleeve 603, and a limiting plate 608 fixedly sleeved on the outer wall of the slide cylinder 605.

[0024] In a preferred embodiment, the motor 601 is electrically connected to the controller 4, the diameter of the slide 604 is adapted to the diameter of the locking block 606, and the locking block 606 is located on the inner wall of the slide 604. The locking block 606 slides on the inner wall of the slide 604, and the outer diameter of the slide cylinder 605 is adapted to the inner diameter of the sleeve 603.

[0025] Using the above structure, the controller 4 sends a signal to enable the motor 601 to start working, so that the motor 601 can drive the sleeve 603 to rotate through the limit plate 602, enabling the device to perform the effect of unloading the line. The locking block 606 slides on the inner wall of the slide groove 604, allowing the slide cylinder 605 to slide outward from the inner wall of the sleeve 603. When not unloading the line, the locking block 606 can be slid towards the motor 601, so that the device will not occupy too much space during the recycling and transportation process, thus avoiding the problem of wasting space.

[0026] In a preferred embodiment, the sliding assembly 8 includes a motor 801, the power output shaft of the motor 801 is fixedly mounted with a rotating shaft 802, the bottom of the rotating shaft 802 is provided with a slide rail 803, the outer wall of the rotating shaft 802 is fixedly mounted with a sliding plate 804, and the outer wall of the sliding plate 804 is provided with a circular groove 805.

[0027] In a preferred embodiment, there are two motors 801, two rotating shafts 802, and two slide rails 803, and the two motors 801, two rotating shafts 802, and two slide rails 803 are symmetrically distributed on the top of the base 1. The diameter of the circular groove 805 is adapted to the diameter of the rotating shaft 802, and the circular groove 805 slides on the outer wall of the rotating shaft 802. The motor 801 is electrically connected to the controller 4.

[0028] Using the above structure, the controller 4 sends a signal to enable the motor 801 to start working, thereby enabling the rotating shaft 802 to rotate. This allows the sliding plate 804 to slide along the inner wall of the slide rail 803 via the circular groove 805, and the top of the sliding plate 804 to slide on the top of the base 1. This allows the distance between the sliding plate 804 and the fixed plate 5 to change, enabling the device to lay out wires of different thicknesses.

[0029] In a preferred embodiment, there are four movable wheels 2, which are evenly distributed on the bottom of the base 1. The movable wheels 2 have the function of brakes, and the four corners of the base 1 are rounded.

[0030] Using the above structure, the device can be moved by the movable wheel 2. At the same time, when movement is not required, the movable wheel 2 can also function as a brake, which can maintain the stability of the device.

[0031] Working principle: When using this device, the pusher 3 can be pushed to move the moving wheel 2, and the controller 4 can send a signal to start the motor 601. The motor 601 can drive the sleeve 603 to rotate through the limit plate 602, enabling the device to feed wire. The locking block 606 slides on the inner wall of the slide groove 604, allowing the slide cylinder 605 to slide outward from the inner wall of the sleeve 603. When not feeding wire, the locking block 606 can be slid towards the motor 601 for retraction. During the wire feeding process, the controller 4 can send a signal to start the motor 801, which can rotate the rotating shaft 802. This allows the sliding plate 804 to slide on the inner wall of the slide rail 803 through the circular groove 805, and the top of the sliding plate 804 can slide on the top of the base 1. This allows the distance between the sliding plate 804 and the fixed plate 5 to change, enabling the device to feed wires of different thicknesses.

[0032] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A wire-laying device for a silo shaping support, comprising a base (1), characterized in that: The bottom of the base (1) is fixedly equipped with a moving wheel (2), the outer wall of the base (1) is fixedly installed with a pusher (3), the top of the pusher (3) is fixedly installed with a controller (4), the top of the base (1) is fixedly equipped with a fixing plate (5), the top of the fixing plate (5) is provided with a wire feeding assembly (6), the outer wall of the wire feeding assembly (6) is provided with an upper fixing cover (7), the top of the upper fixing cover (7) is installed with a lower fixing cover (9) by fixing bolts (10), and the top of the base (1) is provided with a sliding assembly (8).

2. The wire feeding device for silo shaping platform according to claim 1, characterized in that: The wire feeding assembly (6) includes a motor (601), the power output shaft of the motor (601) is fixedly fitted with a limiting plate one (602), the outer wall of the limiting plate one (602) is fixedly installed with a sleeve (603), the top of the sleeve (603) is provided with a sliding groove (604), the inner wall of the sleeve (603) is slidably connected with a slide cylinder (605), the top of the slide cylinder (605) is fixedly installed with a locking block (606), the outer wall of the slide cylinder (605) away from the sleeve (603) is fixedly installed with a connecting shaft (607), and the outer wall of the slide cylinder (605) is fixedly sleeved with a limiting plate two (608).

3. The wire feeding device for silo shaping support according to claim 2, characterized in that: The motor (601) and the controller (4) are electrically connected. The diameter of the slide groove (604) is adapted to the diameter of the locking block (606), and the locking block (606) is located on the inner wall of the slide groove (604). The locking block (606) slides on the inner wall of the slide groove (604). The outer diameter of the slide cylinder (605) is adapted to the inner diameter of the sleeve (603).

4. The wire feeding device for silo shaping platform according to claim 1, characterized in that: The sliding assembly (8) includes a motor (801), the power output shaft of the motor (801) is fixedly mounted with a rotating shaft (802), the bottom of the rotating shaft (802) is provided with a slide rail (803), the outer wall of the rotating shaft (802) is fixedly mounted with a sliding plate (804), and the outer wall of the sliding plate (804) is provided with a circular groove (805).

5. The wire feeding device for silo shaping support according to claim 4, characterized in that: The number of motors (801), rotating shafts (802) and slide rails (803) are all two, and the two motors (801), rotating shafts (802) and slide rails (803) are symmetrically distributed on the top of the base (1). The diameter of the circular groove (805) is adapted to the diameter of the rotating shaft (802), and the circular groove (805) slides on the outer wall of the rotating shaft (802). The motors (801) and controllers (4) are electrically connected.

6. The wire feeding device for silo shaping support according to claim 1, characterized in that: There are four movable wheels (2), and the four movable wheels (2) are evenly distributed at the bottom of the base (1). The movable wheels (2) have the function of brakes. The four corners of the base (1) are rounded.