Conveying device of belt winding execution device in main cable belt winding equipment

By implementing a support mechanism with a sliding seat and rotating roller, the load distribution is improved, addressing the issue of conveyor damage and extending the lifespan of the main cable wrapping equipment.

CN223102431UActive Publication Date: 2025-07-15CHONGQING CHANGJIANG PRESTRESS
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Patent Information

Application Number
CN202421914172.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-07-15
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

The middle part of the first moving seat in the existing belt wrapper is not supported, which causes the output end of the first linear conveying device to be easily damaged and affects the service life.

Method used

In the belt wrapper, the support platform is designed, the guide rails and moving seats are installed, the linear drive device and the connecting mechanism are used, and the rotary drive device and other components are supported by the sliding seat and the support roller to reduce the burden on the motor output shaft.

Benefits of technology

Through the design of the support platform and connection mechanism, the probability of deformation in the middle of the mobile seat is reduced, smooth sliding is ensured, and the service life of the belt wrapper is extended.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a conveying device of a belt winding execution device in main cable belt winding equipment. The conveying device comprises a supporting platform, a movable seat, a connecting mechanism, a guide rail and a linear driving device. Guide rails are installed on the supporting platform, a moving seat capable of sliding in the X direction is installed on the guide rails, the guide rails are located on the two sides of the moving seat, a rotation driving device, a rotating disc, a convolution disc and a tightening driving device in the belt winding machine are installed in the middle of the moving seat, and a linear driving device is installed on the supporting platform in the belt winding machine. The linear driving device comprises a motor, a lead screw and a sliding base, the motor is installed at one end of the supporting platform, the output end of the motor is connected to one end of the lead screw, and the lead screw is located in the X direction, located below the middle of the moving base and serves as an output part of the linear driving device. The conveying device of the tape winding execution device in the main cable tape winding equipment solves the problem that in the prior art, the output end of first linear conveying equipment is prone to damage due to the fact that the middle of a first movable base is not supported.
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Description

Technical Field

[0001] The utility model relates to a main cable winding tape device, in particular to a conveying device of a winding tape executing device in a main cable winding tape device. Background Art

[0002] A Chinese patent discloses a winding tape machine with an application number of CN202010021833.1. The winding tape machine includes a supporting device for supporting a columnar body; a first moving seat capable of moving relative to the supporting device in a direction parallel to the columnar body; a first linear conveying device connected to the first moving seat for driving the first moving seat to move; a tape rotating device including a rotation driving device, a rotating disk, a convolution disk and a tensioning belt driving device, the rotating disk is rotatably installed on the first moving seat, the rotation driving device is installed on the first moving seat and connected to the rotating disk, a convolution disk is installed on the edge of the rotating disk for convolving the tape, and a tensioning belt driving device is installed on the rotating disk; a guiding device installed on the first moving seat, and the guiding and pressing device is located behind the rotating disk; and a cutting device.

[0003] Although the above-mentioned winding tape machine can wind the tape on the main cable, there are still disadvantages: since the first moving seat is mounted on the supporting device, the bottom of the first moving seat is slidably connected to two guide rails, the rotation driving device, the rotating disk, the convolution disk and the tensioning belt driving device are installed in the middle of the first moving seat, there is no support in the middle of the first moving seat, and the first moving seat is connected to the output end of the first linear conveying device. In this way, the entire gravity of the rotation driving device, the rotating disk, the convolution disk and the tensioning belt driving device is on the output end of the first linear conveying device, which is likely to cause damage to the output end of the first linear conveying device, resulting in a short service life of the entire winding tape machine. Summary of the Invention

[0004] The utility model aims to provide a conveying device of a winding tape executing device in a main cable winding tape device to solve the problem that the output end of the first linear conveying device is easily damaged due to the lack of support in the middle of the first moving seat in the prior art.

[0005] To achieve the above object, the utility model adopts the following technical scheme:

[0006] The utility model discloses a conveying device of a tape winding execution device in a main cable tape winding device, comprising: a support platform, a moving seat, a connecting mechanism, a guide rail and a linear driving device; a guide rail is installed on the support platform, and a moving seat capable of sliding in the X direction is installed on the guide rail. The guide rails are located on both sides of the moving seat. A rotary driving device, a rotary disk, a convolution disk and a tensioning driving device in the tape winding machine are installed in the middle of the moving seat, and a linear driving device is installed on the support platform in the tape winding machine; the linear driving device includes: a motor, a lead screw and a sliding seat. The motor is installed at one end of the support platform, and the output end of the motor is connected to one end of the lead screw. The lead screw is located in the X direction and is located below the middle of the moving seat. The lead screw is the output part of the linear driving device, and a sliding seat is threadedly connected to the lead screw; a first groove is formed by the depression of the top surface of the support platform, and the first groove is located between the two guide rails. The inner bottom wall of the first groove is a supporting surface. A second groove is formed by the depression of the inner bottom wall of the first groove, and the lead screw is located in the second groove. A supporting roller is installed on the sliding seat and is supported by the supporting surface; a connecting mechanism is installed between the sliding seat and the moving seat, and the connecting mechanism detachably connects the sliding seat and the moving seat.

[0007] Preferably, an installation mechanism is installed on the sliding seat, and a rotatable supporting roller is detachably installed on the installation mechanism.

[0008] Preferably, the connecting mechanism restricts the installation mechanism from releasing the rotatable supporting roller.

[0009] Preferably, the installation mechanism includes: a cover body, a lower positioning seat, an upper positioning seat, a rotating shaft, a lifting rod and a spring. The cover body is connected to the sliding seat, and a lifting rod capable of moving in the Y direction is installed on the cover body. The lifting rod is fixed to the upper positioning seat. A first arc-shaped groove is formed by the depression of the bottom surface of the upper positioning seat. A lower positioning seat protrudes from the cover body, and a second arc-shaped groove is formed by the depression of the top surface of the lower positioning seat. The rotating shaft is placed in the first arc-shaped groove. The rotating shaft is located in the Z direction, and the rotating shaft passes through the supporting roller. A convex ring protrudes from the side of the supporting roller close to the lower positioning seat. The supporting roller is placed in the first arc-shaped groove, and the convex ring is located between the bottom of the upper positioning seat and the lower positioning seat. A spring is connected between the upper positioning seat and the cover body, and the elastic force of the spring is used to make the inner wall of the first arc-shaped groove press against the supporting roller.

[0010] Preferably, the connecting mechanism includes: a hook block, a connecting seat and a locking assembly. The connecting block is fixed to the moving seat, and a moving groove for the hook block to move in the Y direction is formed at the bottom of the connecting block. The locking assembly positions the hook block and the connecting seat, and after the hook block is positioned on the connecting seat by the locking assembly, the hook block hooks the upper positioning seat.

[0011] Preferably, a first protruding block and a second protruding block protrude from the top surface of the upper positioning seat, and a slot is formed between the first protruding block and the second protruding block. The slot is for the hook block to extend into. The guide rail restricts the moving seat from moving in the Y direction. After the hook block extends into the slot, the rising of the upper positioning seat is restricted.

[0012] Preferably, the locking assembly includes a locking bolt and a locking nut. A first through hole is formed in the connecting seat, and a second through hole is formed in the hook block. Both the first through hole and the second through hole are for the locking bolt to pass through. The locking bolt is threadedly connected to the locking nut, and the large end of the locking bolt cooperates with the locking nut to clamp the hook block and the connecting seat.

[0013] Compared with the prior art, the utility model has the following beneficial effects:

[0014] In this application, since the rotary driving device, the rotary disk, the convolution disk, and the tension driving device in the tape winding machine are all installed in the middle of the moving seat, a connecting mechanism is designed in this application so that the middle of the moving seat can be supported by the sliding seat through the connecting mechanism. Since a linear driving device for driving the cutting device to move needs to be installed at the end of the support platform away from the motor, the lead screw is only connected to the output shaft of the motor for support. At the same time, in order to reduce the burden at the output shaft of the motor, a rotatable support roller is installed on the sliding seat, and the first groove forms a support surface to support the walking of the support roller. At the same time, a second groove is formed by the depression at the bottom of the first groove for the lead screw to be placed, so as to realize that the sliding seat is suspended on the support surfaces on both sides of the top of the second groove through the support roller, ensuring that the sliding seat can be suspended and supported, so that the lead screw is not only the support point at the output shaft of the motor, but also has a support point at the sliding seat. The sliding seat supports the middle of the moving seat through the connecting mechanism, reducing the probability of deformation of the middle of the moving seat, and at the same time, the support roller can ensure the smooth sliding of the sliding seat.

[0015] Other advantages, objectives, and features of the utility model will be partially reflected by the following description, and partially will also be understood by those skilled in the art through the research and practice of the utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic structural diagram of the conveying device of the tape winding execution device in the main cable tape winding equipment.

[0017] Figure 2 It is a schematic structural diagram of the conveying device of the tape winding execution device in the main cable tape winding equipment.

[0018] Figure 3 It is a schematic structural diagram of the sliding seat, the connecting mechanism, the mounting mechanism, and the moving seat.

[0019] Reference numerals: support platform 1, first groove 11, second groove 12, moving seat 2, connecting mechanism 3, hook block 31, connecting seat 32, locking assembly 33, guide rail 4, linear driving device 5, motor 51, lead screw 52, sliding seat 53, support roller 54, convex ring 540, mounting mechanism 55, cover body 551, lower positioning seat 552, upper positioning seat 553, rotating shaft 554, lifting rod 555, spring 556, first protruding block 557, second protruding block 558. Detailed implementation manners

[0020] In order to make the technical means, creative features, achieved purposes and functions realized by the present utility model clearer and easier to understand, the present utility model will be further described below in conjunction with the accompanying drawings and specific implementation manners.

[0021] As Figures 1 to 3 shown, the present utility model discloses a conveying device of a tape winding execution device in a main cable tape winding device, including: a support platform 1, a moving seat 2, a connecting mechanism 3, a guide rail 4 and a linear driving device 5; a guide rail 4 is installed on the support platform 1, and a moving seat 2 capable of sliding in the X direction is installed on the guide rail 4. The guide rail 4 is located on both sides of the moving seat 2. A rotation driving device, a rotating disk, a convolution disk and a tensioning driving device in the tape winding machine are installed on the middle part of the moving seat 2, and a linear driving device 5 is installed on the support platform 1 in the tape winding machine; the linear driving device 5 includes: a motor 51, a lead screw 52 and a sliding seat 53. The motor 51 is installed at one end of the support platform 1, and the output end of the motor 51 is connected to one end of the lead screw 52. The lead screw 52 is located in the X direction and is located below the middle part of the moving seat 2. The lead screw 52 is the output part of the linear driving device 5, and a sliding seat 53 is threadedly connected to the lead screw 52; a first groove 11 is formed by recessing the top surface of the support platform 1. The first groove 11 is located between the two guide rails 4, and the inner bottom wall of the first groove 11 is a supporting surface. A second groove 12 is formed by recessing the inner bottom wall of the first groove 11. The lead screw 52 is located in the second groove 12. A support roller 54 is installed on the sliding seat 53, and the support roller 54 is supported by the supporting surface; a connecting mechanism 3 is installed between the sliding seat 53 and the moving seat 2, and the connecting mechanism 3 detachably connects the sliding seat 53 and the moving seat 2.

[0022] An installation mechanism 55 is installed on the sliding seat 53, and a rotatable support roller 54 is detachably installed on the installation mechanism 55.

[0023] The connecting mechanism 3 restricts the installation mechanism 55 from releasing the rotatable support roller 54.

[0024] The installation mechanism 55 includes: a cover body 551, a lower positioning seat 552, an upper positioning seat 553, a rotating shaft 554, a lifting rod 555, and a spring 556. The cover body 551 is connected to the sliding seat 53. A lifting rod 555 capable of moving in the Y direction is installed on the cover body 551. The lifting rod 555 is fixed to the upper positioning seat 553. A first arc-shaped groove is formed by the depression on the bottom surface of the upper positioning seat 553. A lower positioning seat 552 protrudes from the cover body 551. A second arc-shaped groove is formed by the depression on the top surface of the lower positioning seat 552. The rotating shaft 554 is placed in the first arc-shaped groove. The rotating shaft 554 is in the Z direction. The rotating shaft 554 passes through the support roller 54. A convex ring 540 protrudes from the side of the support roller 54 close to the lower positioning seat 552. The support roller 54 is placed in the first arc-shaped groove. The convex ring 540 is located between the bottom of the upper positioning seat 553 and the lower positioning seat 552. A spring 556 is connected between the upper positioning seat 553 and the cover body 551. The elastic force of the spring 556 is used to make the inner wall of the first arc-shaped groove press tightly against the support roller 54.

[0025] The connecting mechanism 3 includes: a hook block 31, a connecting seat 32, and a locking assembly 33. The connecting block is fixed to the moving seat 2. A moving groove for the hook block 31 to move in the Y direction is formed at the bottom of the connecting block. The locking assembly 33 positions the hook block 31 and the connecting seat 32. After the hook block 31 is positioned on the connecting seat 32 by the locking assembly 33, the hook block 31 hooks the upper positioning seat 553.

[0026] A first protruding block 557 and a second protruding block 558 protrude from the top surface of the upper positioning seat 553. A slot is formed between the first protruding block 557 and the second protruding block 558. The slot is for the hook block 31 to extend into. The guide rail 4 restricts the movement of the moving seat 2 in the Y direction. After the hook block 31 extends into the slot, it restricts the rise of the upper positioning seat 553.

[0027] The locking assembly 33 includes: a locking bolt and a locking nut. A first through hole is formed on the connecting seat 32. A second through hole is formed on the hook block 31. Both the first through hole and the second through hole are for the locking bolt to pass through. The locking bolt is threadedly connected to the locking nut. The large end of the locking bolt cooperates with the locking nut to clamp the hook block 31 and the connecting seat 32.

[0028] When installing the support roller 54, first, move the moving seat 2 beside the sliding seat 53. The bottom of the moving seat 2 is penetrated by the guide rail 4. Due to the guide rail 4, the moving seat 2 cannot move in the Y direction and can only move in the X direction. Then, pass the rotating shaft 554 through the upper positioning seat 553 and the cover body 551. Both ends of the rotating shaft 554 protrude from the side of the upper positioning seat 553, and the rotating shaft 554 is in the Z direction. Then, pull the upper positioning seat 553 and the cover body 551 apart to create enough space to insert the convex ring 540 on the support roller 54. Then, put the support roller 54 on the end of the rotating shaft 554, and place the convex ring 540 at a position where it can be stuck between the bottom of the upper positioning seat 553 and the lower positioning seat 552. Then, release the upper positioning seat 553, and under the elastic force of the spring 556, keep the convex ring 540 between the bottom of the upper positioning seat 553 and the upper positioning seat 553. Then, raise the hook block 31 to avoid the low position of the hook block 31 affecting the movement of the moving seat 2. Then, move the moving seat 2 so that the hook block 31 aligns with the slot between the first protruding block 557 and the second protruding block 558. Finally, release the hook block 31, keep the hook block 31 pressing the upper positioning seat 553, and at the same time use the locking assembly 33 to lock the hook block 31 and the connecting seat 32 to maintain this state.

[0029] The hook block 31 presses the upper positioning seat 553, and the moving seat 2 exerts the gravity of the moving seat 2 on the support roller 54 beside the sliding seat 53 through the connecting seat 32 and the locking assembly 33, so that the support roller 54 beside the sliding seat 53 supports the middle part of the moving seat 2, and at the same time the support roller 54 suspends the sliding seat 53 and the lead screw 52.

[0030] Since the guide rail 4 restricts the movement of the moving seat 2 in the Y direction, after the hook block 31 on the moving seat 2 is inserted into the slot, it can move in the X direction together with the sliding seat 53.

[0031] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the purpose and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.

Claims

1. The conveying device of the tape-wrapping execution device in the main cable tape-wrapping equipment, characterized in that, Comprising: A support platform (1), a moving seat (2), a connecting mechanism (3), a guide rail (4), and a linear driving device (5); The support platform (1) is provided with a guide rail (4), and a moving seat (2) capable of sliding in the X direction is mounted on the guide rail (4). The guide rail (4) is located on both sides of the moving seat (2). In the middle of the moving seat (2), a rotary driving device, a rotary disk, a convolution disk, and a tension driving device in a tape winding machine are mounted. A linear driving device (5) is mounted on the support platform (1) in the tape winding machine; The linear driving device (5) includes: a motor (51), a lead screw (52), and a sliding seat (53). The motor (51) is mounted at one end of the support platform (1), and the output end of the motor (51) is connected to one end of the lead screw (52). The lead screw (52) is located in the X direction and is below the middle of the moving seat (2). The lead screw (52) is the output part of the linear driving device (5), and a sliding seat (53) is threadedly connected to the lead screw (52); A first groove (11) is formed by recessing the top surface of the support platform (1). The first groove (11) is located between the two guide rails (4). The inner bottom wall of the first groove (11) is a support surface. A second groove (12) is formed by recessing the inner bottom wall of the first groove (11). The lead screw (52) is located in the second groove (12). A support roller (54) is mounted on the sliding seat (53), and the support roller (54) is supported by the support surface; A connecting mechanism (3) is mounted between the sliding seat (53) and the moving seat (2), and the connecting mechanism (3) detachably connects the sliding seat (53) and the moving seat (2).

2. The conveying device of the tape winding execution device in the main cable tape winding device according to claim 1, characterized in that, An installation mechanism (55) is mounted on the sliding seat (53), and a rotatable support roller (54) is detachably mounted on the installation mechanism (55).

3. The conveying device of the tape winding execution device in the main cable tape winding device according to claim 2, characterized in that The connecting mechanism (3) restricts the installation mechanism (55) from releasing the rotatable support roller (54).

4. The conveying device of the tape winding execution device in the main cable tape winding device according to claim 3, characterized in that, The installation mechanism (55) includes: a cover body (551), a lower positioning seat (552), an upper positioning seat (553), a rotating shaft (554), a lifting rod (555), and a spring (556). The cover body (551) is connected to the sliding seat (53). A lifting rod (555) capable of moving in the Y direction is mounted on the cover body (551). The lifting rod (555) is fixed to the upper positioning seat (553). A first arc-shaped groove is formed by recessing the bottom surface of the upper positioning seat (553). A lower positioning seat (552) protrudes from the cover body (551), and a second arc-shaped groove is formed by recessing the top surface of the lower positioning seat (552). The rotating shaft (554) is placed in the first arc-shaped groove. The rotating shaft (554) is located in the Z direction. The rotating shaft (554) passes through the support roller (54). A convex ring (540) protrudes from the side of the support roller (54) close to the lower positioning seat (552). The support roller (54) is placed in the first arc-shaped groove, and the convex ring (540) is located between the bottom of the upper positioning seat (553) and the lower positioning seat (552). A spring (556) is connected between the upper positioning seat (553) and the cover body (551), and the elastic force of the spring (556) is used to make the inner wall of the first arc-shaped groove press against the support roller (54).

5. The conveying device of the tape winding execution device in the main cable tape winding device according to claim 4, characterized in that, The connecting mechanism (3) includes: a hook block (31), a connecting seat (32), and a locking assembly (33). The connecting block is fixed to the moving seat (2). A moving groove for the hook block (31) to move in the Y direction is formed at the bottom of the connecting block. The locking assembly (33) positions the hook block (31) and the connecting seat (32), and after the hook block (31) is positioned on the connecting seat (32) by the locking assembly (33), the hook block (31) hooks the upper positioning seat (553).

6. The conveying device of the tape winding execution device in the main cable tape winding device according to claim 5, characterized in that, A first protruding block (557) and a second protruding block (558) are formed protruding from the top surface of the upper positioning seat (553). A slot is formed between the first protruding block (557) and the second protruding block (558). The slot is for the hook block (31) to extend into. The guide rail (4) restricts the moving seat (2) from moving in the Y direction. After the hook block (31) extends into the slot, it restricts the upper positioning seat (553) from rising.

7. The conveying device of the tape winding execution device in the main cable tape winding equipment according to claim 6, characterized in that, The locking assembly (33) includes: a locking bolt and a locking nut. A first through hole is formed in the connecting seat (32), and a second through hole is formed in the hook block (31). Both the first through hole and the second through hole are for the locking bolt to pass through. The locking bolt is threadedly connected to the locking nut, and the large end of the locking bolt cooperates with the locking nut to clamp the hook block (31) and the connecting seat (32).

Citation Information

Patent Citations

  • A tape wrapping machine

    CN111115393B