Separating rope mechanism applied to glass storage

By designing an automated rope-separating mechanism, the problems of time-consuming, labor-intensive, and safety hazards associated with manual operation were solved, achieving efficient, safe, and automated operation for glass storage.

CN223547240UActive Publication Date: 2025-11-14ZHONGSHAN XINYI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202423263332.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-14
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In the current technology, when storing glass, manually placing ropes is time-consuming, labor-intensive, inefficient, and poses safety hazards.

Method used

Design a rope-separating mechanism that includes a base frame, columns, a feeding module, a rope-releasing module, and a control box. Utilize the feeding module and the rope-releasing module to automatically operate the rope, thereby achieving automatic rope-separating operation for glass placement.

Benefits of technology

It has automated the glass placement process, improving efficiency, reducing safety hazards, and enhancing work safety and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rope separating mechanism applied to glass storage, which comprises a bottom frame, a plurality of rope barrels and a rope separating mechanism, the stand column extends upwards to be arranged on the bottom frame, and a cross beam sectional material is detachably connected to the stand column; the feeding modules are symmetrically arranged at the two ends of the cross beam profile, and feeding beams are movably arranged on the feeding modules respectively; the rope releasing module is correspondingly arranged at the end, away from the cross beam profile, of the feeding beam; and the control box is arranged on the bottom frame. During use, the bottom frame is moved to one side of the glass placing frame, after a first piece of glass is placed on the glass placing frame, the control box controls the feeding module to be started to drive the cross beam sectional material to extend out of the glass placing frame, then the rope releasing module is started to pull a rope to fall to the bottom, and after the rope reaches the bottom, the feeding module is started again to drive the cross beam sectional material to automatically return. And meanwhile, the next piece of glass can be automatically placed by front-end equipment, automatic rope separation operation of glass placement is achieved, safety is high, and efficiency is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of glass storage auxiliary equipment, and in particular to a rope-separating mechanism for glass storage. Background Technology

[0002] When glass is removed from the shelf, in order to prevent scratches and adhesion between the glass pieces, clips or ropes need to be placed between them so that each piece of glass does not come into direct contact, which facilitates subsequent processes.

[0003] Currently, this process is mostly done manually, with each piece of glass placed and a rope strung together repeatedly. This method is time-consuming, labor-intensive, and inefficient. Furthermore, workers are prone to bumping into things during operation, which can scratch the glass and poses significant safety hazards. Summary of the Invention

[0004] In order to overcome the shortcomings of the prior art, this utility model provides a rope-separating mechanism for glass storage.

[0005] The technical solution adopted by this utility model to solve its technical problem is:

[0006] A rope-separating mechanism for glass storage includes:

[0007] The base frame has several rope buckets mounted on it;

[0008] The uprights extend upwards onto the base frame, and crossbeam profiles can be detachably connected to them.

[0009] A feeding module is symmetrically arranged at both ends of the crossbeam profile, and a feeding beam is movably mounted on it. The feeding module can drive the feeding beam to move vertically relative to the crossbeam profile.

[0010] A rope-releasing module is provided at the end of the feed beam away from the crossbeam profile, wherein the rope in the rope drum is pulled out, passes through the feed beam, and is connected to the rope-releasing module;

[0011] The control box, located on the base frame, can control the start-up or shutdown of the feeding module and the rope-releasing module respectively.

[0012] As described above, a rope-separating mechanism for glass storage includes a feeding module comprising a feeding seat detachably connected to the crossbeam profile, a slide groove formed at the lower end of the feeding seat, a feeding beam slidably inserted into the slide groove, and a driver for driving the feeding beam to move along the slide groove on one side of the feeding seat.

[0013] As described above, in a rope-separating mechanism for glass storage, a first transmission wheel and a second transmission wheel are respectively rotatably provided at both ends of the feed beam. The first transmission wheel is located on one end of the crossbeam profile on the feed beam. The rope in the rope bucket is pulled out, passes around the second transmission wheel and the first transmission wheel respectively, and hangs vertically downward.

[0014] As described above, a rope-separating mechanism for glass storage includes a rope-releasing module comprising a rope-releasing wheel rotatably mounted on the feed beam and capable of pressing the rope against the first transmission wheel, and a rope-releasing motor for driving the rope-releasing wheel to rotate and move the rope.

[0015] As described above, in a rope-separating mechanism for glass storage, the driver is a feed servo motor.

[0016] As described above, in a rope-separating mechanism for glass storage, the base frame is further provided with rope drum brackets for mounting the rope drums. The upper end of the rope drum bracket is also provided with a limiting ring. The rope inside the rope drum is pulled out, passes through the limiting ring, then passes through the feed beam and is connected to the rope-releasing module.

[0017] As described above, in a rope-separating mechanism for glass storage, a height adjustment structure is also provided between the column and the crossbeam profile.

[0018] As described above, a rope-separating mechanism for glass storage includes a height-adjusting structure comprising a plurality of threaded connection holes formed on the column and arranged along its height direction, and a connecting plate provided on the crossbeam profile and capable of connecting to the threaded connection holes.

[0019] As described above, a rope-separating mechanism for glass storage is provided at the lower end of the base frame, which also has multiple lockable casters.

[0020] As described above, in a glass storage cord-proof mechanism, the column is further provided with a handle assembly, and the handle assembly is further provided with an auxiliary control box that is signal-connected to the control box.

[0021] The beneficial effects of this utility model are as follows: This application has a simple structure. When stacking glass, the base frame is moved to one side of the glass placement rack, and the rope-laying module faces the glass placement rack. After the first piece of glass is placed on the glass placement rack, the control box controls the feeding module to start, which drives the crossbeam profile to extend towards the glass placement rack. Then the rope-laying module starts and pulls the rope down to the bottom. After the rope reaches the bottom, the feeding module starts again, which drives the crossbeam profile to automatically retract, so that the rope automatically sticks to the glass. At the same time, it is convenient for the front-end equipment to automatically place the next piece of glass. The cycle works to realize the automatic rope-laying operation of glass placement. No manual operation is required, the safety is high, and the efficiency is greatly improved. It is practical and convenient. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of a rope-separating mechanism for glass storage according to an embodiment of the present invention.

[0024] Figure 2 This is a partial structural schematic diagram of a rope-separating mechanism for glass storage according to an embodiment of the present invention.

[0025] Figure 3 This is an enlarged view of the height adjustment structure described in an embodiment of this utility model. Detailed Implementation

[0026] The technical solution of this utility model will be described in detail below with reference to the accompanying drawings and embodiments.

[0027] Please see Figures 1 to 3 As shown, this application embodiment provides a rope-separating mechanism for glass storage, comprising:

[0028] Base frame 1, on which several rope buckets 10 are provided;

[0029] The column 2 extends upward and is mounted on the base frame 1, and a crossbeam profile 20 can be detachably connected to it;

[0030] The feed module 3 is symmetrically arranged at both ends of the crossbeam profile 20, and feed beams 30 are movably mounted on it respectively. The feed module 3 can drive the feed beams 30 to move vertically relative to the crossbeam profile 20.

[0031] The rope release module 4 is correspondingly provided at the end of the feed beam 30 away from the crossbeam profile 20, wherein the rope 100 in the rope bucket 10 is pulled out, passes through the feed beam 30, and is connected to the rope release module 4;

[0032] The control box 5, located on the base frame 1, can control the start or stop of the feeding module 3 and the rope releasing module 4 respectively.

[0033] When stacking glass is required, move the base frame 1 to one side of the glass placement rack and align the rope-laying module 4 with the glass placement rack. Once the first piece of glass is placed on the glass placement rack, the control box 5 controls the feeding module 3 to start, causing the crossbeam profile 20 to extend towards the glass placement rack. Then, the rope-laying module 4 starts, pulling the rope 100 down to the bottom. After the rope reaches the bottom, the feeding module starts again, causing the crossbeam profile 20 to automatically retract, so that the rope 100 automatically adheres to the glass. This facilitates the automatic placement of the next piece of glass by the front-end equipment. This cycle repeats, achieving automatic rope-separated operation for glass placement. It requires no manual operation, is highly safe, and greatly improves efficiency, making it practical and convenient.

[0034] Furthermore, the feed module 3 includes a feed seat 31 detachably connected to the crossbeam profile 20, a slide groove 32 opened at the lower end of the feed seat 31, the feed beam 30 being slidably inserted into the slide groove 32, and a driver 33 for driving the feed beam 30 to move along the slide groove 32 is also provided on one side of the feed seat 31.

[0035] The feed beam 30 is also provided with a first transmission wheel 34 and a second transmission wheel 35 at both ends. The first transmission wheel 34 is located on the feed beam 30 at one end of the crossbeam profile 20. The rope 100 in the rope bucket 10 is pulled out and passes around the second transmission wheel 35 and the first transmission wheel 34 and hangs vertically downward.

[0036] Specifically, the driver 33 is a feed servo motor.

[0037] In this embodiment, the working principle of the feed module 3 is as follows:

[0038] Once the first piece of glass is placed on the glass placement rack, the control box 5 activates the driver 33, causing the crossbeam profile 20 to extend towards the glass placement rack. Then, the rope release module 4 activates, pulling the rope 100 down to the bottom. After the rope reaches the bottom, the driver 33 activates again, causing the crossbeam profile 20 to automatically retract, allowing the rope 100 to automatically adhere to the glass. This facilitates the automatic placement of the next piece of glass by the front-end equipment, creating a cyclical process that achieves automatic rope-separated glass placement. This eliminates the need for manual operation, ensuring high safety and significantly improving efficiency, making it practical and convenient.

[0039] Furthermore, the rope release module 4 includes a rope release wheel 41 rotatably mounted on the feed beam 30 and capable of pressing the rope 100 against the first transmission wheel 34, and a rope release motor 42 for driving the rope release wheel 41 to rotate and move the rope 100.

[0040] In this embodiment, the working principle of the rope-releasing module 4 is as follows:

[0041] Once the first piece of glass is placed on the glass placement rack, the control box 5 starts the feeding module 3, causing the crossbeam profile 20 to extend towards the glass placement rack. Then, the rope release motor 42 starts, driving the rope release wheel 41 to rotate. As the rope release wheel 41 presses the rope 100 against the first transmission wheel 34, the rotation of the rope release wheel 41 simultaneously drives the first transmission wheel 34 to rotate, thus pulling the rope 100 down to the bottom. After the rope 100 reaches the bottom, the rope release motor 42 stops, and the driver 33 starts again, causing the crossbeam profile 20 to automatically retract, so that the rope automatically adheres to the glass. At the same time, it facilitates the automatic placement of the next piece of glass by the front-end equipment. This cycle repeats, realizing automatic rope-separated operation for glass placement. It requires no manual operation, is highly safe, and greatly improves efficiency, making it practical and convenient.

[0042] In this embodiment, the working principle of the controller of the control box 5 that controls the feed servo motor and the rope release motor 42 is a common existing technology in the field, and will not be described in detail here.

[0043] Furthermore, the base frame 1 is also provided with a rope bucket bracket 101 for installing the rope bucket 10. The upper end of the rope bucket bracket 101 is also provided with a limiting ring 102. After the rope 100 in the rope bucket 10 is pulled out, it passes through the limiting ring 102, then passes through the feed beam 30 and is connected to the rope release module 4.

[0044] Furthermore, a height adjustment structure 6 is provided between the column 2 and the crossbeam profile 20.

[0045] Specifically, the height adjustment structure 6 includes a plurality of threaded connection holes 61 formed on the column 2 and arranged along its height direction, and a connecting plate 62 provided on the crossbeam profile 20 and capable of being connected to the threaded connection holes 61.

[0046] When in use, calculate the required rope length based on the width of the glass to be placed, and then connect and install it through the connecting plate 62 and the threaded connection hole 61 of the corresponding height, so that the height of the rope below matches the required length. It is practical and convenient, can adapt to glass of different sizes, and has wide applicability.

[0047] Furthermore, the lower end of the base frame 1 is also equipped with multiple locking casters 7. This facilitates the movement of the rope separating machine and is practical and convenient.

[0048] Furthermore, the column 2 is also provided with a handle assembly 8, and the handle assembly 8 is also provided with an auxiliary control box 9 that is signal-connected to the control box 5.

[0049] The rope-separating machine can be transferred by pulling or pushing the handle assembly 8, and it can also be manually operated through the auxiliary control box 9, which is convenient for staff to make manual adjustments. It is practical and convenient.

[0050] In summary, in this embodiment, when stacking glass is required, the base frame 1 is moved to one side of the glass placement rack, and the rope-releasing module 4 faces the glass placement rack. After the first piece of glass is placed on the glass placement rack, the control box 5 controls the feeding module 3 to start, driving the crossbeam profile 20 to extend towards the glass placement rack. Then, the rope-releasing module 4 starts and pulls the rope 100 down to the bottom. After the rope reaches the bottom, the feeding module starts again, driving the crossbeam profile 20 to automatically retract, so that the rope 100 automatically adheres to the glass. At the same time, it is convenient for the front-end equipment to automatically place the next piece of glass. The cycle continues, realizing automatic rope-separated operation for glass placement. No manual operation is required, which is highly safe and greatly improves efficiency. It is practical and convenient.

[0051] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structure made using the contents of this utility model specification and drawings, or directly or indirectly applied to other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A rope-separating mechanism for glass storage, characterized in that, Including: The base frame (1) is provided with several rope buckets (10); The column (2) extends upward and is mounted on the base frame (1), and a crossbeam profile (20) can be detachably connected to it; The feed module (3) is symmetrically arranged at both ends of the crossbeam profile (20), and feed beams (30) are movably arranged on it respectively. The feed module (3) can drive the feed beams (30) to move in the vertical direction relative to the crossbeam profile (20). A rope release module (4) is provided at the end of the feed beam (30) away from the crossbeam profile (20), wherein the rope (100) in the rope bucket (10) is pulled out, passes through the feed beam (30), and is connected to the rope release module (4); The control box (5), located on the base frame (1), can control the start-up or shutdown of the feed module (3) and the rope release module (4) respectively.

2. The rope-separating mechanism for glass storage according to claim 1, characterized in that: The feed module (3) includes a feed seat (31) detachably connected to the crossbeam profile (20) and a slide groove (32) opened at the lower end of the feed seat (31). The feed beam (30) is slidably inserted into the slide groove (32). A driver (33) for driving the feed beam (30) to move along the slide groove (32) is also provided on one side of the feed seat (31).

3. The rope-separating mechanism for glass storage according to claim 2, characterized in that: The feed beam (30) is also provided with a first transmission wheel (34) and a second transmission wheel (35) at both ends. The first transmission wheel (34) is located on the feed beam (30) at one end of the crossbeam profile (20). The rope (100) in the rope bucket (10) is pulled out and passes around the second transmission wheel (35) and the first transmission wheel (34) respectively and hangs vertically downward.

4. The rope-separating mechanism for glass storage according to claim 3, characterized in that: The rope release module (4) includes a rope release wheel (41) rotatably mounted on the feed beam (30) and capable of pressing the rope (100) against the first transmission wheel (34), and a rope release motor (42) for driving the rope release wheel (41) to rotate so as to move the rope (100).

5. A rope-separating mechanism for glass storage according to claim 2, characterized in that: The driver (33) is a feed servo motor.

6. The rope-separating mechanism for glass storage according to claim 1, characterized in that: The base frame (1) is also provided with a rope bucket bracket (101) for installing the rope bucket (10). The upper end of the rope bucket bracket (101) is also provided with a limiting ring (102). The rope (100) in the rope bucket (10) is pulled out, passes through the limiting ring (102), passes through the feed beam (30), and is connected to the rope release module (4).

7. A rope-separating mechanism for glass storage according to claim 1, characterized in that: A height adjustment structure (6) is also provided between the column (2) and the crossbeam profile (20).

8. A rope-separating mechanism for glass storage according to claim 7, characterized in that: The height adjustment structure (6) includes a plurality of threaded connection holes (61) opened on the column (2) and arranged along its height direction, and a connecting plate (62) provided on the crossbeam profile (20) and capable of being connected to the threaded connection holes (61).

9. A rope-separating mechanism for glass storage according to claim 1, characterized in that: The lower end of the base frame (1) is also provided with multiple lockable casters (7).

10. A rope-separating mechanism for glass storage according to claim 1, characterized in that: The column (2) is also provided with a handle assembly (8), and the handle assembly (8) is also provided with an auxiliary control box (9) that is signal-connected to the control box (5).