Rope winding mechanism applied to glass production
By designing an automated rope winding mechanism and using a tension sensor to control the rope winding drive component, the problems of time-consuming and labor-intensive manual rope winding and easy damage to glass have been solved, realizing the automatic recycling and efficient handling of glass ropes.
Patent Information
- Application Number
- CN202423284722.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-30
AI Technical Summary
In the glass production process, manual winding of the wire is time-consuming and labor-intensive, and it is easy for the wire to become tangled and knotted. In addition, the glass is prone to scratches and breakage during handling.
A rope winding mechanism was designed, comprising a rope winding frame, a rope winding base, a rope winding drive assembly, a guide bracket, a tension sensor, and a control cabinet. The tension sensor detects changes in rope tension and automatically controls the start and stop of the rope winding drive assembly to achieve automatic retrieval of the glass rope.
It enables automated recycling of glass ropes, reduces tedious manual operations, improves efficiency, and avoids rope tangling and glass damage.
Smart Images

Figure CN223575627U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass production auxiliary equipment technical field, especially a kind of rope collection mechanism applied to glass production. BACKGROUND
[0002] Flat glass is stacked on glass shelves or carts during transfer between different processes in production, processing and transportation process, surface scratches are easily generated due to mutual extrusion of glass in this process, and breakage is easily caused to cause loss;The traditional method is to manually lay a line to separate the glass, and manual winding is also used when glass needs to be transported and processed.
[0003] However, in the process of winding, glass is moved one by one by manual, so manual winding step needs to be repeated constantly, which is time-consuming and laborious, and the line is easily entangled and knotted when manually winding, which is very troublesome. SUMMARY
[0004] In order to overcome the deficiencies of the prior art, the utility model provides a kind of rope collection mechanism applied to glass production.
[0005] The utility model solves the technical scheme that the utility model discloses a kind of rope collection mechanism applied to glass production, including:
[0006] A kind of rope collection mechanism applied to glass production, including:
[0007] Rope collection frame, installation crossbeam is equipped on its upper end;
[0008] Rope winding base, it is symmetrically equipped in the installation crossbeam two ends, and its upper end is also respectively rotationally equipped with rope winding reel;
[0009] Rope winding drive assembly, it is correspondingly equipped on the rope winding base, for driving the rotation of the rope winding reel;
[0010] Guide support, it is correspondingly equipped on the rope winding base away from the rope winding reel one end;
[0011] Tension sensor, it is equipped on the guide support;
[0012] Control cabinet, it is equipped on the rope collection frame, and it is electrically connected or signal connection with the tension sensor and the rope winding drive assembly.
[0013] As described above, a kind of rope collection mechanism applied to glass production, the guide support includes vertical pole equipped on the rope winding base away from the rope winding reel one end, guide plate equipped on the vertical pole upper end, and vertical plate equipped on the guide plate, guide through hole is also respectively opened in the guide plate two ends and the vertical plate, and the tension sensor is equipped on the vertical plate close to the guide through hole.
[0014] The application relates to a rope collecting mechanism applied to glass production, and the guide plate is additionally provided with a wire guide.
[0015] The application relates to a rope collecting mechanism applied to glass production, and the vertical plate is additionally provided with a plurality of installation grooves for installing the tension sensors.
[0016] The application relates to a rope collecting mechanism applied to glass production, and the two ends of the guide plate are respectively upwardly inclined, and the two guide through holes are arranged at the inclined parts.
[0017] The application relates to a rope collecting mechanism applied to glass production, and the winding rope driving assembly comprises a driving motor arranged at the lower end of the winding rope base, a driving transmission wheel arranged at the output end of the driving motor, and a driven transmission gear arranged at the lower end of the winding rope reel and meshed with the driving transmission wheel.
[0018] The application relates to a rope collecting mechanism applied to glass production, and the winding rope reel comprises a base plate and a winding rope column vertically arranged along the center of the base plate.
[0019] The application relates to a rope collecting mechanism applied to glass production, and the winding rope base is additionally provided with a limiting piece through which the rope can pass.
[0020] The application relates to a rope collecting mechanism applied to glass production, and the rope collecting frame comprises a base frame and a plurality of vertical rods upwardly arranged on the base frame, and the installation cross beam is arranged at the upper end of the vertical rods.
[0021] The application relates to a rope collecting mechanism applied to glass production, and the lower end of the base frame is additionally provided with a plurality of universal wheels with locks.
[0022] The application has the advantages that: the structure is simple, when the glass is stacked on the glass stacking frame, the rope of the last piece of glass is pulled out, sequentially passes through the guide support and the tension sensor, and is connected to the winding rope reel; when the glass needs to be carried and processed, the winding rope driving assembly is started to drive the winding rope reel to rotate and wind and recover the rope, until the outermost rope section is recovered, the next rope section is still in the pressed fixed state, the winding rope reel pulls the rope again to increase the tension of the rope and trigger the tension sensor, the tension sensor outputs a signal to the control cabinet, the control cabinet controls the winding rope driving assembly to stop, and the automatic recovery and stop of the outermost rope section are completed; when the glass with the pressed rope is taken away, the tension of the rope is reduced, the tension sensor is disconnected again, the winding rope driving assembly is started again to drive the winding rope reel to continue winding and recovering the rope, and the whole rope collecting process is automatically completed, which is practical and convenient and greatly improves the efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.
[0024] Figure 1 is a structure schematic diagram of a rope collecting mechanism applied to glass production.
[0025] Figure 2 For Figure 1 is an enlarged schematic view of A in the figure.
[0026] Figure 3 For Figure 1 is an enlarged schematic view of B in the figure. DETAILED DESCRIPTION
[0027] The technical solutions of the present application will be described in detail below in combination with the drawings and embodiments.
[0028] Please refer to Figures 1 to 3 , the present application provides a rope collecting mechanism applied to glass production, which comprises:
[0029] The rope collecting frame 1 is provided with an installation beam 10 at its upper end;
[0030] The rope winding base 2 is symmetrically arranged at both ends of the installation beam 10, and a rope winding reel 20 is further rotatably arranged at one end of the rope winding base 2;
[0031] The rope winding driving assembly 3 is correspondingly arranged on the rope winding base 2 and is used for driving the rope winding reel 20 to rotate;
[0032] The guide support 4 is correspondingly arranged at one end of the rope winding base 2 away from the rope winding reel 20;
[0033] The tension sensor 5 is arranged on the guide support 4;
[0034] The control cabinet 6 is arranged on the rope collecting frame 1 and is electrically or signal connected with the tension sensor 5 and the rope winding driving assembly 3.
[0035] In use, the rope 100 of the last piece of glass on the glass stacking frame is pulled out, sequentially passes through the guide bracket 4 and the tension sensor 5, and is connected to the winding reel 20. When the glass needs to be carried for winding, the winding drive assembly 3 is started to drive the winding reel 20 to rotate to wind and recover the rope 100. When the outermost rope section is recovered, the next rope section is still in the pressed fixed state, and the winding reel 20 pulls the rope 100 again to make the rope tension larger to trigger the tension sensor 5. The tension sensor 5 outputs a signal to the control cabinet 6 after being triggered, so that the control cabinet 6 controls the winding drive assembly 3 to stop, thereby automatically recovering and stopping the outermost rope section, which is practical and convenient. When the glass with the rope is taken away, the rope tension becomes smaller, the tension sensor 5 is disconnected again, the winding drive assembly 3 is started again to drive the winding reel 20 to rotate to continue winding and recovering the rope, and the cycle is repeated, thereby automatically completing the whole winding process, which is practical and convenient and greatly improves the efficiency.
[0036] In the embodiment, the working principle of the tension sensor 5 and the control working principle of the control cabinet 6 are both prior art commonly used in the field, and will not be described in detail.
[0037] Further, the guide bracket 4 comprises a vertical rod 41 arranged on the end of the winding base 2 away from the winding reel 20, a guide plate 42 arranged on the upper end of the vertical rod 41, and a vertical plate 43 arranged on the guide plate 42, and guide through holes 44 are arranged on both ends of the guide plate 42 and the vertical plate 43, and the tension sensor 5 is arranged on the vertical plate 43 close to the guide through holes 44.
[0038] Further, the guide plate 42 is further provided with a wire guide 7.
[0039] In the embodiment, the rope 100 of the last piece of glass on the glass stacking frame is pulled out, sequentially passes through the guide through holes 44 on the side of the guide plate 42 close to the glass stacking frame, the guide through holes 44 on the vertical plate 43, the wire guide 7, and the guide through holes 44 on the other end of the guide plate 42, and is connected to the winding reel 20. Since the tension sensor 5 is arranged on the vertical plate 43 close to the guide through holes 44, when the rope tension becomes larger (after the outermost rope section is recovered, and the next rope section is still in the pressed fixed state), the rope section at the guide through holes 44 on the vertical plate 43 moves downward to press on the tension sensor 5, thereby triggering the tension sensor 5 and outputting a signal to the control cabinet 6, so that the control cabinet 6 controls the winding drive assembly 3 to stop.
[0040] Specifically, the guide plate 42 is inclined upward at both ends, and the guide through holes 44 are arranged on the inclined parts. The direction of the guide through holes 44 matches the pulling direction of the rope, so as to ensure the smooth winding process.
[0041] Specifically, the upright plate 43 is further provided with a plurality of mounting grooves 430 for mounting the tension sensor 5. The tension sensor 5 is detachably mounted by screwing through the mounting grooves 430, facilitating the maintenance and replacement of the tension sensor 5.
[0042] Further, the rope winding driving assembly 3 comprises a driving motor 31 arranged at the lower end of the rope winding base 2, a driving transmission wheel 32 arranged at the output end of the driving motor 31, and a driven transmission gear 33 arranged at the lower end of the rope winding reel 20 and engaged with the driving transmission wheel 32.
[0043] When winding, the driving motor 31 drives the driving transmission wheel 32 to rotate, thereby driving the driven transmission gear 33 and the rope winding reel 20 to rotate, and further winding and recovering the rope 100, which is convenient and practical.
[0044] Specifically, the rope winding reel 20 comprises a bottom disc 201 and a rope winding column 202 vertically extending along the center of the bottom disc 201.
[0045] The rope winding base 2 is further provided with a limiting member 8 through which the rope 100 passes.
[0046] The limiting member 8 guides the rope 100 to be orderly wound on the rope winding column 202, which is convenient and practical.
[0047] Further, the rope winding frame 1 comprises a bottom frame 11 and a plurality of upright rods 12 extending upwardly from the bottom frame 11, and the mounting beam 10 is arranged at the upper end of the upright rods 12.
[0048] The bottom frame 11 is further provided with a plurality of universal wheels 13 with locks at the lower end. This facilitates the transfer of the rope winding mechanism, which is convenient and practical.
[0049] In summary, in use, the glass stack frame is pulled out of the last piece of glass rope 100, which is sequentially threaded through the guide bracket 4 and the tension sensor 5 and connected to the winding reel 20. When the glass needs to be carried for processing, the winding drive assembly 3 is started to drive the winding reel 20 to rotate and thereby wind and recover the rope 100. When the outermost rope section is recovered, the next rope section is still in a pressed and fixed state, so that when the winding reel 20 pulls the rope 100 again, the rope tension will increase to trigger the tension sensor 5. The tension sensor 5 outputs a signal to the control cabinet 6 after being triggered, so that the control cabinet 6 controls the winding drive assembly 3 to stop, thereby automatically recovering and stopping the outermost rope, which is practical and convenient. When the glass with the rope is taken away, the rope tension decreases, the tension sensor 5 is disconnected again, the winding drive assembly 3 is started again to drive the winding reel 20 to rotate and continue to wind and recover the rope, and the cycle is repeated, thereby automatically completing the entire winding process, which is practical and convenient and greatly improves the efficiency.
[0050] The above is only an embodiment of the present application, and does not limit the patent range of the present application. Any equivalent structure or direct or indirect application in other related technical fields based on the content of the present application specification and drawings is also included in the patent protection range of the present application.
Claims
1. A rope collecting mechanism applied to glass production, characterized in that, The utility model relates to a winding machine frame (1) which is provided with a mounting beam (10) at the upper end, a winding base (2) which is symmetrically arranged at the two ends of the mounting beam (10) and is further provided with a winding reel (20) which is rotatably arranged at the upper end of the winding base (2), a winding drive assembly (3) which is arranged on the winding base (2) and is used for driving the winding reel (20) to rotate, a guide support (4) which is arranged on the winding base (2) away from the winding reel (20), a tension sensor (5) which is arranged on the guide support (4), and a control cabinet (6) which is arranged on the winding machine frame (1) and is electrically or signal connected with the tension sensor (5) and the winding drive assembly (3). The guide support (4) comprises a vertical rod (41) which is arranged on the winding base (2) away from the winding reel (20), a guide plate (42) which is arranged at the upper end of the vertical rod (41), and a vertical plate (43) which is arranged on the guide plate (42), and the guide plate (42) is further provided with a guide through hole (44) at each end thereof and the vertical plate (43), and the tension sensor (5) is arranged on the vertical plate (43) close to the guide through hole (44). The guide plate (42) is further provided with a wire guide (7). The vertical plate (43) is further provided with a plurality of mounting grooves (430) for mounting the tension sensor (5). The guide plate (42) is inclined upward at each end thereof, and the two guide through holes (44) are arranged on the inclined portions. The winding drive assembly (3) comprises a driving motor (31) which is arranged at the lower end of the winding base (2), a driving transmission wheel (32) which is arranged at the output end of the driving motor (31), and a driven transmission gear (33) which is arranged at the lower end of the winding reel (20) and is in mesh transmission with the driving transmission wheel (32). The winding reel (20) comprises a base plate (201) and a winding column (202) which is vertically arranged along the center of the base plate (201).
2. The rope collecting mechanism for glass production according to claim 1, characterized in that: The winding base (2) is further provided with a limiting piece (8) through which a rope (100) can pass.
3. The rope collecting mechanism for glass production according to claim 2, characterized in that: The winding machine frame (1) comprises a base frame (11) and a plurality of vertical rods (12) which are arranged on the base frame (11) and extend upward, and the mounting beam (10) is arranged at the upper end of the vertical rods (12).
4. The rope collecting mechanism for glass production according to claim 2, characterized in that: The base frame (11) is further provided with a plurality of universal wheels (13) which are provided with locks.
5. The rope collecting mechanism for glass production according to claim 2, characterized in that: 6. The rope collecting mechanism for glass production according to claim 1, characterized in that: 7. The take-up mechanism for use in glass production according to claim 1, characterized in that: 8. The rope collecting mechanism for glass production according to claim 1, characterized in that: 9. The rope collecting mechanism for glass production according to claim 1, characterized in that: 10. The take-up mechanism for use in glass production according to claim 9, characterized in that: