An online glass storage mechanism

By designing an online glass storage mechanism with multi-layer synchronous belt and guide pulley module, the problem that existing equipment cannot achieve first-in-first-out storage is solved, and efficient and pollution-free storage and release of glass sheets are achieved.

CN110697421BActive Publication Date: 2025-06-10CHINA TRIUMPH INT ENG CO LTD
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Patent Information

Application Number
CN201911073069.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-11-05
Publication Date
2025-06-10
Estimated Expiration
2039-11-05

AI Technical Summary

Technical Problem

In the existing deep processing connections of glass, glass online storage devices cannot achieve first-in-first-out, resulting in glass plates being easily polluted by workshop environment during storage, affecting their power generation function.

Method used

A glass online storage mechanism is designed, and the first-in-first-out storage of glass sheets is realized by setting up a first-in-first-out storage of glass sheets by setting up a first-in-first-out storage of glass sheets.

Benefits of technology

This design meets the requirements of glass sheets first-in first-out, avoids contamination of glass during storage, and ensures the integrity of its power generation function.

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Abstract

The present invention discloses an on-line glass storage mechanism, which relates to the field of glass deep-processing warehousing equipment and includes a first guiding pulley module, a second guiding pulley module, a third guiding pulley module, an outer synchronous belt module, an inner synchronous belt module, a middle synchronous belt module, a glass support frame and a driving motor. The first guiding pulley module and the second guiding pulley module are arranged side by side, and the second guiding pulley module is arranged below the first guiding pulley module and the second guiding pulley module. The outer synchronous belt module, the inner synchronous belt module and the middle synchronous belt module are respectively connected to the first guiding pulley module, the second guiding pulley module and a plurality of third guiding pulley modules; the glass support frame is respectively connected to the outer synchronous belt module, the middle synchronous belt module and the inner synchronous belt module, and the driving motor is drivingly connected to the first guiding pulley module, which can meet the requirement of first-in first-out of glass sheets.
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Description

Technical Field

[0001] The present invention relates to the field of glass deep processing storage equipment, and particularly to an on-line glass storage mechanism. Background Art

[0002] In recent years, China's glass deep processing industry has developed rapidly, and new functional glasses have emerged continuously, such as ultra-thin glass, solar power generation glass, etc. During the production process, when local failures occur or the production line needs to be adjusted as a whole, a certain amount of glass plates need to be stored on-line. Especially in the production connection of cadmium telluride thin film solar cell substrate glass, higher process requirements are imposed on the on-line storage equipment, and functions such as first-in-first-out of glass on-line need to be achieved. Otherwise, the previously stored glass is likely to be contaminated by the workshop environment due to the failure to be transported out in time, thereby affecting its power generation function. In the current glass deep processing connection lines, most of the on-line storage equipment realizes the last-in-first-out of glass, which cannot meet its process requirements. Summary of the Invention

[0003] The purpose of the present invention is to provide an on-line glass storage mechanism to solve the above technical problems.

[0004] The technical solution adopted by the present invention is as follows:

[0005] An on-line glass storage mechanism includes:

[0006] A first guide pulley module;

[0007] A second guide pulley module, the first guide pulley module and the second guide pulley module are arranged side by side horizontally, and there is a gap between the first guide pulley module and the second guide pulley module;

[0008] A plurality of third guide pulley modules, the plurality of third guide pulley modules are arranged side by side horizontally under the first guide pulley module and the second guide pulley module, and the plurality of third guide pulley modules are arranged at equal intervals;

[0009] An outer synchronous belt module, the outer synchronous belt module connects the first guide pulley module, the second guide pulley module and the plurality of third guide pulley modules;

[0010] An inner synchronous belt module, the inner synchronous belt module is arranged inside the outer synchronous belt module, and the inner synchronous belt module connects the first guide pulley module, the second guide pulley module and the plurality of third guide pulley modules;

[0011] An intermediate synchronous belt module, the intermediate synchronous belt module is located between the outer synchronous belt module and the inner synchronous belt module, and the intermediate synchronous belt module is connected to the first guide pulley module, the second guide pulley module and a plurality of the third guide pulley modules;

[0012] A plurality of glass support frames, each of the glass support frames is respectively connected to the outer synchronous belt module, the intermediate synchronous belt module and the inner synchronous belt module;

[0013] A driving motor, the driving motor is drivingly connected to the first guide pulley module.

[0014] Preferably, the outer synchronous belt module includes two outer synchronous belt modules, and the two outer synchronous belt modules are arranged in parallel, and there is a gap between the two outer synchronous belt modules;

[0015] Each of the outer synchronous belt modules includes:

[0016] A first synchronous pulley, the first synchronous pulley is arranged on the side of the first guide pulley module away from the second guide pulley module;

[0017] A second synchronous pulley, the second synchronous pulley is arranged on the side of the second guide pulley module away from the first guide pulley module;

[0018] Two third synchronous pulleys, one of the third synchronous pulleys is respectively arranged on the lower side of the first synchronous pulley and the lower side of the second synchronous pulley, and each of the third synchronous pulleys is respectively located on the upper side of a plurality of the third guide pulley modules;

[0019] An outer synchronous belt, the outer synchronous belt is connected to the first guide pulley module, the second guide pulley module, the two first synchronous pulleys, the second synchronous pulley, the two third synchronous pulleys and a plurality of the third guide pulley modules.

[0020] As a further preference, the inner synchronous belt module includes two inner synchronous belt modules, and the two inner synchronous belt modules are arranged in parallel, and there is a gap between the two inner synchronous belt modules;

[0021] Each of the inner synchronous belt modules includes:

[0022] Two fourth synchronous pulleys, one of the fourth synchronous pulleys is arranged on the lower side of the first guide pulley module, and the other fourth synchronous pulley is arranged on the lower side of the second guide pulley module, and each of the fourth synchronous pulleys is respectively located on the upper side of a plurality of the third guide pulley modules;

[0023] An inner synchronous belt, the inner synchronous belt connecting the first guide pulley module, the second guide pulley module, the two fourth synchronous pulleys and several third guide pulley modules.

[0024] As a further preference, the middle synchronous belt module includes two middle synchronous belt modules, and the two middle synchronous belt modules are arranged in parallel, with a gap provided between the two middle synchronous belt modules;

[0025] Each middle synchronous belt module includes:

[0026] Two fifth synchronous pulleys, one of the fifth synchronous pulleys being arranged between the first guide pulley module and the first synchronous pulley, and the other fifth synchronous pulley being arranged between the second guide pulley module and the second synchronous pulley;

[0027] Two sixth synchronous pulleys, each sixth synchronous pulley being respectively located below one of the fifth synchronous pulleys, and each sixth synchronous pulley being respectively located above several third guide pulley modules;

[0028] A middle synchronous belt, the middle synchronous belt connecting the first guide pulley module, the second guide pulley module, the two fifth synchronous pulleys, the two sixth synchronous pulleys and several third guide pulley modules.

[0029] As a further preference, one end of each side of each glass support frame is connected to the two outer synchronous belts, the other end of each side of each glass support frame is connected to the two inner synchronous belts, and the middle part of each side of each glass support frame is connected to the two middle synchronous belts.

[0030] As a further preference, the first guide pulley module, the second guide pulley module and each third guide pulley module all include:

[0031] A connecting shaft;

[0032] Two synchronous pulleys, the two synchronous pulleys being arranged at both ends of the connecting shaft.

[0033] As a further preference, each synchronous pulley includes:

[0034] A synchronous pulley body, an outer edge of the middle part of the synchronous pulley body being provided with a first set of tooth modules, an outer edge of one end of the synchronous pulley body being provided with a second set of tooth modules, an outer edge of the other end of the synchronous pulley body being provided with a third set of tooth modules, the outer synchronous belt being connected to the third set of tooth modules, the inner synchronous belt being connected to the second set of tooth modules, and the middle synchronous belt being connected to the first set of tooth modules.

[0035] As a further preference, each of the first guide pulley module, the second guide pulley module and each of the third guide pulley modules further includes:

[0036] Two guide light wheels, the two guide light wheels are arranged at both ends of the connecting shaft, and the two guide light wheels are respectively located between the two synchronous belt wheels.

[0037] The above technical solution has the following advantages or beneficial effects:

[0038] In the present invention, by arranging the glass support frame on the outer synchronous belt, the middle synchronous belt and the inner synchronous belt, and driving the glass support frame to rotate cyclically through the outer synchronous belt, the middle synchronous belt and the inner synchronous belt, the requirement of first-in, first-out of glass sheets is met. Description of the Drawings

[0039] Figure 1 is the front view of the glass online storage mechanism of the present invention;

[0040] Figure 2 is the perspective view of the glass online storage mechanism of the present invention;

[0041] Figure 3 is the perspective view of the synchronous belt wheel in the present invention;

[0042] Figure 4 is the structural schematic diagram of the glass support frame in the present invention.

[0043] In the figure: 1, the first guide pulley module; 2, the second guide pulley module; 3, the third guide pulley module; 4, the glass support frame; 401, the synchronous belt; 5, the first synchronous belt wheel; 6, the second synchronous belt wheel; 7, the third synchronous belt wheel; 8, the outer synchronous belt; 9, the fourth synchronous belt wheel; 10, the inner synchronous belt; 11, the fifth synchronous belt wheel; 12, the sixth synchronous belt wheel; 13, the middle synchronous belt; 14, the connecting shaft; 15, the synchronous belt wheel; 151, the first tooth module; 152, the second tooth module; 153, the third tooth module; 154, the synchronous belt wheel main body; 16, the guide light wheel; 17, the first rotary belt conveyor; 18, the second rotary belt conveyor; 19, the roller conveyor. Detailed Embodiments

[0044] The present invention will be further described below in conjunction with the drawings and specific embodiments, but it is not limited to the present invention.

[0045] Figure 1 is the front view of the glass online storage mechanism of the present invention, Figure 2 is the perspective view of the glass online storage mechanism of the present invention, Figure 3 is the perspective view of the synchronous belt wheel in the present invention, Figure 4 is the structural schematic diagram of the glass support frame in the present invention. Please refer toFigures 1 to 4 As shown, a preferred embodiment is shown, which is an on-line glass storage mechanism, including:

[0046] A first guiding pulley module 1.

[0047] A second guiding pulley module 2, the first guiding pulley module 1 and the second guiding pulley module 2 are arranged side by side horizontally, and there is a gap between the first guiding pulley module 1 and the second guiding pulley module 2.

[0048] A number of third guiding pulley modules 3, a number of third guiding pulley modules 3 are arranged side by side horizontally under the first guiding pulley module 1 and the second guiding pulley module 2, and a number of third guiding pulley modules 3 are arranged at equal intervals.

[0049] An outer synchronous belt module, the outer synchronous belt module connects the first guiding pulley module 1, the second guiding pulley module 2 and a number of third guiding pulley modules 3.

[0050] An inner synchronous belt module, the inner synchronous belt module is arranged inside the outer synchronous belt module, and the inner synchronous belt module connects the first guiding pulley module 1, the second guiding pulley module 2 and a number of third guiding pulley modules 3.

[0051] A middle synchronous belt module, the middle synchronous belt module is located between the outer synchronous belt module and the inner synchronous belt module, and the middle synchronous belt module connects the first guiding pulley module 1, the second guiding pulley module 2 and a number of third guiding pulley modules 3.

[0052] A number of glass support frames 4, each glass support frame 4 is respectively connected to the outer synchronous belt module, the middle synchronous belt module and the inner synchronous belt module.

[0053] A driving motor (not shown in the figure), the driving motor is drivingly connected to the first guiding pulley module 1. The first guiding pulley module 1, the second guiding pulley module 2 and a number of third guiding pulley modules 3 in this embodiment are an integral mechanism. When in use, the glass sheet enters the glass support frame 4 from the left side in the Figure 1 shown direction. The driving motor drives the first guiding pulley module 1 to rotate, and the first guiding pulley module 1 will drive the outer synchronous belt module, the inner synchronous belt module and the middle synchronous belt module to rotate synchronously. The outer synchronous belt module, the inner synchronous belt module and the middle synchronous belt module drive the glass support frame 4 to rotate in a cycle, so that the glass sheet enters the on-line glass storage mechanism. When it is necessary to release the glass sheet, the outer synchronous belt module, the inner synchronous belt module and the middle synchronous belt module will drive the glass sheet from Figure 1Leave the glass sheet online storage mechanism on the right side in the indicated direction. In this embodiment, it further includes a support frame (not shown in the figure). Among them, the first guide pulley module 1, the second guide pulley module 2, the third guide pulley module 3, the outer synchronous belt module, the inner synchronous belt module, and the middle synchronous belt module are all installed on this support frame. As Figure 2 shown, the outer synchronous belt module is sleeved on the outside of the inner synchronous belt module, and the middle synchronous belt module is sleeved between the outer synchronous belt module and the inner synchronous belt module. In this embodiment, a total of four third guide pulley modules 3 are provided. Among them, as Figure 1 shown in the direction, the two third guide pulley modules 3 located on the left and right are on the same horizontal plane, the two third guide pulley modules 3 located in the middle are on the same horizontal plane, and the horizontal plane where the two third guide pulley modules 3 located in the middle are located is lower than the horizontal plane where the two third guide pulley modules 3 located on the left and right are located.

[0054] Furthermore, as a preferred implementation manner, the outer synchronous belt module includes two outer synchronous belt modules, and the two outer synchronous belt modules are arranged in parallel, and there is a gap between the two outer synchronous belt modules.

[0055] Each outer synchronous belt module includes:

[0056] A first synchronous pulley 5, and the first synchronous pulley 5 is arranged on the side of the first guide pulley module 4 away from the second guide pulley module 2.

[0057] A second synchronous pulley 6, and the second synchronous pulley 6 is arranged on the side of the second guide pulley module 2 away from the first guide pulley module.

[0058] Two third synchronous pulleys 7, a third synchronous pulley 7 is respectively provided on the lower side of the first synchronous pulley 5 and the lower side of the second synchronous pulley 6, and each third synchronous pulley 7 is respectively located on the upper side of several third guide pulley modules 3.

[0059] An outer synchronous belt 8, and the outer synchronous belt 8 connects the first guide pulley module 1, the second guide pulley module 2, the two first synchronous pulleys 5, the second synchronous pulley 6, the two third synchronous pulleys 7, and several third guide pulley modules 3. As Figure 1As shown in the figure, the first synchronous pulley 5 is arranged on the left side of the first guiding pulley module 1, the second synchronous pulley 6 is arranged on the right side of the second guiding pulley module 2, and the first synchronous pulley 5, the second synchronous pulley 6, the first guiding pulley module 1 and the second guiding pulley module 2 are on the same horizontal plane. The two third synchronous pulleys 7 are on the same horizontal plane. The third synchronous pulleys 7 are arranged on the lower side of the first synchronous pulley 5 and the second synchronous pulley 6, and the net distance between the two third synchronous pulleys 7 is greater than the net distance between the first synchronous pulley 5 and the second synchronous pulley 6. During use, the first guiding pulley module 1 drives the outer synchronous belt 8 to operate, and the outer synchronous belt 8 drives the first synchronous pulley 5, the second synchronous pulley 6, the third synchronous pulley 7, the second guiding pulley module 2 and the third guiding pulley module 3 to operate synchronously.

[0060] Further, as a preferred embodiment, the inner synchronous belt module includes two inner synchronous belt modules, and the two inner synchronous belt modules are arranged in parallel with a gap therebetween.

[0061] Each inner synchronous belt module includes:

[0062] Two fourth synchronous pulleys 9, one of the fourth synchronous pulleys 9 is arranged on the lower side of the first guiding pulley module 1, and the other fourth synchronous pulley 9 is arranged on the lower side of the second guiding pulley module 2, and each fourth synchronous pulley 9 is respectively located on the upper side of a number of third guiding pulley modules 3.

[0063] An inner synchronous belt 10, and the inner synchronous belt 10 connects the first guiding pulley module 1, the second guiding pulley module 2, the two fourth synchronous pulleys 9 and a number of third guiding pulley modules 3. As Figure 1 shown in the figure, the two fourth synchronous pulleys 9 and the two third synchronous pulleys 7 are on the same horizontal plane, and the net distance between the two fourth synchronous pulleys 9 is greater than the net distance between the first guiding pulley module 1 and the second guiding pulley module 2. In this embodiment, the first guiding pulley module 1 drives the inner synchronous belt 10 to operate, and then the inner synchronous belt 10 drives the two fourth synchronous pulleys 9, the second guiding pulley module 2 and a number of third guiding pulley modules 3 to operate synchronously.

[0064] Further, as a preferred embodiment, the middle synchronous belt module includes two middle synchronous belt modules, and the two middle synchronous belt modules are arranged in parallel with a gap therebetween.

[0065] Each middle synchronous belt module includes:

[0066] Two fifth synchronous pulleys 11, one of the fifth synchronous pulleys 11 is arranged between the first guiding pulley module 1 and the first synchronous pulley 5, and the other fifth synchronous pulley 11 is arranged between the second guiding pulley module 2 and the second synchronous pulley 6.

[0067] Two sixth synchronous belt pulleys 12, each of the sixth synchronous belt pulleys 12 is respectively located below a fifth synchronous belt pulley 11, and each of the sixth synchronous belt pulleys 12 is respectively located above a plurality of third guide belt pulley modules 3;

[0068] An intermediate synchronous belt 13, the intermediate synchronous belt 13 connects the first guide belt pulley module 1, the second guide belt pulley module 2, two fifth synchronous belt pulleys 11, two sixth synchronous belt pulleys 12 and a plurality of third guide belt pulley modules 3. As Figure 1 shown, the two fifth synchronous belt pulleys 11, the first guide belt pulley module 1, the second guide belt pulley module 2, the first synchronous belt pulley 5 and the second synchronous belt pulley 6 are all on the same horizontal plane, and the two sixth synchronous belt pulleys 12, the two third synchronous belt pulleys 7 and the two fourth synchronous belt pulleys 9 are all on the same horizontal plane. As Figure 1 shown, the sixth synchronous belt pulley 12 on the left side is arranged between the third synchronous belt pulley 7 and the fourth synchronous belt pulley 9 on the left side. The sixth synchronous belt pulley 12 on the right side is arranged between the third synchronous belt pulley 7 and the fourth synchronous belt pulley 9 on the right side. The net distance between the two sixth synchronous belt pulleys 12 in this embodiment is greater than the net distance between the two fifth synchronous belt pulleys 11. In this embodiment, the outer synchronous belt 8, the inner synchronous belt 10 and the intermediate synchronous belt 13 are all double-sided toothed synchronous belts.

[0069] Furthermore, as a preferred embodiment, one end of each side of each glass support frame 4 is connected to the two outer synchronous belts 8, the other end of each side of each glass support frame 4 is connected to the two inner synchronous belts 10, the middle part of each side of each glass support frame 4 is connected to the two intermediate synchronous belts 13, and each side of each glass support frame 4 also has a synchronous belt 401. As Figure 4 shown, each end and the middle part of each side of the glass support frame 4 are provided with a connecting rod for connecting with the outer synchronous belt 8, the inner synchronous belt 10 and the intermediate synchronous belt 13. The first guide belt pulley module 1 and the second guide belt pulley module 2 drive the outer synchronous belt 8, the inner synchronous belt 10 and the intermediate synchronous belt 13 to rotate synchronously, so as to keep the balance of the glass support frame 4.

[0070] Furthermore, as a preferred embodiment, the first guide belt pulley module 1, the second guide belt pulley module 2 and each third guide belt pulley module 3 all include:

[0071] A connecting shaft 14.

[0072] Two synchronous belt pulleys 15, the two synchronous belt pulleys 15 are arranged at both ends of the connecting shaft 14.

[0073] Furthermore, as a preferred embodiment, each synchronous belt pulley 15 includes:

[0074] Synchronous pulley body 154, an outer edge of the middle part of the synchronous pulley body 154 is provided with a first gear module 151, an outer edge of one end of the synchronous pulley body 154 is provided with a second gear module 152, and an outer edge of the other end of the synchronous pulley body 154 is provided with a third gear module 153. The outer synchronous belt 8 is connected to the third gear module 153, the inner synchronous belt 10 is connected to the second gear module 152, and the middle synchronous belt 13 is connected to the first gear module 151. As Figure 3 shown, in this embodiment, the second gear module 152 is arranged on the outer side of the synchronous pulley body 154 and is used for connecting the outer synchronous belt 8, and the third gear module 153 is located on the inner side of the synchronous pulley body 154 and is used for connecting the inner synchronous belt 10.

[0075] Furthermore, as a preferred embodiment, the first guide pulley module 1, the second guide pulley module 2 and each third guide pulley module 3 further each include:

[0076] Two guide light wheels 16, the two guide light wheels 16 are arranged at both ends of the connecting shaft 14, and the two guide light wheels 16 are respectively located between the two synchronous pulleys 15. The two guide light wheels 16 in this embodiment play a role in guiding the glass support frame 4. When the glass support frame 4 passes through the guide light wheels 16, the synchronous belt 401 slides on the guide light wheels 16.

[0077] The above is only a preferred embodiment of the present invention, and does not limit the implementation manners and protection scope of the present invention accordingly.

[0078] The present invention further has the following implementation manners on the above basis:

[0079] As an implementation manner, it further includes a first rotary belt conveyor 17 and a second rotary belt conveyor 18. Among them, the first rotary belt conveyor 17 and the second rotary belt conveyor 18 are arranged on both sides of the outer synchronous belt module. As Figure 1 shown in the direction, the first rotary belt conveyor 17 is arranged on the left side of the outer synchronous belt module, and the second rotary belt conveyor 18 is located on the right side of the outer synchronous belt module. When storing glass sheets is required, the first rotary belt conveyor 17 is in a horizontal state, and the glass sheets enter the glass support frame 4 from the first rotary belt conveyor 17 and enter the glass sheet on-line storage mechanism under the action of the outer synchronous belt 8, the inner synchronous belt 10 and the middle synchronous belt 13. When the glass sheets need to be released, the second rotary belt conveyor 18 is in a horizontal state, and the glass sheets horizontally enter the second rotary belt conveyor 18 from the glass sheet on-line storage mechanism.

[0080] As an implementation manner, a roller conveyor 19 is provided below several third guide pulley modules 3. When the glass sheets do not need to be stored, both the first rotary belt conveyor 17 and the second rotary belt conveyor 18 are in a downwardly inclined state. The glass sheets enter the roller conveyor 19 from the first rotary belt conveyor 17, then enter the second rotary belt conveyor 18, and finally enter the next process of the production line.

[0081] The above are only the preferred embodiments of the present invention, and do not limit the implementation manners and protection scope of the present invention. For those skilled in the art, it should be realized that all the equivalent replacements and obvious changes made by using the description and illustrations of the present invention should be included in the protection scope of the present invention.

Claims

1. An on-line glass storage mechanism, characterized in that, it comprises: a first guiding pulley module; a second guiding pulley module, the first guiding pulley module and the second guiding pulley module are arranged side by side horizontally, and there is a gap between the first guiding pulley module and the second guiding pulley module; a number of third guiding pulley modules, the number of third guiding pulley modules are arranged side by side horizontally under the first guiding pulley module and the second guiding pulley module, and the number of third guiding pulley modules are arranged at equal intervals; an outer synchronous belt module, the outer synchronous belt module connects the first guiding pulley module, the second guiding pulley module and the number of third guiding pulley modules; an inner synchronous belt module, the inner synchronous belt module is arranged inside the outer synchronous belt module, and the inner synchronous belt module connects the first guiding pulley module, the second guiding pulley module and the number of third guiding pulley modules; a middle synchronous belt module, the middle synchronous belt module is located between the outer synchronous belt module and the inner synchronous belt module, and the middle synchronous belt module connects the first guiding pulley module, the second guiding pulley module and the number of third guiding pulley modules; a number of glass support frames, each glass support frame is respectively connected to the outer synchronous belt module, the middle synchronous belt module and the inner synchronous belt module; a driving motor, the driving motor is drivingly connected to the first guiding pulley module; one end of both sides of each glass support frame is connected to the two outer synchronous belts, the other end of both sides of each glass support frame is connected to the two inner synchronous belts, and the middle part of both sides of each glass support frame is connected to the two middle synchronous belts; the first guiding pulley module, the second guiding pulley module and each third guiding pulley module all comprise: a connecting shaft; two synchronous pulleys, the two synchronous pulleys are arranged at both ends of the connecting shaft.

2. The on-line glass storage mechanism according to claim 1, characterized in that, the outer synchronous belt module comprises two outer synchronous belt modules, and the two outer synchronous belt modules are arranged in parallel, and there is a gap between the two outer synchronous belt modules; each outer synchronous belt module comprises: a first synchronous pulley, the first synchronous pulley is arranged on the side of the first guiding pulley module away from the second guiding pulley module; a second synchronous pulley, the second synchronous pulley is arranged on the side of the second guiding pulley module away from the first guiding pulley module; two third synchronous pulleys, one of the third synchronous pulleys is respectively arranged under the first synchronous pulley and the second synchronous pulley, and each third synchronous pulley is respectively located above the number of third guiding pulley modules; an outer synchronous belt, the outer synchronous belt connects the first guiding pulley module, the second guiding pulley module, the two first synchronous pulleys, the second synchronous pulley, the two third synchronous pulleys and the number of third guiding pulley modules.

3. The on-line glass storage mechanism according to claim 2, characterized in that, The inner synchronous belt module includes two inner synchronous belt modules, and the two inner synchronous belt modules are arranged in parallel, with a gap provided between the two inner synchronous belt modules; Each of the inner synchronous belt modules includes: Two fourth synchronous belt wheels, one of the fourth synchronous belt wheels is arranged below the first guide belt wheel module, and the other fourth synchronous belt wheel is arranged below the second guide belt wheel module, and each of the fourth synchronous belt wheels is respectively located above a plurality of the third guide belt wheel modules; An inner synchronous belt, the inner synchronous belt connecting the first guide belt wheel module, the second guide belt wheel module, the two fourth synchronous belt wheels and a plurality of the third guide belt wheel modules.

4. The on-line glass storage mechanism according to claim 3, wherein, The middle synchronous belt module includes two middle synchronous belt modules, and the two middle synchronous belt modules are arranged in parallel, with a gap provided between the two middle synchronous belt modules; Each of the middle synchronous belt modules includes: Two fifth synchronous belt wheels, one of the fifth synchronous belt wheels is arranged between the first guide belt wheel module and the first synchronous belt wheel, and the other fifth synchronous belt wheel is arranged between the second guide belt wheel module and the second synchronous belt wheel; Two sixth synchronous belt wheels, each of the sixth synchronous belt wheels is respectively located below one of the fifth synchronous belt wheels, and each of the sixth synchronous belt wheels is respectively located above a plurality of the third guide belt wheel modules; A middle synchronous belt, the middle synchronous belt connecting the first guide belt wheel module, the second guide belt wheel module, the two fifth synchronous belt wheels, the two sixth synchronous belt wheels and a plurality of the third guide belt wheel modules.

5. The on-line glass storage mechanism according to claim 4, wherein, Each of the synchronous belt wheels includes: A synchronous belt wheel body, an outer edge of the middle part of the synchronous belt wheel body is provided with a first set of teeth module, an outer edge of one end of the synchronous belt wheel body is provided with a second set of teeth module, an outer edge of the other end of the synchronous belt wheel body is provided with a third set of teeth module, the outer synchronous belt is connected to the third set of teeth module, the inner synchronous belt is connected to the second set of teeth module, and the middle synchronous belt is connected to the first set of teeth module.

6. The on-line glass storage mechanism according to claim 4, wherein, The first guide belt wheel module, the second guide belt wheel module and each of the third guide belt wheel modules further each include: Two guide light wheels, the two guide light wheels are arranged at two ends of the connecting shaft, and the two guide light wheels are respectively located between the two synchronous belt wheels.

Citation Information

Patent Citations

  • Glass online storage mechanism

    CN211254412U