Polarizer feeding bin device of intelligent display production line

By adopting a horizontally positioned polarizer material bin on the smart display production line, the first-in-first-out feeding of polarizers is achieved, solving the problems of material accumulation and downtime feeding, and improving production efficiency and safety.

CN223521932UActive Publication Date: 2025-11-07JIANG SU HE YI GUANG XIAN KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202422238735.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-11-07
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

The existing vertical feeding polarizer hopper in the smart display production line causes materials to accumulate in the hopper for a long time, which is prone to deterioration and failure, increases costs and safety hazards, and requires machine shutdown to add materials, affecting production efficiency.

Method used

The polarizer material bin is placed horizontally. The feeding mechanism conveys the polarizer from back to front, and the discharging mechanism removes it from front to back, realizing first-in-first-out and ensuring that the material does not accumulate. The machine does not need to be stopped when adding material.

Benefits of technology

This achieves full utilization of materials, avoids spoilage and accumulation, saves costs, and improves production efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a polaroid feeding bin device of an intelligent display production line, which is characterized in that a polaroid material bin is transversely arranged, polaroids are conveyed into an inner cavity of the polaroid material bin from a feeding port through a feeding mechanism to be arranged and stored, and the polaroids are sequentially taken out from a discharging port through a discharging mechanism and are conveyed to a production line station; by adopting a back-in and front-out mode, a first-in and first-out sequence of the polaroids in the polaroid material bin is realized, all the polaroids in the material bin can be ensured to be used without accumulation, deterioration and failure, shutdown is not needed during feeding, the operation is convenient, the cost input is saved, the production efficiency is improved, and the polaroid feeding device is safe and reliable.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the production equipment manufacturing technical field of intelligent display belongs to, specifically related to a kind of polaroid feed bin device of intelligent display production line. BACKGROUND

[0002] The display imaging of LCD, OLED and other intelligent displays needs to rely on polaroid to realize, and the front side and the back side of its panel glass need to be attached polaroid respectively, so polaroid feed bin needs to be set in the production line of LCD, OLED and other intelligent displays to meet the feeding demand of attaching polaroid in production line. The production line in prior art usually adopts vertical feeding type polaroid feed bin, and supplies material by vertical lifting mode. The vertical feeding type polaroid feed bin needs to store material from top to bottom in turn, and the production line also takes material from top to bottom in turn. When the vertical feeding type polaroid feed bin replenishes material, a certain amount of material needs to be reserved to prevent the complete interruption of material supply from affecting the complete production function of production line, so material needs to be added in advance when there is still a certain amount of material when the material is not completely used, which causes the material at the bottom of material bin to be accumulated and not used for a long time, is easy to deteriorate and fail, increases cost investment, and affects product quality when misflowing to production line, and even causes equipment failure and safety hazard. When the vertical feeding type polaroid feed bin replenishes material, the production line needs to be stopped for adding material, which increases energy consumption and reduces production efficiency. UTILITY MODEL CONTENT

[0003] In order to solve the above problems existing in the prior art, the utility model aims at providing a polaroid feed bin device for intelligent display production line, which can ensure that each piece of material in the material bin can be used without stopping for adding material, is easy to operate, saves cost investment, improves production efficiency and is safe and reliable.

[0004] The utility model adopts the technical scheme that:

[0005] A polaroid feed bin device for intelligent display production line comprises a horizontally arranged polaroid material bin, a discharge port and a discharge mechanism are arranged at the front end of the polaroid material bin, and a feeding port and a feeding mechanism are arranged at the rear end of the polaroid material bin.

[0006] The polaroid material bin is used for arranging and storing polaroids.

[0007] The feeding mechanism is used for sequentially conveying the polaroids from the feeding port into the inner cavity of the polaroid material bin from back to front.

[0008] The discharge mechanism is used for sequentially taking out the polaroids from the discharge port and conveying them to the application station of the production line.

[0009] Further, the discharging mechanism comprises a suction rod, a suction disc end of the suction rod extending into the inside of the polaroid material bin from the discharging port, and the suction disc end surface abutting against the front side of the first polaroid in the polaroid material bin.

[0010] Further, the feeding mechanism comprises a pressing block, the pressing block being used for pushing the polaroid outside the rear side of the polaroid material bin into the inside cavity of the polaroid material bin from the feeding port, and pushing forward and compacting.

[0011] Further, the polaroid material bin is a U-shaped groove box structure with an opening direction upward, the height of the polaroid material bin is less than the height of the polaroid, so that the upper part of the polaroid extends above the polaroid material bin, the width of the inside cavity of the polaroid material bin is greater than or equal to the width of the polaroid, and the two side edges of the polaroid are in gap cooperation with the two side walls of the inside cavity of the polaroid material bin.

[0012] Further, the suction rod of the discharging mechanism is arranged on the front side upper part of the polaroid material bin in a horizontal direction, the suction disc end of the suction rod extends into the inside of the polaroid material bin from the discharging port, and the suction disc end surface abuts against the front side of the first polaroid in the polaroid material bin.

[0013] Still further, the root of the suction rod is connected with a material taking rotating shaft, the material taking rotating shaft is connected with a material taking driving mechanism and can be driven to rotate by the material taking driving mechanism.

[0014] Still further, the discharging mechanism comprises two suction rods arranged side by side, and the roots of the two suction rods are connected to the material taking rotating shaft.

[0015] Still further, the feeding mechanism comprises one or more groups of pressing blocks and a feeding driving shaft, the feeding driving shaft is arranged above the groove opening of the polaroid material bin, each group of pressing blocks is fixedly connected to the feeding driving shaft, and the feeding driving shaft is connected with a feeding driving mechanism and can be driven by the feeding driving mechanism.

[0016] Still further, each group of the pressing blocks is fixedly connected to the feeding driving shaft through a mounting plate and a clamp structure, each group of the pressing blocks comprises a pair of upper pressing blocks and lower pressing blocks, and each upper pressing block and lower pressing block is respectively covered with a flexible protective pad.

[0017] Finally, the front port top of the polaroid material bin is provided with a blocking rod rotating shaft, and the blocking rod rotating shaft is covered with a flexible protective sleeve.

[0018] The beneficial effects of the utility model are as follows:

[0019] The utility model provides a kind of polaroid supply bin device of intelligent display production line, transverse arrangement polaroid material bin, polaroid is sent into polaroid material bin inner cavity arrangement storage from feed inlet by feeding mechanism, polaroid is sequentially taken out from discharge port by discharging mechanism and is sent to production line station, using the mode of last-in first-out, realize the order of polaroid in polaroid material bin first-in first-out, can ensure that all polaroid in material bin can be used without accumulation deterioration failure, need not stop when adding, it is easy to operate, save cost input, improve production efficiency, safe and reliable. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is the vertical lifting type polaroid supply bin device structure schematic diagram in prior art;

[0021] Figures 2-3 It is the three-dimensional structure schematic diagram of the polaroid supply bin device of intelligent display production line of the utility model. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. All other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0023] It should be noted that when a component is referred to as "fixed to" another component, it can be directly on the other component or there can be a middle component. When a component is referred to as "connected to" another component, it can be directly connected to the other component or there can be a middle component. When a component is referred to as "provided on" another component, it can be directly provided on the other component or there can be a middle component. The "connection" described herein can be any one of mechanical connection, electrical connection and communication connection, or multiple connection modes coexist. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.

[0024] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terms used in the specification of the utility model are only for the purpose of describing specific embodiments and are not intended to limit the utility model. The term "and / or" used herein includes any and all combinations of one or more related listed items.

[0025] As Figures 2-3As shown, the utility model discloses a kind of polaroid supply bin devices of intelligent display production line, overall planning scheme is as follows: polaroid material bin is transversely arranged in the feed station of production line, discharge port and discharge mechanism are arranged at the front end of polaroid material bin, and feed port and feeding mechanism are arranged at the rear end;Polaroid 100 can be arranged and stored in polaroid material bin by polaroid material bin;Polaroid 100 can be sequentially conveyed into the inner cavity of polaroid material bin from feed port by feeding mechanism from rear to front;Polaroid 100 can be sequentially taken out from discharge port by discharge mechanism and conveyed to production line station.

[0026] Polaroid 100 is arranged and stored in the inner cavity of polaroid material bin by feeding mechanism from feed port, and polaroid 100 is sequentially taken out from discharge port by discharge mechanism and conveyed to production line station, using the mode of from rear to front, the order of first-in first-out of polaroid 100 in polaroid material bin is realized, it can ensure that all polaroids 100 in material bin can be used without accumulation and deterioration, and it does not need to stop during feeding, it is convenient to operate, it saves cost investment, improves production efficiency, and is safe and reliable.

[0027] Adjusting mechanism can be provided on polaroid material bin in the specific implementation process to adjust the inner cavity of polaroid material bin, so as to adapt to the production and application requirements of polaroids of different specifications and sizes.

[0028] Suction rod 10 can be provided in discharge mechanism, suction disc end 11 of suction rod extends into the inside of polaroid material bin from discharge port, and suction disc end face abuts on the front side of the first polaroid in polaroid material bin, so that polaroid can be sucked from the inside of polaroid material bin by suction rod and suction disc, and then conveyed to the application station of production line, to meet the demand of polaroid attachment and supply in the production process of LCD, OLED and other intelligent displays.

[0029] One or more groups of pressing blocks 20 can be provided in feeding mechanism, polaroid outside the rear side of polaroid material bin can be pressed and pushed into the inner cavity of polaroid material bin from feed port by pressing block 20, and pushed forward and pressed tightly, that is, all polaroids in polaroid material bin are pressed tightly from rear to front, so that the first polaroid located in front can contact the suction disc of the end of suction rod of discharge mechanism, the suction disc of suction rod of discharge mechanism can reliably suck polaroid from discharge port, continuous discharge is ensured, production efficiency is improved, and it is stable and reliable.

[0030] In actual operation and implementation process, the specific structure characteristics of each component are as follows:

[0031] The polarizing sheet material bin adopts a U-shaped groove box structure with the opening direction upward, which is composed of two side plates 1 and a bottom plate 2, and the height of the groove box structure of the polarizing sheet material bin is set to be less than the height of the polarizing sheet 100, so that the upper part of the polarizing sheet extends above the polarizing sheet material bin; and the inner cavity width of the polarizing sheet material bin is greater than or equal to the width of the polarizing sheet, and specifically, the inner cavity width of the polarizing sheet material bin can be slightly greater than the width of the polarizing sheet, so that the two side edges of the polarizing sheet are in clearance fit with the two side walls of the inner cavity of the polarizing sheet material bin, to ensure that the polarizing sheet can move smoothly in the polarizing sheet material bin, while maintaining a neat arrangement state, and having good safety and stability.

[0032] The adjusting mechanism of the polarizing sheet material bin can be composed of a plurality of guide grooves, guide sliding blocks, guide sliding rails, X-axis micrometer adjusting bolts and Y-axis micrometer adjusting bolts on the bottom plate 2, which can accurately adjust the position of one side plate, and also can adjust the positions of the two side plates at the same time, so as to adjust the inner cavity size of the polarizing sheet material bin, and adapt to the production and application requirements of polarizing sheets of different specifications and sizes. The specific structure of the plurality of guide grooves, guide sliding blocks, guide sliding rails, X-axis micrometer adjusting bolts and Y-axis micrometer adjusting bolts on the bottom plate 2 can directly adopt the mature adjusting structure technology in the prior art, and can be improved in adaptability according to the actual application environment and on-site equipment use conditions in the actual operation process.

[0033] Further, the suction rod 10 of the discharging mechanism is arranged on the front upper part of the polarizing sheet material bin along the horizontal direction, the suction disc end of the suction rod 10 extends into the inside of the polarizing sheet material bin from the discharging port, and the suction disc end face abuts against the front side of the first polarizing sheet in the polarizing sheet material bin; the suction rod of the feeding mechanism sucks the polarizing sheet from above the polarizing sheet material bin through the suction disc, further improving the operation reliability, and facilitating subsequent conveying operation.

[0034] The root of the suction rod 10 is fixedly connected to a material taking rotary shaft 12 located outside the front side of the polarizing sheet material bin, the material taking rotary shaft 12 is arranged along the horizontal direction perpendicular to the polarizing sheet feeding and discharging direction, and the material taking rotary shaft 12 is connected with a material taking driving mechanism and can be driven to rotate by the material taking driving mechanism; after the suction rod 10 of the discharging mechanism sucks the polarizing sheet 100 from above the polarizing sheet material bin through the suction disc, the material taking rotary shaft 12 is driven to rotate by the material taking driving mechanism, so as to drive the polarizing sheet 100 to rotate from the vertical direction to the horizontal direction, completing the material taking operation from the polarizing sheet material bin, and at the same time, rotating the polarizing sheet in the vertical storage state to the use state in the horizontal state, which can be connected and used with the existing vertical lifting feeding mechanism in the production line, and the operation is convenient.

[0035] The material taking driving mechanism connected with the material taking rotating shaft 12 can directly adopt the conventional rotating shaft driving mechanism in the prior art, and adaptive improvement can be made according to the actual application environment and the use conditions of the on-site equipment in the actual operation process.

[0036] As a preferred improvement scheme, two suction rods 10 can be arranged side by side at the discharging mechanism, the roots of the two suction rods are connected to the material taking rotating shaft, and the suction plate ends of the two suction rods simultaneously suck the polaroid 100, the polaroid is balanced in force, and the stability and balance performance of the mechanism are further improved, thereby ensuring stable and reliable material taking.

[0037] Further, the main structure of the feeding mechanism is one or more groups of pressing blocks 20 and a feeding driving shaft 23, two groups of pressing blocks 20 are arranged in the example, the feeding driving shaft 23 is arranged above the slot of the polaroid material bin, and the two groups of pressing blocks 20 are fixedly connected to the feeding driving shaft 23; and the feeding driving shaft is connected with the feeding driving mechanism and can be driven by the feeding driving mechanism to move linearly along the horizontal direction of the slot of the polaroid material bin, and when it retreats, it can retreat to the outside of the rear side of the polaroid material bin and be away from the rear end of the polaroid material bin by a distance, thereby reserving a feeding space for the polaroid 100, facilitating the feeding mechanism of the production line to transport the current feeding polaroid 100 to the outside of the rear side of the polaroid material bin, and then driving the feeding driving shaft to move linearly along the horizontal direction of the slot of the polaroid material bin by the feeding driving mechanism, thereby pushing the current feeding polaroid into the inner cavity of the polaroid material bin and continuously pushing it along the inner cavity of the polaroid material bin until the current feeding polaroid is pushed to contact the last polaroid in the polaroid material bin. The current feeding polaroid outside the rear side of the polaroid material bin is pushed into the inner cavity of the polaroid material bin by the two groups of pressing blocks, and the force balance of the polaroid is also ensured, thereby further improving the stability and balance performance of the mechanism and ensuring stable and reliable feeding.

[0038] The material taking driving mechanism connected with the material taking rotating shaft 12 can directly adopt the conventional rotating shaft driving mechanism in the prior art, and adaptive improvement can be made according to the actual application environment and the use conditions of the on-site equipment in the actual operation process.

[0039] When the linear driving mechanism drives the feeding driving shaft to move linearly along the top surface of the slot of the polaroid material bin, the pressing blocks continuously push the polaroid into the inner cavity of the polaroid material bin and push it forward, that is, all the polaroids in the polaroid material bin are pressed from back to front, so that the first polaroid in the front can contact the suction plate of the end of the suction rod of the discharging mechanism, the suction plate of the suction rod of the discharging mechanism can reliably suck the polaroid from the discharging port, continuous discharging is ensured, production efficiency is improved, and stability and reliability are ensured.

[0040] Each group of pressing blocks 20 in the embodiment is fixedly connected to the feed driving shaft 23 through the mounting plate 24 and the hoop structure 25; each group of pressing blocks comprises a pair of upper pressing blocks 21 and lower pressing blocks 22; each upper pressing block and lower pressing block is respectively covered with a flexible protective pad. The two pairs of upper pressing blocks 21 and lower pressing blocks 22 of the two groups of pressing blocks stably and evenly push the polaroid, further ensuring that the polaroid is balanced in force, and further improving the stability and balance performance of the mechanism. The specific structural features of the mounting plate 24 and the hoop structure 25 can adopt mature technical solutions in the prior art, and those skilled in the art can easily realize them according to conventional mechanical structure knowledge and common knowledge. Adaptive improvement can be made according to the actual application environment and the use conditions of the on-site equipment in the actual operation process.

[0041] Finally, a stop lever rotating shaft 30 is also arranged at the top of the front port of the polaroid material bin, which limits and shields the polaroid to prevent it from falling off and can rotate when the material taking action is performed; and a flexible protective sleeve is wrapped around the stop lever rotating shaft to provide effective protection and prevent damage to the polaroid. A stop lever rotating shaft 30 is also arranged at the bottom of the front port of the polaroid material bin, which further ensures the limiting performance and ensures the stability and reliability of the mechanism.

[0042] The polaroid feeding bin device for the intelligent display production line provided by the utility model is characterized in that the polaroid material bin is horizontally arranged, the polaroid is conveyed into the inner cavity of the polaroid material bin from the feeding port through the feeding mechanism, and the polaroid is taken out from the discharging port in sequence through the discharging mechanism and conveyed to the production line station, the rear-in front-out mode is adopted, the first-in first-out order of the polaroids in the polaroid material bin is realized, all the polaroids in the material bin can be used without being accumulated and deteriorated, the feeding operation can be performed without stopping the machine, the operation is convenient, the cost input is saved, the production efficiency is improved, and the device is safe and reliable.

[0043] The utility model is not limited to the above-mentioned optional implementation, anyone can draw other various forms of products under the enlightenment of the utility model, but no matter any change in shape or structure, all the technical schemes falling within the scope defined by the claims of the utility model fall within the protection scope of the utility model.

Claims

1. A polarizing sheet supply magazine device of an intelligent display production line, characterized by: The application relates to a polaroid material warehouse, which comprises a front end provided with a discharge port and a discharge mechanism and a rear end provided with an inlet port and an inlet mechanism. The polaroid material warehouse is used for arranging and storing polaroids. The inlet mechanism is used for sequentially conveying the polaroids from the inlet port into the inner cavity of the polaroid material warehouse from the rear to the front. The discharge mechanism is used for sequentially taking out the polaroids from the discharge port and conveying the polaroids to a production line application station.

2. The polarizing sheet supply tank device of the intelligent display production line according to claim 1, characterized by: The discharge mechanism comprises a suction rod, and the suction disc end of the suction rod extends into the inner cavity of the polaroid material warehouse from the discharge port, and the suction disc end surface abuts against the front side of the first polaroid in the polaroid material warehouse.

3. The polarizing sheet feeder device of the intelligent display production line according to claim 1, characterized by: The inlet mechanism comprises a pressing block, which is used for pressing and pushing the polaroids outside the rear side of the polaroid material warehouse into the inner cavity of the polaroid material warehouse from the inlet port and pushing and pressing the polaroids forward.

4. The polarizing sheet supply tank device of the intelligent display production line according to claim 1, characterized by: The polaroid material warehouse is a U-shaped groove box structure with an opening direction upward, the height of the polaroid material warehouse is smaller than the height of the polaroid, so that the upper part of the polaroid extends above the polaroid material warehouse, the inner cavity width of the polaroid material warehouse is greater than or equal to the width of the polaroid, and the two side edges of the polaroid are in gap cooperation with the two side walls of the inner cavity of the polaroid material warehouse.

5. The polarizing sheet supply tank device of the intelligent display production line according to claim 4, characterized by: The suction rod of the discharge mechanism is arranged on the front upper part of the polaroid material warehouse in a horizontal direction, the suction disc end of the suction rod extends into the inner cavity of the polaroid material warehouse from the discharge port, and the suction disc end surface abuts against the front side of the first polaroid in the polaroid material warehouse.

6. The polarizing sheet supply tank device of the intelligent display production line according to claim 5, characterized by: The root of the suction rod is connected with a material taking rotating shaft, the material taking rotating shaft is connected with a material taking driving mechanism and can be driven to rotate by the material taking driving mechanism.

7. The polarizer feeder device for an intelligent display production line according to claim 6, characterized in that: The discharge mechanism comprises two suction rods arranged side by side, and the roots of the two suction rods are connected to the material taking rotating shaft.

8. The polarizing sheet supply tank device of the intelligent display production line according to claim 4, characterized by: The inlet mechanism comprises one or more groups of pressing blocks and an inlet driving shaft, the inlet driving shaft is arranged above the groove opening of the polaroid material warehouse, each group of pressing blocks is fixedly connected to the inlet driving shaft, and the inlet driving shaft is connected with an inlet driving mechanism and can be driven by the inlet driving mechanism.

9. The polarizer feeder device for an intelligent display production line according to claim 8, characterized in that: Each group of pressing blocks is fixedly connected to the inlet driving shaft through a mounting plate and a clamp structure, each group of pressing blocks comprises a pair of upper pressing blocks and lower pressing blocks, and each upper pressing block and lower pressing block is respectively covered with a flexible protective pad.

10. The polarizing sheet feeder device of the intelligent display production line according to claim 4, characterized by: The front port top of the polaroid material warehouse is provided with a blocking rod rotating shaft, and the blocking rod rotating shaft is covered with a flexible protective sleeve.