Touch display screen transmission mechanism

By using a sliding partition and a limiting rope support in the display screen conveying mechanism, the problems of vacuum effect and stacking damage during the transfer of the display screen are solved, achieving stable and efficient display screen conveying.

CN118529359BActive Publication Date: 2025-12-19安徽威灏光电有限公司
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Patent Information

Application Number
CN202410511926.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-26
Publication Date
2025-12-19
Estimated Expiration
2044-04-26

AI Technical Summary

Technical Problem

In existing technologies, the vacuum effect during the transfer of displays leads to unstable stacking and easy damage.

Method used

A touch screen conveying mechanism was designed, which uses a freely sliding partition and supporting components inside the tray. The partition components slide to adapt to the width of the display screen to avoid the vacuum effect, and the limiting rope and the support belt buffer and decelerate to prevent the display screen from shaking and colliding.

Benefits of technology

This effectively avoids the vacuum effect and stacking damage problems of the display screen during the transfer process, improving the conveying efficiency and the protection effect of the display screen.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of display screen module processing, and discloses a touch display screen conveying mechanism, which comprises a box, the box can be placed on a trolley type conveying device, a plurality of partition components are vertically arranged in the box, two groups of supporting components are connected between the plurality of partition components, a conveying component is slidably arranged at the top of the box, the conveying component is used for outputting display screens into the gaps between each two partition components, the conveying component conveys the display screens to the supporting components between two partition components, when the supporting components are stressed, the partition component close to the tail side of the box slides to the supporting component, the display screens are separated by the freely-slidable partition plate arranged in the box, when the display screens are conveyed, the glass panels can be prevented from being adhered to each other to cause the vacuum effect, meanwhile, the partition plate can automatically slide to the state of closely adhering to the display screens, so that the display screens can be prevented from shaking and colliding and being damaged.
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Description

TECHNICAL FIELD

[0001] The present application relates to display screen module processing technical field, specifically to a kind of touch display screen conveying mechanism. BACKGROUND

[0002] Similar to interactive flat television, electronic whiteboard and touch all-in-one machine etc., large display screen processing is mostly flow line type production operation, in the same workshop between adjacent workstations in preliminary processing process, using the mode of conveying belt, display screen is transported, subsequent finishing and detection steps are in different workshops with initial processing, conveying belt cannot meet the use demand, at this time, manual handling or other shipping device is needed to transfer display screen.

[0003] Manual handling mode, labor intensity is too high.

[0004] Mechanical shipping mode needs to stack display screen, when stacking in plane, affected by vacuum effect, after being transferred to processing point, the display screen between stacking is difficult to peel off, and the display screen between stacking will be extruded mutually, leading to display screen structure damage, therefore, a kind of touch display screen conveying mechanism is proposed. SUMMARY

[0005] In view of the deficiencies of prior art, the present application provides a kind of touch display screen conveying mechanism, with the advantage of separating display screen, solve the problem of vacuum effect and the display screen after processing cannot be stacked.

[0006] To achieve the above object, the present application provides the following technical scheme: a kind of touch display screen conveying mechanism, including box, the box can be placed on the shipping device of trolley, a plurality of separation components are vertically installed in the box, two groups of supporting components are connected between a plurality of the separation components, conveying component is slidably installed at the top inside the box, the conveying component conveys display screen to the supporting component between two separation components, when the supporting component is stressed, the separation component close to the tail side of box slides to the supporting component, using box, by setting the way that free sliding baffle in box, display screen is separated, for display screen that has not been processed, when transporting, can avoid the situation of vacuum effect, and for display screen after processing, through the action of baffle, avoid the damage of component caused by stacking, and baffle can automatically slide to the state of close to display screen, to eliminate the situation that display screen shakes and is damaged.

[0007] Preferably, the supporting assembly comprises a main body supporting belt, and a limiting rope installed on each partition assembly for buffering deceleration, one end of the supporting belt is fixedly installed in the inner part of the supporting box, and the other end is wound on the tail part of the supporting box, the partition assembly comprises a main body partition plate, the partition plate is respectively provided with an upper through slot and a lower through slot for passing through the supporting belt and the limiting rope, two supporting belts pass through the upper through slots on the corresponding side of each partition plate, and the upper through slot and the lower through slot are respectively arranged on the two sides of the upper end and the lower end of the partition plate; the supporting belts are used to connect the partition plates, so that the display screen directly falls on the supporting belt when being inserted into the gap of the partition plate, and the display screen can be pulled out of the gap for unloading through the action of the supporting belt in the later period; the limiting rope with the buffering deceleration function can avoid the display screen from sinking too fast on the supporting belt and being damaged, and the limiting rope can also adjust the positions of the subsequent partition plates.

[0008] Preferably, the limiting rope is connected end to end, and the two ends of the limiting rope after passing through the lower through slot are respectively hung on the two supporting belts; the part of the limiting rope hung on the supporting belt is a sleeve rod, and the sleeve rod is rotationally connected with the limiting rope; when the supporting belt moves between the partition plates, the supporting belt will face the friction force applied by the partition plate and the limiting rope; the contact mode between the limiting rope and the supporting belt is adjusted to reduce the friction between the limiting rope and the supporting belt, and to avoid the supporting belt from being stuck on the partition plates.

[0009] Preferably, the distance between the two sleeve rods of the limiting rope after being tightened is equal to the distance between the upper through slot and the lower through slot; when the limiting rope is in the lower through slot, the supporting belts on the two sides of the limiting rope cannot be in the same state, that is, when one side of the limiting bolt is in a straightened state, the other side is in a state of being close to the partition plate; in this state, the loading of the supporting belt can be shared to avoid the traction force being concentrated on the upper through slot at the top of the partition plate, so as to avoid the connection structure of the partition plate and the supporting box from being stuck.

[0010] Preferably, a plurality of nodes are arranged on the supporting belt, and the plurality of nodes are arranged in a segmented manner on the supporting belt; each segment of nodes is arranged below the side of the partition plate close to the tail part of the supporting box; the nodes are made of rubber; the display screen carried by the supporting box has two conditions before and after processing; for the display screen after processing, the size becomes thicker, and the length of the supporting belt required is also longer; in order to avoid the display screen from not being completely sunk into the supporting box, the subsequent nodes can also be clamped on the upper through slot after a single node passes through the upper through slot, and the length of each segment of nodes is longer than the thickness of the display screen.

[0011] Preferably, upper and lower sides of the upper through slot are respectively provided with a containing groove, the upper and lower containing grooves have the same internal structure, an opening of the containing groove is provided with a guide roller which is rotatably installed in the opening of the containing groove, the rotatable guide roller facilitates the passage of the supporting belt through the upper through slot, and the guide roller abuts against the upper through slot to limit the passage of the node.

[0012] Preferably, two ends of the containing groove are respectively provided with a vertical rod, two ends of the guide roller are respectively rotatably connected with a connecting head, the connecting head is provided with a through hole to slide up and down along the vertical rod, the vertical rod is sleeved with a compression spring, the compression spring abuts the guide roller towards the opening direction, and the guide roller is abutted into the upper through slot through the compression spring, so that when the node passes through the upper through slot, the node can pass through when the spring is contracted and the pressure is too large.

[0013] Preferably, the conveying assembly comprises a main body supporting plate, two guide plates are rotatably installed on both sides of one end of the supporting plate, the connecting point of the guide plate and the supporting plate is located at one end of the guide plate, the other end of the guide plate is provided with a connecting belt which is hung on the supporting plate, the other end of the two guide plates is provided with a handle, and a plurality of convex rotating rollers are arranged on the guide plate, the rotating rollers lift the display screen conveyed by the supporting plate when the guide plate is rotated to be flush with the supporting plate, at this time, the handle is lifted upward, so that the display screen can slide into the predetermined partition gap under the action of the rotating rollers to complete the conveying work.

[0014] Preferably, the supporting plate extends a clamping plate away from the handle, the clamping plate is embedded in the gap between the plurality of partition assemblies, when the supporting plate guides the display screen into the gap, the clamping plate at the end of the supporting plate is embedded between the two partition plates to block one of them from sliding together with the partition plate in front.

[0015] Preferably, the supporting box is provided with a positioning groove, the positioning groove comprises a first guide groove, a second guide groove and a third guide groove, the first guide groove is used to guide the sliding of the conveying assembly, and the second guide groove and the third guide groove are arranged above and below to guide the sliding of the partition assembly.

[0016] Compared with the prior art, the present application provides a touch display screen conveying mechanism, which has the following advantages: by arranging the freely slidable partition plate in the supporting box, the display screens are separated, and when the display screens are conveyed, the glass panels can be prevented from being adhered to each other to cause vacuum effect, and the partition plate can automatically slide to be close to the display screen to prevent the display screen from shaking and being damaged due to collision. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall appearance structure of the touch display screen conveying mechanism of the present application.

[0018] Figure 2 It is a position structure schematic view of a supporting assembly and a separating assembly of a touch display screen conveying mechanism of the application;

[0019] Figure 3 It is a connection structure schematic view between the supporting assembly and the separating assembly of the touch display screen conveying mechanism of the application;

[0020] Figure 4 It is a structure schematic view of a supporting belt and a limiting rope of the touch display screen conveying mechanism under the state of supporting the display screen;

[0021] Figure 5 It is a structure schematic view of adjacent partitions and the supporting belt of the touch display screen conveying mechanism under the state of supporting the display screen by the supporting belt;

[0022] Figure 6 It is a structure position sectional view of the supporting assembly and the separating assembly of the touch display screen conveying mechanism under the working state;

[0023] Figure 7 It is an appearance structure schematic view of the limiting rope of the touch display screen conveying mechanism;

[0024] Figure 8 It is an internal structure schematic view of the upper through slot of the touch display screen conveying mechanism;

[0025] Figure 9 It is a force receiving structure schematic view of the guide roller of the touch display screen conveying mechanism;

[0026] Figure 10 It is an appearance structure schematic view of the conveying assembly of the touch display screen conveying mechanism;

[0027] Figure 11 It is a tail structure schematic view of the supporting box of the touch display screen conveying mechanism.

[0028] In the figure: 1, supporting box; 2, positioning slot; 3, supporting assembly; 4, separating assembly; 5, conveying assembly; 6, driving motor; 7, guide shaft; 8, winding roller; 21, first guide slot; 22, second guide slot; 23, third guide slot; 31, supporting belt; 32, limiting rope; 33, node; 41, partition; 42, guide wheel; 43, upper through slot; 44, lower through slot; 51, supporting plate; 52, guide plate; 53, rotating roller; 54, handle; 55, connecting belt; 56, clamping plate; 431, containing groove; 432, guide roller; 433, connecting head; 434, pressure spring; 435, through hole. DETAILED DESCRIPTION

[0029] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts are within the scope of protection of the present application.

[0030] As introduced in the background, the deficiencies in the prior art, in order to solve the above technical problems, the present application provides a touch display screen conveying mechanism.

[0031] In a typical embodiment of the touch display screen conveying mechanism of the present application, as shown in Figures 1 to 11 A touch display screen conveying mechanism includes a box 1, which can be placed on a cart-like conveying device. A plurality of partition assemblies 4 are vertically arranged in the box 1. Two groups of supporting assemblies 3 are connected in series between the partition assemblies 4. A conveying assembly 5 is slidably installed at the top of the inside of the box 1. The conveying assembly 5 is used to convey a display screen into the gap between each partition assembly 4. The supporting assembly 3 is used to support the display screen. When the adjacent supporting assembly 3 is stressed, the partition assembly 4 slides in the direction of the stressed supporting assembly 3. The gap between each partition assembly 4 is used to accommodate the display screen.

[0032] The box 1 is placed on the trolley, and the device can be freely moved in the workshop. The conveying assembly 5 placed on the top of the box 1 can be docked with the conveying belt, and after the display screen is conveyed to the conveying assembly 5, it can also be placed on the conveying assembly 5 by manual carrying. The display screen is pushed to the supporting assembly 3 in the gap through the sliding of the conveying assembly 5. The first gap is between the edge separating assembly 4 and the inner wall of the box 1. When the supporting assembly 3 is stressed, the separating assembly 4 is pulled by the supporting assembly 3 through the downward pressure of gravity. One side of the separating assembly 4 moves to adhere to the display screen, thereby completing the placement of the single display screen. This method uses the self-sliding of the separating assembly 4 to adhere to the display screen in the process of narrowing the gap, and can directly adapt to the width of the display screen. Whether it is the thinner size before processing or the size with a certain thickness after processing, it can be adapted. At the same time, when one side of the separating assembly 4 slides towards the display screen, the separating assembly 4 is separated from the other separating assemblies 4 that are vertically placed, thereby exposing a new gap. The next display screen is placed in the new gap by using the conveying assembly 5. In this process, since the display screen has been placed in the previous gap, the display screen uses the supporting assembly to fix the previously sliding separating assembly 4 and will not slide towards the new gap. Instead, the next display screen slides towards the gap, thereby exposing a new gap. The process is repeated to complete the placement of the display screen. The display screens in the box 1 will not adhere to each other due to the effect of the separating assembly 4, thereby avoiding the vacuum effect. At the same time, the display screens are vertically placed by the separating assembly 4, thereby increasing the conveying efficiency and avoiding damage caused by collision between the display screens. After the conveying is completed, the supporting assembly 3 is tightened, thereby pulling out the display screen from the gap between the separating assemblies 4. Then the display screen is taken away, and the separating assemblies 4 are pushed again to adhere to each other, and the original first gap is exposed again.

[0033] Further, referring to Figures 2 to 7 As shown, the supporting assembly 3 includes a main supporting belt 31 and a limiting rope 32 installed on each separating assembly 4 for buffering and deceleration. In addition, a plurality of nodes 33 are equidistantly arranged on the supporting belt 31. The main body of the separating assembly 4 is a partition plate 41. The partition plate 41 is provided with an upper through slot 43 corresponding to two groups of supporting assemblies 3, and a lower through slot 44 corresponding to two groups of supporting assemblies 3. The upper through slot 43 is used to pass through the supporting belt 31, and the lower through slot 44 is used to pass through the limiting rope 32.

[0034] One end of the supporting belt 31 is fixedly installed on one side of the inner wall of the box 1. The other side of the box 1 is provided with a winding roller 8 for winding the other end of the supporting belt 31. Both supporting belts 31 pass through the upper through slots 43 on the corresponding side of all partition plates 41.

[0035] The limiting rope 32 is connected end to end, and after passing through the lower through groove 44, it is hung on the supporting belt 31 on both sides. The hanging connection on the supporting belt 31 is a sleeve rod, which is rotationally connected with the limiting rope 32. The length of the tightened limiting rope 32 is equal to the distance between the upper through groove 43 and the lower through groove 44;

[0036] The nodes 33 are distributed in paragraphs on the supporting belt 31, and the distance between each paragraph is equal. Each node 33 is below the side of the baffle 41 close to the tail of the storage box 1. The node 33 is made of rubber, so that when the node 33 contacts the baffle 41, it can more stably pull the baffle 41 to slide.

[0037] The upper through groove 43 and the lower through groove 44 are respectively located on the edges of the upper and lower sides of the baffle 41. That is, when the supporting belt 31 on one side of the baffle 41 is in a straightened state, the supporting belt 31 on the other side is pulled by the limiting rope 32 to the other side edge of the guide wheel 42. The straightened supporting belt 31 is located in the upper area inside the storage box 1 and is close to the conveying assembly 5. When the conveying assembly 5 conveys the display screen to the straightened supporting belt 31, the straightened supporting belt 31 can directly receive the display screen to play a buffering role. Then the display screen gradually sinks, so that the originally straightened supporting belt 31 is gradually folded. The straightened supporting belt 31 is drawn from the other side of the baffle 41. However, due to the nodes 33 arranged on the supporting belt 31, the size of the node 33 is slightly larger than the upper through groove 43. When the node 33 contacts the upper through groove 43, the supporting belt 31 in the gap cannot continue to be drawn from the other side. At this time, the gravity of the display screen acts on the baffle 41 through the supporting belt 31 and the node 33, thereby pulling the baffle 41 to move in the direction of the display screen until the display screen is completely sunk into the storage box 1, that is, the installation of a single display screen is completed. Due to the movement of this baffle 41, the distance between it and the adjacent other baffle 41 is pulled apart, and a new gap is formed.

[0038] In the foregoing, the display screen sinks, and the supporting belt 31 is stressed on the baffle 41. In the absence of the limiting rope 32, the pulling force of the supporting belt 31 on the baffle 41 is concentrated on the upper through groove 43 close to the top of the baffle 41. Since this pulling force is converted from the gravity of the display screen, the direction of the pulling force is inclined downward, so that the baffle 41 is easily stuck during sliding, and the wear of the connecting structure between the partition assembly 4 and the storage box 1 is also increased. After the limiting rope 32 is arranged, the pulling force acting on the baffle 41 is simultaneously shared by the upper through groove 43 and the lower through groove 44 through the limiting rope 32. The sliding of the baffle 41 is smoother, and the wear of the connecting structure between the baffle 41 and the storage box 1 is reduced, thereby increasing the service life of the structure.

[0039] Further, since the length of the limiting rope 32 after being tightened is equal to the distance between the upper through groove 43 and the lower through groove 44, the supporting belt 31 in the newly appeared gap section is in a straightened state, so that the two limiting ropes 32 connected to the section of the supporting belt 31 are tightened, that is, one of the two limiting ropes 32 is sleeved on the section of the supporting belt 31, and the other is sleeved on the side of the two side partitions 41 away from each other, the two limiting ropes 32 pull the two sides of the supporting belt 31 to the state of sinking into the bottom of the partition 41, and the side supporting the display screen can directly adapt to the state of the supporting belt 31 sinking into the bottom of the partition 41, and the other side without the display screen, the other end of the limiting rope 32 in the process of pulling the supporting belt 31 to sink, although there is a rotatable sleeve that can reduce the friction, but there is still a possibility that it cannot be pulled out from the rear of the rolled supporting belt 31, and the other side of the partition 41 also synchronously slides, in order to avoid this situation, the conveying assembly 5 is arranged to abut against the other partition 41 behind to prevent the above-mentioned situation from occurring.

[0040] Since the conveyed display screen has two cases before and after processing, the thickness of the processed display screen increases, and the length of the supporting belt 31 required to be occupied in a single gap increases when using the device to convey, but due to the existence of the node 33, the display screen cannot completely sink into the bottom of the box 1, at this time, the display screen can be manually pressed down, the tension acting on the node 33 can make the node 33 or the upper through groove 43 deform, and after passing through the upper through groove 43, the display screen can continue to sink until the display screen completely sinks into the box 1.

[0041] Further, referring to Figure 8 and Figure 9 , the upper and lower sides of the upper through groove 43 are respectively provided with a container groove 431, the upper and lower container grooves 431 have the same internal structure, two ends inside the container groove 431 are respectively provided with a vertical rod, the vertical rod is sleeved with a pressure spring 434, and an opening is formed on the side of the container groove 431 close to the upper through groove 43, the opening is communicated with the upper through groove 43, a guide roller 432 is arranged in the container groove 431 through the opening, two ends of the guide roller 432 are respectively rotatably provided with a connecting head 433, the connecting head 433 is sleeved on the vertical rod, and the pressure spring 434 presses the guide roller 432 towards the opening through the connecting head 433.

[0042] Since the guide roller 432 is rotatably connected with the connecting head 433 on both sides, the carrier tape 31 can pass through the upper passing groove 43 more smoothly. When the node 33 passes through the upper passing groove 43, the node 33 is in contact with the containing groove 431. The pulling force applied to the node 33 by the carrier tape 31 cannot be greater than the elastic force of the compression spring 434, so as to pull the partition plate 41 to move in the direction of the carrier tape 31. When the pulling force is greater than the elastic force of the compression spring 434 and the partition plate 41 cannot move, the node 33 will squeeze the containing grooves 431 on the upper and lower sides to pass through, so as to adapt to the case that the thickness of the display screen increases after processing.

[0043] Further, referring to Figures 1 to 9 It is necessary to supplement that the box 1 is provided with a positioning groove 2 for guiding the sliding of the separation assembly 4 and the conveying assembly 5. The first guide groove 21 is used for guiding the conveying assembly 5, and the second guide groove 22 and the third guide groove 23 are used for guiding the separation assembly 4. A plurality of guide wheels 42 are arranged on the separation assembly 4 and the conveying assembly 5;

[0044] The top end of the two sides of the partition plate 41 and the two sides of the bottom end are rotatably provided with a guide wheel 42. The second guide groove 22 is arranged at the upper side of the inside of the box 1, and the third guide groove 23 is arranged at the bottom end of the inside of the box 1.

[0045] The first guide groove 21 is arranged above the second guide groove 22 and at the top end of the two sides of the inside of the box 1, so as to facilitate the sliding of the conveying assembly 5 above the separation assembly 4. The top of the two sides of the first guide groove 21 is exposed.

[0046] In addition, the tail of the box 1 is provided with a driving motor 6 and a guide shaft 7. The driving motor 6 is rotatably connected with the winding roller 8 through a belt. The guide shaft 7 guides the winding of the carrier tape 31 on the winding roller 8.

[0047] Further, referring to Figure 1 and Figure 10 As shown, the main body of the conveying assembly 5 is a carrier plate 51 sliding on the top end of the inside of the box 1. The carrier plate 51 is rotatably connected with a guide plate 52 near the two side edges of the carrier plate 51. The rotating connection point of the guide plate 52 and the carrier plate 51 is at one end of the guide plate 52. The other end of the guide plate 52 is provided with a connecting belt 55 fixedly connected with the carrier plate 51. The rotating range of the guide plate 52 is limited by the connecting belt 55. In addition, the other end of the two guide plates 52 is connected with a handle 54. The handle 54 rotates with the guide plate 52. When the handle 54 is attached to the bottom end of the carrier plate 51, the guide plate 52 and the carrier plate 51 are flush. In addition, a plurality of rotating rollers 53 are rotatably arranged on the surface of the guide plate 52. The rotating rollers 53 protrude from the surface of the guide plate 52.

[0048] Two ends of the two sides of the supporting plate 51 are respectively provided with a guide wheel 42, the distance between the two guide wheels 42 close to the handle 54 is smaller, the distance between the two guide wheels 42 far from the handle 54 is larger, and the four guide wheels 42 are all on the first guide groove 21 and slide

[0049] In addition, the end of the supporting plate 51 is provided with a clamping plate 56 which is clamped into the gap between the partitions 41.

[0050] The supporting plate 51 is pushed to slide at the top of the supporting box 1, and when it slides to the edge of the supporting box 1, it is convenient to be connected with the conveying belt in the workshop, the display screen can be directly conveyed to the supporting plate 51, or can be manually carried to the top, the supporting plate 51 is pushed to slide in the supporting box 1 by the handle 54, when it slides to the gap, the handle 54 is lifted up, the guide plate 52 is aligned with the supporting plate 51, at this time, the rotating roller 53 on the guide plate 52 protrudes from the surface of the supporting plate 51 and the guide plate 52, the display screen is lifted up, the handle 54 is continuously lifted up to make the supporting plate 51 tilt, the display screen is guided to slide into the gap by the rotating roller 53, and is placed on the two supporting belts 31, and the feeding is completed.

[0051] When the handle 54 is lifted up to make the supporting plate 51 tilt, the two guide wheels 42 corresponding to the closer distance on the supporting plate 51 can pass through the exposed part at the top of the first guide groove 21, the exposed part can avoid affecting the tilting state of the supporting plate 51, during the tilting process, the end of the supporting plate 51 abuts against the bottom surface of the first guide groove 21, so that the two guide wheels 42 with a larger distance on the supporting plate 51 do not rotate to make the supporting plate 51 slide off, during the tilting process, the clamping plate 56 at the end of the supporting plate 51 tilts downward, in the step of sliding the supporting plate 51, the handle 54 is aligned with the second partition 41 adjacent to the gap by visual observation, at this time, the clamping plate 56 tilted downward is clamped in front of the second partition 41, the supporting plate 51 can block the second partition 41 without sliding, and according to the foregoing, the display screen may be unable to be taken from the rear supporting belt 31 in a roll shape due to the friction force, and the other partition 41 may also slide synchronously.

[0052] The foregoing operation is repeated to complete the feeding operation, then the cart is pushed to convey the display screens to the next processing point, after that, the driving motor 6 works to drive the guide shaft 7 to rotate, the supporting belt 31 is wound, the supporting belt 31 is tightened, the display screens are lifted from the gap, and the unloading can be completed manually or by suction.

[0053] It should be noted that the size of the display screen conveyed by the supporting box 1 should not be larger than the partition 41, so as to avoid affecting the sliding of the supporting plate 51.

[0054] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the claims and their equivalents.

Claims

1. A touch display screen transfer mechanism comprising a box (1), characterized in that: The box (1) can be placed on the trolley type transport device, a plurality of partition components (4) are vertically installed in the box (1), two groups of supporting components (3) are connected between the plurality of partition components (4), the supporting component (3) comprises a main body supporting belt (31), and a limiting rope (32) for buffering and deceleration is installed on each partition component (4), one end of the supporting belt (31) is fixedly installed in the box (1), and the other end is wound on the tail of the box (1), the partition component (4) comprises a main body partition plate (41), the partition plate (41) is provided with an upper through slot (43) and a lower through slot (44) for passing through the supporting belt (31) and the limiting rope (32), respectively, two supporting belts (31) pass through the upper through slots (43) on the corresponding sides of each partition plate (41), respectively, the upper through slots (43) and the lower through slots (44) are arranged on the two sides of the upper and lower ends of the partition plate (41), respectively, the limiting rope (32) is connected end to end, and the two ends of the limiting rope (32) after passing through the lower through slot (44) are hung on the two supporting belts (31) on the two sides, respectively, the part of the limiting rope (32) hung on the supporting belt (31) is a sleeve rod, the sleeve rod is rotatably connected with the limiting rope (32), and the spacing between the two sleeve rods after the limiting rope (32) is taut is equal to the spacing between the upper through slot (43) and the lower through slot (44), the conveying component (5) is slidably installed at the top of the box (1), the conveying component (5) conveys a display screen to the supporting component (3) between the two partition components (4), and when the supporting component (3) is stressed, the partition component (4) near the tail side of the box (1) slides to the supporting component (3). 2.The touch display screen transmission mechanism according to claim 1, wherein: The supporting belt (31) is provided with a plurality of nodes (33), the plurality of nodes (33) are distributed in paragraphs on the supporting belt (31), each node (33) is below the partition plate (41) near the tail side of the box (1), and the node (33) is made of rubber. 3.The touch display screen transmission mechanism according to claim 1, wherein: The upper and lower sides of the upper through slot (43) are respectively provided with a containing groove (431), the internal structures of the upper and lower containing grooves (431) are the same, the containing groove (431) is provided with an opening communicated to the upper through slot (43), and the containing groove (431) is rotatably provided with a guide roller (432) inserted into the upper through slot (43) through the opening.

4. The touch display screen transport mechanism of claim 3, wherein: Two ends in the containing groove (431) are respectively provided with a stand rod, two ends of the guide roller (432) are rotatably connected with a connecting head (433), the connecting head (433) is provided with a through hole (435) to slide up and down along the stand rod, the stand rod is sleeved with a compression spring (434), and the compression spring (434) abuts the guide roller (432) in the opening direction. 5.The touch display screen transmission mechanism according to claim 1, wherein: The conveying assembly (5) comprises a main body pallet (51), two guide plates (52) are rotatably installed on both sides of one end of the pallet (51), the connecting point of the guide plate (52) and the pallet (51) is located at one end, the other end of the guide plate (52) is provided with a connecting belt (55) hung on the pallet (51), the other end of the two guide plates (52) is connected with a handle (54), and a plurality of convex rotating rollers (53) are arranged on the guide plate (52). 6.The touch display screen transmission mechanism according to claim 5, wherein: The end of the pallet (51) away from the handle (54) extends a clamping plate (56), and the clamping plate (56) is embedded in the gap between the plurality of separation assemblies (4). 7.The touch display screen transmission mechanism according to claim 1, wherein: The box (1) is provided with a positioning groove (2) inside, the positioning groove (2) comprises a first guide groove (21), a second guide groove (22) and a third guide groove (23), the first guide groove (21) is used to guide the sliding of the conveying assembly (5), and the second guide groove (22) and the third guide groove (23) are arranged in an upper and lower manner and used to guide the sliding of the separation assembly (4).

Citation Information

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