Instant lottery ticket sorting assembly line

By designing the instant lottery sorting assembly line, using pinch correction parts, synchronous support parts and resistance reduction units, the problem of precise scanning and correction of the box is solved, and the sorting accuracy and service life of the conveying roller are improved.

CN120054873APending Publication Date: 2025-05-30GUANGDONG CAIHUI INTELLIGENT TECH CO LTD +1
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Patent Information

Application Number
CN202510495114.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

It is difficult for the prior art to accurately scan and correct boxes containing lottery tickets, resulting in material chokes and rolling during sorting, affecting the sorting effect.

Method used

An instant lottery sorting assembly line is designed, using clamping correcting parts, synchronous support parts and resistance reduction units. Through the cooperation of the cylinder and the piston cylinder, the precise correction and scanning of the box can be achieved to avoid clamping and rolling.

Benefits of technology

It realizes accurate correction and scanning of the box, improves the accuracy of sorting, reduces the phenomenon of material staples, and extends the service life of the conveying roller.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an instant lottery ticket sorting assembly line, and relates to the technical field of lottery ticket sorting and conveying, the instant lottery ticket sorting assembly line comprises a conveyor belt, one end of the conveyor belt is provided with a conveyor main body, the inner side of a shielding bin is provided with a clamping position correction member, and the bottom of the conveyor main body is provided with a resistance reduction unit. According to the box correcting device, a clamping correcting piece is arranged, a first telescopic air cylinder is started, longitudinal clamping plates clamp and limit the left side and the right side of a box body through extension of the first telescopic air cylinder, so that the box body is corrected in the left-right direction, and at the moment, the first telescopic air cylinder continues to extend; according to the sorting machine, the transverse clamping plate is arranged on the feeding rail, so that the transverse clamping plate corrects and limits the front-back direction of the box body, the box body can be corrected and limited, the center of the box body and the center of the scanner are coaxial, the sorting machine is matched to operate, the box body accurately falls down along the discharging rail, and the phenomenon of material blocking in the sorting process is prevented; and meanwhile, the sorting accuracy is also improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of lottery sorting and conveying, and specifically to an instant lottery sorting production line. Background Art

[0002] An instant lottery is a paper print of a specific specification. For each instant lottery, it usually includes a game area and a scratching area. The game rules are printed in the game area, the scratching number and the winning number are printed in the scratching area, and a thin film coating covers the surface of the scratching area. After a lottery player buys an instant lottery, the player scratches the coating in the scratching area and checks the revealed scratching number against the winning number set by the game rules to determine whether the player wins and the amount of the prize.

[0003] In the traditional method, due to the diverse types of instant lotteries and different types of lotteries reserved by each store, it is necessary to package and place the lotteries in express boxes to make the lotteries safer during transportation. At the same time, when the express box is packed, it needs to be placed on a transmission device for sorting and collection. When sorting a box of lotteries, it is necessary to first scan the order number pasted on the lottery box by a scanner. After the scanning is completed, the lottery box is pushed to the corresponding position by a sorting device. When transporting the lottery box, since the lottery box cannot be corrected, when the lottery box is pushed by the pushing structure in the sorting device into the blanking track, it will collide with the edge of the track, resulting in blockage of the blanking track during the sorting process, thus affecting the sorting effect. At the same time, during the sorting and falling process, it is very easy to cause the lottery box to roll on the blanking track, thus affecting subsequent picking. Summary of the Invention

[0004] The purpose of the present invention is to provide an instant lottery sorting production line to solve the problem of inconvenient precise scanning and correction of a lottery box containing lotteries.

[0005] To achieve the above purpose, the present invention provides the following technical solution: An instant lottery sorting production line includes a conveyor belt. One end of the conveyor belt is equipped with a conveyor main body. A conveying roller is arranged inside the conveyor main body. A sorting machine is arranged on the side of the conveyor main body away from the conveyor belt. A plurality of blanking tracks are installed on one side of the sorting machine. A shielding bin is installed on the top of the conveyor main body. A positioning seat is arranged on the top of the shielding bin. A clamping and correcting member is arranged inside the shielding bin. A synchronous support member connected to the clamping and correcting member is arranged on the top of the positioning seat. Plug-in sleeves are arranged on both sides of the top of the positioning seat. An activity frame extending above the plug-in sleeve is inserted inside the plug-in sleeve. A scanner is installed on the activity frame. A resistance reduction unit is arranged at the bottom of the conveyor main body.

[0006] As a further solution of the present invention: The clamping position correcting member includes a rectangular sleeve block inserted into the inner side of the shielding bin. A pushing rod extending to the outside of the rectangular sleeve block and located above the conveying roller is inserted into the inside of the rectangular sleeve block. A longitudinal clamping plate is installed at one end of the pushing rod. A second return spring connected to the inner wall of the rectangular sleeve block is arranged at one end of the pushing rod. Two transverse clamping plates are slidably connected to the longitudinal clamping plate. The two transverse clamping plates are symmetrically arranged along the vertical central axis of the longitudinal clamping plate. A travel switch is installed on one side of any one of the transverse clamping plates. An L-shaped mounting bracket is installed on one side of the shielding bin. A first telescopic cylinder connected to the rectangular sleeve block is installed on the L-shaped mounting bracket. Limiting columns are installed on both sides of the rectangular sleeve block. A sliding sleeve is sleeved on the limiting column. The outer wall of the sliding sleeve is rotatably connected to an inclined support frame connected to one end of the longitudinal clamping plate through a rotating shaft. A first return spring connected to the outer wall of the rectangular sleeve block is arranged at one end of the sliding sleeve close to the rectangular sleeve block. An extension rod connected to the transverse clamping plate is installed on the outer wall of the sliding sleeve.

[0007] As a further solution of the present invention: The travel switch is electrically connected to an external controller through a wire, and the travel switch is electrically connected to the first telescopic cylinder through a wire.

[0008] As a further solution of the present invention: The extension rod penetrates from one side of the transverse clamping plate to the other side, and a through hole matching the extension rod is opened in the inside of the transverse clamping plate.

[0009] As a further solution of the present invention: The synchronous support member includes a third piston cylinder installed on the outer wall of the rectangular sleeve block and arranged parallel to the limiting column. A second piston rod extending to the outside of the third piston cylinder is inserted into the inside of the third piston cylinder. One end of the second piston rod away from the third piston cylinder is connected to the sliding sleeve. A diversion hole is opened in the inside of the second piston rod. A positioning tube is connected to one end of the second piston rod away from the third piston cylinder. A fourth piston cylinder is installed on one side of the positioning seat. A third piston rod extending to the outside of the fourth piston cylinder is inserted into the inside of the fourth piston cylinder. One end of the third piston rod is provided with a connecting plate penetrating the shielding bin and connected to the longitudinal clamping plate. A first piston cylinder located on one side of the insertion sleeve is installed on the top of the positioning seat. The first piston cylinder is in a communicating state with the fourth piston cylinder. A first piston rod extending to the top of the first piston cylinder is inserted into the inside of the first piston cylinder. A second support plate is installed at the top end of the first piston rod. Second piston cylinders located on both sides of the first piston cylinder are installed on the top of the positioning seat. A hose connected to the positioning tube is arranged at the bottom end of the second piston cylinder. A fourth piston rod extending to the top of the second piston cylinder is inserted into the inside of the second piston cylinder. A first support plate is installed at the top end of the fourth piston rod. A through groove is opened in the first support plate.

[0010] As a further solution of the present invention: the first piston cylinder and the fourth piston cylinder have the same diameter, and the second piston cylinder and the third piston cylinder have the same diameter.

[0011] As a further solution of the present invention: the second support plate fits the through groove, and the diameter of the first piston rod is smaller than the width of the through groove.

[0012] As a further solution of the present invention: the resistance reduction unit includes a chassis installed at the bottom of the conveyor main body, a second telescopic cylinder is arranged inside the chassis, the output end of the second telescopic cylinder is connected with a placement plate, a plurality of positioning columns are arranged on the top of the placement plate, the top of the positioning column is rotationally connected with a rotating coupling through a bearing, and a universal wheel is installed on the top of the rotating coupling.

[0013] As a further solution of the present invention: the telescopic length of the second telescopic cylinder is less than the closest distance from the bottom of the L-shaped mounting frame to the conveying roller.

[0014] As a further solution of the present invention: the width of the universal wheel is less than the width of the gap between adjacent conveying rollers.

[0015] Compared with the prior art, the beneficial effects of the present invention are: 1. By setting the clamping and correcting member, the first telescopic cylinder is started, and the longitudinal clamping plates are used to clamp and limit the left and right sides of the box body through the extension of the first telescopic cylinder, so as to correct the left and right directions of the box body. At this time, the first telescopic cylinder continues to extend, so that the transverse clamping plates correct and limit the front and rear directions of the box body. In this way, the correction and limitation of the box body can be realized, so that the center of the box body is coaxial with the center of the scanner, and the box body can accurately fall along the blanking track in cooperation with the operation of the sorting machine, preventing the phenomenon of material jamming during the sorting process, and improving the sorting accuracy at the same time; 2. By setting the synchronous support member, when the longitudinal clamping plate moves horizontally, the aqueous solution inside the fourth piston cylinder is squeezed through the connecting plate and the third piston rod, so that the aqueous solution inside the fourth piston cylinder enters the first piston cylinder, thereby realizing the jacking of the second support plate to the movable frame. When the transverse clamping plate moves relative to the longitudinal clamping plate, the aqueous solution inside the third piston cylinder is squeezed through the second piston rod, so that the aqueous solution inside the third piston cylinder enters the second piston cylinder through the diversion hole, the positioning pipe and the hose, so as to make the first support plate rise synchronously with the fourth piston rod. In this way, the second support plate or the first support plate can jack the movable frame, so that the scanner moves up along the longest side of the bottom of the box body, so that the scanner can perform an all-round scan of the top of the box body, thereby improving the accuracy of subsequent sorting; 3. By setting up a resistance reducing unit and starting the second telescopic cylinder, the positioning column passes through the gap between adjacent conveying rollers through the extension of the second telescopic cylinder, so as to support the box body with the universal wheels. Then, the box body is corrected by the clamping and correcting parts. During this process, the universal wheels will rotate as the box body moves, thus reducing the friction generated at the bottom of the box body and preventing the wear of the conveying rollers caused by long-term friction between the box body and the conveying rollers during the movement of the box body, further increasing the service life of the conveying rollers. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a schematic top view of the conveyor main body of the present invention; Figure 3 is a schematic connection diagram of the shielding bin and the longitudinal clamping plate of the present invention; Figure 4 is a schematic connection diagram of the rectangular sleeve block and the longitudinal clamping plate of the present invention; Figure 5 is a schematic connection diagram of the rectangular sleeve block and the pushing rod of the present invention; Figure 6 is a schematic connection diagram of the third piston cylinder and the diversion hole of the present invention; Figure 7 is a schematic connection diagram of the movable frame and the positioning seat of the present invention; Figure 8 is a schematic structural diagram of the resistance reducing unit of the present invention.

[0017] In the figure: 1, conveyor belt; 2, conveyor main body; 3, conveying roller; 4, sorter; 5, blanking track; 601, shielding bin; 602, L-shaped mounting frame; 603, first telescopic cylinder; 604, insertion sleeve; 605, movable frame; 606, scanner; 607, positioning seat; 608, rectangular sleeve block; 609, connecting plate; 610, positioning tube; 611, limiting column; 612, sliding sleeve; 613, hose; 614, first piston cylinder; 615, first support plate; 616, first piston rod; 617, second piston cylinder; 618, diagonal support frame; 619, transverse clamping plate; 620, travel switch; 621, extension rod; 622, longitudinal clamping plate; 623, pushing rod; 624, third piston cylinder; 625, first return spring; 626, second piston rod; 627, second return spring; 628, diversion hole; 629, fourth piston cylinder; 630, third piston rod; 631, through groove; 632, second support plate; 633, fourth piston rod; 701, chassis; 702, second telescopic cylinder; 703, placing plate; 704, positioning column; 705, rotating coupling; 706, universal wheel. DETAILED DESCRIPTION OF THE INVENTION

[0018] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0019] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present invention. In addition, the terms "first", "second", and "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, the terms "installed", "connected", "connected", and "set" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances. The embodiments of the present invention will be described below according to its overall structure.

[0020] Embodiment 1 Please refer to Figures 1 to 8 , in an embodiment of the present invention, an instant lottery sorting production line includes a conveyor belt 1. One end of the conveyor belt 1 is installed with a conveyor main body 2. A conveyor roller 3 is arranged inside the conveyor main body 2. A sorting machine 4 is arranged on the side of the conveyor main body 2 away from the conveyor belt 1. A plurality of blanking tracks 5 are installed on one side of the sorting machine 4. A shielding bin 601 is installed on the top of the conveyor main body 2. A positioning seat 607 is arranged on the top of the shielding bin 601. A clamping position correction member is arranged inside the shielding bin 601. A synchronous support member connected to the clamping position correction member is arranged on the top of the positioning seat 607. Plug-in sleeves 604 are arranged on both sides of the top of the positioning seat 607. An activity frame 605 extending above the plug-in sleeve 604 is inserted inside the plug-in sleeve 604. A scanner 606 is installed on the activity frame 605. A resistance reduction unit is arranged at the bottom of the conveyor main body 2.

[0021] In this embodiment, when the box body is moved from the conveyor belt 1 to the conveyor roller 3, the box body is moved below the scanner 606 through the cooperation of the conveyor body 2 and the conveyor roller 3. Then, the external controller is used to control the resistance reduction unit to separate the bottom of the box body from the conveyor roller 3. After that, the clamping and alignment member operates. Through the operation of the clamping and alignment member, the center of the box body is coaxial with the center of the scanner 606. During this process, the height of the scanner 606 is adjusted by the synchronous support member, so that the scanner 606 can scan the top of the box body in all directions. Then, the box body contacts the conveyor roller 3 again through the resistance reduction unit. After that, the conveyor body 2 and the conveyor roller 3 cooperate to move the box body with the alignment completed into the sorter 4. Then, the sorter 4 operates to sort the box bodies, so that different box bodies slide down through the corresponding blanking tracks 5.

[0022] Embodiment 2 Please refer specifically to Figures 1 to 5 , the clamping and alignment member includes a rectangular sleeve block 608 inserted into the inner side of the shielding bin 601. A pushing rod 623 extending to the outside of the rectangular sleeve block 608 and located above the conveyor roller 3 is inserted into the inside of the rectangular sleeve block 608. A longitudinal clamping plate 622 is installed at one end of the pushing rod 623. A second return spring 627 connected to the inner wall of the rectangular sleeve block 608 is arranged at one end of the pushing rod 623. Two transverse clamping plates 619 are slidably connected to the longitudinal clamping plate 622. The two transverse clamping plates 619 are symmetrically arranged along the vertical central axis of the longitudinal clamping plate 622. A travel switch 620 is installed on one side of any one of the transverse clamping plates 619. An L-shaped mounting bracket 602 is installed on one side of the shielding bin 601. A first telescopic cylinder 603 connected to the rectangular sleeve block 608 is installed on the L-shaped mounting bracket 602. Limiting columns 611 are installed on both sides of the rectangular sleeve block 608. A sliding sleeve 612 is sleeved on the limiting columns 611. The outer wall of the sliding sleeve 612 is rotatably connected to an inclined support frame 618 connected to one end of the longitudinal clamping plate 622 through a rotating shaft. A first return spring 625 connected to the outer wall of the rectangular sleeve block 608 is arranged at one end of the sliding sleeve 612 close to the rectangular sleeve block 608. An extension rod 621 connected to the transverse clamping plate 619 is installed on the outer wall of the sliding sleeve 612; The travel switch 620 is electrically connected to the external controller through a wire, and the travel switch 620 is electrically connected to the first telescopic cylinder 603 through a wire; The extension rod 621 penetrates from one side of the transverse clamping plate 619 to the other side of the transverse clamping plate 619. A through hole matching the extension rod 621 is formed in the inside of the transverse clamping plate 619.

[0023] In this embodiment, when the box body is moved below the scanner 606, the first telescopic cylinder 603 is activated. By the extension of the first telescopic cylinder 603, the rectangular sleeve block 608 moves towards the box body. During this process, under the action of the second return spring 627, the pushing rod 623 moves synchronously with the rectangular sleeve block 608, so as to make the longitudinal clamping plates 622 clamp and limit the left and right sides of the box body, thereby correcting the left and right directions of the box body. At this time, the first telescopic cylinder 603 continues to extend, causing the rectangular sleeve block 608 to move relative to the pushing rod 623, so as to make the limiting column 611 move towards the longitudinal clamping plates 622. During this process, the sliding sleeve 612 is squeezed by the diagonal support 618, causing the sliding sleeve 612 to move towards the rectangular sleeve block 608. At the same time, the sliding sleeve 612 drives the transverse clamping plate 619 to move towards the rectangular sleeve block 608 through the extension rod 621, so as to make the transverse clamping plate 619 correct and limit the front and rear directions of the box body. In this way, the correction and limitation of the box body can be realized, so that the center of the box body is coaxial with the center of the scanner 606. Cooperating with the operation of the sorting machine 4, the box body accurately falls along the blanking track 5, preventing the phenomenon of material jamming during the sorting process and improving the sorting accuracy. When the transverse clamping plate 619 limits the front and rear directions of the box body, the travel switch 620 is squeezed by the box body. At this time, the first telescopic cylinder 603 stops extending, and then the first telescopic cylinder 603 contracts and returns to its original state through the operation of the external controller.

[0024] Embodiment 3 Please refer to with emphasis Figures 1 to 7, the synchronous support member includes a third piston cylinder 624 installed on the outer wall of the rectangular sleeve block 608 and arranged parallel to the limit post 611. A second piston rod 626 extending to the outside of the third piston cylinder 624 is inserted into the third piston cylinder 624. One end of the second piston rod 626 away from the third piston cylinder 624 is connected to the sliding sleeve 612. A diversion hole 628 is formed inside the second piston rod 626. One end of the second piston rod 626 away from the third piston cylinder 624 is connected to a positioning tube 610. A fourth piston cylinder 629 is installed on one side of the positioning seat 607. A third piston rod 630 extending to the outside of the fourth piston cylinder 629 is inserted into the fourth piston cylinder 629. One end of the third piston rod 630 is provided with a connecting plate 609 passing through the shielding bin 601 and connected to the longitudinal clamping plate 622. A first piston cylinder 614 located on one side of the insertion sleeve 604 is installed on the top of the positioning seat 607. The first piston cylinder 614 is in communication with the fourth piston cylinder 629. A first piston rod 616 extending to the top of the first piston cylinder 614 is inserted into the first piston cylinder 614. The top end of the first piston rod 616 is installed with a second support plate 632. Second piston cylinders 617 located on both sides of the first piston cylinder 614 are installed on the top of the positioning seat 607. A hose 613 connected to the positioning tube 610 is provided at the bottom end of the second piston cylinder 617. A fourth piston rod 633 extending to the top of the second piston cylinder 617 is inserted into the second piston cylinder 617. The top end of the fourth piston rod 633 is installed with a first support plate 615. A through groove 631 is formed on the first support plate 615; The first piston cylinder 614 and the fourth piston cylinder 629 have the same diameter size, and the second piston cylinder 617 and the third piston cylinder 624 have the same diameter size; The second support plate 632 fits with the through groove 631, and the diameter of the first piston rod 616 is smaller than the width of the through groove 631.

[0025] In this embodiment, when the longitudinal clamping plate 622 moves horizontally, the aqueous solution inside the fourth piston cylinder 629 is squeezed through the connecting plate 609 and the third piston rod 630, so as to make the aqueous solution inside the fourth piston cylinder 629 enter the first piston cylinder 614, thereby realizing the jacking of the movable frame 605 by the second support plate 632. When the transverse clamping plate 619 moves relative to the longitudinal clamping plate 622, the aqueous solution inside the third piston cylinder 624 is squeezed through the second piston rod 626, so as to make the aqueous solution inside the third piston cylinder 624 enter the second piston cylinder 617 through the diversion hole 628, the positioning tube 610, and the hose 613, so as to make the first support plate 615 rise synchronously with the fourth piston rod 633. In this way, the second support plate 632 or the first support plate 615 can jack up the movable frame 605, so as to make the scanner 606 move upward along the longest side of the bottom of the box. In this way, the scanner 606 can perform an all-round scan of the top of the box, thereby improving the accuracy of subsequent sorting.

[0026] Example 4 Please refer specifically to Figure 1 and Figure 8 , the resistance reduction unit includes a chassis 701 installed at the bottom of the conveyor main body 2. A second telescopic cylinder 702 is arranged inside the chassis 701. The output end of the second telescopic cylinder 702 is connected to a placement plate 703. A plurality of positioning columns 704 are arranged on the top of the placement plate 703. The top of the positioning column 704 is rotatably connected to a rotating coupling 705 through a bearing. A universal wheel 706 is installed on the top of the rotating coupling 705; The telescopic length of the second telescopic cylinder 702 is less than the shortest distance from the bottom of the L-shaped mounting bracket 602 to the conveyor roller 3; The width of the universal wheel 706 is less than the width of the gap between adjacent conveyor rollers 3.

[0027] In this embodiment, the second telescopic cylinder 702 is started. Through the extension of the second telescopic cylinder 702, the positioning column 704 passes through the gap between adjacent conveyor rollers 3, so as to support the box body by the universal wheel 706. Then, the box body is corrected by the clamping and correcting member. During this process, the universal wheel 706 will rotate as the box body moves. In this way, the friction generated at the bottom of the box body can be reduced, and at the same time, the wear of the conveyor roller 3 caused by the long-term friction between the box body and the conveyor roller 3 during the movement of the box body can be prevented, further increasing the service life of the conveyor roller 3.

[0028] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered within the protection scope of the present invention.

Claims

1. A lottery ticket sorting line, comprising a conveyor belt (1), characterized in that: A conveyor body (2) is installed at one end of the conveyor belt (1), a conveying roller (3) is arranged on the inner side of the conveyor body (2), a sorting machine (4) is arranged on the side of the conveyor body (2) away from the conveyor belt (1), a plurality of unloading tracks (5) are installed on one side of the sorting machine (4), a shielding bin (601) is installed on the top of the conveyor body (2), a positioning seat (607) is arranged on the top of the shielding bin (601), a clamping correction piece is arranged on the inner side of the shielding bin (601), a synchronous support piece connected to the clamping correction piece is arranged on the top of the positioning seat (607), a plug-in sleeve (604) is arranged on both sides of the top of the positioning seat (607), a movable frame (605) extending to the top of the plug-in sleeve (604) is plugged into the inside of the plug-in sleeve (604), and a scanner (606) is installed on the movable frame (605), and a resistance reduction unit is arranged at the bottom of the conveyor body (2).

2. The instant lottery ticket sorting line according to claim 1, characterized in that: The clamping correction member comprises a rectangular sleeve (608) inserted into the inner side of the shielding bin (601); a push rod (623) extending to the outer side of the rectangular sleeve (608) and located above the conveying roller (3) is inserted into the interior of the rectangular sleeve (608); a longitudinal clamp (622) is installed at one end of the push rod (623); a second return spring (627) connected to the inner wall of the rectangular sleeve (608) is provided at one end of the push rod (623); two transverse clamps (619) are slidably connected to the longitudinal clamp (622); the two transverse clamps (619) are symmetrically arranged along the vertical center axis of the longitudinal clamp (622); a travel switch (620) is installed on one side of any transverse clamp (619); the shielding bin (601) 1) is installed on one side of an L-shaped mounting frame (602), a first telescopic cylinder (603) connected to a rectangular sleeve (608) is installed on the L-shaped mounting frame (602), limiting columns (611) are installed on both sides of the rectangular sleeve (608), a sliding sleeve (612) is sleeved on the limiting column (611), an outer wall of the sliding sleeve (612) is rotatably connected to an oblique support frame (618) connected to one end of a longitudinal clamp (622) via a rotating shaft, a first return spring (625) connected to the outer wall of the rectangular sleeve (608) is arranged at one end of the sliding sleeve (612) close to the rectangular sleeve (608), and an extension rod (621) connected to a transverse clamp (619) is installed on the outer wall of the sliding sleeve (612).

3. The instant lottery ticket sorting line according to claim 2, characterized in that: The travel switch (620) is electrically connected to the external controller via a wire, and the travel switch (620) is electrically connected to the first telescopic cylinder (603) via a wire.

4. The instant lottery ticket sorting line according to claim 2, characterized in that: The extension rod (621) passes through from one side of the transverse clamping plate (619) to the other side of the transverse clamping plate (619), and a through hole matching the extension rod (621) is provided inside the transverse clamping plate (619).

5. The instant lottery ticket sorting line according to claim 2, characterized in that: The synchronous support member comprises a third piston cylinder (624) mounted on the outer wall of the rectangular sleeve (608) and arranged parallel to the limiting column (611); a second piston rod (626) extending to the outside of the third piston cylinder (624) is inserted into the interior of the third piston cylinder (624); one end of the second piston rod (626) away from the third piston cylinder (624) is connected to the sliding sleeve (612); a guide hole (628) is provided inside the second piston rod (626); one end of the second piston rod (626) away from the third piston cylinder (624) is connected to a positioning tube (610); a fourth piston cylinder (629) is mounted on one side of the positioning seat (607); a third piston rod (630) extending to the outside of the fourth piston cylinder (629) is inserted into the interior of the fourth piston cylinder (629); one end of the third piston rod (630) is provided with a connecting plate (601) penetrating the shielding chamber (601) and connected to the longitudinal clamping plate (622). 9), a first piston cylinder (614) located on one side of the plug sleeve (604) is installed on the top of the positioning seat (607), the first piston cylinder (614) and the fourth piston cylinder (629) are in a connected state, a first piston rod (616) extending to the top of the first piston cylinder (614) is inserted into the interior of the first piston cylinder (614), and a second support plate (632) is installed on the top of the first piston rod (616), a second piston cylinder (617) located on both sides of the first piston cylinder (614) is installed on the top of the positioning seat (607), a hose (613) connected to the positioning tube (610) is provided at the bottom end of the second piston cylinder (617), a fourth piston rod (633) extending to the top of the second piston cylinder (617) is inserted into the interior of the second piston cylinder (617), and a first support plate (615) is installed on the top of the fourth piston rod (633), and a through groove (631) is provided on the first support plate (615).

6. The instant lottery ticket sorting line according to claim 5, characterized in that: The diameters of the first piston cylinder (614) and the fourth piston cylinder (629) are equal, and the diameters of the second piston cylinder (617) and the third piston cylinder (624) are equal.

7. The instant lottery ticket sorting line according to claim 5, characterized in that: The second supporting plate (632) fits into the through slot (631), and the diameter of the first piston rod (616) is smaller than the width of the through slot (631).

8. The instant lottery ticket sorting line according to claim 5, characterized in that: The resistance reduction unit comprises a base frame (701) installed at the bottom of the conveyor body (2); a second telescopic cylinder (702) is arranged on the inner side of the base frame (701); an output end of the second telescopic cylinder (702) is connected to a placement plate (703); a plurality of positioning columns (704) are arranged on the top of the placement plate (703); the top of the positioning columns (704) is rotatably connected to a rotating shaft (705) via a bearing; a universal wheel (706) is installed on the top of the rotating shaft (705).

9. The instant lottery ticket sorting line according to claim 8, characterized in that: The telescopic length of the second telescopic cylinder (702) is less than the shortest distance from the bottom of the L-shaped mounting frame (602) to the conveying roller (3).

10. The instant lottery ticket sorting line according to claim 8, characterized in that: The width of the universal wheel (706) is smaller than the width of the gap between adjacent conveying rollers (3).