Paper conveying device for ceramic tile packaging line

By arranging the transmission components and hook structure at an angle, combined with tension adjustment and limiting mechanisms, the problems of low space utilization and stability of the cardboard conveying device are solved, achieving efficient paper distribution during the movement of the bricks and improving the automation level and production efficiency of the ceramic tile packaging line.

CN224104462UActive Publication Date: 2026-04-10FOSHAN BEIDOFEN INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The existing paper conveying device in the ceramic tile packaging line has low space utilization, instability, and low paper dispensing efficiency, and cannot complete the paper dispensing action during the movement of the bricks.

Method used

By adopting an inclined transmission and hook structure, combined with tension adjustment and limiting mechanisms, stable conveying of cardboard is achieved during the movement of the brick, optimizing the spatial layout and improving the compactness of the equipment and the stability of paper feeding.

Benefits of technology

It improves space utilization, ensures the stability and efficiency of cardboard during the conveying process, and enables paper feeding without stopping during the movement of the bricks, thereby improving overall packaging efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ceramic tile packaging equipment, and provides a paper conveying device for a ceramic tile packaging line, which comprises a support and a paper feeding driver, the support is provided with a paper feeding mechanism, the paper feeding mechanism comprises at least one transmission part, the transmission part is provided with at least one hook part, one end of the transmission part is inclined upwards, and the other end of the transmission part is provided with at least one hook part. The paper feeding driver is used for driving the transmission part to rotate. According to the utility model, a traditional horizontal conveying mode is changed, one end of the transmission part is obliquely arranged upwards, and the transmission part drives the hook part to provide power for the leatheroid, so that the spatial layout is optimized, and the leatheroid is arranged right below the subsequent brick arrangement; a confluence mode is adopted in the brick advancing direction to enable leatheroid and bricks to complete the paper distribution action in the moving process, the paper distribution and brick distribution procedures do not need to be stopped, and the paper feeding stability and the paper distribution efficiency are remarkably improved; meanwhile, the space layout of the equipment is optimized through inclined arrangement, the plane space occupied by the equipment is reduced, and the space utilization rate is increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a ceramic tile packaging equipment technical field especially, it relates to a paper skin conveying device for ceramic tile packaging line. BACKGROUND

[0002] In the ceramic tile packaging process, in order to prevent the wear and tear or pollution of ceramic tile in transportation and storage, usually will use paper skin as the isolation material to each box ceramic tile is packaged. Along with the continuous promotion of the automation level of ceramic tile packaging, the automatic conveying of paper skin has become the important link for realizing efficient, continuous packaging. At present, most ceramic tile packaging lines adopt mechanical transmission mode to separate paper skin from the stacking position and then convey it to the packaging station, and common structures include conveying belt, chain cooperation friction or clamping mechanism and other modes to realize the stable feeding of paper skin.

[0003] However, the existing paper skin conveying device still has some deficiencies in practical application. On the one hand, the traditional conveying structure is horizontally arranged, which requires a large installation space, resulting in an overall layout of the equipment that is not compact enough, a low space utilization rate, and a space overlap between the tile and the paper skin during packaging. Specifically, the horizontal paper arrangement mode needs to first place the ceramic tile above the paper and then vertically place it on the paper from any direction, which will make the tile arrangement and paper arrangement processes need to be paused, and the paper arrangement action for the ceramic tile cannot be efficiently completed, resulting in low work efficiency. On the other hand, during the conveying process, the paper skin is light in material and smooth in surface, which is prone to slipping, deviation, and even paper jam, affecting the stability and continuity of paper feeding, and thus reducing the packaging efficiency and quality.

[0004] Therefore, it is necessary to improve the existing paper skin conveying device, optimize its space layout structure, and improve the stability and efficiency of paper skin during the conveying process, so as to meet the higher requirements of the ceramic tile packaging line for automation degree and production efficiency. UTILITY MODEL CONTENTS

[0005] The utility model aims at the problems of low space utilization rate, instability, low paper arrangement efficiency and inability to complete the paper arrangement action during the movement of the tile for the paper skin conveying device of the traditional ceramic tile packaging equipment, and adopts the following technical scheme:

[0006] A paper skin conveying device for ceramic tile packaging line, including support, paper feeding drive, the support is installed with paper feeding mechanism, the paper feeding mechanism includes at least one transmission part, the transmission part is installed with at least one hook, the transmission part is inclined upward to one end, and the paper feeding drive is used to drive the transmission part to rotate.

[0007] The paper skin conveying device for ceramic tile packaging line as described above, one end of the transmission part extends along the horizontal direction to form a horizontal section, and the other end of the transmission part is inclined upward to form an inclined section.

[0008] The hook piece is provided with a mounting hole and an arc-shaped slot, the hook piece is hinged to the transmission piece through the mounting hole, and the arc-shaped slot defines a rotating stroke of the hook piece.

[0009] The hook piece is provided with a hook at one end.

[0010] The paper conveying device for the ceramic tile packaging line comprises a paper conveying mechanism, a transmission piece and a hook piece.

[0011] The transmission shaft is rotatably connected to the support rod, the support rod is provided with a rotating part which is free to rotate, and the rotating part is screw-connected to the support frame.

[0012] At least one side of the paper conveying mechanism is provided with a first limiting mechanism which is mounted on the support frame, the first limiting mechanism comprises a baffle driver, and a first baffle is mounted on a power output end of the baffle driver.

[0013] The first baffle has a cross section in the shape of L, the first baffle is provided with a horizontal section and a vertical section, and the vertical section is provided with a guide part.

[0014] At least one side of the paper conveying mechanism is provided with a second limiting mechanism, the second limiting mechanism comprises a second baffle, a sliding base is mounted on the second baffle, the sliding base is slidingly connected to the support frame, a positioning pin is screw-connected to the sliding base, and the support frame is provided with at least one positioning hole which is matched with the positioning pin.

[0015] The support frame is provided with a sliding rail, and a sliding interface of the sliding base is dynamically engaged with a guide contour of the sliding rail.

[0016] The embodiment of the present application has the following beneficial effects:

[0017] 1. The utility model discloses a paper skin conveying device for a ceramic tile packaging line, which comprises a conveying device body, a transmission part, a hook part and a paper skin.

[0018] In summary, the utility model solves the problems of low space utilization rate, instability, low paper distribution efficiency and inability to complete the paper distribution action in the process of brick movement of the traditional ceramic tile packaging equipment. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0020] Figure 1 is the overall structure schematic diagram of a paper skin conveying device for a ceramic tile packaging line.

[0021] Figure 2 is Figure 1 the structure schematic diagram of another angle.

[0022] Figure 3 is the structure schematic diagram of a hook part of a paper skin conveying device for a ceramic tile packaging line.

[0023] Figure 4 is Figure 1 the structure schematic diagram of A in the enlarged view.

[0024] Figure 5 is Figure 2 the structure schematic diagram of B in the enlarged view.

[0025] In the drawings:

[0026] 1, support; 11, positioning hole; 2, paper feeding mechanism; 21, transmission part; 22, hook part; 221, mounting hole; 222, arc-shaped groove; 223, hook; 23, tension adjusting mechanism; 231, transmission shaft; 232, support rod; 3, first limiting mechanism; 31, baffle driver; 32, support; 33, first baffle; 331, guide part; 4, second limiting mechanism; 41, second baffle; 42, sliding seat; 43, positioning pin; 44, sliding rail; 5, paper feeding driver. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0028] As shown in the drawings, Figures 1 to 5 The present application provides a paper skin conveying device for a ceramic tile packaging line, which comprises a support 1 and a paper feeding driver 5. The paper feeding driver 5 is a motor. The support 1 is provided with a paper feeding mechanism 2. The paper feeding mechanism 2 comprises at least one transmission part 21. The transmission part 21 is provided with at least one hook part 22. One end of the transmission part 21 is inclined upward. The paper feeding driver 5 is used to drive the transmission part 21 to rotate. When working, the paper skin is placed on the transmission part 21. After the paper feeding driver 5 is started, the transmission part 21 drives the hook part 22 to rotate circularly. The hook part 22 drives the paper skin and conveys it upward along the inclined direction to the next station. The paper skin is subjected to the combined action of gravity and the hook part 22 during the conveying process, so as to avoid slipping and skewing of the paper skin. The present application effectively avoids the problems of slipping and skewing of the paper skin in the conventional conveying mode. The transmission part 21 is arranged with one end inclined upward, which changes the conventional horizontal conveying mode, significantly optimizes the spatial layout of the equipment, reduces the occupied space, and improves the space utilization rate. The inclined structure leaves space at the end with lower height for installing other mechanisms, such as a paper skin storage or supply mechanism, thereby improving the integration and compactness of the whole line.

[0029] Optionally, in some embodiments, the transmission part 21 is a chain. The chain has the advantages of high structural strength, good wear resistance, stable transmission, etc., and is suitable for being used as the installation basis of the hook part 22. By fixing or hingedly connecting the hook part 22 to the chain and driving the chain to rotate circularly by the paper feeding driver 5, continuous conveying of the paper skin can be realized.

[0030] Optionally, in some embodiments, the transmission member 21 is a belt, and a plurality of notches are arranged on the belt at intervals along the length of the belt, which are used to contact and drive the paper sheet synchronously during the operation of the belt, and push or drive the single paper sheet forward or in an inclined direction by mechanical stop, effectively preventing the paper sheet from slipping or skewing during the conveying process, and ensuring the stable transmission of the paper sheet to the next station.

[0031] Further, as a preferred embodiment of the present application but not limited, one end of the transmission member 21 extends in a horizontal direction to form a horizontal section, and the other end of the transmission member 21 extends upwardly to form an inclined section. In operation, the hook member 22 moves synchronously with the transmission member 21, and when the hook member 22 reaches the horizontal section, it stably hooks the single paper sheet and completes the preliminary positioning on the horizontal section; then the hook member 22 drives the paper sheet into the inclined section and conveys it upwardly in an inclined direction to the next process. This structure makes the paper sheet experience a transition from horizontal to inclined during the conveying process, which not only ensures the stability of hooking, but also realizes efficient space utilization. Specifically, the horizontal section ensures the stable contact of the paper sheet during hooking, reducing the risk of skewing or mispositioning of the paper sheet; and the inclined section helps to convey the paper sheet upwardly and save the planar space occupied by the equipment.

[0032] Further, as a preferred embodiment of the present application but not limited, the hook member 22 is provided with a mounting hole 221 and an arc-shaped groove 222, and the hook member 22 is hinged to the transmission member 21 through the mounting hole 221, and the arc-shaped groove 222 defines the rotation stroke of the hook member 22. Specifically, the transmission member 21 is provided with a connecting rod and a limiting rod, the connecting rod is sleeved in the mounting hole 221, and the limiting rod is sleeved in the arc-shaped groove 222, and the limiting rod is threadedly connected with a nut. The hinge of the transmission member 21 and the transmission member 21 is realized by the cooperation of the connecting rod and the mounting hole 221. Before actual use, the angle of the hook member 22 can be adjusted according to the paper feeding requirements. During the adjustment process, the hook member 22 rotates around the connecting rod along the arc-shaped groove 222, the limiting rod slides in the arc-shaped groove 222 and limits the rotation stroke thereof, and after the angle adjustment is completed, the nut is tightened to realize the positioning and fixation of the hook member 22. This structure enables the hook member 22 to be flexibly adjusted within a certain range to adapt to paper sheets of different thicknesses or stacking states, thereby improving the stability of paper feeding.

[0033] Further, as a preferred embodiment of the present application but not limited, one end of the hook member 22 is provided with a hook 223. The hook 223 is used to accurately hook the edge of the paper sheet when the hook member 22 moves with the transmission member 21, and move the paper sheet upwardly along the conveying path under the driving of the transmission member 21. Due to the presence of the hook 223, the contact between the hook member 22 and the paper sheet is more firm, avoiding the phenomenon of slipping of the paper sheet during the upward movement due to insufficient vibration or friction, thereby ensuring that the paper sheet can be stably and continuously conveyed to the next station.

[0034] Further, as a preferred embodiment of the present application but not limited, the paper feeding mechanism 2 comprises a tension adjusting mechanism 23, which comprises a transmission shaft 231, the transmission shaft 231 is in transmission connection with the paper feeding driver 5, the paper feeding driver 5 drives the transmission member 21 to rotate through the transmission shaft 231. The transmission shaft 231 is sleeved with a support rod 232, the support rod 232 is in rotational connection with the transmission shaft 231, the support rod 232 is provided with a rotating part which rotates freely, the rotating part is in threaded connection with the bracket 1. By manually rotating the rotating part, the installation position of the support rod 232 on the bracket 1 can be adjusted, and then the spatial position of the transmission shaft 231 and the transmission member 21 is changed, so that the tension of the transmission member 21 is adjusted. The tension adjusting mechanism 23 realizes flexible adjustment of the tension of the transmission member 21, can adapt to the paper feeding demand under different working conditions, and effectively prevents the problems of slipping due to too loose transmission member 21 or wear caused by too tight transmission member 21.

[0035] Further, as a preferred embodiment of the present application but not limited, at least one side of the paper feeding mechanism 2 is provided with a first limiting mechanism 3 installed on the bracket 1, the first limiting mechanism 3 comprises a baffle driver 31, a first baffle 33 is installed on the power output end of the baffle driver 31. The first baffle 33 is in sliding connection with the bracket 1, the bracket 1 is installed with a support 32, the support 32 is installed on the support 32, and the baffle driver 31 is one of a pneumatic cylinder, a hydraulic cylinder and an electric push rod. When the paper skin is conveyed by the hooking member 22, the first baffle 33 can move to the paper skin direction and slightly press the edge of the paper skin under the action of the baffle driver 31, so as to limit the movement track and prevent the deviation or skew phenomenon caused by uneven stacking or uneven stress of the paper skin. The first baffle 33 is used in cooperation with the baffle driver 31, and the limiting position can be flexibly adjusted according to different specifications of the paper skin.

[0036] Further, as a preferred embodiment of the present application but not limited, the first baffle 33 is in L-shaped cross section, the first baffle 33 is provided with a horizontal section and a vertical section, and the vertical section is provided with a guide part 331. One end of the guide part 331 is inclined outwardly away from the horizontal section. When the paper skin is fed into the paper feeding mechanism 2, the inclined structure of the guide part 331 can guide the falling path of the paper skin, so that it smoothly enters the position area which can be hooked by the hooking member 22, and the paper jam or skew phenomenon caused by improper angle or position deviation of the paper skin is avoided.

[0037] Further, as a preferred embodiment of the present application but not limited, at least one side of the paper feeding mechanism 2 is provided with a second limiting mechanism 4, which is installed in the inclined section, and the second limiting mechanism 4 comprises a second baffle 41, which is installed with a sliding seat 42, the sliding seat 42 is in sliding connection with the support 1, the sliding seat 42 is threadedly connected with a positioning pin 43, and the support 1 is provided with at least one positioning hole 11 matched with the positioning pin 43. By sliding the sliding seat 42 to the required position along the support 1, inserting the positioning pin 43 into the positioning hole 11 and fixing, the positioning and adjustment of the second baffle 41 can be completed, so as to adapt to the conveying demand of paper skins of different sizes. The deviation or jamming of the paper skin in the inclined section is effectively prevented, and the paper feeding stability is improved.

[0038] Further, as a preferred embodiment of the present application but not limited, the support 1 is installed with a sliding rail 44, and the sliding interface of the sliding seat 42 is dynamically engaged with the guide contour of the sliding rail 44. By setting the sliding rail 44 on the support 1 and matching the sliding seat 42 with the sliding rail 44, the adjustment accuracy and motion stability of the second limiting mechanism 4 are improved.

[0039] Embodiment one:

[0040] The utility model provides a paper cover conveying device for ceramic tile packaging line, including support 1, paper feeding drive 5, paper feeding drive 5 is motor, support 1 is installed with paper feeding mechanism 2, paper feeding mechanism 2 includes at least one transmission part 21, transmission part 21 is installed with at least one hook piece 22, transmission part 21 one end is inclined upward, and paper feeding drive 5 is used to drive transmission part 21 rotation. When working, place the paper cover on transmission part 21, after starting paper feeding drive 5, drive transmission part 21 to drive hook piece 22 to rotate in cycle, and hook piece 22 drives the paper cover and is sent to next work station along the inclined direction upward, so that the paper cover is acted on by gravity and hook piece 22 in the process of conveying, avoids the paper cover to slip and skew, effectively avoids the paper cover easy to appear slip and skew problem in traditional conveying mode, the utility model discloses a transmission part 21 one end is arranged to be inclined upward, changes the traditional horizontal conveying mode, significantly optimizes the space layout of equipment, reduces the space occupied, improves the space utilization. Inclined structure makes the height lower one end can leave space for installing other mechanisms, for example paper cover storage or supply mechanism, thereby enhancing the integration and compactness of whole line. Transmission part 21 is chain. Chain has the advantages of high structural strength, good wear resistance, stable transmission, etc., is suitable for being the installation base of hook piece 22. By fixing or hinging hook piece 22 on chain and making chain circulate by paper feeding drive 5, the continuous conveying of paper cover can be realized. The one end of transmission part 21 extends along the horizontal direction and forms a horizontal section, and the other end of transmission part 21 extends upward and forms an inclined section. When working, hook piece 22 moves synchronously with transmission part 21, when hook piece 22 runs to the horizontal section, single paper cover is smoothly hooked and positioned on the horizontal section, then hook piece 22 drives the paper cover into the inclined section and sends it to the next process along the inclined direction upward. The structure makes the paper cover experience the transition from horizontal to inclined during conveying, which ensures the stability of hooking and realizes efficient space utilization. Specifically, the horizontal section ensures the stable contact of paper cover hooking, reduces the risk of paper cover skewing or mispositioning, and the inclined section helps the paper cover to be sent upward and saves the plane space occupied by the equipment.

[0041] The hook piece 22 is provided with a mounting hole 221 and an arc-shaped groove 222. The hook piece 22 is hingedly connected with the transmission piece 21 through the mounting hole 221. The arc-shaped groove 222 defines the rotation stroke of the hook piece 22. Specifically, the transmission piece 21 is provided with a connecting rod and a limiting rod. The connecting rod is sleeved in the mounting hole 221, and the limiting rod is sleeved in the arc-shaped groove 222. The limiting rod is threadedly connected with a nut. The hingedly connection of the transmission piece 21 and the transmission piece 21 is realized through the cooperation of the connecting rod and the mounting hole 221. Before actual use, the angle of the hook piece 22 can be adjusted according to the paper feeding demand. During the adjustment process, the hook piece 22 rotates around the connecting rod along the arc-shaped groove 222, the limiting rod slides in the arc-shaped groove 222 and limits the rotation stroke thereof. After the angle adjustment is completed, the nut is tightened to realize the positioning and fixing of the hook piece 22. The structure enables the hook piece 22 to be flexibly adjusted within a certain range, so as to adapt to paper skins of different thicknesses or stacking states and improve the paper feeding stability. One end of the hook piece 22 is provided with a hook 223. The hook 223 is used to accurately hook the edge of the paper skin when the hook piece 22 moves with the transmission piece 21, and moves the paper skin upward along the conveying path under the driving of the transmission piece 21. Due to the existence of the hook 223, the contact between the hook piece 22 and the paper skin is more firm, so that the paper skin is prevented from slipping due to vibration or insufficient friction during the rising process, thereby ensuring that the paper skin can be stably and continuously conveyed to the next station.

[0042] The paper feeding mechanism 2 comprises a tension adjusting mechanism 23. The tension adjusting mechanism 23 comprises a transmission shaft 231. The transmission shaft 231 is in transmission connection with the paper feeding driver 5. The paper feeding driver 5 drives the transmission piece 21 to rotate through the transmission shaft 231. The transmission shaft 231 is sleeved with a supporting rod 232. The supporting rod 232 is in rotational connection with the transmission shaft 231. The supporting rod 232 is provided with a freely rotating rotating part. The rotating part is threadedly connected with the bracket 1. By manually rotating the rotating part, the installation position of the supporting rod 232 on the bracket 1 can be adjusted, and then the spatial position of the transmission shaft 231 and the transmission piece 21 is changed, so that the tension of the transmission piece 21 is adjusted. The tension adjusting mechanism 23 realizes flexible adjustment of the tension of the transmission piece 21, can adapt to the paper feeding demand under different use conditions, and effectively prevents the problems of slipping due to the looseness of the transmission piece 21 or wear caused by the tightness.

[0043] At least one side of the paper feeding mechanism 2 is provided with a first limiting mechanism 3 installed on the support 1, the first limiting mechanism 3 comprises a baffle driver 31, and a first baffle 33 is installed on a power output end of the baffle driver 31. The first baffle 33 is in sliding connection with the support 1, the support 1 is provided with a support 32, the support 32 is installed on the support 32, and the baffle driver 31 is one of a pneumatic cylinder, a hydraulic cylinder and an electric push rod. When the paper skin is conveyed by the hooking piece 22, the first baffle 33 can be moved to the paper skin direction and slightly press the edge of the paper skin under the action of the baffle driver 31, so as to limit the movement track and prevent the deviation or skew phenomenon caused by the uneven stacking or uneven force of the paper skin. The first baffle 33 is used in cooperation with the baffle driver 31, the limiting position can be flexibly adjusted according to different specifications of the paper skin. The cross section of the first baffle 33 is in an L shape, the first baffle 33 is provided with a horizontal section and a vertical section, and the vertical section is provided with a guide portion 331. One end of the guide portion 331 is inclined outward away from the horizontal section. When the paper skin is fed into the paper feeding mechanism 2, the inclined structure of the guide portion 331 can guide the falling path of the paper skin, so that the paper skin smoothly enters the position area that can be hooked by the hooking piece 22, and the paper jam or skew phenomenon caused by the improper angle or position deviation of the paper skin is avoided.

[0044] At least one side of the paper feeding mechanism 2 is provided with a second limiting mechanism 4, the second limiting mechanism 4 is installed in the inclined section, and the second limiting mechanism 4 comprises a second baffle 41, the second baffle 41 is provided with a sliding seat 42, the sliding seat 42 is in sliding connection with the support 1, the sliding seat 42 is screw-connected with a positioning pin 43, and the support 1 is provided with at least one positioning hole 11 matched with the positioning pin 43. By sliding the sliding seat 42 to the required position along the support 1, inserting the positioning pin 43 into the positioning hole 11 and fixing, the positioning adjustment of the second baffle 41 can be completed, so as to adapt to the conveying requirements of paper skins of different sizes. The deviation or jamming phenomenon of the paper skin in the inclined section is effectively prevented, and the paper feeding stability is improved. The support 1 is provided with a sliding rail 44, and the sliding interface of the sliding seat 42 is dynamically connected with the guide contour of the sliding rail 44. By arranging the sliding rail 44 on the support 1 and matching the sliding seat 42 with the sliding rail 44, the adjustment accuracy and movement stability of the second limiting mechanism 4 are improved.

[0045] The implementation manner of the second embodiment is as follows:

[0046] The difference between the second embodiment and the first embodiment is that the transmission member 21 is a belt, and the belt is provided with a plurality of notches, the notches are arranged at intervals along the length direction of the belt, and the notches are used for contacting the paper skin and driving the paper skin to move synchronously during the operation of the belt. The single paper skin is pushed or driven forward or conveyed in the inclined direction by the mechanical blocking mode, the slipping or skewing phenomenon of the paper skin in the conveying process is effectively prevented, and the stable conveying of the paper skin to the next station is ensured.

[0047] Specifically, the working principle of the present application is as follows:

[0048] In operation, the paper skin is placed on the transmission member 21, and after the paper feeding driver 5 is started, the driving transmission member 21 drives the hook member 22 to rotate cyclically, the hook member 22 drives the paper skin and feeds it upward in an inclined direction to the next station. One end of the transmission member 21 extends in a horizontal direction to form a horizontal section, and the other end extends upward to form an inclined section. The paper skin is preliminarily positioned on the horizontal section, and then enters the inclined section.

[0049] In the paper feeding process, the hook member 22 is hinged to the chain through the mounting hole 221, and the angle can be adjusted through the cooperation of the arc-shaped slot 222 and the limiting rod, so as to adapt to paper skins of different thicknesses or stacking states. Meanwhile, the front end of the hook member 22 is provided with a hook 223, which enhances the grabbing force on the edge of the paper skin and prevents it from slipping. In addition, the position of the supporting rod 232 of the manual tension adjusting mechanism 23 can be adjusted to control the tightness of the chain, so as to ensure stable and reliable transmission. The baffle driver 31 of the first limiting mechanism 3 drives the first baffle 33 to move, dynamically limits the paper skin, and prevents it from deviating, and the L-shaped structure cooperates with the guide part 331 to guide the paper skin to smoothly enter the hooking area of the hook member 22.

[0050] The second limiting mechanism 4 is arranged on the inclined section, the position of the second baffle 41 is adjusted by sliding the sliding seat 42 along the sliding rail 44, and the position is locked by the positioning pin 43 and the positioning hole 11, so as to adapt to paper skins of different sizes.

[0051] By arranging one end of the transmission member to be upwardly inclined and driving the hook member by the transmission member to provide power to the paper skin, the space layout is optimized, the paper skin is placed directly below the subsequent brick, and the paper skin and the brick are connected in a converging manner in the direction in which the brick advances, so that the paper feeding action is completed in the movement process of the brick, and the paper feeding and brick feeding processes do not need to be stopped.

[0052] In summary, the paper skin feeding device of the traditional ceramic tile packaging equipment has the problems of low space utilization, instability, low paper feeding efficiency, and inability to complete the paper feeding action in the movement process of the brick.

[0053] It should be understood that the terms "first", "second" and the like are used in the present application to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, the "first" information can also be referred to as "second" information without departing from the scope of the present application, and similarly, the "second" information can also be referred to as "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as a limitation on the present application. The device or element indicated or implied must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0054] The above is the preferred embodiment of the present application, it should be noted that, for those skilled in the technical field, without departing from the principles of the present application, can make a number of improvements and deformation, these improvements and deformation also considered as the protection scope of the present application.

Claims

1. A paper wrapper conveying device for a ceramic tile packaging line, comprising a support (1), a paper feed drive (5), characterized in that, The bracket (1) is provided with a paper feeding mechanism (2), the paper feeding mechanism (2) comprises at least one transmission member (21), the transmission member (21) is provided with at least one hook member (22), one end of the transmission member (21) is inclined upward, and the paper feeding driver (5) is used for driving the transmission member (21) to rotate.

2. The paper wrapper conveying device for a ceramic tile packaging line according to claim 1, characterized in that, One end of the transmission member (21) extends in a horizontal direction to form a horizontal section, and the other end of the transmission member (21) extends upward to form an inclined section.

3. The paper wrapper conveying device for a ceramic tile packaging line according to claim 1, characterized in that, The hook member (22) is provided with a mounting hole (221) and an arc-shaped slot (222), the hook member (22) is hinged to the transmission member (21) through the mounting hole (221), and the arc-shaped slot (222) defines a rotation stroke of the hook member (22).

4. The paper wrapper conveying device for a ceramic tile packaging line according to claim 3, characterized in that, One end of the hook member (22) is provided with a hook (223).

5. The paper wrapper conveying device for a ceramic tile packaging line according to claim 1, characterized in that, The paper feeding mechanism (2) comprises a tension adjusting mechanism (23), the tension adjusting mechanism (23) comprises a transmission shaft (231), the transmission shaft (231) is in transmission connection with the paper feeding driver (5), and the paper feeding driver (5) drives the transmission member (21) to rotate through the transmission shaft (231).

6. A paper wrapper conveying device for a ceramic tile packaging line according to claim 5, characterized in that, The transmission shaft (231) is externally provided with a support rod (232), the support rod (232) is in rotation connection with the transmission shaft (231), the support rod (232) is provided with a rotation part capable of rotating freely, and the rotation part is in screw connection with the bracket (1).

7. The paper wrapper conveying device for a ceramic tile packaging line according to claim 1, characterized in that, At least one side of the paper feeding mechanism (2) is provided with a first limiting mechanism (3) mounted on the bracket (1), the first limiting mechanism (3) comprises a baffle driver (31), and a first baffle (33) is mounted on a power output end of the baffle driver (31).

8. A paper wrapper conveying device for a ceramic tile packaging line according to claim 7, characterized in that, The first baffle (33) has a cross section in an L shape, the first baffle (33) is provided with a horizontal section and a vertical section, and the vertical section is provided with a guide part (331).

9. The paper wrapper conveying device for a ceramic tile packaging line according to claim 1, characterized in that, At least one side of the paper feeding mechanism (2) is provided with a second limiting mechanism (4), the second limiting mechanism (4) comprises a second baffle (41), the second baffle (41) is provided with a sliding seat (42), the sliding seat (42) is in sliding connection with the bracket (1), the sliding seat (42) is provided with a positioning pin (43) in screw connection, and the bracket (1) is provided with at least one positioning hole (11) matched with the positioning pin (43).

10. The paper wrapper conveying device for a ceramic tile packaging line according to claim 9, characterized in that, The bracket (1) is provided with a sliding rail (44), and a sliding interface of the sliding seat (42) is dynamically connected with a guide contour of the sliding rail (44).