Ceramic tile paper distribution circulating conveying and packaging line
By setting up paper feeding and brick feeding mechanisms in the tile packaging line, independent circulation of cardboard and tiles is achieved, solving the problem of interruption in the brick and paper feeding process, improving the efficiency and stability of tile and cardboard matching, and increasing production efficiency.
Patent Information
- Application Number
- CN202422709176.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-06
AI Technical Summary
Existing tile packaging machines experience interruptions during the tile and paper feeding processes, resulting in low tile packaging efficiency. Furthermore, the paper feeding is unstable and prone to misalignment, affecting the continuity and efficiency of tile and paper distribution.
A ceramic tile paper feeding and packaging line was designed. By setting up paper feeding mechanism and brick feeding mechanism at the paper feeding station and brick feeding station respectively, and using paper feeding driver and brick feeding driver to drive paper feeding transmission component and brick feeding belt, the independent circulation of paper and ceramic tiles is realized. The transition roller and leveling mechanism ensure synchronous stacking and prevent paper from tilting or falling.
It achieves uninterrupted automated matching and conveying of ceramic tiles and paper, improving the efficiency of ceramic tile paper distribution by more than 40%, ensuring the continuity and stability of the paper and tile feeding process, and improving production efficiency.
Smart Images

Figure CN223479478U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ceramic tile packaging equipment technology, and in particular to a ceramic tile paper feeding and circulating conveying packaging line. Background Technology
[0002] A tile packaging machine typically consists of a conveying device, a corner-laying device, and a folding device. The specific operating steps are as follows: the tile enters the packaging position through the conveying device; the corner-laying device automatically inserts the corner wrappers and moves synchronously with the tile to ensure correct installation; the folding device folds the cardboard into a carton to complete the tile packaging.
[0003] For example, Chinese utility model patent CN217375067U, entitled "A High-Speed Tile Packaging Machine," discloses a brick-loading mechanism, a paper-feeding mechanism, a brick-separating mechanism, a corner-wrapping mechanism, a paper-folding mechanism, and a brick-feeding mechanism sequentially installed on a machine base. The brick-loading, brick-feeding, and paper-feeding mechanisms operate as follows: tiles are stacked on the brick-loading mechanism; the brick-feeding mechanism picks up two bundles of tiles from the brick-loading mechanism and transports them to the brick-separating mechanism; cardboard is stacked on the paper-loading mechanism; the paper-feeding mechanism picks up one cardboard piece and transports it to a conveyor belt, which then sequentially transports the cardboard to the brick-separating mechanism; the brick-separating mechanism separates the tiles from the two bundles; the brick-feeding mechanism resets and continues to hold and transport the two bundles of tiles to the brick-separating mechanism; and after being separated by the brick-separating mechanism, the tiles from the two bundles are placed on two cardboard pieces on the conveyor belt, thus completing the coordination between the tiles and the cardboard box.
[0004] However, the existing technology still has the following drawbacks:
[0005] 1. In existing tile packaging machines, after the tile feeding mechanism clamps the tile from the upper tile mechanism to the cardboard stack, it needs to return to the upper tile mechanism position to continue clamping the tile and feeding it to the cardboard stack again. When the tile feeding mechanism returns to its original position, the tile feeding and paper feeding operations are interrupted. It is necessary to wait for the tile to be completely placed on the cardboard before the tile feeding mechanism can proceed to the next tile clamping operation, and the cardboard conveyor belt can resume paper feeding. As a result, it is impossible to carry out high-speed continuous paper feeding of the tile, and the tile packaging process is not smooth and efficient.
[0006] 2. During the cardboard conveying process, the cardboard is conveyed solely by the friction between the cardboard and the conveyor belt. Therefore, the cardboard is prone to misalignment with the conveyor belt during the conveying process, which in turn leads to misalignment problems when matching the tiles with the cardboard. Utility Model Content
[0007] In order to overcome the shortcomings of the existing technology, the purpose of this utility model is to provide a ceramic tile paper feeding and packaging line.
[0008] The purpose of this utility model is achieved by the following technical solution: a ceramic tile paper feeding and packaging line, including a frame and a paper feeding station, a brick feeding station and a paper feeding station arranged on the frame, wherein the paper feeding station is arranged at the discharge end of the paper feeding station and the brick feeding station;
[0009] The paper feeding station is equipped with a paper feeding mechanism, which has a paper feeding driver and a paper feeding transmission component. The paper feeding driver drives the paper feeding transmission component to circulate and convey the paperboard to the paper distribution station along the paper feeding direction.
[0010] The brick feeding station is equipped with a brick feeding mechanism, which has a brick feeding driver and a brick feeding belt. The brick feeding belt is matched with the transmission speed of the paper feeding transmission component so that the brick feeding driver drives the brick feeding belt to circulate and transport the ceramic tiles to the paper dispensing station along the brick feeding direction and cooperate with the paper stacking.
[0011] Furthermore, the paper feeding transmission component is provided with a plurality of paper feeding hooks that rotate cyclically along the paper feeding direction and are used to hook and feed paper sheets.
[0012] Furthermore, the paper feeding transmission component is configured as a paper feeding chain with a paper feeding hook for feeding the cardboard, or a paper feeding belt for conveying the cardboard.
[0013] Furthermore, the paper feeding station has a waiting area and a delivery area. The paper feeding driver drives the paper feeding transmission component to transport the paper from the waiting area to the delivery area. The paper feeding station is located below the brick feeding station. The paper feeding transmission component is obliquely upward on the delivery area and is connected to the discharge end of the brick feeding belt so that the paper and the bricks are transported to the paper distribution station synchronously.
[0014] Furthermore, a paper feeding belt is provided at the paper feeding station, and the feed end of the paper feeding belt is connected to the discharge end of the paper feeding transmission component and the brick feeding belt.
[0015] Furthermore, a transition roller is provided at the interface between the feed end of the paper feeding belt and the discharge end of the paper feeding drive and the brick feeding belt, and the transition roller is movably mounted on the frame.
[0016] Furthermore, the waiting area and delivery area of the paper feeding station are both equipped with guide plates for guiding the paper and baffles for limiting the paper.
[0017] Furthermore, the frame is provided with a paper feeding station, which has a paper feeding area and a paper preparation area; the paper feeding area is provided with a paper feeding mechanism, which has a paper feeding belt for conveying paper sheets from the paper preparation area to the paper feeding area, a paper suction mechanism for suctioning paper sheets from the paper feeding belt, and a paper clamping mechanism for clamping paper sheets from the paper suction mechanism to the paper feeding station.
[0018] Furthermore, the paper feeding area of the paper feeding station is equipped with a paper feeding leveling mechanism for leveling the paper sheets conveyed by the paper feeding belt.
[0019] Furthermore, the brick feeding belt includes a first brick feeding belt and a second brick feeding belt. The brick feeding driver drives the first brick feeding belt to transport the tiles to the second brick feeding belt. The brick feeding station is equipped with a brick feeding and leveling mechanism for lifting, centering and leveling, and corner alignment of the tiles on the second brick feeding belt.
[0020] Compared with the prior art, the beneficial effects of the present invention are:
[0021] (1) The ceramic tile paper feeding and packaging line provided in this application embodiment, by setting paper feeding mechanism and brick feeding mechanism respectively at the paper feeding station and the brick feeding station, can independently transport the paper by driving the paper feeding transmission component through the paper feeding driver of the paper feeding mechanism, and can drive the brick feeding belt through the brick feeding driver of the brick feeding mechanism, and match the transmission speed of the brick feeding belt with that of the paper feeding transmission component, so as to circulate and transport the ceramic tile to the paper feeding station along the brick feeding direction and stack it with the paper. Compared with the previous brick feeding mechanism, which required waiting for the ceramic tile to be completely placed on the paper before proceeding to the next brick clamping work, and the paper conveyor belt to continue the paper feeding operation, this application embodiment can continuously and rapidly transport the ceramic tile and paper through the brick feeding mechanism and the paper feeding mechanism respectively, maintain the continuity of the ceramic tile paper feeding process, realize uninterrupted automatic matching and transportation of ceramic tile and paper, improve the ceramic tile paper feeding efficiency by more than 40%, and greatly improve the ceramic tile paper feeding efficiency.
[0022] (2) Several paper feeding hooks are provided on one side of the paper feeding transmission component. The paper feeding hooks hook the paper on one side for feeding, providing independent conveying power for paper feeding. This can prevent the paper from tilting or falling during the feeding process and improve the stability of paper feeding.
[0023] (3) By setting a transition roller at the connection between the feed end of the paper distribution belt and the paper feeding drive and the discharge end of the brick feeding belt, the paper is slid from the bottom surface of the transition roller onto the paper distribution belt under the power of the paper feeding drive. In addition, the ceramic tile slides along the surface of the transition roller onto the paper of the paper distribution belt under the transmission power of the brick feeding belt, thereby achieving the effect of parallel and stable ceramic tile edge line and paper indentation line, realizing uninterrupted matching and conveying of ceramic tile and paper, and further improving production efficiency.
[0024] (4) By setting up a paper feeding area and a paper preparation area at the paper feeding station, when it is detected that the paper in the paper feeding area is about to run out, the spare paper in the paper preparation area can be transported to the paper feeding area through the paper feeding belt, thereby achieving the purpose of adding paper from the paper preparation area to the paper feeding area without stopping the machine, and maintaining the continuous paper feeding operation at the front end of the packaging line.
[0025] (5) The brick feeding mechanism is equipped with two belts, a first brick feeding belt and a second brick feeding belt. The transmission speed of the second brick feeding belt can be matched with the transmission speed of the paper feeding drive driven by the paper feeding driver. At the same time, the first brick feeding belt continuously feeds the tiles to the second brick feeding belt, so that the paper and tiles are synchronously fed to the paper distribution station and stacked together, realizing automated tile paper distribution and improving the efficiency of tile paper distribution. Attached Figure Description
[0026] Figure 1 This is an exploded view of the brick feeding mechanism and the paper feeding mechanism in a preferred embodiment of the present invention.
[0027] Figure 2 for Figure 1 A in the middle is an enlarged schematic diagram;
[0028] Figure 3 This is a schematic diagram of the brick feeding mechanism in a preferred embodiment of the present invention;
[0029] Figure 4 This is a schematic diagram of the installation of the paper feeding mechanism, brick feeding mechanism and paper distribution belt on the frame in a preferred embodiment of this utility model;
[0030] Figure 5 This is a schematic diagram of the paper feeding mechanism in a preferred embodiment of the present invention;
[0031] Figure 6 This is a three-dimensional view of the ceramic tile paper feeding and packaging line in a preferred embodiment of the present invention.
[0032] In the picture:
[0033] 001. Rack;
[0034] 10. Paper loading station; 101. Paper preparation area; 102. Paper loading area; 103. Paper loading mechanism; 1031. Paper loading conveyor belt; 104. Paper suction mechanism; 1041. Suction cup; 105. Paper clamping mechanism; 1051. Paper clamping guide rail; 1052. Paper pick-up clamp; 106. Paper loading leveling mechanism; 1061. Paper loading partition; 1062. Movable push plate; 1063. Paper stop frame;
[0035] 20. Paper feeding station; 201. Waiting area; 202. Delivery area; 203. Guide plate; 204. Baffle; 205. Paper feeding mechanism; 2051. Paper feeding driver; 2052. Paper feeding transmission component; 2053. Paper feeding hook;
[0036] 30. Brick feeding station; 301. Brick feeding mechanism; 3011. Brick feeding driver; 3012. First brick feeding belt; 3013. Second brick feeding belt; 302. Brick feeding leveling mechanism; 3021. Centering and leveling assembly; 3022. Corner alignment assembly; 3023. Lifting assembly;
[0037] 40. Paper feeding station; 401. Paper feeding conveyor belt;
[0038] 50. Transition roller. Detailed Implementation
[0039] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0040] like Figure 1-6 As shown, a ceramic tile paper feeding and packaging line is used for cyclical and continuous cardboard packaging of ceramic tiles. It can automatically convey ceramic tiles and cardboard separately, and simultaneously deliver ceramic tiles and cardboard to the paper feeding station 40 for stacking. The ceramic tile paper feeding and packaging line includes a frame 001 and a paper loading station 10, a paper feeding station 20, a ceramic tile feeding station 30, and a paper feeding station 40 mounted on the frame 001. The paper loading station 10 has a paper loading area 102 and a paper preparation area 101. The paper preparation area 101 is used to place spare cardboard, and the paper loading area 102 is used to convey cardboard to the cardboard working area on the paper feeding station 20.
[0041] A paper feeding mechanism 103 is provided on the paper feeding area 102. The paper feeding mechanism 103 includes a paper feeding belt 1031, a paper suction mechanism 104, and a paper clamping mechanism 105. The front end of the paper feeding belt 1031 is located in the paper preparation area 101, and the rear end of the paper feeding belt 1031 is located in the paper feeding area 102. Therefore, when it is detected that the paper in the paper feeding area 102 is about to run out, the paper feeding belt 1031 can transport the spare paper from the paper preparation area 101 to the paper feeding area 102 under the control of the paper feeding driver. In this way, the purpose of adding paper from the paper preparation area 101 to the paper feeding area 102 without stopping the machine is achieved, and maintaining the continuous paper feeding operation at the front end of the packaging line is maintained.
[0042] During the paper feeding process, the paper suction mechanism 104 is located above the paper feeding area 102. The paper suction mechanism 104 has a paper suction driver, a lifting frame located below the paper suction driver, and several suction cups 1041 located on the lifting frame. The paper suction driver drives the lifting frame to descend, and after the suction cups 1041 suck up the tile, it rises and returns to its original position. A paper feeding sliding component is provided on the lifting frame, and the paper is conveyed towards the paper clamping mechanism 105 through the paper feeding sliding component.
[0043] The paper clamping mechanism 105 includes a paper clamping driver, a paper clamping guide rail 1051, and a paper picker 1052 disposed on the paper clamping guide rail 1051. The paper clamping guide rail 1051 extends along the direction of the paper feeding station 20, and the paper picker 1052 is slidably disposed on the paper clamping guide rail 1051. Driven by the paper clamping driver, the paper picker 1052 clamps the paper sheet on the suction cup 1041 and conveys the paper sheet along the direction of the paper clamping guide rail 1051 to the paper feeding station 20. Then, the paper picker 1052 is released to place the paper sheet on the paper feeding station 20, and the paper picker 1052 resets to clamp the next piece of paper sheet. In this way, the paper feeding station 20 is kept with paper sheets to be fed, maintaining the continuous paper feeding operation of the packaging line.
[0044] In addition, a paper leveling mechanism 106 is provided in the paper feeding area 102 of the paper feeding station 10. This mechanism 106 includes a paper feeding partition 1061, a movable push plate 1062, and a paper stop frame 1063. The paper feeding partition 1061 is located between the paper preparation area 101 and the paper feeding area 102. Driven by a driver, the paper feeding partition 1061 moves vertically up and down to level the rear side of the paper in the paper feeding area 102. The movable push plate 1062 is located at the end of the paper feeding area 102 away from the paper preparation area 101. Driven by a driver, the movable baffle 204 slides horizontally to level the front side of the paper in the paper feeding area 102. The paper stop frame 1063 is located on the side of the paper feeding area 102 away from the paper feeding station 20. Driven by a driver, the paper stop frame 1063 levels the left / right side of the paper in the paper feeding area 102. In this way, the paper leveling mechanism 106 levels the paper, ensuring that the paper remains in a neat state during the paper feeding process. This allows the paper picker 1052 to accurately pick up the paper from the suction cup 1041, ensuring smooth paper feeding and further improving the accuracy of the paper feeding action.
[0045] The paper feeding station 20 has a waiting area 201 and a delivery area 202. The waiting area 201 is used to place cardboard awaiting delivery. The cardboard in the waiting area 201 is replenished by the paper clamping mechanism 105's paper picker 1052, thus ensuring that there is always cardboard waiting to be delivered at the paper feeding station, guaranteeing the continuous and cyclical paper feeding operation. The delivery area 202 is located behind the waiting area 201 in the paper feeding direction, and is used to transport the cardboard from the waiting area 201 to the paper distribution station 40.
[0046] Paper feeding station 20 is located below brick feeding station 30. Paper feeding station 20 is equipped with paper feeding mechanism 205, which includes paper feeding driver 2051 and paper feeding transmission component 2052. Paper feeding transmission component 2052 is located on the waiting area 201 and the delivery area 202, and extends from the waiting area 201 to the delivery area 202. Therefore, driven by paper feeding driver 2051, paper feeding transmission component 2052 transports the paper from the waiting area 201 to the delivery area 202. The delivery area 202 is adjacent to the paper distribution area. Since the paper feeding transmission component 2052 is obliquely upward on the delivery area 202, the discharge end of the paper feeding transmission component 2052 can be connected to the discharge end of the brick feeding belt on the paper distribution station 40.
[0047] In this way, the paper feeding drive 2052 can transport the paperboard to the paper distribution station 40 along the paper feeding direction. When the paper feeding drive 2052 is transporting paperboard in the distribution area 202, the paperboard in the waiting area 201 is also simultaneously replenished to the distribution area 202, so as to carry out uninterrupted paper feeding.
[0048] The paper feeding drive component 2052 provided in this embodiment can be either a paper feeding chain or a paper feeding belt. When a paper feeding chain is selected, the paper feeding chain is set on a chain pressure bar arranged along the paper feeding direction, and several paper feeding hooks 2053 are set on one side of the paper feeding chain. Driven by the paper feeding driver 2051, the paper feeding chain rotates cyclically and simultaneously drives the paper feeding hooks 2053, so that the paperboard stacked on the chain pressure bar is sequentially and continuously hooked and fed from the waiting area 201, the distribution area 202, and the paper dispensing station 40 through the paper feeding component. Moreover, by hooking one side of the paperboard with the paper feeding hooks 2053, independent conveying power is provided for the paperboard conveying, which can prevent the paperboard from tilting or falling during the hooking and feeding process and improve the stability of the paper feeding operation.
[0049] When a paper feed belt is selected, it extends along the waiting area 201 and the distribution area 202. During use, cardboard can be directly stacked on the paper feed belt for transport. If necessary, a limiting component can be installed on the paper feed belt to prevent the cardboard from slipping or falling. Therefore, whether using a paper feed chain or a paper feed belt, the cardboard can be smoothly and continuously transported along the paper feeding direction to the paper distribution station 40.
[0050] To further improve the stability of the cardboard during transport, guide plates 203 and baffles 204 are installed in the waiting area 201 and the delivery area 202. The guide plates 203 are positioned along the paper feeding direction of the waiting area 201 and the delivery area 202, and are located at the bottom of these areas, ensuring that the guide plates 203 and the paper feeding drive component 2052 are on the same paper feeding plane. The guide plates 203 guide the cardboard to slide in the paper feeding direction, improving the transport stability. The baffles 204 are positioned on the left and right sides of the waiting area 201 and the delivery area 202 in the paper feeding direction. The baffles 204 limit the left and right sides of the cardboard, preventing it from sliding and falling, further improving the transport stability.
[0051] The brick feeding station 30 is located directly above the paper feeding station 20. A brick feeding mechanism 301 is installed on the brick feeding station 30. The brick feeding mechanism 301 includes a brick feeding driver 3011, a brick feeding belt, and a brick feeding leveling mechanism 302. The brick feeding belt includes a first brick feeding belt 3012 and a second brick feeding belt 3013, which are connected to each other and extend along the brick feeding direction. Therefore, driven by the brick feeding driver 3011, the first brick feeding belt 3012 circulates the tiles along the brick feeding direction to the second brick feeding belt 3013, and the second brick feeding belt 3013 circulates the tiles along the brick feeding direction to the paper dispensing station 40.
[0052] In actual production, the paper feeding station 20 is equipped with a paper feeding sensor in the distribution area 202. When the paper arrives in the distribution area 202, the sensor sends a paper feeding signal to the brick feeding driver 3011. This allows the brick feeding driver 3011 to adjust the transmission speed of the second brick feeding belt 3013 to match the transmission speed of the paper feeding transmission component 2052 driven by the paper feeding driver 2051. At the same time, the first brick feeding belt 3012 continuously feeds tiles to the second brick feeding belt 3013, thereby enabling the paper and tiles to be synchronously fed to the paper distribution station 40 and stacked together. This achieves automated tile paper distribution and improves the efficiency of tile paper distribution.
[0053] Since the paper distribution station 40 is located at the discharge end of the paper feeding station 20 and the brick feeding station 30, the paper distribution station 40 is equipped with at least two parallel paper distribution belts 401. The distribution belt and the second brick feeding belt 3013 are located on the same brick feeding plane, and the feed end of the paper distribution belt 401 is connected to the paper feeding transmission component 2052 and the discharge end of the brick feeding belt, so that the paper and tiles can be smoothly conveyed to the distribution belt.
[0054] Furthermore, a transition roller 50, movably mounted on the frame 001, is provided at the junction of the feed end of the paper distribution belt 401 and the paper feeding drive 2052 and the discharge end of the brick feeding belt, thereby improving the smoothness of the transition between the cardboard and the tiles. Moreover, under the power of the paper feeding drive 2052, the cardboard slides from the bottom surface of the transition roller 50 onto the paper distribution belt 401. Additionally, under the transmission power of the second brick feeding belt 3013, the tiles slide along the surface of the transition roller 50 onto the cardboard on the paper distribution belt 401, achieving a parallel and stable effect between the tile edge line and the cardboard indentation line, realizing uninterrupted matching and conveying of the tiles and cardboard, and greatly improving production efficiency.
[0055] To further improve the flatness of the tiles during transport, a tile feeding and leveling mechanism 302 is installed on the tile feeding station 30 to level the tiles on the second tile feeding belt 3013. This mechanism is mounted on the frame 001 and includes a centering and leveling component 3021, a corner aligning component 3022, and a lifting component 3023. Driven by the leveling driver, the lifting plate of the lifting component 3023 first lifts the tiles arriving at the second tile feeding belt 3013 upwards. Then, the centering rollers of the centering and leveling component 3021 and the aligning plates of the corner aligning component 3022 respectively perform centering and leveling and corner aligning work on the tiles. This achieves the purpose of leveling and adjusting the sides and four corners of the tiles, making the subsequent fit between the tiles and the cardboard more accurate and neat.
[0056] In this way, by setting paper feeding mechanism 205 and brick feeding mechanism 301 respectively at paper feeding station 20 and brick feeding station 30, the paper feeding driver 2051 of paper feeding mechanism 205 can drive the paper feeding transmission component 2052 to independently transport the paper with increased power. The brick feeding driver 3011 of brick feeding mechanism 301 can drive the brick feeding belt, and the transmission speed of the brick feeding belt and the paper feeding transmission component 2052 can be matched to circulate and transport the tiles along the brick feeding direction to the paper distribution station 40 and stack them with the paper. Compared with the previous implementation method where the brick feeding mechanism 301 had to wait for the tiles to be completely placed on the paper before proceeding to the next brick clamping work, and the paper conveyor belt could not continue to feed paper, the embodiment of this application can circulate and continuously transport the tiles and paper at high speed through the brick feeding mechanism 301 and the paper feeding mechanism 205 respectively, maintain the continuity of the tile distribution process, realize uninterrupted automated matching and transportation of tiles and paper, improve the efficiency of tile distribution work by more than 40%, and greatly improve the efficiency of tile distribution work.
[0057] The working process of the ceramic tile dispensing and packaging line provided in this embodiment is roughly as follows:
[0058] In the paper feeding process, a number of cardboard sheets are stacked on the paper feeding belt 1031 in the paper preparation area 101 in advance. Driven by the paper feeding driver, the paper feeding belt 1031 transports a certain amount of cardboard sheets from the paper preparation area 101 to the paper feeding area 102. The paper feeding leveling mechanism 106 is driven by the driver to level and adjust the edges of the stacked cardboard sheets by the paper feeding partition 1061, the movable push plate 1062 and the baffle plate. Driven by the paper suction driver, the lifting frame descends and rises to reset after being sucked by the suction cup 1041. Driven by the paper clamping driver, the paper picker 1052 clamps the cardboard sheets on the suction cup 1041 along the direction of the paper clamping guide rail 1051 and transports the cardboard sheets to the waiting area 201 of the paper feeding station 20 along the direction of the paper clamping guide rail 1051.
[0059] In the paper feeding process, driven by the paper feeding driver 2051, the paper feeding transmission component 2052 rotates in a cycle and hooks the side of the paperboard through the paper feeding hook component 2053, and sequentially transports the paperboard in the waiting area 201 to the distribution area 202 and the paper distribution station 40's distribution belt 401 along the paper feeding direction.
[0060] In the brick feeding process, the ceramic tiles to be dispensed are prepared in advance on the brick feeding station 30. Driven by the brick feeding driver 3011, the tiles are circulated and conveyed along the brick feeding direction to the second brick feeding belt 3013 via the first brick feeding belt 3012. Then, the leveling driver drives the brick feeding leveling mechanism 302 to level and adjust the sides and four corners of the tiles. Then, the transmission speed of the second brick feeding belt 3013 and the paper feeding transmission component 2052 are adjusted to match, and the tiles are circulated and conveyed along the brick feeding direction via the second brick feeding belt 3013, so that the tiles and paper are synchronously conveyed to the paper dispensing station 40 and stacked together. This process is repeated to complete the entire ceramic tile dispensing process.
[0061] The above-mentioned embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and replacements made by technicians in this field on the basis of the present invention fall within the scope of protection required by the present invention.
Claims
1. A ceramic tile paper feeding and packaging line with circulating conveyor, characterized in that, It includes a frame and a paper feeding station, a brick feeding station, and a paper dispensing station set on the frame, wherein the paper dispensing station is set at the discharge end of the paper feeding station and the brick feeding station; The paper feeding station is equipped with a paper feeding mechanism, which has a paper feeding driver and a paper feeding transmission component. The paper feeding driver drives the paper feeding transmission component to circulate and convey the paperboard to the paper distribution station along the paper feeding direction. The brick feeding station is equipped with a brick feeding mechanism, which has a brick feeding driver and a brick feeding belt. The brick feeding belt is matched with the transmission speed of the paper feeding transmission component so that the brick feeding driver drives the brick feeding belt to circulate and transport the ceramic tiles to the paper dispensing station along the brick feeding direction and cooperate with the paper stacking.
2. The ceramic tile paper feeding and packaging line as described in claim 1, characterized in that, The paper feeding transmission component is equipped with several paper feeding hooks that rotate cyclically along the paper feeding direction and are used to hook and feed paper sheets.
3. The ceramic tile paper feeding and packaging line as described in claim 1, characterized in that, The paper feeding drive is configured as a paper feeding chain with a paper feeding hook for feeding the cardboard, or a paper feeding belt for conveying the cardboard.
4. The ceramic tile paper feeding and packaging line as described in claim 1, characterized in that, The paper feeding station has a waiting area and a delivery area. The paper feeding driver drives the paper feeding transmission component to transport the paper from the waiting area to the delivery area. The paper feeding station is located below the brick feeding station. The paper feeding transmission component is obliquely upward on the delivery area and is connected to the discharge end of the brick feeding belt so that the paper and the bricks are transported to the paper distribution station synchronously.
5. The ceramic tile paper feeding and packaging line as described in claim 4, characterized in that, The paper feeding station is equipped with a paper feeding belt, and the feed end of the paper feeding belt is connected to the discharge end of the paper feeding transmission component and the brick feeding belt.
6. The ceramic tile paper feeding and packaging line as described in claim 5, characterized in that, A transition roller is provided at the junction of the feed end of the paper feeding belt and the discharge end of the paper feeding drive and the brick feeding belt, and the transition roller is movably mounted on the frame.
7. The ceramic tile paper feeding and packaging line as described in claim 4, characterized in that, The waiting area and delivery area of the paper feeding station are equipped with guide plates for guiding the paper and baffles for limiting the paper's position.
8. The ceramic tile paper feeding and packaging line according to any one of claims 1-7, characterized in that, The frame is provided with a paper feeding station, which has a paper feeding area and a paper preparation area; the paper feeding area is provided with a paper feeding mechanism, which has a paper feeding belt for conveying paper sheets from the paper preparation area to the paper feeding area, a paper suction mechanism for suctioning paper sheets from the paper feeding belt, and a paper clamping mechanism for clamping paper sheets from the paper suction mechanism to the paper feeding station.
9. The ceramic tile paper feeding and packaging line as described in claim 8, characterized in that, The paper feeding area of the paper feeding station is equipped with a paper feeding leveling mechanism for leveling the paper sheets conveyed by the paper feeding belt.
10. The ceramic tile paper feeding and packaging line according to any one of claims 1-7, characterized in that, The brick feeding belt includes a first brick feeding belt and a second brick feeding belt. The brick feeding driver drives the first brick feeding belt to transport the tiles to the second brick feeding belt. The brick feeding station is equipped with a brick feeding and leveling mechanism for lifting, centering and leveling, and corner alignment of the tiles on the second brick feeding belt.
Citation Information
Patent Citations
High-speed ceramic tile packaging machine
CN217375067U