A ceramic tile papering machine

By designing a linkage moving device for the tile paper dispensing machine, automatic paper dispensing is achieved, solving the problem of low efficiency in tile packaging caused by manual placement of cardboard, and improving the packaging speed and production efficiency of tile stacks.

CN116788596BActive Publication Date: 2026-01-30FOSHAN DINGJI PACKAGE TECH CO LTD
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Patent Information

Application Number
CN202310831849.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-07
Publication Date
2026-01-30
Estimated Expiration
2043-07-07

AI Technical Summary

Technical Problem

In the current tile packaging process, manual placement of cardboard leads to low packaging efficiency, reduced worker physical strength, and impacts production efficiency.

Method used

Design a tile paper dispensing machine, including a mounting frame, a linkage moving device, a tile stack straightening device, and a cardboard straightening device. The linkage moving device drives the cardboard clamping device and the tile stack clamping device to move back and forth between the conveyor seats to achieve automatic paper dispensing and reduce manual operation.

Benefits of technology

It improves the packaging speed and production efficiency of tile stacks, has a compact structure, coordinates movements, reduces the manual paper feeding process, and improves work reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a tile dispensing machine, comprising a mounting frame, a linkage moving device, a tile stack straightening device, and a cardboard straightening device. The mounting frame is provided with a cardboard bin, a first conveyor seat, and a second conveyor seat. The linkage moving device includes a moving frame, a cardboard clamping device, and a tile stack clamping device. The cardboard clamping device is used to clamp the cardboard in the cardboard bin to the second conveyor seat. The cardboard straightening device is used to straighten the cardboard on the second conveyor seat. The tile stack straightening device is used to straighten the tile stacks to be dispensed on the first conveyor seat. The tile stack clamping device is used to clamp the tile stacks to be dispensed on the first conveyor seat to the cardboard on the second conveyor seat. This application achieves automatic dispensing by using the moving frame to drive the cardboard clamping device to move back and forth between the second conveyor seat and the cardboard bin, reducing the manual paper feeding process, thereby reducing the packaging time of the tile stacks and increasing the packaging speed of the tile stacks.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of ceramic tile packaging, and particularly relates to a ceramic tile paper arranging machine. BACKGROUND

[0002] At present, building ceramic factories all adopt a production line to convey ceramic tiles. Finished ceramic tiles need to be packaged by paper boxes and then stored in warehouses. In the existing ceramic tile packaging, a worker manually places a paper board on a conveying line, and then a machine places a stack of ceramic tiles on the paper board, and finally the stack of ceramic tiles is conveyed to a packaging device for packaging. However, the manual paper placing method requires the worker to continuously place paper boards on the conveying line, and the worker is inevitably tired in the long and high-intensity work process, which causes physical decline, thereby reducing the packaging efficiency of the ceramic tiles. SUMMARY

[0003] In view of the problems in the background, the present application aims to provide a ceramic tile paper arranging machine to solve the problem of low packaging efficiency of ceramic tiles caused by the manual paper placing method in the existing ceramic tile packaging.

[0004] To achieve the above purpose, the present application adopts the following technical scheme:

[0005] A ceramic tile paper arranging machine comprises a mounting seat frame, a linkage moving device, a ceramic tile stack straightening device and a paper board straightening device. The mounting seat frame is provided with a paper board bin, a first conveying seat and a second conveying seat, and the paper board bin, the first conveying seat and the second conveying seat are arranged in parallel along the transverse direction of the mounting seat frame. The first conveying seat is used to convey a ceramic tile stack to be arranged with paper, and the second conveying seat is used to convey a ceramic tile stack arranged with paper. The linkage moving device comprises a moving frame, a paper board clamping device and a ceramic tile stack clamping device. The moving frame is installed on the top of the mounting seat frame, and the moving frame can move transversely on the top of the mounting seat frame. The paper board clamping device and the ceramic tile stack clamping device are respectively installed on the moving frame, and the paper board clamping device and the ceramic tile stack clamping device are arranged in parallel along the transverse direction. The paper board clamping device is used to clamp the paper board in the paper board bin to the second conveying seat. The paper board straightening device is used to straighten the paper board of the second conveying seat. The ceramic tile stack straightening device is used to straighten the ceramic tile stack to be arranged with paper on the first conveying seat. The ceramic tile stack clamping device is used to clamp the ceramic tile stack to be arranged with paper on the first conveying seat to the paper board of the second conveying seat.

[0006] Specifically, the linkage moving device further comprises a linkage driving device; the linkage driving device comprises a connecting support, a linkage driving member, a linkage rotating shaft and a transmission assembly; the connecting support is longitudinally installed on the top of the mounting seat frame; the linkage driving member is installed on the connecting support; the linkage rotating shaft is longitudinally installed on the connecting support and is drivingly connected with the linkage driving member, so that the linkage rotating shaft can be forwardly and reversely rotated; the moving frame is provided with pulleys on the two longitudinal sides thereof, respectively; the pulleys are clamped on the top surface of the mounting seat frame; the moving frame is drivingly connected with the linkage rotating shaft through the transmission assembly, so that the forward and reverse rotation of the linkage rotating shaft can drive the moving frame to move back and forth along the transverse direction on the mounting seat frame.

[0007] Specifically, the transmission assembly comprises a transmission belt, belt fixing seats and a transmission wheel assembly; the belt fixing seats are installed on the two lateral sides of the top of the mounting seat frame, respectively; the transmission wheel assembly is located between the two belt fixing seats; the transmission wheel assembly comprises a first transmission wheel, a second transmission wheel and a third transmission wheel; the first transmission wheel is sleeved on the linkage rotating shaft; the second transmission wheel and the third transmission wheel are installed on the connecting support side by side, and the first transmission wheel is located above the second transmission wheel and the third transmission wheel; one end of the transmission belt is fixedly connected with the belt fixing seat, and the other end of the transmission belt is sequentially wound around the second transmission wheel, the first transmission wheel and the third transmission wheel and is fixedly connected with the other belt fixing seat.

[0008] Further, the transmission assembly further comprises limiting rotating shafts, which are installed on the two lateral sides of the top of the mounting seat frame and are located outside the belt fixing seats; the two ends of the transmission belt are wound around the bottoms of the limiting rotating shafts on the two sides and are fixedly connected with the two belt fixing seats.

[0009] Specifically, the tile stack straightening device comprises a tile stack base, a tile stack jacking device, a tile stack transverse alignment device and a tile stack longitudinal alignment device; the first conveying seat is installed on the top of the tile stack base; the tile stack jacking device comprises a jacking drive and a tile stack support plate; the jacking drive is vertically installed on the bottom of the tile stack base, and the driving end of the top of the jacking drive is vertically telescopic; the tile stack support plate is longitudinally arranged outside the lateral ends of the first conveying seat, and the tile stack support plate is fixedly connected with the driving end of the jacking drive, so that the jacking drive can drive the tile stack support plate to vertically ascend and descend; the tile stack support plate is provided with a first movable groove; the tile stack longitudinal alignment device comprises a tile stack first longitudinal drive, a tile stack second longitudinal drive, a tile stack first longitudinal pivot, a tile stack second longitudinal pivot, a tile stack first sliding seat and a tile stack second sliding seat; the longitudinal ends of the tile stack support plate are respectively provided with the tile stack first longitudinal drive and the tile stack second longitudinal drive, and the rotation direction of the driving end of the tile stack first longitudinal drive is opposite to that of the driving end of the tile stack second longitudinal drive; the tile stack first longitudinal pivot and the tile stack second longitudinal pivot are vertically arranged in the first movable groove; one end of the tile stack first longitudinal pivot is connected with the driving end of the tile stack first longitudinal drive, and one end of the tile stack second longitudinal pivot is connected with the driving end of the tile stack second longitudinal drive; the tile stack first longitudinal pivot is sleeved with the tile stack first sliding seat, and the tile stack second longitudinal pivot is sleeved with the tile stack second sliding seat; the top of the tile stack first sliding seat and the top of the tile stack second sliding seat are respectively provided with a tile stack first material beating roller; the tile stack transverse alignment device is used for aligning the lateral sides of the tile stack of the first conveying seat.

[0010] Specifically, the tile stack transverse alignment device comprises two groups of tile stack transverse material beating roller groups, and the two groups of tile stack transverse material beating roller groups are arranged outside the lateral sides of the first conveying seat; the tile stack transverse material beating roller group comprises a tile stack second material beating roller group, a material beating roller first installation beam, a first installation seat, a tile stack swing drive and a tile stack swing arm; the first installation seat is installed on the bottom of the tile stack base; the tile stack swing drive is horizontally installed on the side surface of the first installation seat; the top of the first installation seat is provided with a connecting column; the bottom of the tile stack swing arm is connected with the driving end of the tile stack swing drive; the top of the tile stack swing arm is connected with the top of the connecting column through a rotating shaft; the material beating roller first installation beam is installed on the top surface of the tile stack swing arm; and the tile stack second material beating roller group is longitudinally installed on the top surface of the material beating roller first installation beam.

[0011] Specifically, the paperboard straightening device comprises a paperboard base, a second conveying seat, a paperboard transverse alignment device, a paperboard longitudinal alignment device and a paperboard material beating assembly; the second conveying seat is longitudinally installed on the top of the paperboard base; the paperboard material beating assembly comprises four paperboard material beating plates, two of which are located on each of the lateral sides of the second conveying seat, and the four paperboard material beating plates are arranged in a rectangular shape; the paperboard material beating plate is provided with a transverse material beating edge on the lateral side away from the center of the second conveying seat; the paperboard material beating plate is provided with a longitudinal material beating edge on the longitudinal side away from the center of the second conveying seat; the transverse material beating edge and the longitudinal material beating edge are arranged in an L shape; the paperboard transverse alignment device comprises two sets of paperboard transverse alignment assemblies, which are located on the outer sides of the lateral sides of the second conveying seat; the paperboard transverse alignment assembly comprises a second installation beam, a paperboard swing driving element, a paperboard swing arm and a rotating seat; the rotating seat is installed on the bottom of the paperboard base; the paperboard swing driving element is vertically installed on the paperboard base, and the top driving end of the paperboard swing driving element is vertically telescopic; the bottom of the paperboard swing arm is rotationally connected with the bottom of the rotating seat, and the top of the paperboard swing arm is hingedly connected with the driving end of the paperboard swing driving element; the second installation beam is installed on the top surface of the paperboard swing arm; two paperboard material beating plates located on the same lateral side of the second conveying seat are connected with the second installation beam located on the same lateral side of the second conveying seat; the four paperboard material beating plates are also drivingly connected with the paperboard longitudinal alignment device, so that the longitudinal material beating edges of the four paperboard material beating plates beat the longitudinal sides of the paperboard of the second conveying seat.

[0012] Specifically, the second installation beam is provided with a second movable slot; the paperboard longitudinal alignment device comprises a paperboard first longitudinal driving element, a paperboard second longitudinal driving element, a paperboard first longitudinal rotating shaft, a paperboard second longitudinal rotating shaft, a paperboard first sliding seat and a paperboard second sliding seat; the longitudinal ends of the second installation beam are respectively provided with the paperboard first longitudinal driving element and the paperboard second longitudinal driving element, and the rotation direction of the driving end of the paperboard first longitudinal driving element is opposite to that of the driving end of the paperboard second longitudinal driving element; the paperboard first longitudinal rotating shaft and the paperboard second longitudinal rotating shaft are vertically arranged in the second movable slot; one end of the paperboard first longitudinal rotating shaft is connected with the driving end of the paperboard first longitudinal driving element, and one end of the paperboard second longitudinal rotating shaft is connected with the driving end of the paperboard second longitudinal driving element; the paperboard first sliding seat is sleeved on the paperboard first longitudinal rotating shaft, and the paperboard second sliding seat is sleeved on the paperboard second longitudinal rotating shaft; two paperboard material beating plates located on the same lateral side of the second conveying seat are respectively installed on the paperboard first sliding seat and the paperboard second sliding seat on the same lateral side.

[0013] Specifically, the paperboard clamping device comprises a suction disc connecting frame, a vertical rack and a suction disc frame driving element; the bottom of the suction disc connecting frame is provided with a plurality of suction disc elements; the vertical rack is installed on the top of the suction disc connecting frame; the suction disc frame driving element is installed on the moving frame, and the driving end of the suction disc frame driving element is provided with a gear; the gear is engaged with the vertical rack, so that the suction disc frame driving element can drive the vertical rack to rise and fall in the vertical direction; the rising and falling of the vertical rack can drive the suction disc connecting frame to rise and fall.

[0014] Specifically, the tile stack clamping device comprises a clamping mounting frame, a lifting driving element, a clamping driving element, a clamping swing arm and a clamping plate; the lifting driving element is vertically installed on the moving frame, and the clamping mounting frame is drivingly connected with the lifting driving element, so that the clamping mounting frame can rise and fall in the vertical direction; the clamping driving element is symmetrically installed on the clamping mounting frame in the transverse direction, and the driving end of the clamping driving element can be transversely telescopic; the bottom of the clamping mounting frame is provided with a swing connecting plate; the top of the clamping swing arm is connected with the clamping driving element, and the bottom of the clamping swing arm is rotationally connected with the transverse end of the swing connecting plate, so that the clamping driving element can drive the clamping swing arm to swing in the transverse direction; the clamping plate is fixedly connected with the bottom surface of the clamping swing arm.

[0015] Compared with the prior art, one of the above technical solutions has the following beneficial effects:

[0016] The moving frame drives the paperboard clamping device to move back and forth between the second conveying seat and the paper bin, realizes automatic paper feeding, reduces the process of manual paper feeding, thereby reducing the packaging time of the tile stack and improving the packaging speed of the tile stack. More preferably, the moving frame can simultaneously drive the paperboard clamping device and the tile stack clamping device to move synchronously, so that the paperboard and the tile stack can be synchronously conveyed, the action is coordinated, and the structure is compact, thereby making the tile paper feeding machine have high production efficiency and working reliability. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structural schematic diagram of a tile paper feeding machine according to an embodiment of the present application;

[0018] Figure 2 is a connection schematic diagram of a linkage driving device and a moving frame according to an embodiment of the present application;

[0019] Figure 3 is a connection schematic diagram of a moving frame and a mounting seat frame according to an embodiment of the present application;

[0020] Figure 4 is a structural schematic diagram of a tile stack straightening device according to an embodiment of the present application;

[0021] Figure 5 is a structural schematic diagram of another perspective of the tile stack straightening device of one embodiment of the present application;

[0022] Figure 6 is a schematic diagram of the connection of the first sliding block and the second sliding block in the first movable slot of one embodiment of the present application;

[0023] Figure 7 is a structural schematic diagram of the first sliding block of one embodiment of the present application;

[0024] Figure 8 is a structural schematic diagram of the tile stack transverse material-patting roller set of one embodiment of the present application;

[0025] Figure 9 is a structural schematic diagram of the paperboard straightening device of one embodiment of the present application;

[0026] Figure 10 is a structural schematic diagram of another perspective of the paperboard straightening device of one embodiment of the present application;

[0027] Figure 11 is a structural schematic diagram of the paperboard clamping device of one embodiment of the present application;

[0028] Figure 12 is a structural schematic diagram of the tile stack clamping device of one embodiment of the present application;

[0029] Figure 13 is a structural schematic diagram of the paperboard material-patting assembly of one embodiment of the present application. DETAILED DESCRIPTION

[0030] Embodiments of the present application are described in detail below with reference to the attached drawing figures, wherein the same or like reference numerals are used throughout the drawing figures to refer to the same or like elements or elements having the same or similar functionality. The embodiments described below are exemplary and are merely intended to explain the present application, and are not intended to limit the present application.

[0031] In addition, the terms "first", "second", and "third" are used only for descriptive purposes, and are not to be construed as indicating or implying relative importance or a number of indicated technical features. Thus, features defined with "first", "second", and "third" can explicitly or implicitly include one or more of the features.

[0032] One preferred embodiment in the present application is as follows: Figures 1 to 12As shown, a tile paper matching machine comprises a mounting seat frame 1, a linkage moving device, a tile stack straightening device 3 and a paperboard straightening device 4; the mounting seat frame 1 is provided with a paperboard bin, a first conveying seat 11 and a second conveying seat 12, the paperboard bin, the first conveying seat 11 and the second conveying seat 12 are arranged in parallel along the transverse direction of the mounting seat frame 1; the first conveying seat 11 is used for conveying tile stacks to be matched with paper, and the second conveying seat 12 is used for conveying tile stacks matched with paper; the linkage moving device comprises a moving frame 21, a paperboard clamping device 22 and a tile stack clamping device 23; the moving frame 21 is installed on the top of the mounting seat frame 1, and the moving frame 21 can move transversely on the top of the mounting seat frame 1; the paperboard clamping device 22 and the tile stack clamping device 23 are respectively installed on the moving frame 21, and the paperboard clamping device 22 and the tile stack clamping device 23 are arranged in parallel along the transverse direction; the paperboard clamping device 22 is used for clamping the paperboard in the paperboard bin to the second conveying seat 12; the paperboard straightening device 4 is used for straightening the paperboard of the second conveying seat 12; the tile stack straightening device 3 is used for straightening the tile stacks to be matched with paper on the first conveying seat 11; and the tile stack clamping device 23 is used for clamping the tile stacks to be matched with paper on the first conveying seat 11 to the paperboard of the second conveying seat 12.

[0033] In the embodiment, the lateral direction is the left-right direction, and the longitudinal direction is the front-rear direction. The tile stack to be papered is conveyed from the previous processing procedure to the first conveying seat 11, and then moved to the straightening position of the tile stack straightening device 3 by the first conveying seat 11. After being moved to the tile stack straightening device 3, the tile stack straightening device 3 straightens the tile stack, so that the four side edges of the tile stack are aligned two by two. At the same time of straightening the tile stack, the moving frame 21 drives the paper board clamping device 22 to move to the left, so that the paper board clamping device 22 moves above the paper bin (not shown in the embodiment), and then clamps the paper in the paper bin, and then the moving frame 21 drives the paper board clamping device 22 to move to the right, so that the clamped paper board is placed on the second conveying seat 12. After being clamped to the second conveying seat 12, the paper board is straightened by the conveying paper board straightening device 4. After the paper board and the tile stack are straightened, the tile stack clamping device 23 clamps the tile stack on the first conveying seat 11 to the paper board on the second conveying seat 12, and then the second conveying seat 12 conveys the tile stack and the paper board to the next procedure for packaging. It is worth noting that in the embodiment, the paper board clamping device 22 and the tile stack clamping device 23 are both installed on the moving frame 21, and when the moving frame 21 moves, the paper board clamping device 22 and the tile stack clamping device 23 are simultaneously driven to move to the left, that is, when the moving frame 21 drives the tile stack clamping device 23 to the second conveying seat 12, the paper board clamping device 22 moves to the paper bin to clamp the next paper board. After the papered tile stack is conveyed to the next procedure, the moving frame 21 simultaneously drives the paper board clamping device 22 and the tile stack clamping device 23 to move to the right, so that the clamped next paper board is placed on the second conveying seat 12, and the tile stack clamping device 23 moves to the first conveying seat 11 to clamp the next tile stack. Therefore, the application realizes automatic papering by driving the paper board clamping device 22 to move back and forth between the second conveying seat 12 and the paper bin by the moving frame 21, reduces the process of manual paper placing, thereby reducing the packaging time of the tile stack and improving the packaging speed of the tile stack. More preferably, the moving frame 21 can simultaneously drive the paper board clamping device 22 and the tile stack clamping device to move synchronously, so that the paper board and the tile stack can be synchronously conveyed, the action is coordinated, and the structure is compact, thereby making the tile papering machine of the application have high production efficiency and working reliability.

[0034] Specifically, the linkage moving device further comprises a linkage driving device; the linkage driving device comprises a connecting support 241, a linkage driving member 242, a linkage rotating shaft 243 and a transmission assembly 244; the connecting support 241 is longitudinally installed on the top of the mounting seat frame 1; the linkage driving member 242 is installed on the connecting support 241; the linkage rotating shaft 243 is longitudinally installed on the connecting support 241 and is drivingly connected with the linkage driving member 242, so that the linkage rotating shaft 243 can be forwardly and reversely rotated; the moving frame 21 is provided with pulleys 210 on the two longitudinal sides thereof respectively, the pulleys 210 are clamped on the top surface of the mounting seat frame 1; the moving frame 21 is drivingly connected with the linkage rotating shaft 243 through the transmission assembly 244, so that the forward and reverse rotation of the linkage rotating shaft 243 can drive the moving frame 21 to move back and forth along the transverse direction on the mounting seat frame 1.

[0035] In the embodiment, the connecting support 241 is installed on the top of the mounting seat frame 1 in front and back, the connecting support 241 is internally provided with the linkage rotating shaft 243 arranged in front and back, the connecting support 241 is further provided with the linkage driving member 242 on the two sides thereof in front and back respectively, and the two ends of the linkage rotating shaft 243 are respectively connected with the driving ends of the linkage driving members 242 on the two sides, so that the linkage driving members 242 on the two sides can drive the linkage rotating shaft 243 to be forwardly and reversely rotated. Further, the two sides of the moving frame 21 are clamped with the top surface of the mounting seat frame 1 through the pulleys 210 respectively, and are drivingly connected with the linkage rotating shaft 243 through the transmission assembly 244, so that the forward and reverse rotation of the linkage rotating shaft 243 can drive the moving frame 21 to move left and right on the mounting seat frame 1, thereby enabling the paperboard clamping device 22 to move back and forth between the paper bin and the second conveying seat 12, and enabling the ceramic tile stack clamping device 23 to move back and forth between the first conveying seat 11 and the second conveying seat 12.

[0036] Specifically, the transmission assembly 244 comprises a transmission belt 2441, a belt fixing seat 2442 and a transmission wheel assembly; the belt fixing seat 2442 is respectively installed on the transverse two sides of the top of the mounting seat frame 1; the transmission wheel assembly is located between the two belt fixing seats 2442; the transmission wheel assembly comprises a first transmission wheel 2443, a second transmission wheel 2444 and a third transmission wheel 2445; the first transmission wheel 2443 is sleeved on the linkage rotating shaft 243; the second transmission wheel 2444 and the third transmission wheel 2445 are installed side by side on the connecting support 241, and the first transmission wheel 2443 is located above the second transmission wheel 2444 and the third transmission wheel 2445; one end of the transmission belt 2441 is fixedly connected with the belt fixing seat 2442, and the other end of the transmission belt 2441 is sequentially wound around the second transmission wheel 2444, the first transmission wheel 2443 and the third transmission wheel 2445 and fixedly connected with the other belt fixing seat 2442.

[0037] The first transmission wheel 2443 is provided at the front and rear ends of the linkage rotating shaft 243, and the second transmission wheel 2444 and the third transmission wheel 2445 are provided below the first transmission wheel 2443 in parallel. Two belt fixing seats 2442 are respectively provided on the front and rear sides of the top surface of the mounting seat frame 1, and the two belt fixing seats 2442 are respectively located at the two ends of the front and rear sides of the mounting seat frame 1. The transmission belt 2441 is fixedly connected with the left-end belt fixing seat 2442, then wound around the bottom of the second transmission wheel 2444, then wound around the bottom of the first transmission wheel 2443 upwards, and finally wound around the bottom of the third transmission wheel 2445 downwards and fixedly connected with the right-end belt fixing seat 2442. Therefore, when the linkage rotating shaft 243 rotates counterclockwise, the transmission belt 2441 is transmitted to the left end, and when the transmission belt 2441 is transmitted to the left, a leftward force is given to the right-end belt fixing seat 2442, so as to pull the moving frame 21 to move leftwards on the top of the mounting seat frame 1. Similarly, when the linkage rotating shaft 243 rotates clockwise, the transmission belt 2441 is transmitted to the right end, so as to give a rightward pulling force to the left-end belt fixing seat 2442, so as to pull the moving frame 21 to move rightwards on the top of the mounting seat frame 1.

[0038] Further, the transmission assembly 244 further comprises a limiting rotating shaft 2446, the limiting rotating shaft 2446 is respectively installed on the transverse two sides of the top of the mounting seat frame 1 and located outside the belt fixing seat 2442; the two ends of the transmission belt 2441 are respectively wound around the bottoms of the limiting rotating shafts 2446 on the two sides and fixedly connected with the two belt fixing seats 2442.

[0039] The left and right outer sides of the two belt fixing seats 2442 located on the same front side or rear side are also respectively provided with a limiting rotating shaft 2446, so that after the transmission belt 2441 is fixed with the belt fixing seat 2442, it first passes around the limiting rotating shaft 2446, then passes around the transmission wheel assembly, and finally passes around the limiting rotating shaft 2446 on the other side and is fixedly connected with the belt fixing seat 2442 on the other side. The purpose of such a design is that when the transmission belt 2441 is conveyed left and right, it can be rolled on the top surface of the mounting seat frame 1 through the limiting rotating shaft 2446, so as to avoid the transmission belt 2441 from arching and winding around other parts of the ceramic tile matching machine, ensure the smooth conveyance of the transmission belt 2441, and thus ensure that the moving frame 21 can move left and right on the top of the mounting seat frame 1.

[0040] Specifically, the tile stack straightening device 3 comprises a tile stack base 31, a tile stack jacking device 32, a tile stack transverse alignment device 33 and a tile stack longitudinal alignment device 34; the first conveying seat 11 is installed on the top of the tile stack base 31; the tile stack jacking device 32 comprises a jacking drive 321 and a tile stack support plate 322; the jacking drive 321 is vertically installed on the bottom of the tile stack base 31, and the driving end of the top of the jacking drive 321 is telescopic in the vertical direction; the tile stack support plate 322 is longitudinally arranged outside the lateral ends of the first conveying seat 11, and the tile stack support plate 322 is fixedly connected with the driving end of the jacking drive 321, so that the jacking drive 321 can drive the tile stack support plate 322 to ascend and descend in the vertical direction; the tile stack support plate 322 is provided with a first movable groove 3220; the tile stack longitudinal alignment device 34 comprises a tile stack first longitudinal drive 341, a tile stack second longitudinal drive 342, a tile stack first longitudinal pivot 343, a tile stack second longitudinal pivot 344, a tile stack first sliding seat 345 and a tile stack second sliding seat 346; the longitudinal ends of the tile stack support plate 322 are respectively provided with the tile stack first longitudinal drive 341 and the tile stack second longitudinal drive 342, and the rotation direction of the driving end of the tile stack first longitudinal drive 341 is opposite to that of the driving end of the tile stack second longitudinal drive 342; the tile stack first longitudinal pivot 343 and the tile stack second longitudinal pivot 344 are vertically and parallelly arranged in the first movable groove 3220; one end of the tile stack first longitudinal pivot 343 is connected with the driving end of the tile stack first longitudinal drive 341, and one end of the tile stack second longitudinal pivot 344 is connected with the driving end of the tile stack second longitudinal drive 342; the tile stack first longitudinal pivot 343 is sleeved with the tile stack first sliding seat 345, and the tile stack second longitudinal pivot 344 is sleeved with the tile stack second sliding seat 346; the top of the tile stack first sliding seat 345 and the top of the tile stack second sliding seat 346 are respectively provided with a tile stack first material beating roller 347; the tile stack transverse alignment device 33 is used for aligning the lateral sides of the tile stack of the first conveying seat 11.

[0041] After the tile stack to be straightened is transferred from the previous processing sequence to the first conveying seat 11, the tile stack supporting plate 322 is driven upward by the jacking drive 321 after the tile stack to be straightened is conveyed between the four sliding seats, so as to lift the tile stack away from the first conveying seat 11. After the tile stack is lifted away from the first conveying seat 11, the tile stack lateral alignment device 33 is driven to align the left and right sides of the tile stack, so that the left and right sides of the tile stack are aligned. At the same time, the tile stack first longitudinal drive 341 and the tile stack second longitudinal drive 342 at the front and rear ends of the tile stack supporting plate 322 drive the tile stack first longitudinal rotating shaft 343 and the tile stack second longitudinal rotating shaft 344 to rotate, respectively. Because the tile stack first longitudinal drive 341 and the tile stack second longitudinal drive 342 rotate in opposite directions, the tile stack first longitudinal rotating shaft 343 and the tile stack second longitudinal rotating shaft 344 also rotate in opposite directions, driving the tile stack first sliding seat 345 and the tile stack second sliding seat 346 to move relative to each other in the first movable groove 3220. Therefore, when the tile stack first longitudinal drive 341 and the tile stack second longitudinal drive 342 can drive the tile stack first sliding seat 345 and the tile stack second sliding seat 346 to move closer to each other, the tile stack first beating roller 347 mounted on the tile stack first sliding seat 345 and the tile stack second sliding seat 346 can beat the front and rear sides of the tile stack, so as to align the front and rear sides of the tile stack.

[0042] More preferably, the tile stack first sliding seat 345 is provided with a tile stack first sliding block 348, and the tile stack second sliding seat 346 is provided with a tile stack second sliding block 349; the tile stack first sliding block 348 and the tile stack second sliding block 349 are both provided with a first drive hole 3001 and a first guide hole 3002; the first drive hole 3001 of the tile stack first sliding block 348 is located above the first guide hole 3002 of the tile stack first sliding block 348; the first drive hole 3001 of the tile stack second sliding block 349 is located below the guide hole of the tile stack second sliding block 349; a first bearing sleeve is arranged in the first drive hole 3001; the first drive hole 3001 of the tile stack first sliding block 348 is clamped on the tile stack first longitudinal rotating shaft 343, and the first guide hole 3002 of the tile stack second sliding block 349 is sleeved on the tile stack second longitudinal rotating shaft 344; the first drive hole 3001 of the tile stack second sliding block 349 is clamped on the tile stack second longitudinal rotating shaft 344, and the first guide hole 3002 of the tile stack second sliding block 349 is sleeved on the tile stack first longitudinal rotating shaft 343.

[0043] Further, a first L-shaped through slot is arranged between the first guide hole 3002 and the first driving hole 3001; the first L-shaped through slot comprises a first vertical through slot 3003 and a first horizontal through slot 3004; the first vertical through slot 3003 respectively penetrates the longitudinal two side faces of the tile stack first sliding block 348 and the longitudinal two side faces of the tile stack second sliding block 349; one end of the first horizontal through slot 3004 is communicated with one end of the first vertical through slot 3003 in the direction of the first guide hole 3002, and the other end of the first horizontal through slot 3004 respectively penetrates the lateral one side face of the tile stack first sliding block 348 and the lateral one side face of the tile stack second sliding block 349; one end of the first vertical through slot 3003 in the direction of the first driving hole 3001 is communicated with the first driving hole 3001, so that the first driving hole 3001 can be expanded or contracted through the first vertical through slot 3003; the tile stack first sliding block 348 and the tile stack second sliding block 349 are further respectively provided with a first connecting hole 3005; the first connecting hole 3005 respectively penetrates the lateral two side faces of the tile stack first sliding block 348 and the lateral two side faces of the tile stack second sliding block 349, and the first connecting hole 3005 is further communicated with the first vertical through slot 3003.

[0044] In the embodiment, the structure of the tile stack first sliding block 348 is the same as that of the tile stack second sliding block 349, the tile stack first sliding block 348 is connected to the tile stack first sliding seat 345 in normal, and the tile stack second sliding block 349 is connected to the tile stack second sliding seat 346 in reverse, so that the first driving hole 3001 of the tile stack first sliding block 348 is located above the first guide hole 3002 of the tile stack first sliding block 348, and the first driving hole 3001 of the tile stack second sliding block 349 is located below the guide hole of the tile stack second sliding block 349. In the embodiment, the tile stack first sliding block 348 is described: the first bearing sleeve is arranged in the first driving hole 3001, so that when the first longitudinal rotating shaft rotates, the tile stack first sliding block 348 can move on the first longitudinal rotating shaft under the action of the first bearing sleeve, and the first guide hole 3002 is clamped on the second longitudinal rotating shaft, so that when the first sliding block is driven by the rotation of the first longitudinal rotating shaft, the second longitudinal rotating shaft can guide the first sliding block, ensuring that the first sliding block moves in the longitudinal direction, thereby ensuring that the tile stack first sliding seat 345 can drive the material rolling rod to align the tile stack. More preferably, a first L-shaped through groove is arranged between the first guide hole 3002 and the first driving hole 3001, a first vertical through groove 3003 of the first L-shaped through groove is located on the same straight line as the vertical center line of the first driving hole 3001, the top end of the first vertical through groove 3003 communicates with the first driving hole 3001, and the bottom end of the first vertical through groove 3003 communicates with the first horizontal through groove 3004, so that the first driving hole 3001 can be expanded or contracted through the first vertical through groove 3003, so that the first driving hole 3001 can be detachably sleeved on the first longitudinal rotating shaft. Further, first connecting holes 3005 are further arranged at the left and right ends of the tile stack first sliding block 348, and the first connecting holes 3005 and the side surface of the movable groove can be connected by bolts and other connecting members, so that the first driving hole 3001 can be locked to shrink, so that the first driving hole 3001 can be stably sleeved on the first longitudinal rotating shaft. It is worth noting that only one end of the first longitudinal rotating shaft and the second longitudinal rotating shaft is connected with the first longitudinal driving member and the second longitudinal driving member, and the other end is open. Therefore, when installing the tile stack first sliding block 348, first, the first guide hole 3002 is sleeved on the second longitudinal rotating shaft from the open end of the second longitudinal rotating shaft, and then slid to the corresponding position, and then the first driving hole 3001 is opened, so that the first driving hole 3001 is sleeved on the first longitudinal rotating shaft, and then the connecting member passes through the first connecting hole 3005, so that the first driving hole 3001 is stably clamped on the first longitudinal rotating shaft.Therefore, in the embodiment, when the different specifications of the tile stack are straightened, the positions of the tile stack first sliding block 348 and the tile stack second sliding block 349 can be manually adjusted by opening the first driving hole 3001, and the tile stack first sliding block 348 and the tile stack second sliding block 349 are respectively located on the outside of the front and rear sides of the tile stack, so that the material roller can be aligned to the longitudinal side of the tile stack. More preferably, when the small size tile stack is aligned, a plurality of tile stack first sliding blocks 348 can be installed at intervals, and a plurality of tile stacks can be aligned at the same time, thereby reducing the straightening time and improving the packaging efficiency of the tile stack.

[0045] Specifically, the tile stack transverse alignment device 33 includes two groups of tile stack transverse material roller groups, which are located on the outside of the lateral sides of the first conveying seat 11; the tile stack transverse material roller group includes a tile stack second material roller group 330, a material roller first installation beam 331, a first installation seat 332, a tile stack swing driving member 333, and a tile stack swing arm 334; the first installation seat 332 is installed on the bottom of the tile stack base 31; the tile stack swing driving member 333 is horizontally installed on the side surface of the first installation seat 332; the top of the first installation seat 332 is provided with a connecting column 335; the bottom of the tile stack swing arm 334 is connected with the driving end of the tile stack swing driving member 333; the top of the tile stack swing arm 334 is connected with the top of the connecting column 335 through a rotating shaft; the material roller first installation beam 331 is installed on the top surface of the tile stack swing arm 334; and the tile stack second material roller group 330 is longitudinally installed on the top surface of the material roller first installation beam 331.

[0046] The tile stack swing driving member 333 is horizontally installed on the tile stack base 31 through the first mounting seat 332, and the driving end of the tile stack swing driving member 333 can be extended left and right. The bottom of the tile stack swing arm 334 is connected with the driving end of the tile stack swing driving member 333, and the top of the tile stack swing arm 334 is rotatably connected with the bottom of the connecting column 335 through a rotating shaft. Therefore, when the tile stack swing driving member 333 is extended left and right, it can drive the tile stack swing arm 334 to swing left and right around the rotating shaft. The material beating roller first mounting cross beam 331 is installed on the top surface of the tile stack swing arm 334, so the tile stack swing arm 334 can drive the material beating roller first mounting cross beam 331 to swing left and right, thereby beating the tiles on the left and right sides of the tile stack. More preferably, when the tile stack moves on the conveying belt, the tile stack swing arms 334 on the left and right sides are away from the first conveying seat 11, and are in an open state, so as to avoid the tile stack from colliding with the material beating roller rod of the second material beating roller when the tile stack moves on the first conveying seat 11, thereby avoiding damage and prolonging the service life of the tile stack straightening mechanism.

[0047] Specifically, the paperboard straightening device 4 comprises a paperboard base 41, a second conveying seat 12, a paperboard transverse alignment device 42, a paperboard longitudinal alignment device 43 and a paperboard beating assembly; the second conveying seat 12 is longitudinally installed on the top of the paperboard base 41; the paperboard beating assembly comprises four paperboard beating plates 44, which are located on the two lateral sides of the second conveying seat 12 respectively, and are arranged in a rectangular shape; the paperboard beating plate is provided with a transverse beating edge 441 on the lateral side away from the center of the second conveying seat 12; the paperboard beating plate is provided with a longitudinal beating edge 442 on the longitudinal side away from the center of the second conveying seat 12; the transverse beating edge and the longitudinal beating edge are arranged in an L shape; the paperboard transverse alignment device 42 comprises two sets of paperboard transverse alignment assemblies, which are located on the outer sides of the two lateral sides of the second conveying seat 12 respectively; the paperboard transverse alignment assembly comprises a second installation beam 421, a paperboard swing driving member 422, a paperboard swing arm 423 and a rotating seat 424; the rotating seat 424 is installed on the bottom of the paperboard base 41; the paperboard swing driving member 422 is vertically installed on the paperboard base 41, and the top driving end of the paperboard swing driving member 422 is telescopic in the vertical direction; the bottom of the paperboard swing arm 423 is rotationally connected with the bottom of the rotating seat 424, and the top of the paperboard swing arm 423 is hingedly connected with the driving end of the paperboard swing driving member 422; the second installation beam 421 is installed on the top surface of the paperboard swing arm 423; two paperboard beating plates located on the same lateral side of the second conveying seat 12 are connected with the second installation beam 421 located on the same lateral side of the second conveying seat 12 respectively; the four paperboard beating plates are also drivingly connected with the paperboard longitudinal alignment device 43, so that the longitudinal beating edges of the four paperboard beating plates beat the longitudinal two sides of the paperboard in the second conveying seat 12.

[0048] A second conveying seat 12 is arranged on the top of the paperboard base 41, and paperboard is sucked from a paper bin to the second conveying seat 12 and placed in the rectangular area surrounded by the four paperboard beating plates. After the paperboard is transported to the second conveying seat 12, the paperboard swing driving member 422 is contracted downward to drive the paperboard swing arm 423 hingedly connected therewith to swing toward the second conveying seat 12. The swing of the second conveying seat 12 drives the second installation beam 421 to swing toward the second conveying seat 12, so that the second installation beam 421 drives the two paperboard beating plates installed thereon to swing toward the second conveying seat 12, so that the transverse beating edges beat the left and right sides of the paperboard, so that the left and right sides of the paperboard are aligned. After the left and right sides of the paperboard are beaten, the paperboard longitudinal alignment device 43 drives the longitudinal beating edges of the four paperboard beating plates to move toward the second conveying seat 12 respectively, so as to beat the front and back sides of the paperboard.

[0049] Specifically, the second mounting beam 421 is provided with a second movable slot 4210; the paperboard longitudinal alignment device 43 comprises a paperboard first longitudinal driving member 431, a paperboard second longitudinal driving member 432, a paperboard first longitudinal rotating shaft 433, a paperboard second longitudinal rotating shaft 434, a paperboard first sliding seat 435 and a paperboard second sliding seat 436; the longitudinal two ends of the second mounting beam 421 are respectively provided with the paperboard first longitudinal driving member 431 and the paperboard second longitudinal driving member 432, and the rotating direction of the driving end of the paperboard first longitudinal driving member 431 is opposite to that of the driving end of the paperboard second longitudinal driving member 432; the paperboard first longitudinal rotating shaft 433 and the paperboard second longitudinal rotating shaft 434 are vertically arranged in the second movable slot 4210; one end of the paperboard first longitudinal rotating shaft 433 is connected with the driving end of the paperboard first longitudinal driving member 431, and one end of the paperboard second longitudinal rotating shaft 434 is connected with the driving end of the paperboard second longitudinal driving member 432; the paperboard first longitudinal rotating shaft 433 is sleeved with the paperboard first sliding seat 435, and the paperboard second longitudinal rotating shaft 434 is sleeved with the paperboard second sliding seat 436; the two paperboard beating plates located at the same lateral side of the second conveying seat 12 are respectively mounted on the same lateral side of the paperboard first sliding seat 435 and the paperboard second sliding seat.

[0050] After the left and right sides of the paperboard are beaten, the paperboard first longitudinal driving member 431 and the paperboard second longitudinal driving member 432 at the front and rear ends of the second mounting beam 421 drive the paperboard first longitudinal rotating shaft 433 and the paperboard second longitudinal rotating shaft 434 to rotate, respectively. Because the rotating directions of the paperboard first longitudinal driving member 431 and the paperboard second longitudinal driving member 432 are opposite, the paperboard first longitudinal rotating shaft 433 and the paperboard second longitudinal rotating shaft 434 also rotate reversely, thereby driving the paperboard first sliding seat 435 and the paperboard second sliding seat 436 to move relatively in the second movable slot. Therefore, when the paperboard first longitudinal driving member 431 and the paperboard second longitudinal driving member 432 can drive the paperboard first sliding seat 435 and the paperboard second sliding seat 436 to move close to each other, the paperboard beating plates mounted on the paperboard first sliding seat 435 and the paperboard second sliding seat 436 can beat the front and rear sides of the paperboard through the longitudinal beating edges, thereby aligning the front and rear sides of the paperboard.

[0051] Specifically, the paperboard clamping device 22 comprises a suction disc connecting frame 221, a vertical rack 222 and a suction disc frame driving element 223; the bottom of the suction disc connecting frame 221 is provided with a plurality of suction disc elements 2210; the vertical rack 222 is installed on the top of the suction disc connecting frame 22; the suction disc frame driving element 223 is installed on the moving frame 21, and the driving end of the suction disc frame driving element 223 is provided with a gear 2231; the gear 2231 is engaged with the vertical rack 222, so that the suction disc frame driving element 223 can drive the vertical rack 222 to lift in the vertical direction; the lifting of the vertical rack 222 can drive the suction disc connecting frame 221 to lift.

[0052] In the embodiment, the bottom of the suction disc connecting frame 221 is provided with a plurality of suction disc elements 2210 for sucking paperboard. The top of the suction disc connecting frame 221 is provided with a vertical rack 222 arranged vertically, and the suction disc frame driving element 223 is fixedly installed on the moving frame 21, and the driving end of the suction disc frame driving element 223 is provided with a gear 2231, which is engaged with the vertical rack 222 through the tooth, so that the suction disc frame driving element 223 can drive the vertical rack 222 to roll in the vertical direction, thereby driving the suction disc connecting frame 221 to lift in the vertical direction. Such arrangement is to lift the suction disc connecting frame 221 upward after sucking paperboard, so as to avoid collision with other devices when the suction disc connecting frame 221 moves left and right, thereby avoiding damage to the suction disc connecting frame 221 and prolonging the service life.

[0053] Specifically, the ceramic tile stack clamping device 23 comprises a clamping mounting frame 231, a lifting driving element 232, a clamping driving element 233, a clamping swing arm 234 and a clamping plate 235; the lifting driving element 232 is vertically installed on the moving frame 21, the clamping mounting frame 231 is drivingly connected with the lifting driving element 232, so that the clamping mounting frame 231 can lift in the vertical direction; the clamping driving element 233 is symmetrically installed on the clamping mounting frame 231 in the transverse direction, and the driving end of the clamping driving element 233 can be transversely telescopic; the bottom of the clamping mounting frame 231 is provided with a swing connecting plate 236; the top of the clamping swing arm 234 is connected with the clamping driving element 233, and the bottom of the clamping swing arm 234 is rotationally connected with the transverse end of the swing connecting plate 236, so that the clamping driving element 233 can drive the clamping swing arm 234 to swing in the transverse direction; the clamping plate 235 is fixedly connected with the bottom surface of the clamping swing arm 234.

[0054] The top of the moving frame 21 is also provided with a vertical lifting drive 232, the driving end of which is vertically downward and connected with the clamping mounting frame 231, so as to drive the clamping mounting frame 231 to vertically lift. Further, the clamping mounting frame 231 is provided with left-right symmetrical clamping drives 233, the outer side of which is the driving end and can stretch and contract in the left-right direction. Still further, the bottom of the clamping mounting frame 231 is also provided with a swing connecting plate 236, the left and right ends of which are respectively rotatably connected with clamping swing arms 234, the top of which is also connected with the driving end of the clamping drive 233. Therefore, the stretching and contraction of the clamping drive 233 can drive the clamping swing arms to swing left and right around the end of the swing connecting plate 236, so as to make the clamping plate 235 installed at the bottom of the clamping swing arm clamp or release the tile stack.

[0055] The technical principles of the present application are described above in combination with specific embodiments. These descriptions are only for explaining the principles of the present application, and cannot be explained as the limitation of the protection scope of the present application in any way. Based on the explanations herein, the skilled in the art can think of other specific embodiments of the present application without any creative labor, and these embodiments will all fall into the protection scope of the present application.

Claims

1. A ceramic tile papering machine, characterized in that, The installation seat frame is provided with a paperboard bin, a first conveying seat and a second conveying seat, and the paperboard bin, the first conveying seat and the second conveying seat are arranged in parallel along the transverse direction of the installation seat frame; The first conveying seat is used for conveying the tile stack to be papered, and the second conveying seat is used for conveying the tile stack with paperboard; The linkage moving device comprises a moving frame, a paperboard clamping device and a tile stack clamping device; The moving frame is installed on the top of the installation seat frame, and the moving frame can move transversely on the top of the installation seat frame; The paperboard clamping device and the tile stack clamping device are respectively installed on the moving frame, and the paperboard clamping device and the tile stack clamping device are arranged in parallel along the transverse direction; The paperboard clamping device is used for clamping the paperboard in the paperboard bin to the second conveying seat; The paperboard straightening device is used for straightening the paperboard of the second conveying seat; The tile stack straightening device is used for straightening the tile stack to be papered on the first conveying seat; The tile stack clamping device is used for clamping the tile stack to be papered on the first conveying seat to the paperboard of the second conveying seat; The paperboard straightening device comprises a paperboard base, a second conveying seat, a paperboard transverse alignment device, a paperboard longitudinal alignment device and a paperboard material beating assembly; The second conveying seat is longitudinally installed on the top of the paperboard base; The paperboard material beating assembly comprises four paperboard material beating plates, and the four paperboard material beating plates are arranged in a rectangular shape; The paperboard material beating plate is provided with a transverse material beating edge away from the transverse side of the center of the second conveying seat; The paperboard material beating plate is provided with a longitudinal material beating edge away from the longitudinal side of the center of the second conveying seat; The transverse material beating edge and the longitudinal material beating edge are arranged in an L shape; The paperboard transverse alignment device comprises two groups of paperboard transverse alignment assemblies, and the two groups of paperboard transverse alignment assemblies are respectively located on the outer sides of the two transverse sides of the second conveying seat; The paperboard transverse alignment assembly comprises a second installation cross beam, a paperboard swing driving member, a paperboard swing arm and a rotating seat; The rotating seat is installed on the bottom of the paperboard base; The paperboard swing driving member is vertically installed on the paperboard base, and the top driving end of the paperboard swing driving member can be telescoped in the vertical direction; The bottom of the paperboard swing arm is rotationally connected with the bottom of the rotating seat, and the top of the paperboard swing arm is hingedly connected with the driving end of the paperboard swing driving member; The second installation cross beam is installed on the top surface of the paperboard swing arm; The two paperboard material beating plates located on the same transverse side of the second conveying seat are respectively connected with the second installation cross beam located on the same transverse side of the second conveying seat; The four paperboard material beating plates are also drivingly connected with the paperboard longitudinal alignment device, so that the longitudinal material beating edges of the four paperboard material beating plates beat the longitudinal two sides of the paperboard of the second conveying seat. The linkage moving device further comprises a linkage driving device; 2. A ceramic tile papering machine according to claim 1, characterized in that, The linkage driving device comprises a connecting support, a linkage driving member, a linkage rotating shaft and a transmission assembly; ​ The connecting support is longitudinally mounted on the top of the mounting support; The linkage driving member is mounted on the connecting support; The linkage rotating shaft is longitudinally mounted on the connecting support and is drivingly connected with the linkage driving member, so that the linkage rotating shaft can be reversely rotated; The longitudinal two sides of the moving frame are respectively provided with pulleys, which are clamped on the top surface of the mounting support; The moving frame is drivingly connected with the linkage rotating shaft through the transmission assembly, so that the forward and reverse rotation of the linkage rotating shaft can drive the moving frame to move back and forth on the mounting support along the transverse direction.

3. A ceramic tile papering machine according to claim 2, characterized in that The transmission assembly comprises a transmission belt, a belt fixing seat and a transmission wheel assembly; The belt fixing seat is respectively mounted on the transverse two sides of the top of the mounting support; The transmission wheel assembly is located between the two belt fixing seats; The transmission wheel assembly comprises a first transmission wheel, a second transmission wheel and a third transmission wheel; The first transmission wheel is sleeved on the linkage rotating shaft; The second transmission wheel and the third transmission wheel are installed side by side on the connecting support, and the first transmission wheel is located above the second transmission wheel and the third transmission wheel; One end of the transmission belt is fixedly connected with the belt fixing seat, and the other end of the transmission belt is sequentially wound around the second transmission wheel, the first transmission wheel and the third transmission wheel, and is fixedly connected with the other belt fixing seat.

4. A ceramic tile papering machine according to claim 3, characterized in that The transmission assembly further comprises a limiting rotating shaft, which is respectively mounted on the transverse two sides of the top of the mounting support and is located outside the belt fixing seat; The two ends of the transmission belt are respectively wound around the bottom of the limiting rotating shaft on the two sides and are fixedly connected with the two belt fixing seats.

5. A ceramic tile papering machine according to claim 1, characterized in that, The ceramic tile stack straightening device comprises a ceramic tile stack base, a ceramic tile stack jacking device, a ceramic tile stack transverse alignment device and a ceramic tile stack longitudinal alignment device; The first conveying seat is mounted on the top of the ceramic tile stack base; The ceramic tile stack jacking device comprises a jacking driving member and a ceramic tile stack support plate; The jacking driving member is vertically mounted on the bottom of the ceramic tile stack base, and the driving end of the top of the jacking driving member can be extended and retracted in the vertical direction; The ceramic tile stack support plate is longitudinally arranged outside the transverse two ends of the first conveying seat, and the ceramic tile stack support plate is fixedly connected with the driving end of the jacking driving member, so that the jacking driving member can drive the ceramic tile stack support plate to ascend and descend in the vertical direction; The ceramic tile stack support plate is provided with a first movable groove; The ceramic tile stack longitudinal alignment device comprises a ceramic tile stack first longitudinal driving member, a ceramic tile stack second longitudinal driving member, a ceramic tile stack first longitudinal rotating shaft, a ceramic tile stack second longitudinal rotating shaft, a ceramic tile stack first sliding seat and a ceramic tile stack second sliding seat; The longitudinal two ends of the ceramic tile stack support plate are respectively provided with the ceramic tile stack first longitudinal driving member and the ceramic tile stack second longitudinal driving member, and the rotation direction of the driving end of the ceramic tile stack first longitudinal driving member is opposite to the rotation direction of the driving end of the ceramic tile stack second longitudinal driving member; The first movable groove is provided with the ceramic tile stack first longitudinal rotating shaft and the ceramic tile stack second longitudinal rotating shaft arranged vertically and side by side; One end of the first longitudinal rotating shaft of the tile stack is connected with the driving end of the first longitudinal driving member of the tile stack, and one end of the second longitudinal rotating shaft of the tile stack is connected with the driving end of the second longitudinal driving member of the tile stack; The first longitudinal rotating shaft of the tile stack is sleeved with the first sliding seat of the tile stack, and the second longitudinal rotating shaft of the tile stack is sleeved with the second sliding seat of the tile stack; The top of the first sliding seat of the tile stack and the top of the second sliding seat of the tile stack are respectively provided with the first tile stack material tapping roller; The tile stack transverse alignment device is used for aligning the transverse two sides of the tile stack of the first conveying seat.

6. A ceramic tile papering machine according to claim 5, characterized in that, The tile stack transverse alignment device comprises two groups of tile stack transverse material tapping roller groups, and the two groups of tile stack transverse material tapping roller groups are located on the outer sides of the transverse two sides of the first conveying seat; The tile stack transverse material tapping roller group comprises a second tile stack material tapping roller group, a material tapping roller first mounting beam, a first mounting seat, a tile stack swing driving member and a tile stack swing arm; The first mounting seat is mounted on the bottom of the tile stack base; The tile stack swing driving member is horizontally mounted on the side surface of the first mounting seat; The top of the first mounting seat is provided with a connecting column; The bottom of the tile stack swing arm is connected with the driving end of the tile stack swing driving member; The top of the tile stack swing arm is connected with the top of the connecting column through a rotating shaft; The material tapping roller first mounting beam is mounted on the top surface of the tile stack swing arm; The second tile stack material tapping roller group is longitudinally mounted on the top surface of the material tapping roller first mounting beam.

7. A ceramic tile papering machine according to claim 1, characterized in that, The second mounting beam is provided with a second movable groove; The paperboard longitudinal alignment device comprises a paperboard first longitudinal driving member, a paperboard second longitudinal driving member, a paperboard first longitudinal rotating shaft, a paperboard second longitudinal rotating shaft, a paperboard first sliding seat and a paperboard second sliding seat; The longitudinal two ends of the second mounting beam are respectively provided with the paperboard first longitudinal driving member and the paperboard second longitudinal driving member, and the rotating direction of the driving end of the paperboard first longitudinal driving member is opposite to the rotating direction of the driving end of the paperboard second longitudinal driving member; The second movable groove is provided with the paperboard first longitudinal rotating shaft and the paperboard second longitudinal rotating shaft which are vertically arranged side by side; One end of the paperboard first longitudinal rotating shaft is connected with the driving end of the paperboard first longitudinal driving member, and one end of the paperboard second longitudinal rotating shaft is connected with the driving end of the paperboard second longitudinal driving member; The paperboard first longitudinal rotating shaft is sleeved with the paperboard first sliding seat, and the paperboard second longitudinal rotating shaft is sleeved with the paperboard second sliding seat; Two paperboard material tapping plates located on the same transverse side of the second conveying seat are respectively mounted on the paperboard first sliding seat and the paperboard second sliding seat on the same transverse side.

8. A ceramic tile papering machine according to claim 1, characterized in that, The paperboard clamping device comprises a suction disc connecting frame, a vertical rack and a suction disc frame driving member; The bottom of the suction disc connecting frame is provided with a plurality of suction disc members; The vertical rack is mounted on the top of the suction disc connecting frame; The suction disc frame driving member is mounted on the moving frame, and the driving end of the suction disc frame driving member is provided with a gear; The gear is engaged with the vertical rack, so that the suction disc frame driving member can drive the vertical rack to ascend and descend in the vertical direction. The lifting of the vertical rack can drive the lifting of the suction disc connecting frame.

9. A ceramic tile papering machine according to claim 1, characterized in that, The tile stack clamping device comprises a clamping mounting frame, a lifting driving element, a clamping driving element, a clamping swing arm and a clamping plate. The lifting driving element is vertically installed on the moving frame, and the clamping mounting frame is drivingly connected with the lifting driving element, so that the clamping mounting frame can be lifted in the vertical direction. The clamping driving element is symmetrically installed on the clamping mounting frame in the transverse direction, and the driving end of the clamping driving element can be transversely telescopic. The bottom of the clamping mounting frame is provided with a swing connecting plate. The top of the clamping swing arm is connected with the clamping driving element, and the bottom of the clamping swing arm is rotationally connected with the transverse end of the swing connecting plate, so that the clamping driving element can drive the clamping swing arm to swing in the transverse direction. The clamping plate is fixedly connected with the bottom surface of the clamping swing arm.

Citation Information

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