Discharging and transferring device for ceramsite plates

By combining the lifting device, the material transfer mechanism, and the power mechanism, the problem of cumbersome steps in transferring ceramsite boards is solved, realizing automated and rapid flipping and reversing, simplifying the operation process, improving efficiency, and saving resources.

CN223804388UActive Publication Date: 2026-01-16NINGBO JIAHAN ENVIRONMENTAL PROTECTION BUILDING MATERIAL
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520417198.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-01-16
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

The existing technology for transferring ceramsite panels is cumbersome, requiring multiple operations using trusses and stacking robots, resulting in low efficiency and significant space and capital investment.

Method used

A material transfer device, including a lifting device, a material transfer mechanism, and a power mechanism, is adopted to realize the automatic flipping, reversing, and height adjustment of the ceramsite slab. The transfer steps are simplified through the cooperation of the material transfer mechanism and the power mechanism.

Benefits of technology

It enables rapid and accurate transfer of ceramsite boards, saving time and effort, improving work efficiency, and saving space and capital investment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223804388U_ABST
    Figure CN223804388U_ABST
Patent Text Reader

Abstract

The utility model relates to a discharging and transferring device for ceramsite plates. The discharging and transferring device comprises a lifter, a material transferring mechanism and a power mechanism, wherein the material transferring mechanism is arranged at the top of the lifter and has a vertical lifting function by virtue of the lifter; the power mechanism is arranged between the lifter and the material transferring mechanism and is used for driving the material transferring mechanism to turn over in a reciprocating manner; the material moving mechanism comprises two supporting plates vertically fixed to the top of the lifter and arranged in a bilateral symmetry mode, and a material carrying block rotationally connected between the two supporting plates. The material moving mechanism further comprises a positioning unit arranged on the material carrying block, and the lifter comprises a top frame, a bottom frame and a hinge assembly arranged between the top frame and the bottom frame, wherein the top frame and the bottom frame are transversely arranged and distributed up and down. According to the utility model, the transferring step of the ceramsite plate is greatly simplified, so that the effects of saving time and labor are achieved, the working efficiency is effectively improved, and the occupied space and the capital investment are saved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of discharging transfer devices of ceramsite board. BACKGROUND

[0002] Ceramsite board is a new type of environmental protection building material, mainly by ceramsite, cement, perlite, pulp and water and other materials are made;Ceramsite board is made of inorganic non-metallic material, does not contain harmful substances, meet green building requirements, it is recyclable resource-saving product, therefore widely used in various new and old buildings of non-load-bearing interior and exterior partition, such as hotel, hotel, office building, shopping mall, public building, venue, school, hospital, workshop and other places.

[0003] Ceramsite board still needs to go through multiple process steps after ejection, in the above process, it is inevitable to transfer ceramsite board between each workshop and equipment, although the transfer of ceramsite board can be completed by the aid of conveying belt;Due to the size of site limitation and the different orientation of workshop, the transfer of ceramsite board must be aided by multiple conveying belts that cooperate with each other, in addition, ceramsite board needs to be turned over and reversed before entering some equipment;The conventional conveying belt cannot complete the lifting, turning over and reversing of ceramsite board, and must be aided by truss and stacking manipulator to repeatedly operate multiple times to sequentially complete the turning over and reversing of ceramsite board, and then place ceramsite board on the adjacent conveying belt with higher or lower height, but the above-mentioned transfer steps of ceramsite board are relatively cumbersome to operate, time-consuming and laborious, and the work efficiency is low, and it also occupies more space and increases capital investment, which needs to be further improved. SUMMARY

[0004] In view of the above status of the prior art, the technical problem to be solved by the utility model is to provide a discharging transfer device for ceramsite board, which can automatically, quickly and accurately complete the turning over and reversing of ceramsite board, and can also adjust the height of ceramsite board after turning over and reversing, thereby greatly simplifying the transfer steps of ceramsite board to achieve the effect of saving time and labor, thereby effectively improving the work efficiency, and saving space occupation and capital investment.

[0005] The utility model adopts the technical scheme that: a kind of discharging transfer devices of ceramsite board, characterized by including lifter, the material moving mechanism for being equipped with the lifting function of lifter top by the aid of lifter, and the power mechanism for being equipped between lifter and material moving mechanism to drive material moving mechanism reciprocating overturning;

[0006] The material moving mechanism includes two vertical fixed in the top of lifter and left and right symmetrical arrangement's support plate, and the load block of rotatable connection between two support plates;The top of the load block is provided with load groove in the right of two support plates;

[0007] The material moving mechanism further comprises a material guiding unit arranged on the material carrying block, the material guiding unit comprises two ear plates vertically fixed on the top of the material carrying block and symmetrically arranged on the left side of the material carrying groove, a limiting shaft horizontally fixed on the left side edge of the opening of the material carrying groove, a supporting plate arranged at the opening of the material carrying groove, and an air supporting rod arranged above the supporting plate;

[0008] The left side edge of the supporting plate is rotatably connected with the limiting shaft, the fixed end of the air supporting rod is rotatably connected between the two ear plates, the telescopic end of the air supporting rod is rotatably connected with the top of the supporting plate, so that the right side edge of the bottom of the supporting plate is always pressed against the top of the material carrying block and located on the right side of the opening of the material carrying groove, and the left and right ends of the limiting shaft are respectively matched with the front side outer walls of the two supporting plates.

[0009] Preferably, the material moving mechanism further comprises a positioning unit arranged on the material carrying block, the positioning unit comprises a positioning air cylinder fixed on the right side outer wall of the material carrying block, a positioning pressing plate arranged on the right side of the inside of the material carrying groove, and a connecting shaft fixed on the right side outer wall of the positioning pressing plate and perpendicular to the right side outer wall of the positioning pressing plate, the telescopic end of the positioning air cylinder horizontally moves into the inside of the material carrying groove and is located on the right side of the connecting shaft, and the end of the connecting shaft is rotatably connected with the telescopic end of the positioning air cylinder to have an up-down swinging function.

[0010] Preferably, the positioning unit further comprises two clamping plates vertically and symmetrically arranged on the left and right sides of the material carrying block, a limiting rod horizontally fixed on the one clamping plate and facing the side outer wall of the positioning pressing plate, and a screw rod horizontally inserted and screwed in the other clamping plate, each clamping plate is movably connected with the right side outer wall of the positioning pressing plate to have a left-right translation function, the end of the limiting rod is movably inserted in the positioning pressing plate, one end of the screw rod close to the positioning pressing plate is rotatably connected with the positioning pressing plate, and the other end of the screw rod away from the positioning pressing plate is further fixed with a hand wheel arranged concentrically.

[0011] Preferably, the positioning unit further comprises a gear rotatably and concentrically sleeved on the outside of the connecting shaft, correspondingly, the right side edge of each clamping plate is formed with a guide strip in the direction of the positioning pressing plate, the two guide strips are respectively located above and below the gear and are movably connected with the right side outer wall of the positioning pressing plate, and each guide strip is formed with a straight tooth surface arranged horizontally and engaged with the gear on the side outer wall close to the gear.

[0012] Preferably, each guide strip is provided with a horizontally distributed guide groove, and each guide groove is further provided with a horizontally distributed screw, and the threaded end of each screw is inserted and screwed in the positioning pressing plate to the left, so that the head of each screw is slidably attached to the right side outer wall of the corresponding guide strip.

[0013] Preferably, the bottom surface of the loading groove is provided with at least two first grooves which are distributed in sequence from front to back and are parallel to each other, each of the first grooves is arranged left and right, and a plurality of first auxiliary wheels which are rotatable and are distributed in sequence from left to right are connected in each of the first grooves, and the upper part of each of the first auxiliary wheels extends to the inside of the loading groove.

[0014] Preferably, the supporting plate is provided with at least two second grooves which are distributed in sequence from left to right and are parallel to each other, each of the second grooves is arranged front and back, and a plurality of second auxiliary wheels which are rotatable and are distributed in sequence from left to right are connected in each of the second grooves, and the lower part of each of the second auxiliary wheels extends to the lower part of the supporting plate.

[0015] Compared with the prior art, the utility model has the advantages that: the utility model can automatically, quickly and accurately complete the turning and reversing of the ceramsite plate with the help of the material moving mechanism and the power mechanism, and can adjust the height of the turned and reversed ceramsite plate with the help of the lifter to adapt to the height of the adjacent lower conveying belt, thereby the purchase and installation of the truss and the stacking mechanical hand are not necessary, so that the transfer steps of the ceramsite plate are greatly simplified to save time and effort, thereby the work efficiency is effectively improved, and the space occupation and the capital investment are saved. BRIEF DESCRIPTION OF DRAWINGS

[0016] The above and other features, advantages, and aspects of the embodiments of the present application will become more apparent upon reading the following detailed description in conjunction with the accompanying drawings, in which like reference numerals refer to like elements in the several views, and in which:

[0017] Fig. 1 It is a right front side exploded view of the utility model;

[0018] Fig. 2 It is a right view structure diagram of the material moving mechanism of the utility model when the material moving mechanism is not turned 180 degrees;

[0019] Fig. 3 It is a right view structure diagram of the material moving mechanism of the utility model after the material moving mechanism is turned 180 degrees. DETAILED DESCRIPTION

[0020] Unless otherwise defined, technical terms or scientific terms used in the present application shall have the ordinary meaning as understood by a person of ordinary skill in the art to which the present application pertains. The terms "first", "second", and similar terms used in the present application do not denote any order, quantity, or importance, but are merely used to distinguish different components. The terms "include", "contain", and similar terms mean that the elements or objects before the terms encompass the elements or objects listed after the terms and their equivalents, without excluding other elements or objects. The terms "connect" or "connected" and similar terms do not mean only physical or mechanical connections, but can include electrical connections, whether direct or indirect. The terms "upper", "lower", "left", "right", and the like are used only to indicate relative positional relationships, which can change when the absolute positions of the described objects change.

[0021] In order to keep the following description of the embodiments of the present application clear and concise, detailed descriptions of known functions and known components are omitted.

[0022] As shown in Figs. 1-3 A kind of ceramic granule board discharging transfer device, including lifter 1, be located at the top of lifter 1 with the aid of the material transfer mechanism 3 with the up-and-down lifting function of lifter 1, and be located between lifter 1 and material transfer mechanism 3 to drive material transfer mechanism 3 reciprocating overturning power mechanism 2;

[0023] Material transfer mechanism 3 includes two vertical fixed in the top of lifter 1 and left and right symmetrically arranged support plate 310, and rotatably connected between two support plate 310 load block 31;Load block 31 top is located in the right of two support plate 310 and is equipped with load groove 3101;

[0024] Material transfer mechanism 3 further includes the material guide unit arranged on load block 31, and the material guide unit includes two vertical fixed in the top of load block 31 and left and right symmetrically arranged in the left of load groove 3101 lug plate 311, transversely fixed in the left side edge of the opening of load groove 3101 limiting shaft 34, arranged in the opening of load groove 3101 supporting plate 32, and air supporting rod 33 arranged above supporting plate 32;

[0025] The left side edge of supporting plate 32 is rotatably connected to limiting shaft 34, the fixed end of air supporting rod 33 is rotatably connected between two lug plates 311, and the telescopic end of air supporting rod 33 is rotatably connected to the top of supporting plate 32 so that the right side edge of the bottom of supporting plate 32 is always pressed against the top of load block 31 and located in the right of the opening of load groove 3101, and the left and right ends of limiting shaft 34 are respectively matched with the front side outer wall of two support plates 310.

[0026] The material moving mechanism 3 further comprises a positioning unit arranged on the material carrying block 31, which comprises a positioning cylinder 35 fixed on the right outer wall of the material carrying block 31, a positioning pressing plate 36 arranged inside the right side of the material carrying groove 3101, and a connecting shaft 37 fixed on the right outer wall of the positioning pressing plate 36 and perpendicular to the right outer wall of the positioning pressing plate 36, the telescopic end of the positioning cylinder 35 horizontally extends into the inside of the material carrying groove 3101 and is located to the right of the connecting shaft 37, and the end of the connecting shaft 37 is rotatably connected to the telescopic end of the positioning cylinder 35 to have the function of up-down swinging.

[0027] The positioning unit further comprises two clamping plates 312 vertically and symmetrically arranged on the left and right sides of the material carrying block 31, a limiting rod 317 horizontally fixed on the outer wall of one of the clamping plates 312 and facing the positioning pressing plate 36, and a screw rod 315 horizontally inserted and screwed in the other clamping plate 312, each clamping plate 312 is movably connected to the right outer wall of the positioning pressing plate 36 to have the function of left-right translation, the end of the limiting rod 317 is movably inserted into the positioning pressing plate 36, one end of the screw rod 315 close to the positioning pressing plate 36 is rotatably connected to the positioning pressing plate 36, and the other end of the screw rod 315 away from the positioning pressing plate 36 is further fixed with a hand wheel 316 arranged concentrically.

[0028] The positioning unit further comprises a gear 313 rotatably and concentrically sleeved on the outside of the connecting shaft 37, correspondingly, the right edge of each clamping plate 312 is formed with a guide strip 3121 facing the positioning pressing plate 36, the two guide strips 3121 are respectively located above and below the gear 313 and are movably connected to the right outer wall of the positioning pressing plate 36, and each guide strip 3121 is formed with a straight tooth surface 3132 horizontally arranged and engaged with the gear 313 on the outer wall of the side close to the gear 313.

[0029] Each guide strip 3121 is provided with a horizontally distributed guide groove 3123, and each guide groove 3123 is further provided with a horizontally distributed screw 314, and the threaded end of each screw 314 is inserted and screwed into the positioning pressing plate 36 to the left to make the head of each screw 314 slide and fit on the right outer wall of the corresponding guide strip 3121.

[0030] At least two first groove holes 3102 are provided between the bottom surface of the material carrying groove 3101 and the bottom outer wall of the material carrying block 31, which are sequentially distributed from front to back and are parallel to each other, each first groove hole 3102 is arranged left and right, and a plurality of first auxiliary wheels 38 rotatable and sequentially distributed from left to right are connected in each first groove hole 3102, and the upper part of each first auxiliary wheel 38 extends into the inside of the material carrying groove 3101.

[0031] The second slot holes 321 are arranged in sequence from left to right and are parallel to each other, and each of the second slot holes 321 is arranged in sequence from front to back. A plurality of second auxiliary wheels 39 are arranged in sequence from left to right and are rotatable, and the lower part of each of the second auxiliary wheels 39 extends below the supporting plate 32.

[0032] The lifting device 1 comprises a top frame 12 and a bottom frame 11 arranged transversely and arranged in sequence from top to bottom, and a hinge assembly arranged between the top frame 12 and the bottom frame 11. The hinge assembly comprises two movable rods 16 arranged transversely and arranged in sequence from top to bottom, two fixed rods 17 arranged transversely and arranged in sequence from top to bottom and arranged on the right side of the two movable rods 16 respectively, and two scissor combinations arranged symmetrically between the two movable rods 16 and the two fixed rods 17. The upper movable rod 16 is movably connected to the top frame 12 to have a front-to-back translation function, and the lower movable rod 16 is movably connected to the bottom frame 11 to have a front-to-back translation function. The two fixed rods 17 are fixed to the top frame 12 and the bottom frame 11 respectively.

[0033] The scissor combination comprises a first connecting rod 13 and a second connecting rod 14 arranged transversely and rotatable relative to each other. The front end of each first connecting rod 13 is rotatably connected to the upper movable rod 16, the rear end of each first connecting rod 13 is rotatably connected to the lower fixed rod 17, the front end of each second connecting rod 14 is rotatably connected to the lower movable rod 16, and the rear end of each second connecting rod 14 is rotatably connected to the upper fixed rod 17.

[0034] The lifting device 1 further comprises an electric cylinder 15 arranged between the two scissor combinations. The fixed end of the electric cylinder 15 is rotatably connected to the lower fixed rod 17, and the fixed end of the electric cylinder 15 is rotatably connected to the upper movable rod 16.

[0035] The power mechanism 2 comprises a power motor 21 fixed to the top frame 12 and arranged on the left side or the right side of the load block 31, a side frame 22 fixed to the top frame 12 and arranged on the same side as the power motor 21, a first transmission shaft 29 arranged transversely and rotatably connected to the side frame 22, a first pulley 23 fixed concentrically to the rotating shaft of the power motor 21, a second transmission shaft 210 arranged transversely and rotatably connected to one of the supporting plates 310 and arranged on the same side as the power motor 21, a second pulley 26 fixed concentrically to the second transmission shaft 210, a third pulley 24 and a fourth pulley 28 fixed concentrically to the first transmission shaft 29 and matched with the first pulley 23 and the second pulley 26 respectively, a first belt 25 sleeved on the first pulley 23 and the third pulley 24, and a second belt 27 sleeved on the second pulley 26 and the fourth pulley 28. One end of the second transmission shaft 210 is fixed to the corresponding side outer wall of the load block 31 and arranged concentrically with the rotation center axis of the load block 31.

[0036] Working principle:

[0037] The utility model is arranged in the end of the ceramic board conveying line and the height of the receiving line is arranged in the front side of the utility model; in the initial state, the supporting plate 32 is above the material carrying block 31, and the right side opening of the material carrying groove 3101 is opposite to the end of the conveying line; when the ceramic board is moved by the conveying line, it will enter the material carrying groove 3101 to the left, and each first auxiliary wheel 38 will roll along the bottom of the ceramic board to reduce the resistance of the ceramic board, thereby ensuring that the ceramic board can enter the material carrying groove 3101 quickly and smoothly.

[0038] Then, the extension end of the positioning cylinder 35 in the positioning unit is driven to extend outward to drive the positioning pressing plate 36 to move towards the ceramic board by the connecting shaft 37 until the positioning pressing plate 36 is pressed on the right side outer wall of the ceramic board to prevent the ceramic board from moving forward and backward; it is worth mentioning that since the end of the connecting shaft 37 is rotatably connected to the extension end of the positioning cylinder 35 to have the function of up-down swinging, if the right side outer wall of the ceramic board is not a vertical plane, the positioning pressing plate 36 will rotate under the action of the positioning cylinder 35 to adapt to the slope of the right side outer wall of the ceramic board, thereby ensuring that the positioning pressing plate 36 can always be pressed on the right side outer wall of the ceramic board; at this time, the two clamping plates 312 are respectively located on the left and right sides of the ceramic board, thereby preventing the ceramic board from moving left and right, so that the ceramic board cannot be separated from the material carrying block 31.

[0039] Before operation, the spacing between the two clamping plates 312 can be adjusted according to the left and right widths of the ceramic board; when adjusting, the hand wheel 316 is rotated by hand to drive the screw rod 315 to rotate, thereby moving one clamping plate 312 left and right according to the principle of screw connection, thereby driving the gear 313 to rotate by the linear tooth surface 3132 on the guide strip 3121 on the clamping plate 312, and thereby driving the other clamping plate 312 to move synchronously in the opposite direction by the linear tooth surface 3132 on the guide strip 3121 on the other clamping plate 312, so that the two clamping plates 312 are moved in the center, and the limiting rod 317 moves back and forth in the positioning pressing plate 36 during the movement to ensure the straightness of the movement of the clamping plate 312 where the limiting rod 317 is located.

[0040] Then the extension end of the electric cylinder 15 in the lifter 1 is driven to retract inward to drive one of the upper movable rods 16 in the hinged assembly to move backward, thereby driving the top frame 12 to move upward by the cross-rotating connection relationship between the first connecting rod 13 and the second connecting rod 14 in the two scissor combinations, and thereby driving the ceramic board to move upward by the material moving mechanism 3 until the height of the ceramic board cooperates with the height of the receiving line.

[0041] Then, the power motor 21 in the power mechanism 2 is started to rotate the rotating shaft, and then the first transmission shaft 29 is driven to rotate by the first pulley 23, the third pulley 24 and the first belt 25, so that the second transmission shaft 210 is driven to rotate by the second pulley 26, the fourth pulley 28 and the second belt 27, and then the ceramic plate is turned over 180 degrees by the material moving mechanism 3, until the two limiting shafts 34 in the material guiding unit are pressed against the front side outer walls of the two supporting plates 310 respectively, and at this time, the supporting plate 32 is located below the material carrying block 31.

[0042] After that, the weight of the ceramic plate is applied downward on the supporting plate 32, and then the supporting plate 32 is slowly swung downward around the limiting shaft 34 and compresses the telescopic end of the air supporting rod 33, until the supporting plate 32 is pressed against the top front side edge of the top frame 12, and the position of the material carrying block 31 remains unchanged, at this time, the swing side edge of the supporting plate 32 is just located above the head of the material receiving line, and the ceramic plate is quickly slid along the slope of the supporting plate 32 and by each second auxiliary wheel 39 to the material receiving line, and finally the ceramic plate is driven by the material receiving line to flow to the next process.

[0043] When the ceramic plate leaves the supporting plate 32, the supporting plate 32 is swung back to reset under the rebounding force of the air supporting rod 33, until the supporting plate 32 re-closes the opening of the material carrying groove 3101, and then the rotating shaft of the power motor 21 in the power mechanism 2 is reversed to drive the material moving mechanism 3 to reverse 180 degrees according to the same principle, at this time, the supporting plate 32 is again located above the material carrying block 31, and the right side opening of the material carrying groove 3101 re-faces the end of the material conveying line to prepare for the next transfer.

[0044] The utility model discloses can be with the material moving mechanism 3 and power mechanism 2 automatic, fast, accurate completion ceramic plate's turning over and reversing, also can be with the height of the lifter 1 adjusting turning over and reversing ceramic plate to adapt to the height of adjacent next conveying belt, and then dispense with and install the necessary of truss and stacking manipulator, thereby greatly simplifying the transfer step of ceramic plate to reach the effect of time saving and labor saving, and then effectively improve the work efficiency, and save the space occupation and capital investment.

[0045] Finally, it should be noted that: the above examples are used to illustrate the technical solutions of the utility model, but not to limit them; although the utility model has been described in detail with reference to the foregoing examples, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing examples, or make equivalent replacement for some technical features therein; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the utility model.

Claims

1. A device for transferring a ceramic board out of a discharge, characterized in that, The lifting device, the material moving mechanism provided on the top of the lifting device and having the up-and-down lifting function, and the power mechanism provided between the lifting device and the material moving mechanism and driving the material moving mechanism to reciprocatingly turn; The material moving mechanism comprises two support plates vertically fixed on the top of the lifting device and symmetrically arranged left and right, and a load block rotatably connected between the two support plates; the top of the load block is provided with a load groove located right to the two support plates; The material moving mechanism further comprises a guide unit provided on the load block, which comprises two ear plates vertically fixed on the top of the load block and symmetrically arranged left to the load groove, a limiting shaft horizontally fixed on the left side edge of the opening of the load groove, a supporting plate provided at the opening of the load groove, and an air supporting rod provided above the supporting plate; The left side edge of the supporting plate is rotatably connected on the limiting shaft, the fixed end of the air supporting rod is rotatably connected between the two ear plates, and the telescopic end of the air supporting rod is rotatably connected on the top of the supporting plate so that the right side edge of the bottom of the supporting plate is always pressed on the top of the load block and located right to the opening of the load groove; the left and right ends of the limiting shaft are respectively matched with the front side outer walls of the two support plates.

2. A device for transferring a ceramic board according to claim 1, characterized in that The material moving mechanism further comprises a positioning unit provided on the load block, which comprises a positioning air cylinder fixed on the right side outer wall of the load block, a positioning pressing plate provided inside the right side of the load groove, and a connecting shaft fixed on the right side outer wall of the positioning pressing plate and perpendicular to the right side outer wall of the positioning pressing plate; the telescopic end of the positioning air cylinder is horizontally and leftwardly movable into the inside of the load groove and located right to the connecting shaft; and the end of the connecting shaft is rotatably connected on the telescopic end of the positioning air cylinder to have the up-and-down swinging function.

3. A device for transferring a ceramic board according to claim 2, characterized in that The positioning unit further comprises two clamping plates vertically and symmetrically provided on the left and right sides of the load block, a limiting rod horizontally fixed on one of the clamping plates and facing the side outer wall of the positioning pressing plate, and a screw rod horizontally and screwingly inserted in the other clamping plate; each of the clamping plates is movably connected on the right side outer wall of the positioning pressing plate to have the left-and-right translation function; the end of the limiting rod is movably inserted in the positioning pressing plate; one end of the screw rod close to the positioning pressing plate is rotatably connected on the positioning pressing plate; and the other end of the screw rod away from the positioning pressing plate is further fixed with a hand wheel concentrically arranged.

4. A device for transferring a ceramic board according to claim 3, characterized in that The positioning unit further comprises a gear rotatably and concentrically sleeved on the connecting shaft; correspondingly, the right side edges of the two clamping plates are each formed with a guide strip facing the direction of the positioning pressing plate; the two guide strips are respectively located above and below the gear and are each movably connected on the right side outer wall of the positioning pressing plate; and each of the guide strips is formed with a straight line type tooth surface horizontally arranged and engaged on the gear on the side outer wall close to the gear.

5. A device for transferring a ceramic board according to claim 4, characterized in that Each of the guide strips is provided with a horizontally distributed guide groove; and each of the guide grooves is further provided with a horizontally distributed screw; and the threaded end of each of the screws is inserted and screwed in the positioning pressing plate to the left so that the head of each of the screws is slidably attached on the right side outer wall of the corresponding guide strip.

6. A device for transferring a ceramic board according to claim 1, characterized in that The bottom surface of the loading groove is provided with at least two first slot holes which are distributed in sequence from front to back and are parallel to each other, each of the first slot holes is arranged left and right, and a plurality of first auxiliary wheels which are rotatable and are distributed in sequence from left to right are connected in each of the first slot holes, and the upper part of each of the first auxiliary wheels extends to the inside of the loading groove.

7. A device for transferring a ceramic board according to claim 1, characterized in that The supporting plate is provided with at least two second slot holes which are distributed in sequence from left to right and are parallel to each other, each of the second slot holes is arranged front and back, and a plurality of second auxiliary wheels which are rotatable and are distributed in sequence from left to right are connected in each of the second slot holes, and the lower part of each of the second auxiliary wheels extends to the lower part of the supporting plate.