Multifunctional rolling production line for domestic ceramics

By designing a variable-diameter mud feeding machine and an adaptive roller head seat, a multi-functional rolling production line for daily-use ceramics was established, solving the problem of the inability to adjust traditional rolling line equipment. This enabled continuous production of various types of ceramics without stopping the machine, thus improving production efficiency.

CN223701187UActive Publication Date: 2025-12-23HUNAN AVIC MILEAGE TECH CO LTD
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Patent Information

Application Number
CN202423304261.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-23
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional rolling line equipment cannot adjust itself during the production process, which makes it impossible to meet the needs of continuous production of various types and small batches of daily-use ceramics.

Method used

A multi-functional rolling production line for daily-use ceramics was designed, including a variable diameter mud feeding machine, a tool changing platform, and an adaptive roller head seat. It can adjust parameters such as mold type, roller head diameter, and rotation speed without stopping the machine, so as to realize the continuous production of different types of ceramics.

Benefits of technology

It enables continuous production of different types of ceramics without stopping the machine, and is suitable for the production of various types and small batches of daily-use ceramics, improving production efficiency and flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a multifunctional rolling production line for domestic ceramics, which comprises a circulating line, a variable-diameter mud throwing machine with two sets of mud cutting platforms is arranged on the starting side of the circulating line, and mud strips with different diameters conveyed on the two platforms are quantitatively cut off by a mud cutting assembly and then conveyed to a mold on the circulating line by a feeding assembly. A tool changing platform is erected at the head end of the circulation line, a rotary disc in the tool changing platform clamps a plurality of rolling heads, the rotary disc moves the corresponding rolling heads to the position below a rolling head base under driving of a pushing air cylinder, a tool beating air cylinder on the rolling head base drives a built-in grabbing hook to clamp the rolling heads, the rolling head base is hinged to a clamping plate of a roller press, and the included angle is adjusted through a push-pull assembly. A transfer manipulator is arranged at the outlet of the drying room; according to the production line, mud strips with proper diameters and lengths are put into molds according to the types of the molds, corresponding rolling heads can be automatically replaced, parameters such as inclination angles and rotating speeds can be automatically adjusted, non-stop continuous production of different types of ceramics is achieved, and the production line is suitable for production of various types of small-batch domestic ceramics.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ceramic processing equipment technical field, concretely relates to a daily use ceramic multifunctional rolling production line. BACKGROUND

[0002] Daily use ceramics include bowls, plates, basins, cups and various types of vessels, each type of vessel has various shapes and specifications, and these ceramics with different shapes and sizes are usually processed by a rolling production line, in the processing process, the cut clay strip is put into a gypsum mold, then conveyed to the bottom of a rolling machine by a conveyor belt, and formed by a high-speed rotating roller head. In the above process, different types of ceramics need different types of molds and roller heads to cooperate in processing, wherein the diameter and length of the clay strip, the inclination and speed of the roller head, etc. need to be adaptively adjusted, the settings of each device in the traditional rolling line are relatively fixed, manual changes are needed after shutdown, and self-adjustment during production is not possible, thus it is not possible to meet the complete and continuous production of various types of small-batch daily use ceramic sets, and a new device is needed to solve the above problems. SUMMARY

[0003] To solve the above problems, the utility model provides a daily use ceramic multifunctional rolling production line, including circulation line, circulation line starting side is equipped with the variable diameter mud throwing machine, the variable diameter mud throwing machine has two sets of clay cutting platforms, the clay strips of different diameters conveyed on the two platforms are cut off quantitatively by a clay cutting assembly, then conveyed to the mold on the circulation line by a feeding assembly, a tool changing platform is arranged at the first end of the circulation line, the rotating disc in the tool changing platform clamps a plurality of roller heads, the rotating disc drives the corresponding roller head to move to the bottom of the roller head seat under the drive of the push cylinder, the punch cylinder on the roller head seat drives the built-in grappling hook to clamp the roller head, the roller head seat is hinged to the clamp plate of the rolling machine and adjusts the included angle through the push-pull assembly, an oven is arranged at the tail section of the circulation line, and a transfer robot is arranged at the outlet of the oven.

[0004] Further, the variable diameter mud throwing machine includes a transfer frame, the sliding plate of the feeding assembly is connected to the electric track on the top frame of the transfer frame, the lifting cylinder is installed on the top surface of the sliding plate, the mounting seat plate of the vacuum suction cup is connected vertically downward to the piston rod of the lifting cylinder, the upper material belts in the clay cutting platforms are arranged on the two sides of the transfer frame, the push belt is connected to the output end of the upper material belt and arranged on the support, the push material electric track is arranged on one side of the support, the push material frame connected to the push material electric track cooperates with the guide plates on both sides of the push belt surface, the clay cutting cylinder in the clay cutting assembly is installed at the bottom of the vertical frame of the output end of the support, the cutting line frame is installed between the two frame arms of the cutting line frame, the clay cutting line is installed between the two frame arms of the cutting line frame, the pressing cylinder is installed on the top of the vertical frame, the rotating shaft of the turnover frame is hinged between the two probe arms of the vertical frame, the turnover assembly is connected to the end of the rotating shaft, and the clamping cylinders are arranged on both sides of the turnover frame.

[0005] Furthermore, the tool changing platform includes a crossbeam, which is erected between the two lines at the beginning of the circulation line. A push frame is provided in the middle of the top frame of the crossbeam. One end of the long beam of the push frame extends out of the top frame. A push rail is provided on the bottom surface of the long beam. The push rail is slidably connected to a moving plate. One end of the moving plate is connected to a push cylinder. The push cylinder is installed on the outside of the crossbeam of the top frame. A right-angle planetary reducer is installed on the top surface of the moving plate. The output gear of the right-angle planetary reducer meshes with the gear plate inside the rotating table on the bottom surface of the moving plate. The gear plate is connected to the center of the top surface of the turntable. Four tool holders are evenly distributed on the edge of the turntable. Rollers are inserted vertically downward into the clamping holes of the tool holders.

[0006] Furthermore, the rolling mill includes a base, which is connected along the beginning of the circulation line. A slide rail on the base is slidably connected to the bottom surface of the box base. An electric lifting plate is provided on the front of the box base. A tray and a rotary mold motor are respectively installed on both sides of the end face of the electric lifting plate. The shaft of the mold tray is vertically rotatably connected inside the tray. The pulley at the lower end of the shaft is connected to the pulley at the output end of the rotary mold motor through a transmission belt. The mold at the bend of the circulation line is directly above the mold tray. The output end of the push rail on the top surface of the box base is connected to the bottom surface of the lifting seat. The lifting seat is provided with a lifting rail on the front. The output end of the lifting rail is connected to the seat plate of the two clamping plates. A waste conveyor belt is provided on the lower side of the front of the lifting seat.

[0007] Furthermore, the top of the roller head is connected to the front end of the transmission box, the knife-cutting cylinder is installed on the top surface of the front end of the transmission box, and the drive motor is installed on the top surface of the rear end of the transmission box. The output end of the drive motor extends vertically downward into the transmission box and connects to the drive wheel. The drive wheel is connected to the driven wheel of the roller shaft through a transmission belt. The top of the built-in gripper of the roller is rotatably connected to the knife-cutting cylinder, and the roller is rotatably connected to the inside of the roller head.

[0008] Furthermore, the push-pull assembly includes a push-pull rod, the upper end of which is hinged to the back side of the roller head seat, and the lower end of which is hinged to the top surface of the sliding frame. The sliding frame is slidably connected to the straight rail on the mounting frame facing the roller head seat. The bottom surface of the sliding frame is threadedly connected to a spiral shaft parallel to the straight rail. The end of the spiral shaft is connected to the output end of the adjusting motor. Both the adjusting motor and the mounting frame are installed between the two clamping plates.

[0009] Furthermore, the transfer robot includes a transfer frame, which is located between the line and the feeding end of the conveyor belt at the outlet of the drying oven. A transfer motor is provided on one side of the first end of the transfer frame. The pulley at the output end of the transfer motor is connected to the pulley at the tail end of the transfer frame via a transmission belt. Transfer rails are provided on both sides of the top surface of the transfer frame. The transfer rails are slidably connected to both sides of the bottom surface of the transfer seat. One side of the transmission belt is clamped in the middle of the bottom surface of the transfer seat. The end face of the transfer seat is connected to a vertical electric rail. The output end of the vertical electric rail is connected to an adjusting horizontal rail. The adjusting horizontal rail is slidably connected to the support of the vertical suction cup.

[0010] Further, the circulating line comprises a bed frame, a circulating motor output end vertically upwardly connected with a driving gear disc at one end of the bed frame, the driving gear disc connected with a driven gear disc at the other end of the bed frame through an inner chain ring, chain links on the inner chain ring connected with a tray through bolts, pulleys on two sides of the tray slidably connected with inner and outer ring tracks on the top surface of the bed frame, and a mold arranged in a disc hole of the tray.

[0011] The utility model has the advantages that: the circulating line in the utility model carries different types of molds, the variable-diameter mud feeding machine in the production line can feed mud strips with corresponding diameters and lengths to each mold; the tool changing platform and the self-adaptive roller head seat cooperate with each other, and can change the roller head and adjust the inclination angle, rotating speed and other parameters according to the mold type, realize continuous production of different types of ceramics without stopping the machine, and are suitable for the production of various types of small-batch daily-use ceramics. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0013] Figure 2 It is a schematic diagram of the structure of the variable-diameter mud feeding machine in the utility model;

[0014] Figure 3 It is a schematic diagram of the structure of the variable-diameter mud feeding machine in the utility model; Figure 2 It is a partial enlarged view of area A in the utility model;

[0015] Figure 4 It is a partial enlarged view of area B in the utility model; Figure 2 It is a schematic diagram of the structure of the variable-diameter mud feeding machine in the utility model;

[0016] Figure 5 It is a schematic diagram of the structure of the tool changing platform in the utility model;

[0017] Figure 6 It is a schematic diagram of the structure of the roller press in the utility model;

[0018] Figure 7 It is a schematic diagram of the structure of the push-pull assembly in the utility model;

[0019] Figure 8 It is a schematic diagram of the structure of the transfer robot in the utility model.

[0020] The reference signs are explained as follows: 1, mold; 2, rotary table; 201, tool holder; 3, rolling head; 4, pushing cylinder; 5, rolling head seat; 501, transmission box; 6, tool changing cylinder; 7, clamping plate; 8, drying room; 9, transfer frame; 10, electric track; 11, sliding plate; 12, lifting cylinder; 13, vacuum chuck; 14, feeding belt; 15, support; 1501, vertical frame; 1502, probe arm; 16, pushing belt; 17, pushing frame; 18, pushing frame; 19, guide plate; 20, clay cutting cylinder; 21, wire cutting frame; 22, clay pressing cylinder; 23, turnover frame; 24, clamping cylinder; 25, cross frame; 2501, top frame; 2502, pushing frame; 2503, pushing track; 26, moving plate; 27, right-angle planetary reducer; 28, gear disc; 29, base; 2901, sliding rail; 30, box seat; 31, electric lifting plate; 32, box support; 33, mold rotating motor; 34, mold support; 35, pushing electric track; 36, lifting seat; 37, lifting electric track; 38, waste conveying belt; 39, driving motor; 40, roller; 41, push-pull rod; 42, sliding frame; 4201, threaded seat; 43, mounting frame; 4301, straight rail; 4302, helical rotating shaft; 44, adjusting motor; 45, transfer frame; 4501, transfer track; 46, transfer motor; 47, transfer seat; 48, vertical electric track; 49, adjusting cross rail; 50, vertical vacuum chuck; 51, bed frame; 52, tray; 53, conveying belt. DETAILED DESCRIPTION

[0021] In the description of the present application, it should be explained that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying the importance of the opposite.

[0022] In the description of the present application, it should be explained that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0023] The present application will be further described below in conjunction with the drawings of the specification:

[0024] As Figures 1 to 8 shown, a daily ceramic multifunctional rolling production line, including a circulating line, the circulating line includes a bed frame 51, the bed frame 51 one end is provided with the circulating motor output end vertical upward connection driving gear disc, driving gear disc through the inner chain ring connection bed frame 51 the other end driven gear disc, the chain link on the inner chain ring through bolt connection tray 52, the tray 52 both sides pulley and bed frame 51 top surface inner and outer ring rail sliding connection, the tray 52 disc hole built-in mold 1. The circulating line starting side is provided with variable diameter mud throwing machine, variable diameter mud throwing machine includes moving carrier 9, moving carrier 9 top frame on the electric track 10 connects the feeding assembly slip plate 11, slip plate 11 top surface installs lifting cylinder 12, lifting cylinder 12 piston rod vertical downward connection vacuum chuck 13 mounting seat plate, moving carrier 9 both sides are mud cutting platform.

[0025] In this embodiment, the mud cutting platform includes feeding belt 14, the feeding belt 14 output end link located on the push belt 16 of support 15, support 15 one side is equipped with push material electric rail 17, push material electric rail 17 connected with push material frame 18 and push belt 16 belt surface both sides guide plate 19 cooperation, support 15 output end vertical frame 1501 bottom installation cutting mud assembly of cutting mud cylinder 20, cutting mud cylinder 20 piston rod vertical upward connection cutting line frame 21 bottom, cutting line frame 21 both frame arms installation cutting mud line, vertical frame 1501 top installation pressure mud cylinder 22, vertical frame 1501 both probe arm 1502 interval hinge turning frame 23 pivot, the end of the pivot connects the push arm in the turning assembly, the push arm and turning cylinder output end hinge, turning cylinder and support 15 both sides hinge, turning frame 23 both sides are equipped with clamping cylinder 24, clamping cylinder 24 is located below the moving track of vacuum chuck 13. The different diameter mud strip conveyed on the two platforms is cut off quantitatively by the cutting mud assembly, and then conveyed to the mold 1 on the circulating line by the feeding assembly.

[0026] In this embodiment, the circulating line first end is provided with a tool changing platform, the tool changing platform includes a cross frame 25, the cross frame 25 is arranged between the two lines at the first end of the circulating line, a pushing frame 2502 is arranged in the middle of a top frame 2501 of the cross frame 25, one end of a long beam of the pushing frame 2502 extends out of the top frame 2501, a pushing rail 2503 is arranged on the bottom surface of the long beam, the pushing rail 2503 is slidably connected with a moving plate 26, one end of the moving plate 26 is connected with a pushing cylinder 4, the pushing cylinder 4 is arranged on the outside of a cross beam of the top frame 2501, a right-angle planetary reducer 27 is arranged on the top surface of the moving plate 26, a gear on the output end of the right-angle planetary reducer 27 is engaged with an inner tooth disc 28 on the rotating table on the bottom surface of the moving plate 26, the tooth disc 28 is connected with the center of the top surface of a rotating disc 2, four tool holders 201 are uniformly distributed on the edge of the rotating disc 2, and a rolling head 3 is vertically downwardly inserted into a clamping hole in the tool holder 201. The pushing cylinder 4 is started to push the rotating disc 2, so that the corresponding rolling head 3 can be moved to below a rolling head seat 5, at this time, a tool changing cylinder 6 on the rolling head seat 5 drives an inner built-in hook to clamp the rolling head 3.

[0027] In the embodiment, the transmission box 501 is connected to the first end of the roll head seat 5, the knife opening cylinder 6 is installed on the top surface of the first end of the transmission box 501, the driving motor 39 is installed on the top surface of the tail end of the transmission box 501, the output end of the driving motor 39 vertically extends into the transmission box 501 and is connected to the driving wheel, the driving wheel is connected to the driven wheel on the shaft body of the roll shaft 40 through a transmission belt, the roll shaft 40 is rotatably connected to the top of the built-in grab hook of the roll shaft 40 and the roll head seat 5, the roll head seat 5 is hingedly connected to the clamping plate 7 of the rolling machine and the clamping angle is adjusted through the push-pull assembly, the push-pull assembly comprises the push-pull rod 41, the upper end of the push-pull rod 41 is hingedly connected to the back side of the roll head seat 5, the lower end of the push-pull rod 41 is hingedly connected to the top surface of the sliding frame 42, the sliding frame 42 is slidably connected to the straight rail 4301 on the installation frame 43 which faces the roll head seat 5, the bottom surface threaded seat 4201 of the sliding frame 42 is threadedly connected to the screw rotating shaft 4302 which is parallel to the straight rail 4301, the end of the screw rotating shaft 4302 is connected to the output end of the adjusting motor 44, and the adjusting motor 44 and the installation frame 43 are both installed between the two clamping plates 7.

[0028] In the embodiment, the rolling machine comprises the base 29 which is butted in the first end direction of the circulating line, the slide rail 2901 on the base 29 is slidably connected to the bottom surface of the box seat 30, the front surface of the box seat 30 is provided with the electric lifting plate 31, the end surface of the electric lifting plate 31 is respectively provided with the box 32 and the rotary die motor 33, the shaft rod of the mold box 32 is vertically and rotatably connected to the shaft rod of the mold box 34, the lower end pulley of the shaft rod is connected to the output end pulley of the rotary die motor 33 through a transmission belt, the mold box 34 is opposite to the mold 1 at the turning position of the circulating line, the top surface of the box seat 30 is provided with the pushing electric rail 35, the output end of the pushing electric rail 35 is connected to the bottom surface of the lifting seat 36, the front surface of the lifting seat 36 is provided with the lifting electric rail 37, the output end of the lifting electric rail 37 is connected to the seat plate of the two clamping plates 7, and the front lower side of the lifting seat 36 is provided with the waste conveying belt 38.

[0029] In the embodiment, the tail section of the circulating line is provided with the drying room 8, the drying room 8 is provided with the transfer robot at the outlet, the transfer robot comprises the transfer frame 45, the transfer frame 45 is arranged between the line at the outlet of the drying room 8 and the feeding end of the conveying belt 53, the first end side of the transfer frame 45 is provided with the transfer motor 46, the output end pulley of the transfer motor 46 is connected to the tail end pulley of the transfer frame 45 through a transmission belt, the top surface of the transfer frame 45 is provided with the transfer rail 4501 on the two sides, the transfer rail 4501 is slidably connected to the bottom surface of the transfer seat 47 on the two sides, the bottom surface of the transfer seat 47 is clamped to one side of the transmission belt in the middle part, the end surface of the transfer seat 47 is connected to the vertical electric rail 48, the output end of the vertical electric rail 48 is connected to the adjusting horizontal rail 49, and the adjusting horizontal rail 49 is slidably connected to the support of the vertical suction disc 50.

[0030] The working principle of the utility model is as follows:

[0031] The sensor detects the type of the mold 1 on the circulating line, the feeding belt 14 carrying the mud strip with corresponding diameter is used to transport the mud strip to the pushing belt 16, the mud strip falls into the channel formed by the two guide plates 19, the bottom surface of the mud strip is in contact with the surface of the pushing belt 16, the pushing belt 16 and the pushing electric rail 17 are started to transport the mud strip to the direction of the moving carrier 9, when the mud strip is exposed to the vertical frame 1501 target length, the pushing belt 16 is closed, at this time, the mud strip head is clamped by the clamping cylinder 24, the mud strip is pressed by the pressing cylinder 22, the cutting cylinder 20 is started to cut the mud strip upward, then the overturning assembly pulls the overturning frame 23 to overturn upward, so that the cross section of the mud strip is opposite to the vacuum chuck 13, the vacuum chuck 13 replaces the clamping cylinder 24 to adsorb the mud strip, the electric rail 10 is started to drive the feeding assembly to move to the direction of the circulating line, when the mud strip reaches above the mold 1, the vacuum chuck 13 is used to put the mud material into the open end.

[0032] The mold 1 carrying the mud strip continues to move forward along the circulating line, the rotating disc 2 rotates the corresponding roller head 3 to the tool changing position, the pushing cylinder 4 pushes the moving plate 26 outward, moves the roller head 3 to below the roller head seat 5, the lifting electric rail 37 drives the roller head seat 5 to descend, the punch cylinder 6 controls the grab hook to clamp the roller head 3, then the roller head seat 5 and the moving plate 26 are reset in sequence, the adjusting motor 44 adjusts the included angle of the roller head seat 5 through the push-pull rod 41. When the mold 1 moves to the top surface of the mold support 34, the circulating line is paused, the electric lifting plate 31 is started to lift the mold 1 to correspond to the roller head 3, the mold rotating motor 33 and the driving motor 39 are started to drive the mold 1 and the roller head 3 to rotate respectively, and the mud strip in the mold 1 is rolled and pressed to be formed. After the rolling operation is completed, the components are reset, the mold 1 carrying the formed body continues to move forward to the drying room 8 to dry, the dried body flows out from the outlet of the drying room 8, the vertical electric rail 48 drives the vertical suction disc 50 to descend to adsorb the body and then resets, then the moving motor 46 is started to move the moving seat 47 to above the conveying belt 53, the vertical suction disc 50 is lowered again to release the body, and the body enters the next process along with the conveying belt 53.

[0033] The utility model discloses according to the mold 1 type is put into the mud strip of appropriate diameter and length for it, and can automatically replace corresponding roller head 3 and adjust the parameters such as the angle of inclination, rotation speed, realize the continuous production of different types of ceramics without stopping machine, be applicable to the production of various kinds, small batch daily use ceramics.

[0034] The basic principle, main features and advantages of the utility model are shown and described. Those skilled in the art should understand that the utility model is not limited to the above examples, and the above examples and descriptions in the specification are only to illustrate the principle of the utility model. Without departing from the spirit and scope of the utility model, the utility model can have various changes and improvements, and these changes and improvements all fall within the scope of the utility model.

Claims

1. A multi-functional ceramic household rolling production line comprising a circulation line, characterized in that: The circulating line is provided with a variable-diameter mud feeding machine at the starting side, the variable-diameter mud feeding machine has two sets of mud cutting platforms, different diameter mud strips conveyed on the two platforms are quantitatively cut off by a mud cutting assembly, and then conveyed to a mold (1) on the circulating line by a feeding assembly, a tool changing platform is arranged at the first end of the circulating line, a rotating disc (2) in the tool changing platform clamps a plurality of rolling heads (3), the rotating disc (2) is driven by a pushing cylinder (4) to move the corresponding rolling head (3) to below a rolling head seat (5), a tool changing cylinder (6) on the rolling head seat (5) drives an inner built-in claw to clamp the rolling head (3), the rolling head seat (5) is hinged to a clamping plate (7) of a rolling machine and the included angle is adjusted through a push-pull assembly, an oven (8) is arranged at the tail section of the circulating line, and a transfer robot is arranged at the outlet of the oven (8).

2. A multi-functional ceramic daily-use product production line according to claim 1, characterized in that: The variable-diameter mud feeding machine comprises a transfer frame (9), an electric track (10) on the top frame of the transfer frame (9) is connected with a sliding plate (11) of the feeding assembly, a lifting cylinder (12) is mounted on the top surface of the sliding plate (11), the piston rod of the lifting cylinder (12) is vertically downward connected with a mounting seat plate of a vacuum suction disc (13), two sides of the transfer frame (9) are provided with feeding belts (14) in the mud cutting platforms, the output end of the feeding belt (14) is connected with a pushing belt (16) on a support (15), one side of the support (15) is provided with a pushing material electric track (17), a pushing material frame (18) connected with the pushing material electric track (17) is matched with guide plates (19) on both sides of the surface of the pushing belt (16), a mud cutting cylinder (20) in the mud cutting assembly is mounted on the bottom of a vertical frame (1501) at the output end of the support (15), the piston rod of the mud cutting cylinder (20) is vertically upward connected with the bottom of a cutting line frame (21), a cutting line is mounted between the two frame arms of the cutting line frame (21), a mud pressing cylinder (22) is mounted on the top of the vertical frame (1501), a rotating shaft of a turnover frame (23) is hinged between two probe arms (1502) of the vertical frame (1501), the end of the rotating shaft is connected with a turnover assembly, clamping cylinders (24) are arranged on both sides of the turnover frame (23), and the clamping cylinders (24) are located below the moving track of the vacuum suction disc (13).

3. A multi-functional ceramic daily-use product production line according to claim 1, characterized in that: The tool changing platform comprises a cross frame (25), the cross frame (25) is arranged between the two lines at the first end of the circulating line, a pushing frame (2502) is arranged in the middle of the top frame (2501) of the cross frame (25), one end of the long beam of the pushing frame (2502) extends out of the top frame (2501), the bottom surface of the long beam is provided with a pushing track (2503), the pushing track (2503) is slidingly connected with a moving plate (26), one end of the moving plate (26) is connected with the pushing cylinder (4), the pushing cylinder (4) is mounted on the outer side of the cross beam of the top frame (2501), a right-angle planetary reducer (27) is mounted on the top surface of the moving plate (26), the output gear of the right-angle planetary reducer (27) is engaged with a rotating table inner tooth disc (28) on the bottom surface of the moving plate (26), the tooth disc (28) is connected with the top surface center of the rotating disc (2), four tool holders (201) are uniformly distributed on the edge of the rotating disc (2), and the tool holders (201) are vertically downward inserted into the rolling heads (3) in the clamping holes.

4. A multi-functional ceramic daily-use product production line according to claim 1, characterized in that: The rolling machine includes a base (29) which is butt-jointed in the direction of the first end of the circulating line, a slide rail (2901) on the base (29) is slidably connected to the bottom surface of a box seat (30), the front surface of the box seat (30) is provided with an electric lifting plate (31), the end surfaces of the electric lifting plate (31) are respectively provided with a box (32) and a rotary die motor (33), a shaft rod of a die support (34) is vertically and rotatably connected in the box (32), a lower end pulley of the shaft rod is connected to an output end pulley of the rotary die motor (33) through a transmission belt, a mold (1) is opposite to the turning position of the circulating line above the die support (34), a pushing electric rail (35) is connected to the bottom surface of a lifting seat (36) at the top surface of the box seat (30), the front surface of the lifting seat (36) is provided with a lifting electric rail (37), the output end of the lifting electric rail (37) is connected to the seat plates of two clamping plates (7), and the front surface of the lifting seat (36) is provided with a waste conveyor belt (38) at the lower side.

5. A multi-functional ceramic daily-use product production line according to claim 1, characterized in that: The transmission box (501) is connected to the top of the rolling head seat (5), the knife breaking cylinder (6) is installed on the top surface of the first end of the transmission box (501), the driving motor (39) is installed on the top surface of the tail end of the transmission box (501), the output end of the driving motor (39) vertically extends into the transmission box (501) and is connected to the driving wheel, the driving wheel is connected to the driven wheel of the rolling shaft (40) through the transmission belt, the rolling shaft (40) is rotatably connected to the top of the built-in hook of the rolling shaft (40) and the rotary die motor (6), and the rolling shaft (40) is rotatably connected to the inside of the rolling head seat (5).

6. A multi-functional ceramic daily-use product production line according to claim 1, characterized in that: The pushing and pulling assembly includes a pushing and pulling rod (41), the upper end of the pushing and pulling rod (41) is hingedly connected to the back side of the rolling head seat (5), the lower end of the pushing and pulling rod (41) is hingedly connected to the top surface of a sliding frame (42), the sliding frame (42) is slidably connected to the straight rail (4301) of the mounting frame (43) which faces the rolling head seat (5), the bottom surface of the sliding frame (42) is threadedly connected to the screw rotating shaft (4302) which is parallel to the straight rail (4301), the end of the screw rotating shaft (4302) is connected to the output end of the adjusting motor (44), and the adjusting motor (44) and the mounting frame (43) are both installed between the two clamping plates (7).

7. A multi-functional ceramic daily-use product production line according to claim 1, characterized in that: The transfer robot includes a transfer frame (45), the transfer frame (45) is arranged between the line at the outlet of the drying room (8) and the feeding end of the conveying belt (53), one side of the first end of the transfer frame (45) is provided with a transfer motor (46), the output end pulley of the transfer motor (46) is connected to the tail end pulley of the transfer frame (45) through the transmission belt, both sides of the top surface of the transfer frame (45) are provided with transfer rails (4501), the transfer rails (4501) are slidably connected to the bottom surfaces of both sides of a transfer seat (47), the transfer seat (47) clamps one side of the transmission belt at the middle part of the bottom surface, the end surface of the transfer seat (47) is connected to a vertical electric rail (48), the output end of the vertical electric rail (48) is connected to an adjusting cross rail (49), and the adjusting cross rail (49) is slidably connected to the support of a vertical suction disc (50).

8. A multi-functional ceramic daily-use product production line according to claim 1, characterized in that: The circulating line comprises a bed frame (51), a circulating motor output end arranged at one end of the bed frame (51) is vertically connected with a driving gear disc, the driving gear disc is connected with a driven gear disc at the other end of the bed frame (51) through an inner chain ring, links on the inner chain ring are connected with a tray (52) through bolts, pulleys on two sides of the tray (52) are slidably connected with inner and outer ring tracks on the top surface of the bed frame (51), and a mold (1) is arranged in a disc hole of the tray (52).

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