A filter-pressing rotary cutting device for ceramic roller kiln slurry blanks

By designing a combination of screw rod, drive roller, eccentric wheel and filter plate, the problem of synchronous feeding and filtration of slurry billets in ceramic roller kilns was solved, achieving efficient slurry billet cutting and drying, and improving the production quality of ceramic roller kilns.

CN119589786BActive Publication Date: 2025-12-16HUNAN TIANXIN TECH CO LTD
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Patent Information

Application Number
CN202411738422.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-16
Estimated Expiration
2044-11-29

AI Technical Summary

Technical Problem

The existing rotary cutting device for pressing and filtering slurry blanks in ceramic roller kilns is difficult to perform feeding and filtering simultaneously, resulting in impurities in the slurry blanks and affecting the extrusion quality.

Method used

A rotary cutting device for filtration was designed, comprising a screw rod, a drive roller, a conveyor belt, an eccentric wheel, and a filter plate. The rotation of the screw rod enables the extrusion, conveying, and crushing of the mud slurry, while the rotation of the eccentric wheel enables the up-and-down movement of the filter plate. Combined with the cleaning of the filter screen, this ensures the filtration effect. The design of the cutting blade and drying frame enables the cutting and drying of the mud slurry.

Benefits of technology

This technology enables simultaneous feeding and filtration of slurry blanks, preventing filter clogging, improving the fineness and drying efficiency of the slurry blanks, and ensuring extrusion quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of for ceramic roller kiln slurry blank filter-pressing rotary cutting device, it is related to ceramic roller kiln slurry blank cutting technical field, including extruder and auxiliary column, the inside of the extruder is provided with screw rod, and the one end of screw rod is provided with driving motor by shaft, the output end of driving motor is equipped with transmission assembly one for auxiliary transmission by shaft.The filter-pressing rotary cutting device for ceramic roller kiln slurry blank, by the rotation of screw rod, it is convenient to extrude and transport ceramic roller kiln slurry blank, while it can be driven roller follow-up in the process of screw rod rotation, by the design of driving roller and conveyor belt one, it can drive driving roller to rotate, so that the built-in shaft and stirring rod in the inside of discharging frame follow-up, it is beneficial to the ceramic roller kiln slurry blank placed in the inside of discharging frame to be broken and stirred evenly process, avoid ceramic roller kiln slurry blank to carry larger particle, affect the quality of ceramic roller kiln slurry blank.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of ceramic roller kiln mud blank cutting, in particular to a pressure filtration rotary cutting device for ceramic roller kiln mud blanks. BACKGROUND

[0002] The ceramic roller kiln mud blank refers to a mud-shaped blank used in a ceramic roller kiln. The mud is extruded into a thin strip through pug milling and an extruder, and a rotary cutting piece is arranged at an extrusion head. The mud blank is cut to obtain a desired size, so that the mud blank can be conveniently processed and manufactured.

[0003] However, when the pressure filtration rotary cutting device for ceramic roller kiln mud blanks is used to extrude the mud blank, it is difficult to simultaneously discharge and filter the mud blank, so that impurities exist in the mud blank, and the extrusion quality of the extruder is affected.

[0004] Therefore, in view of the above problems, the pressure filtration rotary cutting device for ceramic roller kiln mud blanks is provided. SUMMARY

[0005] In view of the problems in the background art, the application provides a pressure filtration rotary cutting device for ceramic roller kiln mud blanks.

[0006] To achieve the above purposes, the application provides the following technical scheme: a pressure filtration rotary cutting device for ceramic roller kiln mud blanks, comprising an extruder and an auxiliary column, a screw rod is arranged in the extruder, one end of the screw rod is provided with a driving motor through a shaft, a transmission assembly one for auxiliary transmission is mounted on the output end of the driving motor, the transmission assembly one comprises a driving roller, a conveying belt one and a driven roller, the conveying belt one is arranged on the outer surface of the driving roller, and the driven roller is mounted on the top inner surface of the conveying belt one, one end of the driven roller is provided with a transmission assembly two for auxiliary crushing and filtering, the transmission assembly two comprises a side roller, a conveying belt two and a bottom roller, the conveying belt two is arranged on the outer surface of the side roller, and the bottom roller is mounted below the side roller, one end of the bottom roller is connected with a bottom shaft, an eccentric wheel is arranged at the end of the bottom shaft, a filter plate is arranged above the eccentric wheel, a filter screen is mounted in the filter plate, auxiliary assemblies are arranged at the four corners of the filter plate for assisting the movement of the filter plate, the auxiliary assemblies comprise connecting columns, connecting springs, top columns and fixing discs, the connecting columns are provided with the connecting springs at the top, the connecting springs are mounted with the top columns at the top, the top columns are provided with the fixing discs at the top, an inner plate is mounted on one side of the outer portion of the filter plate, and the auxiliary column is arranged at the bottom of the inner plate.

[0007] Further, the inner plate end outer side is provided with a discharging frame, and a side frame is mounted on one side of the discharging frame.

[0008] Further, an inner plate is slidably mounted in the side frame, and the end of the inner plate is engaged with the inner part of the discharging frame.

[0009] Further, one end of the extruder is provided with an extrusion pipe, one side of the extrusion pipe is provided with a cutting blade, and the bottom of the extruder is provided with a support plate on both sides.

[0010] Further, one end of the cutting blade is provided with a cutting motor through a drive shaft, and a supporting roller is arranged on one side of the cutting blade.

[0011] Further, a supporting frame is fixedly mounted on one side of the supporting roller, and an air rod is arranged on one side of the supporting frame.

[0012] Further, a connecting plate is mounted on the output end of the air rod, and a protection assembly for cleaning and protecting the supporting roller is mounted on the end of the connecting plate.

[0013] Further, the protection assembly comprises an auxiliary disc, a protection belt, a connecting disc and an inner disc, the inner part of the auxiliary disc is provided with the protection belt, the end of the protection belt is provided with the connecting disc, and the inner part of the connecting disc is engaged with the inner disc.

[0014] Further, a drying frame is arranged below the cutting blade, and a hot air inlet is arranged on the bottom of the drying frame, and a connecting frame is engaged and mounted on one side of the outer part of the drying frame.

[0015] Further, a first mesh belt frame is mounted in the inner part of the drying frame, a second mesh belt frame is arranged on the bottom of the first mesh belt frame, an inner motor is mounted on one side of the outer part of the first mesh belt frame and the second mesh belt frame through a shaft, an installation frame is arranged on the outer part of the inner motor, and an inner clamping plate is engaged and mounted on one side of the inner part of the first mesh belt frame and the second mesh belt frame.

[0016] The present application provides a kind of for ceramic roller kiln mud blank filter pressing rotary cutting device, with following beneficial effects:

[0017] 1. The filter pressing rotary cutting device for ceramic roller kiln mud blank, by the rotation of screw rod, the ceramic roller kiln mud blank can be conveniently extruded and conveyed, and the driven roller can be driven during the rotation of the screw rod, so that the inner shaft and the stirring rod in the discharging frame are driven, which is beneficial to the crushing and stirring of the ceramic roller kiln mud blank placed in the discharging frame, and avoids the ceramic roller kiln mud blank carrying large particles, which affects the quality of the ceramic roller kiln mud blank.

[0018] 2. The filter pressing rotary cutting device for ceramic roller kiln slurry blank, through the rotation of the side roller, the bottom roller is rotated through the cooperation of the conveying belt II, so that the eccentric wheel and the bottom shaft are synchronously rotated, the filter plate can be extruded in a discontinuous manner during the rotation of the eccentric wheel, the filter plate can be designed with the connecting column and the connecting spring, the filter plate can be moved up and down on the inner surface of the discharging frame, the user can periodically push the built-in plate and the auxiliary column synchronously along the inside of the side frame, so that the built-in plate and the auxiliary column are above the filter plate, so that the internal filter hole can be intermittently contacted with the auxiliary column when the eccentric wheel is moved, the filter hole inside the filter screen can be cleaned, the filter screen is prevented from being blocked when the filter screen is used to filter the ceramic roller kiln slurry blank, and the fineness of the ceramic roller kiln slurry blank can be ensured.

[0019] 3. The filter pressing rotary cutting device for ceramic roller kiln slurry blank, through the design of the protection assembly, the support roller can be protected from the outside without being used, foreign matter attached to the surface of the support roller is prevented from being exposed to the outside for a long time, and the surface of the support roller can be frictionally cleaned by the built-in disc, the first mesh belt frame and the second mesh belt frame can be synchronously rotated by the built-in motor and the shaft, the ceramic roller kiln slurry blank cut on the surfaces of the two mesh belt frames can be assisted to rotate, the drying efficiency is improved, and the ceramic roller kiln slurry blank after cutting is prevented from being stacked on one side. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a partial cross-sectional structure schematic view of the filter pressing rotary cutting device for ceramic roller kiln slurry blank.

[0021] Figure 2 It is a partial cross-sectional structure schematic view of the filter pressing rotary cutting device for ceramic roller kiln slurry blank.

[0022] Figure 3 It is a partial cross-sectional structure schematic view of the filter pressing rotary cutting device for ceramic roller kiln slurry blank.

[0023] Figure 4 It is a partial cross-sectional structure schematic view of the filter pressing rotary cutting device for ceramic roller kiln slurry blank.

[0024] Figure 5 It is a partial cross-sectional structure schematic view of the filter pressing rotary cutting device for ceramic roller kiln slurry blank.

[0025] Figure 6 It is a partial cross-sectional structure schematic view of the filter pressing rotary cutting device for ceramic roller kiln slurry blank.

[0026] Figure 7It is a kind of dry frame inside development structure schematic diagram for the ceramic roller kiln slurry blank filter press rotary cutting device.

[0027] In the figure: 1, extruder; 2, drive motor; 3, screw rod; 4, support plate; 5, transmission assembly one; 501, driving roller; 502, conveying belt one; 503, driving roller; 6, transmission assembly two; 601, side roller; 602, conveying belt two; 603, bottom roller; 7, support frame; 8, extrusion tube; 9, discharging frame; 10, side frame; 11, built-in shaft; 12, stirring rod; 13, auxiliary assembly; 1301, connecting column; 1302, connecting spring; 1303, top column; 1304, fixed disc; 14, filter screen; 15, filter plate; 16, eccentric wheel; 17, bottom shaft; 18, air rod; 19, connecting plate; 20, protection assembly; 2001, auxiliary disc; 2002, protection belt; 2003, connecting disc; 2004, built-in disc; 21, built-in plate; 22, auxiliary column; 23, drying frame; 24, hot air inlet; 25, link frame; 26, first mesh belt frame; 27, second mesh belt frame; 28, mounting frame; 29, built-in motor; 30, cutting motor; 31, cutting blade; 32, support roller; 33, built-in clamping plate. DETAILED DESCRIPTION

[0028] The embodiments of the present application will be further described below in conjunction with the drawings and examples. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.

[0029] As Figures 1-5As shown, the present application provides technical solutions: a kind of filter pressing rotary cutting device for ceramic roller kiln slurry blank, including extruder 1, drive motor 2, screw rod 3, support plate 4, transmission assembly one 5, driving roller 501, conveying belt one 502, drive roller 503, transmission assembly two 6, side roller 601, conveying belt two 602, bottom roller 603, support frame 7, extrusion tube 8, blanking frame 9, side frame 10, built-in shaft 11, stirring rod 12, auxiliary assembly 13, connecting column 1301, connecting spring 1302, top column 1303, fixed disc 1304, filter screen 14, filter plate 15, eccentric wheel 16, bottom shaft 17, air rod 18, connecting plate 19, protection assembly 20, auxiliary disc 2001, protective belt 2002, connecting disc 2003, built-in disc 2004, built-in plate 21, auxiliary column 22, drying frame 23, hot air inlet 24, link frame 25, first mesh belt frame 26, second mesh belt frame 27, mounting frame 28, built-in motor 29, cutting motor 30, cutting blade 31, support roller 32, and built-in clamping plate 33, the inside of extruder 1 is provided with screw rod 3, and one end of screw rod 3 is provided with drive motor 2 through shaft, the output end of drive motor 2 is provided with transmission assembly one 5 for auxiliary transmission through shaft, and transmission assembly one 5 includes driving roller 501, conveying belt one 502 and drive roller 503, the outer surface of driving roller 501 is provided with conveying belt one 502, and the top inner surface of conveying belt one 502 is provided with drive roller 503, one end of drive roller 503 is provided with transmission assembly two 6 for auxiliary crushing and filtering, and transmission assembly two 6 includes side roller 601, conveying belt two 602 and bottom roller 603, the outer surface of side roller 601 is provided with conveying belt two 602, and the bottom of side roller 601 is provided with bottom roller 603, one end of bottom roller 603 is connected with bottom shaft 17, and the end of bottom shaft 17 is provided with eccentric wheel 16, the top of eccentric wheel 16 is provided with filter plate 15, and the inside of filter plate 15 is provided with filter screen 14, the four corners of filter plate 15 are provided with auxiliary assembly 13 for assisting filter plate 15 to move, and auxiliary assembly 13 includes connecting column 1301, connecting spring 1302, top column 1303 and fixed disc 1304, the top of connecting column 1301 is provided with connecting spring 1302, and the top of connecting spring 1302 is provided with top column 1303, the top of top column 1303 is provided with fixed disc 1304, the outside of filter plate 15 is provided with built-in plate 21, auxiliary column 22 is arranged at the bottom of built-in plate 21, screw rod 3 can be driven to rotate by the design of drive motor 2, the ceramic roller kiln slurry blank is conveniently extruded and transported by the rotation of screw rod 3, and driving roller 501 can be driven to rotate in the process of screw rod 3, so that built-in shaft 11 and stirring rod 12 in the inside of blanking frame 9 are driven, which is beneficial to crushing and stirring the ceramic roller kiln slurry blank placed in blanking frame 9, to avoid that the ceramic roller kiln slurry blank carries larger particles,In addition, the side roller 601 connected with the driving roller 503 rotates synchronously, and the bottom roller 603 rotates through the rotation of the side roller 601 and the cooperation of the conveying belt two 602, so that the eccentric wheel 16 and the bottom shaft 17 rotate synchronously, the filter plate 15 can be extruded intermittently during the rotation of the eccentric wheel 16, the filter plate 15 can move up and down on the inner surface of the blanking frame 9 by the design of the connecting column 1301 and the connecting spring 1302, and the user can periodically push the built-in plate 21 and the auxiliary column 22 along the inside of the side frame 10, so that the built-in plate 21 and the auxiliary column 22 are above the filter plate 15, so that the internal filter hole can be intermittently contacted with the auxiliary column 22 when the eccentric wheel 16 moves upwards, the filter hole in the filter screen 14 can be cleaned, and the filter screen 14 can be prevented from being blocked when the filter screen 14 is used to filter the ceramic roller kiln mud slurry blank, so as to ensure the fineness of the ceramic roller kiln mud slurry blank.

[0030] As Figures 6-7As shown, the end of the built-in plate 21 is provided with a discharging frame 9, and the outer side of the discharging frame 9 is provided with a side frame 10, the inside of the side frame 10 is slidably provided with the built-in plate 21, and the end of the built-in plate 21 is clamped and connected with the inside of the discharging frame 9, which is convenient for clamping and limiting one end of the built-in plate 21 on one side of the discharging frame 9 when it is not used, so as to avoid affecting the crushing and stirring of the ceramic roller kiln mud blank by the discharging frame 9. One end of the extruder 1 is provided with an extrusion pipe 8, and one side of the extrusion pipe 8 is provided with a cutting blade 31. The bottom of the extruder 1 is provided with a support plate 4. The threaded extrusion pipe 8 is installed on one side of the extruder 1, which is convenient for users to replace the extrusion pipe 8 according to the required adaptability of the extrusion shape. The structure is simple and convenient for users to operate. One end of the cutting blade 31 is provided with a cutting motor 30 through a driving shaft. One side of the outside of the cutting blade 31 is provided with a supporting roller 32. When the ceramic roller kiln mud blank is extruded through the extrusion pipe 8, the extruder 1 is rotated through the screw rod 3, so that the cutting motor 30 can be driven to rotate the cutting blade 31. Through the rotation of the cutting blade 31, the ceramic roller kiln mud blank extruded by the extrusion pipe 8 can be quickly cut. One side of the supporting roller 32 is fixedly provided with a supporting frame 7, and one side of the outside of the supporting frame 7 is provided with an air rod 18. The output end of the air rod 18 is provided with a connecting plate 19, and the end of the connecting plate 19 is provided with a protection assembly 20 for cleaning and protecting the supporting roller 32. The protection assembly 20 comprises an auxiliary disc 2001, a protective belt 2002, a connecting disc 2003 and an inner disc 2004. The inside of the auxiliary disc 2001 is provided with the protective belt 2002. The end of the protective belt 2002 is provided with the connecting disc 2003. The inside of the connecting disc 2003 is clamped with the inner disc 2004. After the water content of the ceramic roller kiln mud blank is controlled, the ceramic roller kiln mud blank will abut against the supporting roller 32 when it is extruded through the extrusion pipe 8 of appropriate shape, so that the outside of the supporting roller 32 will be sleeved with a circular ring-shaped ceramic roller kiln mud blank. It is convenient for the user to cut and press the ceramic roller kiln mud blank on the outer surface of the supporting roller 32. In addition, when the supporting roller 32 is not used, the connecting disc 2003 and the inner disc 2004 can be moved out of the inside of the auxiliary disc 2001 through the design of the air rod 18 and the connecting plate 19. The synchronous cooperation material is the protective belt 2002 made of rubber, which can be wrapped outside the supporting roller 32, which is conducive to protecting the supporting roller 32 from the outside when it is not used, avoiding the long-term exposure of the supporting roller 32 to the outside and the attachment of foreign matters. In addition, the design of the inner disc 2004 can also be used to frictionally clean the surface of the supporting roller 32.

[0031] As Figures 6-7As shown, the lower part of the cutting blade 31 is provided with a drying frame 23, and the bottom of the drying frame 23 is provided with a hot air inlet 24, and the outside of the drying frame 23 is clamped and installed with a connecting frame 25, and the inside of the drying frame 23 is installed with a first mesh belt frame 26, and the bottom of the first mesh belt frame 26 is provided with a second mesh belt frame 27, and the outside of the first mesh belt frame 26 and the second mesh belt frame 27 is installed with an internal motor 29 through a shaft, and the outside of the internal motor 29 is provided with a mounting frame 28, and the inside of the first mesh belt frame 26 and the second mesh belt frame 27 is clamped and installed with an internal clamping plate 33, by the rotation of the cutting blade 31, the ceramic roller kiln mud blank after cutting will fall into the inside of the drying frame 23, and the bottom of the drying frame 23 is connected with hot air through the hot air inlet 24, and the hot air is blown from the bottom of the first mesh belt frame 26 and the second mesh belt frame 27, which is beneficial to heat and dry the ceramic roller kiln mud blank on the surface of the first mesh belt frame 26 and the second mesh belt frame 27, so as to reduce the water content of the ceramic roller kiln mud blank, which is beneficial to the subsequent processing and forming of the ceramic roller kiln mud blank, and the design of the internal motor 29 and the shaft can rotate the first mesh belt frame 26 and the second mesh belt frame 27 synchronously, and the rotation of the first mesh belt frame 26 and the second mesh belt frame 27 facilitates the auxiliary rotation of the ceramic roller kiln mud blank on the surface of the above two, which improves the drying efficiency and avoids the stacking of the ceramic roller kiln mud blank after cutting on one side, the mesh of the first mesh belt frame 26 is smaller than that of the second mesh belt frame 27, so that the ceramic roller kiln mud blank with appropriate particles will fall into the second mesh belt frame 27, and the ceramic roller kiln mud blank with larger particles will be in the first mesh belt frame 26, and after drying, the first mesh belt frame 26 and the second mesh belt frame 27 can be rotated synchronously by the design of the internal motor 29 and the shaft, and the internal clamping plate 33 is pulled to one side, which is convenient for the user to take out the ceramic roller kiln mud blank in the first mesh belt frame 26 or the second mesh belt frame 27, and the ceramic roller kiln mud blank with qualified particles is directly put into the discharge frame 9 through the opening of the lower side of the door plate, and the large particle ceramic roller kiln mud blank is put into the discharge frame 9 from the top, which is convenient for re-crushing, stirring and extruding treatment.

[0032] In summary, as Figures 1-7As shown, the filter pressing rotary cutting device for ceramic roller kiln slurry blank uses the design of the driving motor 2 to drive the rotation of the screw rod 3, which facilitates the extrusion and conveying of the ceramic roller kiln slurry blank through the rotation of the screw rod 3. At the same time, the driving roller 501 can follow the rotation of the screw rod 3. Through the design of the driving roller 501 and the conveyor belt 1 502, the driving roller 503 can be driven to rotate, so that the built-in shaft 11 and the stirring rod 12 inside the discharging frame 9 follow the movement. This is beneficial to the crushing and stirring of the ceramic roller kiln slurry blank placed inside the discharging frame 9, avoiding the ceramic roller kiln slurry blank carrying large particles, which affects the quality of the ceramic roller kiln slurry blank. In addition, the side roller 601 connected with the driving roller 503 will rotate synchronously, and through the rotation of the side roller 601, the bottom roller 603 will rotate through the cooperation of the conveyor belt 2 602, so that the eccentric wheel 16 and the bottom shaft 17 will rotate synchronously. The filter plate 15 can be extruded during the rotation of the eccentric wheel 16, so that the filter plate 15 can be designed with a connecting column 1301 and a connecting spring 1302, so that the filter plate 15 can move up and down on the inner surface of the discharging frame 9, which is convenient for the user to periodically push the built-in plate 21 and the auxiliary column 22 along the inside of the side frame 10, so that the built-in plate 21 and the auxiliary column 22 are above the filter plate 15, so that the internal filter hole can be intermittently contacted with the auxiliary column 22 when the eccentric wheel 16 moves upwards, which is convenient for cleaning the filter holes in the filter screen 14, avoiding the filter screen 14 from being blocked when filtering the ceramic roller kiln slurry blank, and ensuring the fineness of the ceramic roller kiln slurry blank. The end of the built-in plate 21 is clamped and connected inside the discharging frame 9, which is convenient for clamping and limiting one end of the built-in plate 21 on one side of the discharging frame 9 when it is not in use, avoiding affecting the crushing and stirring of the ceramic roller kiln slurry blank by the discharging frame 9, and then the extruder 1 drives the ceramic roller kiln slurry blank to pass through the extrusion pipe 8 through the rotation of the screw rod 3, which can drive the cutting blade 31 to rotate through the design of the cutting motor 30. Through the rotation of the cutting blade 31, the ceramic roller kiln slurry blank extruded from the extrusion pipe 8 can be quickly cut, and then through the rotation of the cutting blade 31, the cut ceramic roller kiln slurry blank will fall into the inside of the drying frame 23. The bottom of the drying frame 23 is connected with hot air through the hot air inlet 24, and the hot air is blown from the bottom of the first mesh belt frame 26 and the second mesh belt frame 27, which is beneficial to the heating and drying treatment of the ceramic roller kiln slurry blank falling on the outer surface of the first mesh belt frame 26 and the second mesh belt frame 27, so that the water content of the ceramic roller kiln slurry blank is reduced, which is beneficial to the subsequent processing and forming of the ceramic roller kiln slurry blank. In addition, through the design of the built-in motor 29 and the shaft, the first mesh belt frame 26 and the second mesh belt frame 27 can be rotated synchronously, which is convenient for the auxiliary rotation of the ceramic roller kiln slurry blank cut on the surface of the above two, which improves the drying efficiency and also avoids the stacking of the cut ceramic roller kiln slurry blank on one side.The mesh of the first mesh belt frame 26 is smaller than the mesh of the second mesh belt frame 27, so that the ceramic roller kiln slurry blank with qualified particles falls into the second mesh belt frame 27, the ceramic roller kiln slurry blank with larger particles is in the first mesh belt frame 26, and the first mesh belt frame 26 and the second mesh belt frame 27 can be rotated synchronously after drying through the design of the built-in motor 29 and the shaft, and the built-in clamping plate 33 is pulled to one side, so that the user takes out the ceramic roller kiln slurry blank in the first mesh belt frame 26 or the second mesh belt frame 27, the ceramic roller kiln slurry blank with qualified particles is directly put into the discharge frame 9 through opening the door plate at the lower side of the discharge frame 9, the door plate is connected with the discharge frame 9, the ceramic roller kiln slurry blank with large particles is put from the top of the discharge frame 9, and the ceramic roller kiln slurry blank is conveniently crushed, stirred, and extruded again, the threaded extrusion pipe 8 is installed on one side of the extruder 1, the user can replace the extrusion pipe 8 according to the required adaptability of the extrusion shape, the structure is simple, the user is convenient to operate, in addition, after the water content of the ceramic roller kiln slurry blank is controlled, the ceramic roller kiln slurry blank can abut against the supporting roller 32 when extruded through the extrusion pipe 8 with a suitable shape, so that the supporting roller 32 is externally sleeved with annular ceramic roller kiln slurry blank, the user is convenient to cut and press the ceramic roller kiln slurry blank on the outer surface of the supporting roller 32, in addition, when the supporting roller 32 is not used, the connecting disc 2003 and the built-in disc 2004 can be moved out of the auxiliary disc 2001 through the design of the air rod 18 and the connecting plate 19, and the protective belt 2002 made of rubber is designed to be synchronously matched, so that the supporting roller 32 is wrapped from the outside, which is beneficial to protect the supporting roller 32 from the outside when the supporting roller 32 is not used, avoids that the supporting roller 32 is exposed outside for a long time and adheres foreign matters, and the built-in disc 2004 can also be used to rub and clean the surface of the supporting roller 32.

[0033] Embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.

Claims

1. A rotary cutting device for pressing and filtering slurry billets in ceramic roller kilns, comprising an extruder (1) and an auxiliary column (22), characterized in that: The extruder (1) is equipped with a screw (3) inside, and a drive motor (2) is mounted on one end of the screw (3) via a shaft. The output end of the drive motor (2) is mounted on a transmission assembly (5) for auxiliary transmission via a shaft. The transmission assembly (5) includes a drive roller (501), a conveyor belt (502), and a drive roller (503). The outer surface of the drive roller (501) is provided with the conveyor belt (502), and the inner top surface of the conveyor belt (502) is mounted with the drive roller (503). One end of the drive roller (503) is provided with a transmission assembly for auxiliary crushing and filtering. Part 2 (6), and the transmission assembly 2 (6) includes a side roller (601), a conveyor belt 2 (602) and a bottom roller (603). The outer surface of the side roller (601) is provided with the conveyor belt 2 (602), and the bottom roller (603) is installed below the side roller (601). One end of the bottom roller (603) is connected to a bottom shaft (17), and the end of the bottom shaft (17) is provided with an eccentric wheel (16). A filter plate (15) is provided above the eccentric wheel (16), and a filter screen (14) is installed inside the filter plate (15). Auxiliary filter plates (14) are provided at the four corners of the filter plate (15). 5) An auxiliary component (13) for position movement, comprising a connecting column (1301), a connecting spring (1302), a top column (1303), and a fixing plate (1304). The connecting spring (1302) is provided on the top of the connecting column (1301), and the top column (1303) is installed on the top of the connecting spring (1302). The fixing plate (1304) is provided on the top of the top column (1303). An internal plate (21) is installed on the outer side of the filter plate (15). The auxiliary column (22) is located at the bottom of the internal plate (21). An eccentric wheel is also present. (16) The rotation time intermittently squeezes the filter plate (15), so that the filter plate (15) is attached to the inner surface of the feeding frame (9) and moves up and down by means of the connecting column (1301) and connecting spring (1302). This makes it convenient for the user to periodically push the inner plate (21) and auxiliary column (22) along the inside of the side frame (10) so that the inner plate (21) and auxiliary column (22) are above the filter plate (15). Thus, when the eccentric wheel (16) moves up, the internal filter hole and the auxiliary column (22) are in intermittent contact, which makes it convenient to clean the filter hole inside the filter screen (14).

2. The pressure-filtering rotary cutting device for ceramic roller kiln slurry billets according to claim 1, characterized in that: The inner plate (21) is provided with a feeding frame (9) on the outer side of its end, and a side frame (10) is installed on the outer side of the feeding frame (9).

3. The rotary cutting device for pressure filtration of slurry billets in ceramic roller kilns according to claim 2, characterized in that: The side frame (10) has an internally mounted built-in plate (21) that is slidably installed inside, and the end of the built-in plate (21) is engaged with the inside of the unloading frame (9).

4. The rotary cutting device for pressing and filtering slurry billets in ceramic roller kilns according to claim 1, characterized in that: One end of the extruder (1) is provided with an extrusion tube (8), and a cutting blade (31) is installed on one side of the extrusion tube (8). Support plates (4) are installed on both sides of the bottom of the extruder (1).

5. A rotary pressure cutting device for ceramic roller kiln slurry billets according to claim 4, characterized in that: One end of the cutting blade (31) is equipped with a cutting motor (30) via a drive shaft, and a support roller (32) is provided on the outer side of the cutting blade (31).

6. A rotary pressure cutting device for ceramic roller kiln slurry billets according to claim 5, characterized in that: A support frame (7) is fixedly installed on one side of the support roller (32), and an air rod (18) is provided on the outside of one side of the support frame (7).

7. A rotary pressure cutting device for ceramic roller kiln slurry billets according to claim 6, characterized in that: The output end of the air rod (18) is equipped with a connecting plate (19), and the end of the connecting plate (19) is equipped with a protective component (20) for cleaning and protecting the support roller (32).

8. The rotary cutting device for pressure filtration of slurry billets in ceramic roller kilns according to claim 7, characterized in that: The protective component (20) includes an auxiliary disk (2001), a protective belt (2002), a connecting disk (2003), and an internal disk (2004). The auxiliary disk (2001) is provided with a protective belt (2002) inside. The end of the protective belt (2002) is equipped with a connecting disk (2003), and the internal disk (2004) is engaged inside the connecting disk (2003).

9. A rotary cutting device for pressure filtration of slurry billets in a ceramic roller kiln according to claim 4, characterized in that: A drying frame (23) is provided below the cutting blade (31), and a hot air inlet (24) is provided at the bottom of the drying frame (23). A connecting frame (25) is fitted on the outer side of the drying frame (23).

10. A rotary cutting device for pressing and filtering slurry billets in a ceramic roller kiln according to claim 9, characterized in that: The drying frame (23) is equipped with a first mesh belt frame (26) inside, and a second mesh belt frame (27) is provided at the bottom of the first mesh belt frame (26). An internal motor (29) is installed on the outer side of the first mesh belt frame (26) and the second mesh belt frame (27) through a shaft. An installation frame (28) is provided on the outside of the internal motor (29). An internal card plate (33) is engaged and installed on the inner side of the first mesh belt frame (26) and the second mesh belt frame (27).

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