Raw material mixing device for ceramic filler processing

By designing the feeding, mixing and discharging mechanisms of the ceramic filler processing device, the problem of uneven mixing of raw materials is solved, effective filtration and crushing of large-particle raw materials is achieved, and mixing uniformity and discharging efficiency are ensured.

CN120773192APending Publication Date: 2025-10-14JIANGXI AITE MASS TRANSFER TECH CO LTD
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Patent Information

Application Number
CN202510919817.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-04
Publication Date
2025-10-14

AI Technical Summary

Technical Problem

When mixing raw materials, existing ceramic filler processing devices cause uneven mixing due to the presence of large particles in the raw materials.

Method used

A raw material mixing device for ceramic filler processing is designed, which includes a feeding mechanism, a mixing mechanism and a discharging mechanism. The raw materials are pretreated by the filtering and crushing components of the feeding mechanism, the mixing mechanism mixes the raw materials evenly, and the discharging is controlled by the discharging mechanism.

Benefits of technology

Effectively filter and crush large particles of raw materials to ensure uniform mixing of raw materials, reduce the risk of blockage, and improve discharge efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a raw material mixing device for ceramic filler processing, and relates to the technical field of ceramic filler mixing. The device specifically comprises a supporting plate, a charging barrel is arranged above the supporting plate, and a clamping frame is fixedly connected to the top of the charging barrel; the raw material mixing device for ceramic filler processing further comprises a feeding mechanism used for filtering and crushing raw materials, the feeding mechanism is arranged in the charging barrel and comprises a disc, a crushing assembly is arranged at the top of the disc, a third telescopic rod is installed at the bottom of the disc, and the third telescopic rod is connected with the feeding mechanism. The bottom of the third telescopic rod is fixedly connected with a mixing mechanism; and the discharging mechanism is used for discharging the mixed raw materials, the discharging mechanism is arranged at the bottom of the charging barrel, the discharging mechanism comprises a discharging barrel, and the exterior of the discharging barrel is fixedly connected with a backup plate. The raw material mixing device for ceramic filler processing achieves the purpose of improving the use efficiency of equipment.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of ceramic filler mixing, in particular to a raw material mixing device for ceramic filler processing. BACKGROUND

[0002] Raw materials of ceramic fillers mainly include kaolin, quartz and feldspar and the like. The raw materials are prepared into products through complex technological processes such as batching, ball milling, vacuum mud conditioning, mold design, extrusion molding, drying and sintering. In the preparation process, the raw materials need to be crushed and mixed together.

[0003] At present, when the raw material mixing device for ceramic filler processing mixes the raw materials, since the raw materials enter the device after being coarsely ground, part of the raw materials with large particles exists, which affects the uniformity of the raw material mixing. SUMMARY

[0004] To solve the above technical problems, the application provides a raw material mixing device for ceramic filler processing, which specifically comprises:

[0005] A support plate is provided with a barrel above, and the top of the barrel is fixedly connected with a clamping seat;

[0006] The raw material mixing device for ceramic filler processing further comprises:

[0007] A feeding mechanism is used for filtering and crushing the raw materials, and the feeding mechanism is arranged in the interior of the barrel. The feeding mechanism comprises a disc, a crushing assembly is arranged on the top of the disc, a third telescopic rod is installed on the bottom of the disc, and a mixing mechanism is fixedly connected to the bottom of the third telescopic rod.

[0008] A discharging mechanism is used for discharging the mixed raw materials, and the discharging mechanism is arranged at the bottom of the barrel. The discharging mechanism comprises a discharging barrel, a backrest is fixedly connected to the exterior of the discharging barrel, a first push rod is fixedly connected to the exterior of the backrest, a connecting bent rod is fixedly connected to the exterior of the first push rod, and a baffle is fixedly connected to the exterior of the connecting bent rod.

[0009] Preferably, the top of the support plate is fixedly connected with a base, the top of the base is fixedly connected with an adjusting column, the top of the adjusting column is fixedly connected with a first telescopic rod, the exterior of the adjusting column is fixedly connected with an annular frame, the annular frame is fixedly connected with the backrest, and the first telescopic rod is fixedly connected with the barrel.

[0010] Preferably, the interior of the clamping seat is clampedly connected with a connecting piece, the bottom of the connecting piece is fixedly connected with a clamping ring, the bottom of the clamping ring is fixedly connected with a second telescopic rod, two second telescopic rods are symmetrically arranged, and the second telescopic rods are fixedly connected to the top of the disc.

[0011] Preferably, the crushing assembly comprises an arc-shaped groove, the bottom of the arc-shaped groove is fixedly connected with a soft net, the arc-shaped groove is arranged in the interior of the disc, and the arc-shaped groove is arranged with four.

[0012] Preferably, the crushing assembly further comprises a groove, the interior of the groove is fixedly connected with an elastic rod, the top of the elastic rod is fixedly connected with a hemisphere, the groove, the elastic rod and the hemisphere are arranged with a plurality of, and the groove is arranged in the interior of the disc.

[0013] Preferably, the crushing assembly further comprises a center column, the exterior of the center column is fixedly connected with an outer ring, the exterior of the outer ring is mounted with a blade, and the center column is mounted in the interior of the disc.

[0014] Preferably, the mixing mechanism comprises a cross plate, the top of the cross plate is fixedly connected with a support, the top of the support is fixedly connected with a fixed rod, the fixed rod is used for driving the upward movement of the large-particle raw materials on the soft net, the fixed rod is arranged with a plurality of, and the cross plate is fixedly connected to the bottom of the third telescopic rod.

[0015] Preferably, the mixing mechanism further comprises a connecting rod, the connecting rod is arranged with four, the exterior of the four connecting rods is fixedly connected with a first mixing rod and a second mixing rod, the first mixing rod and the second mixing rod are used for mixing the raw materials at different heights and different positions, and the connecting rod is fixedly connected to the bottom of the cross plate.

[0016] Preferably, the mixing mechanism further comprises a contact plate, the contact plate is used for being in contact with the upper surface of the baffle, the bottom of the contact plate is fixedly connected with a scraper, the exterior of the scraper is fixedly connected with a branch rod, the scraper and the branch rod are used for being in contact with the raw materials at the bottom of the discharging cylinder and stirring the raw materials, so that the raw materials are mixed, the branch rod is arranged with a plurality of and is uniformly arranged, and the contact plate is fixedly connected to the bottom of the connecting rod.

[0017] Preferably, the back plate is arranged with two and is symmetrically arranged, the bottom of the two back plates is fixedly connected with a second push rod, and the bottom of the second push rod is fixedly connected with an annular plate.

[0018] The application provides a raw material mixing device for ceramic filler processing.

[0019] 1. The raw material mixing device for ceramic filler processing, through the setting of the feeding mechanism and the mixing mechanism, filters and crushes the raw materials. When mixing the raw materials, since the raw materials enter the equipment after being coarsely ground, some large particle raw materials exist in the raw materials, affecting the uniformity of the raw material mixing. Therefore, the feeding mechanism is set, the soft net is used to filter the raw materials, and the blade rotates. The fixed rod in the mixing mechanism pushes the large particle raw materials intercepted on the soft net upwards, and the large particle raw materials are pushed and crushed, to solve the above problems.

[0020] 2. The raw material mixing device for ceramic filler processing, through the setting of the feeding mechanism, filters and crushes the raw materials. After the raw materials enter the barrel, they first contact the crushing assembly, and the large particle raw materials are intercepted in the soft net. Under the cooperation of the mixing mechanism, the soft net is pushed upwards, the large particle raw materials move upwards and contact the rotating blade, are crushed by the blade, and then the size of the large particle raw materials is reduced, facilitating the mixing work between the raw materials. And by adjusting the stroke of the second telescopic rod, the raw materials can be moved in the crushing assembly, reducing the situation that the soft net is blocked.

[0021] 3. The raw material mixing device for ceramic filler processing, through the setting of the mixing mechanism, mixes the raw materials. By starting the second motor, the angle of the mixing mechanism can be controlled, and then whether the four supporting pieces are aligned with the four soft nets in the vertical direction is adjusted. When the four supporting pieces are aligned with the four soft nets in the vertical direction, the stroke of the third telescopic rod can be adjusted to control the vertical rod on the supporting piece to push the soft net and push the particles in the soft net, promoting the upward movement of the large particle raw materials. When the mixing mechanism is in a rotating state, the first mixing rod and the second mixing rod mix and stir the raw materials at different heights and different positions, the scraper and the branch rod at the bottom contact the upper surface of the baffle, promoting the mixing work of the raw materials at the bottom.

[0022] 4. The raw material mixing device for ceramic filler processing, through the setting of the discharging mechanism, discharges the raw materials. By using the position-controllable baffle, the bottom of the discharging barrel can be closed, and the discharging work of the mixed raw materials is facilitated. During the discharging process of the raw materials, as the baffle is separated from the bottom of the discharging barrel, the second push rod controls the annular plate to move downwards, limiting the discharging position of the raw materials, reducing the waste of the raw materials. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0024] Figure 2 It is a schematic diagram of the side structure of the present application;

[0025] Figure 3 It is a schematic diagram of the feeding mechanism structure of the present application;

[0026] Figure 4 Structure diagram of the crushing assembly of the present application;

[0027] Figure 5 Structure diagram of the crushing assembly of the present application; Figure 4 Structure diagram of the crushing assembly of the present application;

[0028] Figure 6 Structure diagram of the mixing mechanism of the present application;

[0029] Figure 7 Structure diagram of the crushing assembly of the present application; Figure 6 Structure diagram of the crushing assembly of the present application;

[0030] Figure 8 Structure diagram of the crushing assembly of the present application;

[0031] In the figure: 1, support plate; 2, base; 3, adjusting column; 4, first telescopic rod; 5, barrel; 6, clamping frame; 7, feeding mechanism; 701, connecting piece; 702, clamping ring; 703, second telescopic rod; 704, disc; 705, crushing assembly; 7051, arc-shaped groove; 7052, soft net; 7053, groove; 7054, elastic rod; 7055, hemisphere; 7056, center column; 7057, outer ring; 7058, blade; 706, third telescopic rod; 8, mixing mechanism; 801, cross plate; 802, support piece; 803, fixed rod; 804, connecting rod; 805, first mixing rod; 806, second mixing rod; 807, contact plate; 808, scraper; 809, branch rod; 9, discharging mechanism; 901, back plate; 902, discharging barrel; 903, first push rod; 904, connecting elbow; 905, baffle; 906, second push rod; 907, annular plate; 10, annular frame. DETAILED DESCRIPTION

[0032] The present application will be further described below in conjunction with the drawings and specific embodiments. The 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 present 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 present application and its practical application, and to enable others skilled in the art to understand the present application for various embodiments with various modifications as are suited to the particular use contemplated.

[0033] As Figures 1-8 shown, the present application provides a technical solution: specifically comprising:

[0034] The support plate 1 is internally provided with a fixing groove, the upper portion of the support plate 1 is provided with a barrel 5, the barrel 5 is internally hollow, the bottom portion of the barrel 5 is provided with an annular groove 7053, the top portion of the barrel 5 is fixedly connected with a clamping seat 6, the top portion of the support plate 1 is fixedly connected with a base 2, the top portion of the base 2 is fixedly connected with an adjusting column 3, the top portion of the adjusting column 3 is fixedly connected with a first telescopic rod 4, the outer portion of the adjusting column 3 is fixedly connected with an annular frame 10, and the first telescopic rod 4 is fixedly connected with the barrel 5;

[0035] The raw material mixing device for processing ceramic fillers further comprises:

[0036] The feeding mechanism 7 is used for filtering and crushing the raw materials, and is arranged in the barrel 5. The feeding mechanism 7 comprises a disc 704, the top portion of the disc 704 is provided with a crushing assembly 705, the disc 704 is internally provided with a first motor and a second motor, the output end of the first motor is connected with the crushing assembly 705, the output end of the second motor is connected with a third telescopic rod 706, the bottom portion of the disc 704 is provided with the third telescopic rod 706, and the bottom portion of the third telescopic rod 706 is fixedly connected with a mixing mechanism 8.

[0037] The discharging mechanism 9 is used for discharging the mixed raw materials, and is arranged at the bottom portion of the barrel 5. The discharging mechanism 9 comprises a discharging barrel 902, the discharging barrel 902 is clampedly connected in the annular groove 7053, the discharging barrel 902 is internally hollow, the outer portion of the discharging barrel 902 is fixedly connected with a back plate 901, the back plate 901 is provided with two portions and is symmetrically arranged, the outer portion of one back plate 901 is fixedly connected with a first push rod 903, the outer portion of the first push rod 903 is fixedly connected with a connecting bent rod 904, the outer portion of the connecting bent rod 904 is fixedly connected with a baffle 905, the baffle 905 is circular, the baffle 905 is matched with the discharging barrel 902, and the annular frame 10 is fixedly connected with the back plate 901.

[0038] Before using the device, the first telescopic rod 4 and the first push rod 903 are in an initial state, the discharging barrel 902 is clampedly connected in the annular groove 7053, the baffle 905 is located directly below the discharging barrel 902 and is in contact with the discharging barrel 902, thereby blocking the discharging position. The feeding mechanism 7 is adjusted, the raw materials are intermittently fed into the barrel 5 manually, the feeding mechanism 7 and the mixing mechanism 8 are turned on, and the raw materials are filtered, crushed and mixed. A receiving container for collecting the mixed raw materials is placed in the fixing groove in the support plate 1 manually. As the raw materials gradually enter the discharging barrel 902, the discharging mechanism 9 is adjusted, and the discharging of the raw materials is completed.

[0039] The inner part of the clamping frame 6 is connected with a connecting piece 701, the bottom of the connecting piece 701 is fixedly connected with a clamping ring 702, the bottom of the clamping ring 702 is fixedly connected with a second telescopic rod 703, the second telescopic rod 703 is provided with two and is symmetrically arranged, and the second telescopic rod 703 is fixedly connected to the top of a disc 704.

[0040] The second telescopic rod 703 is opened, the second telescopic rod 703 drives the disc 704 to move downward, and in turn drives the crushing assembly 705 to move downward. As the raw materials enter the barrel 5, the crushing assembly 705 is opened, and the raw materials are filtered and crushed.

[0041] When the feeding is stopped, the second telescopic rod 703 is adjusted to the reciprocating mode, the second telescopic rod 703 drives the disc 704 and the crushing assembly 705 to repeatedly move up and down, promotes the movement of the raw materials, and reduces the raw materials blocked in the crushing assembly 705.

[0042] The crushing assembly 705 includes an arc-shaped groove 7051, the bottom of the arc-shaped groove 7051 is fixedly connected with a soft net 7052, the soft net 7052 is arranged in a ladder shape, the arc-shaped groove 7051 is arranged in the inner part of the disc 704, and the arc-shaped groove 7051 is provided with four.

[0043] The crushing assembly 705 further includes a groove 7053, the inner part of the groove 7053 is fixedly connected with an elastic rod 7054, the top of the elastic rod 7054 is fixedly connected with a hemisphere 7055, the groove 7053, the elastic rod 7054 and the hemisphere 7055 are all provided with a plurality of, and the groove 7053 is arranged in the inner part of the disc 704.

[0044] The crushing assembly 705 further includes a center column 7056, the outer part of the center column 7056 is fixedly connected with an outer ring 7057, the outer part of the outer ring 7057 is mounted with a blade 7058, the outer ring 7057 and the blade 7058 are all provided with a plurality of groups, the center column 7056 is mounted in the inner part of the disc 704, and the center column 7056 is fixedly connected with the output end of the first motor.

[0045] As the raw materials enter the barrel 5, the crushing assembly 705 is opened, and the raw materials are filtered and crushed. The raw materials of qualified size move downward through the soft net 7052 and enter the discharge barrel 902. The large-particle raw materials are intercepted in the soft net 7052.

[0046] When the feeding is stopped, the cover plate is manually clamped on the top of the barrel 5, the second telescopic rod 703 is adjusted to the reciprocating mode, the second telescopic rod 703 drives the disc 704 and the crushing assembly 705 to repeatedly move up and down, so as to promote the movement of the raw materials and reduce the blocking of the raw materials in the crushing assembly 705. With the disc 704 moving up and down, the disc 704 drives the elastic rods 7054 and the hemispheres 7055 to move, the elastic rods 7054 are repeatedly stretched or compressed, the hemispheres 7055 repeatedly hit the clamping ring 702, and the hemispheres 7055 are uniformly arranged on the disc 704, so that the vibration is transmitted to the disc 704, thereby promoting the movement of the raw materials.

[0047] At the same time, the first motor is started, the first motor drives the central column 7056 to rotate, and then drives the outer ring 7057 and the blade 7058 to rotate, so as to cut and crush the large-particle raw materials.

[0048] The mixing mechanism 8 comprises a cross plate 801, the top of the cross plate 801 is fixedly connected with a supporting piece 802, the top of the supporting piece 802 is fixedly connected with a fixed rod 803, a plurality of fixed rods 803 are arranged, and the cross plate 801 is fixedly connected to the bottom of the third telescopic rod 706.

[0049] The mixing mechanism 8 further comprises a connecting rod 804, the connecting rod 804 is provided with four, the outer portions of the four connecting rods 804 are fixedly connected with a first mixing rod 805 and a second mixing rod 806, the first mixing rod 805 and the second mixing rod 806 are arranged in opposite directions and at different heights, and the connecting rod 804 is fixedly connected to the bottom of the cross plate 801.

[0050] The mixing mechanism 8 further comprises a contact plate 807, the bottom of the contact plate 807 is fixedly connected with a scraper 808, the outer portion of the scraper 808 is fixedly connected with a branch rod 809, a plurality of branch rods 809 are arranged and uniformly arranged, and the contact plate 807 is fixedly connected to the bottom of the connecting rod 804.

[0051] When the third telescopic rod 706 is in the initial state, the supporting piece 802 is in the soft net 7052, and the soft net 7052 is pushed upward by the supporting piece 802, and the fixed rod 803 is in the soft net 7052.

[0052] The third telescopic rod 706 is started, the third telescopic rod 706 drives the cross plate 801, the supporting piece 802 and the fixed rod 803 to move downward, the fixed rod 803 is separated from the soft net 7052, and the contact plate 807, the scraper 808 and the branch rod 809 are in contact with the upper surface of the baffle 905. The second motor is started, the second motor drives the third telescopic rod 706 to rotate, and then drives the entire mixing mechanism 8 to rotate.

[0053] With the rotation of the mixing mechanism 8, the first mixing rod 805 and the second mixing rod 806 stir and mix the raw materials at different heights and different positions, and the scraper 808 and the branch rod 809 drive the raw materials at the bottom to move.

[0054] When the feeding is stopped, the second motor is started to adjust the angle of the four supporting pieces 802, so that the four supporting pieces 802 are below the four soft nets 7052, and the third telescopic rod 706 is adjusted to the reciprocating mode, so that the soft net 7052 is deformed by the supporting piece 802 and the fixed rod 803 to promote the upward movement of the particles in the soft net 7052.

[0055] The bottom of each of the two backboards 901 is fixedly connected with a second push rod 906, and the bottom of the second push rod 906 is fixedly connected with an annular plate 907.

[0056] After the work is finished, the first push rod 903 is started to drive the connecting bent rod 904 and the baffle 905 to move outward, the baffle 905 gradually separates from the discharge cylinder 902, the raw materials start to move downward, and the second push rod 906 is started to drive the annular plate 907 to move downward.

[0057] Working principle: before using the device, the first telescopic rod 4 and the first push rod 903 are in the initial state, the discharge cylinder 902 is clamped and connected in the annular groove 7053, the baffle 905 is below the discharge cylinder 902 and in contact with the discharge cylinder 902, and the discharge position is blocked.

[0058] Adjust the feeding mechanism 7, manually feed the raw materials into the cylinder 5 intermittently, start the feeding mechanism 7 and the mixing mechanism 8, and filter, crush and mix the raw materials.

[0059] Start the second telescopic rod 703 to drive the disc 704 to move downward, and then drive the crushing assembly 705 to move downward. As the raw materials enter the cylinder 5, start the crushing assembly 705 to filter and crush the raw materials. The raw materials of qualified size move downward through the soft net 7052 and enter the discharge cylinder 902. The large-particle raw materials are intercepted in the soft net 7052.

[0060] When the feeding is stopped, manually clamp the cover plate on the top of the cylinder 5, adjust the second telescopic rod 703 to the reciprocating mode, the second telescopic rod 703 drives the disc 704 and the crushing assembly 705 to repeatedly move up and down to promote the movement of the raw materials and reduce the raw materials blocked in the crushing assembly 705. As the disc 704 moves up and down, the disc 704 drives the elastic rod 7054 and the hemisphere 7055 to move, the elastic rod 7054 repeatedly stretches or compresses, the hemisphere 7055 repeatedly hits the detent ring 702, and the hemispheres 7055 are uniformly arranged on the disc 704, so that the vibration is transmitted to the disc 704 to promote the movement of the raw materials.

[0061] At the same time, the first motor is started, the first motor drives the center column 7056 to rotate, and then drives the outer ring 7057 and the blade 7058 to rotate, so as to cut and crush the large-particle raw materials.

[0062] When the third telescopic rod 706 is in the initial state, the support 802 is in the soft net 7052, and the soft net 7052 is pushed upward by the support 802, and the fixing rod 803 is in the soft net 7052.

[0063] The third telescopic rod 706 is started, the third telescopic rod 706 drives the cross plate 801, the support 802 and the fixing rod 803 to move downward, the fixing rod 803 is separated from the soft net 7052, and the contact plate 807, the scraper 808 and the branch rod 809 are in contact with the upper surface of the baffle 905. The second motor is started, the second motor drives the third telescopic rod 706 to rotate, and then drives the whole mixing mechanism 8 to rotate.

[0064] With the rotation of the mixing mechanism 8, the first mixing rod 805 and the second mixing rod 806 stir and mix the raw materials at different heights and different positions, and the scraper 808 and the branch rod 809 drive the raw materials at the bottom to move.

[0065] When the feeding is stopped, the second motor is started to adjust the angle of the four supports 802, so that the four supports 802 are below the four soft nets 7052, and the third telescopic rod 706 is adjusted to the reciprocating mode, the soft net 7052 is deformed by the support 802 and the fixing rod 803, so as to promote the upward movement of the particles in the soft net 7052.

[0066] The receiving container for collecting the mixed raw materials is manually placed in the fixed groove in the support plate 1. With the raw materials gradually entering the discharge cylinder 902, the discharge mechanism 9 is adjusted to complete the discharge of the raw materials. After the work is completed, the first push rod 903 is started, the first push rod 903 drives the connecting bent rod 904 and the baffle 905 to move outward, the baffle 905 gradually separates from the discharge cylinder 902, and the raw materials begin to move downward, and the second push rod 906 is started, the second push rod 906 drives the annular plate 907 to move downward.

[0067] Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art and related fields without creative labor shall belong to the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art, unless otherwise specified and limited.

Claims

1. A raw material mixing device for processing ceramic fillers, specifically comprising: The support plate (1) is characterized in that a barrel (5) is provided above the support plate (1), and a clamping frame (6) is fixedly connected to the top of the barrel (5); The raw material mixing device for processing ceramic fillers also includes: A feeding mechanism (7) is used for filtering and crushing the raw materials. The feeding mechanism (7) is arranged inside the barrel (5). The feeding mechanism (7) comprises a disc (704). A crushing assembly (705) is arranged on the top of the disc (704). A third telescopic rod (706) is installed on the bottom of the disc (704). The bottom of the third telescopic rod (706) is fixedly connected to a mixing mechanism (8). A discharging mechanism (9) is used for discharging the mixed raw materials. The discharging mechanism (9) is arranged at the bottom of the barrel (5). The discharging mechanism (9) includes a discharging barrel (902). The outside of the discharging barrel (902) is fixedly connected to a support plate (901). The outside of the support plate (901) is fixedly connected to a first push rod (903). The outside of the first push rod (903) is fixedly connected to a connecting bent rod (904). The outside of the connecting bent rod (904) is fixedly connected to a baffle (905).

2. The raw material mixing device for processing ceramic fillers according to claim 1, characterized in that: The top of the support plate (1) is fixedly connected to a base (2), the top of the base (2) is fixedly connected to an adjusting column (3), the top of the adjusting column (3) is fixedly connected to a first telescopic rod (4), the outside of the adjusting column (3) is fixedly connected to an annular frame (10), the annular frame (10) is fixedly connected to a support plate (901), and the first telescopic rod (4) is fixedly connected to a barrel (5).

3. The raw material mixing device for processing ceramic fillers according to claim 1, characterized in that: The interior of the positioning frame (6) is engaged with a connecting piece (701), the bottom of the connecting piece (701) is fixedly connected to a positioning ring (702), the bottom of the positioning ring (702) is fixedly connected to a second telescopic rod (703), two second telescopic rods (703) are provided and symmetrically arranged, and the second telescopic rods (703) are fixedly connected to the top of the disc (704).

4. The raw material mixing device for processing ceramic fillers according to claim 1, characterized in that: The crushing assembly (705) includes an arc-shaped groove (7051), the bottom of which is fixedly connected to a soft net (7052), and the arc-shaped groove (7051) is opened inside the disc (704), and there are four arc-shaped grooves (7051).

5. The raw material mixing device for processing ceramic fillers according to claim 4, characterized in that: The crushing assembly (705) further comprises a groove (7053), the interior of the groove (7053) being fixedly connected to an elastic rod (7054), the top of the elastic rod (7054) being fixedly connected to a hemisphere (7055), and a plurality of the grooves (7053), elastic rods (7054) and hemispheres (7055) are provided, and the grooves (7053) are opened inside the disc (704).

6. The raw material mixing device for processing ceramic fillers according to claim 4, characterized in that: The crushing assembly (705) further comprises a central column (7056), the exterior of the central column (7056) being fixedly connected to an outer ring (7057), a blade (7058) being mounted on the exterior of the outer ring (7057), and the central column (7056) being mounted inside the disc (704).

7. The raw material mixing device for processing ceramic fillers according to claim 1, characterized in that: The mixing mechanism (8) comprises a cross plate (801), the top of the cross plate (801) is fixedly connected to a support member (802), the top of the support member (802) is fixedly connected to a fixing rod (803), a plurality of fixing rods (803) are provided, and the cross plate (801) is fixedly connected to the bottom of the third telescopic rod (706).

8. The raw material mixing device for processing ceramic fillers according to claim 7, characterized in that: The mixing mechanism (8) further comprises connecting rods (804), four of which are provided, the outsides of the four connecting rods (804) being fixedly connected to a first mixing rod (805) and a second mixing rod (806), and the connecting rods (804) being fixedly connected to the bottom of the cross plate (801).

9. The raw material mixing device for processing ceramic fillers according to claim 8, characterized in that: The mixing mechanism (8) further comprises a contact plate (807), the bottom of the contact plate (807) being fixedly connected to a scraper (808), the outside of the scraper (808) being fixedly connected to a branch rod (809), the branch rods (809) being provided in multiple and evenly arranged numbers, and the contact plate (807) being fixedly connected to the bottom of the connecting rod (804).

10. The raw material mixing device for processing ceramic fillers according to claim 1, characterized in that: There are two supporting plates (901) and they are symmetrically arranged. The bottoms of the two supporting plates (901) are fixedly connected to a second push rod (906), and the bottoms of the second push rod (906) are fixedly connected to an annular plate (907).