Grouting machine for ceramic product production

The automatic grouting of the grouting machine used in ceramic product manufacturing is achieved by using a variable speed gearbox to drive the motor and meshing gear set, which solves the problem of cumbersome manual operation and improves operating efficiency.

CN223849575UActive Publication Date: 2026-01-30YANGQUAN YUXIANG SAND MANUFACTURING CO LTD
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Patent Information

Application Number
CN202520440729.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-01-30
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Existing grouting machines used in ceramic product manufacturing require manual operation to remove the grouting container from the equipment, which is cumbersome and increases the user's handling burden.

Method used

The variable speed gearbox drives the motor to output power, which in turn drives the first and second meshing gear sets to rotate, thereby rotating the rotating disk and the grooved circular plate. This allows the container to intermittently move to the grouting position and automatically inject materials through the grouting mechanism.

Benefits of technology

It reduces the user's handling burden, improves operational efficiency, and simplifies the pouring process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223849575U_ABST
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Abstract

The utility model provides a grouting machine for ceramic product production, which relates to the technical field of ceramic product production, and comprises a positioning support assembly and a mixing assembly, the inner side of one end of the positioning support assembly is provided with a rotating mechanism sleeved by a bolt, and the rotating mechanism is provided with a bearing container mounted in an inserted manner; the mixing assembly assembled through bolts is arranged at the top end of the positioning and supporting assembly, the grouting mechanism connected in a sleeving mode is arranged at the output end of the mixing assembly, the mixing assembly comprises a sleeve frame, a lower sleeve plate, a middle sleeve rod, an upper sleeve plate, an end pair pad and a mixing container, and the sleeve frame is arranged at the top end of the positioning and supporting assembly. According to the utility model, after the output operation of the driving motor on the variable-speed case, the first meshing gear set and the second meshing gear set are in meshing transmission operation, the groove-shaped circular plate at the top end of the rotating disc is rotated, and then the bearing container is intermittently operated to a filling part, so that the carrying burden of a user is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ceramic production technical field, especially ceramic production with grouting machine. BACKGROUND

[0002] Slip casting is a method that makes powder material uniformly suspended in solution by selecting appropriate debonding agent (deflocculant), and then pours into the model (generally gypsum model) with water absorption to form green body.

[0003] The existing grouting machine in use, such as application number CN202121020611.4 discloses a kind of ceramic production grouting mechanism, including base, the upper of base is provided with operation table and raw material box, and base both sides are all fixedly connected with grout storage tank, the both sides of raw material box are all provided with multiple grouting heads, the both ends of operation table are all fixedly connected with connecting plate, the both ends of two connecting plates are all provided with driving shaft, and the side of two driving shafts away from operation table is all provided with multiple groups of arc fixed plate, multiple groups of arc fixed plate and driving shaft are all provided with adjusting structure;However, the above-mentioned technology needs to be moved out of equipment by manual operation continuously, it is more cumbersome, therefore, the utility model provides a kind of ceramic production grouting machine to solve the problems existing in prior art. SUMMARY

[0004] For the above problems, the utility model provides a kind of ceramic production grouting machine, the ceramic production grouting machine mainly utilizes the driving motor output operation on the gearbox to make the first meshing gear set, second meshing gear set meshing transmission operation to make the slot round plate of rotary disc top end rotate to run to let the intermittent operation of bearing container to filling site, to reduce the burden of user for carrying.

[0005] To achieve the purpose of the utility model, the utility model realizes the following technical scheme: a kind of ceramic production grouting machine, including positioning support component and mixing component, the one end inner side of positioning support component is provided with the rotating mechanism of bolt sleeve joint, and the rotating mechanism is provided with the bearing container of plug-in installation, the top of positioning support component is provided with the mixing component of bolt assembly, and the output end of mixing component is provided with the grouting mechanism of sleeve joint connection;

[0006] The mixing assembly comprises a sleeve frame, a lower sleeve plate, a middle sleeve rod, an upper sleeve plate, end-to-end pads and a mixing container, the sleeve frame is arranged at the top end of the positioning support assembly, a lower sleeve plate is arranged above the sleeve frame, middle sleeve rods are arranged above both ends of the lower sleeve plate, an upper sleeve plate is arranged at the top end of the middle sleeve rods, and mixing containers are bolted to the upper sleeve plate through the end-to-end pads.

[0007] As a preferred embodiment of the present application, the middle sleeve rods and the end-to-end pads are symmetrically distributed about the central axis of the upper sleeve plate.

[0008] As a preferred embodiment of the present application, the positioning support assembly comprises a cushion block, a base frame, a table plate and a slotted base block, the base frame is arranged above the cushion block, the table plate is arranged at the top end of the base frame, and the slotted base block is bolted to one end of the table plate.

[0009] As a preferred embodiment of the present application, the rotating mechanism comprises a gear box, a driving motor, a first meshing gear set, a second meshing gear set, a rotating disc and a slotted round plate, the gear box is arranged at one end of the table plate, the first meshing gear set is arranged inside the gear box and connected to the output end of the driving motor, the output end of the first meshing gear set is provided with the second meshing gear set, the output end of the second meshing gear set is provided with the rotating disc, and the top end of the rotating disc is provided with the slotted round plate.

[0010] As a preferred embodiment of the present application, the grouting mechanism comprises a pressure pipe, a driving cylinder, a push rod, a piston, a connecting pipe, a distribution pipe, an output nozzle, an inner valve ring, a valve plug and a spring set frame, the pressure pipe is connected to the output end of the mixing container in a sleeved manner, one end of the pressure pipe is provided with the driving cylinder, the output end of the driving cylinder is provided with the push rod, the output end of the push rod is provided with the piston, the output end of the pressure pipe is provided with the connecting pipe, and the output end of the connecting pipe is provided with the distribution pipe.

[0011] As a preferred embodiment of the present application, the output end of the distribution pipe is provided with the output nozzle, the inner edge side of the output nozzle is provided with the inner valve ring, the lower side of the inner valve ring is provided with the valve plug, and the lower side of the valve plug is provided with the spring set frame.

[0012] The present application has the following beneficial effects:

[0013] The present application mainly utilizes the driving motor on the gear box to drive the first meshing gear set and the second meshing gear set to run in meshing transmission, so that the slotted round plate at the top end of the rotating disc rotates to run, and the carrying container intermittently runs to the pouring position, thereby reducing the burden of the user on carrying. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the perspective structure schematic view of the utility model;

[0015] Figure 2 It is the perspective structure schematic view of the utility model from the top;

[0016] Figure 3 It is the rotating mechanism structure schematic view of the utility model;

[0017] Figure 4 It is the grouting mechanism structure schematic view of the utility model.

[0018] Among them: 1, positioning support assembly;101, cushion block;102, base frame;103, table plate;104, groove base block;2, rotating mechanism;201, variable speed machine box;202, drive motor;203, first meshing gear set;204, second meshing gear set;205, rotating disc;206, groove round plate;3, bearing container;4, mixing assembly;401, sleeve frame;402, lower sleeve plate;403, middle sleeve rod;404, upper sleeve plate;405, end-to-pad;406, mixing container;5, grouting mechanism;501, pressure pipe;502, drive cylinder;503, push rod;504, piston;505, connecting pipe;506, liquid distribution pipe;507, output nozzle;508, inner valve ring;509, valve plug;5010, spring group frame. DETAILED DESCRIPTION

[0019] In order to deepen the understanding of the utility model, the utility model will be further described in the following embodiment, and the embodiment is only used to explain the utility model, and does not constitute the limitation of the protection scope of the utility model.

[0020] According to Figures 1-4 As shown in the utility model discloses a kind of grouting machine for ceramic product production, including positioning support assembly 1 and mixing assembly 4, one end inside of positioning support assembly 1 is provided with bolt sleeve connection rotating mechanism 2, and rotating mechanism 2 is provided with bearing container 3 of insertion installation, the top of positioning support assembly 1 is provided with bolt assembly mixing assembly 4, and the output end of mixing assembly 4 is provided with grouting mechanism 5 of sleeve connection;

[0021] Mixing assembly 4 includes sleeve frame 401, lower sleeve plate 402, middle sleeve rod 403, upper sleeve plate 404, end-to-pad 405 and mixing container 406, sleeve frame 401 is arranged at the top of positioning support assembly 1, the upper of sleeve frame 401 is provided with lower sleeve plate 402, and the upper of the two ends of lower sleeve plate 402 is provided with middle sleeve rod 403, the top of middle sleeve rod 403 is provided with upper sleeve plate 404, and the upper of the two ends of upper sleeve plate 404 is bolted with mixing container 406 through end-to-pad 405.

[0022] The middle sleeve rod 403 is symmetrically distributed with the middle axis of the upper sleeve plate 404 and the end-to-end pad 405.

[0023] In this embodiment, the cooperation of the jacket 401, the lower sleeve plate 402, the middle sleeve rod 403, the upper sleeve plate 404, and the end-to-end pad 405 is used to support the mixing container 406, and then the mixing container 406 is used to mix and shape the material.

[0024] The positioning support assembly 1 comprises a pad 101, a base frame 102, a table plate 103, and a slot-shaped base block 104. The base frame 102 is arranged above the pad 101, and the table plate 103 is arranged at the top end of the base frame 102. The slot-shaped base block 104 is arranged above one end of the table plate 103 by bolt connection.

[0025] In this embodiment, when in use, the table plate 103 is arranged by the base frame 102 at the top side of the pad 101. After arrangement, the two ends of the table plate 103 are cooperated with the slot-shaped base block 104 above to effectively splice and arrange each component.

[0026] The rotating mechanism 2 comprises a gear box 201, a driving motor 202, a first meshing gear set 203, a second meshing gear set 204, a rotating disc 205, and a slot-shaped circular plate 206. The gear box 201 is arranged at one end of the table plate 103. The first meshing gear set 203 is arranged inside the gear box 201 and connected to the output end of the driving motor 202. The output end of the first meshing gear set 203 is provided with the second meshing gear set 204. The output end of the second meshing gear set 204 is provided with the rotating disc 205. The top end of the rotating disc 205 is provided with the slot-shaped circular plate 206.

[0027] In this embodiment, when processing is needed, the driving motor 202 at one side of the gear box 201 outputs power to drive the output end to run. After the driving motor 202 outputs power to run, the first meshing gear set 203 outputs meshing to run, and the second meshing gear set 204 outputs to run, which can make the rotating disc 205 run to the appropriate angle to drive the slot-shaped circular plate 206 to run, so that the bearing container 3 is aligned with the grouting mechanism 5.

[0028] The grouting mechanism 5 comprises a pressure pipe 501, a driving cylinder 502, a push rod 503, a piston 504, a connecting pipe 505, a distribution pipe 506, an output nozzle 507, an inner valve ring 508, a valve plug 509, and a spring group frame 5010. The pressure pipe 501 is connected to the output end of the mixing container 406 by sleeving. One end of the pressure pipe 501 is provided with the driving cylinder 502. The output end of the driving cylinder 502 is provided with the push rod 503. The output end of the push rod 503 is provided with the piston 504. The output end of the pressure pipe 501 is provided with the connecting pipe 505. The output end of the connecting pipe 505 is provided with the distribution pipe 506.

[0029] When the pouring is needed in the embodiment, the driving cylinder 502 at one end of the pressure pipe 501 outputs power to drive the output end to operate, so that the push rod 503 is elongated, and the piston 504 pushes the water in the pressure pipe 501 into the distribution pipe 506 connected by the connecting pipe 505.

[0030] The output end of the distribution pipe 506 is provided with an output nozzle 507, and the inner side of the output nozzle 507 is provided with an inner valve ring 508. The lower side of the inner valve ring 508 is provided with a valve plug 509, and the lower side of the valve plug 509 is provided with a spring group frame 5010.

[0031] In the embodiment, under the action of pressure, the spring group frame 5010 cooperates with the valve plug 509 to descend, so that the inner valve ring 508 is separated, and the output nozzle 507 pours sufficient material, thereby realizing the pouring effect.

[0032] The working principle of the slip casting machine for ceramic product production is as follows: when in use, the base frame 102 on the top side of the cushion block 101 is used to set the table plate 103, and after setting, the two ends of the table plate 103 are matched with the groove-shaped base block 104 to effectively splice and set each component. When processing is needed, the driving motor 202 on one side of the speed changer box 201 outputs power to drive the output end to operate, so that the driving motor 202 outputs power to operate, the first meshing gear set 203 outputs meshing operation, the second meshing gear set 204 outputs operation, and the rotation disc 205 is driven to operate to the appropriate angle, so that the bearing container 3 is aligned with the slip casting mechanism 5. Before use, the sleeve frame 401, the lower sleeve plate 402, the middle sleeve rod 403, the upper sleeve plate 404, and the end-to-end pad 405 are matched with each other to support the mixing container 406, so that the mixing container 406 mixes and shapes the material. When pouring is needed, the driving cylinder 502 at one end of the pressure pipe 501 outputs power to drive the output end to operate, so that the push rod 503 is elongated, and the piston 504 pushes the water in the pressure pipe 501 into the distribution pipe 506 connected by the connecting pipe 505. Under the action of pressure, the spring group frame 5010 cooperates with the valve plug 509 to descend, so that the inner valve ring 508 is separated, and the output nozzle 507 pours sufficient material, thereby realizing the pouring effect.

[0033] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A slip casting machine for the production of ceramic articles, comprising a positioning support assembly (1) and a mixing assembly (4), characterized in that: One end of the positioning support assembly (1) is provided with a bolted rotating mechanism (2), and a bearing container (3) is installed on the rotating mechanism (2); the top end of the positioning support assembly (1) is provided with a bolted mixing assembly (4), and the output end of the mixing assembly (4) is provided with a grouting mechanism (5) connected in a sleeved manner; The mixing assembly (4) comprises a sleeve frame (401), a lower sleeve plate (402), a middle sleeve rod (403), an upper sleeve plate (404), an end-to-end pad (405), and a mixing container (406); the sleeve frame (401) is arranged at the top end of the positioning support assembly (1); the upper end of the sleeve frame (401) is provided with the lower sleeve plate (402); the upper ends of the two ends of the lower sleeve plate (402) are provided with the middle sleeve rod (403); the top end of the middle sleeve rod (403) is provided with the upper sleeve plate (404); the upper ends of the two ends of the upper sleeve plate (404) are bolted with the mixing container (406) through the end-to-end pad (405).

2. The slip casting machine for producing a ceramic article according to claim 1, characterized in that: The middle sleeve rod (403) and the end-to-end pad (405) are symmetrically distributed about the middle axis of the upper sleeve plate (404).

3. The slip casting machine for producing a ceramic article according to claim 1, characterized in that: The positioning support assembly (1) comprises a pad block (101), a base frame (102), a table plate (103), and a groove base block (104); the upper end of the pad block (101) is provided with the base frame (102); the top end of the base frame (102) is provided with the table plate (103); one end of the table plate (103) is provided with the groove base block (104) bolted thereon.

4. A slip casting machine for producing a ceramic article according to claim 3, characterized in that: The rotating mechanism (2) comprises a gear box (201), a driving motor (202), a first meshing gear set (203), a second meshing gear set (204), a rotating disc (205), and a grooved disc (206); the gear box (201) is arranged at one end of the table plate (103); the inside of the gear box (201) is provided with the first meshing gear set (203) connected to the output end of the driving motor (202); the output end of the first meshing gear set (203) is provided with the second meshing gear set (204); the output end of the second meshing gear set (204) is provided with the rotating disc (205); and the top end of the rotating disc (205) is provided with the grooved disc (206).

5. The slip casting machine for producing a ceramic article according to claim 1, characterized in that: The grouting mechanism (5) comprises a pressure pipe (501), a driving cylinder (502), a push rod (503), a piston (504), a connecting pipe (505), a distribution pipe (506), an output nozzle (507), an inner valve ring (508), a valve plug (509) and a spring group frame (5010), the pressure pipe (501) is connected to the output end of the mixing container (406) in a sleeved manner, one end of the pressure pipe (501) is provided with the driving cylinder (502), the output end of the driving cylinder (502) is provided with the push rod (503), the output end of the push rod (503) is provided with the piston (504), the output end of the pressure pipe (501) is provided with the connecting pipe (505), and the output end of the connecting pipe (505) is provided with the distribution pipe (506).

6. A slip casting machine for producing a ceramic article according to claim 5, characterized in that: The output end of the distribution pipe (506) is provided with the output nozzle (507), the inner side of the output nozzle (507) is provided with the inner valve ring (508), the lower side of the inner valve ring (508) is provided with the valve plug (509), and the lower side of the valve plug (509) is provided with the spring group frame (5010).

Citation Information

Patent Citations

  • Grouting mechanism for ceramic product production

    CN215282445U