Quantitative stirring mechanism for ceramic glaze

By designing a quantitative adjustment component and a linkage between the stirring fan blades, the problem of inconsistent water supply during glaze mixing was solved, achieving uniform mixing and improved quality of the glaze.

CN223683380UActive Publication Date: 2025-12-19FOSHAN DAJING CERAMIC TECH CO LTD
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Patent Information

Application Number
CN202423073439.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-12-19
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing glaze mixing devices suffer from inconsistent water supply, affecting the mixing effect and quality of the glaze.

Method used

A ceramic glaze stirring mechanism was designed, comprising a stirring component, a quantitative adjustment component, and an adjustment drive component. The quantitative adjustment component controls the amount of water entering the glaze, and combined with the rotation of the stirring fan blades, quantitative stirring of the glaze is achieved.

Benefits of technology

This method enables the precise addition of water during the glaze mixing process, avoiding the impact of excessive or insufficient water on the mixing effect and improving the uniformity and quality of the glaze mixture.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quantitative stirring mechanism for ceramic glaze, and relates to the related technical field of glaze stirring. The device comprises a stirring assembly, the stirring assembly comprises a stirring barrel, a quantitative adjusting assembly is fixedly installed on the upper surface of the stirring barrel, the quantitative adjusting assembly comprises a feeding pipeline and a material storage tank, the feeding pipeline is communicated with the material storage tank through a communicating pipe, and an opening and closing adjusting block is arranged in the feeding pipeline in a sliding mode; the upper surface of the opening and closing adjusting block is fixedly connected with a quantitative adjusting pipe, and a communication opening is formed in the peripheral side face of the quantitative adjusting pipe. According to the utility model, the opening and closing of the communicating port are controlled through the up-down movement of the opening and closing adjusting block, so that a water source is controlled to enter the material storage tank, the quantitative water source in the material storage tank intermittently enters the stirring barrel, the intermittent feeding of the quantitative water source in the stirring process is realized, and the stirring efficiency is improved in the auxiliary glaze stirring process. The situation that the glaze stirring effect is affected due to too much or too little water source content in the stirring process is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to glaze stirring related technical field, especially, relate to a kind of quantitative stirring mechanism of ceramic glaze. BACKGROUND

[0002] The main purpose of glaze stirring is to mix various components in glaze evenly, to avoid stratification, precipitation and other phenomena, so as to ensure the performance and stability of glaze. Through stirring, pigments and other additives in glaze can be better dispersed in glaze, improving the coloring effect and overall quality of glaze. During the stirring process, the paddle pushes the bottom material to the upper part, forming a circulating flow, so that various components of glaze are fully mixed.

[0003] Common glaze stirring device uses glaze stirring cylinder and stirring equipment for uniform mixing. However, in actual use, different glazes require different water content during stirring, and a quantitative water source needs to be provided. When the water source is too much or too little, it can affect the processing effect of glaze stirring, and further affect the use effect of glaze. Therefore, we provide a quantitative stirring mechanism of ceramic glaze to solve the above technical problems. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a quantitative stirring mechanism of ceramic glaze, which solves the problems in the above background technology through specific structural design of stirring assembly, quantitative adjusting assembly and adjusting driving assembly.

[0005] To solve the above technical problems, the utility model is realized by the following technical scheme:

[0006] The utility model is a quantitative stirring mechanism of ceramic glaze, which includes a stirring assembly. The stirring assembly includes a stirring cylinder. A quantitative adjusting assembly is fixedly installed on the upper surface of the stirring cylinder. The quantitative adjusting assembly includes a feed pipe and a storage tank fixedly connected to the upper surface of the stirring cylinder. The feed pipe and the storage tank are connected through a communication pipe. The feed pipe is connected to the inside of the stirring cylinder. An opening and closing adjusting block is slidably arranged in the feed pipe. A quantitative adjusting pipe is fixedly connected to the upper surface of the opening and closing adjusting block. A communication port is formed in the side surface of the quantitative adjusting pipe. An adjusting driving assembly is fixedly installed on the upper surface of the stirring cylinder. The adjusting driving assembly includes a driving support frame. A driving bevel gear is rotatably connected to the lower surface of the driving support frame.

[0007] The utility model is further provided with a feed inlet formed in the upper surface of the stirring cylinder. A rotating shaft is rotatably arranged in the inside of the stirring cylinder. A plurality of stirring vanes are fixedly connected to the rotating shaft through a plurality of mounting seats.

[0008] The utility model further sets up, the quantitative adjusting assembly still includes the feeding cylinder body fixed connection through the support stand, the feeding cylinder body with the feeding pipeline between intercommunication, the open and close adjusting piece upper surface fixedly connected with transmission vertical plate, transmission vertical plate one side fixedly connected with adjusting transmission column, the stirring cylinder body upper surface fixedly connected with the support vertical plate, the support vertical plate one side rotatably connected with the lift adjusting disc, the lift adjusting disc one side is equipped with the adjusting sliding groove, the adjusting transmission column and adjusting sliding groove between sliding fit.

[0009] The utility model further sets up, the support vertical plate other side rotatable transmission bevel gear, transmission bevel gear and lift adjusting disc eccentric position fixed connection, the stirring cylinder body upper surface fixedly connected with L type support frame, L type support frame upper surface fixedly installed electric push rod, electric push rod output shaft passes through the one end of L type support frame and is connected with the feeding adjusting piece, the feeding adjusting piece and the storage tank between sliding fit.

[0010] The utility model further sets up, the drive support frame upper surface rotatable connection has the drive gear, drive support frame lower surface fixedly installed drive motor, drive motor and drive gear fixed connection, drive support frame upper surface rotatable connection has with the mutual meshing of drive gear adjusting gear, drive support frame lower surface rotatable be equipped with with drive shaft fixed connection's drive transmission column, drive transmission column and adjusting gear fixed connection, drive support frame upper surface rotatable connection has with adjusting gear meshing transmission gear, transmission gear and drive bevel gear fixed connection, and drive bevel gear and transmission bevel gear between mutual meshing.

[0011] The utility model has following beneficial effect:

[0012] 1, the utility model discloses a quantitative adjusting assembly is set up, utilizes the lift adjusting disc rotation, under the connection of transmission vertical plate, drives open and close adjusting piece to move up and down, and then controls the opening and closing of the intercommunication, controls the water source to enter the storage tank inside, utilizes the up and down movement of feeding adjusting piece, controls the water source in storage tank to enter the stirring cylinder body inside, to realize the quantitative input of moisture in the stirring process in this way, auxiliary glaze stirring process, avoid the influence of too much or too little moisture on the stirring effect.

[0013] 2, the utility model discloses a quantitative adjusting assembly and adjusting drive assembly drive gear rotation when, under the meshing effect of drive gear and adjusting gear, drive transmission column rotates and drives the rotation of drive shaft, so that the stirring fan blade rotates and stirs, simultaneously under the meshing effect of transmission gear and adjusting gear, make transmission gear drive drive bevel gear rotation, and then drive transmission bevel gear rotation, to realize the synchronous up and down movement of adjusting transmission column in the stirring process, realize the linkage of stirring and quantitative feeding.

[0014] Of course, implementing any product of the present application does not necessarily need to achieve all the advantages described above at the same time. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings described in the following only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0016] Figure 1 It is a structure schematic view of a kind of ceramic glaze quantitative stirring mechanism.

[0017] Figure 2 It is a structure schematic view of the stirring assembly in the present application.

[0018] Figure 3 It is a structure schematic view of the quantitative adjusting assembly in the present application.

[0019] Figure 4 It is Figure 3 It is a local enlarged schematic view of A in the present application.

[0020] Figure 5 It is a longitudinal structure schematic view of the quantitative adjusting assembly in the present application.

[0021] Figure 6 It is a structure schematic view of the adjusting drive assembly in the present application.

[0022] Figure 7 It is a schematic view of the quantitative adjusting assembly and adjusting drive assembly in the present application.

[0023] In the drawings, the component list represented by each sign is as follows:

[0024] 1-stirring assembly, 101-stirring barrel, 102-stirring fan blade, 2-quantitative adjusting assembly, 201-feeding pipeline, 202-accumulation tank, 203-opening and closing adjusting block, 204-quantitative adjusting pipe, 205-feeding barrel, 206-transmission vertical plate, 207-adjusting transmission column, 208-lifting adjusting disc, 209-transmission conical gear, 210-electric push rod, 211-feeding adjusting block, 3-adjusting drive assembly, 301-driving support frame, 302-driving conical gear, 303-driving gear, 304-adjusting gear, 305-driving transmission column, 306-transmission gear. DETAILED DESCRIPTION

[0025] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application. Specific embodiment one

[0027] Please refer to Figures 1-7 The utility model discloses a kind of quantitative mixing mechanisms of ceramic glaze, including stirring assembly 1, specifically, stirring assembly 1 includes stirring cylinder body 101, quantitative adjusting assembly 2 is fixedly installed on the upper surface of stirring cylinder body 101, quantitative adjusting assembly 2 includes fixedly connected in the upper surface of stirring cylinder body 101 feed pipe 201 and storage tank 202, feed pipe 201 is communicated with storage tank 202 by communicating pipe, feed pipe 201 is communicated with the inside of stirring cylinder body 101, opening and closing adjusting block 203 is slidably arranged in the inside of feed pipe 201, quantitative adjusting pipe 204 is fixedly connected on the upper surface of opening and closing adjusting block 203, and communicating port is formed on the side of quantitative adjusting pipe 204.

[0028] Further, adjusting drive assembly 3 is fixedly installed on the upper surface of stirring cylinder body 101, and adjusting drive assembly 3 includes drive support frame 301, and drive support frame 301 is rotatably connected with drive bevel gear 302 on the lower surface.

[0029] The operation process of the embodiment is: the raw materials required for glaze stirring are placed in stirring cylinder body 101 for stirring operation, during the stirring process, opening and closing adjusting block 203 reciprocates up and down in the inside of feed pipe 201, when opening and closing adjusting block 203 slides downward, quantitative adjusting pipe 204 moves downward synchronously with opening and closing adjusting block 203, when communicating port is coincided with communicating pipe, water source in the inside of quantitative adjusting assembly 2 enters the inside of storage tank 202 through communicating port by communicating pipe, opening and closing adjusting block 203 slides upward, when opening and closing adjusting block 203 is coincided with communicating port, water source stops entering storage tank 202, and opening and closing adjusting block 203 continues to move upward, when opening and closing adjusting block 203 is located above communicating port, communicating port is opened, and the water source in the inside of storage tank 202 enters the inside of stirring cylinder body 101 through feed pipe 201, during the stirring process in stirring cylinder body 101, water source is continuously increased, to promote the stirring of glaze raw materials. Specific embodiment two

[0031] Please refer to Figures 1-7 On the basis of specific embodiment one, specifically, feed inlet is formed on the upper surface of stirring cylinder body 101, rotating shaft is rotatably arranged in the inside of stirring cylinder body 101, and stirring fan blade 102 is fixedly connected on the middle side of rotating shaft by a plurality of mounting seats.

[0032] Further, the quantitative adjustment assembly 2 further comprises a feeding cylinder 205 fixedly connected through a support column, a water source for stirring is stored in the feeding cylinder 205, the feeding cylinder 205 is in communication with the feeding pipeline 201, a transmission vertical plate 206 is fixedly connected to the upper surface of the opening and closing adjustment block 203, and an adjustment transmission column 207 is fixedly connected to one side surface of the transmission vertical plate 206; a support vertical plate is fixedly connected to the upper surface of the stirring cylinder 101, a lifting adjustment disc 208 is rotatably connected to one side surface of the support vertical plate, an adjustment sliding groove is formed in one side surface of the lifting adjustment disc 208, and the adjustment transmission column 207 and the adjustment sliding groove are in sliding fit.

[0033] Further, a transmission bevel gear 209 is rotatably arranged on the other side surface of the support vertical plate, and the transmission bevel gear 209 is fixedly connected between the eccentric position of the lifting adjustment disc 208; an L-shaped support frame is fixedly connected to the upper surface of the stirring cylinder 101, an electric push rod 210 is fixedly installed on the upper surface of the L-shaped support frame, a feeding adjustment block 211 is fixedly connected to one end of the output shaft of the electric push rod 210 penetrating through the L-shaped support frame, and the feeding adjustment block 211 is in sliding fit with the storage tank 202.

[0034] Further, a drive gear 303 is rotatably connected to the upper surface of the drive support frame 301, a drive motor is fixedly installed on the lower surface of the drive support frame 301, the drive motor is fixedly connected with the drive gear 303, an adjustment gear 304 is rotatably connected to the upper surface of the drive support frame 301 and is in mesh with the drive gear 303; a drive transmission column 305 is rotatably arranged on the lower surface of the drive support frame 301 and is fixedly connected with the drive shaft, the drive transmission column 305 is fixedly connected with the adjustment gear 304, a transmission gear 306 is rotatably connected to the upper surface of the drive support frame 301 and is in mesh with the adjustment gear 304, the transmission gear 306 is fixedly connected with the drive bevel gear 302, and the drive bevel gear 302 is in mesh with the transmission bevel gear 209.

[0035] The operation process of the embodiment is as follows: the raw materials for glaze stirring are put into the inside of the stirring cylinder 101 through the feeding port, the drive motor is started to drive the drive gear 303 to rotate, under the meshing effect of the drive gear 303 and the adjustment gear 304, the adjustment gear 304 is rotated to drive the drive transmission column 305 to rotate, the drive shaft is synchronously rotated with the drive transmission column 305, and then the stirring fan blade 102 is rotated to perform the stirring operation on the glaze raw materials in the inside of the stirring cylinder 101.

[0036] During the rotation of the stirring blade 102, the adjusting gear 304 and the transmission gear 306 are engaged, so that the transmission gear 306 rotates and drives the driving bevel gear 302 to rotate, and the driving bevel gear 302 and the transmission bevel gear 209 are engaged, so that the transmission bevel gear 209 drives the lifting adjusting disc 208 to rotate, and during the rotation of the lifting adjusting disc 208, the lifting adjusting disc 208 and the transmission bevel gear 209 are eccentrically connected, and the adjusting transmission column 207 and the adjusting sliding groove are engaged, so that the adjusting transmission column 207 moves up and down, and the adjusting transmission column 203 is driven by the transmission vertical plate 206 to move up and down.

[0037] During the downward movement of the opening and closing adjusting block 203, the quantitative adjusting pipe 204 moves downward synchronously with the opening and closing adjusting block 203, and when the communication port and the communication pipe gradually coincide, the water source in the feeding cylinder 205 is introduced into the storage tank 202 through the communication pipe under the action of gravity, and in this process, the electric push rod 210 drives the feeding adjusting block 211 to gradually move upward; the opening and closing adjusting block 203 slides upward, and when the opening and closing adjusting block 203 coincides with the communication port, the communication port remains closed, and the water source stops entering the storage tank 202, and the opening and closing adjusting block 203 continues to move upward, and when the opening and closing adjusting block 203 is located above the communication port, the communication port is opened, and the electric push rod 210 drives the feeding adjusting block 211 to move downward, so that the water source in the storage tank 202 enters the stirring cylinder 101 through the feeding pipe 201, so that the water source is continuously added during the stirring process of the stirring cylinder 101, and with the sliding of the feeding pipe 201 along the inner wall of the storage tank 202, the quantitative water source (i.e. the water source pushed by the feeding pipe 201 from the top of the storage tank 202 to the bottom of the storage tank 202) enters the stirring cylinder 101, and the glaze raw materials are fully stirred.

[0038] In the description of the present specification, the description of the terms "one embodiment", "example", "specific example" and the like means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are contained in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0039] The preferred embodiments disclosed above are only used to help describe the utility model. The preferred embodiments do not describe all the details and do not limit the utility model to the specific embodiments. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principle and practical application of the utility model, so that the person skilled in the art can well understand and utilize the utility model. The utility model is limited by the claims and the whole scope and equivalents thereof.

Claims

1. A kind of ceramic glaze ration stirring mechanism, comprising stirring assembly (1), it is characterized in that: The stirring assembly (1) includes stirring cylinder (101), the upper surface of stirring cylinder (101) is fixedly installed with ration adjusting assembly (2), the ration adjusting assembly (2) includes feed pipe (201) and storage tank (202) fixedly connected on the upper surface of stirring cylinder (101), the feed pipe (201) is communicated with storage tank (202) by communicating pipe, the feed pipe (201) is communicated with the inside of stirring cylinder (101), the inside of feed pipe (201) is slidably provided with opening and closing adjusting block (203), the upper surface of opening and closing adjusting block (203) is fixedly connected with ration adjusting pipe (204), the side surface of ration adjusting pipe (204) is provided with communication port; The upper surface of stirring cylinder (101) is fixedly installed with adjusting drive assembly (3), the adjusting drive assembly (3) includes drive support frame (301), the lower surface of drive support frame (301) is rotatably connected with drive bevel gear (302).

2. A mechanism for dosing and mixing ceramic glazes according to claim 1, characterized in that, The upper surface of stirring cylinder (101) is provided with feed inlet, the inside of stirring cylinder (101) is rotatably provided with rotating shaft, the middle side of rotating shaft is fixedly connected with stirring fan blade (102) by a plurality of mounting seats.

3. A mechanism for dosing and mixing ceramic glazes according to claim 2, characterized in that, The ration adjusting assembly (2) further includes feed cylinder (205) fixedly connected by support column, the feed cylinder (205) is communicated with feed pipe (201), the upper surface of opening and closing adjusting block (203) is fixedly connected with transmission vertical plate (206), the side of transmission vertical plate (206) is fixedly connected with adjusting transmission column (207).

4. A mechanism for dosing and mixing ceramic glazes according to claim 3, characterized in that, The upper surface of stirring cylinder (101) is fixedly connected with support vertical plate, the side of support vertical plate is rotatably connected with lifting adjusting disc (208), the side of lifting adjusting disc (208) is provided with adjusting sliding groove, the adjusting transmission column (207) and adjusting sliding groove are slidably matched.

5. A mechanism for dosing and mixing ceramic glazes according to claim 4, characterized in that, The other side of support vertical plate is rotatably provided with transmission bevel gear (209), the transmission bevel gear (209) is fixedly connected between the eccentric position of lifting adjusting disc (208).

6. A mechanism for dosing and mixing ceramic glazes according to claim 5, characterized in that, The upper surface of stirring cylinder (101) is fixedly connected with L-shaped support frame, the upper surface of L-shaped support frame is fixedly installed with electric push rod (210), the output shaft of electric push rod (210) is fixedly connected with feed adjusting block (211) penetrating one end of L-shaped support frame, the feed adjusting block (211) and storage tank (202) are slidably matched.

7. A mechanism for dosing and mixing ceramic glazes according to claim 6, characterized in that, The upper surface of drive support frame (301) is rotatably connected with drive gear (303), the lower surface of drive support frame (301) is fixedly installed with drive motor, the drive motor is fixedly connected with drive gear (303), the upper surface of drive support frame (301) is rotatably connected with adjusting gear (304) meshing with drive gear (303).

8. A mechanism for dosing and mixing ceramic glazes according to claim 7, characterized in that, The lower surface of the driving support frame (301) is rotatably provided with a driving transmission column (305) fixedly connected with a driving shaft, the driving transmission column (305) is fixedly connected with an adjusting gear (304), the upper surface of the driving support frame (301) is rotatably connected with a transmission gear (306) engaged with the adjusting gear (304), the transmission gear (306) is fixedly connected with a driving bevel gear (302), and the driving bevel gear (302) is engaged with a transmission bevel gear (209).