Colored drawing ceramic glazing mechanism

By incorporating anti-condensation, waste-prevention recycling, and automatic drying functions into the ceramic glazing mechanism, the problems of glaze condensation and waste are solved, thereby improving the efficiency and effectiveness of ceramic glazing.

CN224027958UActive Publication Date: 2026-03-24CHENGDU NEW SOUTHWEST CERAMIC ART CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing ceramic glazing equipment lacks anti-condensation function for glaze, resulting in glaze waste and low drying efficiency, which affects the glazing effect.

Method used

A glazing mechanism for painted ceramics was designed, comprising an anti-condensation mechanism, a waste recovery mechanism, and an automatic drying mechanism. These mechanisms, through stirring the glaze, recovering excess glaze, and automatically drying the glaze, respectively, prevent glaze condensation and waste, thereby improving drying efficiency.

Benefits of technology

It achieves effective stirring and recycling of glaze, avoids glaze solidification and waste, improves drying efficiency, and enhances the practicality of the glazing mechanism.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a colored drawing ceramic glazing mechanism, and belongs to the field of ceramic glazing. The colored drawing ceramic glazing mechanism comprises a mechanism box body, a glaze box is installed on the surface of one side of the mechanism box body, an anti-condensation mechanism is arranged in the glaze box, a recycling and waste preventing mechanism is arranged on the surface of the mechanism box body, and automatic drying mechanisms are arranged on the surface of the mechanism box body and in a shielding box. According to the glazing mechanism, redundant glaze can flow back into the glaze box when the glazing mechanism is used, the phenomenon that the glaze is wasted in the using process of the glazing mechanism is avoided, the glaze in the glaze box can be stirred when the glazing mechanism is used, the phenomenon that the glaze cannot be continuously used due to condensation is avoided, and the service life of the glazing mechanism is prolonged. And moreover, the glazing mechanism does not need to independently dry the glazed ceramic, the glazing effect on the surface of the ceramic is guaranteed, and the practicability is higher.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ceramic glazing technical field especially relates to a kind of colour drawing ceramic glazing mechanism. BACKGROUND

[0002] During the production of ceramic products, a layer of glaze is usually applied on the surface of the body. After high-temperature calcination, the glaze is firmly combined with the body. Glaze can increase the mechanical strength, thermal stability and dielectric strength of ceramic products, and has the characteristics of beautifying the object, being easy to clean, not being eroded by dust and dirt, etc. However, the existing glazing device for ceramic production has poor glazing flexibility, and it is not convenient to adjust the glazing position, which increases the difficulty of ceramic processing. Therefore, a colour drawing ceramic glazing mechanism is needed.

[0003] After searching, a kind of ceramic glazing mechanism is disclosed in Chinese patent No. 202221954690.0, which includes a glazing shell. The center of the inner bottom surface of the glazing shell is fixedly connected with a rotating shell. The center of the bottom surface of the rotating shell is fixedly provided with a motor. The output end of the motor is fixedly connected with a rotating disc. The center of the inner bottom surface of the rotating disc is fixedly provided with an air compressor. The ceramic glazing mechanism in the above-mentioned patent has the following disadvantages: the existing glazing mechanism usually does not have the function of preventing the glaze in the glaze tank from condensing when in use. This makes it impossible to stir the glaze in the glaze tank when the glazing mechanism is in use, which can easily lead to the phenomenon that the glaze cannot be used continuously due to condensation. In addition, the drying efficiency of the existing glazing mechanism is not high when in use, which cannot guarantee the glazing effect on the surface of the ceramic and reduces the practicability. UTILITY MODEL CONTENTS

[0004] The utility model aims at solving the problems in the prior art that excess glaze cannot be recycled, the glaze in the glaze tank usually does not have the function of preventing condensation, and the drying efficiency is not high. Therefore, a kind of colour drawing ceramic glazing mechanism is provided.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] A kind of colour drawing ceramic glazing mechanism, including mechanism box body, the surface of one side of the mechanism box body is installed with glaze tank, the inside of the glaze tank is equipped with cavity, the cavity is connected with the inside of glaze tank, the inside of the mechanism box body is provided with rotating disc, the inside of the mechanism box body is equipped with material collecting cavity, the inner wall of the mechanism box body is installed with sheltering box, the surface of the sheltering box is equipped with through slot, the inside of the glaze tank is provided with anti-condensation mechanism, the surface of the mechanism box body is provided with recycling and waste-preventing mechanism, the inside of the recycling and waste-preventing mechanism includes containing box, second pump body and recycling and waste-preventing group, the surface of the mechanism box body and the inside of the sheltering box are provided with automatic drying mechanism.

[0007] As a preferred technical solution of the present application, the surface of the top of the mechanism box is provided with a fixed box, the inside of the fixed box is provided with a first pump body, the inside of the mechanism box is provided with a storage tank, the output end of the first pump body penetrates the mechanism box and extends to the inside of the storage tank, the surface of the bottom of the storage tank is provided with a second electric nozzle, the inner wall of the mechanism box is provided with a first electric nozzle, the surface of the top of the glaze box is provided with a feeding cylinder, the feeding cylinder is communicated with the inside of the glaze box, the surface of the glaze box is provided with an observation window, the surface of the mechanism box is provided with a door body, the door body and the surface of the mechanism box are rotatably connected, the input end of the first pump body is provided with a material guide pipe, one end of the material guide pipe extends to the inside of the cavity, one end of the first electric nozzle penetrates the mechanism box and is communicated with the inside of the material guide pipe, the inside of the mechanism box is provided with a rotating motor, the rotating motor is located below the rotating disc, the output end of the rotating motor is provided with a rotating shaft through a shaft coupling, the top of the rotating motor is provided with a machine box, the surface of the bottom of the machine box is fixed with the surface of the rotating shaft, the inside of the machine box is provided with an air compressor, the surface of the top of the rotating disc is provided with a fixed column, the fixed column is connected between the air compressor, the surface of the fixed column is provided with an air bag, and the inner wall of the fixed column is provided with an air hole.

[0008] As a preferred technical solution of the present application, the inside of the anti-condensation mechanism contains a shaft, a stirring motor, a stirrer, a stirring rod and an elastic device, the surface of the top of the glaze box is provided with a stirring motor, the output end of the stirring motor is provided with a shaft through a shaft coupling, and the bottom end of the shaft extends to the inside of the glaze box and is rotatably connected with the inner wall of the glaze box.

[0009] As a preferred technical solution of the present application, the inside of the glaze box is provided with a stirrer, the stirrer and the inner wall of the glaze box are rotatably connected, the surface of the stirrer is fixed with the surface of the shaft, the surface of the stirrer is provided with equidistant stirring rods, the surface of the bottom of the stirring rod is provided with an elastic device, the inside of the glaze box is provided with a scraping plate, and the surface of the bottom of the elastic device is fixed with the surface of the scraping plate.

[0010] As a preferred technical solution of the present application, the recycling and waste prevention group is arranged on the surface of the mechanism box, the recycling and waste prevention group is composed of mounting studs, a material guide cover and a discharging groove, the surface of the mechanism box is provided with a containing box, the inside of the containing box is provided with a second pump body, the input end of the second pump body extends to the inside of the material collecting cavity, and the output end of the second pump body penetrates the mechanism box and extends to the inside of the cavity.

[0011] As a preferred technical scheme of the present application, the inside of the mechanism box is provided with a material guide cover, the material guide cover is located on both sides of the rotating motor, the surface of the material guide cover is threadedly connected with a mounting stud, one end of the mounting stud penetrates the material guide cover and is threadedly fastened with the inner wall of the mechanism box, the inner wall of the mechanism box is provided with a discharging groove, the discharging groove is in communication with the inside of the material guide cover, and the discharging groove is in communication with the inside of the material collecting cavity.

[0012] As a preferred technical scheme of the present application, the inside of the automatic drying mechanism comprises a drying hole plate, a second air blower, a first air blower, a heater, a temperature monitor and a heating box, the surface of the mechanism box is provided with the heating box, the inside of the heating box is provided with the temperature monitor, and the inner wall of the heating box on both sides is provided with the heater.

[0013] As a preferred technical scheme of the present application, the surface of the top of the heating box is provided with the first air blower, the output end of the first air blower extends to the inside of the heating box, the inside of the shielding box is provided with the second air blower, the input end of the second air blower penetrates the mechanism box and the heating box in sequence and extends to the inside of the heating box, and the output end of the second air blower is provided with the drying hole plate.

[0014] Compared with the prior art, the present application provides a kind of color drawing ceramic glazing mechanism, with the following beneficial effects:

[0015] 1. The glazing mechanism for color drawing ceramics, by setting up the recycling waste prevention mechanism, the excess glaze can be returned to the inside of the glaze tank, avoiding the phenomenon of glaze waste during the use of the glazing mechanism, solving the problem of not being able to recycle excess glaze in the prior art;

[0016] 2. The glazing mechanism for color drawing ceramics, by setting up the anti-condensation mechanism, the glaze in the glaze tank can be stirred, avoiding the phenomenon of not being able to continue to use due to glaze condensation, solving the problem of not having the function of preventing glaze condensation in the glaze tank in the prior art;

[0017] 3. The glazing mechanism for color drawing ceramics, by setting up the automatic drying mechanism, it is not necessary to dry the glazed ceramics separately, ensuring the glazing effect on the surface of the ceramics, and having the function of stronger practicality, solving the problem of low drying efficiency in the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a three-dimensional structure schematic diagram of the present application;

[0019] Figure 2 It is a front view cross-sectional structure schematic diagram of the present application;

[0020] Figure 3 It is the side view sectional enlarged structure schematic view of the utility model;

[0021] Figure 4 It is the side view sectional enlarged structure schematic view of the utility model; Figure 2 It is the anti-condensation mechanism's enlarged structure schematic view in the utility model;

[0022] Figure 5 It is the anti-condensation mechanism's enlarged structure schematic view in the utility model; Figure 2 It is the anti-waste mechanism's enlarged structure schematic view in the utility model;

[0023] Figure 6 It is the anti-waste mechanism's enlarged structure schematic view in the utility model; Figure 2 It is the automatic drying mechanism's enlarged structure schematic view in the utility model.

[0024] In the drawing,

[0025] 1, mechanism box;101, control button;102, glaze tank;103, feeding cylinder;104, door body;105, observation window;106, guide pipe;107, first electric nozzle;108, fixed box;109, first pump body;110, storage tank;111, second electric nozzle;112, air bag;113, air hole;114, fixed column;115, turntable;116, air compressor;117, material collecting cavity;118, rotating motor;119, case;120, cavity;121, shielding box;2, anti-condensation mechanism;21, shaft body;22, stirring motor;23, stirrer;24, stirring rod;25, springer;26, scraping plate;3, anti-waste mechanism;31, containing box;32, second pump body;33, anti-waste group;331, mounting stud;332, guide cover;333, discharging groove;4, automatic drying mechanism;41, drying hole plate;42, second air blower;43, first air blower;44, heater;45, temperature monitor;46, heating box. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model;Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments;Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model. EMBODIMENT

[0027] Refer to Figures 1-3The utility model provides a kind of painted ceramic glazing mechanism, including mechanism box body 1, the surface of mechanism box body 1 is equipped with control button 101, the model of control button 101 can be selected LA series, the surface of one side of mechanism box body 1 is equipped with glaze tank 102, the surface of top position of glaze tank 102 is equipped with feed cylinder 103, feed cylinder 103 is connected with the inside of glaze tank 102, the surface of glaze tank 102 is equipped with observation window 105, the surface of mechanism box body 1 is provided with door body 104, door body 104 and the surface of mechanism box body 1 each other rotate and cooperate, the inside of glaze tank 102 is equipped with cavity 120, cavity 120 is connected with the inside of glaze tank 102, the surface of top position of mechanism box body 1 is equipped with fixed box 108, the inside of fixed box 108 is equipped with first pump body 109, the model of first pump body 109 can be selected SLG series, the input of first pump body 109 is electrically connected with the output of control button 101, the input of first pump body 109 is equipped with guide pipe 106, one end of guide pipe 106 extends to the inside of cavity 120, the inside of mechanism box body 1 is equipped with storage tank 110, the output of first pump body 109 penetrates mechanism box body 1 and extends to the inside of storage tank 110, the surface of bottom position of storage tank 110 is equipped with second electric nozzle 111, the model of second electric nozzle 111 can be selected SK series, the inner wall of mechanism box body 1 is equipped with first electric nozzle 107, the model of first electric nozzle 107 can be selected SK series, one end of first electric nozzle 107 penetrates mechanism box body 1 and is connected with the inside of guide pipe 106, the input of first electric nozzle 107 and second electric nozzle 111 is electrically connected with the output of control button 101, the inside of mechanism box body 1 is provided with rotating disc 115, the inside of mechanism box body 1 is equipped with rotating motor 118, the model of rotating motor 118 can be selected JO series, rotating motor 118 is located below rotating disc 115, the input of rotating motor 118 is electrically connected with the output of control button 101, the output of rotating motor 118 is equipped with rotating shaft through coupling, the top of rotating motor 118 is provided with machine box 119, the surface of bottom position of machine box 119 is fixed with the surface of rotating shaft, the inside of machine box 119 is equipped with air compressor 116, the model of air compressor 116 can be selected YDM series, the input of air compressor 116 is electrically connected with the output of control button 101, the surface of top position of rotating disc 115 is equipped with fixed column 114, fixed column 114 is connected between air compressor 116, the surface of fixed column 114 is equipped with air bag 112, air hole 113 is formed in the inner wall of fixed column 114, the inside of mechanism box body 1 is equipped with collection cavity 117, the inner wall of mechanism box body 1 is equipped with shielding box 121, the surface of shielding box 121 is equipped with through slot.

[0028] Refer to Figure 2 And Figure 4Further, the inside of the glaze box 102 is provided with an anti-condensation mechanism 2, the inside of the anti-condensation mechanism 2 contains a shaft body 21, a stirring motor 22, a stirrer 23, a stirring rod 24 and an elastic device 25, the top of the glaze box 102 is provided with the stirring motor 22, the model of the stirring motor 22 can be selected as JO series, the input end of the stirring motor 22 is electrically connected with the output end of the control button 101, the output end of the stirring motor 22 is provided with the shaft body 21 through a shaft, the bottom end of the shaft body 21 extends into the inside of the glaze box 102 and is rotatably connected with the inner wall of the glaze box 102, the inside of the glaze box 102 is provided with the stirrer 23, the stirrer 23 is rotatably connected with the inner wall of the glaze box 102, the surface of the stirrer 23 is fixed with the surface of the shaft body 21, the surface of the stirrer 23 is provided with the stirring rod 24 at equal intervals, the bottom of the stirring rod 24 is provided with the elastic device 25, the inside of the glaze box 102 is provided with a scraping plate 26, the surface of the bottom of the elastic device 25 is fixed with the surface of the scraping plate 26. By setting the anti-condensation mechanism, the glaze in the inside of the glaze box 102 can be stirred, so that the phenomenon that the glaze cannot be continuously used due to condensation is avoided.

[0029] With reference to Figure 2 And Figure 5 Further, the surface of the mechanism box 1 is provided with a recycling waste prevention mechanism 3, the inside of the recycling waste prevention mechanism 3 contains a containing box 31, a second pump body 32 and a recycling waste prevention group 33, the recycling waste prevention group 33 is arranged on the surface of the mechanism box 1, the recycling waste prevention group 33 is composed of a mounting stud 331, a material guide cover 332 and a discharging groove 333, the surface of the mechanism box 1 is provided with the containing box 31, the inside of the containing box 31 is provided with the second pump body 32, the model of the second pump body 32 can be selected as SLG series, the input end of the second pump body 32 is electrically connected with the output end of the control button 101, the input end of the second pump body 32 extends into the inside of the material collecting cavity 117, the output end of the second pump body 32 penetrates through the mechanism box 1 and extends into the inside of the cavity 120, the inside of the mechanism box 1 is provided with the material guide cover 332, the material guide cover 332 is respectively arranged on the two sides of the rotating motor 118, the surface of the material guide cover 332 is threadedly connected with the mounting stud 331, one end of the mounting stud 331 penetrates through the material guide cover 332 and is threadedly fastened with the inner wall of the mechanism box 1, the inner wall of the mechanism box 1 is provided with the discharging groove 333, the discharging groove 333 is in communication with the inside of the material guide cover 332 and the inside of the material collecting cavity 117. By setting the recycling waste prevention mechanism, the excess glaze can be returned to the inside of the glaze box 102, so that the phenomenon that the glaze is wasted during the use of the glazing mechanism is avoided.

[0030] With reference to Figure 2 And Figure 6Further, the surface of the mechanism box 1 and the inside of the shielding box 121 are provided with an automatic drying mechanism 4, the inside of the automatic drying mechanism 4 contains a drying hole plate 41, a second air blower 42, a first air blower 43, a heater 44, a temperature monitor 45 and a heating box 46, the surface of the mechanism box 1 is provided with the heating box 46, the inside of the heating box 46 is provided with the temperature monitor 45, the model of the temperature monitor 45 can be selected from the SDN series, the input end of the temperature monitor 45 is electrically connected with the output end of the control button 101, the inner walls on both sides of the heating box 46 are provided with the heater 44, the model of the heater 44 can be selected from the SRY series, the input end of the heater 44 is electrically connected with the output end of the control button 101, the surface of the top position of the heating box 46 is provided with the first air blower 43, the model of the first air blower 43 can be selected from the VFC series, the input end of the first air blower 43 is electrically connected with the output end of the control button 101, the output end of the first air blower 43 extends to the inside of the heating box 46, the inside of the shielding box 121 is provided with the second air blower 42, the model of the second air blower 42 can be selected from the VFC series, the input end of the second air blower 42 is electrically connected with the output end of the control button 101, the input end of the second air blower 42 penetrates the mechanism box 1 and the heating box 46 in sequence and extends to the inside of the heating box 46, and the output end of the second air blower 42 is provided with the drying hole plate 41. By arranging the automatic drying mechanism, the glazing mechanism can dry the glazed ceramic without a separate drying process, ensure the glazing effect of the ceramic surface, and have higher practicability.

[0031] Specifically, when the glazing mechanism for colored drawing ceramic works, first, the mechanism box 1 is placed at a specified position, the user opens the door body 104, and places the ceramic to be glazed on the surface of the air bag 112. When the air compressor 116 in the mechanism box 119 works, the air bag 112 on the surface of the fixed column 114 is inflated through the air hole 113, so that the air bag 112 is filled with the inside of the ceramic, and the ceramic is fixed. The control button 101 controls the rotating motor 118 to work, and under the action of the rotating motor 118, the rotating disc 115 and the ceramic on the surface of the air bag 112 are rotated. Then, the glaze in the glaze box 102 enters the inside of the cavity 120, the control button 101 controls the first pump body 109 in the fixed box 108 to work, under the action of the first pump body 109, the glaze in the cavity 120 is sucked into the inside of the storage tank 110 through the material guide pipe 106, the control button 101 controls the first electric spray head 107 and the second electric spray head 111 to work, under the joint action of the first electric spray head 107 and the second electric spray head 111, the surface of the ceramic is glazed, the user can observe the amount of glaze in the glaze box 102 through the observation window 105, so as to avoid the phenomenon of insufficient glaze, and the user can supplement the glaze in the glaze box 102 through the feeding cylinder 103.

[0032] Subsequently, the material guide cover 332 is mounted on the inner wall of the mechanism box 1 by tightening the mounting studs 331, when the first electric nozzle 107 and the second electric nozzle 111 glaze the surface of the ceramic, some excess glaze will fall into the interior of the material guide cover 332, the glaze enters the interior of the material collecting cavity 117 through the downcomer 333, and the glaze is collected under the action of the material collecting cavity 117. The control button 101 controls the operation of the second pump body 32 in the holding box 31, the second pump body 32 guides the glaze in the interior of the material collecting cavity 117 into the interior of the glaze tank 102, so that the glaze does not adhere to the interior of the material collecting cavity 117 and is wasted, to realize the function of recycling and preventing waste of excess glaze by the glazing mechanism, so that the glazing mechanism can return the excess glaze to the interior of the glaze tank 102 during use, avoiding the phenomenon of glaze waste during use of the glazing mechanism.

[0033] Subsequently, when the glaze in the interior of the glaze tank 102 is not used for a long time, the glaze will coagulate and form clumps due to evaporation of moisture, the control button 101 controls the stirring motor 22 to work, under the action of the stirring motor 22, the shaft body 21 rotates, when the shaft body 21 rotates, the shaft body 21 drives the stirrer 23 to rotate in the interior of the glaze tank 102, when the stirrer 23 rotates, the stirrer 23 drives the stirring rod 24 to rotate in the interior of the glaze tank 102, under the joint action of the stirrer 23 and the stirring rod 24, the glaze in the interior of the glaze tank 102 is stirred, when the stirring rod 24 rotates, the scraper 26 is always moved to contact the inner wall of the glaze tank 102 under the elastic force of the spring 25, under the action of the scraper 26, the glaze is prevented from depositing at the bottom of the glaze tank 102, to realize the function of preventing coagulation of the glaze in the interior of the glaze tank 102 by the glazing mechanism, so that the glazing mechanism can stir the glaze in the interior of the glaze tank 102 during use, avoiding the phenomenon that the glaze cannot be continuously used due to coagulation.

[0034] Subsequently, when the surface of the ceramic glaze is finished, it needs to be dried, the control button 101 controls the first air blower 43 to work, under the action of the first air blower 43, air is sucked into the inside of the heating box 46, under the action of the heater 44, the air in the heating box 46 is heated, under the action of the temperature monitor 45, the temperature in the heating box 46 is monitored, so that the temperature in the heating box 46 can meet the drying needs of the ceramic surface glaze, and the phenomenon of overheating or insufficient temperature does not occur, the monitoring result is displayed on the surface of the control button 101, the control button 101 controls the second air blower 42 in the shielding box 121 to work, under the action of the second air blower 42, the glaze on the surface of the ceramic is dried through the drying hole plate 41, to realize the function of automatic drying of the glazing mechanism, so that the glazing mechanism does not need to be separately dried after glazing, ensure the glazing effect of the ceramic surface, the practicability is stronger, wherein the control button 101 controls the first electric nozzle 107, the first pump body 109, the second electric nozzle 111, the air compressor 116, the rotating motor 118, the stirring motor 22, the second pump body 32, the first air blower 43 and the second air blower 42, the specific control connection mode belongs to the prior art, and will not be repeated here, finally completes the use of the glazing mechanism.

[0035] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A glazing mechanism for painted ceramics, comprising a mechanism housing (1), characterized in that: A glaze tank (102) is installed on one side of the mechanism box (1). A cavity (120) is opened inside the glaze tank (102). The cavity (120) is connected to the inside of the glaze tank (102). A turntable (115) is provided inside the mechanism box (1). A material collection cavity (117) is opened inside the mechanism box (1). A shielding box (121) is installed on the inner wall of the mechanism box (1). A through groove is opened on the surface of the shielding box (121). An anti-condensation mechanism (2) is provided inside the glaze tank (102). A recycling and anti-waste mechanism (3) is provided on the surface of the mechanism box (1). The recycling and anti-waste mechanism (3) includes a holding box (31), a second pump body (32), and a recycling and anti-waste group (33). An automatic drying mechanism (4) is provided on the surface of the mechanism box (1) and inside the shielding box (121).

2. The glazing mechanism for painted ceramics according to claim 1, characterized in that: A fixed box (108) is installed on the surface of the top position of the mechanism housing (1). A first pump body (109) is installed inside the fixed box (108). A storage tank (110) is installed inside the mechanism housing (1). The output end of the first pump body (109) passes through the mechanism housing (1) and extends into the storage tank (110). A second electric nozzle (111) is installed on the surface of the bottom position of the storage tank (110). The inner wall of the mechanism housing (1) is equipped with... Equipped with a first electric nozzle (107), a feed cylinder (103) is installed on the surface of the top position of the glaze tank (102), the feed cylinder (103) is connected to the interior of the glaze tank (102), an observation window (105) is installed on the surface of the glaze tank (102), a door (104) is provided on the surface of the mechanism housing (1), the door (104) and the surface of the mechanism housing (1) are rotatably engaged, and a guide pipe is installed at the input end of the first pump body (109). (106), one end of the guide tube (106) extends into the interior of the cavity (120), one end of the first electric nozzle (107) penetrates through the mechanism housing (1) and is connected to the interior of the guide tube (106), a rotary motor (118) is installed inside the mechanism housing (1), the rotary motor (118) is located below the turntable (115), the output end of the rotary motor (118) is connected to a rotating shaft via a coupling, and a rotating shaft is provided above the rotary motor (118). There is a housing (119), the surface of the bottom of the housing (119) is fixed to the surface of the rotating shaft, an air compressor (116) is installed inside the housing (119), a fixing column (114) is installed on the surface of the top of the turntable (115), the fixing column (114) is connected to the air compressor (116), an air bag (112) is installed on the surface of the fixing column (114), and an air hole (113) is opened on the inner wall of the fixing column (114).

3. The glazing mechanism for painted ceramics according to claim 1, characterized in that: The anti-condensation mechanism (2) includes a shaft (21), a stirring motor (22), a stirrer (23), a stirring rod (24), and a spring (25). The stirring motor (22) is installed on the surface at the top of the glaze tank (102). The output end of the stirring motor (22) is connected to the shaft (21) via a coupling. The bottom end of the shaft (21) extends into the interior of the glaze tank (102) and rotates with the inner wall of the glaze tank (102).

4. The glazing mechanism for painted ceramics according to claim 1, characterized in that: The glaze tank (102) is equipped with a stirrer (23) inside. The stirrer (23) rotates with the inner wall of the glaze tank (102). The surface of the stirrer (23) is fixed to the surface of the shaft (21). The surface of the stirrer (23) is equipped with stirring rods (24) at equal intervals. The surface of the bottom of the stirring rods (24) is equipped with elastic devices (25). The glaze tank (102) is equipped with a scraper (26). The surface of the bottom of the elastic device (25) is fixed to the surface of the scraper (26).

5. The glazing mechanism for painted ceramics according to claim 1, characterized in that: The recycling and anti-waste group (33) is set on the surface of the mechanism box (1). The recycling and anti-waste group (33) consists of a mounting stud (331), a guide cover (332) and a discharge trough (333). A holding box (31) is installed on the surface of the mechanism box (1). A second pump body (32) is installed inside the holding box (31). The input end of the second pump body (32) extends into the inside of the collection chamber (117). The output end of the second pump body (32) passes through the mechanism box (1) and extends into the inside of the cavity (120).

6. The glazing mechanism for painted ceramics according to claim 1, characterized in that: The interior of each mechanism housing (1) is provided with a guide cover (332). The guide covers (332) are located on both sides of the rotating motor (118). The surface of each guide cover (332) is threaded with a mounting stud (331). One end of the mounting stud (331) passes through the guide cover (332) and is threadedly fastened to the inner wall of the mechanism housing (1). The inner wall of each mechanism housing (1) is provided with a discharge groove (333). The discharge groove (333) is connected to the interior of the guide cover (332) and the discharge groove (333) is connected to the interior of the collection chamber (117).

7. The glazing mechanism for painted ceramics according to claim 1, characterized in that: The automatic drying mechanism (4) includes a drying perforated plate (41), a second blower (42), a first blower (43), a heater (44), a temperature monitor (45), and a heating box (46). The heating box (46) is installed on the surface of the mechanism housing (1). The temperature monitor (45) is installed inside the heating box (46). Heaters (44) are installed on the inner walls on both sides of the heating box (46).

8. The glazing mechanism for painted ceramics according to claim 7, characterized in that: A first blower (43) is installed on the surface of the top position of the heating box (46). The output end of the first blower (43) extends into the interior of the heating box (46). A second blower (42) is installed inside the shielding box (121). The input end of the second blower (42) passes through the mechanism box (1) and the heating box (46) in sequence and extends into the interior of the heating box (46). A drying perforated plate (41) is installed at the output end of the second blower (42).

Citation Information

Patent Citations

  • Ceramic glazing mechanism

    CN218195896U