Glaze grinding device for ceramic tile processing

By designing a glaze grinding device for ceramic tile processing, the recycling and return component is used to realize the circulating grinding of the glaze, the problem of poor glaze grinding quality in the prior art is solved, and the grinding effect and quality of the glaze is improved.

CN222998857UActive Publication Date: 2025-06-20HUNAN TIANXIN TECH CO LTD
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Patent Information

Application Number
CN202421926995.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-06-20
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The existing glaze grinding device is inconvenient to realize circulating grinding when grinding the glaze, resulting in poor grinding quality.

Method used

An enamel grinding device including an outer shell, an enamel grinding assembly and a recirculation rebate assembly is designed. The recirculation and return component reflows the grinded glaze to the grinding position of the rotary grinding disc and the fixed grinding disc through the spiral feed blade to achieve reciprocating grinding.

Benefits of technology

Through cyclic grinding, the grinding effect of the glaze is significantly improved, making the mixture of the enamel frit and the grinding addition more evenly, and the quality of the glaze is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glaze grinding device for ceramic tile processing, which relates to the technical field of ceramic tile processing, and comprises an outer shell, a glaze grinding component and a circulating material returning component, a material guiding plate is arranged at the upper part in the outer shell, a cover frame is fixed below the material guiding plate, the glaze grinding component is arranged at the inner side of the cover frame, and the circulating material returning component is arranged at the lower part of the cover frame. And a circulating material returning assembly is mounted in the middle of the material guiding plate. According to the glaze grinding device for ceramic tile processing, a conical guide plate can guide ground glaze so that the part of the glaze can enter the interior of the fixed shell through a feeding opening, a motor shaft and a spiral feeding blade can be conveniently driven to rotate through a driving motor, the spiral feeding blade can feed the glaze in the fixed shell upwards, and the glaze in the fixed shell can be ground through the spiral feeding blade; and then the glaze is discharged from a discharge port in the upper side and flows back to the grinding positions of the rotary grinding disc and the fixed grinding disc again along the material guide plate and a runner between the material guide plate and the outer shell, so that the glaze can be ground in a reciprocating manner, and the grinding effect is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of ceramic tile processing, and particularly relates to a glaze grinding device for ceramic tile processing. Background Technique

[0002] During the processing of ceramic tiles, glazing is required on their surfaces. During the processing of glaze, in order to improve the quality of the glaze, the glaze needs to be ground. Grinding is to mix and crush the enamel frit with appropriate grinding additives to form a water-based glaze slurry with fine particles and uniform distribution, which plays a role suitable for enameling. Therefore, a glaze grinding device is needed.

[0003] During the grinding process of the existing glaze grinding device for glaze, it is not convenient to perform circular grinding on the glaze, and the grinding quality is not good.

[0004] Therefore, in view of this, research and improvement are carried out on the existing structure and deficiencies, and a glaze grinding device for ceramic tile processing is proposed. Content of the Utility Model

[0005] The purpose of the utility model is to provide a glaze grinding device for ceramic tile processing to solve the problems raised in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A glaze grinding device for ceramic tile processing, including an outer shell, a glaze grinding component, and a circulating material return component. Above the inside of the outer shell, a guide plate is installed, and a cover frame is fixed below the guide plate. The glaze grinding component is installed inside the cover frame. A circulating material return component is installed in the middle of the guide plate, and the circulating material return component includes a fixed shell, a driving motor, a spiral feeding blade, a feeding port, and a discharging port. The driving motor is installed below the fixed shell, and the spiral feeding blade is installed inside the fixed shell. The feeding port is provided on the lower side of the fixed shell, and the discharging port is provided on the upper side of the fixed shell. A conical guide plate is fixed below the inside of the outer shell, and a discharging component is installed below the conical guide plate. An inlet hopper is installed above the outer shell.

[0007] Furthermore, the cross-section of the guide plate is in an inclined structure, and a flow channel for the glaze to pass through is reserved between the guide plate and the inner wall of the outer shell.

[0008] Furthermore, the glaze grinding component includes a rotating motor, a driving gear, and a driven gear ring. The lower side of the output shaft of the rotating motor is connected to the driving gear, and the driving gear is meshed with the driven gear ring on one side, and the driven gear ring is rotatably installed outside the fixed shell.

[0009] Furthermore, the glaze grinding assembly further includes a connecting frame, a rotating grinding disc and a stationary grinding disc. The rotating grinding disc is connected below the passive gear ring through the connecting frame, and the rotating grinding disc is rotatably connected to the cover frame. The stationary grinding disc is fixed to the inner side of the middle of the outer shell.

[0010] Furthermore, grinding teeth are fixed between the rotating grinding disc and the stationary grinding disc, a sieve mesh is installed on the lower side of the stationary grinding disc, and the rotating grinding disc, the sieve mesh and the fixed shell are rotatably connected.

[0011] Furthermore, the discharging assembly includes a multi-section telescopic rod, a connecting plate and a blanking pipe. The multi-section telescopic rods are installed on both sides below the conical guide plate, and a connecting plate is fixed to one side below the multi-section telescopic rods. The blanking pipe is fixed between the two connecting plates.

[0012] Furthermore, the discharging assembly further includes a feeding slot. The blanking pipe is in a ring-shaped structure with an opening on the lower side, and the inner and outer sides of the blanking pipe are respectively in up-and-down sliding connection with the fixed shell and the conical guide plate, and a feeding slot is opened on the lower side of the outer wall of the blanking pipe.

[0013] The present utility model provides a glaze grinding device for tile processing, which has the following beneficial effects:

[0014] The present utility model is provided with a circulating material returning assembly. The conical guide plate can guide the ground glaze so that this part of the glaze can enter the inside of the fixed shell through the feeding port. The spiral feeding blade can feed the glaze inside the fixed shell upward, and then make the glaze flow back to the grinding positions of the rotating grinding disc and the stationary grinding disc again, so as to grind the glaze reciprocally and improve the grinding effect.

[0015] The present utility model is provided with a discharging assembly. When blanking is required, the multi-section telescopic rod and the connecting plate can drive the blanking pipe to move upward, so that the ring-shaped blanking pipe blocks the feeding port, and the fully ground glaze on the upper side of the conical guide plate enters the inside of the blanking pipe through the feeding slot and is discharged through the opening on its lower side, so that the circulating material returning assembly and the discharging assembly can cooperate to facilitate the control of the circulating material returning or discharging of the glaze.

[0016] The present utility model is provided with a glaze grinding assembly. The rotation of the rotating motor and the output shaft can drive the rotation of the driving gear, and then drive the rotation of the passive gear ring, the connecting frame and the rotating grinding disc. The rotation of the rotating grinding disc can grind the glaze between the rotating grinding disc and the stationary grinding disc. The sieve mesh can screen and discharge the ground glaze, so that this part of the screened glaze can be discharged to the position of the conical guide plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the internal half-sectional structure of a glaze grinding device for tile processing according to the present utility model;

[0018] Figure 2 This is a schematic structural diagram after the lifting of the blanking pipe of a glaze grinding device for ceramic tile processing according to the present utility model;

[0019] Figure 3 This is a schematic internal structural diagram of the outer shell of a glaze grinding device for ceramic tile processing according to the present utility model.

[0020] In the figure: 1. Outer shell; 2. Material guiding plate; 3. Cover frame; 4. Glaze grinding assembly; 401. Rotating motor; 402. Driving gear; 403. Driven tooth ring; 404. Connecting frame; 405. Rotating grinding disc; 406. Fixed grinding disc; 5. Sieve mesh; 6. Circulating return material assembly; 601. Fixed shell; 602. Driving motor; 603. Spiral feeding blade; 604. Feeding port; 605. Discharging port; 7. Conical guiding plate; 8. Discharging assembly; 801. Multi - joint telescopic rod; 802. Connecting plate; 803. Blanking pipe; 804. Feeding slot; 9. Feeding hopper. Specific embodiments

[0021] The following further describes in detail the embodiments of the present utility model in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0022] As Figure 1 And Figure 2As shown in the figure, a glaze grinding device for tile processing includes a housing 1, a glaze grinding assembly 4, and a circulating material return assembly 6. Above the interior of the housing 1, a material guide plate 2 is installed, and a cover frame 3 is fixed below the material guide plate 2. The cross-section of the material guide plate 2 is in an inclined structure, and a flow channel for the glaze to pass through is reserved between the material guide plate 2 and the inner wall of the housing 1. The glaze grinding assembly 4 is installed inside the cover frame 3. A circulating material return assembly 6 is installed in the middle of the material guide plate 2, and the circulating material return assembly 6 includes a fixed shell 601, a driving motor 602, a spiral feeding blade 603, a feeding port 604, and a discharging port 605. The driving motor 602 is installed below the fixed shell 601, and the spiral feeding blade 603 is installed inside the fixed shell 601. The feeding port 604 is provided on the lower side of the fixed shell 601, and the discharging port 605 is provided on the upper side of the fixed shell 601. A conical guide plate 7 is fixed below the interior of the housing 1, and a discharging assembly 8 is installed below the conical guide plate 7. A feeding hopper 9 is installed above the housing 1; the conical guide plate 7 can guide the ground glaze so that this part of the glaze can enter the interior of the fixed shell 601 through the feeding port 604. The driving motor 602 facilitates driving the rotation of the motor shaft and the spiral feeding blade 603, so that the spiral feeding blade 603 can feed the glaze inside the fixed shell 601 upward, and then the glaze is discharged from the upper discharging port 605 and flows back along the material guide plate 2 and the flow channel between the material guide plate 2 and the housing 1 to the grinding positions of the rotating grinding disc 405 and the fixed grinding disc 406, so that the glaze can be ground reciprocally, improving the grinding effect.

[0023] As Figure 1 and Figure 3As shown in the figure, the glaze grinding assembly 4 includes a rotary motor 401, a driving gear 402 and a driven gear ring 403. The lower side of the output shaft of the rotary motor 401 is connected with the driving gear 402, and one side of the driving gear 402 is meshed with the driven gear ring 403. The driven gear ring 403 is rotatably installed on the outer side of the fixed shell 601. The glaze grinding assembly 4 further includes a connecting frame 404, a rotary grinding disc 405 and a fixed grinding disc 406. The lower part of the driven gear ring 403 is connected with the rotary grinding disc 405 through the connecting frame 404, and the rotary grinding disc 405 is rotatably connected with the cover frame 3. The fixed grinding disc 406 is fixed on the inner side of the middle part of the outer shell 1. Grinding teeth are fixed between the rotary grinding disc 405 and the fixed grinding disc 406. A sieve mesh 5 is installed on the lower side of the fixed grinding disc 406, and the rotary grinding disc 405 and the sieve mesh 5 are rotatably connected with the fixed shell 601. By means of the rotary motor 401 and the output shaft, it is convenient to drive the rotation of the driving gear 402. The driving gear 402 is meshed with the driven gear ring 403, so as to drive the rotation of the driven gear ring 403, the connecting frame 404 and the rotary grinding disc 405. The driving gear 402 and the driven gear ring 403 are located inside the cover frame 3 and will not enter the glaze to affect the driving structure. The rotation of the rotary grinding disc 405 can grind the glaze between the rotary grinding disc 405 and the fixed grinding disc 406. The sieve mesh 5 can screen and discharge the ground glaze, so that the screened glaze can be discharged to the position of the conical guide plate 7.

[0024] As Figure 1 and Figure 2 shown in the figure, the discharging assembly 8 includes a multi-section telescopic rod 801, a connecting plate 802 and a blanking pipe 803. The multi-section telescopic rods 801 are installed on both sides below the conical guide plate 7, and a connecting plate 802 is fixed on one side below the multi-section telescopic rod 801. A blanking pipe 803 is fixed between the two connecting plates 802. The discharging assembly 8 further includes a feeding slot 804. The blanking pipe 803 is in an annular structure with an opening at the lower side. The inner and outer sides of the blanking pipe 803 are respectively connected with the fixed shell 601 and the conical guide plate 7 in a vertical sliding manner, and a feeding slot 804 is arranged on the lower side of the outer wall of the blanking pipe 803. The blanking pipe 803 is located between the fixed shell 601 and the conical guide plate 7 and does not affect the recycling of the recycling assembly 6. When discharging is required, the multi-section telescopic rod 801 and the connecting plate 802 can drive the blanking pipe 803 to move upward, so that the annular blanking pipe 803 blocks the feeding port 604, and the fully ground glaze on the upper side of the conical guide plate 7 enters the interior of the blanking pipe 803 through the feeding slot 804 and is discharged through the opening at its lower side, so that the recycling assembly 6 and the discharging assembly 8 can cooperate to control the recycling or discharging of the glaze.

[0025] In summary, as Figures 1-3As shown, for the glaze grinding device used in tile processing, the glaze needs to be ground before glazing the tile. First, the glaze raw material can be fed through the feed hopper 9. Then, the glaze can flow through the channel between the guide plate 2 and the outer housing 1 to the grinding positions of the rotating grinding disc 405 and the fixed grinding disc 406. At this time, the rotation of the rotating motor 401 and the output shaft can drive the rotation of the driving gear 402, and then drive the rotation of the driven gear ring 403, the connecting frame 404, and the rotating grinding disc 405. The rotation of the rotating grinding disc 405 can grind the glaze between the rotating grinding disc 405 and the fixed grinding disc 406. Then, the sieve 5 can screen and discharge the ground glaze, so that this part of the screened glaze can be discharged to the position of the conical guide plate 7;

[0026] Next, the conical guide plate 7 can guide the ground glaze so that this part of the glaze can enter the interior of the fixed housing 601 through the feed port 604. Then, the rotation of the driving motor 602 can drive the rotation of the motor shaft and the spiral feeding blade 603, so that the spiral feeding blade 603 can feed the glaze inside the fixed housing 601 upward. Then, the glaze is discharged from the upper discharge port 605 and flows back along the guide plate 2 and the channel between the guide plate 2 and the outer housing 1 to the grinding positions of the rotating grinding disc 405 and the fixed grinding disc 406, so that the glaze can be ground reciprocally;

[0027] After cyclic grinding, when it is necessary to discharge the material, the multi-section telescopic rod 801 and the connecting plate 802 can drive the discharge pipe 803 to move upward, so that the annular discharge pipe 803 blocks the feed port 604, and the fully ground glaze on the upper side of the conical guide plate 7 enters the interior of the discharge pipe 803 through the feed slot 804 and is discharged through its lower opening. Finally, the tile is glazed with the fully ground glaze, and thus the use process of the glaze grinding device for tile processing is completed.

[0028] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better explain the principles of the present invention and its practical applications, and to enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.

Claims

1. A glaze grinding device for tile processing, comprising an outer shell (1), a glaze grinding component (4) and a recycling component (6), characterized in that: A material guide plate (2) is installed on the upper part of the inner part of the outer shell (1), and a cover frame (3) is fixed below the material guide plate (2). A glaze grinding assembly (4) is installed on the inner side of the cover frame (3). A circulating material return assembly (6) is installed in the middle part of the material guide plate (2). The circulating material return assembly (6) includes a fixed shell (601), a driving motor (602), a spiral feeding blade (603), a feed inlet (604) and a discharge outlet (605). The fixed shell (601 ) is installed at the bottom of the outer shell (1), and a spiral feeding blade (603) is installed inside the fixed shell (601), a feed port (604) is provided on the lower side of the fixed shell (601), and a discharge port (605) is provided on the upper side of the fixed shell (601), a conical guide plate (7) is fixed at the lower part of the inner part of the outer shell (1), and a discharge assembly (8) is installed below the conical guide plate (7), and a feed hopper (9) is installed above the outer shell (1).

2. A glaze grinding device for tile processing according to claim 1, characterized in that: The cross section of the material guide plate (2) is an inclined structure, and a flow channel for the glaze to pass through is reserved between the material guide plate (2) and the inner wall of the outer shell (1).

3. A glaze grinding device for tile processing according to claim 1, characterized in that: The glaze grinding assembly (4) comprises a rotating motor (401), a driving gear (402) and a passive gear ring (403), wherein the lower side of the output shaft of the rotating motor (401) is connected to the driving gear (402), and one side of the driving gear (402) is meshed with the passive gear ring (403), and the passive gear ring (403) is rotatably mounted on the outer side of the fixed shell (601).

4. A glaze grinding device for tile processing according to claim 3, characterized in that: The glaze grinding assembly (4) further comprises a connecting frame (404), a rotating grinding disc (405) and a fixed grinding disc (406); the rotating grinding disc (405) is connected to the lower part of the passive gear ring (403) via the connecting frame (404); the rotating grinding disc (405) is rotatably connected to the cover frame (3); and the fixed grinding disc (406) is fixed to the inner side of the middle part of the outer shell (1).

5. A glaze grinding device for tile processing according to claim 4, characterized in that: Grinding teeth are fixed between the rotating grinding disc (405) and the fixed grinding disc (406), and a screen (5) is installed on the lower side of the fixed grinding disc (406), and the rotating grinding disc (405), the screen (5) and the fixed shell (601) are rotatably connected.

6. A glaze grinding device for tile processing according to claim 1, characterized in that: The discharge assembly (8) comprises a multi-section telescopic rod (801), a connecting plate (802) and a discharge pipe (803); the multi-section telescopic rod (801) is installed on both sides below the conical guide plate (7); a connecting plate (802) is fixed on one side below the multi-section telescopic rod (801); and a discharge pipe (803) is fixed between the two connecting plates (802).

7. A glaze grinding device for tile processing according to claim 6, characterized in that: The discharge assembly (8) also includes a feed slot (804), the discharge pipe (803) is a ring-shaped structure with an opening on the lower side, and the inner and outer sides of the discharge pipe (803) are respectively connected to the fixed shell (601) and the conical guide plate (7) in an up and down sliding manner, and a feed slot (804) is provided on the lower side of the outer wall of the discharge pipe (803).