Edge washer

By setting up an aluminum frame, a pendulum rod and a pendulum rod in the edge washing machine, combined with the adjustment of the magnetic pair cylinder, a pendulum cylinder and a pendulum rod cylinder, the problem of unstable center of gravity caused by vibration in the edge washing machine is solved, and a more uniform and efficient cleaning effect is achieved.

CN109397501BActive Publication Date: 2025-06-10QUANZHOU KUNTAI MACHINERY PRECISION MFG CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN201811550863.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2018-12-18
Publication Date
2025-06-10
Estimated Expiration
2038-12-18

AI Technical Summary

Technical Problem

During the cleaning process of existing edge washing machines, the porcelain blank is easily viable due to the rotation of the turntable, resulting in unstable center of gravity, affecting the cleaning effect.

Method used

A sidewashing machine is designed to automatically load and unload the blank by setting up an aluminum frame, a pendulum rod and a pendulum rod. At the same time, the position of the correction plate is adjusted by the guide rod cylinder to prevent the blank from vibrating; the position of the lifting plate is adjusted by the lifting cylinder to ensure that the sidewashing plate is better cleaned by the blank.

Benefits of technology

It effectively prevents the unstable center of gravity caused by vibration during the cleaning process, improves the uniformity and effect of the cleaning, and ensures better cleaning of the porcelain blank.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN109397501B_ABST
    Figure CN109397501B_ABST
Patent Text Reader

Abstract

The present invention discloses an edge washing machine, which includes an embryo taking aluminum frame. A magnetic couple cylinder is provided on the embryo taking aluminum frame. On both sides of the magnetic couple cylinder, embryo taking cylinders are symmetrically arranged. A guide rail is provided on the embryo taking aluminum frame. Below the embryo taking cylinders, a plurality of embryo taking swing rods are provided. One end of the embryo taking swing rod is connected with a swing rod cylinder. An embryo taking rod penetrates through the embryo taking swing rod. Below the embryo taking rod, a first rotating disk is provided. A central shaft is arranged in the middle of the first rotating disk. A driven wheel is sleeved at one end of the central shaft away from the first rotating disk. A conveyor belt is arranged on one side of the driven wheel. The driven wheel is in contact with the conveyor belt. A driving wheel is sleeved on the conveyor belt. The driving wheel is connected with the output end of a motor. Below the first rotating disk, a second rotating disk is provided. An annular internal gear rack is fixedly arranged at the bottom of the second rotating disk. Beneficial effects: The edge washing disk can better wash the blank body, making the washing more uniform and improving the washing effect.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of edge-washing machines, and more specifically, to an edge-washing machine. Background Art

[0002] Ceramics is a general term for pottery and porcelain. People invented pottery as early as about 8,000 years ago in the Neolithic Age. Common ceramic materials include clay, alumina, kaolin, etc. Ceramic materials generally have high hardness but poor plasticity. In addition to being used in tableware and decoration, ceramics also play an important role in the development of science and technology. Ceramic raw materials are obtained by quenching the large amount of original resources of the earth, clay. The property of clay is ductile, plastic when encountering water at normal temperature, can be carved when slightly dry, and can be ground when completely dry; when burned to 700 degrees, it can become pottery that can hold water; when burned to 1230 degrees, it is porcelainized, almost completely non-absorbent and resistant to high temperature and corrosion. Its usage flexibility has various creative applications in today's culture and technology, and pottery was invented. Most ceramic materials are oxides, nitrides, borides, carbides, etc. An edge-washing machine is required in the ceramic production process. In the automated processing of daily-use ceramics, processes such as clay refining, material cutting, rolling forming, drying, and blank washing need to be experienced. Among them, the blank washing process is realized by an edge-washing machine. The existing edge-washing machine includes a turntable, which is divided into a feeding station, a discharging station, and several cleaning stations. The ceramic blank rotates one week through the cleaning stations on the turntable, and the blank is cleaned by the sponge on the station, making the blank smoother.

[0003] Due to the rotational movement of the turntable, during the cleaning process, the cup is prone to vibration, resulting in unstable center of gravity, uneven cleaning, and affecting the cleaning effect. Therefore, it is necessary to improve the structure of the existing edge-washing machine to ensure its cleaning effect.

[0004] No effective solution has been proposed for the problems in the related art. Summary of the Invention

[0005] The purpose of the present invention is to provide an edge-washing machine to solve the problems raised in the above background art.

[0006] To achieve the above object, the present invention provides the following technical solution: a trimming machine, including an embryo-taking aluminum frame, on which a magnetic coupling cylinder is provided, and on both sides of the magnetic coupling cylinder, embryo-taking cylinders are symmetrically provided. A guide rail is provided on the embryo-taking aluminum frame. Below the embryo-taking cylinders, a number of embryo-taking swing rods are provided. One end of the embryo-taking swing rod is connected with a swing rod cylinder. An embryo-taking rod penetrates through the embryo-taking swing rod. Below the embryo-taking rod, a first rotating disk is provided. In the middle of the first rotating disk, a central shaft is provided. At one end of the central shaft away from the first rotating disk, a driven wheel is sleeved. On one side of the driven wheel, a conveyor belt is provided. The driven wheel is in contact with the conveyor belt. On the conveyor belt, a driving wheel is sleeved. The driving wheel is connected with the output end of a motor. Below the first rotating disk, a second rotating disk is provided. At the bottom of the second rotating disk, an annular internal gear rack is fixedly provided. Inside the annular internal gear rack, gears are symmetrically meshed. In the middle of the gears, a rotating shaft penetrates. At one end of the rotating shaft away from the gears, it is connected with the output end of a motor of the second rotating disk. Below the second rotating disk, a chassis is provided. The motor of the second rotating disk is fixed at the bottom of the chassis. The second rotating disk and the chassis are connected through a movable shaft. The motor is fixed on the chassis. On the outside of the chassis, two fixing plates are provided. On each fixing plate, a guide rod cylinder is provided. On one side of the guide rod cylinder, a support plate is provided. On the support plate, a calibration disk is provided. On one side of the second rotating disk, two water tanks are provided. Above the water tanks, a water pressing roller bar is provided. Above the water pressing roller bar, a trimming disk is provided. Above the trimming disk, a trimming motor is provided. On one side of the water tank away from the second rotating disk, a lifting plate is provided. Above the lifting plate, guide rail sliders are symmetrically provided. The bottom of the lifting plate is connected with a lifting cylinder. At the bottom of the chassis, a divider is fixedly provided. On one side of the chassis, a second support frame is provided. On the second support frame, a conveyor belt is provided. At the bottom of the conveyor belt, a conveyor belt motor is fixedly provided.

[0007] Further, a connecting plate penetrates through the embryo-taking cylinder. At both ends of the connecting plate, clamping grooves are provided. The clamping grooves are matched with the guide rail.

[0008] Further, a first support frame is provided at the bottom of the chassis. The divider is located in the middle of the first support frame.

[0009] Further, floor feet are provided at the bottoms of the first support frame, the second support frame, and the embryo-taking aluminum frame.

[0010] Further, on one side of the guide rail slider, a base is connected. The trimming motor is located on the base.

[0011] Further, a clamping plate is fixedly provided below the base. The water pressing roller bar penetrates through the clamping plate and extends into the clamping plate.

[0012] Further, the embryo-taking swing rods are connected through a clamping plate.

[0013] The present invention provides an edge washing machine, and the beneficial effects are as follows:

[0014] (1) By setting an embryo-taking aluminum frame, an embryo-taking swing rod and an embryo-taking rod, under the adjustment of a magnetic coupling cylinder, an embryo-taking cylinder and a swing rod cylinder, the feeding and discharging of the blank are automatically completed. The blank enters the first rotating disk. The motor of the first rotating disk works. Under the cooperation of a central shaft, a driving wheel, a driven wheel and a conveyor belt, the first rotating disk rotates. The motor of the second rotating disk works. Under the cooperation of an annular internal rack and a gear, the second rotating disk rotates. The edge washing motor and the conveyor belt motor start to work, so that the edge washing disk and the conveyor belt rotate. By providing a guide rod cylinder, the position of the calibration disk is adjusted, so that the calibration disk can calibrate the position of the blank on the first rotating disk, thereby preventing the blank from being shaken and causing unstable center of gravity. By providing a lifting cylinder, the position of the lifting plate is adjusted, so that the edge washing disk can better wash the blank, making the washing more uniform and improving the washing effect. The water pressing roller can remove the excess water. After the washing is completed, after discharging, it is finally conveyed by the conveyor belt.

[0015] (2) By providing a connecting plate, it plays a role in supporting the embryo-taking cylinder. By providing a first support frame, it plays a role in supporting the chassis. By providing a floor foot, it is convenient for movement and easy to use.

[0016] (3) By providing a base, it plays a role in fixedly supporting the edge washing motor. By providing a clamping plate, it plays a role in fixedly limiting the water pressing roller. By providing a clamping plate, it plays a role in fixedly limiting and adjusting the embryo-taking swing rod. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 is a schematic structural diagram of the edge washing machine according to an embodiment of the present invention;

[0019] Figure 2 is a bottom view of the edge washing machine according to an embodiment of the present invention;

[0020] Figure 3 is a top view of the second rotating disk in the edge washing machine according to an embodiment of the present invention.

[0021] Reference numerals:

[0022] 1. embryo removal aluminum frame; 2. magnetic cylinder; 3. embryo removal cylinder; 4. guide rail; 5. embryo removal swing rod; 6. swing rod cylinder; 7. embryo removal rod; 8. rotating disk 1; 9. central axis; 10. driven wheel; 11. conveyor belt; 12. driving wheel; 13. rotating disk 1 motor; 14. rotating disk 2; 15. annular inner rack; 16. gear; 17. rotating shaft; 18. rotating disk 2 motor; 19. chassis; 20. movable shaft; 21. fixed plate; 22. guide rod cylinder; 23. support plate; 24. correction disk; 25. sink; 26. water pressure roller; 27. edge washing disk; 28. edge washing motor; 29. ​​lifting plate; 30. guide rail slide; 31. lifting cylinder; 32. Divider; 33. Conveyor belt; 34. Conveyor belt motor; 35. Connecting plate; 36. Slot; 37. Card plate; 38. Base. DETAILED DESCRIPTION

[0023] Below, the invention is further described in conjunction with the accompanying drawings and specific embodiments:

[0024] Embodiment 1:

[0025] See also Figures 1-3, the edge washing machine according to an embodiment of the present invention includes a blank taking aluminum frame 1, a magnetic coupling cylinder 2 is provided on the blank taking aluminum frame 1, blank taking cylinders 3 are symmetrically provided on both sides of the magnetic coupling cylinder 2, a guide rail 4 is provided on the blank taking aluminum frame 1, several blank taking swing rods 5 are provided below the blank taking cylinders 3, a swing rod cylinder 6 is connected to one end of the blank taking swing rod 5, a blank taking rod 7 penetrates through the blank taking swing rod 5, a first rotating disk 8 is provided below the blank taking rod 7, a central shaft 9 is provided in the middle of the first rotating disk 8, a driven wheel 10 is sleeved on one end of the central shaft 9 away from the first rotating disk 8, a conveyor belt 11 is provided on one side of the driven wheel 10, the driven wheel 10 is in contact with the conveyor belt 11, a driving wheel 12 is sleeved on the conveyor belt 11, the driving wheel 12 is connected to the output end of a first rotating disk motor 13, a second rotating disk 14 is provided below the first rotating disk 8, an annular internal gear rack 15 is fixedly provided at the bottom of the second rotating disk 14, gears 16 are symmetrically meshed in the annular internal gear rack 15, a rotating shaft 17 penetrates through the middle of the gear 16, one end of the rotating shaft 17 away from the gear 16 is connected to the output end of a second rotating disk motor 18, a chassis 19 is provided below the second rotating disk 14, the second rotating disk motor 18 is fixed at the bottom of the chassis 19, the second rotating disk 14 and the chassis 19 are connected by a movable shaft 20, the first rotating disk motor 13 is fixed on the chassis 19, two fixing plates 21 are provided on the outer side of the chassis 19, guide rod cylinders 22 are provided on the fixing plates 21, a support plate 23 is provided on one side of the guide rod cylinder 22, a calibration disk 24 is provided on the support plate 23, two water tanks 25 are provided on one side of the second rotating disk 14, a water pressing roller bar 26 is provided above the water tank 25, an edge washing disk 27 is provided above the water pressing roller bar 26, an edge washing motor 28 is provided above the edge washing disk 27, a lifting plate 29 is provided on one side of the water tank 25 away from the second rotating disk 14, guide rail slides 30 are symmetrically provided above the lifting plate 29, the bottom of the lifting plate 29 is connected to a lifting cylinder 31, a divider 32 is fixedly provided at the bottom of the chassis 19, a second support frame is provided on one side of the chassis 19, a conveyor belt 33 is provided on the second support frame, and a conveyor belt motor 34 is fixedly provided at the bottom of the conveyor belt 33.

[0026] Through the above solution of the present invention, the beneficial effects are as follows: By providing the embryo-taking aluminum frame 1, the embryo-taking swing rod 5 and the embryo-taking rod 7, under the adjustment of the magnetic coupling cylinder 2, the embryo-taking cylinder 3 and the swing rod cylinder 6, the feeding and discharging of the blank are automatically completed. The blank enters the first rotating disk 8, and the motor 13 of the first rotating disk works. Under the cooperation of the central shaft 9, the driving wheel 12, the driven wheel 10 and the conveyor belt 11, the first rotating disk 8 rotates. The motor 18 of the second rotating disk works. Under the cooperation of the annular internal rack 15 and the gear 16, the second rotating disk 14 rotates. The edge-washing motor 28 and the conveyor belt motor 34 start to work, causing the edge-washing disk 27 and the conveyor belt 33 to rotate. By providing the guide rod cylinder 22, the position of the calibration disk 24 can be adjusted, enabling the calibration disk 24 to correct the position of the blank on the first rotating disk 8, thereby preventing the blank from being shaken and causing unstable center of gravity. By providing the lifting cylinder 31, the position of the lifting plate 29 can be adjusted, allowing the edge-washing disk 27 to better clean the blank, making the cleaning more uniform and improving the cleaning effect. The water-pressing roller 26 can remove excess water. After cleaning and discharging, it is finally conveyed by the conveyor belt 33.

[0027] Embodiment Two:

[0028] Please refer to Figure 1 and Figure 2 For the embryo-taking cylinder 3, the embryo-taking cylinder 3 is provided with a connecting plate 35 running through it. Both ends of the connecting plate 35 are provided with clamping grooves 36, and the clamping grooves 36 are matched with the guide rails 4. For the chassis 19, a first support frame is provided at the bottom of the chassis 19, and the divider 32 is located in the middle of the first support frame. For the first support frame, anchor feet are provided at the bottoms of the first support frame, the second support frame and the embryo-taking aluminum frame 1.

[0029] Through the above solution of the present invention, the beneficial effects are as follows: By providing the connecting plate 35, it plays a supporting role for the embryo-taking cylinder 3. By providing the first support frame, it plays a supporting role for the chassis 19. By providing the anchor feet, it is convenient for movement and easy to use.

[0030] Embodiment Three:

[0031] Please refer to Figure Figure 1 and Figure 2 For the guide rail slide 30, a base 38 is connected to one side of the guide rail slide 30, and the edge-washing motor 28 is located on the base 38. For the base 38, a clamping plate is fixedly provided below the base 38, and the water-pressing roller 26 runs through the clamping plate and extends into the clamping plate. For the embryo-taking swing rod, the embryo-taking swing rods 5 are connected to each other through a clamping plate 37.

[0032] Through the above solution of the present invention, the beneficial effects are as follows: By providing the base 38, the edge washing motor 28 is fixedly supported. By providing the clamping plate, the water pressing roller 26 is fixedly limited. By providing the clamping plate 37, the blank taking swing rod 5 is fixedly limited and adjusted.

[0033] In summary, by means of the above technical solution of the present invention, the working principle and all beneficial effects are as follows: By providing the blank taking aluminum frame 1, the blank taking swing rod 5 and the blank taking rod 7, under the adjustment of the magnetic coupling cylinder 2, the blank taking cylinder 3 and the swing rod cylinder 6, the feeding and discharging of the blank are automatically completed. The blank enters the first rotating disk 8. The first rotating disk motor 13 works. Under the cooperation of the central shaft 9, the driving wheel 12, the driven wheel 10 and the conveyor belt 11, the first rotating disk 8 rotates. The second rotating disk motor 18 works. Under the cooperation of the annular internal rack 15 and the gear 16, the second rotating disk 14 rotates. The edge washing motor 28 and the conveyor belt motor 34 start to work, so that the edge washing disk 27 and the conveyor belt 33 rotate. By providing the guide rod cylinder 22, the position of the calibration disk 24 is adjusted, so that the calibration disk 24 can calibrate the position of the blank on the first rotating disk 8, thereby preventing the blank from being shaken and causing unstable center of gravity. By providing the lifting cylinder 31, the position of the lifting plate 29 is adjusted, so that the edge washing disk 27 can better wash the blank, making the washing more uniform and improving the washing effect. The water pressing roller 26 can remove the excess water. After washing and blanking, it is finally conveyed by the conveyor belt 33. By providing the connecting plate 35, the blank taking cylinder 3 is supported. By providing the first support frame, the chassis 19 is supported. By providing the floor feet, it is convenient to move and easy to use. By providing the base 38, the edge washing motor 28 is fixedly supported. By providing the clamping plate, the water pressing roller 26 is fixedly limited. By providing the clamping plate 37, the blank taking swing rod 5 is fixedly limited and adjusted.

[0034] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. Edge washing machine, Characterized in that, It includes an embryo-taking aluminum frame (1), on which a magnetic couple cylinder (2) is provided. On both sides of the magnetic couple cylinder (2), embryo-taking cylinders (3) are symmetrically arranged. A guide rail (4) is provided on the embryo-taking aluminum frame (1). Below the embryo-taking cylinder (3), a number of embryo-taking swing rods (5) are provided. One end of the embryo-taking swing rod (5) is connected with a swing rod cylinder (6). An embryo-taking rod (7) penetrates through the embryo-taking swing rod (5). Below the embryo-taking rod (7), a first rotating disk (8) is provided. In the middle of the first rotating disk (8), a central shaft (9) is provided. At one end of the central shaft (9) far away from the first rotating disk (8), a driven wheel (10) is sleeved. On one side of the driven wheel (10), a conveyor belt (11) is provided. The driven wheel (10) is in contact with the conveyor belt (11). An active wheel (12) is sleeved on the conveyor belt (11). The active wheel (12) is connected with the output end of a first rotating disk motor (13). Below the first rotating disk (8), a second rotating disk (14) is provided. At the bottom of the second rotating disk (14), an annular internal gear rack (15) is fixedly provided. Inside the annular internal gear rack (15), gears (16) are symmetrically meshed. In the middle of the gear (16), a rotating shaft (17) penetrates. At one end of the rotating shaft (17) far away from the gear (16), it is connected with the output end of a second rotating disk motor (18). Below the second rotating disk (14), a chassis (19) is provided. The second rotating disk motor (18) is fixed at the bottom of the chassis (19). The second rotating disk (14) and the chassis (19) are connected through a movable shaft (20). The first rotating disk motor (13) is fixed on the chassis (19). On the outside of the chassis (19), two fixing plates (21) are provided. On each fixing plate (21), a guide rod cylinder (22) is provided. On one side of the guide rod cylinder (22), a support plate (23) is provided. On the support plate (23), a calibration disk (24) is provided. On one side of the second rotating disk (14), two water tanks (25) are provided. Above the water tanks (25), a water-pressing roller bar (26) is provided. Above the water-pressing roller bar (26), a side-washing disk (27) is provided. Above the side-washing disk (27), a side-washing motor (28) is provided. On one side of the water tank (25) far away from the second rotating disk (14), a lifting plate (29) is provided. Above the lifting plate (29), guide rail slides (30) are symmetrically provided. The bottom of the lifting plate (29) is connected with a lifting cylinder (31). At the bottom of the chassis (19), a divider (32) is fixedly provided. On one side of the chassis (19), a second support frame is provided. On the second support frame, a conveyor belt (33) is provided. At the bottom of the conveyor belt (33), a conveyor belt motor (34) is fixedly provided. The embryo-taking cylinder (3) penetrates through a connecting plate (35). At both ends of the connecting plate (35), clamping slots (36) are provided. The clamping slots (36) are matched with the guide rail (4). On one side of the guide rail slide (30), a base (38) is connected. The side-washing motor (28) is located on the base (38).A clamping plate is fixedly arranged below the base (38), the water pressing roller bar (26) penetrates through the clamping plate and extends into the clamping plate, and the embryo taking swing rods (5) are connected to each other through a clamping plate (37).

Citation Information

Patent Citations

  • Edge washing machine

    CN209364954U