Ceramic clay ball mill for ceramic production
Patent Information
- Application Number
- CN202521499211.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-17
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-07-17
AI Technical Summary
[0006]为了改善现有的部分装置卸料效果不好和需要频繁对进料口进行开合问题,本实用新型的目的是提供一种陶瓷生产用陶瓷泥料球磨机
1.本实用新型通过设置研磨机构,通过研磨机构可以对陶瓷泥料进行研磨,同时,通过将出料口设置于研磨滚筒的底面,可以更加方便对泥料进卸料,从而减少角落处积攒泥料的情况。
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Figure CN224641215U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of ceramic production technology, and in particular to a ceramic clay ball mill for ceramic production. Background Technology
[0002] A ceramic clay ball mill is a device used to produce ceramic clay. Its working principle is to use the rotation and rolling of grinding media in the grinding chamber to grind and mix ceramic powder. Through the collision and friction between the grinding media and the powdered ceramic, the particles are refined and uniformly mixed. The main function of this equipment is to refine the particles in the ceramic powder to improve the quality and performance of ceramic products. Through the ball milling process, the particle size of the ceramic powder can be controlled to meet specific product requirements. In addition, the ball milling process can also achieve uniform mixing of ceramic powder, ensuring a uniform distribution of product components.
[0003] Regarding the aforementioned technologies, the inventors believe the following problems still exist: Firstly, some existing ceramic clay ball mills have their discharge ports located in the center. As a result, when the ceramic clay is discharged after grinding, some of the ceramic clay accumulates in the corners, leading to poor discharge efficiency.
[0004] Secondly, because dust is generated during the grinding process of ceramic clay, the feed inlet needs to be sealed after the ceramic clay is added. Since multiple feeding operations are required during the grinding process, the feed inlet needs to be opened and closed frequently, which reduces its practicality.
[0005] To address the aforementioned problems, the inventors proposed a ceramic clay ball mill for ceramic production, which solves these issues. Utility Model Content
[0006] In order to improve the problems of poor unloading effect and the need for frequent opening and closing of the feed inlet in some existing devices, the purpose of this utility model is to provide a ceramic clay ball mill for ceramic production.
[0007] To solve the above problems, this utility model provides the following solution: a ceramic clay ball mill for ceramic production, comprising two support frames, with a ball milling mechanism rotatably mounted on the top surfaces of the two support frames. A feeding mechanism is provided on one side of the ball milling mechanism. The ball milling mechanism includes a grinding drum, which is rotatably mounted on the top surfaces of the two support frames. A servo motor is provided on one side of the grinding drum, and a gear is fixedly mounted on the output end of the servo motor. A toothed ring is fixedly fitted on the outer surface of the grinding drum, and the toothed ring meshes with the outer surface of the gear. A sealing plate is fixedly mounted on one side of the grinding drum, and a discharge port is opened on the outer surface of the sealing plate. A closing plate is fixedly mounted on one side of the discharge port.
[0008] Preferably, the feeding mechanism includes a support plate located on one side of the support frame. A fixing block is fixedly installed on the top surface of the support plate. A conveying pipe is fixedly installed inside the fixing block. The top end of the conveying pipe is connected to a feed inlet. The end of the conveying pipe away from the feed inlet extends into the interior of the grinding drum, and a baffle is rotatably installed inside the end of the conveying pipe close to the grinding drum.
[0009] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. This utility model has a grinding mechanism that can grind ceramic clay. At the same time, by setting the discharge port on the bottom surface of the grinding drum, it is easier to feed and unload the clay, thereby reducing the accumulation of clay in corners.
[0010] 2. This utility model features a feeding mechanism that allows raw materials to be added. Simultaneously, a rotatable baffle, without obstructing the feeding process, is gravity-driven and resets to block dust generated during grinding. This eliminates the need for manual opening and closing, improving the overall performance. Attached Figure Description
[0011] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0012] Figure 1 This is a schematic diagram of the structure of this utility model.
[0013] Figure 2 This is a schematic diagram of the grinding mechanism of this utility model.
[0014] Figure 3 This is a schematic diagram of the feeding mechanism of this utility model.
[0015] In the diagram: 1. Support frame; 2. Feeding mechanism; 21. Support plate; 22. Baffle; 23. Hinge; 24. Feed inlet; 25. Conveying pipe; 26. Fixing block; 3. Ball mill mechanism; 31. Closing plate; 32. Sealing plate; 33. Gear ring; 34. Grinding roller; 35. Wear-resistant liner; 36. Gear; 37. Support; 38. Servo motor; 39. Discharge port. Detailed Implementation
[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0017] Example: Figure 1-3 As shown, this utility model provides a ceramic clay ball mill for ceramic production, including two support frames 1. The two support frames 1 are used as support components. The ball milling mechanism 3 is rotatably mounted on the top surface of the two support frames 1, so that the ball milling mechanism 3 rotates on the top surface of the support frame 1. A feeding mechanism 2 is provided on one side of the ball milling mechanism 3, which can feed materials.
[0018] The ball milling mechanism 3 includes a grinding roller 34, which serves as the main body of the ball milling mechanism 3. Grinding balls can be placed inside during use. The grinding roller 34 is rotatably mounted on the top surface of the two support frames 1, allowing the grinding roller 34 to rotate. A wear-resistant liner 35 is fixedly installed on the inner surface of the grinding roller 34. The wear-resistant liner 35 is used as prior art and can prevent iron filings from being generated inside the grinding roller 34 during operation.
[0019] A servo motor 38 is provided on one side of the grinding roller 34, and a support 37 is fixedly installed on one side of the support frame 1. The support 37 and the support frame 1 are installed on the same horizontal plane. The servo motor 38 is fixedly installed on the top surface of the support 37, so that the support 37 fixes the servo motor 38.
[0020] A gear 36 is fixedly installed at the output end of the servo motor 38, and a gear ring 33 is fixedly sleeved on the outer surface of the grinding roller 34. The gear ring 33 meshes with the outer surface of the gear 36. Through the cooperation between the gear 36 and the gear ring 33, the grinding roller 34 can be driven to rotate.
[0021] A sealing plate 32 is fixedly installed on one side of the grinding roller 34. The sealing plate 32 can seal one side of the grinding roller 34. A discharge port 39 is opened on the outer surface of the sealing plate 32. The discharge port 39 is located at the eccentric part of the sealing plate 32. One side of the discharge port 39 is at the same horizontal line as the inner wall of the grinding roller 34, which can facilitate unloading. A closing plate 31 is fixedly installed on one side of the discharge port 39. The closing plate 31 can close the discharge port 39.
[0022] The feeding mechanism 2 includes a support plate 21, which is used as a support component. The support plate 21 is located on one side of the support frame 1 and is installed on the same horizontal plane as the support frame 1. A fixing block 26 is fixedly installed on the top surface of the support plate 21 to support the feed port 24.
[0023] The fixed block 26 has a conveying pipe 25 fixedly installed inside it. The top end of the conveying pipe 25 is connected to the feed inlet 24, and the fixed block 26 supports the feed inlet 24.
[0024] The lower part of the conveying pipe 25 is inclined. The end of the conveying pipe 25 away from the feed port 24 extends into the interior of the grinding drum 34. The side of the grinding drum 34 away from the sealing plate 32 is fixedly installed with a loading port. The inclined end of the conveying pipe 25 extends into the interior of the loading port, which can allow the raw material to enter the interior of the grinding drum 34 better.
[0025] Furthermore, a baffle 22 is rotatably installed inside the end of the conveying pipe 25 near the grinding drum 34, and a hinge 23 is fixedly installed on the inner wall of one end of the conveying pipe 25. The baffle 22 is rotatably installed inside the conveying pipe 25 through the hinge 23. The baffle 22 is kept hanging down by gravity, which can block dust and does not hinder the feeding operation.
[0026] Working principle: First, fix the support 37, support frame 1 and support plate 21 at a suitable position on the same horizontal plane. Then, feed the raw material and grinding balls through the feeding mechanism 2, so that the raw material and grinding balls enter the conveying pipe 25 inside the fixed block 26 through the feed port 24, and push the baffle 22, so that the baffle 22 rotates through the hinge 23, thereby allowing the raw material to enter the grinding drum 34.
[0027] Then, the ball mill mechanism 3 is started, causing the servo motor 38 to drive the gear 36 to rotate. The gear 36 drives the gear ring 33 to rotate, and the gear ring 33 drives the grinding drum 34 to rotate on the support frame 1, thereby driving the internal grinding balls to grind the raw materials. After grinding is completed, the discharge port 39 is first moved to the lower part of the sealing plate 32, and then the closing plate 31 is opened. The discharge port 39 is at the same height as the wear-resistant liner 35 inside the grinding drum 34, which makes it easier to unload the material.
[0028] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A ceramic clay ball mill for ceramic production, comprising two support frames (1), characterized in that: The top surfaces of the two support frames (1) are rotatably mounted with a ball mill mechanism (3), and a feeding mechanism (2) is provided on one side of the ball mill mechanism (3). The ball milling mechanism (3) includes a grinding roller (34), which is rotatably mounted on the top surface of two support frames (1). A servo motor (38) is provided on one side of the grinding roller (34), and a gear (36) is fixedly mounted on the output end of the servo motor (38). A toothed ring (33) is fixedly fitted on the outer surface of the grinding roller (34), and the toothed ring (33) meshes with the outer surface of the gear (36). A sealing plate (32) is fixedly mounted on one side of the grinding roller (34), and a discharge port (39) is opened on the outer surface of the sealing plate (32). A closing plate (31) is fixedly mounted on one side of the discharge port (39), and the discharge port (39) is located at the eccentric part of the sealing plate (32).
2. The ceramic clay ball mill for ceramic production according to claim 1, characterized in that: The feeding mechanism (2) includes a support plate (21), which is located on one side of the support frame (1). A fixing block (26) is fixedly installed on the top surface of the support plate (21). A conveying pipe (25) is fixedly installed inside the fixing block (26). The top end of the conveying pipe (25) is connected to the feed inlet (24). The end of the conveying pipe (25) away from the feed inlet (24) extends into the interior of the grinding drum (34), and a baffle (22) is rotatably installed inside the end of the conveying pipe (25) close to the grinding drum (34).
3. A ceramic clay ball mill for ceramic production according to claim 1, characterized in that: A support (37) is fixedly installed on one side of the support frame (1), and the servo motor (38) is fixedly installed on the top surface of the support (37).
4. A ceramic clay ball mill for ceramic production according to claim 1, characterized in that: The inner surface of the grinding roller (34) is fixedly fitted with a wear-resistant liner (35).
5. A ceramic clay ball mill for ceramic production according to claim 2, characterized in that: The grinding roller (34) has a loading port fixedly installed on the side away from the sealing plate (32), and the inclined end of the conveying pipe (25) extends into the loading port.
6. A ceramic clay ball mill for ceramic production according to claim 2, characterized in that: A hinge (23) is fixedly installed on the inner wall of one end of the conveying pipe (25), and the baffle (22) is rotatably installed inside the conveying pipe (25) through the hinge (23).
7. A ceramic clay ball mill for ceramic production according to claim 2, characterized in that: The lower part of the delivery pipe (25) is inclined.