Pulverizer for refractory material production

The grinding mill, designed with dual grinding components and an electromagnetic vibration pump, solves the problems of low efficiency and uneven powder delivery in existing grinding mills, achieving efficient, fine and uniform grinding of refractory materials, and is suitable for processing a variety of refractory materials.

CN223888166UActive Publication Date: 2026-02-10ZHENGZHOU AODA REFRACTORY CO LTD
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Patent Information

Application Number
CN202423242996.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2026-02-10
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing grinding mills used for refractory material production are inefficient, have poor quality, and are prone to powder accumulation during the conveying process, failing to meet the processing requirements of various refractory materials.

Method used

It adopts a dual grinding component and electromagnetic vibration pump design. The controller coordinates the motor to drive the grinding blades and grinding rollers to perform multiple grinding operations, and the electromagnetic vibration pump is used to achieve uniform powder delivery. Combined with the inclined material trough and filter plate structure, it ensures that the powder is fine and uniform.

Benefits of technology

It improves the fineness and quality of refractory materials, realizes an efficient, energy-saving and automated grinding process, adapts to different industrial needs, and reduces equipment wear and operating difficulty.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of grinding, and discloses a grinding machine for refractory material production, which comprises a support frame, the outer wall of the support frame is respectively provided with a grinding component and a blanking component, the outer wall of the support frame is fixedly provided with a controller, and the top of the support frame is fixedly provided with a grinding box. A controller transmits signals, telescopic rods can slide from the inner wall of an electric telescopic cylinder to the two sides, a grinding roller can be driven to reciprocate on the inner wall of a discharging hopper through a connecting rod, and therefore the grinding roller can grind refractory materials on the inner wall of the discharging hopper; a motor is started to drive a grinding blade to rotate on the inner wall of the grinding box, so that the grinding blade can grind and grind the refractory material according to the radian of a filter plate II, the powder of the refractory material can be finer and more uniform, and meanwhile, the fineness and quality of the refractory material can be effectively improved; the requirements of different industrial fields are met.
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Description

Technical Field

[0001] This utility model relates to the field of grinding technology, specifically a grinding mill for the production of refractory materials. Background Technology

[0002] The production line equipment and process flow for refractory grinding are crucial for improving the performance of refractory materials. This involves not only the selection and configuration of equipment, but also the optimization and management of the production process.

[0003] Existing grinding mills used for refractory material production generally employ single-pass grinding, and can only grind one type of refractory material at a time. This results in compromised efficiency and quality. Furthermore, existing grinding mills cannot guarantee that the powder will not accumulate during the conveying process after grinding. Therefore, improvements are needed. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a grinding mill for refractory material production, which has the advantages of effectively improving the fineness and quality of refractory materials and producing fine and uniform powder, thus solving the problems mentioned in the background art.

[0005] This utility model provides the following technical solution: a grinding mill for refractory material production, including a support frame, a grinding component and a feeding component respectively provided on the outer wall of the support frame, a controller fixedly installed on the outer wall of the support frame, a grinding box fixedly installed on the top of the support frame, a crushing component provided on the top of the grinding box, a baffle rotatably connected to the outer wall of the grinding box, and a filter plate II fixedly installed on the bottom of the inner wall of the grinding box.

[0006] As a preferred embodiment of this utility model, the grinding assembly includes a motor, a drive wheel is fixedly mounted on the power output shaft of the motor, one end of a belt is rotatably sleeved on the outer wall of the drive wheel, a driven wheel is sleeved on the other end of the belt, a rotating shaft is fixedly mounted on the outer wall of the driven wheel, and a grinding blade is fixedly mounted on the outer wall of the rotating shaft.

[0007] As a preferred embodiment of this utility model, there are two sets of grinding components, and the two sets of grinding components are symmetrically distributed on the outer wall of the support frame. The rotating shaft and grinding blade are located on the inner wall of the grinding box. The motor and the controller are electrically connected, and the motor is fixedly installed on the top of the support frame.

[0008] As a preferred embodiment of this utility model, the feeding assembly includes a material trough, an electromagnetic vibration pump is fixedly installed at the bottom of the material trough, a discharge port is opened on the outer wall of the material trough, a collection trough is provided at the bottom of the material trough, and a recycling box is slidably connected to the inner wall of the collection trough.

[0009] As a preferred embodiment of this utility model, the cross-section of the material trough is inclined, and the material trough is fixedly installed at the bottom of the grinding box, and the electromagnetic vibration pump and the controller are electrically connected.

[0010] As a preferred embodiment of this utility model, the crushing assembly includes a hopper, an electric telescopic cylinder is fixedly installed on the outer wall of the hopper, one end of a telescopic rod is slidably connected to the inner wall of the electric telescopic cylinder, a connecting rod is fixedly assembled on the other end of the telescopic rod, a crushing roller is rotatably sleeved on the outer wall of the connecting rod, a partition is fixedly installed on the inner wall of the hopper, and a filter plate is installed at the bottom of the inner wall of the hopper.

[0011] As a preferred embodiment of this utility model, the electric telescopic cylinder is electrically connected to the controller, the length of the crushing roller is adapted to the width of the inner wall of the hopper, and the crushing roller is located on the inner wall of the hopper, and the filter plate is located at the top of the grinding box.

[0012] Compared with the prior art, the present invention has the following beneficial effects:

[0013] 1. This grinding mill for refractory material production, through a controller transmitting a signal, allows the telescopic rod to slide from the inner wall of the electric telescopic cylinder to both sides. The connecting rod then drives the grinding roller to reciprocate along the inner wall of the hopper, enabling the grinding roller to grind the refractory material on the inner wall of the hopper. Simultaneously, the motor's start-up causes the grinding blades to rotate along the inner wall of the grinding chamber, allowing the grinding blades to crush and grind the refractory material according to the curvature of the filter plate. This results in a finer and more uniform refractory powder, effectively improving the fineness and quality of the refractory material and meeting the needs of various industrial sectors.

[0014] 2. This grinding mill for refractory material production can start an electromagnetic vibration pump by sending a signal through a controller. The electromagnetic vibration pump can vibrate the refractory powder on the inner wall of the trough, so that the powder on the inner wall of the trough can be evenly fed into the inner wall of the recycling box through the discharge port. It has a high degree of automation and can minimize the wear of the refractory powder on the inside of the trough. Therefore, the device has the characteristics of high efficiency, energy saving and environmental protection, adjustable fineness and high degree of automation. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0016] Figure 2 This is a schematic diagram of the other side of the structure of this utility model;

[0017] Figure 3 This is a schematic cross-sectional view of the present invention.

[0018] Figure 4 This is a partial structural diagram of the present invention;

[0019] Figure 5 This is a schematic diagram of the material feeding assembly structure of this utility model.

[0020] In the diagram: 1. Support frame; 2. Grinding assembly; 3. Controller; 4. Feeding assembly; 5. Grinding box; 6. Crushing assembly; 7. Baffle; 8. Filter plate II;

[0021] 201. Motor; 202. Drive pulley; 203. Belt; 204. Driven pulley; 205. Shaft; 206. Grinding blade;

[0022] 401. Feed trough; 402. Electromagnetic vibrating pump; 403. Discharge port; 404. Collection trough; 405. Recycling bin;

[0023] 601. Feed hopper; 602. Electric telescopic cylinder; 603. Telescopic rod; 604. Connecting rod; 605. Compactor roller; 606. Partition plate; 607. Filter plate one. Detailed Implementation

[0024] 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.

[0025] Please see Figure 1 - Figure 5 A grinding mill for refractory material production includes a support frame 1, a grinding component 2 and a feeding component 4 respectively provided on the outer wall of the support frame 1, a controller 3 fixedly installed on the outer wall of the support frame 1, a grinding box 5 fixedly installed on the top of the support frame 1, a crushing component 6 provided on the top of the grinding box 5, a baffle 7 rotatably connected to the outer wall of the grinding box 5, and a filter plate 8 fixedly installed on the bottom of the inner wall of the grinding box 5.

[0026] Using the above structure, the baffle 7 can be opened by rotating the baffle 7 when the device is grinding refractory materials, and water can be sprayed onto the inner wall of the grinding box 5. This helps to avoid the harm of dust generated during operation to the operators.

[0027] In a preferred embodiment, the grinding assembly 2 includes a motor 201, a drive wheel 202 is fixedly mounted on the power output shaft of the motor 201, one end of a belt 203 is rotatably sleeved on the outer wall of the drive wheel 202, a driven wheel 204 is sleeved on the other end of the belt 203, a rotating shaft 205 is fixedly mounted on the outer wall of the driven wheel 204, and a grinding blade 206 is fixedly mounted on the outer wall of the rotating shaft 205.

[0028] In a preferred embodiment, there are two sets of grinding components 2, and the two sets of grinding components 2 are symmetrically distributed on the outer wall of the support frame 1. The rotating shaft 205 and the grinding blade 206 are located on the inner wall of the grinding box 5. The motor 201 is electrically connected to the controller 3, and the motor 201 is fixedly installed on the top of the support frame 1.

[0029] Using the above structure, the controller 3 sends a signal to enable the motor 201 to start working, so that the drive wheel 202 can drive the driven wheel 204 to rotate through the belt 203, so that the rotating shaft 205 can drive the grinding blade 206 to rotate on the inner wall of the grinding box 5, so that the grinding blade 206 can crush and grind the refractory material according to the curvature of the filter plate 8, so that the powder of the refractory material can be finer and more uniform.

[0030] In a preferred embodiment, the feeding assembly 4 includes a material trough 401, an electromagnetic vibration pump 402 is fixedly installed at the bottom of the material trough 401, a discharge port 403 is opened on the outer wall of the material trough 401, a collection trough 404 is provided at the bottom of the material trough 401, and a recycling box 405 is slidably connected to the inner wall of the collection trough 404.

[0031] In a preferred embodiment, the cross-section of the material trough 401 is inclined, and the material trough 401 is fixedly installed at the bottom of the grinding box 5. The electromagnetic vibration pump 402 is electrically connected to the controller 3.

[0032] Using the above structure, the electromagnetic vibration pump 402 can be started by transmitting a signal through the controller 3, so that the electromagnetic vibration pump 402 can vibrate the refractory powder on the inner wall of the trough 401, so that the powder on the inner wall of the trough 401 can be evenly sent into the inner wall of the recycling box 405 through the discharge port 403. It has a high degree of automation and can reduce the wear of the refractory powder on the inside of the trough 401, making it easy to maintain and operate.

[0033] In a preferred embodiment, the crushing assembly 6 includes a hopper 601, an electric telescopic cylinder 602 fixedly installed on the outer wall of the hopper 601, one end of a telescopic rod 603 slidably connected to the inner wall of the electric telescopic cylinder 602, a connecting rod 604 fixedly assembled on the other end of the telescopic rod 603, a crushing roller 605 rotatably sleeved on the outer wall of the connecting rod 604, a partition 606 fixedly installed on the inner wall of the hopper 601, and a filter plate 607 installed at the bottom of the inner wall of the hopper 601.

[0034] Using the above structure, the filter plate 607 can filter out qualified refractory powder, while unqualified powder will remain on the inner wall of the feed hopper 601 and be repeatedly ground.

[0035] In a preferred embodiment, the electric telescopic cylinder 602 is electrically connected to the controller 3, the length of the crushing roller 605 is adapted to the width of the inner wall of the hopper 601, and the crushing roller 605 is located on the inner wall of the hopper 601, and the filter plate 607 is located on the top of the grinding box 5.

[0036] Using the above structure, the controller 3 can send a signal to enable the electric telescopic cylinder 602 to start working, so that the telescopic rod 603 can slide from the inner wall of the electric telescopic cylinder 602 to both sides, and through the connecting rod 604, it can drive the grinding roller 605 to reciprocate on the inner wall of the hopper 601, so that the grinding roller 605 can grind the refractory material on the inner wall of the hopper 601.

[0037] Working principle: When using this device, the refractory material to be ground is placed on the inner wall of the feeding hopper 601. The controller 3 sends a signal to activate the electric telescopic cylinder 602, allowing the telescopic rod 603 to slide from the inner wall of the cylinder to both sides. Through the connecting rod 604, the grinding roller 605 reciprocates on the inner wall of the feeding hopper 601, thus grinding the refractory material on the inner wall. Qualified refractory powder is filtered through the filter plate 607 and falls onto the inner wall of the grinding chamber 5, while unqualified powder remains on the inner wall of the feeding hopper 601 for repeated grinding. The controller 3 sends a signal to activate the motor 201. This allows the drive wheel 202 to drive the driven wheel 204 to rotate via the belt 203, which in turn allows the shaft 205 to drive the grinding blade 206 to rotate on the inner wall of the grinding box 5. This allows the grinding blade 206 to grind the refractory material according to the curvature of the filter plate 28, resulting in finer and more uniform refractory powder. The powder then falls through the filter plate 28 onto the inner wall of the trough 401. The controller 3 sends a signal to start the electromagnetic vibration pump 402, which vibrates the refractory powder on the inner wall of the trough 401. This allows the powder on the inner wall of the trough 401 to be evenly fed into the inner wall of the recovery box 405 through the discharge port 403 for recovery, thus completing the grinding of the refractory material.

[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A grinding mill for refractory material production, comprising a support frame (1), characterized in that: The outer wall of the support frame (1) is provided with a grinding component (2) and a feeding component (4). A controller (3) is fixedly installed on the outer wall of the support frame (1). A grinding box (5) is fixedly installed on the top of the support frame (1). A crushing component (6) is provided on the top of the grinding box (5). A baffle (7) is rotatably connected to the outer wall of the grinding box (5). A filter plate (8) is fixedly installed at the bottom of the inner wall of the grinding box (5).

2. A grinding mill for refractory material production according to claim 1, characterized in that: The grinding assembly (2) includes a motor (201), the power output shaft of the motor (201) is fixedly fitted with a drive wheel (202), one end of a belt (203) is rotatably sleeved on the outer wall of the drive wheel (202), the other end of the belt (203) is sleeved with a driven wheel (204), a rotating shaft (205) is fixedly installed on the outer wall of the driven wheel (204), and a grinding blade (206) is fixedly fitted on the outer wall of the rotating shaft (205).

3. A grinding mill for refractory material production according to claim 2, characterized in that: There are two sets of grinding components (2), and the two sets of grinding components (2) are symmetrically distributed on the outer wall of the support frame (1). The rotating shaft (205) and the grinding blade (206) are located on the inner wall of the grinding box (5). The motor (201) is electrically connected to the controller (3), and the motor (201) is fixedly installed on the top of the support frame (1).

4. A grinding mill for refractory material production according to claim 1, characterized in that: The feeding assembly (4) includes a material trough (401), an electromagnetic vibration pump (402) is fixedly installed at the bottom of the material trough (401), a discharge port (403) is opened on the outer wall of the material trough (401), a collection trough (404) is provided at the bottom of the material trough (401), and a recycling box (405) is slidably connected to the inner wall of the collection trough (404).

5. A grinding mill for refractory material production according to claim 4, characterized in that: The cross-section of the material trough (401) is inclined, and the material trough (401) is fixedly installed at the bottom of the grinding box (5). The electromagnetic vibration pump (402) is electrically connected to the controller (3).

6. A grinding mill for refractory material production according to claim 1, characterized in that: The crushing assembly (6) includes a hopper (601), an electric telescopic cylinder (602) is fixedly installed on the outer wall of the hopper (601), one end of a telescopic rod (603) is slidably connected to the inner wall of the electric telescopic cylinder (602), a connecting rod (604) is fixedly assembled on the other end of the telescopic rod (603), a crushing roller (605) is rotatably sleeved on the outer wall of the connecting rod (604), a partition plate (606) is fixedly installed on the inner wall of the hopper (601), and a filter plate (607) is installed at the bottom of the inner wall of the hopper (601).

7. A grinding mill for refractory material production according to claim 6, characterized in that: The electric telescopic cylinder (602) is electrically connected to the controller (3). The length of the crushing roller (605) is adapted to the width of the inner wall of the hopper (601), and the crushing roller (605) is located on the inner wall of the hopper (601). The filter plate (607) is located on the top of the grinding box (5).