Convenient-to-clean calcium glucarate crushing device
By using a servo motor-driven rotary disc and silicon carbide sleeves and grinding wheels, combined with a damping shock absorber and a powder suction pump, the problem of difficult cleaning of existing equipment has been solved, achieving efficient crushing and automatic discharge of calcium gluconate, and improving the durability and cleaning efficiency of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-03-10
AI Technical Summary
Existing calcium gluconate pulverizers are not convenient for automatic suction and discharge, making it difficult and time-consuming to clean the top of the rotating disc and the inner wall of the sleeve.
The rotating disk is driven by a servo motor, and the sleeve and grinding wheel are made of silicon carbide material. Combined with a damping shock absorber and a powder suction pump, automatic suction and discharge of materials are achieved. The wear resistance and thermal stability of silicon carbide material make it easy to clean.
It achieves efficient pulverization and automatic discharge of calcium gluconate, reducing the time, manpower and material resources required for cleaning, and improving the durability and cleaning efficiency of the equipment.
Smart Images

Figure CN223980538U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of calcium gluconate crushing, particularly to a calcium gluconate crushing device convenient to clean. BACKGROUND
[0002] Calcium gluconate usually refers to calcium gluconate in block form, which is easily soluble in water and also soluble in some organic solvents. In the medical field, it is used as a stabilizer for calcium gluconate injection to improve the stability and effectiveness of the drug, and as a pharmaceutical excipient for the preparation of various tablets, capsules and other solid preparations. In use, it is necessary to use a calcium gluconate crushing device to grind small pieces of calcium gluconate into powder for subsequent processing and production.
[0003] The previous calcium gluconate crushing device has the following shortcomings: 1. It cannot realize automatic suction and discharge, and it is not convenient to clean the grinding wheels on the top of the rotating disc and the inner wall of the sleeve, which is time-consuming and labor-intensive. Therefore, the technical personnel in the field provide a calcium gluconate crushing device convenient to clean to solve the problems raised in the above background technology. CONTENT OF THE UTILITY MODEL
[0004] The main purpose of the utility model is to provide a calcium gluconate crushing device convenient to clean to solve the problems raised in the above background technology.
[0005] To achieve the above purpose, the utility model provides the following technical scheme:
[0006] The calcium gluconate crushing device convenient to clean comprises a base, a horizontal support plate, a sleeve and a rotating disc.
[0007] The top of the base is connected with an ear plate through a damping shock absorber at both ends and a horizontal support plate is welded between the ear plates, the top of the horizontal support plate is installed with a servo motor through a mounting seat and the output shaft of the servo motor is connected with a rotating disc through a connecting disc, the top outer edge of the rotating disc is installed with grinding wheels through bearings at equal distances and conical guide blocks are welded between the grinding wheels, the top of the horizontal support plate is installed with electric cylinders through mounting seats at both ends, the output shaft of the electric cylinder is installed with end blocks through screws and a sleeve is welded between the end blocks, the rotating disc is located at the bottom end of the sleeve, the top of one side of the base is installed with an L-shaped support plate through screws and the top of the L-shaped support plate is installed with a powder suction pump through a mounting seat.
[0008] As a further scheme of the utility model: one end of the servo motor is installed with a servo motor controller through screws, and the output end of the servo motor controller and the input end of the servo motor are electrically connected through wires.
[0009] As a further improvement of this utility model: the top of the sleeve is connected to a sealing top cover via a rotating shaft, and a handle is welded to one end of the top of the sealing top cover.
[0010] As a further improvement of this utility model: both ends of the damping shock absorber are connected to the base and the ear plate respectively through positioning plates and positioning screws.
[0011] As a further embodiment of this utility model: the input port of the powder suction pump is connected to a suction pipe and the output port of the powder suction pump is connected to a discharge pipe. When the powder suction pump is turned on and one end of the suction pipe is aligned with the calcium gluconate powder in the sleeve, automatic suction and discharge are achieved.
[0012] As a further improvement of this utility model: both the sleeve and the grinding wheel are made of silicon carbide material. Since both the sleeve and the grinding wheel are made of silicon carbide material, they have high strength, good wear resistance, good thermal stability, and are durable.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] 1. A servo motor drives a rotating disk to rotate rapidly at the bottom of the sleeve, which in turn drives the grinding wheel at the top to rotate rapidly on the inner wall of the sleeve. Pulling the handle opens the sealed top cover to allow small pieces of calcium gluconate to be added into the sleeve. A conical guide block is used to evenly disperse the small pieces of calcium gluconate and also to guide the material. The small pieces of calcium gluconate enter the gap between the grinding wheel and the inner wall of the sleeve for thorough grinding and pulverization. Both the sleeve and the grinding wheel are made of silicon carbide, which has high strength, good wear resistance, good thermal stability, and is durable.
[0015] 2. During operation, the damping shock absorber effectively provides shock absorption. After crushing, the sealed top cover is opened, the powder suction pump is turned on, and one end of the suction pipe is aligned with the calcium gluconate powder in the sleeve to achieve automatic suction and discharge. After discharge, the electric cylinder drives the sleeve and the sealed top cover to move upward and separate from the rotating disk, which facilitates cleaning of the top of the rotating disk and the inner wall of the sleeve, saving manpower and resources. Attached Figure Description
[0016] Fig. 1 This is a schematic diagram of the overall structure of the easy-to-clean calcium gluconate pulverizer of this utility model.
[0017] Fig. 2 This is a schematic diagram of the internal structure of the sleeve of the easy-to-clean calcium gluconate pulverizer of this utility model.
[0018] Fig. 3 This is a schematic diagram of the structure of the easy-to-clean calcium gluconate pulverizer of this utility model, showing the separation of the sleeve from the rotating disk.
[0019] In the diagram: 1. Ear plate; 2. Damping shock absorber; 3. Positioning plate; 4. Horizontal support plate; 5. Base; 6. L-shaped support plate; 7. Suction pipe; 8. Powder suction pump; 9. Discharge pipe; 10. Handle; 11. Sealing top cover; 12. Sleeve; 13. Rotary disk; 14. End block; 15. Servo motor; 16. Electric cylinder; 17. Servo motor controller; 18. Conical guide block; 19. Grinding wheel. Detailed Implementation
[0020] 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.
[0021] Please see Figs. 1-3 In this embodiment of the utility model, the easy-to-clean calcium gluconate pulverizing device includes a base 5, a horizontal support plate 4, a sleeve 12 and a rotating disk 13.
[0022] The top two ends of the base 5 are connected to ear plates 1 through damping shock absorbers 2, and a horizontal support plate 4 is welded between the ear plates 1. A servo motor 15 is mounted on the top of the horizontal support plate 4 through a mounting seat, and the output shaft of the servo motor 15 is connected to a rotating disk 13 through a connecting plate. Grinding wheels 19 are installed at equal intervals on the top outer edge of the rotating disk 13 through bearings, and a conical guide block 18 is welded between the grinding wheels 19. Electric cylinders 16 are mounted on both ends of the top of the horizontal support plate 4 through mounting seats. The output shaft of the electric cylinder 16 is mounted to end blocks 14 through screws, and a sleeve 12 is welded between the end blocks 14. The rotating disk 13 is located at the bottom of the sleeve 12. An L-shaped support plate 6 is mounted on one side of the top of the base 5 through screws, and a powder suction pump 8 is mounted on the top of the L-shaped support plate 6 through a mounting seat.
[0023] One end of the servo motor 15 is fitted with a servo motor controller 17 via screws. The output end of the servo motor controller 17 is electrically connected to the input end of the servo motor 15 via wires. The servo motor controller 17 automatically controls the rotation speed of the servo motor 15 to meet different usage requirements.
[0024] The top of the sleeve 12 is connected to a sealing top cover 11 via a rotating shaft, and a handle 10 is welded to one end of the top of the sealing top cover 11; pulling the handle 10 opens the sealing top cover 11 to facilitate the addition of small pieces of calcium gluconate into the sleeve 12.
[0025] The damping shock absorber 2 is connected to the base 5 and the ear plate 1 at both ends by positioning plates 3 and positioning screws respectively; the positioning plates 3 and positioning screws facilitate the installation and disassembly of the damping shock absorber 2.
[0026] The powder suction pump 8 has an inlet connected to a suction pipe 7 and an outlet connected to a discharge pipe 9. When the powder suction pump 8 is turned on and one end of the suction pipe 7 is aligned with the calcium gluconate powder in the sleeve 12, automatic suction and discharge are achieved.
[0027] Both the sleeve 12 and the grinding wheel 19 are made of silicon carbide. The use of silicon carbide for both the sleeve 12 and the grinding wheel 19 results in high strength, good wear resistance, good thermal stability, and durability.
[0028] The working principle of this utility model is as follows: A servo motor 15 drives a rotating disk 13 to rotate rapidly at the bottom of the sleeve 12, thereby driving the grinding wheel 19 at the top to rotate rapidly on the inner wall of the sleeve 12. Pulling the handle 10 opens the sealing top cover 11, facilitating the addition of small pieces of calcium gluconate into the sleeve 12. The conical guide block 18 evenly disperses the small pieces of calcium gluconate and also serves as a guide. The small pieces of calcium gluconate enter the gap between the grinding wheel 19 and the inner wall of the sleeve 12 for thorough grinding and pulverization. The sleeve 12 and the grinding wheel 19... All 9 are made of silicon carbide material, which has high strength, good wear resistance, good thermal stability, and is durable. During operation, the damping shock absorber 2 effectively plays a role in shock absorption. After crushing, the sealing top cover 11 is opened, the powder suction pump 8 is turned on, and one end of the suction pipe 7 is aligned with the calcium gluconate powder in the sleeve 12 to realize automatic suction and discharge. After discharge, the electric cylinder 16 drives the sleeve 12 and the sealing top cover 11 to move upward and separate from the rotating disk 13, which facilitates the cleaning of the top of the rotating disk 13 and the inner wall of the sleeve 12, saving manpower and material resources.
[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A calcium mesoxalate crushing device convenient to clean, comprising a base (5), a horizontal support plate (4), a sleeve (12) and a rotating disc (13); characterized in that; The top of the base (5) is connected with an ear plate (1) at both ends through a damping shock absorber (2), and a horizontal support plate (4) is welded between the ear plates (1); a servo motor (15) is installed on the top of the horizontal support plate (4) through a mounting seat, and the output shaft of the servo motor (15) is connected with a rotating disc (13) through a connecting disc; abrasive wheels (19) are installed equidistantly on the top outer edge of the rotating disc (13) through bearings, and tapered material guide blocks (18) are welded between the abrasive wheels (19); electric cylinders (16) are installed on the top of the horizontal support plate (4) at both ends through mounting seats; end blocks (14) are installed on the output shaft of the electric cylinders (16) through screws, and a sleeve (12) is welded between the end blocks (14); the rotating disc (13) is located at the bottom end in the sleeve (12); an L-shaped support plate (6) is installed on the top of one side of the base (5) through screws, and a powder suction pump (8) is installed on the top of the L-shaped support plate (6) through a mounting seat.
2. The calcium glucarate comminution device of claim 1, wherein: One end of the servo motor (15) is installed with a servo motor controller (17) through screws, and the output end of the servo motor controller (17) is electrically connected with the input end of the servo motor (15) through wires.
3. The calcium glucarate comminution device of claim 1, wherein: The top of the sleeve (12) is connected with a sealing top cover (11) through a rotating shaft, and a handle (10) is welded on the top end of the sealing top cover (11).
4. The calcium glucarate comminution device of claim 1, wherein: Both ends of the damping shock absorber (2) are connected with the base (5) and the ear plate (1) respectively through positioning plates (3) and positioning screws.
5. The calcium glucarate comminution device of claim 1, wherein: The suction pipe (7) is connected with the input port of the powder suction pump (8), and the discharge pipe (9) is connected with the output port of the powder suction pump (8).
6. The calcium glucarate comminution device of claim 1, wherein: The sleeve (12) and the abrasive wheel (19) are made of silicon carbide material.