Screening machine for processing selenium-rich tablets
By designing a selenium-rich sheet screening machine with a turntable and electric slide rail system, the problems of particle size classification and damage in the existing technology are solved, and the particle size classification collection and protection effect is achieved, and the screening efficiency and quality are improved.
Patent Information
- Application Number
- CN202422034855.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-21
AI Technical Summary
Existing selenium-rich sheet screening machines are difficult to sort and screen according to particle size, and selenium-rich sheets are easily damaged due to impact force and collision during the screening process.
A screening machine for selenium-rich sheet processing is designed. The grooves and electric slide rail systems are driven by the turntable to realize the particle size classification and collection of selenium-rich sheets, and the drop impact force and collision are reduced through the buffering cutting structure. The solenoid valve is used to control the cutting path.
The particle size classification collection and protection of selenium-rich sheets is realized, which reduces damage and improves screening efficiency and product quality.
Smart Images

Figure CN223056131U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of selenium-rich tablet processing, in particular to a screening machine for processing selenium-rich tablets. Background Technique
[0002] Selenium-rich tablets are a kind of nutritional supplement rich in selenium elements, which are usually used to improve human immunity, antioxidant, anti-aging and other aspects. The screening of selenium-rich tablets refers to screening and classifying them to ensure the quality and uniformity of the products.
[0003] A screening machine for processing selenium-rich tea leaves with the patent number of CN215784829U disclosed in the Chinese patent includes: a screening box, an inlet is arranged at the top end of the screening box; a screening dish, the screening dish is arranged on the screening box; a screening member, the screening member is arranged inside the screening box. The utility model preliminarily screens the tea leaves through the screening dish to filter out large sundries such as tree leaves and branches; the screening box conducts secondary screening on the tea leaves to filter out tea leaf fragments. Conducting secondary screening on the tea leaves ensures the screening effect of the tea leaves.
[0004] At present, during the screening process of selenium-rich tablets, most of them only screen the impurities in the selenium-rich tablets, and cannot classify and screen according to the particle size of the selenium-rich tablets. Secondly, the impact force of the screened selenium-rich tablets is relatively large when they fall, which is easy to cause damage to the selenium-rich tablets. Therefore, it is necessary to propose a screening machine for processing selenium-rich tablets to solve the above-mentioned problems. Content of the Utility Model
[0005] The purpose of the utility model is to provide a screening machine for processing selenium-rich tablets, which has the effect of classifying and collecting and storing according to different particle sizes of selenium-rich tablets. Secondly, it reduces the falling distance and impact force of selenium-rich tablets, as well as the collision between selenium-rich tablets, thereby realizing the protection effect on selenium-rich tablets.
[0006] To achieve the above purpose, the utility model provides the following technical solution: A screening machine for processing selenium-rich tablets, including a fixed disk, the upper end surface of the fixed disk is communicated with a feed inlet, a turntable is installed inside the fixed disk, a motor with an output end fixedly connected to the turntable is installed on the front end surface of the fixed disk, a plurality of annularly distributed grooves are opened on the outer wall of the turntable, a collection box is arranged below the fixed disk, and the lower end surface of the fixed disk is respectively communicated with a first discharge pipe, a second discharge pipe and a third discharge pipe that are communicated with the collection box and solenoid valves are installed on the outer walls of all of them;
[0007] The interior of the aggregate bin is separated by a partition to form a first cavity, a second cavity, and a third cavity that are distributed in sequence from left to right. Inside the first cavity, the second cavity, and the third cavity, there are buffer feeding structures with the same composition and function. The buffer feeding structure includes first electric sliding rails on the left and right sides of the inner wall of the first cavity. On the outer walls of the two first electric sliding rails, there are moving plates slidably connected through electric sliding sleeves. On the upper end surface of the moving plate, an opening is penetrated and opened on the left side. Inside the opening, there is a baffle plate movably connected through a movable shaft. Between one side of the baffle plate and the right side of the opening, there is an electromagnetic plate.
[0008] In order to push the selenium-rich tablets accumulated on the upper end surface of the moving plate through the opening onto the filter plate for collection, as an optimization of the screening machine for processing selenium-rich tablets of the present utility model, on the front and rear sides of the inner walls of the first cavity, the second cavity, and the third cavity, there are second electric sliding rails installed. On the upper end surface of the moving plate, there is a pushing plate that abuts against and is slidably connected to the second electric sliding rails through electric sliding sleeves.
[0009] In order to classify the selenium-rich tablets according to particle size, as an optimization of the screening machine for processing selenium-rich tablets of the present utility model, the pipe orifice diameters of the first discharge pipe, the second discharge pipe, and the third discharge pipe increase in sequence.
[0010] In order to filter the residual powder in the classified selenium-rich tablets, as an optimization of the screening machine for processing selenium-rich tablets of the present utility model, filter plates are installed inside the first cavity, the second cavity, and the third cavity.
[0011] In order to take out the classified selenium-rich tablets, as an optimization of the screening machine for processing selenium-rich tablets of the present utility model, a box door is hinged on the front end surface of the aggregate bin.
[0012] In order to control the normal operation of the motor, the first electric sliding rails, the solenoid valves, the electromagnetic plates, and the second electric sliding rails, as an optimization of the screening machine for processing selenium-rich tablets of the present utility model, a control panel is installed on the outer wall of the aggregate bin, including the motor, the first electric sliding rails, the solenoid valves, the electromagnetic plates, and the second electric sliding rails.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0014] When the turntable drives the groove and the selenium-rich tablets inside it to rotate to the lower part, the present utility model can respectively classify and collect the selenium-rich tablets of small, medium, and large particle sizes through the matching first discharge pipe, second discharge pipe, and third discharge pipe, thereby achieving the effect of classifying and storing the selenium-rich tablets according to different particle sizes.
[0015] Secondly, when the selenium-rich tablets fall into the first cavity, the second cavity and the third cavity, the moving plate can be lifted upward, so that the selenium-rich tablets fall on the upper end surface of the moving plate. Since the falling distance between the moving plate and the selenium-rich tablets is relatively short, the impact force of the falling selenium-rich tablets and the collision between the selenium-rich tablets can be reduced, thereby preventing breakage. When a large number of selenium-rich tablets fall on the upper end surface of the moving plate, the baffle rotates under the action of the movable shaft to open the opening, and the selenium-rich tablets fall from the opening, thereby reducing the falling distance of the selenium-rich tablets, and thus achieving the protection effect on the selenium-rich tablets. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is the overall structure diagram of the present invention;
[0017] Figure 2 is the three-dimensional structure diagram of the moving plate of the present invention;
[0018] Figure 3 is the three-dimensional structure diagram of the aggregate box of the present invention.
[0019] In the figure: 1, fixed disk; 101, feed inlet; 2, turntable; 201, groove; 202, motor; 203, first discharge pipe; 204, second discharge pipe; 205, third discharge pipe; 3, aggregate box; 301, first cavity; 302, second cavity; 303, third cavity; 304, filter plate; 4, first electric slide rail; 401, moving plate; 402, opening; 403, baffle; 404, electromagnetic plate; 5, push plate; 501, second electric slide rail; 6, control panel. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] Please refer to Figures 1 to 3 , a screening machine for processing selenium-rich tablets, including a fixed disk 1, the upper end surface of the fixed disk 1 is communicated with a feed inlet 101, a turntable 2 is installed inside the fixed disk 1, a motor 202 with an output end fixedly connected to the turntable 2 is installed on the front end surface of the fixed disk 1, a plurality of annularly distributed grooves 201 are formed on the outer wall of the turntable 2, an aggregate box 3 is arranged below the fixed disk 1, and the lower end surface of the fixed disk 1 is respectively communicated with a first discharge pipe 203, a second discharge pipe 204 and a third discharge pipe 205 which are communicated with the aggregate box 3 and solenoid valves are installed on their outer walls;
[0021] The interior of the collecting box 3 is divided by partitions to form a first cavity 301, a second cavity 302 and a third cavity 303 which are distributed from left to right in sequence. The first cavity 301, the second cavity 302 and the third cavity 303 are all installed with a buffer unloading structure with the same composition and function. The buffer unloading structure includes a first electric slide rail 4 located on the left and right sides of the inner wall of the first cavity 301. The outer walls of the two first electric slide rails 4 are slidably connected to a movable plate 401 through an electric sliding sleeve. An opening 402 is penetrated on the left side of the upper end surface of the movable plate 401. The interior of the opening 402 is movably connected to a baffle 403 through a movable shaft. An electromagnetic plate 404 is installed between one side of the baffle 403 and the right side of the opening 402.
[0022] In this embodiment: the selenium-rich tablets are put in through the feed port 101, and the motor 202 drives the turntable 2 to rotate counterclockwise, so that the selenium-rich tablets fall into the groove 201. When the turntable 2 drives the groove 201 and the selenium-rich tablets inside it to rotate downward, the small, medium and large particle sizes of the selenium-rich tablets can be respectively passed through the matching first discharge pipe 203, the second discharge pipe 204 and the third discharge pipe 205, and then enter the first cavity 301, the second cavity 302 and the third cavity 303 for classification and collection, thereby achieving the effect of collecting and storing the selenium-rich tablets according to their different particle sizes;
[0023] Secondly, when the selenium-rich tablets fall into the first cavity 301, the second cavity 302 and the third cavity 303, the first electric slide rail 4 can drive the movable plate 401 to move upward until it is close to the position where the first discharge pipe 203, the second discharge pipe 204 and the third discharge pipe 205 are connected to the collecting box 3, and then the selenium-rich tablets can fall on the upper end surface of the movable plate 401. Since the falling distance between the movable plate 401 and the selenium-rich tablets is relatively close, the impact force of the falling selenium-rich tablets and the collision between the selenium-rich tablets to cause damage can be reduced. When a large number of selenium-rich tablets fall from the upper end surface of the movable plate 401, the first electric slide rail 4 drives the movable plate 401 to move downward, and at the same time, the electromagnetic plate 404 is disconnected, and the baffle 403 rotates under the action of the movable shaft to open the opening 402 (as shown in the attached figure). Figure 1 As shown), the selenium-rich sheet on the upper end surface of the movable plate 401 is pushed down through the opening 402 by the push plate 5, thereby reducing the falling distance of the selenium-rich sheet, thereby achieving the protection effect on the selenium-rich sheet.
[0024] As a technical optimization solution of the utility model, second electric slide rails 501 are installed on the front and rear sides of the inner walls of the first cavity 301, the second cavity 302 and the third cavity 303, and the upper end surface of the movable plate 401 is abutted against a push plate 5 which is slidably connected to the second electric slide rail 501 through an electric sliding sleeve.
[0025] In this embodiment: The second electric slide rail 501 is operated to drive the electric sliding sleeve to drive the push plate 5 to move leftward on the upper end surface of the moving plate 401, so that the selenium-rich tablets accumulated on the upper end surface of the moving plate 401 can be pushed through the opening 402 onto the filter plate 304 for collection.
[0026] As a technical optimization scheme of the present utility model, the pipe orifice diameters of the first discharge pipe 203, the second discharge pipe 204, and the third discharge pipe 205 increase in sequence.
[0027] In this embodiment: By the pipe orifice diameters of the first discharge pipe 203, the second discharge pipe 204, and the third discharge pipe 205 increasing in sequence, the selenium-rich tablets can be classified according to particle size respectively.
[0028] As a technical optimization scheme of the present utility model, filter plates 304 are installed inside the first cavity 301, the second cavity 302, and the third cavity 303.
[0029] In this embodiment: The residual powder in the classified selenium-rich tablets can be filtered through the filter plate 304.
[0030] As a technical optimization scheme of the present utility model, a box door is hinged to the front end surface of the aggregate box 3.
[0031] In this embodiment: The classified selenium-rich tablets can be taken out by opening the box door.
[0032] As a technical optimization scheme of the present utility model, a control panel 6 is installed on the outer wall of the aggregate box 3, including the motor 202, the first electric slide rail 4, the solenoid valve, the electromagnetic plate 404, and the second electric slide rail 501.
[0033] In this embodiment: The motor 202, the first electric slide rail 4, the solenoid valve, the electromagnetic plate 404, and the second electric slide rail 501 can be controlled to work properly through the control panel 6.
[0034] Working principle: First, the selenium-rich tablets are put in through the feed inlet 101, and at the same time, the motor 202 drives the turntable 2 to rotate counterclockwise, so that the selenium-rich tablets fall into the groove 201. When the turntable 2 drives the groove 201 and the selenium-rich tablets inside to rotate to the lower part, the solenoid valve is opened, and the selenium-rich tablets can pass through the first discharge pipe 203, the second discharge pipe 204, and the third discharge pipe 205 that match their small, medium, and large particle sizes respectively, and then enter the first cavity 301, the second cavity 302, and the third cavity 303 for classified collection, thereby achieving the effect of classifying and storing the selenium-rich tablets according to different particle sizes;
[0035] Secondly, when the selenium-rich sheet falls into the first cavity 301, the second cavity 302 and the third cavity 303, the first electric slide rail 4 can drive the movable plate 401 to move upward until it is close to the position where the first discharge pipe 203, the second discharge pipe 204 and the third discharge pipe 205 are connected to the collecting box 3, and then the selenium-rich sheet can be made to fall on the upper end surface of the movable plate 401. Because the falling distance between the movable plate 401 and the selenium-rich sheet is relatively close, the impact force of the falling selenium-rich sheet and the collision between the selenium-rich sheets to cause damage can be reduced. When a large number of selenium-rich sheets fall from the upper end surface of the movable plate 401, the solenoid valve is closed to allow the first electric slide rail 4 to drive the movable plate 401 to move downward until the distance between the movable plate 401 and the filter plate 304 is slightly greater than the length of the baffle 403 to avoid affecting the rotation of the baffle 403. At the same time, the electromagnetic plate 404 is disconnected, and the baffle 403 rotates under the action of the movable shaft to open the opening 402 (as shown in the attached figure). Figure 1 As shown), the second electric slide rail 501 is put into operation, prompting the electric sleeve to drive the push plate 5 to move leftward on the upper end surface of the movable plate 401, so that the selenium-rich sheets accumulated on the upper end surface of the movable plate 401 can be pushed to fall from the opening 402, thereby reducing the falling distance of the selenium-rich sheets, thereby achieving the protection effect on the selenium-rich sheets.
[0036] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A screening machine for processing selenium-rich tablets, including a fixed disk (1), and the upper end surface of the fixed disk (1) is communicated with a feed inlet (101), characterized in that: Inside the fixed disk (1), a rotating disk (2) is installed. At the front end face of the fixed disk (1), a motor (202) with an output end fixedly connected to the rotating disk (2) is installed. On the outer wall of the rotating disk (2), a plurality of annularly distributed grooves (201) are provided. Below the fixed disk (1), a collecting box (3) is arranged. At the lower end face of the fixed disk (1), a first discharge pipe (203), a second discharge pipe (204), and a third discharge pipe (205) which are all communicated with the collecting box (3) and have solenoid valves installed on their outer walls are respectively communicated. Inside the collecting box (3), a first cavity (301), a second cavity (302), and a third cavity (303) which are distributed in sequence from left to right are formed by partitions. Inside the first cavity (301), the second cavity (302), and the third cavity (303), buffer discharging structures with the same composition and function are installed. The buffer discharging structure includes first electric slide rails (4) on the left and right sides of the inner wall of the first cavity (301). On the outer walls of the two first electric slide rails (4), a moving plate (401) is slidably connected through an electric sliding sleeve. On the upper end face of the moving plate (401), an opening (402) is penetrated and opened on the left side. Inside the opening (402), a baffle (403) is movably connected through a movable shaft. Between one side of the baffle (403) and the right side of the opening (402), an electromagnetic plate (404) is installed.
2. The screening machine for processing selenium-rich tablets according to claim 1, characterized in that: On the front and rear sides of the inner walls of the first cavity (301), the second cavity (302), and the third cavity (303), second electric slide rails (501) are installed. On the upper end face of the moving plate (401), a push plate (5) which is slidably connected to the second electric slide rail (501) through an electric sliding sleeve is abutted.
3. The screening machine for processing selenium-rich tablets according to claim 1, wherein: The pipe orifice diameters of the first discharge pipe (203), the second discharge pipe (204), and the third discharge pipe (205) gradually increase in sequence.
4. A screening machine for processing selenium-rich tablets according to claim 1, characterized in that: Inside the first cavity (301), the second cavity (302), and the third cavity (303), filter plates (304) are installed.
5. The screening machine for processing selenium-rich tablets according to claim 1, characterized in that: At the front end face of the collecting box (3), a box door is hinged.
6. The screening machine for processing selenium-rich tablets according to claim 1, wherein: On the outer wall of the collecting box (3), a control panel (6) is installed, including the motor (202), the first electric slide rail (4), the solenoid valve, the electromagnetic plate (404), and the second electric slide rail (501).
Citation Information
Patent Citations
Screening machine for selenium-enriched tea processing
CN215784829U