Single layer zircon screening device
Patent Information
- Application Number
- CN202522041313.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-23
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-09-23
AI Technical Summary
[0004]本实用新型所要解决的技术问题是筛分盘在筛分时可能会出现堵塞的问题,目的在于提供一种单层锆石筛选装置,解决筛分盘在筛分时可能会出现堵塞的问题
1、本实用新型一种单层锆石筛选装置,传统防止锆石在筛分盘堵塞的方法费时费力,本实用新型增加一个固定的装置既不用增加其他功耗,又可以防止锆石在筛分盘堵塞。
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Figure CN224793908U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of screening machine technology, specifically to a single-layer zircon screening device. Background Technology
[0002] Traditional zircon screening devices have two screening plates on the screening plate, and each plate has a number of screening discs. Since the motor can only drive two screening plates to move left and right, when small zircon particles are filtered down, large zircon particles will accumulate into a zircon layer that is difficult to screen. At this point, the left and right movement of the screening plates becomes less effective.
[0003] The traditional method for solving clogging of the screening disc involves manual intervention, where a person manually pries aside the difficult-to-screen zircon layer to allow the smaller zircon particles on top to be screened. However, this method is time-consuming and labor-intensive, so solving the problem of clogging of the screening disc during screening is an important research topic. Utility Model Content
[0004] The technical problem to be solved by this utility model is that the screening disc may become clogged during screening. The purpose is to provide a single-layer zircon screening device to solve the problem of clogging of the screening disc during screening.
[0005] This utility model is achieved through the following technical solution: A single-layer zircon screening device includes a base with openings on both sides of its upper surface. A screening plate is positioned above the openings, and several screening discs are placed on the screening plate. A motor is located on the upper surface of the base, between the two openings. A disc is located at the motor's output end, and the disc has connecting rods that are eccentrically connected to the screening plates on both sides. The device also includes shafts on both sides of the screening plates, with several linear bearing seats fixed to the screening plates. The sides of the screening plates with shafts are adjacent to the sides connected to the connecting rods. Several anti-clogging tools are also located on both sides of the screening plates with shafts. The base is used to fix the entire zircon screening device. The openings are used to collect the screened zircon into a fixed location. The screening plates hold several screening discs for screening the zircon. The motor drives the discs to rotate, and each disc has an eccentric shaft connected to a connecting rod. The shaft is used for linear motion of the linear bearing housing, which is fixed on the screening plate. The combination of the shaft and the linear bearing housing can reduce friction, increase the service life of the centrifugal shaft on the motor and disc, and prevent the screening disc from clogging. The tool is used to clean the layer of zircon that is difficult to screen accumulated in the screening disc.
[0006] Furthermore, the fixing base of the tool for preventing clogging of the screening disc is located on the upper surface of the base. The fixing base has a telescopic rod, an extension rod on the side of the telescopic rod facing the screening disc, a fixing rod below the extension rod, and a zircon anti-clogging plate below the fixing rod. The fixing base is fixed in a fixed position on the base. The telescopic rod is used to adjust the height of the zircon anti-clogging plate; it is raised when the screening disc needs to be removed and lowered during use. The extension rod is used to extend the zircon anti-clogging plate to a position above the screening disc, and the fixing rod is used to fix the zircon anti-clogging plate. The zircon anti-clogging plate is used to pry open the accumulated zircon layer.
[0007] Furthermore, the height of the telescopic rod is greater than the height of the screening disc. The telescopic rod must be higher than the screening disc for the zircon anti-clogging plate to be able to extend and retract tightly within the screening disc. Similarly, when removing the screening disc, the zircon anti-clogging plate must be raised so that the screening disc can be removed.
[0008] Furthermore, the height of the zircon anti-clogging plate is less than the height of the screening disc. Since the anti-zircon clogging device is fixed and the screening disc moves left and right, when the zircon anti-clogging plate is placed into the screening disc, only a portion of it needs to be in the screening disc. If the zircon anti-clogging plate is higher than the screening disc, it will actually hinder the screening of zircon.
[0009] Furthermore, the zircon anti-clogging plate is perpendicular to the shaft, and the direction of the zircon anti-clogging plate toward the shaft is its length direction. The length of the zircon anti-clogging plate is less than the length of the screening disc. If the length of the zircon anti-clogging plate is equal to the length of the screening disc, the screening effect will be poor; if it is greater than the length of the screening disc, it will be impossible to insert the plate.
[0010] Furthermore, the number of anti-clogging tools is equal to the number of screening discs. One anti-clogging tool is paired with one screening disc, so the number of anti-clogging tools is equal to the number of screening discs.
[0011] Furthermore, the linear bearing housing contains a linear bearing. The linear bearing can provide low-friction, high-speed linear reciprocating motion, thereby increasing the lifespan of the centrifugal shaft at the disk.
[0012] Furthermore, the shafts on both sides of the screening plate are of equal length and parallel. If the shafts on both sides are not of equal length and are not parallel, then the entire screening plate cannot reciprocate.
[0013] Compared with the prior art, this utility model has the following advantages and beneficial effects: 1. This utility model provides a single-layer zircon screening device. Traditional methods for preventing zircon from clogging the screening disc are time-consuming and labor-intensive. This utility model adds a fixed device, which does not require additional power consumption and can prevent zircon from clogging the screening disc.
[0014] 2. This utility model provides a single-layer zircon screening device, which is equipped with a shaft and a linear bearing seat, effectively increasing the service life of the disc centrifugal shaft. Attached Figure Description
[0015] The accompanying drawings, which are included to provide a further understanding of the embodiments of the present invention and form part of this application, do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a top view of the present invention; Figure 3 This is a schematic diagram showing the connection between the zircon anti-blocking plate and the fixed base in this utility model.
[0016] The attached diagram shows the markings and corresponding component names: 1-Fixed base, 2-Telescopic rod, 3-Extend rod, 4-Zircon anti-clogging plate, 5-Linear bearing seat, 6-Shaft, 7-Base, 8-Fixed rod, 9-Opening, 10-Screening plate, 11-Screening disc, 12-Motor, 13-Disc, 14-Connecting rod. Detailed Implementation
[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings. The illustrative embodiments and descriptions of this utility model are only used to explain this utility model and are not intended to limit this utility model.
[0018] Example: Figure 1 and Figure 2As shown, this utility model discloses a single-layer zircon screening device, which includes a base 7, with openings 9 on both sides of the upper surface of the base 7, a screening plate 10 above the openings 9, and several screening discs 11 placed on the screening plate 10. A motor 12 is located on the upper surface of the base 7 between the two openings 9, and a disc 13 is located at the output end of the motor 12. The disc 13 has connecting rods 14 that are eccentrically connected to the screening plates 10 on both sides. The device also includes shafts 6 on both sides of the screening plate 10, with several linear bearing seats 5 fixed to the screening plate 10 on the shafts 6. The two sides of the screening plate 10 with shafts 6 are adjacent to the side connected to the connecting rods 14. The two sides of the screening plate 10 with shafts 6 also have several tools to prevent the screening discs 11 from clogging. The base 7 is used to fix the entire zircon screening device. The opening 9 is used to collect the screened zircon into a fixed place. The screening plate 10 is used to place a number of screening discs 11. The screening discs 11 are used to screen zircon. The motor 12 drives the disc 13 to rotate. The disc 13 has an eccentric shaft, which is connected to the connecting rod 14. The shaft 6 is used for the linear bearing seat 5 to make linear motion. The linear bearing seat 5 is fixed on the screening plate 10. The combination of the shaft 6 and the linear bearing seat 5 can reduce friction, increase the service life of the centrifugal shaft on the motor 12 and the disc 13, and prevent the screening disc from clogging. Tools are used to clean the layer of zircon that is difficult to screen accumulated in the screening disc 11.
[0019] Specifically, such as Figure 3 As shown, the fixed base 17 of the tool for preventing clogging of the screening disc is located on the upper surface of the base 7. The fixed base 17 has a telescopic rod 2, and an extension rod 3 on the side of the telescopic rod 2 facing the screening disc 11. Below the extension rod 3 is a fixed rod 8, and below the fixed rod 8 is a zircon anti-clogging plate 4. The fixed base 17 is fixed in a fixed position on the base 7. The telescopic rod 2 is used to adjust the height of the zircon anti-clogging plate 4. When the screening disc 11 needs to be removed, the zircon anti-clogging plate 4 is raised; when in use, the zircon anti-clogging plate 4 is lowered. The extension rod 3 is used to extend the zircon anti-clogging plate 4 to a position above the screening disc 11. The fixed rod 8 is used to fix the zircon anti-clogging plate 4, and the zircon anti-clogging plate 4 is used to pry open the accumulated zircon layer.
[0020] Specifically, the height of the telescopic rod 2 is greater than the height of the screening disc 11. The height of the telescopic rod 2 must be higher than the screening disc 11 so that the zircon anti-blocking plate 4 can be extended and retracted tightly inside the screening disc 10. Similarly, when removing the screening disc 11, the zircon anti-blocking plate 4 must be raised so that the screening disc 11 can be removed.
[0021] Specifically, the height of the zircon anti-clogging plate 4 is less than the height of the screening disc 11. Since the zircon anti-clogging device is fixed and the screening disc 10 moves left and right, when the zircon anti-clogging plate 4 is placed into the screening disc 11, only a portion of it needs to be in the screening disc 11. If the zircon anti-clogging plate 4 is higher than the screening disc 11, it will be detrimental to screening zircon.
[0022] Specifically, the zircon anti-clogging plate 4 is perpendicular to the shaft 6, and the direction of the zircon anti-clogging plate 4 toward the shaft 6 is its length direction. The length of the zircon anti-clogging plate 4 is less than the length of the screening disc 11. If the length of the zircon anti-clogging plate 4 is equal to the length of the screening disc 11, the screening effect will be poor; if it is greater than the length of the screening disc 11, it will not be able to be placed inside.
[0023] Specifically, the number of tools for preventing clogging of the screening disc 11 is equal to the number of screening discs 11. One tool for preventing clogging of the screening disc 11 is paired with one screening disc 11, so the number of tools for preventing clogging of the screening disc 11 is equal to the number of screening discs 11.
[0024] Specifically, the linear bearing housing 5 contains a linear bearing. The linear bearing can provide low-friction, high-speed linear reciprocating motion, thereby increasing the lifespan of the centrifugal shaft at the disk 13.
[0025] Specifically, the shafts 6 on both sides of the screening plate 10 are of equal length and parallel. If the shafts 6 on both sides are not of equal length and are not parallel, then the entire screening plate 10 cannot reciprocate.
[0026] The principle of this invention is as follows: First, raise the anti-clogging tool for the screening disc 11 and place it into the fixed groove on the screening plate 10. Then, lower the anti-clogging tool so that the zircon anti-clogging plate 4 is positioned within the screening disc 11. Next, turn on the motor 12. The motor 12 drives the disc 13 to rotate, and the disc 13, through the connecting rod 14, moves the screening plates 10 on both sides left and right. Since the linear bearing seat 5 on the shaft 6 is connected to the screening plate 10, the linear bearing seat 5 facilitates the left and right movement of the screening plate 10. During this period, because the anti-clogging tool for the screening disc is stationary while the screening plate 10 is moving, the zircon anti-clogging plate 4 acts as a stirrer. The zircons in the screening disc 11 fall through the filter screen into the opening 9 of the base 7, below which is the zircon collection box. When screening is complete, raise the anti-clogging tool for the screening disc 11 and remove the screening disc 11.
[0027] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. It should be understood that the above description is only a specific embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A single-layer zircon screening device, comprising a base (7), with openings (9) on both sides of the upper surface of the base (7), a screening plate (10) above the openings (9), a plurality of screening discs (11) placed on the screening plate (10), a motor (12) on the upper surface of the base (7), the motor (12) being located between the two openings (9), a disc (13) at the output end of the motor (12), and a connecting rod (14) on the disc (13) being eccentrically connected to the screening plates (10) on both sides, characterized in that, It also includes shafts (6) on both sides of the screening plate (10), with several linear bearing seats (5) fixed to the screening plate (10) on the shafts (6), and the two sides of the screening plate (10) with shafts (6) adjacent to the side connected to the connecting rod (14), and several tools to prevent the screening plate from clogging on both sides of the screening plate (10) with shafts (6).
2. The single-layer zircon screening device according to claim 1, characterized in that, The fixed base (1) of the tool for preventing clogging of the screening disc is located on the upper surface of the base (7). The fixed base (1) has a telescopic rod (2), and the telescopic rod (2) has an extension rod (3) on the side facing the screening disc (11). Below the extension rod (3) is a fixed rod (8), and below the fixed rod (8) is a zircon anti-clogging plate (4).
3. The single-layer zircon screening device according to claim 2, characterized in that, The height of the telescopic rod (2) is greater than the height of the screening disc (11).
4. The single-layer zircon screening device according to claim 2, characterized in that, The height of the zircon anti-blocking plate (4) is less than the height of the screening disc (11).
5. A single-layer zircon screening device according to claim 2, characterized in that, The zircon anti-blocking plate (4) is perpendicular to the shaft (6), and the direction of the zircon anti-blocking plate (4) toward the shaft (6) is the length direction. The length of the zircon anti-blocking plate (4) is less than the length of the screening disc (11).
6. The single-layer zircon screening device according to claim 1, characterized in that, The number of tools for preventing clogging of the screening disc (11) is equal to the number of screening discs (11).
7. The single-layer zircon screening device according to claim 1, characterized in that, The linear bearing housing (5) contains a linear bearing.
8. A single-layer zircon screening device according to claim 1, characterized in that, The shafts (6) on both sides of the sieve plate (10) are of equal length and are parallel.