Impurity remover
By using an L-shaped plate and a magnetic rod structure embedded in a rectangular tube in the production of calcium oxide powder, the problems of low iron chip removal ability and inconvenient cleaning are solved, and efficient impurity removal and convenient cleaning are achieved.
Patent Information
- Application Number
- CN202422273322.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-09-18
AI Technical Summary
In the prior art, calcium oxide powder has the problem of low iron filings removal capability and inconvenience in cleaning during the production process.
A debris remover is designed, which adopts an L-shaped plate and a magnetic rod structure embedded in a rectangular tube. The L-shaped plate is provided with a notch and a column. The magnetic rod absorbs iron chips. Combined with a rotating seat and a pressure wheel structure, it is easy to clean the iron chips.
The impurity removal ability of iron chips is improved, the cleaning process of iron chips is simplified, and the efficiency of powder conveying and impurity removal effect are improved.
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Figure CN223337501U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of powder material impurity removal, in particular to an impurity remover. Background Art
[0002] During the production process, powders such as calcium oxide are crushed by iron-based crushing machinery, resulting in a large amount of iron filings on the inner walls of the powder. If these iron filings are not removed, they can easily affect the quality of the product. Existing methods involve adding multiple strong magnetic rods in the pipeline. When the powder passes through the strong magnetic rods, the strong magnetic rods can absorb the iron filings in the powder, thereby achieving the purpose of impurity removal. However, to ensure the throughput of the powder during transportation, the strong magnetic rods are spaced relatively large. However, the large gaps between the strong magnetic rods reduce the impurity removal ability and make it inconvenient to clean up the iron filings after impurity removal is completed. Utility Model Content
[0003] The utility model provides a debris remover to solve the above-mentioned deficiencies in the prior art, and solves the problems of low debris removal ability and inconvenience in cleaning of iron filings, etc., and has strong practicality.
[0004] In order to achieve the purpose of this utility model, the following technologies are proposed:
[0005] A debris remover comprises a rectangular tube body, two pairs of windows are respectively provided on opposite sides of the rectangular tube body, inner panels are provided in the windows, outer panels are provided on the outer walls of one pair of inner panels, a plurality of L-shaped panels arranged in an array at equal intervals are provided between each pair of inner panels located at the same height, the bending parts of the L-shaped panels are arranged upward, a plurality of notches are provided on both sides of the L-shaped panels, a magnetic rod is provided on the lower side of the L-shaped panels, the magnetic rod is provided at the corner of the L-shaped panels, the L-shaped panels can reduce the resistance when powder passes through, thereby facilitating the transportation of the powder, and the provision of the notches, etc., facilitates the adsorption of iron chips by the magnetic rod, and then causes the iron chips to be adsorbed to the bottom of the magnetic rod, thereby preventing the powder from falling off the magnetic rod due to the impact force when the powder is transported.
[0006] Furthermore, in order to improve the ability to remove impurities such as iron filings, the L-shaped plate located at the lower layer is located in the gap between two adjacent L-shaped plates located at the upper layer.
[0007] Furthermore, in order to avoid the inconvenience of removing impurities from the agglomerated powder during transportation, a column is provided between two adjacent notches, and the column is provided on the L-shaped plate.
[0008] Furthermore, in order to reduce the resistance during powder transportation, the inner wall of the column is set to a wedge-shaped structure.
[0009] Furthermore, in order to facilitate the removal of magnetic rods, etc. and carry out cleaning operations, a pair of rotating seats are installed on one side of the rectangular tube body. The outer end of the rotating seat is rotatably provided with a rotating plate, and outer extension rods are provided on both sides of the rotating plate. The outer end of the outer extension rod is provided with an inner rod, and the outer end of the inner rod is rotatably provided with a pressure wheel. A plurality of spring pins are provided at both ends of the outer plate, and the inner end of the spring pin is sleeved with a spring. The outer end of the spring is provided with a movable plate, the spring pin is passed through the movable plate, and an outer convex plate is provided on the movable plate. The outer end of the outer convex plate is formed with an inclined wall, and the outer wall of the outer convex plate is tangent to the outer periphery of the pressure wheel.
[0010] Furthermore, in order to facilitate the rotation operation of the rotating plate, a handle is provided at the outer end of the rotating plate.
[0011] The advantages of the above technical solution are:
[0012] The utility model can improve the ability to remove impurities such as iron filings in powder materials and facilitate the cleaning operation of the iron filings and the like. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to make the purpose, technical solutions and advantages of the present invention more clear, the present invention will be described in further detail below with reference to the accompanying drawings.
[0014] Figure 1 Shows a three-dimensional structure of one embodiment Figure 1 .
[0015] Figure 2 Shows a three-dimensional structure of one embodiment Figure 2 . DETAILED DESCRIPTION
[0016] like Figure 1~Figure 2 As shown, a debris remover includes a rectangular tube body 1, two pairs of windows are respectively opened on opposite sides of the rectangular tube body 1, and inner panels 36 are provided in the windows. An outer panel 3 is provided on the outer wall of one pair of inner panels 36.
[0017] A plurality of L-shaped plates 35 arranged in an evenly spaced array are provided between each pair of embedded plates 36 located at the same height. The bending parts of the L-shaped plates 35 are set upward. A plurality of notches 37 are opened on both sides of the L-shaped plates 35. A column 38 is provided between two adjacent notches 37. The inner wall of the column 38 is a wedge-shaped structure. The column 38 is provided on the L-shaped plate 35. A magnetic rod is provided on the lower side of the L-shaped plate 35. The magnetic rod is provided at the corner of the L-shaped plate 35. The L-shaped plate 35 located on the lower layer is located in the gap between the two adjacent L-shaped plates 35 located on the upper layer.
[0018] A pair of rotating seats 2 are installed on one side of the rectangular tube body 1. A rotating plate 20 is rotatably provided at the outer end of the rotating seat 2. A handle 21 is provided at the outer end of the rotating plate 20. Extension rods 22 are provided on both sides of the rotating plate 20. An inner rod is provided at the outer end of the extension rod 22. A pressure wheel 23 is rotatably provided at the outer end of the inner rod. A plurality of spring pins 30 are provided at both ends of the outer plate 3. A spring 31 is sleeved on the inner end of the spring pin 30. A movable plate 32 is provided at the outer end of the spring 31. The spring pin 30 passes through the movable plate 32. An outer convex plate 33 is provided on the movable plate 32. The outer end of the outer convex plate 33 is formed with an inclined wall 34. The outer wall of the outer convex plate 33 is tangent to the outer periphery of the pressure wheel 23.
[0019] In this embodiment, when removing impurities, the powder is transported into the rectangular tube body 1 through the pipeline. When the powder passes through the rectangular tube body 1, the L-shaped plate 35 will adsorb impurities such as iron filings in the powder, and the agglomerated powder will be broken by the edges of the column 38 and the L-shaped plate 35, and the removed iron filings will be adsorbed on the magnetic rod.
[0020] In this embodiment, when cleaning the iron filings and the like after removal, the operator rotates the rotating plate 20 through the handle 21. The rotation of the rotating plate 20 will drive the pressure wheel 23 to roll outward, thereby moving the pressure wheel 23 out of the range of the outer plate 3, and then pull the debris remover out of the rectangular tube body 1, and then clean the iron filings on the magnetic rod until the cleaning is completed.
[0021] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Obviously, those skilled in the art may make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Therefore, if such modifications and variations fall within the scope of the claims and their equivalents, the present invention is intended to include such modifications and variations.
Claims
1. A cleaner, characterized in that: It comprises a rectangular tube body (1), two pairs of windows are respectively provided on opposite sides of the rectangular tube body (1), inner panels (36) are provided in the windows, and an outer panel (3) is provided on the outer wall of one pair of inner panels (36); A plurality of L-shaped plates (35) arranged in an array at equal intervals are provided between each pair of inner panels (36) located at the same height. The bending portions of the L-shaped plates (35) are arranged upwards. A plurality of notches (37) are provided on both sides of the L-shaped plates (35). A magnetic rod is provided on the lower side of the L-shaped plates (35), and the magnetic rod is provided at the corner of the L-shaped plates (35).
2. The impurity remover according to claim 1, characterized in that: The L-shaped plate (35) located at the lower layer is located at the interval between two adjacent L-shaped plates (35) located at the upper layer.
3. The impurity remover according to claim 1, characterized in that: A column (38) is provided between two adjacent notches (37), and the column (38) is provided on the L-shaped plate (35).
4. The impurity remover according to claim 3, characterized in that: The inner wall of the column (38) is a wedge-shaped structure.
5. The impurity remover according to claim 1, characterized in that: A pair of rotating seats (2) are installed on one side of the rectangular tube body (1), and a rotating plate (20) is rotatably provided at the outer end of the rotating seat (2), and an extension rod (22) is provided on both sides of the rotating plate (20), and an inner rod is provided at the outer end of the extension rod (22), and a pressure wheel (23) is rotatably provided at the outer end of the inner rod, and a plurality of spring pins (30) are provided at both ends of the outer plate (3), and a spring (31) is provided on the inner end of the spring pin (30), and a movable plate (32) is provided on the outer end of the spring (31), and the spring pin (30) is passed through the movable plate (32), and an outer convex plate (33) is provided on the movable plate (32), and an outer end of the outer convex plate (33) is formed with an inclined wall (34), and the outer wall of the outer convex plate (33) is tangent to the outer periphery of the pressure wheel (23).
6. The impurity remover according to claim 5, characterized in that: A handle (21) is provided at the outer end of the rotating plate (20).