Iron removal tool

By designing an iron removal tool including rectangular tubes, strong magnetic rods, blades and motors, the problems of limited adsorption capacity and inconvenient cleaning of strong magnetic rods are solved, and more efficient iron-containing substance removal and graphite quality improvement are achieved.

CN222889937UActive Publication Date: 2025-05-23SICHUAN HECHANG XINNENG NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421732897.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-05-23
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

In the prior art, the adsorption capacity of the strong magnetic rod is limited, and it is not convenient to remove magnetic substances on the strong magnetic rod, which affects the quality and production efficiency of graphite.

Method used

An iron removal tool is designed, including rectangular tubes, strong magnetic rods, blades and motors. The conveying of graphite is accelerated through the rotation of the blades, and iron-containing substances are adsorbed through the strong magnetic rods, which facilitates the cleaning of fins and strong magnetic rods.

Benefits of technology

It improves the removal effect of iron-containing substances, simplifies cleaning operations, and improves graphite quality and production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222889937U_ABST
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Abstract

An iron removal tool comprises a rectangular pipe, flanges are arranged at the upper end and the lower end of the rectangular pipe respectively, and the rectangular pipe is installed on all process sections through the flanges. A first side plate is installed on the rectangular pipe, a spline shaft is rotatably arranged on the first side plate, a second side plate is installed on the rectangular pipe, the second side plate and the first side plate are oppositely arranged, a motor is installed on the second side plate, a rotating shaft is connected to an output shaft of the motor, a plurality of blades are arranged on the periphery of the rotating shaft, and the blades are magnetic. The spline shaft penetrates through the other end of the rotating shaft, third side plates are installed on the other two side walls of the rectangular pipe, a plurality of strong magnetic rods are arranged on the inner walls of the third side plates, and the rotating shaft is located between the strong magnetic rods.
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Description

Technical Field

[0001] The utility model relates to the technical field of graphite production, in particular to an iron removal tool. Background Art

[0002] Most of the equipment used for storage, transportation, and preparation of graphite during the production process is made of iron. Therefore, the iron content in the graphite is relatively high after production, and the iron-containing substances affect the quality of the graphite. For example, when graphite is used in the production of batteries, the iron content needs to be strictly controlled. The conventional practice is to use strong magnets to adsorb magnetic substances, thereby reducing the iron content of each process section. In addition, strong magnets are often processed into rods and arranged in multiple arrays in the iron removal device. When the iron-containing substances pass through the strong magnetic rods, they are adsorbed. However, due to the need to ensure the amount of graphite transported, the spacing between the strong magnetic rods is controlled within a certain range, resulting in a limited adsorption range of the strong magnetic rods. Secondly, after the adsorption is completed, it is inconvenient to remove the iron-containing substances on the strong magnetic rods. Utility Model Content

[0003] The utility model provides an iron removal tool to solve the above-mentioned deficiencies in the prior art, solve the problem of limited adsorption capacity of the strong magnetic rod and facilitate the removal operation of magnetic substances on the strong magnetic rod, and has strong practicality.

[0004] In order to achieve the purpose of this utility model, the following technologies are proposed:

[0005] An iron removal tool comprises a rectangular tube. The upper and lower ends of the rectangular tube are respectively provided with flanges. The rectangular tube is installed on each process section through the flanges.

[0006] A first side plate is installed on the rectangular tube, and a spline shaft is rotatably provided on the first side plate. A second side plate is installed on the rectangular tube, and the second side plate is arranged opposite to the first side plate. A motor is installed on the second side plate, and a rotating shaft is connected to the output shaft of the motor. A plurality of blades are arranged on the outer periphery of the rotating shaft, and the blades are magnetic. The spline shaft is passed through the other end of the rotating shaft. A third side plate is installed on the other two side walls of the rectangular tube, and a plurality of strong magnetic rods are arranged on the inner wall of the third side plate. The rotating shaft is located between the strong magnetic rods. Through the blades, when the blades rotate with the rotating shaft, the blades thereon can sprinkle graphite powder on the strong magnetic rods on both sides, thereby adsorbing iron-containing substances through the strong magnetic rods. In this way, not only can the transportation of graphite be accelerated by the rotating blades, so that the graphite powder can pass through a plurality of strong magnetic rods, thereby improving the adsorption effect, and in order to facilitate the removal of iron-containing substances on the strong magnetic rods, the strong magnetic rods are arranged for easy extraction.

[0007] Furthermore, a plurality of fins are provided on the blades, and the fins are magnetic, and the iron-containing substances in the graphite can be removed through the fins.

[0008] Furthermore, two pairs of limiting plates are provided on the second side plate, and a concave clamping plate is provided between each pair of limiting plates, and end plates are provided at both ends of the concave clamping plate, and a circular hole is provided on the end plate, and a pair of notches are provided on the circular hole, and a rotating column is provided for rotation in the circular hole, and a pair of lugs are provided on the rotating column, and the lugs are located on the outer side of the end plate, and a rotating head is provided at the outer end of the rotating column. The rotating column can be rotated to limit the end plate through the lugs, and the fins can be easily pulled out in this way, so as to adsorb the iron-containing substances adsorbed on the fins.

[0009] Furthermore, a pair of spring pins are provided on the first side plate, a concave plate is sleeved on the spring pin, a concave movable plate is provided at the upper and lower ends of the concave plate, a spring is provided on the outer side of the concave plate, the spring is sleeved on the spring pin, a pair of vertical plates are provided at the two ends of the concave movable plate, a waist-shaped hole is opened on the vertical plate, a pull rod is provided in the waist-shaped hole, a limit rotating plate is provided at the inner end of the pull rod, a connecting shaft is rotatably provided on the limit rotating plate, the connecting shaft is provided on the rectangular tube, and the limit rotating plate acts on the outer wall of the third side plate. When the concave movable plate is moved, it can act on the pull rod through the waist-shaped hole, and then rotate the limit rotating plate, thereby canceling the limit of the limit rotating plate on the third side plate, so as to facilitate the extraction operation of the strong magnetic rod.

[0010] The advantages of the above technical solution are:

[0011] The utility model improves the removal effect of iron-containing substances and facilitates the cleaning operation of iron-containing substances. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to make the purpose, technical solutions and advantages of the utility model clearer, the utility model will be further described in detail below with reference to the accompanying drawings.

[0013] Figure 1 The three-dimensional structure of one embodiment is shown Figure 1 .

[0014] Figure 2 An enlarged view of A is shown.

[0015] Figure 3 An enlarged view of B is shown.

[0016] Figure 4 The three-dimensional structure of one embodiment is shown Figure 2 .

[0017] Figure 5 A three-dimensional structural diagram of the rotating shaft is shown. DETAILED DESCRIPTION

[0018] like Figure 1~Figure 5As shown, an iron removal tool comprises a rectangular tube 1, which is arranged vertically, and flanges 10 are respectively arranged at the upper and lower ends of the rectangular tube 1, and a first side plate 2 is installed on the rectangular tube 1, and a spline shaft is rotatably arranged on the first side plate 2. A second side plate 20 is installed on the rectangular tube 1, and the second side plate 20 is arranged opposite to the first side plate 2, and a motor 28 is installed on the second side plate 20, and a rotating shaft 29 is connected to the output shaft of the motor 28, and a plurality of blades 30 are arranged on the outer periphery of the rotating shaft 29, and the blades 30 are magnetic, and a plurality of fins 31 are arranged on the blades 30, and the fins 31 are magnetic, and the spline shaft is passed through the other end of the rotating shaft 29. Two pairs of limit plates 21 are provided on the second side plate 20, and a concave clamping plate 22 is provided between each pair of limit plates 21. End plates 23 are provided at both ends of the concave clamping plate 22. A circular hole is provided on the end plate 23, and a pair of notches 24 are provided on the circular hole. A rotating column 25 is rotatably provided in the circular hole, and a pair of lugs 26 are provided on the rotating column 25. The lugs 26 are located on the outer side of the end plate 23, and a rotating head 27 is provided at the outer end of the rotating column 25.

[0019] The other two side walls of the rectangular tube 1 are provided with a third side plate 32, and a plurality of strong magnetic rods 33 are provided on the inner wall of the third side plate 32, and the rotating shaft 29 is located between the strong magnetic rods 33. A pair of spring pins 35 are provided on the first side plate 2, and a concave plate 34 is sleeved on the spring pin 35. The upper and lower ends of the concave plate 34 are respectively provided with concave moving plates 37, and a spring 36 is provided on the outer side of the concave plate 34, and the spring 36 is sleeved on the spring pin 35. A pair of vertical plates 38 are respectively provided at both ends of the concave moving plate 37, and a waist-shaped hole 39 is opened on the vertical plate 38, and a pull rod 42 is provided in the waist-shaped hole 39, and a limit rotating plate 41 is provided at the inner side end of the pull rod 42, and a connecting shaft 40 is rotatably provided on the limit rotating plate 41, and the connecting shaft 40 is provided on the rectangular tube 1, and the limit rotating plate 41 acts on the outer wall of the third side plate 32.

[0020] In the present embodiment, when the iron removal operation is performed, when the graphite passes through the rectangular tube 1, the motor 28 will drive the rotating shaft 29 to rotate. When the rotating shaft 29 rotates, the blades 30 and the fins 31 thereon will adsorb the iron-containing substances in the graphite. At the same time, through the stirring action of the blades 30, the graphite passing through the blades 30 moves to both sides, and the graphite passes through the strong magnetic rods 33. When the graphite passes through the strong magnetic rods 33, the iron-containing substances therein will be adsorbed. Since the strong magnetic rods are arranged on both sides of the rectangular tube 1, when they are densely distributed, the transportation of the graphite can be avoided. Secondly, additional kinetic energy is provided to the transportation of the graphite, thereby further ensuring the transportation efficiency of the graphite.

[0021] In this embodiment, when removing the iron-containing substances on the fins 31, the operator rotates the rotating column 25 so that the lug 26 faces the notch 24, and then removes the concave clamping plate 22 from the second side plate 20, and then pulls the fins 31 out of the rectangular tube 1, and then cleans the iron-containing substances on the fins 31.

[0022] When cleaning the strong magnetic rod 33 in this embodiment, the concave movable plate 37 is pulled outward so that the waist-shaped hole 39 acts on the pull rod 42, thereby causing the limit rotating plate 41 to rotate. When the limit rotating plate 41 rotates, the limit on the third side plate 32 will be cancelled, and then the strong magnetic rod 33 will be pulled out, and the iron-containing substances thereon will be cleaned.

[0023] The above description is only a preferred embodiment of the utility model and is not intended to limit the utility model. Obviously, those skilled in the art can make various changes and modifications to the utility model without departing from the spirit and scope of the utility model. Thus, if these modifications and variations of the utility model fall within the scope of the claims of the utility model and their equivalents, the utility model is also intended to include these modifications and variations.

Claims

1. An iron removal tool, characterized in that: It comprises a rectangular tube (1), wherein flanges (10) are respectively provided at the upper and lower ends of the rectangular tube (1); A first side plate (2) is mounted on the rectangular tube (1), and a spline shaft is rotatably provided on the first side plate (2); A second side plate (20) is mounted on the rectangular tube (1), the second side plate (20) being arranged opposite to the first side plate (2), a motor (28) being mounted on the second side plate (20), a rotating shaft (29) being connected to an output shaft of the motor (28), a plurality of blades (30) being arranged on the outer circumference of the rotating shaft (29), the blades (30) being magnetic, and a spline shaft being passed through the other end of the rotating shaft (29); The other two side walls of the rectangular tube (1) are mounted with a third side plate (32), the inner wall of the third side plate (32) is provided with a plurality of strong magnetic rods (33), and the rotating shaft (29) is located between the strong magnetic rods (33).

2. The iron removal tool according to claim 1, characterized in that: A plurality of fins (31) are provided on the blade (30), and the fins (31) are magnetic.

3. The iron removal tool according to claim 1, characterized in that: Two pairs of limit plates (21) are provided on the second side plate (20), a concave clamping plate (22) is provided between each pair of limit plates (21), end plates (23) are provided at both ends of the concave clamping plate (22), a circular hole is provided on the end plate (23), a pair of notches (24) is provided on the circular hole, a rotating column (25) is rotatably provided in the circular hole, a pair of lugs (26) are provided on the rotating column (25), the lugs (26) are located on the outer side of the end plate (23), and a rotating head (27) is provided at the outer end of the rotating column (25).

4. The iron removal tool according to claim 1, characterized in that: A pair of spring pins (35) are provided on the first side plate (2), a concave plate (34) is sleeved on the spring pin (35), concave movable plates (37) are respectively provided at the upper and lower ends of the concave plate (34), a spring (36) is provided on the outer side of the concave plate (34), the spring (36) is sleeved on the spring pin (35), a pair of vertical plates (38) are respectively provided at the two ends of the concave movable plate (37), a waist-shaped hole (39) is opened on the vertical plate (38), a pull rod (42) is provided in the waist-shaped hole (39), a limit rotating plate (41) is provided at the inner side end of the pull rod (42), a connecting shaft (40) is rotatably provided on the limit rotating plate (41), the connecting shaft (40) is provided on the rectangular tube (1), and the limit rotating plate (41) acts on the outer wall of the third side plate (32).