Waste material picking device for iron core coiled material cutting
By designing a scrap pickup device including a pickup box, a handheld handle and a magnet, the movement of the magnet in the pickup box is used to achieve automatic scrap pickup, which solves the problem of difficult waste cleaning after the iron core coil is cut, improves cleaning efficiency and reduces the labor intensity of staff.
Patent Information
- Application Number
- CN202422288874.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The waste generated by the iron core coil is difficult to clean, and manual picking is high, which affects the cleaning efficiency.
A waste pickup device including a pickup box, a hand handle, a magnet and a driving structure is designed. The magnet moves to absorb and release waste in the pickup box, and adjusts the magnetic force through the driving structure to achieve automatic pickup and release.
It reduces the work intensity of staff and improves the efficiency of waste cleaning.
Smart Images

Figure CN223084795U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of core coil processing, and specifically to a waste picking device for cutting core coils. Background Art
[0002] The core is the main magnetic circuit part in a transformer, usually composed of hot-rolled or cold-rolled silicon steel sheets with a relatively high silicon content and an insulating paint coated on the surface. In the production of the core, it is usually necessary to cut and punch the silicon steel coil according to the size of the core and then stack them. During the cutting and punching of the silicon steel coil, waste is easily generated, which accumulates on the ground and affects the working environment and needs to be cleaned regularly. And it is difficult to clean the silicon steel sheets on the workshop floor. Manually picking them up requires a high working intensity for the staff and affects the efficiency of waste cleaning.
[0003] Therefore, this application provides a waste picking tool for cutting core coils to improve the waste cleaning efficiency and reduce the working intensity of the staff. Summary of the Utility Model
[0004] This application provides a waste picking device for cutting core coils, aiming to solve the problems in the background art that the waste generated after cutting the core coil is difficult to clean, the manual picking work intensity is high, and the waste cleaning efficiency is affected.
[0005] To achieve the above object, this application provides the following technical solution: A waste picking device for cutting core coils includes a picking box, a hand-held handle fixedly arranged at one end of the picking box, a magnet moving along the length direction of the picking box inside the picking box, and a driving structure arranged on the hand-held handle for driving the magnet to move; a baffle fixedly sleeved on the picking box for separating the picking box into a first end and a second end. When the magnet is located inside the first end, it sucks the material; when the magnet is located inside the second end, it releases the material. In this way, when cleaning the waste, the magnetic force of the first end is adjusted by the driving structure. When the magnet moves into the first end, the silicon steel waste is picked up, and when the magnet moves into the second end, since the magnetic force decreases, the silicon steel waste adsorbed on the first end and the baffle is released, thus completing the cleaning work of the waste on the ground.
[0006] Preferably, the driving structure includes a push-pull rod axially penetrating through the hand-held handle and extending into the picking box. The push-pull rod is slidably connected to the hand-held handle and the picking box, and the magnet is fixedly connected to the push-pull rod.
[0007] Preferably, a sleeve is fixedly connected to the end of the push-pull rod away from the magnet and sleeved on the end of the hand-held handle away from the picking box. The sleeve is slidably connected to the hand-held handle.
[0008] Preferably, guide rails are provided on the inner wall of the pickup box, and guide grooves corresponding to the guide rails are formed in the magnet.
[0009] Preferably, connecting plates connected to one end of the second end away from the first end are symmetrically arranged on the baffle.
[0010] This waste pickup device has a simple structure and is easy to use. It uses a magnet to pick up and collect the silicon steel waste generated by cutting and punching, which can effectively reduce the working intensity of the staff and improve the efficiency of waste cleaning. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 is a schematic structural diagram of a waste pickup device for cutting iron core coils;
[0012] Figure 2 is a schematic cross-sectional structural diagram of a waste pickup device for cutting iron core coils;
[0013] Figure 3 is Figure 2 an enlarged schematic structural diagram of part A in
[0014] In the figure:
[0015] 1. Pickup box;
[0016] 11. First end; 12. Second end;
[0017] 2. Handheld handle; 21. Guide rail
[0018] 3. Magnet;
[0019] 4. Driving structure;
[0020] 41. Push-pull rod; 42. Sleeve;
[0021] 5. Baffle;
[0022] 6. Connecting plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0024] The present application provides a waste pickup device for cutting iron core coils, such as Figure 1 , Figure 2 and Figure 3As shown, the waste picking device includes a picking box 1, a hand-held handle 2 fixedly arranged at one end of the picking box 1, a magnet 3 moving along the length direction of the picking box 1 inside the picking box 1, and a driving structure 4 arranged on the hand-held handle 2 for driving the magnet 3 to move; a baffle 5 fixedly sleeved on the picking box 1 for separating the picking box 1 into a first end 11 and a second end 12. When the magnet 3 is located inside the first end 11, it sucks the material; when the magnet 3 is located inside the second end 12, it releases the material. Wherein, a guide rail 21 is provided on the inner wall of the picking box 1, and a guide groove corresponding to the guide rail 21 is provided on the magnet 3.
[0025] During use, the staff holds the hand-held handle 2 and drives the magnet 3 to move inside the picking box 1 through the driving structure 4. When the magnet 3 moves to the inside of the first end 11 of the picking box 1, the waste is adsorbed on the outer wall of the first end 11 of the picking box 1 and one side of the baffle 5 close to the first end 11 of the picking box 1 under the magnetic force of the magnet 3; when the driving mechanism 4 drives the magnet 3 to move away from the inside of the first end 11 of the picking box 1, the magnetic force at the first end 11 of the picking box 1 decreases. When the magnet 3 enters the second end 12 of the picking box 1, the waste detaches under the action of its own gravity, thus completing the picking and collection work of the silicon steel waste.
[0026] In order to adjust the position of the magnet 3 and achieve the picking and cleaning of the silicon steel waste; specifically, as Figure 2 and Figure 3 shown, the driving structure 4 includes a push-pull rod 41 axially penetrating through the hand-held handle 2 and extending into the picking box 1. The push-pull rod 41 is slidably connected to the hand-held handle 2 and the picking box 1, and the magnet 3 is fixedly connected to the push-pull rod 41.
[0027] It can be understood that when picking the silicon steel waste, the push-pull rod 41 is pushed, so that the push-pull rod 41 pushes the magnet 4 to move into the first end 11 of the picking box 1, and the waste is adsorbed on the outer wall of the first end of the picking box 1 and one side of the baffle 5 close to the first end 11 of the picking box 1 through the magnetic force of the magnet 3; when placing the silicon steel waste into the collection device (waste collection box), the push-pull rod 41 is pulled to drive the magnet 3 to move from the inside of the first end 11 of the picking box 1 to the inside of the second end 12. At this time, the magnetic force at the first end 11 of the picking box 1 becomes smaller and smaller, and under the action of the gravity of the waste, the waste falls into the collection device, thus completing the cleaning work of the waste.
[0028] In order to ensure the stability of the movement of the push-pull rod 41 and facilitate operation; further, as Figure 3As shown, a sleeve 42 is fixedly connected to the end of the push rod 41 away from the magnet 3, and the sleeve 42 is sleeved on the end of the hand-held handle 2 away from the pickup box 1. The sleeve 42 is slidably connected to the hand-held handle 2. When performing the pickup and collection operation, the staff can operate the hand-held handle 2 and the sleeve 42 with both hands respectively. By pushing and pulling the sleeve 42, the sleeve 42 drives the push rod 41 to move, thereby driving the magnet 3 to move in the pickup box 1. While the sleeve 42 facilitates hand-held operation, it can guide the end of the push rod 41 away from the magnet 3 to ensure the stability of the push rod 41.
[0029] It should be noted that in order to improve the structural stability of the baffle 5, connecting plates 6 are symmetrically arranged on the baffle 5 and are connected to the end of the second end 12 away from the first end 11. The connecting plates 6 are used to connect the baffle 5 to the end of the second end 12 away from the first end 11, so that the connecting plates 6, the baffle 5 and the second end 12 form a triangle, ensuring the structural stability of the baffle 5 while not affecting the pickup of waste materials.
[0030] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application, according to the technical solution and its concept of the present application, makes equivalent substitutions or changes, and should be covered within the protection scope of the present application.
Claims
1. A waste picking device for cutting iron core coils, characterized in that: It includes a pick-up box (1), a hand-held handle (2) fixedly arranged at one end of the pick-up box (1), a magnet (3) moving along the length direction of the pick-up box (1) inside the pick-up box (1), and a driving structure (4) arranged on the hand-held handle (2) for driving the magnet (3) to move; A baffle (5) for separating the pick-up box (1) into a first end (11) and a second end (12) is fixedly sleeved on the pick-up box (1). When the magnet (3) is located inside the first end (11), it sucks the material; when the magnet (3) is located inside the second end (12), it releases the material.
2. The waste picking device for cutting iron core coils according to claim 1, wherein: The driving structure (4) includes a push-pull rod (41) axially penetrating through the hand-held handle (2) and extending into the pick-up box (1). The push-pull rod (41) is slidably connected to the hand-held handle (2) and the pick-up box (1), and the magnet (3) is fixedly connected to the push-pull rod (41).
3. The waste picking device for cutting iron core coils according to claim 2, wherein: One end of the push-pull rod (41) away from the magnet (3) is fixedly connected with a sleeve (42) sleeved on the end of the hand-held handle (2) away from the pick-up box (1), and the sleeve (42) is slidably connected to the hand-held handle (2).
4. The waste picking device for cutting core coils according to claim 1, characterized in that: A guide rail (21) is provided on the inner wall of the pick-up box (1), and a guide groove corresponding to the guide rail (21) is provided on the magnet (3).
5. The waste picking device for cutting core coils according to claim 1, characterized in that: Connecting plates (6) connected to the end of the second end (12) away from the first end (11) are symmetrically arranged on the baffle (5).