Magnetic pole block machining and forming equipment
By designing a magnetic pole block processing and forming equipment that includes a base, loading platform, adjustment components, and clamping components, the problem of existing equipment being unable to clamp and fix magnetic pole blocks of different sizes and shapes and adjust the cutting angle has been solved, thus improving the applicability and flexibility of the equipment.
Patent Information
- Application Number
- CN202423044775.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-10
AI Technical Summary
Existing cutting equipment is not easy to clamp and fix magnetic pole blocks of different sizes and shapes, and the cutting angle cannot be adjusted, resulting in poor equipment applicability and flexibility.
A magnetic pole block processing and forming device was designed, comprising a base, a loading table, an adjustment component, a sliding plate, a clamping component, and a laser cutting head. The angle of the loading table is adjusted by the adjustment component, the magnetic pole block is fixed by the clamping component, and the laser cutting head is driven by a second drive component to perform cutting.
It enables stable clamping and fixing of magnetic pole blocks of different sizes and shapes, and flexible adjustment of cutting angle, improving the practicality and flexibility of the equipment.
Smart Images

Figure CN223492350U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of magnetic pole block production and processing technology, and in particular to a magnetic pole block processing and forming equipment. Background Technology
[0002] Magnetic pole blocks are composed of magnets and other materials. Each magnet has magnetic poles. Magnetic pole blocks are widely used in various mechanical, automotive, and electrical components. When processing magnetic pole blocks, they need to be machined to meet market demand for shapes. Cutting is a commonly used processing method, which requires cutting equipment. However, existing cutting equipment is not easy to clamp and fix magnetic pole blocks of different sizes and shapes, resulting in poor applicability of the cutting equipment. Furthermore, it cannot adjust the cutting angle of the magnetic pole blocks according to requirements, resulting in poor flexibility. Utility Model Content
[0003] In order to improve the existing cutting equipment's difficulty in clamping and fixing magnetic pole blocks of different sizes and shapes and its inability to adjust the cutting angle, and to improve the practicality and flexibility of magnetic pole block cutting equipment, this application provides a magnetic pole block processing and forming equipment.
[0004] The magnetic pole block processing and forming equipment provided in this application adopts the following technical solution:
[0005] A magnetic pole block processing and forming device includes a base, a loading platform rotatably connected to the base, an adjustment component for adjusting the angle of the loading platform between the base and the loading platform, two sliding plates slidably mounted on the loading platform, the two sliding plates being arranged relatively parallel to each other, a first driving component for driving the two sliding plates to move relative to each other on the loading platform, an adjustable clamping component on the sliding plates, a fixed frame connected to the base, the fixed frame being arranged in an inverted "U" shape, a laser cutting head mounted on the fixed frame, and a second driving component for driving the laser cutting head to move on the fixed frame.
[0006] Preferably, a fixed seat is connected to the base, a seat cover is connected to the fixed seat, a rotating ball is engaged between the fixed seat and the seat cover, a first groove and a second groove adapted to the rotating ball are respectively opened on the fixed seat and the seat cover, the second groove allows the rotating ball to pass through the seat cover, a connecting rod is connected to the rotating ball, the connecting rod is arranged radially along the rotating ball, and the connecting rod is connected to the loading platform.
[0007] Preferably, the adjusting component includes a first guide rail, a first slider, a first hinge seat, a second guide rail, a second slider, a second hinge seat and a pushing cylinder. The first guide rail is connected to the base, and the second guide rail is connected to the lower part of the loading table. The first guide rail and the second guide rail are circular guide rails with the same radius, and the axes of the first guide rail and the second guide rail are collinear. The first slider is slidably clamped on the first guide rail, and the second slider is slidably clamped on the second guide rail. The first slider and the second slider are arranged corresponding to each other. The first hinge seat is connected to the first slider, and the second hinge seat is connected to the second slider. One end of the pushing cylinder is hinged to the first hinge seat, and the other end is hinged to the second hinge seat.
[0008] Preferably, the first driving component includes a fixing block, a clamping cylinder and a connecting frame. The fixing block is connected to the loading table, and the fixing blocks are arranged corresponding to the sliding plates one by one. The clamping cylinder is connected to the fixing block, and a connecting frame is connected to the piston rod of the clamping cylinder. The connecting frame is arranged in a "U" shape and is connected to the sliding plate. The piston rod of the clamping cylinder is arranged perpendicular to the sliding plate.
[0009] Preferably, the clamping component includes a clamping rod, a limiting plate and a locking nut. The sliding plate is provided with adjusting holes for the clamping rod to pass through, and several adjusting holes are arranged in an array on the sliding plate. The limiting plate is connected to the rod body of the clamping rod, and the limiting plate is perpendicular to the clamping plate. The limiting plate can abut against the sliding plate. A thread groove is formed on the rod body of the clamping rod passing through the adjusting hole, and the locking nut is connected to the clamping rod through the thread groove.
[0010] Preferably, the second driving component includes an X-axis servo slide guide rail, a Y-axis servo slide guide rail, a lifting cylinder and a mounting frame. The X-axis servo slide guide rail is connected to the fixing frame and is arranged along the length direction of the fixing frame. The Y-axis servo slide guide rail is connected to the slide of the X-axis servo slide guide rail, and the X-axis servo slide guide rail and the Y-axis servo slide guide rail are perpendicular to each other. The lifting cylinder is connected to the slide of the Y-axis servo slide guide rail and is arranged in the vertical direction. The mounting frame is connected to the piston rod of the lifting cylinder, and the laser cutting head is connected to the mounting frame.
[0011] In summary, the present application has the following beneficial technical effects:
[0012] This utility model provides a magnetic pole block processing and forming equipment, including a base, a loading table, an adjustment component, a sliding plate, a first drive component, a clamping component, a fixing frame, a laser cutting head, and a second drive component. When assembling the magnetic pole block, the magnetic pole block is placed on the loading table. Then, the clamping component is adjusted according to the size and shape of the magnetic pole block. The first drive component drives two sliding plates to move closer to each other so that the clamping component clamps and fixes the magnetic pole block. During cutting, the rotation angle of the loading table can be adjusted by the adjustment component. Then, the laser cutting head is driven by the second drive component to complete the cutting operation on the magnetic pole block. This improves the existing cutting equipment's difficulty in clamping and fixing magnetic pole blocks of different sizes and shapes and its inability to adjust the cutting angle, thus improving the practicality and flexibility of the magnetic pole block cutting equipment. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of the magnetic pole block processing and forming equipment in the embodiments of this application;
[0014] Figure 2 yes Figure 1 Enlarged view of point A in the middle;
[0015] Figure 3 This is a schematic diagram illustrating the rotating ball in an embodiment of this application.
[0016] Explanation of reference numerals in the attached drawings: 1. Base; 11. Loading platform; 12. Fixing frame; 2. Adjustment assembly; 21. First guide rail; 22. First slider; 23. First hinge seat; 24. Second guide rail; 25. Second slider; 26. Second hinge seat; 27. Push cylinder; 3. Slide plate; 4. First drive assembly; 41. Fixing block; 42. Clamping cylinder; 43. Connecting frame; 5. Clamping assembly; 51. Clamping rod; 52. Limiting plate; 53. Locking nut; 6. Laser cutting head; 7. Second drive assembly; 71. X-axis servo slide rail; 72. Y-axis servo slide rail; 73. Lifting cylinder; 74. Mounting frame; 8. Fixing seat; 81. Seat cover; 82. Rotating ball; 821. Connecting rod. Detailed Implementation
[0017] To enable those skilled in the art to better understand the present invention, the solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of the present invention.
[0018] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation or specific orientation structure and operation, and therefore should not be construed as a limitation of this utility model; the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. In addition, unless otherwise explicitly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.
[0019] This application discloses a magnetic pole block processing and forming device. (Refer to...) Figures 1-3 The magnetic pole block processing and forming equipment includes a base 1, a loading platform 11 rotatably connected to the base 1, an adjustment component 2 for adjusting the angle of the loading platform 11 between the base 1 and the loading platform 11, a sliding plate 3 slidably mounted on the loading platform 11, two sliding plates 3 are mounted on the loading platform 11 and are arranged relatively parallel to each other, a first drive component 4 for driving the two sliding plates 3 to move relative to each other on the loading platform 11, a clamping component 5 with adjustable position mounted on the sliding plate 3, a fixed frame 12 connected to the base 1, the fixed frame 12 is arranged in an inverted "U" shape, a laser cutting head 6 is mounted on the fixed frame 12, and a second drive component 7 for driving the laser cutting head 6 to move on the fixed frame 12.
[0020] A fixed seat 8 is connected to the base 1, and a seat cover 81 is connected to the fixed seat 8. A rotating ball 82 is engaged between the fixed seat 8 and the seat cover 81. The fixed seat 8 and the seat cover 81 are respectively provided with a first groove and a second groove adapted to the rotating ball 82. The second groove allows the rotating ball 82 to pass through the seat cover 81. A connecting rod 821 is connected to the rotating ball 82. The connecting rod 821 is arranged radially along the rotating ball 82 and is connected to the loading platform 11. By setting the fixed seat 8, the seat cover 81, the rotating ball 82 and the connecting rod 821, the loading platform 11 can rotate at multiple angles with the center of the rotating ball 82 as the center.
[0021] The adjusting component 2 includes a first guide rail 21, a first slider 22, a first hinge seat 23, a second guide rail 24, a second slider 25, a second hinge seat 26 and a pushing cylinder 27. The first guide rail 21 is connected to the base 1, and the second guide rail 24 is connected to the lower part of the loading platform 11. The first guide rail 21 and the second guide rail 24 are circular guide rails with the same radius, and the axes of the first guide rail 21 and the second guide rail 24 are collinear. The first slider 22 is slidably clamped on the first guide rail 21, and the second slider 25 is slidably clamped on the second guide rail 24. The first slider 22 and the second slider 25 are arranged corresponding to each other. The first hinge seat 23 is connected to the first slider 22, and the second hinge seat 26 is connected to the second slider 25. One end of the pushing cylinder 27 is hinged to the first hinge seat 23, and the other end is hinged to the second hinge seat 26.
[0022] The first driving component 4 includes a fixing block 41, a clamping cylinder 42 and a connecting frame 43. The fixing block 41 is connected to the loading platform 11, and the fixing block 41 is arranged corresponding to the sliding plate 3 one by one. The clamping cylinder 42 is connected to the fixing block 41, and a connecting frame 43 is connected to the piston rod of the clamping cylinder 42. The connecting frame 43 is arranged in a "C" shape, and the connecting frame 43 is connected to the sliding plate 3. The piston rod of the clamping cylinder 42 is arranged perpendicular to the sliding plate 3.
[0023] The clamping component 5 includes a clamping rod 51, a limiting plate 52 and a locking nut 53. The sliding plate 3 is provided with adjusting holes for the clamping rod 51 to pass through, and a plurality of adjusting holes are arranged in an array on the sliding plate 3. The limiting plate 52 is connected to the rod body of the clamping rod 51, and the limiting plate 52 is arranged perpendicular to the clamping plate. The limiting plate 52 can abut against the sliding plate 3. A thread groove is formed on the rod body of the clamping rod 51 passing through the adjusting hole, and the locking nut 53 is connected to the clamping rod 51 through the thread groove.
[0024] The second driving component 7 includes an X-axis servo slide guide rail 71, a Y-axis servo slide guide rail 72, a lifting cylinder 73 and a mounting frame 74. The X-axis servo slide guide rail 71 is connected to the fixing frame 12, and the X-axis servo slide guide rail 71 is arranged along the length direction of the fixing frame 12. The Y-axis servo slide guide rail 72 is connected to the slide of the X-axis servo slide guide rail 71, and the X-axis servo slide guide rail 71 and the Y-axis servo slide guide rail 72 are arranged perpendicular to each other. The lifting cylinder 73 is connected to the slide of the Y-axis servo slide guide rail 72, and the lifting cylinder 73 is arranged in the vertical direction. The mounting frame 74 is connected to the piston rod of the lifting cylinder 73, and the laser cutting head 6 is connected to the mounting frame 74.
[0025] The implementation principle of the magnetic pole block processing and forming equipment in this application embodiment is as follows: When assembling the magnetic pole block, the magnetic pole block is placed on the loading table 11. Then, a suitable adjustment hole is selected according to the size and shape of the magnetic pole block. The clamping rod 51 is passed through the adjustment hole and fixed by the cooperation of the limiting plate 52 and the locking nut 53. The clamping cylinder 42 drives the two sliding plates 3 to move closer to each other so that the clamping rod 51 clamps and fixes the magnetic pole block. During cutting, the first slider 22 and the second slider 25 can be rotated circumferentially along the first guide rail 21 and the second guide rail 24. Then, the rotation angle of the loading table 11 is adjusted by pushing the cylinder 27 to extend or shorten. Afterwards, the laser cutting head 6 is moved by the cooperation of the X-axis servo slide rail 71, the Y-axis servo slide rail 72 and the lifting cylinder 73 to complete the cutting operation on the magnetic pole block.
[0026] Finally, it should be noted that the above description is only a preferred embodiment of this utility model, and the protection scope of this utility model is not limited to the above embodiments. All technical solutions within the scope of this utility model's concept are within the protection scope of this utility model. It should be pointed out that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A magnetic pole block processing and forming equipment, characterized in that: The system includes a base (1), on which a loading platform (11) is rotatably connected. An adjustment component (2) for adjusting the angle of the loading platform (11) is provided between the base (1) and the loading platform (11). A sliding plate (3) is slidably provided on the loading platform (11). Two sliding plates (3) are provided on the loading platform (11) and are arranged in parallel relative to each other. A first driving component (4) for driving the two sliding plates (3) to move relative to each other is provided on the loading platform (11). An adjustable clamping component (5) is provided on the sliding plate (3). A fixing frame (12) is connected to the base (1). The fixing frame (12) is arranged in an inverted "U" shape. A laser cutting head (6) is provided on the fixing frame (12). A second driving component (7) for driving the laser cutting head to move is provided on the fixing frame (12).
2. The magnetic pole block processing and forming equipment according to claim 1, characterized in that: A fixed seat (8) is connected to the base (1), and a seat cover (81) is connected to the fixed seat (8). A rotating ball (82) is engaged between the fixed seat (8) and the seat cover (81). A first groove and a second groove adapted to the rotating ball (82) are respectively opened on the fixed seat (8) and the seat cover (81). The second groove allows the rotating ball (82) to pass through the seat cover (81). A connecting rod (821) is connected to the rotating ball (82). The connecting rod (821) is arranged radially along the rotating ball (82). The connecting rod (821) is connected to the loading platform (11).
3. The magnetic pole block processing and forming equipment according to claim 1, characterized in that: The adjustment assembly (2) includes a first guide rail (21), a first slider (22), a first hinge seat (23), a second guide rail (24), a second slider (25), a second hinge seat (26), and a push cylinder (27). The first guide rail (21) is connected to the base (1), and the second guide rail (24) is connected to the lower part of the loading platform (11). The first guide rail (21) and the second guide rail (24) are circular guide rails with the same radius. The axis of the first guide rail (21) and the axis of the second guide rail (24) are... The lines are arranged in a collinear manner. The first slider (22) is slidably mounted on the first guide rail (21), and the second slider (25) is slidably mounted on the second guide rail (24). The first slider (22) and the second slider (25) are arranged correspondingly to each other. The first hinge seat (23) is connected to the first slider (22), and the second hinge seat (26) is connected to the second slider (25). One end of the push cylinder (27) is hinged to the first hinge seat (23), and the other end is hinged to the second hinge seat (26).
4. The magnetic pole block processing and forming equipment according to claim 1, characterized in that: The first driving component (4) includes a fixed block (41), a clamping cylinder (42) and a connecting frame (43). The fixed block (41) is connected to the loading table (11). The fixed blocks (41) are arranged corresponding to the sliding plates (3) one by one. The clamping cylinder (42) is connected to the fixed block (41). A connecting frame (43) is connected to the piston rod of the clamping cylinder (42). The connecting frame (43) is arranged in a "C" shape. The connecting frame (43) is connected to the sliding plate (3). The piston rod of the clamping cylinder (42) is arranged perpendicular to the sliding plate (3).
5. The magnetic pole block processing and forming equipment according to claim 1, characterized in that: The clamping component (5) includes a clamping rod (51), a limiting plate (52) and a locking nut (53). The sliding plate (3) is provided with adjustment holes for the clamping rod (51) to pass through. A plurality of the adjustment holes are arranged in an array on the sliding plate (3). The limiting plate (52) is connected to the rod body of the clamping rod (51). The limiting plate (52) is arranged perpendicular to the clamping plate. The limiting plate (52) can abut against the sliding plate (3). A threaded groove is provided on the rod body of the clamping rod (51) passing through the adjustment hole. The locking nut (53) is connected to the clamping rod (51) through the threaded groove.
6. The magnetic pole block processing and forming equipment according to claim 1, characterized in that: The second driving component (7) includes an X-axis servo slide guide (71), a Y-axis servo slide guide (72), a lifting cylinder (73) and a mounting bracket (74). The X-axis servo slide guide (71) is connected to the fixed frame (12). The X-axis servo slide guide (71) is arranged along the length direction of the fixed frame (12). The Y-axis servo slide guide (72) is connected to the slide of the X-axis servo slide guide (71). The X-axis servo slide guide (71) and the Y-axis servo slide guide (72) are arranged perpendicular to each other. The lifting cylinder (73) is connected to the slide of the Y-axis servo slide guide (72). The lifting cylinder (73) is arranged in the vertical direction. The mounting bracket (74) is connected to the piston rod of the lifting cylinder (73). The laser cutting head (6) is connected to the mounting bracket (74).