Magnetic ring inductor processing positioning device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN ZHONGLIAN ELECTRONICS CO LTD
- Filing Date
- 2025-09-12
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]针对现有技术的不足,本实用新型提供了一种磁环电感加工定位设备,设置可灵活调节的定位组件,能稳定且适配性地对不同规格磁环电感定位,解决了现有设备定位稳定性差、通用性不足的问题
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Figure CN224609715U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of magnetic ring inductor processing technology, specifically a magnetic ring inductor processing positioning device. Background Technology
[0002] During the processing of magnetic ring inductors, stable positioning is required to ensure processing accuracy. Existing magnetic ring inductor processing positioning equipment has the following shortcomings: on the one hand, the positioning stability is poor, and the magnetic ring inductor is prone to displacement during processing, affecting the processing quality; on the other hand, the positioning components have poor adjustment flexibility, making it difficult to adapt to magnetic ring inductors of different specifications, limiting the equipment's versatility and failing to meet diverse processing needs. Utility Model Content
[0003] (a) Technical problems to be solved.
[0004] To address the shortcomings of existing technologies, this invention provides a magnetic ring inductor processing and positioning device. It is equipped with a flexibly adjustable positioning component, which can stably and adaptably position magnetic ring inductors of different specifications, thus solving the problems of poor positioning stability and insufficient versatility of existing equipment.
[0005] (ii) Technical solution.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a magnetic ring inductor processing and positioning device, comprising a device body and a positioning component, wherein the positioning component is disposed on the device body, and the device body is also provided with an anti-slip pad; the anti-slip pad enhances the friction when the magnetic ring inductor is placed, thereby preventing slippage during processing.
[0007] The main body of the equipment includes a machine base and a U-shaped mounting base. The U-shaped mounting base is fixedly installed below the machine base to provide a stable installation support structure for the equipment. Two sliding grooves are symmetrically opened in the middle of the upper surface of the machine base to provide a track for the sliding adjustment of the positioning component. The anti-slip pad is fixedly installed on the upper surface of the machine base to improve the anti-slip effect of the magnetic ring inductor placement.
[0008] The positioning assembly includes a sliding sleeve and a rotating shaft seat. The sliding sleeve is slidably disposed in a slide groove and its position can be adjusted along the slide groove to adapt to the positioning requirements of magnetic ring inductors of different sizes. The rotating shaft seat is fixedly disposed at the center position of the bottom end of the machine tool to provide support for the rotation of the screw.
[0009] The positioning assembly also includes a screw and a lever. The screw is rotatably mounted on the bottom rotating end of the rotating shaft seat, and can drive the threaded sleeve to move up and down axially by rotation. The lever is fixedly set at the bottom end of the screw, which makes it easy for the operator to manually rotate the screw and improves the convenience of adjustment.
[0010] The positioning component also includes a threaded sleeve, a slide rail, and a slide block. The threaded sleeve is threaded onto the screw, and when the screw rotates, it drives the threaded sleeve to rise and fall synchronously, thereby adjusting the overall height of the positioning component. The slide rail is fixedly connected to both ends of the threaded sleeve, providing a guide track for the sliding of the slide block. The slide block is slidably mounted on the slide rail and can be adjusted in horizontal position along the slide rail to adapt to the positioning spacing of magnetic ring inductors of different specifications.
[0011] The positioning component also includes a threaded hole and a fastening screw. The threaded hole is formed on the slide block, and the fastening screw is threaded into the threaded hole. Tightening the fastening screw can fix the slide block in the designated position of the slide rail, ensuring stability during positioning.
[0012] The positioning assembly also includes a lifting slide rod and a pressing positioning block. The lifting slide rod is slidably mounted on the sliding sleeve and can slide up and down along the sliding sleeve to adjust the pressing height. The bottom end of the lifting slide rod is fixedly connected to the corresponding side of the sliding seat, and the movement of the sliding seat drives the lifting slide rod to move synchronously. The pressing positioning block is fixedly connected to the top end of the lifting slide rod and is used to press down and position the magnetic ring inductor to ensure the stability of the magnetic ring inductor's position during processing.
[0013] As a further improvement of this utility model: there are two U-shaped mounting seats arranged symmetrically, and the U-shaped mounting seats and the machine base are integrally formed, which improves the structural strength and overall stability; the bottom center of the U-shaped mounting seat is provided with a waist-shaped hole, which facilitates the overall installation and fixation of the equipment on the workbench by fasteners.
[0014] As a further improvement of this utility model: a bushing is provided at the connection between the screw and the rotating shaft seat, and the screw is rotatably connected to the rotating shaft seat through the bushing, which reduces the frictional resistance when the screw rotates and improves the smoothness of rotation.
[0015] As a further improvement of this utility model: a rubber buffer layer is provided on the lower end face of the pressing positioning block, and the lower surface of the rubber buffer layer is provided with anti-slip texture, which not only avoids hard damage to the magnetic ring inductor when pressing down, but also enhances the friction between the magnetic ring inductor and the positioning, thereby further improving the positioning stability.
[0016] As a further improvement of this utility model: both the slide rail and the slide base have a T-shaped cross-section, and the slide rail and the slide base are adapted to each other, making the slide base more stable when sliding on the slide rail and effectively preventing the slide base from falling off the slide rail.
[0017] As a further improvement of this utility model: the lifting slide rod has strip-shaped limiting grooves at both ends, and the inner wall of the sliding sleeve has limiting protrusions that match the strip-shaped limiting grooves at both ends, which circumferentially limits the sliding of the lifting slide rod, prevents it from rotating, and improves the stability during the lifting process.
[0018] As a further improvement of this utility model: the anti-slip pads are two in a symmetrical arrangement and fixedly connected to the upper surface of the machine platform. The top of the anti-slip pads has multiple anti-slip grooves arranged in an array, which further enhances the friction when in contact with the magnetic ring inductor and prevents the magnetic ring inductor from slipping when placed.
[0019] Compared with the prior art, the beneficial effects of this utility model are: 1. In this utility model, by setting up a positioning component, the screw rotation drives the threaded sleeve to rise and fall, and with the sliding adjustment of the slide rail and slide block, as well as the pressing positioning of the lifting slide rod and the pressing positioning block, it can flexibly adapt to magnetic ring inductors of different specifications, achieve stable and accurate positioning, improve the versatility and positioning accuracy of the equipment, and meet diverse processing needs.
[0020] 2. In this utility model, the rubber buffer layer and anti-slip texture design of the anti-slip pad, as well as the limiting structure of the lifting slide rod and the T-shaped adaptation structure of the slide rail and slide seat, further enhance the stability of positioning and the smoothness of equipment operation, while avoiding damage to the magnetic ring inductor during processing and ensuring processing quality. Attached Figure Description
[0021] Figure 1 The overall three-dimensional structure of this utility model Figure 1 ; Figure 2 The overall three-dimensional structure of this utility model Figure 2 ; Figure 3 This is a perspective view of the main body of the device and a portion of the positioning components of this utility model; Figure 4 This is a perspective view of another part of the positioning component of this utility model.
[0022] In the diagram: 1. Main body of the equipment; 2. Positioning component; 3. Anti-slip pad; 11. Machine base; 12. U-shaped mounting base; 13. Waist-shaped hole; 14. Slide groove; 21. Sliding sleeve; 22. Rotating shaft seat; 23. Screw; 24. Pulling block; 25. Threaded sleeve; 26. Slide rail; 27. Slide seat; 28. Threaded hole; 29. Fastening screw; 210. Lifting slide rod; 211. Pressing positioning block. Detailed Implementation
[0023] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0024] In the description of this utility model, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship 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 be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. In addition, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0025] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0026] Please see Figures 1-4 In this embodiment of the present invention, a magnetic ring inductor processing and positioning device includes a device body 1 and a positioning component 2. The positioning component 2 is disposed on the device body 1, and the device body 1 is also provided with an anti-slip pad 3. The anti-slip pad 3 enhances the friction when the magnetic ring inductor is placed, thereby preventing slippage during processing.
[0027] The main body of the equipment 1 includes a machine base 11 and a U-shaped mounting base 12. The U-shaped mounting base 12 is fixedly installed below the machine base 11 to provide a stable installation support structure for the equipment. Two sliding grooves 14 are symmetrically opened in the middle of the upper surface of the machine base 11 to provide a track for the sliding adjustment of the positioning component 2. The anti-slip pad 3 is fixedly installed on the upper surface of the machine base 11 to improve the anti-slip effect of the magnetic ring inductor placement.
[0028] The positioning assembly 2 includes a sliding sleeve 21 and a rotating shaft seat 22. The sliding sleeve 21 is slidably disposed in the slide groove 14 and can be adjusted along the slide groove 14 to adapt to the positioning requirements of magnetic ring inductors of different sizes. The rotating shaft seat 22 is fixedly disposed at the center of the bottom end of the machine base 11 to provide support for the rotation of the screw 23.
[0029] The positioning component 2 also includes a screw 23 and a lever 24. The screw 23 is rotatably mounted on the bottom rotating end of the rotating shaft seat 22, and can drive the threaded sleeve 25 to move up and down axially by rotating it. The lever 24 is fixedly set at the bottom end of the screw 23, which makes it easy for the operator to manually rotate the screw 23 and improves the convenience of adjustment.
[0030] The positioning component 2 also includes a threaded sleeve 25, a slide rail 26, and a slide block 27. The threaded sleeve 25 is threaded onto the screw 23. When the screw 23 rotates, it drives the threaded sleeve 25 to rise and fall synchronously, thereby adjusting the overall height of the positioning component 2. The slide rail 26 is fixedly connected to both ends of the threaded sleeve 25, providing a guide track for the sliding of the slide block 27. The slide block 27 is slidably mounted on the slide rail 26 and can be adjusted in horizontal position along the slide rail 26 to adapt to the positioning spacing of magnetic ring inductors of different specifications.
[0031] The positioning component 2 also includes a threaded hole 28 and a fastening screw 29. The threaded hole 28 is formed on the slide 27, and the fastening screw 29 is threaded into the threaded hole 28. Tightening the fastening screw 29 can fix the slide 27 in the designated position of the slide rail 26, ensuring stability during positioning.
[0032] The positioning assembly 2 also includes a lifting slide rod 210 and a pressing positioning block 211. The lifting slide rod 210 slides through the sliding sleeve 21 and can slide up and down along the sliding sleeve 21 to adjust the pressing height. The bottom end of the lifting slide rod 210 is fixedly connected to the corresponding side slide seat 27. The movement of the slide seat 27 drives the lifting slide rod 210 to move synchronously. The pressing positioning block 211 is fixedly connected to the top end of the lifting slide rod 210 and is used to press down and position the magnetic ring inductor to ensure the stability of the magnetic ring inductor's position during processing.
[0033] There are two U-shaped mounting bases 12 arranged symmetrically. The U-shaped mounting base 12 and the machine base 11 are integrally formed, which improves the structural strength and overall stability. The bottom center of the U-shaped mounting base 12 has a waist-shaped hole 13, which makes it easy for the equipment to be installed and fixed on the workbench by fasteners.
[0034] A bushing is provided at the connection between the screw 23 and the rotating shaft seat 22, and the screw 23 is rotatably connected to the rotating shaft seat 22 through the bushing, which reduces the frictional resistance when the screw 23 rotates and improves the smoothness of rotation.
[0035] The lower end face of the pressure positioning block 211 is provided with a rubber buffer layer, and the lower surface of the rubber buffer layer is provided with anti-slip texture. This not only avoids hard damage to the magnetic ring inductor when pressing down, but also enhances the friction between the block and the magnetic ring inductor during positioning, thereby further improving positioning stability.
[0036] Both the slide rail 26 and the slide block 27 have a T-shaped cross-section, and the slide rail 26 and the slide block 27 are compatible, making the slide block 27 more stable when sliding on the slide rail 26 and effectively preventing the slide block 27 from falling off the slide rail 26.
[0037] The lifting slide bar 210 has strip-shaped limiting grooves at both ends, and the inner wall of the slide sleeve 21 has limiting protrusions that match the strip-shaped limiting grooves at both ends. These limit the sliding of the lifting slide bar 210 in a circumferential manner, prevent it from rotating, and improve the stability during the lifting process.
[0038] Two anti-slip pads 3 are fixedly connected to the upper surface of the machine base 11 in a symmetrical manner. The top of the anti-slip pads 3 has multiple anti-slip grooves in an array, which further enhances the friction when in contact with the magnetic ring inductor and prevents the magnetic ring inductor from slipping when placed.
[0039] The working principle of this utility model is as follows: First, according to the specifications of the magnetic ring inductor to be processed, the screw 23 is manually rotated via the lever 24. The screw 23 rotates under the support of the rotating shaft seat 22, causing the threaded sleeve 25 to rise and fall axially along the screw 23, thereby adjusting the overall height of the positioning assembly 2 to match the height of the magnetic ring inductor. Next, the position of the sliding block 27 on the slide rail 26 is adjusted so that the two pressing positioning blocks 211 correspond to the desired positioning position of the magnetic ring inductor. After adjustment, the fastening screw 29 is tightened, and the sliding block 27 is fixed in place by the cooperation of the threaded hole 28 and the fastening screw 29. The magnetic ring inductor is placed at the designated position on the slide rail 26. Then, the magnetic ring inductor is placed on the anti-slip pad 3 on the machine base 11. The anti-slip groove and rubber material of the anti-slip pad 3 enhance the stability during placement. Finally, the lifting slide rod 210 slides down along the slide sleeve 21, driving the pressing positioning block 211 to move down. The rubber buffer layer at the lower end of the pressing positioning block 211 is used to press and position the magnetic ring inductor. At this time, the strip-shaped limiting groove of the lifting slide rod 210 cooperates with the limiting protrusion of the slide sleeve 21 to prevent the lifting slide rod 210 from rotating and ensure the accuracy of the pressing and positioning. After the positioning is completed, the magnetic ring inductor can be processed in subsequent operations.
[0040] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A magnetic ring inductor processing and positioning device, comprising a device body (1) and a positioning component (2), wherein the positioning component (2) is disposed on the device body (1), and the device body (1) is further provided with an anti-slip pad (3). Its features are: The main body of the equipment (1) includes a machine base (11) and a U-shaped mounting base (12). The U-shaped mounting base (12) is fixedly installed below the machine base (11). Two sliding grooves (14) are symmetrically opened in the middle of the upper surface of the machine base (11). The anti-slip pad (3) is fixedly installed on the upper surface of the machine base (11). The positioning component (2) includes a sliding sleeve (21) and a rotating shaft seat (22). The sliding sleeve (21) is slidably disposed in the sliding groove (14), and the rotating shaft seat (22) is fixedly disposed at the center of the bottom end of the machine base (11). The positioning component (2) further includes a screw (23) and a lever (24). The screw (23) is rotatably mounted on the bottom rotating end of the rotating shaft seat (22), and the lever (24) is fixedly disposed at the bottom end of the screw (23). The positioning component (2) further includes a threaded sleeve (25), a slide rail (26) and a slide block (27). The threaded sleeve (25) is threaded onto the screw (23). The slide rail (26) is fixedly connected to both ends of the threaded sleeve (25). The slide block (27) is slidably disposed on the slide rail (26). The positioning component (2) also includes a threaded hole (28) and a fastening screw (29). The threaded hole (28) is formed on the slide (27), and the fastening screw (29) is threaded into the threaded hole (28). The positioning component (2) further includes a lifting slide rod (210) and a pressing positioning block (211). The lifting slide rod (210) slides through the slide sleeve (21). The bottom end of the lifting slide rod (210) is fixedly connected to the slide seat (27) on its corresponding side. The pressing positioning block (211) is fixedly connected to the top end of the lifting slide rod (210).
2. The magnetic ring inductor processing and positioning equipment according to claim 1, characterized in that: The U-shaped mounting base (12) consists of two symmetrically arranged bases. The U-shaped mounting base (12) and the machine base (11) are integrally formed. The U-shaped mounting base (12) has a waist-shaped hole (13) at the bottom center.
3. The magnetic ring inductor processing and positioning equipment according to claim 1, characterized in that: A bushing is provided at the connection between the screw (23) and the rotating shaft seat (22), and the screw (23) is rotatably connected to the rotating shaft seat (22) through the bushing.
4. The magnetic ring inductor processing and positioning equipment according to claim 1, characterized in that: The lower end face of the pressure positioning block (211) is provided with a rubber buffer layer, and the lower surface of the rubber buffer layer is provided with anti-slip texture.
5. The magnetic ring inductor processing and positioning equipment according to claim 1, characterized in that: The slide rail (26) and the slide block (27) both have a T-shaped cross section, and the slide rail (26) and the slide block (27) are compatible.
6. The magnetic ring inductor processing and positioning equipment according to claim 1, characterized in that: The lifting slide rod (210) has strip-shaped limiting grooves at both ends, and the inner wall of the slide sleeve (21) has limiting protrusions that match the strip-shaped limiting grooves at both ends.
7. The magnetic ring inductor processing and positioning equipment according to claim 1, characterized in that: The anti-slip pads (3) are two in a symmetrical manner and are fixedly connected to the upper surface of the machine base (11). The top of the anti-slip pads (3) has multiple anti-slip grooves arranged in an array.