A multi-point synchronous dispensing test fixture for magnetic cores
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-31
- Publication Date
- 2026-08-11
AI Technical Summary
[0002]目前磁芯在进行点胶、检测时需要将其均匀排布在托盘上,再放置于设备内进行操作,而不同的磁芯需要不同型号的托盘,托盘的每次更换都需要设备重新定位,严重影响工作效率
[0007]与现有技术相比,本实用新型的有益效果是:本实用新型滑块与第一双向螺杆螺纹连接,可通过第一双向螺杆轻松带动滑块顺着调节槽相对进行滑动;第二双向螺杆上通过螺纹对称连接有调节座,可通过第二双向螺杆轻松带动调节座相对进行移动;第二直线轴承套装于第二光轴前端,可使第二直线轴承顺着第二光轴直线移动;综合上述本实用新型可轻松对磁芯托盘进行定位放置,有效提高了工作效率。
Smart Images

Figure CN224614243U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a multi-point synchronous dispensing inspection fixture for magnetic cores, belonging to the field of magnetic core processing technology. Background Technology
[0002] Currently, magnetic cores need to be evenly arranged on a tray before being placed in the equipment for dispensing and testing. However, different magnetic cores require different tray models, and each tray change necessitates equipment repositioning, severely impacting work efficiency. To address these issues, a new technical solution is proposed. Utility Model Content
[0003] The purpose of this invention is to provide a multi-point synchronous dispensing inspection fixture for magnetic cores to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a multi-point synchronous dispensing detection fixture for magnetic cores, comprising a base, an adjustment groove being provided in the middle of the top of the base, a first bidirectional screw and a slider being provided on the adjustment groove, the first bidirectional screw being rotatably connected to the middle of the adjustment groove, the slider being symmetrically nested at both ends of the adjustment groove, and the slider being threadedly connected to the first bidirectional screw, a U-shaped support frame being fixedly mounted on the top of the slider by screws, a first optical axis and a second bidirectional screw being provided on the U-shaped support frame, the first optical axis being fixedly mounted on the middle of the rear end of the U-shaped support frame by screws, and the second bidirectional screw being rotatably connected to the middle of the front end of the U-shaped support frame.
[0005] Preferably, a first linear bearing is symmetrically mounted on the first optical axis, a V-shaped bracket is fixed to the top of the first linear bearing by screws, a shaft seat is fixed to the middle of the outer side of the V-shaped bracket by screws, and a second optical axis is fixed to the shaft seat by screws.
[0006] Preferably, the second bidirectional screw is symmetrically connected to an adjusting seat by a thread, and a second V-shaped retainer is fixed to the top of the adjusting seat by a screw. A second linear bearing is fixed to the middle of the outer side of the second V-shaped retainer by a screw, and the second linear bearing is fitted onto the front end of the second optical shaft.
[0007] Compared with the prior art, the beneficial effects of this utility model are as follows: the slider of this utility model is threadedly connected to the first bidirectional screw, which can easily drive the slider to slide relative to the adjusting groove; the second bidirectional screw is symmetrically connected to the adjusting seat by threads, which can easily drive the adjusting seat to move relative to each other; the second linear bearing is fitted onto the front end of the second optical axis, which can make the second linear bearing move linearly along the second optical axis; in summary, this utility model can easily position and place the magnetic core tray, effectively improving work efficiency. Attached Figure Description
[0008] Figure 1 This is a schematic diagram of the structure of this utility model;
[0009] Figure 2 This is a schematic diagram of the base structure of this utility model;
[0010] Figure 3 This is a schematic diagram of the U-shaped support frame structure of this utility model;
[0011] In the figure: 1-base; 2-adjustment groove; 3-first bidirectional screw; 4-slider; 5-U-shaped support frame; 6-first optical axis; 7-second bidirectional screw; 8-first linear bearing; 9-V-type bracket; 10-shaft seat; 11-second optical axis; 12-adjustment seat; 13-second V-type bracket; 14-second linear bearing. Detailed Implementation
[0012] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0013] like Figure 1-3 As shown, a multi-point synchronous dispensing testing fixture for magnetic cores includes a base 1. An adjustment groove 2 is formed in the center of the top of the base 1. A first bidirectional screw 3 and a slider 4 are mounted on the adjustment groove 2. The first bidirectional screw 3 is rotatably connected to the center of the adjustment groove 2. The slider 4 is symmetrically nested at both ends of the adjustment groove 2 and is threadedly connected to the first bidirectional screw 3. A U-shaped support frame 5 is fixed to the top of the slider 4 by screws. A first optical axis 6 and a second bidirectional screw 7 are mounted on the U-shaped support frame 5. The first optical axis 6 is fixed to the center of the rear end of the U-shaped support frame 5 by screws. The second bidirectional screw 7 is rotatably connected to the front end of the U-shaped support frame 5. Inside the U-shaped support frame 5 at the end, a first linear bearing 8 is symmetrically mounted on the first optical axis 6. A V-shaped bracket 9 is fixed to the top of the first linear bearing 8 by screws. A shaft seat 10 is fixed to the outer middle of the V-shaped bracket 9 by screws. A second optical axis 11 is fixed to the shaft seat 10 by screws. An adjusting seat 12 is symmetrically connected to the second bidirectional screw 7 by threads. A second V-shaped bracket 13 is fixed to the top of the adjusting seat 12 by screws. A second linear bearing 14 is fixed to the outer middle of the second V-shaped bracket 13 by screws. The second linear bearing 14 is mounted on the front end of the second optical axis 11.
[0014] Specific usage: Install and fix the base 1 inside the synchronous dispensing detection equipment, with the center of the base 1 as the positioning point; according to the specifications of the magnetic core tray, turn the first bidirectional screw 3 to drive the slider 4 to slide relative to the adjustment groove 2. The relative sliding of the slider 4 causes the V-shaped bracket 9 and the second V-shaped bracket 13 to move relative to each other to adjust the spacing; turn the second bidirectional screw 7 to drive the adjustment seat 12 to move relative to each other. The relative movement of the adjustment seat 12 causes the second V-shaped bracket 13 to move relative to each other to adjust the spacing. At the same time, the relative movement of the second V-shaped bracket 13 drives the second optical axis 11 to move relative to each other through the second linear bearing 14. The relative movement of the second optical axis 11 drives the first linear bearing 8 to move relative to each other along the first optical axis 6. The relative movement of the first linear bearing 8 drives the V-shaped bracket 9 to move relative to each other to adjust the spacing.
[0015] The above description is a preferred embodiment of the present utility model. For those skilled in the art, any changes, modifications, substitutions and variations made to the implementation methods without departing from the principles and spirit of the present utility model, based on the teachings of the present utility model, still fall within the protection scope of the present utility model.
Claims
1. A multi-point synchronous dispensing test fixture for magnetic cores, comprising a base (1), characterized in that: The base (1) has an adjustment groove (2) in the middle of its top. The adjustment groove (2) is provided with a first bidirectional screw (3) and a slider (4). The first bidirectional screw (3) is rotatably connected to the middle of the adjustment groove (2). The slider (4) is symmetrically nested at both ends of the adjustment groove (2) and is threadedly connected to the first bidirectional screw (3). The top of the slider (4) is fixed with a U-shaped support frame (5) by screws. The U-shaped support frame (5) is provided with a first optical axis (6) and a second bidirectional screw (7). The first optical axis (6) is fixed with screws in the middle of the rear U-shaped support frame (5), and the second bidirectional screw (7) is rotatably connected to the middle of the front U-shaped support frame (5).
2. The magnetic core multi-point synchronous dispensing inspection fixture according to claim 1, characterized in that: A first linear bearing (8) is symmetrically mounted on the first optical axis (6). A V-shaped bracket (9) is fixed to the top of the first linear bearing (8) by screws. A shaft seat (10) is fixed to the middle of the outer side of the V-shaped bracket (9) by screws. A second optical axis (11) is fixed to the shaft seat (10) by screws.
3. The magnetic core multi-point synchronous dispensing inspection fixture according to claim 1, characterized in that: The second bidirectional screw (7) is symmetrically connected to an adjustment seat (12) by a thread. The top of the adjustment seat (12) is fixed with a second V-shaped bracket (13) by a screw. The second linear bearing (14) is fixed with a screw on the middle of the outer side of the second V-shaped bracket (13). The second linear bearing (14) is fitted onto the front end of the second optical axis (11).