Double-pressing-plate detection device
By using a dual-pressure plate testing device and go/no-go gauges to inspect the functional holes and cavity sidewall gaps of the automotive wireless charging housing, the problem of not being able to perform full inspection in existing technologies is solved, enabling rapid and convenient mass production testing.
Patent Information
- Application Number
- CN202520619136.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-04-03
AI Technical Summary
Existing technologies cannot achieve full inspection of the hole position and internal cavity of the wireless charging housing for automobiles. The three-coordinate method is only suitable for spot inspection and cannot meet the needs of mass production.
Design a dual-pressure plate detection device. The housing is fixed from the bottom and top of the housing by the first pressure plate mechanism and the second pressure plate mechanism respectively. The go/no-go gauge is used to detect the clearance between the functional hole and the cavity sidewall to determine whether the hole position and cavity contour are qualified.
It enables rapid and convenient testing of the hole position and cavity contour of automotive wireless charging housings, making it suitable for mass production.
Smart Images

Figure CN223869963U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of detection, especially, relate to a double-pressing plate detection device. BACKGROUND
[0002] The automobile wireless charging shell is formed by injection molding, usually has multiple function holes, and needs to be inspected in terms of hole position and internal cavity before leaving factory. At present, the method for detecting hole position and internal cavity mainly is three coordinate method, but this detection method cannot realize mass production detection, is only suitable for sampling inspection, and cannot meet the full inspection demand. UTILITY MODEL CONTENTS
[0003] The utility model mainly solves the technical problem to provide a double-pressing plate detection device, first, the shell is fixed on the upper portion of the support frame through the first pressing plate mechanism, at this time, the first profiling pressing plate is pressed in the cavity of the shell, the first go no go gauge and the third go no go gauge are used to detect the function hole of the shell, and the gap between the first profiling pressing plate and the cavity side wall is detected by using the go no go gauge; then, the shell is fixed on the upper portion of the support frame through the second pressing plate mechanism, the second go no go gauge is used to detect the function hole of the shell; if it can pass, the function hole position is qualified, and if it cannot pass, the function hole position is unqualified. The gauge is simple to operate and convenient to promote.
[0004] To solve the above technical problems, one technical scheme of the utility model is as follows: a double-pressing plate detection device, which comprises:
[0005] A base, a plurality of support frames, a hole position detection mechanism, a first pressing plate mechanism and a second pressing plate mechanism, the plurality of support frames are arranged on the upper portion of the base, the hole position detection mechanism is arranged on the upper portion of the base, the first pressing plate mechanism and the second pressing plate mechanism are both arranged on the upper portion of the base, and the first pressing plate mechanism and the second pressing plate mechanism are located on the two sides of the support frame;
[0006] The hole position detection mechanism comprises a mounting plate and two first go no go gauges arranged on the mounting plate;
[0007] The first pressing plate mechanism comprises a first mounting rod and a first profiling pressing plate for pressing the bottom of the material;
[0008] The second pressing plate mechanism comprises a second mounting rod and a second profiling pressing plate for pressing the top of the material.
[0009] Preferably, the first pressing plate mechanism further comprises a first mounting block, a first mounting seat and a first mounting arm, the first mounting block is arranged on the upper portion of the base, the first mounting seat is arranged on the upper portion of the first mounting block, the upper portion of the first mounting seat is provided with a first mounting groove, the first mounting arm is rotationally arranged in the first mounting groove through a first rotating shaft, and the first mounting rod is arranged at one end of the first mounting arm away from the first mounting seat.
[0010] Preferably, one side of the first mounting seat is provided with a first pin shaft, and one side of the first mounting arm is provided with a first positioning slot matched with the first pin shaft.
[0011] Preferably, the second pressing plate mechanism further comprises a second mounting block, a second mounting seat and a second mounting arm, the second mounting block is arranged on the upper portion of the base, the second mounting seat is arranged on the upper portion of the second mounting block, the upper portion of the second mounting seat is provided with a second mounting slot, the second mounting arm is rotatably arranged in the second mounting slot through a second rotating shaft, and the second mounting rod is arranged at one end of the second mounting arm away from the second mounting seat.
[0012] Preferably, one side of the second mounting seat is provided with a second pin shaft, and one side of the second mounting arm is provided with a second positioning slot matched with the second pin shaft.
[0013] The upper portion of the second profiling pressing plate is further provided with a connecting plate, the upper portion of the connecting plate is provided with a second go-no go gauge, and a spring is arranged between the second go-no go gauge and the connecting plate.
[0014] Preferably, the hole position detection mechanism further comprises a third mounting block, a fixed block, a plug pin and a plug-in piece, the third mounting block is arranged on the upper portion of the base, the fixed block is arranged on the upper portion of the third mounting block, the plug-in piece is slidably arranged in the fixed block, the plug pin is arranged on the upper portion of the fixed block and is used for fixing the relative position of the plug-in piece and the fixed block, the mounting plate is arranged at one end of the plug-in piece, and a spring is arranged between the first go-no go gauge and the mounting plate.
[0015] Preferably, one side of the fixed block is provided with a sliding hole matched with the plug-in piece, and the upper portion of the fixed block is provided with a plug hole matched with the plug pin, and the sliding hole is communicated with the plug hole.
[0016] The upper portion of the plug-in piece is uniformly provided with a plurality of limiting holes matched with the plug pin.
[0017] Preferably, the lower portion of the supporting frame is provided with a plurality of third go-no go gauges, and a spring is arranged between the third go-no go gauges and the supporting frame.
[0018] The upper portion of the supporting frame is further provided with a positioning column.
[0019] The utility model discloses the following beneficial effects:
[0020] The detection device first fixes the shell on the upper part of the support frame through the first pressing plate mechanism, at this time, the first profiling pressing plate is pressed in the cavity of the shell, the first go-no-go gauge and the third go-no-go gauge pass and stop the functional hole of the shell, and then the go-no-go gauge passes and stops the gap between the first profiling pressing plate and the side wall of the cavity; then, the shell is fixed on the upper part of the support frame through the second pressing plate mechanism, and the second go-no-go gauge passes and stops the functional hole of the shell; if it can pass, the position degree of the functional hole is qualified, if it cannot pass, the position degree of the functional hole is unqualified; the go-no-go gauge passes and stops the gap between the first profiling pressing plate and the side wall of the cavity, if it can pass, the profile degree of the cavity is unqualified, if it cannot pass, the profile degree of the cavity is qualified, the detection device is simple to operate and convenient to popularize. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is the schematic diagram of the overall structure of the utility model Figure One ;
[0022] Figure 2 is the schematic diagram of the overall structure of the utility model Figure Two ;
[0023] Figure 3 is Figure 2 the schematic diagram of the local amplification.
[0024] The marks of the parts in the drawings are as follows:
[0025] 100, base;
[0026] 200, support frame; 201, third go-no-go gauge; 202, positioning column;
[0027] 300, hole position detection mechanism; 301, mounting plate; 302, first go-no-go gauge; 303, third mounting block; 304, fixed block; 305, bolt; 306, plug-in part; 307, sliding hole; 308, insertion hole; 309, limiting hole;
[0028] 400, first pressing plate mechanism; 401, first mounting rod; 402, first profiling pressing plate; 403, first mounting block; 404, first mounting seat; 405, first mounting arm; 406, first mounting groove; 407, first rotating shaft; 408, first pin shaft;
[0029] 500, second pressing plate mechanism; 501, second mounting rod; 502, second profiling pressing plate; 503, second mounting block; 504, second mounting seat; 505, second mounting arm; 506, second mounting groove; 507, second rotating shaft; 508, second pin shaft; 509, second positioning groove; 510, connecting plate; 511, second go-no-go gauge. DETAILED DESCRIPTION
[0030] The advantages and features of the present application can be more easily understood by those skilled in the art from the preferred embodiments of the present application described in detail below in conjunction with the accompanying drawings, so that the scope of protection of the present application can be more clearly defined.
[0031] Embodiment: Refer to Figures 1-3 As shown in the figure, a double-pressing plate detection device, which comprises:
[0032] The base 100, a plurality of support frames 200, a hole position detection mechanism 300, a first pressing plate mechanism 400 and a second pressing plate mechanism 500, a plurality of support frames 200 are arranged on the upper part of the base 100, the hole position detection mechanism 300 is arranged on the upper part of the base 100, the first pressing plate mechanism 400 and the second pressing plate mechanism 500 are arranged on the upper part of the base 100, and the first pressing plate mechanism 400 and the second pressing plate mechanism 500 are located on both sides of the support frame 200;
[0033] The hole position detection mechanism 300 comprises a mounting plate 301 and two first go-no-go gauges 302 arranged on the mounting plate 301;
[0034] The first pressing plate mechanism 400 comprises a first mounting rod 401 and a first profiling pressing plate 402 for pressing the bottom of the material;
[0035] The second pressing plate mechanism 500 comprises a second mounting rod 501 and a second profiling pressing plate 502 for pressing the top of the material.
[0036] Further, the first pressing plate mechanism 400 further comprises a first mounting block 403, a first mounting seat 404 and a first mounting arm 405, the first mounting block 403 is arranged on the upper part of the base 100, the first mounting seat 404 is arranged on the upper part of the first mounting block 403, the upper part of the first mounting seat 404 is provided with a first mounting groove 406, the first mounting arm 405 is rotatably arranged in the first mounting groove 406 through a first rotating shaft 407, and the first mounting rod 401 is arranged at one end of the first mounting arm 405 away from the first mounting seat 404.
[0037] The lower part of the support frame 200 is provided with a plurality of third go-no-go gauges 201, and springs are arranged between the third go-no-go gauges 201 and the support frame 200;
[0038] The upper part of the support frame 200 is further provided with a positioning column 202, which is used for positioning the shell when the shell is placed.
[0039] The shell is fixed on the upper part of the support frame 200 by the first pressing plate mechanism 400, at this time, the first profiling pressing plate 402 is pressed in the cavity of the shell, the first go-no-go gauge 302 and the third go-no-go gauge 201 go through the function hole of the shell, if it can pass, the function hole position degree is qualified, if it cannot pass, the function hole position degree is unqualified.
[0040] The go-no-go gauge goes through the gap between the first profiling pressing plate 402 and the side wall of the cavity, if it can pass, the profile degree of the cavity is unqualified, if it cannot pass, the profile degree of the cavity is qualified.
[0041] Among them, one side of the first mounting seat 404 is provided with a first pin shaft 408, one side of the first mounting arm 405 is provided with a first positioning groove matched with the first pin shaft 408, the first pin shaft 408 is inserted into the first positioning groove, for limiting the rotation of the first mounting arm 405.
[0042] The second pressing plate mechanism 500 further comprises a second mounting block 503, a second mounting seat 504 and a second mounting arm 505, the second mounting block 503 is arranged on the upper part of the base 100, the second mounting seat 504 is arranged on the upper part of the second mounting block 503, the upper part of the second mounting seat 504 is provided with a second mounting groove 506, the second mounting arm 505 is rotatably arranged in the second mounting groove 506 through a second rotating shaft 507, and the second mounting rod 501 is arranged at one end of the second mounting arm 505 away from the second mounting seat 504.
[0043] One side of the second mounting seat 504 is provided with a second pin shaft 508, one side of the second mounting arm 505 is provided with a second positioning groove 509 matched with the second pin shaft 508;
[0044] The upper part of the second profiling pressing plate 502 is further provided with a connecting plate 510, the upper part of the connecting plate 510 is provided with a second go-no-go gauge 511, and a spring is arranged between the second go-no-go gauge 511 and the connecting plate 510.
[0045] The second pressing plate mechanism 500 fixes the shell on the upper part of the support frame 200, and the second go-no-go gauge 511 goes through the function hole of the shell; if it can pass, the function hole position degree is qualified, if it cannot pass, the function hole position degree is unqualified.
[0046] In addition, the hole position detection mechanism 300 further comprises a third mounting block 303, a fixing block 304, a bolt 305 and a plug 306, the third mounting block 303 is arranged on the upper portion of the base 100, the fixing block 304 is arranged on the upper portion of the third mounting block 303, the plug 306 is slidingly arranged in the interior of the fixing block 304, the bolt 305 is arranged on the upper portion of the fixing block 304, the bolt 305 is used for fixing the relative position of the plug 306 and the fixing block 304, the mounting plate 301 is arranged on one end of the plug 306, and the spring is arranged between the first go-no-go gauge 302 and the mounting plate 301.
[0047] The side of the fixing block 304 is provided with a sliding hole 307 matched with the plug 306, and the upper portion of the fixing block 304 is provided with a plug hole 308 matched with the bolt 305, the sliding hole 307 is communicated with the plug hole 308.
[0048] The upper portion of the plug 306 is uniformly provided with a plurality of limiting holes 309 matched with the bolt 305.
[0049] The working principle of the utility model is as follows:
[0050] 1. First, the shell is fixed on the upper portion of the support frame 200 through the first pressing plate mechanism 400, at this time, the first profiling pressing plate 402 is pressed in the cavity of the shell, the first go-no-go gauge 302 and the third go-no-go gauge 201 are used for go-no-go of the functional hole of the shell, and the go-no-go gauge is used for go-no-go of the gap between the first profiling pressing plate 402 and the cavity side wall.
[0051] 2. Then, the first pressing plate mechanism 400 is removed, and the shell is fixed on the upper portion of the support frame 200 through the second pressing plate mechanism 500, and the second go-no-go gauge 511 is used for go-no-go of the functional hole of the shell.
[0052] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation, direct or indirect application in other related technical fields, all are included in the patent protection range of the utility model.
Claims
1. A dual-pressure plate detection device, characterized in that, The device includes: The base comprises a plurality of support frames, a hole position detection mechanism, a first pressure plate mechanism, and a second pressure plate mechanism. The plurality of support frames are disposed on the upper part of the base, the hole position detection mechanism is disposed on the upper part of the base, and the first pressure plate mechanism and the second pressure plate mechanism are both disposed on the upper part of the base, and the first pressure plate mechanism and the second pressure plate mechanism are located on both sides of the support frames. The hole position detection mechanism includes a mounting plate and two first go / no-go gauges disposed on the mounting plate; The first pressure plate mechanism includes a first mounting rod and a first contour pressure plate for pressing down the bottom of the material; The second pressure plate mechanism includes a second mounting rod and a second contour pressure plate for pressing down the top of the material.
2. The dual-pressure plate detection device according to claim 1, characterized in that: The first pressure plate mechanism further includes a first mounting block, a first mounting seat, and a first mounting arm. The first mounting block is disposed on the upper part of the base, the first mounting seat is disposed on the upper part of the first mounting block, the upper part of the first mounting seat is provided with a first mounting groove, the first mounting arm is rotatably disposed in the first mounting groove via a first rotating shaft, and the first mounting rod is disposed at the end of the first mounting arm away from the first mounting seat.
3. The dual-pressure plate detection device according to claim 2, characterized in that: A first pin is provided on one side of the first mounting base, and a first positioning groove matching the first pin is provided on one side of the first mounting arm.
4. The dual-pressure plate detection device according to claim 1, characterized in that: The second pressure plate mechanism also includes a second mounting block, a second mounting seat, and a second mounting arm. The second mounting block is disposed on the upper part of the base, and the second mounting seat is disposed on the upper part of the second mounting block. The upper part of the second mounting seat is provided with a second mounting groove. The second mounting arm is rotatably disposed in the second mounting groove via a second rotating shaft, and the second mounting rod is disposed at the end of the second mounting arm away from the second mounting seat.
5. The dual-pressure plate detection device according to claim 4, characterized in that: A second pin is provided on one side of the second mounting base, and a second positioning groove matching the second pin is provided on one side of the second mounting arm. The upper part of the second conforming pressure plate is also provided with a connecting plate, and the upper part of the connecting plate is provided with a second go / no-go gauge, and a spring is provided between the second go / no-go gauge and the connecting plate.
6. The dual-pressure plate detection device according to claim 5, characterized in that: The hole position detection mechanism also includes a third mounting block, a fixing block, a pin, and a connector. The third mounting block is located on the upper part of the base, the fixing block is located on the upper part of the third mounting block, the connector is slidably located inside the fixing block, the pin is located on the upper part of the fixing block, and the pin is used to fix the relative position of the connector and the fixing block. The mounting plate is located at one end of the connector, and a spring is provided between the first go / no-go gauge and the mounting plate.
7. The dual-pressure plate detection device according to claim 6, characterized in that: One side of the fixing block is provided with a sliding hole that matches the plug-in, and the upper part of the fixing block is provided with a plug hole that matches the pin. The sliding hole communicates with the plug hole. The upper part of the connector is evenly provided with several limiting holes that match the pin.
8. The dual-pressure plate detection device according to claim 1, characterized in that: The lower part of the support frame is provided with several third go-no-go gauges, and a spring is provided between the third go-no-go gauges and the support frame; The upper part of the support frame is also equipped with positioning columns.