Driving board test pressing mechanism
By designing a test pressing mechanism for the drive board, synchronous loading and unloading of the drive board and full-function pressing test were achieved, solving the problems of high cost and low positioning accuracy of manual inspection in the existing technology, and improving inspection efficiency and simplifying equipment.
Patent Information
- Application Number
- CN202422753335.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-12
AI Technical Summary
In the existing technology, the testing methods for display driver boards have problems such as high labor costs, low positioning accuracy, low testing accuracy, and complex and costly equipment. In particular, it is difficult to achieve efficient full-function pressing tests on highly integrated gold fingers.
A drive board testing and pressing mechanism was designed, comprising a frame, a pressing test assembly, a material handling assembly, and a conveyor belt assembly. Through the cooperation of the transfer module, the test board module, and the pressing detection module, synchronous loading and unloading of the drive board and full-function pressing test are achieved. The positioning module and the clamping sensing module are used for precise positioning and detection.
It achieves efficient synchronous loading and unloading of drive boards, improves detection accuracy and equipment simplicity, avoids accidental touches and bumps, and reduces equipment complexity and cost.
Smart Images

Figure CN223606584U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model is applied to product detection technical field, and is especially related to a driving plate test compression mechanism. BACKGROUND
[0002] With the continuous progress of automation technology, the production and assembly of various electronic products gradually develop in the direction of automation, and the increasing functions of products lead to the increasing number of internal components. In the field of display products, various components need to be driven by driving plates. With the continuous increase of display functions and the continuous reduction of display thickness, numerous driving components are integrated on the same electronic board to form a driving long plate to fully utilize the internal space of the display. Since the gold finger connection points on the driving plate are relatively dense and the overall length is relatively long, the detection is mainly performed by manually pinning and testing the different functions of the gold finger of the driving long plate. This detection method has high labor cost and low manual alignment accuracy, which may lead to low detection accuracy, inefficient detection, or low pinning accuracy on the integrated gold finger. In addition, different partitions require different detection machines for detection, which is complex and has high overall cost. If a driving plate test compression mechanism with simple structure, accurate positioning, synchronous product feeding and discharging, and full-function compression test for long plate products can be designed, the above problems can be solved. UTILITY MODEL CONTENT
[0003] The utility model solves the technical problems of the prior art, and provides a driving plate test compression mechanism with simple structure, accurate positioning, synchronous product feeding and discharging, and full-function compression test for long plate products.
[0004] The utility model adopts the technical scheme: the utility model discloses a rack, compression test subassembly, take material subassembly and conveyer belt subassembly, the compression test subassembly includes remove and send module, test board module and press down detection module, remove and send module setting in the middle part of rack, test board module sets up remove and send module test end, press down detection module with drive plate product on test board module compression end cooperation, take material subassembly setting in the upper end of rack, conveyer belt subassembly sets up remove and send module feeding end, and take material subassembly movable end with remove and send module movable end cooperation.
[0005] Further, the remove and send module includes a remove and send support, a support plate and a remove and send cylinder. The support plate is slidably connected to the upper end of the remove and send support through a plurality of slide rails. The remove and send cylinder is arranged on the remove and send support. The movable end of the remove and send cylinder is connected to the lower end surface of the support plate.
[0006] Further, the support plate upper end face is provided with a product carrier plate, the product carrier plate upper end face is provided with a product profiling groove, and the picking assembly clamping end clamps the driving plate product on the conveying belt assembly and cooperates with the product profiling groove.
[0007] Further, the conveying belt assembly comprises a first conveying belt and a second conveying belt, and the picking assembly two picking ends are matched with the first conveying belt and the second conveying belt respectively.
[0008] Further, the picking assembly comprises a picking straight line module and two groups of balance plates, two groups of the balance plates are connected with two groups of the picking straight line module movable ends respectively, the balance plate is provided with a picking lifting module, the picking lifting module movable end is provided with a suction disc module, and two groups of the picking straight line module and two groups of the picking lifting module cooperatively drive two groups of the suction disc modules to be matched with the driving plate product on the first conveying belt and the second conveying belt respectively.
[0009] Further, the lower pressing detection module comprises a lower pressing test plate, a lower pressing cylinder and a synchronous plate, the lower pressing cylinder is arranged at the lower end of the transferring module, the lower pressing cylinder movable end is connected with the synchronous plate, and the lower pressing cylinder cooperates with the lower pressing test plate through the synchronous plate and a plurality of linear bearings.
[0010] Further, the test plate module comprises a test fixed plate, a cylinder adjusting module and a pressing test plate, the test fixed plate is arranged at one side of the pressing end of the transferring module, the pressing test plate is connected with the test fixed plate upper end through the cylinder adjusting module, the transferring module drives the driving plate product interface end to be connected with the pressing test plate interface end, and the lower pressing test plate pressing end cooperates with the driving plate product.
[0011] Further, the pressing end of the transferring module is provided with a positioning module, the positioning module comprises a plurality of first position sensors and a plurality of second position sensors, a plurality of the first position sensors cooperate with the lower pressing test plate, and a plurality of the second position sensors cooperate with the driving plate product interface end.
[0012] Further, a clamping sensing module is arranged between the conveying belt assembly and the pressing test assembly, and the clamping sensing module cooperatively senses the driving plate product clamped on the picking assembly.
[0013] Further, the rack outer side is provided with a protection plate and an operation switch module.
[0014] The utility model discloses an advantageous effect is: the material taking subassembly is provided with two groups of material taking adsorption module, can satisfy the realization of feeding and discharging on two conveyors simultaneously, can distinguish the product of testing and testing, and after completing a group of product testing, can realize the quick conversion of feeding and discharging, and the efficiency is higher, the positioning module can respond the positioning situation and the depression situation of product, prevent the situation of knocking or overvoltage product, through the overlapping connection of test board and product golden finger end, can realize the test of whole project, need not carry on the partition test alone, uses test board connection to avoid the situation such as low precision or scratching product, simple structure, and the efficiency is higher. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the perspective view of the utility model;
[0016] Figure 2 It is the perspective view of the utility model hidden rack;
[0017] Figure 3 It is the perspective view of the compression test assembly;
[0018] Figure 4 It is the perspective view of the test board module and the transfer module cooperation;
[0019] Figure 5 It is the perspective view of the material taking subassembly;
[0020] Figure 6 It is the perspective view of the product carrier plate. DETAILED DESCRIPTION
[0021] As Figures 1 to 6 Shown in the embodiment, the utility model includes rack 1, compression test assembly 2, material taking subassembly 3 and conveyer belt assembly 4, the compression test assembly 2 includes transfer module 5, test board module 6 and depression detection module 7, the transfer module 5 sets up in the middle part of rack 1, the test board module 6 sets up in the test end of transfer module 5, the depression detection module 7 cooperates with the drive plate product 8 on the compression end of test board module 6, the material taking subassembly 3 sets up in the upper end of rack 1, the conveyer belt assembly 4 sets up in the feeding end of transfer module 5, the movable end of material taking subassembly 3 cooperates with the movable end of transfer module 5. Thus can see, the material taking module 3 clamps the drive plate product 8 on the conveyer belt assembly 4 through the transfer module 5 and shifts to compression position and is opposite to the test board module 6, through the compression end of depression detection module 7, the drive plate product 8 is compressed, realizes full function test, simple structure, and the efficiency is higher.
[0022] As Figure 3 And Figure 4As shown in the embodiment, the conveying module 5 includes a conveying support 51, a support plate 52 and a conveying cylinder 53. The support plate 52 is slidably connected to the upper end of the conveying support 51 through a plurality of slide rails 54. The conveying cylinder 53 is arranged on the conveying support 51, and the movable end of the conveying cylinder 53 is connected to the lower end surface of the support plate 52. Thus, the support plate 52 is driven by the conveying cylinder 53 to move the driving plate product 8, thereby achieving feeding and discharging of the driving plate product 8.
[0023] As shown in the embodiment, Figure 5 and Figure 6 In the embodiment, the upper end surface of the support plate 52 is provided with a product carrier plate 55, and the upper end surface of the product carrier plate 55 is provided with a product profiling groove 56. The clamping end of the material taking assembly 3 clamps the driving plate product 8 on the conveying belt assembly 4, which is matched with the product profiling groove 56. Thus, the product profiling groove 56 realizes positioning of the driving plate product 8, so that the driving plate product 8 can be smoothly docked with the test plate module 6.
[0024] As shown in the embodiment, Figure 1 and Figure 2 In the embodiment, the conveying belt assembly 4 includes a first conveying belt 41 and a second conveying belt 42. The two clamping ends of the material taking assembly 3 are matched with the first conveying belt 41 and the second conveying belt 42, respectively. Thus, the first conveying belt 41 and the second conveying belt 42 realize the shunting of feeding and discharging of the driving plate product 8, and do not interfere with each other.
[0025] As shown in the embodiment, Figure 2 and Figure 5 In the embodiment, the material taking assembly 3 includes a material taking linear module 31 and two sets of balance plates 32. The two sets of balance plates 32 are respectively connected to the two sets of movable ends of the material taking linear module 31. The balance plate 32 is provided with a material taking lifting module 33, and the movable end of the material taking lifting module 33 is provided with a suction disc module 34. The two sets of material taking linear modules 31 and the two sets of material taking lifting modules 33 are matched to drive the two sets of suction disc modules 34 to be respectively matched with the driving plate products 8 on the first conveying belt 41 and the second conveying belt 42. Thus, the two sets of movable ends of the material taking linear module 31 respectively drive the two sets of suction disc modules 34 to be matched with the two sets of conveying belts. After the driving plate product 8 is adsorbed and tested, synchronous movement of the driving plate product 8 can realize discharging and secondary feeding operation, and the efficiency is higher.
[0026] As shown in the embodiment, Figure 2 and Figure 3As shown, in this embodiment, the pressure detection module 7 includes a pressure test plate 71, a pressure cylinder 72, and a synchronization plate 73. The pressure cylinder 72 is located at the lower end of the transfer module 5, and its movable end is connected to the synchronization plate 73. The pressure cylinder 72 cooperates with the pressure test plate 71 through the synchronization plate 73 and several linear bearings 74. Therefore, the pressure cylinder 72 realizes the lifting and lowering of the pressure test plate 71, achieving the pressing of the drive plate product 8. The synchronization plate 73 and the several linear bearings 74 ensure more uniform downward pressure, avoiding overpressure.
[0027] like Figures 2 to 4 As shown, in this embodiment, the test board module 6 includes a test fixing plate 61, a cylinder adjustment module 62, and a pressing test plate 63. The test fixing plate 61 is disposed on one side of the pressing end of the transfer module 5. The pressing test plate 63 is connected to the upper end of the test fixing plate 61 through the cylinder adjustment module 62. The transfer module 5 drives the interface end of the drive board product 8 to connect with the interface end of the pressing test plate 63. The pressing end of the pressing test plate 71 cooperates with the drive board product 8. Therefore, the cylinder adjustment module 62 provides adjustment for the pressing test plate 63, adaptively adapting to the placement angle of the drive board product 8, resulting in higher test connection accuracy.
[0028] like Figures 1 to 3 As shown, in this embodiment, the pressing end of the transfer module 5 is provided with a positioning module 9. The positioning module 9 includes a plurality of first position sensors 91 and a plurality of second position sensors 92. The plurality of first position sensors 91 cooperate with the pressing test plate 71, and the plurality of second position sensors 92 cooperate with the interface end of the drive board product 8. Therefore, the plurality of first position sensors 91 and the plurality of second position sensors 92 achieve precise positioning of the drive board product 8 and precise control of the pressing stroke, resulting in higher pressing success rate.
[0029] like Figure 2 As shown, in this embodiment, a clamping sensing module 10 is provided between the conveyor belt assembly 4 and the pressing test assembly 2. The clamping sensing module 10 is in responsive engagement with the drive board product 8 clamped on the material handling assembly 3. Therefore, the clamping sensing module 10 can identify the clamping status of the two clamping ends of the material handling assembly 3 and control the movement of the material handling assembly 3 and the transfer module 5.
[0030] like Figure 1 As shown in this embodiment, a protective plate 11 and an operation switch module 12 are provided on the outside of the frame 1. Therefore, the protective plate 11 serves to provide an independent working environment during automated production.
[0031] The working principle of the utility model: before the equipment starts, the first conveying belt 41 of external feeding mechanism transmits the drive plate product 8 to the feeding position, the suction cup module 34 outside the taking component 3 adsorbs the drive plate product 8 and then puts into the product carrier 55, the transfer cylinder 53 shifts the drive plate product 8 to the pressing position and the pressing test board 63 is opposite, after completing the butt joint, the lower pressure cylinder 72 drives the lower pressure test board 71 and the drive plate product 8 is pressed and is electrified detection, after completing the detection, the lower pressure cylinder 72 resets, the transfer cylinder 53 shifts the drive plate product 8 tested to the discharging position, the suction cup module 34 inside the taking component 3 adsorbs the drive plate product 8 tested, the suction cup module 34 outside the taking component 3 synchronously adsorbs the new product to be measured and the drive plate product 8 tested to replace, the two movable ends of the taking component 3 synchronously move to the first conveying belt 41 and the second conveying belt 42 above and then synchronously drop, the suction cup module 34 inside the taking component 3 puts the drive plate product 8 detected into the second conveying belt 42, the suction cup module 34 outside the taking component 3 synchronously adsorbs the new product to be measured, and the above steps are repeated, that is, the synchronous feeding and pressing test of drive plate can be realized.
[0032] Although the embodiments of the utility model are described in actual scheme, but do not constitute the limitation to the meaning of the utility model, for the person skilled in the art, according to the modification of its implementation scheme and the combination with other schemes are obvious.
Claims
1. A driving plate test press-fit mechanism, comprising a rack (1), a press-fit test assembly (2), a material taking assembly (3) and a conveying belt assembly (4), characterized in that: The pressing test assembly (2) comprises a transfer module (5), a test plate module (6) and a pressing detection module (7), the transfer module (5) is arranged in the middle of the rack (1), the test plate module (6) is arranged at the test end of the transfer module (5), the pressing detection module (7) is matched with the driving plate product (8) on the pressing end of the test plate module (6), the material taking assembly (3) is arranged at the upper end of the rack (1), the conveying belt assembly (4) is arranged at the feeding end of the transfer module (5), and the movable end of the material taking assembly (3) is matched with the movable end of the transfer module (5).
2. The drive board test press mechanism of claim 1, wherein: The transfer module (5) comprises a transfer support (51), a support plate (52) and a transfer cylinder (53), the support plate (52) is slidably connected to the upper end of the transfer support (51) through a plurality of slide rails (54), and the transfer cylinder (53) is arranged on the transfer support (51) and connected to the lower end surface of the support plate (52).
3. The drive board test press mechanism of claim 2, wherein: The upper end surface of the support plate (52) is provided with a product carrier plate (55), the upper end surface of the product carrier plate (55) is provided with a product profiling groove (56), and the clamping end of the material taking assembly (3) clamps the driving plate product (8) on the conveying belt assembly (4) and matches with the product profiling groove (56).
4. The drive board test press mechanism of claim 1, wherein: The conveying belt assembly (4) comprises a first conveying belt (41) and a second conveying belt (42), and the two material taking ends of the material taking assembly (3) are matched with the first conveying belt (41) and the second conveying belt (42) respectively.
5. The drive board test press mechanism of claim 4, wherein: The material taking assembly (3) comprises a material taking linear module (31) and two groups of balance plates (32), the two groups of balance plates (32) are connected to the two groups of movable ends of the material taking linear module (31) respectively, the balance plate (32) is provided with a material taking lifting module (33), the movable end of the material taking lifting module (33) is provided with a suction disc module (34), and the two groups of material taking linear modules (31) and the two groups of material taking lifting modules (33) are matched to drive the two groups of suction disc modules (34) to be matched with the driving plate products (8) on the first conveying belt (41) and the second conveying belt (42) respectively.
6. The drive board test press mechanism of claim 1, wherein: The pressing detection module (7) comprises a pressing test plate (71), a pressing cylinder (72) and a synchronization plate (73), the pressing cylinder (72) is arranged at the lower end of the transfer module (5), the movable end of the pressing cylinder (72) is connected to the synchronization plate (73), and the pressing cylinder (72) is matched with the pressing test plate (71) through the synchronization plate (73) and a plurality of linear bearings (74).
7. The drive board test press mechanism of claim 6, wherein: The test plate module (6) is provided with a test fixed plate (61), a cylinder adjusting module (62) and a pressing test plate (63), the test fixed plate (61) is arranged on one side of the pressing end of the transfer module (5), the pressing test plate (63) is connected to the upper end of the test fixed plate (61) through the cylinder adjusting module (62), the transfer module (5) drives the interface end of the driving plate product (8) to be connected to the interface end of the pressing test plate (63), and the pressing end of the lower pressing test plate (71) is matched with the driving plate product (8).
8. The drive board test press mechanism of claim 6, wherein: The pressing end of the transfer module (5) is provided with a positioning module (9), the positioning module (9) comprises a plurality of first position sensors (91) and a plurality of second position sensors (92), the plurality of first position sensors (91) are matched with the lower pressing test plate (71), and the plurality of second position sensors (92) are matched with the interface end of the driving plate product (8).
9. The drive board test press mechanism of claim 1, wherein: A clamping sensing module (10) is arranged between the conveying belt assembly (4) and the pressing test assembly (2), and the clamping sensing module (10) is inductively matched with the driving plate product (8) clamped on the taking component (3).
10. The drive board test press mechanism of claim 1, wherein: The outer side of the rack (1) is provided with a protective plate (11) and an operation switch module (12).