Novel double-station flexible automatic oblique inserting device
By designing a new double-station flexible automatic oblique insertion device, parallel inspection and clamping operations of products are achieved, solving the problems of low efficiency and insufficient precision of traditional equipment, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202422374754.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-09-27
AI Technical Summary
Traditional single-station equipment is difficult to meet the needs of efficient and flexible production in the fields of electronic products and precision machinery. Manual operation can easily cause product damage, and it is difficult to ensure consistent assembly quality and precision.
A new dual-station flexible automatic oblique insertion device is designed, including a detection component, a clamping part, a limit component and a reset component to realize parallel detection and clamping operations of the product. It uses the M.2 interface for high-precision docking and fixes the hard disk through the hard disk fixing plate and hard disk pressure block to prevent movement or damage.
It improves production line efficiency, ensures detection accuracy and product safety, reduces detection errors caused by angle deviation, and improves product reliability and service life.
Smart Images

Figure CN223413340U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of mainboard detection technology development, in particular to a novel double-station flexible automatic oblique insertion device. Background Art
[0002] With the rapid development of modern manufacturing, especially the continuous pursuit of production efficiency and product quality in the fields of electronic products, precision machinery and automated production lines, traditional single-station equipment can no longer meet the needs of efficient and flexible production;
[0003] Traditional board insertion and workpiece assembly processes often rely on manual or semi-automated equipment, which is not only inefficient but also difficult to ensure consistent assembly quality and precision. This is especially true when handling delicate tasks like inserting an M.2 interface card on a computer motherboard. Manual operation can easily lead to scratches and damage to the gold-finger, impacting product reliability and service life. Therefore, it is crucial to develop an automatic, precise, and flexible oblique insertion device that can automatically and precisely accommodate boards or workpieces of varying specifications. To address this issue, the present inventors have proposed a novel, dual-station, flexible, automatic oblique insertion device. Utility Model Content
[0004] In view of the shortcomings of the above technologies, the present invention provides a novel double-station flexible automatic oblique insertion device.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: a new double-station flexible automatic oblique insertion device, including a detection component, a clamping part, a limit component and a reset component. The clamping part is vertically installed on the detection component for clamping the product to be detected, the limit component is vertically installed on the clamping part for limiting the clamping part, the reset component is vertically installed on the limit component for driving the limit component to reset, the detection component includes a motherboard and an M.2 interface, and the M.2 interface is vertically installed on the motherboard for detecting products.
[0006] As a further explanation, the clamping part includes a board fixing part, a board connecting part and an adapter plate. The board connecting part is vertically installed on the board fixing part for clamping the product to be tested, and the adapter plate is vertically installed on the board fixing part.
[0007] As a further explanation, an M.2 hard drive is provided outwardly extending from the adapter plate, and the M.2 hard drive is vertically installed on the adapter plate. A hard drive fixing plate is provided outwardly extending from the board-card connector, and the hard drive fixing plate is vertically installed on the board-card connector. A hard drive pressure block is provided outwardly extending from the hard drive fixing plate, and the hard drive pressure block is vertically installed on the hard drive fixing plate.
[0008] As a further explanation, the limiting assembly includes a first support, a first pin and a connecting plate. The first support is vertically installed on the board connector, the connecting plate is vertically installed on the first support, and the first pin is horizontally installed on the connecting plate and passes through.
[0009] As a further explanation, a second support is provided extending outward from the connecting plate, and the second support is vertically installed on the connecting plate. A second pin is provided extending outward from the connecting plate, and the second pin is horizontally installed on the connecting plate and passes through.
[0010] As a further explanation, the second support is provided with a support portion extending outward, the support portion is vertically installed on the second support, the support portion includes a fixing plate and a support plate, the fixing plate is vertically installed on the second support, and the support plate is vertically installed on the fixing plate.
[0011] As a further explanation, the reset assembly includes a first torsion spring and a second torsion spring. The first torsion spring is sleeved inside the first pin shaft, and the second torsion spring is sleeved inside the second pin shaft. The first torsion spring and the second torsion spring respectively drive the connecting plate to reset.
[0012] As a further explanation, a driving cylinder is provided extending outward from the support plate, and the driving cylinder is vertically installed on the support plate. A cylinder fixing piece is provided extending outward from the driving cylinder, and the cylinder fixing piece is vertically installed on the driving cylinder.
[0013] As a further explanation, an adjustable fixing piece is provided extending outward from the cylinder fixing piece, and the adjustable fixing piece is vertically installed on the cylinder fixing piece.
[0014] In summary, the present invention has the following beneficial effects: The present invention provides a novel dual-station flexible automatic oblique insertion device. The dual-station design allows one station to conduct product inspection while another station prepares or performs clamping operations, thus achieving parallel processing of the inspection process and significantly improving the efficiency of the entire production line. The M.2 interface in the inspection component is directly mounted vertically on the motherboard, ensuring high-precision docking and inspection of the product interface while reducing inspection errors caused by angular deviation. In addition, the combination of the hard drive fixing plate and the hard drive pressure block effectively secures the M.2 hard drive, preventing it from moving or being damaged during the inspection process, thereby ensuring the accuracy of the inspection results and the safety of the product. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of a new double-station flexible automatic oblique insertion device of the present utility model;
[0016] Figure 2This is a structural diagram of a novel double-station flexible automatic oblique insertion device of the present utility model;
[0017] Figure 3 This is a schematic diagram of the reset component structure of a new double-station flexible automatic oblique insertion device of the utility model.
[0018] Numbers in the figure: 10-detection component, 101-mainboard, 102-M.2 interface, 20-clamping part, 201-hard disk pressure block, 202-hard disk fixing plate, 203-M.2 hard disk, 204-board fixing part, 205-board connecting part, 206-adapter plate, 30-limiting component, 301-first support, 302-first pin shaft, 303-second pin shaft, 304-second support, 305-connecting plate, 40-support part, 401-fixed plate, 402-support plate, 50-reset assembly, 501-first torsion spring, 502-second torsion spring. DETAILED DESCRIPTION
[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0020] like Figure 1-3 As shown, a new type of double-station flexible automatic oblique insertion device includes a detection component, a clamping part, a limit component and a reset component. The clamping part is vertically installed on the detection component for clamping the product to be detected, the limit component is vertically installed on the clamping part for limiting the clamping part, the reset component is vertically installed on the limit component for driving the limit component to reset, and the detection component includes a motherboard 101 and an M.2 interface 102. The M.2 interface 102 is vertically installed on the motherboard 101 for detecting the product.
[0021] Specifically, the M.2 interface 102 in the detection component is directly mounted vertically on the mainboard 101, ensuring high-precision docking and detection of the product interface, while reducing detection errors caused by angle deviation and improving practicality.
[0022] The clamping part includes a board fixing part 204 , a board connecting part 205 and an adapter plate 206 . The board connecting part 205 is vertically mounted on the board fixing part 204 for clamping the product to be inspected. The adapter plate 206 is vertically mounted on the board fixing part 204 .
[0023] Specifically, first, according to the specifications and dimensions of the product to be tested, adjust the board fixture 204, board connector 205, and adapter plate 206 of the clamping part to ensure that they can firmly clamp the product. At the same time, by adjusting the adjustable fixture 2 on the cylinder fixture 3, adjust the extension length of the drive cylinder 1 to adapt to different oblique insertion depth requirements. Then, place the product to be tested on the board connector 205 and firmly clamp it with the board fixture 204 and hard disk fixing plate 202. At this time, the M.2 hard disk 203 (if installed) is aligned with the M.2 interface 102 on the motherboard 101 through the adapter plate 206, ready for subsequent testing.
[0024] An M.2 hard drive 203 is provided outwardly extending from the adapter plate 206, and the M.2 hard drive 203 is vertically installed on the adapter plate 206. A hard drive fixing plate 202 is provided outwardly extending from the board connector 205, and the hard drive fixing plate 202 is vertically installed on the board connector 205. A hard drive pressure block 201 is provided outwardly extending from the hard drive fixing plate 202, and the hard drive pressure block 201 is vertically installed on the hard drive fixing plate 202.
[0025] Specifically, once the M.2 drive 203 is fully connected to the M.2 interface 102 on the motherboard 101, the detection component begins operating, performing various performance tests and verifying data transmission on the M.2 drive 203 through the circuitry on the motherboard 101. During this process, all components remain fixed to ensure accuracy and stability of the detection.
[0026] The limiting assembly includes a first support 301, a first pin 302 and a connecting plate 305. The first support 301 is vertically installed on the board connector 205, the connecting plate 305 is vertically installed on the first support 301, and the first pin 302 is horizontally installed on the connecting plate 305 and passes through.
[0027] Specifically, during the detection process, the limiting assembly limits the clamping part through the coordinated action of the first support 301, the first pin 302, the connecting plate 305, the second support 304 and the second pin 303 to ensure its stability and accuracy during the detection process.
[0028] A second support 304 is provided on the connecting plate 305 extending outwards. The second support 304 is vertically mounted on the connecting plate 305. A second pin 303 is provided on the connecting plate 305 extending outwards. The second pin 303 is horizontally mounted on the connecting plate 305 and passes through.
[0029] Specifically, the first support 301 and the second support 304 serve as support points to ensure the stability of the clamping portion during the oblique insertion process.
[0030] The second support 304 is extended outward to form a support portion, which is vertically mounted on the second support 304 . The support portion includes a fixing plate 401 and a support plate 402 . The fixing plate 401 is vertically mounted on the second support 304 , and the support plate 402 is vertically mounted on the fixing plate 401 .
[0031] Specifically, the fixing plate 401 and the supporting plate 402 are provided to support the driving cylinder 1 , thereby improving the stability of the driving cylinder 1 .
[0032] The reset assembly includes a first torsion spring 501 and a second torsion spring 502. The first torsion spring 501 is sleeved inside the first pin 302, and the second torsion spring 502 is sleeved inside the second pin 303. The first torsion spring 501 and the second torsion spring 502 respectively drive the connecting plate 305 to reset.
[0033] Specifically, after the test is complete, the drive cylinder 1 begins to retract, releasing its thrust on the clamping portion. At this point, the first torsion spring 501 and the second torsion spring 502 release their stored potential energy, rapidly returning the connecting plate 305 and the clamping portion to their initial positions. This entire reset process requires no human intervention, achieving a high degree of automation.
[0034] A driving cylinder 1 is provided on the support plate 402 extending outward, and the driving cylinder 1 is vertically mounted on the support plate 402 . A cylinder fixing part 3 is provided on the driving cylinder 1 extending outward, and the cylinder fixing part 3 is vertically mounted on the driving cylinder 1 .
[0035] The cylinder fixing part 3 is extended outwardly to be provided with an adjustable fixing part 2 , and the adjustable fixing part 2 is vertically installed on the cylinder fixing part 3 .
[0036] Specifically, the driving cylinder 1 is activated, and its extension speed and force are precisely controlled through the cylinder fixing member 3 and the adjustable fixing member 2, pushing the clamping portion and the product to be tested diagonally toward the M.2 interface 102 on the motherboard 101. During the diagonal insertion process, the connecting plate 305 maintains a stable motion trajectory, guided by the first pin 302 and the second pin 303. At the same time, the first torsion spring 501 and the second torsion spring 502 are in a compressed state, storing reset potential energy.
[0037] The dual-station design allows product testing to proceed at one station while preparation or clamping operations are performed at another, enabling parallel processing of the inspection process and significantly improving overall production line efficiency. The M.2 interface 102 in the inspection assembly is mounted vertically directly on the motherboard 101, ensuring high-precision docking and inspection of the product interface while reducing inspection errors caused by angular deviation. Furthermore, the combination of the hard drive mounting plate 202 and the hard drive pressure block 201 effectively secures the M.2 hard drive 203, preventing movement or damage during the inspection process and ensuring the accuracy of test results and product safety.
[0038] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference signs in the claims should not be construed as limiting the claim to which they relate.
[0039] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. A new type of double-station flexible automatic oblique insertion device, characterized by: Including detection components; A clamping portion, which is vertically mounted on the detection assembly and is used to clamp the product to be detected; A limiting assembly, the limiting assembly being vertically mounted on the clamping portion and being used to limit the clamping portion; A reset assembly, which is vertically mounted on the limit assembly and is used to drive the limit assembly to reset; The detection component includes a motherboard and an M.2 interface. The M.2 interface is vertically installed on the motherboard and is used to detect the product.
2. A novel dual-station flexible automatic oblique insertion device according to claim 1, characterized in that: The clamping portion includes a board fixing part, a board connecting part and an adapter plate. The board connecting part is vertically installed on the board fixing part for clamping the product to be tested. The adapter plate is vertically installed on the board fixing part.
3. The novel double-station flexible automatic oblique insertion device according to claim 2 is characterized in that: An M.2 hard drive is provided outwardly extending from the adapter plate, and the M.2 hard drive is vertically mounted on the adapter plate. A hard drive fixing plate is provided outwardly extending from the board-card connector, and the hard drive fixing plate is vertically mounted on the board-card connector. A hard drive pressure block is provided outwardly extending from the hard drive fixing plate, and the hard drive pressure block is vertically mounted on the hard drive fixing plate.
4. The novel dual-station flexible automatic oblique insertion device according to claim 3 is characterized in that: The limiting assembly includes a first support, a first pin and a connecting plate. The first support is vertically installed on the board connector, the connecting plate is vertically installed on the first support, and the first pin is horizontally installed on the connecting plate and passes through.
5. The novel double-station flexible automatic oblique insertion device according to claim 4 is characterized in that: A second support is provided outwardly extending from the connecting plate, and the second support is vertically mounted on the connecting plate. A second pin is provided outwardly extending from the connecting plate, and the second pin is transversely mounted on the connecting plate and passes through the connecting plate.
6. The novel double-station flexible automatic oblique insertion device according to claim 5 is characterized in that: The second support is extended outward to form a support portion, which is vertically mounted on the second support. The support portion includes a fixing plate and a support plate, which is vertically mounted on the second support, and the support plate is vertically mounted on the fixing plate.
7. The novel dual-station flexible automatic oblique insertion device according to claim 5 is characterized in that: The reset assembly includes a first torsion spring and a second torsion spring. The first torsion spring is sleeved inside the first pin shaft, and the second torsion spring is sleeved inside the second pin shaft. The first torsion spring and the second torsion spring respectively drive the connecting plate to reset.
8. The novel double-station flexible automatic oblique insertion device according to claim 6 is characterized in that: A driving cylinder is provided on the support plate extending outward, and the driving cylinder is vertically mounted on the support plate. A cylinder fixing piece is provided on the drive cylinder extending outward, and the cylinder fixing piece is vertically mounted on the drive cylinder.
9. The novel dual-station flexible automatic oblique insertion device according to claim 8 is characterized in that: An adjustable fixing piece is provided extending outward from the cylinder fixing piece, and the adjustable fixing piece is vertically installed on the cylinder fixing piece.