Dial conveying device

By designing the needle disk conveying device, using structures such as the sliding rack, the conveying rack and the outgoing rack, the problem of rapid and stable transportation after the needle disk is removed, and automatic unmanual discharge and stable transportation are achieved, improving the stability and efficiency of the use of the PIN needle.

CN223046633UActive Publication Date: 2025-07-01昆山三禾美德电子有限公司
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Patent Information

Application Number
CN202421589234.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-08
Publication Date
2025-07-01
Estimated Expiration
2034-07-08

AI Technical Summary

Technical Problem

In the prior art, after removing the PIN needle, how to quickly and stably convey the needle plate has become a problem, and the traditional manual loading and unloading method cannot meet the actual needs.

Method used

A needle disc conveying device is designed, including a sliding plate rack, a disk conveying rack and a disk outlet rack. By setting up a slidable disc seat, a needle disc cover plate, a disk conveying belt and a lifting positioning column, the stability and positioning of the needle disc during the conveying process are ensured, and displacement deviation is avoided.

Benefits of technology

It realizes automatic needle disc conveying without manual discharge, ensuring the stability of the needle disc during needle removal, and improving the stability and efficiency of the subsequent use of the PIN needle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of PIN needle assembling equipment, in particular to a needle disc conveying device which comprises a needle disc, a disc base is connected to a disc moving frame in a sliding mode, two sets of needle disc cover plates are symmetrically arranged on the upper side of the disc base, and the two sets of needle disc cover plates extend to the position above the needle disc and do not cover needle holes in the needle disc. The conveying direction of the tray conveying belt is perpendicular to the sliding direction of the tray seat, the tray outlet frame and the tray conveying frame are arranged on the same side of the tray moving frame, the tray outlet frame is parallel to the tray conveying frame, the tray conveying frame and the tray outlet frame are arranged at intervals with the tray moving frame, and sliding of the tray seat can be met in the interval space. According to the pin taking device, the pin taking working face moves into the recycling working face, manual discharging treatment is not needed, the two sets of pin disc cover plates are symmetrically arranged on the upper side of the disc base and arranged on the two sides in the pin disc conveying direction, the pin discs can be pressed on the disc base, and the situation that in the pin taking treatment process, displacement deviation of the pin discs occurs, and the subsequent use stability of PINs is affected is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of PIN needle assembly equipment, in particular to a needle tray conveying device. Background Art

[0002] A PIN needle is a metal substance used to complete the conduction (transmission) of electricity (signals) in a connector. The material of the PIN needle is "tungsten carbide" raw material, that is, cemented carbide. Cemented carbide has high hardness, strength, wear resistance and corrosion resistance. In the PIN needle insertion process, it is necessary to remove the PIN needle from the needle tray and then perform implantation processing. After the needle tray is removed, how to quickly convey the needle tray, and during the process of removing the PIN needle from the needle tray, the stability of the needle tray has an important impact on the subsequent use of the PIN needle. Especially to ensure the continuity of the needle tray needle removal process, the traditional manual loading and unloading method obviously cannot meet the actual use requirements. Therefore, a needle tray conveying device is needed. Summary of the Utility Model

[0003] In view of the above-mentioned disadvantages of the prior art, the purpose of the present utility model is to provide a needle tray conveying device for solving the problem of the cyclic conveying of the needle tray after the PIN needle is removed in the prior art.

[0004] To achieve the above object and other related objects, the present utility model provides the following technical solutions:

[0005] A needle tray conveying device includes a needle tray, and further includes:

[0006] A tray moving frame, on which a tray seat is slidably connected. On the upper side of the tray seat, two groups of needle tray covers are symmetrically arranged. The two groups of needle tray covers extend above the needle tray and do not cover the needle holes on the needle tray;

[0007] A tray feeding frame, which is arranged on one side of the tray moving frame. A tray feeding belt is arranged on the tray feeding frame, and the conveying direction of the tray feeding belt is perpendicular to the sliding direction of the tray seat;

[0008] A tray discharging frame, which is arranged on the same side of the tray moving frame as the tray feeding frame, and the tray discharging frame is parallel to the tray feeding frame;

[0009] Both the tray feeding frame and the tray discharging frame are spaced from the tray moving frame, and the spaced space can accommodate the sliding of the tray seat.

[0010] By implementing the above technical solution, by setting the tray moving frame, the needle tray after removing the PIN needle is moved from the needle removal working surface to the recycling working surface, and manual feeding is not required. Two groups of needle tray covers are symmetrically arranged on the upper side of the tray seat along both sides of the needle tray conveying direction, which can press the needle tray on the tray seat and prevent the needle tray from shifting and deviating during the needle removal process, thus affecting the subsequent use stability of the PIN needle.

[0011] The disk output rack can convey the pin trays after removing the PIN pins, and collect and sort the pin trays. The disk feeding rack and the disk output rack are both arranged at intervals with the disk transfer rack. Moreover, the interval space can accommodate the sliding of the disk seat, so as to ensure that the disk seat stably conveys the pin trays after removing the PIN pins to the disk output rack end.

[0012] In an embodiment of the present invention, the bottom of the disk seat is provided with liftable pin tray positioning columns, and the pin tray is provided with positioning holes. After the pin tray is conveyed into the disk seat, the pin tray positioning columns rise and insert into the positioning holes to limit the displacement of the pin tray. The side of the disk seat away from the disk transfer rack is open to facilitate the entry or exit of the pin tray from the disk seat.

[0013] To achieve the above technical solution, by setting liftable pin tray positioning columns and cooperating with the positioning holes in the pin tray, after the pin tray is conveyed into the disk seat, the pin tray positioning columns rise and insert into the positioning holes to limit the displacement of the pin tray, thereby ensuring the stability of the pin tray during the pin removal process. The side of the disk seat away from the disk transfer rack is open to facilitate the entry or exit of the pin tray from the disk seat.

[0014] In an embodiment of the present invention, two groups of pin tray baffles are symmetrically arranged on the side of the disk seat close to the disk transfer rack, and the two groups of pin tray baffles are arranged at intervals. A dialing rack is provided on the disk output rack, and a dialing plate is slidably connected to the dialing rack along the length direction of the disk output rack. The dialing plate dials the pin trays after the pin removal process on the disk seat onto the disk output rack.

[0015] To achieve the above technical solution, by symmetrically arranging two groups of pin tray baffles on the side of the disk seat close to the disk transfer rack, the position of the pin tray after entering the disk seat can be limited. A dialing plate is slidably connected to the dialing rack along the length direction of the disk output rack. The dialing plate is used to dial the pin trays after the pin removal process on the disk seat onto the disk output rack, which is convenient for subsequent collection and processing of the pin trays after the pins are removed.

[0016] In an embodiment of the present invention, a dialing protrusion is provided on the bottom side of the dialing plate, and the width dimension of the dialing protrusion is smaller than the interval dimension between the two groups of pin tray baffles.

[0017] To achieve the above technical solution, by making the width dimension of the dialing protrusion smaller than the interval dimension between the two groups of pin tray baffles, it is convenient for the dialing protrusion to dial the pin tray out of the disk seat after sliding along the length direction of the disk output rack with the dialing plate.

[0018] In an embodiment of the present invention, two groups of pin tray top plates are symmetrically arranged on the upper side of the disk feeding rack, and the two groups of pin tray top plates cover both sides of the pin tray to limit the stable conveyance of the pin tray on the disk feeding belt along with the disk feeding belt.

[0019] To implement the above technical solution, two groups of needle plate top plates are symmetrically arranged on the upper side of the feeding tray rack, and the two groups of needle plate top plates cover both sides of the needle plate, so as to ensure the stability of the needle plate when it is transported on the feeding tray belt along with the feeding tray.

[0020] In an embodiment of the present invention, a base is provided between the disk seat and the disk moving rack, a disk moving slide rail is provided on the disk moving rack, the base is slidably matched with the disk moving slide rail, a disk moving driving member is provided on one side of the disk moving rack, and the base is arranged at the movable end of the disk moving driving member.

[0021] To implement the above technical solution, by the sliding fit between the base and the disk moving slide rail, the stability of the disk seat during the movement of the disk moving rack can be improved, and the displacement deviation of the needle plate can be avoided during the process of moving the needle plate after taking the needles to the end of the disk discharging rack.

[0022] As described above, a needle plate conveying device of the present invention has the following beneficial effects: by providing a disk moving rack, the needle plate after removing the PIN needles is moved from the needle taking working surface to the recycling working surface, and manual blanking treatment is not required. Two groups of needle plate covers are symmetrically arranged on the upper side of the disk seat along both sides of the needle plate conveying direction, and the needle plate can be pressed tightly on the disk seat, so as to avoid displacement deviation of the needle plate during the needle taking process and affect the subsequent use stability of the PIN needles.

[0023] The disk discharging rack can convey the needle plate after removing the PIN needles for collection and sorting of the needle plates. Both the feeding tray rack and the disk discharging rack are spaced from the disk moving rack, and the interval space can accommodate the sliding of the disk seat, so as to ensure that the disk seat stably conveys the needle plate after removing the PIN needles to the end of the disk discharging rack. Description of the Drawings

[0024] Figure 1 It shows a schematic structural diagram of the needle plate conveying device disclosed in the embodiment of the present invention.

[0025] Figure 2 It shows a schematic structural diagram of the needle plate baffle of the needle plate conveying device disclosed in the embodiment of the present invention.

[0026] Figure 3 It shows a schematic structural diagram of the dial protrusion of the needle plate conveying device disclosed in the embodiment of the present invention.

[0027] Figure 4 It shows a schematic structural diagram of the needle plate positioning column of the needle plate conveying device disclosed in the embodiment of the present invention.

[0028] Explanation of Element Numbers

[0029] 1. Needle plate; 2. Disk transfer rack; 3. Disk base; 4. Needle plate cover; 5. Feeding disk rack; 6. Feeding disk belt; 7. Discharging disk rack; 8. Needle plate positioning column; 9. Positioning hole; 10. Needle plate baffle; 11. Dialing disk rack; 12. Dialing disk plate; 13. Dialing disk protrusion; 14. Needle plate top plate; 15. Base; 16. Disk transfer slide rail; 17. Disk transfer driving part. Specific implementation manner

[0030] The following specific embodiments illustrate the implementation manners of the present utility model. Those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. It should be noted that, without conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0031] Please refer to Figures 1 to 4 , the present utility model provides a needle plate conveying device, which includes a needle plate 1, and further includes that a disk base 3 is slidably connected to a disk transfer rack 2. Two groups of needle plate covers 4 are symmetrically arranged on the upper side of the disk base 3. The two groups of needle plate covers 4 extend above the needle plate 1 and do not cover the needle holes on the needle plate 1. A feeding disk rack 5 is arranged on one side of the disk transfer rack 2. A feeding disk belt 6 is arranged on the feeding disk rack 5. The conveying direction of the feeding disk belt 6 is perpendicular to the sliding direction of the disk base 3. A discharging disk rack 7 and the feeding disk rack 5 are arranged on the same side of the disk transfer rack 2, and the discharging disk rack 7 is parallel to the feeding disk rack 5. Both the feeding disk rack 5 and the discharging disk rack 7 are spaced from the disk transfer rack 2, and moreover, the interval space can accommodate the sliding of the disk base 3.

[0032] By setting the disk transfer rack 2, the needle plate 1 after removing the PIN needles is moved from the needle-taking working surface to the recycling working surface, and manual blanking treatment is not required. Two groups of needle plate covers 4 are symmetrically arranged on the upper side of the disk base 3 along both sides of the conveying direction of the needle plate 1, which can press the needle plate 1 on the disk base 3 to avoid displacement deviation of the needle plate 1 during the needle-taking process and affect the subsequent use stability of the PIN needles.

[0033] The discharging disk rack 7 can convey the needle plate 1 after removing the PIN needles to collect and sort the needle plate 1. Both the feeding disk rack 5 and the discharging disk rack 7 are spaced from the disk transfer rack 2, and moreover, the interval space can accommodate the sliding of the disk base 3, so as to ensure that the disk base 3 stably conveys the needle plate 1 after removing the PIN needles to the end of the discharging disk rack 7.

[0034] A liftable needle plate positioning post 8 is provided at the bottom of the base 3. A positioning hole 9 is provided in the needle plate 1. After the needle plate 1 is transported into the base 3, the needle plate positioning post 8 rises and inserts into the positioning hole 9 to limit the displacement of the needle plate 1. The side of the base 3 away from the disc transfer rack 2 is open to facilitate the entry or exit of the needle plate 1 into or out of the base 3. By providing the liftable needle plate positioning post 8 and cooperating with the positioning hole 9 in the needle plate 1, after the needle plate 1 is transported into the base 3, the needle plate positioning post 8 rises and inserts into the positioning hole 9 to limit the displacement of the needle plate 1, thereby ensuring the stability of the needle plate 1 during the needle picking process. The side of the base 3 away from the disc transfer rack 2 is open to facilitate the entry or exit of the needle plate 1 into or out of the base 3.

[0035] On the side of the base 3 close to the disc transfer rack 2, two groups of needle plate baffles 10 are symmetrically provided, and there is a gap between the two groups of needle plate baffles 10. A dial rack 11 is provided on the disc outlet rack 7. A dial plate 12 is slidably connected to the dial rack 11 along the length direction of the disc outlet rack 7. The dial plate 12 dials the needle plate 1 after the needle extraction process on the base 3 onto the disc outlet rack 7. By symmetrically providing two groups of needle plate baffles 10 on the side of the base 3 close to the disc transfer rack 2, the position of the needle plate 1 after entering the base 3 can be limited. The dial plate 12 is slidably connected to the dial rack 11 along the length direction of the disc outlet rack 7. The dial plate 12 is used to dial the needle plate 1 after the needle extraction process on the base 3 onto the disc outlet rack 7, which is convenient for the subsequent collection and processing of the needle plate 1 after the needles are picked.

[0036] A dial protrusion 13 is provided on the bottom side of the dial plate 12. The width dimension of the dial protrusion 13 is smaller than the interval dimension between the two groups of needle plate baffles 1. By making the width dimension of the dial protrusion 13 smaller than the interval dimension between the two groups of needle plate baffles 1, it is convenient for the dial protrusion 13 to slide along the length direction of the disc outlet rack 7 with the dial plate 12 and then dial the needle plate 1 out of the base 3.

[0037] On the upper side of the disc feeding rack 5, two groups of needle plate top plates 14 are symmetrically provided. The two groups of needle plate top plates 14 cover both sides of the needle plate 1 to limit the stable transportation of the needle plate 1 on the disc feeding belt 6 along with the disc feeding belt 6. By symmetrically providing two groups of needle plate top plates 14 on the upper side of the disc feeding rack 5 and using the two groups of needle plate top plates 14 to cover both sides of the needle plate 1, the stability of the needle plate 1 during transportation on the disc feeding belt 6 can be ensured.

[0038] A base 15 is provided between the base 3 and the disc transfer rack 2. A disc transfer slide rail 16 is provided on the disc transfer rack 2. The base 15 is slidably engaged with the disc transfer slide rail 16. A disc transfer driving member 17 is provided on one side of the disc transfer rack 2. The base 15 is provided at the movable end of the disc transfer driving member 17. By the sliding engagement of the base 15 and the disc transfer slide rail 16, the stability of the movement of the base 3 on the disc transfer rack 2 can be improved, and the displacement deviation of the needle plate 1 can be avoided during the process of moving the needle plate 1 after the needle picking to the end of the disc outlet rack 7.

[0039] The utility model is provided with a disk transfer rack, which moves the pin disk after removing the PIN pins from the pin-taking working surface to the recycling working surface, without the need for manual blanking. Two groups of pin disk covers are symmetrically arranged on the upper side of the disk seat along both sides of the pin disk conveying direction, which can press the pin disk on the disk seat to avoid displacement deviation of the pin disk during the pin-taking process and affect the subsequent use stability of the PIN pins.

[0040] The disk output rack can convey the pin disk after removing the PIN pins for collection and sorting of the pin disk. The disk input rack and the disk output rack are both arranged at intervals with the disk transfer rack, and the interval space can accommodate the sliding of the disk seat, so as to ensure that the disk seat stably conveys the pin disk after removing the PIN pins to the end of the disk output rack.

[0041] The above embodiments only illustrate the principles and effects of the utility model by way of example, and are not intended to limit the utility model. All equivalent modifications or changes made by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the utility model should still be covered by the claims of the utility model.

Claims

1. A needle tray conveying device, comprising a needle tray, characterized in that: Also includes: A disk moving frame, wherein a disk seat is slidably connected to the disk moving frame, and two sets of needle disk cover plates are symmetrically arranged on the upper side of the disk seat, and the two sets of needle disk cover plates extend above the needle disk and do not cover the needle holes on the needle disk; A disc delivery rack, the disc delivery rack is arranged on one side of the disc transfer rack, the disc delivery rack is provided with a disc delivery belt, and the conveying direction of the disc delivery belt is perpendicular to the sliding direction of the disc seat; The disk output rack is arranged on the same side of the disk delivery rack and parallel to the disk delivery rack; the disk delivery rack and the disk output rack are arranged with a spacing from the disk transfer rack, and the spacing space can meet the sliding requirements of the disk seat.

2. The needle tray conveying device according to claim 1, characterized in that: A liftable needle disk positioning column is provided at the bottom of the disk seat, and a positioning hole is provided in the needle disk. After the needle disk is transported to the disk seat, the needle disk positioning column rises and is inserted into the positioning hole to limit the displacement of the needle disk. The disk seat is open-type on the side away from the disk moving frame to facilitate the needle disk to enter or leave the disk seat.

3. The needle tray conveying device according to claim 1, characterized in that: The disk seat is symmetrically provided with two sets of needle disk baffles on one side close to the disk moving frame, and the two sets of needle disk baffles are spaced apart. The disk output frame is provided with a dial frame, and a dial plate is slidably connected to the dial frame along the length direction of the disk output frame. The dial plate dials the needle disk on the disk seat after the needle pulling process to the disk output frame.

4. The needle tray conveying device according to claim 3, characterized in that: A dial protrusion is provided on the bottom side of the dial plate, and the width of the dial protrusion is smaller than the spacing between the two sets of needle dial baffles.

5. The needle tray conveying device according to claim 1, characterized in that: Two groups of needle disk top plates are symmetrically arranged on the upper side of the disk feeding frame, and the two groups of needle disk top plates cover both sides of the needle disk to limit the needle disk to be stably transported on the disk feeding belt along with the disk feeding belt.

6. The needle tray conveying device according to claim 1, characterized in that: A base is provided between the disk seat and the disk moving frame, a disk moving slide rail is provided on the disk moving frame, the base is slidably matched with the disk moving slide rail, a disk moving driving member is provided on one side of the disk moving frame, and the base is provided at the movable end of the disk moving driving member.