Transportation structure facilitating grabbing of lamp beads

By adopting negative pressure adsorption method in the lamp bead transportation structure, the problem of falling during the lamp bead transportation is solved, and stable transportation and efficient grasping are achieved.

CN223149470UActive Publication Date: 2025-07-25芯朋半导体科技(如东)有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421552102.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-07-25
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

During the transportation of traditional lamp beads, the lamp beads are easily dropped due to vehicle shaking, which affects transportation efficiency.

Method used

The negative pressure adsorption method is adopted, and negative pressure is input through the gas transmission channel and the receiving groove on the carrier to adsorb the lamp beads to prevent falling and release negative pressure during grabbing for easy machine gripping.

Benefits of technology

Effectively prevent the lamp bead from falling during transportation, improve the grab and transportation efficiency, and enhance the stability and grab convenience of the lamp beads.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223149470U_ABST
    Figure CN223149470U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of related equipment in the manufacturing industry, and discloses a transportation structure convenient for grabbing lamp beads, which comprises a carrier used for bearing the lamp beads, a sliding block, a track and a fixing block, the carrier slides on the track through the sliding block, one end of the carrier is provided with an air tap, and a through groove used for placing the lamp beads and an air transmission channel are arranged in the carrier. The through groove communicates with the interior of the carrier, a bearing groove is formed in the through groove, and the carrier moves on the track through the sliding block. According to the utility model, the gas transmission channel is ventilated and exhausted, so that negative pressure is formed in the gas transmission channel, that is, negative pressure is also formed in the through groove communicated with the gas transmission channel, the lamp beads in the bearing groove at the top of the through groove are sucked by the negative pressure and are prevented from falling off, and the slide block is arranged at the bottom of the carrier and can drive the carrier to slide on the track, so that the lamp beads are prevented from falling off. And better cooperation is achieved, an external machine can grab the lamp beads conveniently, and the working efficiency of grabbing the lamp beads is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of manufacturing-related equipment, and specifically relates to a transportation structure convenient for grasping lamp beads. Background Art

[0002] In the application of lamp beads, it is necessary to grasp the lamp beads for transportation to the next process. In the traditional process, the lamp beads are only placed on the carrier, and then the lamp beads are grasped by a gripper. However, in this case, since the carrier needs to transport the lamp beads and displace from the position where the lamp beads are placed to the position where the lamp beads are grasped, during this process, the carrier will inevitably shake due to displacement. Since the lamp beads are relatively light and small, the lamp beads are very likely to fall off the carrier due to the shake, causing inconvenience to the transportation of the lamp beads.

[0003] Therefore, a new technical solution is needed to solve the above technical problems. Summary of the Invention

[0004] In order to solve the above problems, the utility model discloses a transportation structure convenient for grasping lamp beads. Through the negative pressure input into the air supply channel and the receiving groove on the carrier, it has a strong adsorption effect on the lamp beads located in the receiving groove, preventing the lamp beads from falling. When an external machine grasps the lamp beads, the air nozzle stops inhaling, the negative pressure disappears, and the lamp beads are only placed on the receiving groove, facilitating the grasping of the lamp beads.

[0005] The technical solution of the utility model is: a transportation structure convenient for grasping lamp beads, including a carrier for receiving lamp beads, a slider, a track, and a fixed block. The carrier slides on the track through the slider. One end of the carrier is provided with an air nozzle. The carrier is provided with a through groove for placing lamp beads and an air supply channel. The through groove is communicated with the inside of the carrier. A receiving groove is provided on the through groove. The carrier moves on the track through the slider.

[0006] By adopting the above technical solution, when the lamp beads need to be transported, the lamp beads are sequentially placed in the receiving groove, and then the air nozzle inhales air into the inside of the carrier, so that a negative pressure is generated in the through groove, and then the lamp beads in the receiving groove are sucked and are not easy to fall. When an external machine needs to grasp the lamp beads, the air nozzle stops inhaling, the air pressure in the through groove is the same as the outside, the lamp beads are not stressed, and can be easily grasped.

[0007] Preferably, the carrier is provided with an air supply channel. The air supply channel is located in the axial direction of the carrier. The air supply channel penetrates the carrier. One end of the air supply channel is communicated with the air nozzle, and the other end is closed. The air nozzle is connected to an external air pump.

[0008] By adopting the above technical solution, when the air nozzle inhales air, a negative pressure is immediately formed in the air supply channel, and the lamp beads located in the receiving groove can be adsorbed to prevent them from falling due to shaking during the movement of the carrier.

[0009] Preferably, the through grooves are sequentially located inside the carrier along the length direction of the carrier. The through grooves are independent of each other and not connected. The through grooves are vertically located in the carrier and are perpendicularly connected to the gas transmission channel.

[0010] By adopting the above technical solution, the through grooves are not connected to each other and are vertically arranged, so that the suction force in the gas transmission channel reaches the receiving groove faster, and thus a stronger suction force can be exerted on the lamp beads in the receiving groove above.

[0011] Preferably, a receiving groove is provided at the top of the through groove. The receiving grooves are independent of each other and do not contact each other. The receiving groove is a square groove body that is recessed inward from the upper surface of the carrier towards the through groove. The size of the receiving groove is larger than that of the through groove to prevent the lamp beads from falling.

[0012] By adopting the above technical solution, the lamp beads are placed in the receiving groove. The bottom of the lamp beads is exactly located at the top of the through groove and is sucked by the negative pressure in the through groove, and is more firmly located in the receiving groove.

[0013] Preferably, the lateral dimension of the receiving groove is larger than that of the lamp bead, the depth of the receiving groove is smaller than that of the lamp bead, and the lower part of the lamp bead is located inside the receiving groove while the upper part is located outside the receiving groove.

[0014] By adopting the above technical solution, a part of the lamp bead is located outside the carrier. In this way, when there is no negative pressure inside and the machine performs grasping, it is convenient for the external machine to perform clamping and grasping on the lamp bead.

[0015] Preferably, fixing blocks are provided at the bottom of the carrier. The fixing blocks are longer than the length of the carrier. The two ends of the parts of the fixing blocks located on both sides of the carrier are connected to the guide plates through bolts. The guide plates are integrally in a downward L shape.

[0016] By adopting the above technical solution, the parts of the fixing blocks used for fixing on the guide plates do not affect the use of the carrier. The fixing blocks are used to connect the carrier to the guide plates, facilitating the guide plates to receive the carrier.

[0017] Preferably, a slider is provided at the center position of the inner bottom of the guide plate. Below the guide plate is a track. The slider and the track are mutually adapted, and the guide plate slides and displaces on the track through the slider.

[0018] By adopting the above technical solution, the slider can axially displace the guide plate on the track to facilitate the external machine to grasp the lamp beads on the carrier.

[0019] Advantages of the present utility model: 1. By ventilating and exhausting air in the gas transmission channel of the present utility model, a negative pressure is formed in the gas transmission channel, that is, a negative pressure is also formed in the through grooves communicated with the gas transmission channel. The lamp beads in the receiving grooves at the top of the through grooves are sucked by the negative pressure, avoiding the situation of the lamp beads falling off.

[0020] 2. The present utility model is provided with sliders at the bottom of the vehicle carrier. The sliders can drive the vehicle carrier to slide on the track for better cooperation, facilitating the external machine to grasp the lamp beads and improving the working efficiency of grasping the lamp beads.

[0021] 3. Through the receiving groove, the through groove and the slider, the present utility model can suck the lamp beads and at the same time cooperate with the external machine for displacement, so as to cooperate with the machines at various positions for grasping, effectively improving the grasping efficiency of the lamp beads and the overall installation efficiency of the tooling. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic structural view of the present utility model;

[0023] Figure 2 is a schematic structural view of the side view of the present utility model;

[0024] Figure 3 is a schematic structural view of the top view of the present utility model;

[0025] Figure 4 is a schematic structural view of the vehicle carrier of the present utility model;

[0026] Figure 5 is the present utility model Figure 4 of the schematic structural view of the top view;

[0027] Figure 6 is the present utility model Figure 5 of the enlarged view of part A in the schematic structural view.

[0028] Wherein: 1. Vehicle carrier, 2. Fixed block, 3. Guide plate, 4. Slider, 5. Track;

[0029] 11. Air delivery channel, 12. Through groove, 13. Air nozzle, 14. Receiving groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model.

[0031] Such as Figures 1-6As shown in the figure, a transportation structure facilitating the grasping of lamp beads includes a carrier 1, a slider 4, a track 5, and a fixing block 2. One end of the carrier 1 is provided with an air nozzle 13. Inside the carrier 1, there are a through groove 12 for placing lamp beads and an air delivery channel 11. The through groove 12 communicates with the inside of the carrier 1. A receiving groove 14 is provided on the through groove 1. The carrier 1 moves on the track 5 through the slider 4. When the lamp beads need to be transported, the lamp beads are sequentially placed in the receiving groove. Then, the air nozzle 13 sucks air into the inside of the carrier, creating negative pressure in the through groove 12, thereby sucking the lamp beads in the receiving groove 14 and preventing them from falling. When an external machine needs to grasp the lamp beads, the air nozzle 13 stops sucking air, and the air pressure in the through groove 12 is the same as the outside. The lamp beads are not under force and can be easily grasped.

[0032] An air delivery channel 11 is provided inside the carrier 1. The air delivery channel 11 is located in the axial direction of the carrier 1 and penetrates the carrier 1. One end of the air delivery channel 11 communicates with the air nozzle 13, and the other end is closed. The air nozzle 13 is connected to an external air pump. When the air nozzle 13 sucks air, negative pressure is immediately formed in the air delivery channel 11, which can adsorb the lamp beads in the receiving groove 14 and prevent them from falling.

[0033] The through grooves 12 are sequentially located inside the carrier 1 along the length direction of the carrier 1. The through grooves 12 are independent of each other and do not communicate. The through grooves 12 are vertically located in the carrier 1 and are perpendicularly connected to the air delivery channel 11. The through grooves 12 do not communicate with each other and are vertically arranged, enabling the suction force in the air delivery channel 11 to reach the receiving groove 14 faster, thus having a stronger suction force on the lamp beads in the receiving groove 14 above.

[0034] A receiving groove 14 is provided at the top of the through groove 12 for placing the lamp beads to prevent the lamp beads from falling off the carrier. The transverse dimension of the receiving groove 14 is larger than that of the lamp bead, and the depth of the receiving groove 14 is smaller than that of the lamp bead. The lower part of the lamp bead is located inside the receiving groove 14, and the upper part is located outside the receiving groove 14. A part of the lamp bead is located outside the carrier 1. In this way, when there is no negative pressure inside and the machine grasps, it is convenient for the external machine to clamp and grasp the lamp beads. The receiving grooves 14 are independent of each other and do not contact. The receiving groove 14 is a square groove body that is recessed inward from the upper surface of the carrier 1 towards the through groove 12. The size of the receiving groove 14 is larger than that of the through groove 12 to prevent the lamp beads from falling. The lamp beads are placed in the receiving groove 14, and the bottom of the lamp bead is exactly located at the top of the through groove 12 and is sucked by the negative pressure in the through groove 12, being more firmly located in the receiving groove 14.

[0035] Fixing blocks 2 are provided at the bottom of the carrier 1. The fixing blocks 2 are longer than the length of the carrier 1. The two ends of the parts of the fixing blocks 2 located on both sides of the carrier 1 are connected to the guide plates 3 through bolts. The guide plates 3 are integrally L-shaped downward. The parts of the fixing blocks 2 used for fixing on the guide plates 3 do not affect the use of the carrier 1. The fixing blocks 2 are used to connect the carrier 1 to the guide plates 3, facilitating the guide plates 3 to receive the carrier 1.

[0036] A slider 4 is provided at the center of the inner bottom of the guide plate 3. Below the guide plate 3 is a track 5. The slider 4 and the track 5 are adapted to each other. The guide plate 3 slides on the track 5 through the slider. The slider 4 can axially displace the guide plate 3 on the track 5 to facilitate an external machine to grab the lamp beads on the vehicle 1.

[0037] An external air source supplies gas to the air nozzle. The air nozzle 13 sucks air, and the gas is sucked away from the air delivery channel 11. At this time, a negative pressure is formed in the through groove 12, and then it plays an adsorbing role on the lamp beads in the receiving groove 14 at the top of the through groove 12. When an external machine needs to grab the lamp beads, the air nozzle 13 stops sucking air, and then the air pressure in the through groove 12 is balanced with the outside, facilitating the grabbing of the lamp beads.

[0038] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are only examples and do not limit the present invention. The object of the present invention has been fully and effectively achieved. The functions and structural principles of the present invention have been shown and described in the embodiments. Without departing from the said principles, any deformation or modification of the embodiments of the present invention is possible.

Claims

1. A transportation structure facilitating the grasping of lamp beads, comprising a carrier for receiving lamp beads, a slider, a track and a fixing block, wherein the carrier slides on the track through the slider, and is characterized in that: One end of the vehicle is provided with a nozzle. A through groove for placing lamp beads and an air delivery channel are arranged inside the vehicle. The through groove communicates with the inside of the vehicle. A receiving groove is arranged on the through groove. The vehicle moves on a track through a slider.

2. The transportation structure facilitating the grasping of lamp beads according to claim 1, wherein: An air delivery channel is arranged inside the vehicle. The air delivery channel is located in the axial direction of the vehicle. The air delivery channel penetrates through the vehicle. One end of the air delivery channel communicates with the nozzle, and the other end is closed. The nozzle is connected to an external air pump.

3. The transport structure facilitating the grasping of lamp beads according to claim 2, wherein: The through grooves are arranged inside the vehicle in sequence along the length direction of the vehicle. The through grooves are independent of each other and do not communicate. The through grooves are vertically and perpendicularly communicated with the air delivery channel in the vertical direction of the vehicle.

4. The transport structure facilitating the grasping of lamp beads according to claim 3, wherein: Receiving grooves are arranged at the top of the through grooves. The receiving grooves are independent of each other and do not contact. The receiving grooves are square groove bodies that are recessed inward from the upper surface of the vehicle towards the through grooves. The size of the receiving grooves is larger than that of the through grooves to prevent the lamp beads from falling.

5. The transportation structure facilitating the grasping of lamp beads according to claim 3, wherein: The transverse dimension of the receiving groove is larger than that of the lamp bead, and the depth of the receiving groove is smaller than that of the lamp bead. The lower part of the lamp bead is located inside the receiving groove, and the upper part is located outside the receiving groove.

6. The transportation structure facilitating the grasping of lamp beads according to claim 1, wherein: Fixing blocks are arranged at the bottom of the vehicle. The fixing blocks are longer than the length of the vehicle. The two ends of the parts of the fixing blocks located on both sides of the vehicle are connected to a guide plate through bolts. The guide plate is integrally in an L shape facing downwards.

7. The transport structure facilitating the grasping of lamp beads according to claim 6, characterized in that: A slider is arranged at the center position of the inner bottom of the guide plate. A track is arranged below the guide plate. The slider and the track are adapted to each other. The guide plate slides and displaces on the track through the slider.