CN210073794U - Automatic feeding device of lamp bead type LED lamp die bonding equipment - Google Patents

Automatic feeding device of lamp bead type LED lamp die bonding equipment Download PDF

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Publication number
CN210073794U
CN210073794U CN201920308593.6U CN201920308593U CN210073794U CN 210073794 U CN210073794 U CN 210073794U CN 201920308593 U CN201920308593 U CN 201920308593U CN 210073794 U CN210073794 U CN 210073794U
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China
Prior art keywords
base
side edge
led lamp
assembly
automatic feeding
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CN201920308593.6U
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Chinese (zh)
Inventor
兰晶华
文海建
刘世明
蔡振
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Shenzhen Xinyexin Led Co Ltd
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Shenzhen Xinyexin Led Co Ltd
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Priority to CN201920308593.6U priority Critical patent/CN210073794U/en
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Abstract

The utility model discloses an automatic feeding device of lamp bead type LED lamp die bonding equipment, which comprises a conveying mechanism and a transfer mechanism arranged on the side edge of the conveying mechanism, wherein the transfer mechanism comprises a base arranged on the side edge of the conveying mechanism, an air suction assembly erected above the base, a lifting assembly arranged on the side edge of the base and connected with the air suction assembly, and a translation assembly arranged on the side edge of the base and connected with the air suction assembly; the conveying mechanism comprises a conveying platform arranged on the side edge of the conveying mechanism and a pushing assembly arranged on the conveying platform in a sliding mode, and the pushing assembly comprises a push plate and a push block which is connected to the rear side edge of the push plate and is parallel to the conveying platform. The utility model provides an automatic feeding of brilliant equipment is admittedly put to lamp pearl formula LED lamp realizes the autoloading process of base plate, and the cooperation is inseparable between the mechanism, and the action is smooth and easy and the accuracy is high, reaches the purpose of high-efficient pay-off, does benefit to follow-up LED lamp to the base plate and carries out solid brilliant process.

Description

Automatic feeding device of lamp bead type LED lamp die bonding equipment
Technical Field
The utility model relates to a solid brilliant equipment of lamp pearl formula LED lamp especially relates to an automatic feeding of solid brilliant equipment of lamp pearl formula LED lamp.
Background
With continuous development and market application of LED products, the market demand and the productivity of LEDs are continuously improved, and most equipment manufacturers research and develop LED lamp die bonding equipment in order to improve the productivity of LEDs and reduce the number of workers for large-scale manual production of LEDs in the early stage.
Before die bonding, a corresponding substrate needs to be fed to a die bonding station, and in the existing die bonding equipment for the LED lamp, due to the irrational structural design, in the feeding process of the substrate, the action is not smooth, the phenomenon of blocking is easy to occur, the feeding speed is seriously influenced, and the whole die bonding procedure is greatly influenced.
SUMMERY OF THE UTILITY MODEL
To the above, an object of the utility model is to provide an autoloading device of brilliant equipment is admittedly put to lamp pearl formula LED lamp realizes the autoloading process of base plate, and the cooperation is inseparable between the mechanism, and the action is smooth and easy and the accuracy is high, reaches the purpose of high-efficient pay-off, does benefit to follow-up LED lamp to the base plate and carries out solid brilliant process.
The utility model discloses a reach the technical scheme that above-mentioned purpose adopted and be:
an automatic feeding device of lamp bead type LED lamp die bonding equipment is characterized by comprising a conveying mechanism and a transfer mechanism arranged on the side edge of the conveying mechanism, wherein the transfer mechanism comprises a base arranged on the side edge of the conveying mechanism, an air suction assembly erected above the base, a lifting assembly arranged on the side edge of the base and connected to the air suction assembly, and a translation assembly arranged on the side edge of the base and connected to the air suction assembly; the conveying mechanism comprises a conveying platform arranged on the side edge of the conveying mechanism and a pushing assembly arranged on the conveying platform in a sliding mode, and the pushing assembly comprises a push plate and a push block which is connected to the rear side edge of the push plate and is parallel to the conveying platform.
As a further improvement, the air suction assembly comprises a mounting substrate erected above the base, a cylinder arranged on the mounting substrate, and a plurality of cylinder suction nozzles arranged under the mounting substrate, wherein the cylinder suction nozzles are connected to the cylinder.
As a further improvement, the lifting assembly includes a lifting seat connected to the mounting substrate, a guide seat disposed on the side of the lifting seat, a plurality of longitudinal sliders disposed on the rear side of the guide seat, a guide screw connected to the lifting seat and screwed to the guide seat, and a lifting cylinder disposed in the lifting seat and connected to the guide screw, wherein the lifting seat is slidably disposed on the longitudinal sliders.
As a further improvement, the translation assembly comprises a vertical base plate disposed at the rear side of the base, a plurality of transverse sliders disposed on the side of the vertical base plate, a transverse sliding rail connected to the mounting base plate, a transverse sliding rail disposed on the rear side of the translation driving plate and in the transverse slider, a driving shaft connected to the translation driving plate, and a translation cylinder connected to the driving shaft.
As a further improvement of the utility model, the lower side of the end part of the push block extends to be provided with a supporting block.
As a further improvement, the utility model also includes a linear slide rail, a linear slider that sets up on the linear slide rail that sets up on the conveying platform side, slides and connects and drive actuating cylinder in a transmission of push pedal, and wherein, this push pedal is connected in linear slider.
As a further improvement of the utility model, a material groove is formed on the base and is located under the air suction component.
The utility model has the advantages that: the conveying mechanism with special structural design is combined with the transfer mechanism, the automatic feeding process of the substrate is realized, the mechanisms are tightly matched, the action is smooth, the accuracy is high, the purpose of efficient feeding is achieved, and the follow-up die bonding process of the LED lamp on the substrate is facilitated.
The above is an overview of the technical solution of the present invention, and the present invention is further explained with reference to the accompanying drawings and the detailed description.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a schematic view of a part of the structure of the present invention.
Detailed Description
To further illustrate the technical means and effects of the present invention adopted to achieve the intended purpose, the following detailed description of the embodiments of the present invention is provided in conjunction with the accompanying drawings and preferred embodiments.
Referring to fig. 1 and 2, an embodiment of the present invention provides an automatic feeding device for a lamp bead type LED lamp die bonding device, including a conveying mechanism 1 and a transfer mechanism 2 disposed on the side of the conveying mechanism 1, wherein the transfer mechanism 2 includes a base 21 disposed on the side of the conveying mechanism, an air suction assembly 22 erected above the base 21, a lifting assembly 23 disposed on the side of the base 21 and connected to the air suction assembly 22, and a translation assembly 24 disposed on the side of the base 21 and connected to the air suction assembly 22, the lifting assembly 23 and the translation assembly 24 can respectively control the air suction assembly 22 to move up and down and left and right, and the air suction assembly 22 adsorbs a substrate 10 on the base 21 to be transferred to the conveying mechanism.
Specifically, the air suction assembly 22 includes a mounting substrate 221 erected above the base 21, an air cylinder 222 disposed on the mounting substrate 221, and a plurality of air cylinder nozzles 223 disposed on a lower end surface of the mounting substrate 221 and connected to the air cylinder 222, and the air cylinder nozzles 223 are combined to suck up the substrate 10 for transferring to the transfer mechanism 1, and the air cylinder nozzles 223 are combined to improve the stability of the substrate 10.
Specifically, the lifting assembly 23 includes a lifting seat 231 connected to the mounting substrate 221, a guiding seat 232 disposed on a side of the lifting seat 231, a plurality of longitudinal sliders 233 disposed on a rear side of the guiding seat 232, a guiding screw 234 connected to the lifting seat 231 and screwed to the guiding seat 232, and a lifting cylinder disposed in the lifting seat 231 and connected to the guiding screw 234, wherein the lifting seat 231 is slidably disposed on the longitudinal sliders 233. When the guide screw 234 moves up and down under the driving of the lifting cylinder, the whole air suction assembly 22 can be driven to move up and down, so that the air suction assembly 22 can move down to absorb the substrate 10, and move up to suck the substrate 10.
Specifically, the translation assembly 24 includes a longitudinal base plate 241 disposed at the rear side of the base 21, a plurality of lateral sliders 242 disposed at the lateral sides of the longitudinal base plate 241, a translation driving plate 243 connected to the mounting base plate 221, a lateral slide rail 244 disposed at the rear side of the translation driving plate 243 and slidably engaged with the lateral sliders 242, a driving shaft connected to the translation driving plate 243, and a translation cylinder 246 connected to the driving shaft. The translation cylinder 246 provides power to drive the translation driving plate 243 to move the whole air suction assembly 22 left and right, so as to transfer a substrate 10 to the corresponding position of the conveying mechanism 1.
Meanwhile, the conveying mechanism 1 includes a conveying platform 11 disposed at a side of the transfer mechanism 2, and a pushing assembly 12 slidably disposed on the conveying platform 11, where the pushing assembly 12 includes a pushing plate 121, and a pushing block 122 connected to a rear side of the pushing plate 121 and parallel to the conveying platform 11. After the substrate 10 is transferred onto the transfer platform 11, the substrate 10 is pushed to the next station by the pusher 122 of the pushing assembly 12.
Specifically, in this embodiment, a supporting block 123 extends from the lower side of the end of the pushing block 122, and when the substrate 10 is pushed to the next station, the supporting block 123 is inserted below the substrate 10, and the end of the pushing block 122 pushes the substrate 10.
The automatic feeding device of this embodiment further includes a linear slide rail 13 disposed on the side of the conveying platform 11, a linear slide block 14 slidably disposed on the linear slide rail 13, and a conveying driving cylinder connected to the push plate 121, wherein the push plate 121 is connected to the linear slide block 14. The pushing plate 121 is driven by the transmission driving cylinder to move back and forth on the linear sliding rail 13, so that the substrate 10 is transmitted to the next station.
In this embodiment, a material groove 211 is formed on the base 21 and located right below the suction assembly 22, and the substrate 10 to be transferred is located in the material groove 211.
The utility model discloses a theory of operation does: the lifting component 23 drives the air suction component 22 to move downwards, the air cylinder suction nozzle 223 of the air suction component 22 sucks the substrate 10, and then the lifting component 23 drives the air suction component 22 to move upwards; then, the translation assembly 24 drives the air suction assembly 22 to move left, when the air suction assembly moves above the conveying platform 11, the air cylinder suction nozzle 223 releases the suction force on the substrate 10, and the substrate 10 is placed on the conveying platform 11; then, the pushing assembly 12 pushes the substrate 10 to the next station, and the feeding operation of one substrate 10 is completed; meanwhile, the translation assembly 24 drives the air suction assembly 22 to move backward and rightward, and when the air suction assembly moves above the base 21, the above actions are repeated to complete the feeding process of the next substrate 10.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that other structures obtained by adopting the same or similar technical features as the above embodiments of the present invention are all within the protection scope of the present invention.

Claims (7)

1. An automatic feeding device of lamp bead type LED lamp die bonding equipment is characterized by comprising a conveying mechanism and a transfer mechanism arranged on the side edge of the conveying mechanism, wherein the transfer mechanism comprises a base arranged on the side edge of the conveying mechanism, an air suction assembly erected above the base, a lifting assembly arranged on the side edge of the base and connected to the air suction assembly, and a translation assembly arranged on the side edge of the base and connected to the air suction assembly; the conveying mechanism comprises a conveying platform arranged on the side edge of the conveying mechanism and a pushing assembly arranged on the conveying platform in a sliding mode, and the pushing assembly comprises a push plate and a push block which is connected to the rear side edge of the push plate and is parallel to the conveying platform.
2. The automatic feeding device of the lamp bead type LED lamp die bonding equipment according to claim 1, wherein the air suction assembly comprises a mounting substrate erected above the base, an air cylinder arranged on the mounting substrate, and a plurality of air cylinder suction nozzles arranged on the lower end surface of the mounting substrate and connected to the air cylinder.
3. The automatic feeding device of the lamp bead type LED lamp die bonding equipment according to claim 2, wherein the lifting assembly comprises a lifting seat connected to the mounting substrate, a guide seat arranged on a side edge of the lifting seat, a plurality of longitudinal sliding blocks arranged on a rear side surface of the guide seat, a guide screw connected to the lifting seat and screwed to the guide seat, and a lifting cylinder arranged in the lifting seat and connected to the guide screw, wherein the lifting seat is slidably arranged on the longitudinal sliding blocks.
4. The automatic feeding device of a lamp bead type LED lamp die bonding device according to claim 2, wherein the translation assembly comprises a longitudinal base plate arranged at the rear side of the base, a plurality of transverse sliding blocks arranged at the side edges of the longitudinal base plate, a translation driving plate connected to the mounting base plate, a transverse sliding rail arranged at the rear side surface of the translation driving plate and slidably clamped in the transverse sliding blocks, a driving shaft connected to the translation driving plate, and a translation cylinder connected to the driving shaft.
5. The automatic feeding device of the lamp bead type LED lamp die bonding equipment according to claim 1, wherein a supporting block is arranged on the lower side of the end part of the pushing block in an extending manner.
6. The automatic feeding device of the lamp bead type LED lamp die bonding equipment according to claim 1, further comprising a linear slide rail arranged on the side edge of the conveying platform, a linear slide block arranged on the linear slide rail in a sliding manner, and a conveying driving cylinder connected to the push plate, wherein the push plate is connected to the linear slide block.
7. The automatic feeding device of the lamp bead type LED lamp die bonding equipment according to claim 1, wherein a material groove located right below the air suction assembly is formed on the base.
CN201920308593.6U 2019-03-12 2019-03-12 Automatic feeding device of lamp bead type LED lamp die bonding equipment Active CN210073794U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920308593.6U CN210073794U (en) 2019-03-12 2019-03-12 Automatic feeding device of lamp bead type LED lamp die bonding equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920308593.6U CN210073794U (en) 2019-03-12 2019-03-12 Automatic feeding device of lamp bead type LED lamp die bonding equipment

Publications (1)

Publication Number Publication Date
CN210073794U true CN210073794U (en) 2020-02-14

Family

ID=69432009

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920308593.6U Active CN210073794U (en) 2019-03-12 2019-03-12 Automatic feeding device of lamp bead type LED lamp die bonding equipment

Country Status (1)

Country Link
CN (1) CN210073794U (en)

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