Lamp-type LED semi-finished product dispensing production line
By designing a dispensing production line for Lamp-type LED semi-finished products, the problems of Lamp-type LEDs being unable to be dispensed and not being dried in time were solved, realizing automated production and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202310793610.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-30
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2043-06-30
AI Technical Summary
In the existing LED packaging process, Lamp-type LEDs cannot be glued using ordinary dispensing machines, and failure to dry the glue in time after dispensing can easily lead to LED beads becoming crooked and damaged.
A dispensing production line for Lamp-type LED semi-finished products was designed, including a workbench, a conveyor, a mold, a mold gluing device, a bracket feeding device, a bracket gluing device, a bracket mold fixing device, and a dryer. The mold and bracket are moved by the conveyor, and the mold gluing device and bracket gluing device are used to achieve automatic dispensing. The dryer solves the problem of glue not drying in time.
It has achieved automated dispensing and drying of lamp-type LEDs, avoiding human error, improving production efficiency, and preventing LED beads from becoming misaligned or damaged.
Smart Images

Figure CN116618238B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of LED manufacturing, specifically to a dispensing production line for Lamp-type LED semi-finished products. Background Technology
[0002] The LED industry has been one of the most watched industries in recent years. To date, LED products have advantages such as energy saving, power saving, high efficiency, fast response time, long life cycle, mercury-free, and environmental benefits. Existing LED lamp beads all require LED packaging process during processing, which is generally completed by covering the LED light source with encapsulating glue.
[0003] Traditional LED packaging methods primarily rely on manual dispensing of adhesive onto LED wafers. When packaging is required, workers first place the wafer on a workbench and then use a glue gun to dispense adhesive onto the wafer until all the LED chips are dispensed.
[0004] Patent No. 2021108369122 describes an LED dispensing machine with high dispensing accuracy. Although this type of dispensing machine successfully solves the problems of low efficiency and high error rate of manual operation, the following problems still occur in actual production operation: 1. Lamp-type LEDs, due to their long brackets, cannot be dispensed using ordinary dispensing machines. 2. After dispensing, the LEDs need to be dried immediately to prevent misalignment between the mold and bracket of Lamp-type LEDs during storage and transportation, which could lead to LED beads becoming crooked and damaged after the glue dries. Summary of the Invention
[0005] The present invention aims to solve the technical problems mentioned in the background section above, and proposes the following technical solutions:
[0006] A dispensing production line for Lamp-type LED semi-finished products includes a workbench 1, a conveying device 2, a die 3, a die gluing device 4, a support feeding device 5, a support gluing device 6, a support die fixing device 7, and a dryer 8. The conveying device 2 is fixedly mounted on the workbench 1. The die 3 is located on the conveying device 2 and moves via the conveying device 2. The die 3 has a cuboid structure and includes a base 3-1 and a mold 3-2. The base 3-1 has two grooves 3-3, and the molds 3-2 are evenly distributed within the grooves 3-3. The die gluing device 4 is located on one side of the conveying device 2 and includes a die gluing device bracket 4-1, a glue injection head 4-2, a glue injection head fixing block 4-3, a first glue storage tank 4-4, and an air pump 4-5. The bottom of the die gluing device bracket 4-1... Four support columns 4-11 are provided, located on both sides of the transmission device 2. A first through hole 4-12 is provided in the middle of the molded particle gluing device bracket 4-1. The glue injection head fixing block 4-3 is fixedly installed in the first through hole 4-12. Several glue injection head mounting slots 4-31 are provided at the bottom of the glue injection head fixing block 4-3. The glue injection head 4-2 is fixedly installed in the glue injection head mounting slots 4-31. The first glue storage tank 4-4 is located above the glue injection head fixing block 4-3. A through hole 4-32 is provided in the glue injection head fixing block 4-3. The two ends of the through hole 4-32 are respectively connected to the first glue storage tank 4-4 and the glue injection head mounting slots 4-31. An air pump 4-5 is fixedly installed on the molded particle gluing device bracket 4-1. The air pump 4-5 is connected to an air pipe 4-51. One end of the air pipe 4-51 is connected to the glue injection head 4-2.
[0007] The support feeding device 5 includes a support feeding platform 5-1 and a first cylinder 5-2. The support feeding platform 5-1 is located above the transmission device 2. Two support guide rails 5-11 are provided on the support feeding platform 5-1. The first cylinder 5-2 is located on one side of the support guide rails 5-11. The first cylinder 5-2 is connected to a support push rod 5-3.
[0008] The bracket glue applicator 6 is located on one side of the bracket guide rail 5-11. The bracket glue applicator 6 is slidably connected to the bracket loading platform 5-1. The bracket glue applicator 6 includes two mounting plates 6-1, a second glue storage tank 6-2, a first motor 6-3, a glue injection roller 6-4, and a second cylinder 6-5. The two mounting plates 6-1 are slidably connected to the bracket loading platform 5-1. First bearing holes 6-11 are provided on the mounting plates 6-1. The two ends of the glue injection roller 6-4 are fixedly connected to the two first bearing holes 6-11 respectively. The glue injection roller 6-4 is located between the two mounting plates 6-1, and an injection hole is provided at the bottom of the glue injection roller 6-4. 6-41, one end of the glue injection roller 6-4 is connected to a driven gear 6-6, the driven gear 6-6 is located on one side of the mounting plate 6-1, the first motor 6-3 is fixedly mounted on the material loading platform 5-1 of the bracket, the first motor 6-3 is located between the two mounting plates 6-1, one end of the first motor 6-3 is connected to a first rotating shaft 6-31, one end of the first rotating shaft 6-31 passes through the mounting plate 6-1 and is connected to a driving gear 6-7, the driven gear 6-6 meshes with the driving gear 6-7, a fixing plate 6-8 is provided between the two mounting plates 6-1, one side of the fixing plate 6-8 is connected to the second cylinder 6-5.
[0009] The bracket module fixing device 7 includes a fixing device mounting plate 7-1, a first linear module 7-2, a moving block 7-3, a second motor 7-4, two rotating shaft fixing blocks 7-5, a second rotating shaft 7-6, and a bracket fixing plate 7-7. The fixing device mounting plate 7-1 is fixedly mounted on one upper side of the transmission device 2. The first linear module 7-2 is fixedly mounted on the fixing device mounting plate 7-1. The moving block 7-3 is fixed on the first linear module 7-2. The two rotating shaft fixing blocks 7-5 are symmetrically fixed on the moving block 7-3. A second bearing hole 7 is provided in the middle of each rotating shaft fixing block 7-5. -51, the two ends of the second rotating shaft 7-6 are respectively rotatably connected to the two second bearing holes 7-51, one end of the second rotating shaft 7-6 is connected to the second motor 7-4, the bottom of the bracket fixing plate 7-7 is provided with a fixing plate support column 7-71, one end of the fixing plate support column 7-71 is fixed to the outer periphery of the second rotating shaft 7-6, and the other end of the fixing plate support column 7-71 is fixedly connected to the bottom of the bracket fixing plate 7-7, and two bracket slots 7-72 are provided on the bracket fixing plate 7-7, the position and size of the bracket slots 7-72 correspond to the position and size of the bracket guide rail 5-11.
[0010] The dryer 8 is located at one end of the transmission device 2.
[0011] Preferably, the glue injection roller 6-4 is located between two grooves 3-3.
[0012] Preferably, the transmission device 2 includes a transmission device base 2-1, a transmission roller 2-2, a transmission motor 2-3, a second linear module 2-4, and a rotating device 2-5. The transmission device base 2-1 has a roller groove 2-11 in the middle, and third bearing holes 2-12 are respectively provided on the left and right sides of the roller groove 2-11. The two ends of the transmission roller 2-2 are respectively connected to the three bearing holes 2-12 at both ends. The transmission device base 2-1 has a cavity 2-13 inside, which communicates with the bearing holes 2-12. The transmission motor 2-3 is provided inside the cavity 2-13 and is connected to the transmission roller 2-2.
[0013] The base 2-1 of the transmission device is provided with a feeding groove 2-14, which is perpendicular to and connected to the roller groove 2-11. The rotating device 2-5 is fixed at the connection between the feeding groove 2-14 and the roller groove 2-11. The second linear module 2-4 is located above the rotating device 2-5. The bottom of the second linear module 2-4 is fixedly installed with a linear module fixing frame 2-41, which is fixedly installed on the base 2-1 of the transmission device. A push rod 2-42 is connected to the second linear module.
[0014] Preferably, the rotating device 2-5 includes a fixed frame 2-51, a rotating device base 2-52, a rotating shaft 2-53, and a third cylinder 2-54. The rotating device base 2-52 is fixed to the bottom of the roller groove 2-11. The rotating device base 2-52 has a hollow box structure. A rotating shaft hole 2-55 is provided on the top of the rotating device base 2-52. One end of the rotating shaft 2-53 passes through the rotating shaft hole 2-55 and is located inside the rotating device base 2-52. The other end of the rotating shaft 2-53 is fixed to the bottom of the fixed frame 2-51. An external gear ring 2-56 is provided on the bottom side of the rotating shaft 2-53. The external gear ring 2-56 meshes with a rack 2-57. One end of the rack is located inside the rotating device base 2-52. The other end of the rack 2-57 passes through the rotating device base 2-52 and is connected to the third cylinder 2-54.
[0015] Preferably, the transmission roller 2-2 has a groove 2-21 in the middle, and the size of the groove 2-21 corresponds to the size of the mold 3.
[0016] The beneficial effects of this invention are:
[0017] 1. By setting up a mold gluing device and a bracket feeding device, the mold and LED bracket are fed separately. Then, the mold and LED bracket are combined and fixed by the bracket mold fixing device. This can dispensing glue for Lamp-type LEDs, solving the problem that ordinary dispensing machines cannot dispense glue for Lamp-type LEDs. Finally, the glue is dried by a dryer, which solves the problem that LED beads will shift and be damaged if the glue is not dried in time.
[0018] The use of a conveying device to move and transport the mold and support eliminates the need for manual loading and unloading, reducing labor costs and preventing human error.
[0019] By installing a rotating device inside the conveying device, the mold located on the conveying device can turn, making production operations easier.
[0020] By setting grooves on the transfer rollers, the size of which corresponds to the size of the mold, the mold can be prevented from shifting during transfer, thus preventing misalignment during dispensing and bonding with the bracket. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of the present invention;
[0022] Figure 2 for Figure 1 Enlarged view of the area circled in the middle;
[0023] Figure 3 This is a schematic diagram of the die structure for the molding pellets;
[0024] Figure 4 This is a schematic diagram of the granule coating device in this invention;
[0025] Figure 5 This is a cross-sectional view of the granule coating device in this invention;
[0026] Figure 6 This is a schematic diagram of the bracket gluing device in this invention;
[0027] Figure 7 This is a cross-sectional view of the bracket gluing device in this invention;
[0028] Figure 8 This is a schematic diagram of the support mold fixing device in this invention;
[0029] Figure 9 This is a schematic diagram of the transmission device structure in Embodiment 2;
[0030] Figure 10 for Figure 9 Sectional view at point AA;
[0031] Figure 11This is a schematic diagram of the rotating device structure in Embodiment 2 of the present invention;
[0032] Figure 12 This is a cross-sectional view of the rotating device in Embodiment 2 of the present invention.
[0033] In the diagram: 1. Workbench; 2. Conveying device; 2-1. Conveying device base; 2-11. Roller groove; 2-12. Third bearing hole; 2-13. Cavity; 2-14. Feed chute; 2-2. Conveying roller; 2-21. Groove; 2-3. Conveying motor; 2-4. Second linear module; 2-41. Linear module mounting bracket; 2-42. Push rod; 2-5. Rotating device; 2-51. Mounting bracket; 2-52. Rotating device base 2-53, Rotating shaft; 2-54, Third cylinder; 2-55, Rotating shaft hole; 2-56, External gear ring; 2-57, Gear rack; 3, Molding die; 3-1, Base; 3-2, Die; 3-3, Groove; 4, Molding die gluing device; 4-1, Molding die gluing device bracket; 4-11, Support column; 4-12, First through hole; 4-2, Injection head; 4-3, Injection head fixing block; 4-31, Injection head mounting groove; 4-32, Through hole 4-4. First glue storage tank; 4-5. Air pump; 4-51. Air pipe; 5. Support feeding device; 5-1. Support feeding platform; 5-11. Support guide rail; 5-2. First cylinder; 5-3. Support push rod; 6. Support glue dispensing device; 6-1. Mounting plate; 6-11. First bearing hole; 6-2. Second glue storage tank; 6-3. First motor; 6-31. First rotating shaft; 6-4. Glue injection roller; 6-41. Injection hole; 6-5. Second cylinder; 6-6, driven gear; 6-7, driving gear; 6-8, fixed plate; 7, bracket mold fixing device; 7-1, fixing device mounting plate; 7-2, first linear module; 7-3, moving block; 7-4, second motor; 7-5, rotating shaft fixing block; 7-51, second bearing hole; 7-6, second rotating shaft; 7-7, bracket fixing plate; 7-71, fixing plate support column; 7-72, bracket slot; 8, dryer. Detailed Implementation
[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0035] In the description of this invention, it should be understood that relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. The connection methods described by the terms "fixed connection" and "fixed arrangement" include, but are not limited to, "welding," "riveting," "adhesion," and "threaded connection." The terms "comprising," "including," or any other variations thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus.
[0036] The terms “upper,” “lower,” “front,” “back,” “left,” “right,” “top,” “bottom,” “inner,” and “outer,” etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the present invention.
[0037] The bearing hole mentioned in this invention is a circular hole in which a bearing is installed. The rotating shaft can achieve a rotatable connection with the circular hole by fixing it to the inner wall of the bearing.
[0038] The dryer mentioned in this invention is a semiconductor dryer, which is existing technology and will not be described in detail here.
[0039] Example 1
[0040] Reference Figure 1-8A dispensing production line for Lamp-type LED semi-finished products includes a workbench 1, a conveyor 2, a die 3, a die gluing device 4, a support feeding device 5, a support gluing device 6, a support die fixing device 7, and a dryer 8. The conveyor 2 is fixedly mounted on the workbench 1, and the die 3 is located on the conveyor 2 and moves via the conveyor 2. The die 3 has a cuboid structure and includes a base 3-1 and a die 3-2. Two grooves 3-3 are provided on the base 3-1, and the die 3-2 is evenly distributed within the grooves 3-3. The die gluing device 4 is located on one side of the conveyor 2 and includes a die gluing device support 4-1, a glue injection head 4-2, a glue injection head fixing block 4-3, a first glue storage tank 4-4, and an air pump 4-5. Four support columns 4-11 are set at the bottom of the frame 4-1, and the four support columns 4-11 are located on both sides of the transmission device 2. A first through hole 4-12 is set in the middle of the molded particle gluing device bracket 4-1. The glue injection head fixing block 4-3 is fixedly installed in the first through hole 4-12. Several glue injection head mounting slots 4-31 are set at the bottom of the glue injection head fixing block 4-3. The glue injection head 4-2 is fixedly installed in the glue injection head mounting slots 4-31. The first glue storage tank 4-4 is located above the glue injection head fixing block 4-3. A through hole 4-32 is set in the glue injection head fixing block 4-3. The two ends of the through hole 4-32 are connected to the first glue storage tank 4-4 and the glue injection head mounting slots 4-31, respectively. An air pump 4-5 is fixedly installed on the molded particle gluing device bracket 4-1. The air pump 4-5 is connected to an air pipe 4-51. One end of the air pipe 4-51 is connected to the glue injection head 4-2.
[0041] The support feeding device 5 includes a support feeding platform 5-1 and a first cylinder 5-2. The support feeding platform 5-1 is located above the transmission device 2. Two support guide rails 5-11 are provided on the support feeding platform 5-1. The first cylinder 5-2 is located on one side of the support guide rails 5-11 and is connected to the support push rod 5-3.
[0042] The bracket glue applicator 6 is located on one side of the bracket guide rail 5-11 and is slidably connected to the bracket loading platform 5-1. The bracket glue applicator 6 includes two mounting plates 6-1, a second glue storage tank 6-2, a first motor 6-3, a glue injection roller 6-4, and a second cylinder 6-5. The two mounting plates 6-1 are slidably connected to the bracket loading platform 5-1, and the mounting plates 6-1 are provided with first bearing holes 6-11. The two ends of the glue injection roller 6-4 are fixedly connected to the two first bearing holes 6-11 respectively, and the glue injection roller 6-4 is located between the two mounting plates 6-1. The bottom of the glue injection roller 6-4 is provided with a... The plastic injection roller 6-4 is connected to a driven gear 6-6 at one end of the injection roller 6-4. The driven gear 6-6 is located on one side of the mounting plate 6-1. The first motor 6-3 is fixedly mounted on the loading platform 5-1 of the bracket. The first motor 6-3 is located between the two mounting plates 6-1. One end of the first motor 6-3 is connected to the first rotating shaft 6-31. One end of the first rotating shaft 6-31 passes through the mounting plate 6-1 and is connected to the driving gear 6-7. The driven gear 6-6 meshes with the driving gear 6-7. A fixing plate 6-8 is set between the two mounting plates 6-1. One side of the fixing plate 6-8 is connected to the second cylinder 6-5.
[0043] The bracket module fixing device 7 includes a fixing device mounting plate 7-1, a first linear module 7-2, a moving block 7-3, a second motor 7-4, two rotating shaft fixing blocks 7-5, a second rotating shaft 7-6, and a bracket fixing plate 7-7. The fixing device mounting plate 7-1 is fixedly mounted on the upper side of the transmission device 2. The first linear module 7-2 is fixedly mounted on the fixing device mounting plate 7-1. The moving block 7-3 is fixed on the first linear module 7-2. The two rotating shaft fixing blocks 7-5 are symmetrically fixed on the moving block 7-3. A second bearing is provided in the middle of the rotating shaft fixing blocks 7-5. Hole 7-51, the two ends of the second rotating shaft 7-6 are respectively rotatably connected to the two second bearing holes 7-51, one end of the second rotating shaft 7-6 is connected to the second motor 7-4, a fixed plate support column 7-71 is set at the bottom of the bracket fixing plate 7-7, one end of the fixed plate support column 7-71 is fixed to the outer periphery of the second rotating shaft 7-6, and the other end of the fixed plate support column 7-71 is fixedly connected to the bottom of the bracket fixing plate 7-7, and two bracket slots 7-72 are set on the bracket fixing plate 7-7, the position and size of the bracket slots 7-72 correspond to the position and size of the bracket guide rail 5-11.
[0044] The dryer 8 is located at one end of the conveyor 2.
[0045] Preferably, the glue injection roller 6-4 is located between the two grooves 3-3.
[0046] In actual operation, the staff places the LED bracket in the bracket guide rail 5-11, the transmission device 2 is started, and the mold 3 is moved. When the mold 3 moves to the bottom of the mold gluing device 4, the air pump 4-5 works and injects the glue in the injection head 4-2 into the groove 3-3 on the mold 3. Then the transmission device 2 continues to work and moves the mold 3 to the bottom of the bracket mold fixing device 7.
[0047] At this time, the first cylinder 5-2 works, pushing the bracket push rod 5-3 to move the LED bracket until it moves to the position of the large foot device 6. At this time, the second cylinder 6-5 works, pushing the bracket glue applicator 6 directly above the LED bracket. The glue in the second glue storage tank 6-2 will seep from the injection hole 6-41 onto the glue injection roller 6-4. The glue injection roller 6-4 rotates with the first motor 6-3, sticking the glue to the top of the LED bracket.
[0048] After the LED bracket is injected with glue, it will be pushed by the bracket push rod 5-3 into the bracket slot 7-72. Then the second motor 7-4 rotates, driving the second rotating shaft 7-6 to rotate 180°. The bracket fixing plate 7-7 fixed on the second rotating shaft 7-6 rotates together. At this time, the LED bracket is located directly above the mold 3. The first linear module 7-2 moves, driving the LED bracket to move downward until the LED bracket is combined with the mold 3.
[0049] Finally, the granule mold 3 is moved into the dryer 8 by a conveyor device.
[0050] Example 2
[0051] Reference Figure 9-12 The transmission device 2 includes a transmission device base 2-1, a transmission roller 2-2, a transmission motor 2-3, a second linear module 2-4, and a rotating device 2-5. The transmission device base 2-1 has a roller groove 2-11 in the middle, and third bearing holes 2-12 are respectively provided on the left and right sides of the roller groove 2-11. The two ends of the transmission roller 2-2 are respectively connected to the third bearing holes 2-12 at both ends. A cavity 2-13 is provided inside the transmission device base 2-1, which communicates with the bearing holes 2-12. The transmission motor 2-3 is provided inside the cavity 2-13, and the transmission motor 2-3 is connected to the transmission roller 2-2.
[0052] A feeding trough 2-14 is provided on the base 2-1 of the transmission device. The feeding trough 2-14 is perpendicular to and connected to the roller groove 2-11. The rotating device 2-5 is fixed at the connection between the feeding trough 2-14 and the roller groove 2-11. The second linear module 2-4 is located above the rotating device 2-5. The bottom of the second linear module 2-4 is fixedly installed with a linear module fixing frame 2-41. The linear module fixing frame 2-41 is fixedly installed on the base 2-1 of the transmission device. A push rod 2-42 is connected to the second linear module.
[0053] Preferably, the rotating device 2-5 includes a fixed frame 2-51, a rotating device base 2-52, a rotating shaft 2-53, and a third cylinder 2-54. The rotating device base 2-52 is fixed to the bottom of the roller groove 2-11. The rotating device base 2-52 has a hollow box structure. A rotating shaft hole 2-55 is provided on the top of the rotating device base 2-52. One end of the rotating shaft 2-53 passes through the rotating shaft hole 2-55 and is located inside the rotating device base 2-52. The other end of the rotating shaft 2-53 is fixed to the bottom of the fixed frame 2-51. An external gear ring 2-56 is provided on the bottom side of the rotating shaft 2-53. The external gear ring 2-56 meshes with a rack 2-57. One end of the rack is located inside the rotating device base 2-52. The other end of the rack 2-57 passes through the rotating device base 2-52 and is connected to the third cylinder 2-54.
[0054] A groove 2-21 is provided in the middle of the transmission roller 2-2, and the size of the groove 2-21 corresponds to the size of the mold 3.
Claims
1. A dispensing production line for Lamp-type LED semi-finished products, comprising a workbench (1), a conveying device (2), a mold (3), a mold gluing device (4), a bracket feeding device (5), a bracket gluing device (6), a bracket mold fixing device (7), and a dryer (8), characterized in that, The transmission device (2) is fixedly installed on the workbench (1). The molded particle mold (3) is located on the transmission device (2) and moves through the transmission device (2). The molded particle mold (3) has a cuboid structure and includes a base (3-1) and a mold (3-2). The base (3-1) has two grooves (3-3). The mold (3-2) is evenly distributed in the grooves (3-3). The molded particle gluing device (4) is located on one side of the transmission device (2). The molded particle gluing device (4) includes a molded particle gluing device bracket (4-1), a glue injection head (4-2), a glue injection head fixing block (4-3), a first glue storage tank (4-4), and an air pump (4-5). The bottom of the molded particle gluing device bracket (4-1) is provided with four support columns (4-11). The four support columns (4-11) are located on both sides of the transmission device (2). The molded particle gluing device bracket (4-1) has a first through hole (4-12) in the middle. The glue injection head fixing block (4-3) is fixedly installed in the first through hole (4-12). The bottom of the glue injection head fixing block (4-3) has a plurality of glue injection head mounting slots (4-31). The glue injection head (4-2) is fixedly installed in the glue injection head mounting slots (4-31). The first glue storage tank (4-4) is located above the glue injection head fixing block (4-3). The glue injection head fixing block (4-3) has a through hole (4-32). The two ends of the through hole (4-32) are respectively connected to the first glue storage tank (4-4) and the glue injection head mounting slots (4-31). The air pump (4-5) is fixedly installed on the molded particle gluing device bracket (4-1). The air pump (4-5) is connected to an air pipe (4-51). One end of the air pipe (4-51) is connected to the glue injection head (4-2). The support feeding device (5) includes a support feeding platform (5-1) and a first cylinder (5-2). The support feeding platform (5-1) is located above the transmission device (2). Two support guide rails (5-11) are provided on the support feeding platform (5-1). The first cylinder (5-2) is located on one side of the support guide rail (5-11). The first cylinder (5-2) is connected to a support push rod (5-3). The bracket glue applicator (6) is located on one side of the bracket guide rail (5-11). The bracket glue applicator (6) is slidably connected to the bracket loading platform (5-1). The bracket glue applicator (6) includes two mounting plates (6-1), a second glue storage tank (6-2), a first motor (6-3), a glue injection roller (6-4), and a second cylinder (6-5). The two mounting plates (6-1) are slidably connected to the bracket loading platform (5-1). The mounting plates (6-1) are provided with first bearing holes (6-11). The two ends of the glue injection roller (6-4) are fixedly connected to the two first bearing holes (6-11) respectively. The glue injection roller (6-4) is located between the two mounting plates (6-1). The bottom of the glue injection roller (6-4) is provided with an injection hole (…). 6-41), one end of the glue injection roller (6-4) is connected to a driven gear (6-6), the driven gear (6-6) is located on one side of the mounting plate (6-1), the first motor (6-3) is fixedly installed on the loading platform (5-1) of the bracket, the first motor (6-3) is located between the two mounting plates (6-1), one end of the first motor (6-3) is connected to a first rotating shaft (6-31), one end of the first rotating shaft (6-31) passes through the mounting plate (6-1) and is connected to a driving gear (6-7), the driven gear (6-6) meshes with the driving gear (6-7), a fixing plate (6-8) is provided between the two mounting plates (6-1), one side of the fixing plate (6-8) is connected to the second cylinder (6-5); The bracket module fixing device (7) includes a fixing device mounting plate (7-1), a first linear module (7-2), a moving block (7-3), a second motor (7-4), two rotating shaft fixing blocks (7-5), a second rotating shaft (7-6), and a bracket fixing plate (7-7). The fixing device mounting plate (7-1) is fixedly mounted on one upper side of the transmission device (2). The first linear module (7-2) is fixedly mounted on the fixing device mounting plate (7-1). The moving block (7-3) is fixed on the first linear module (7-2). The two rotating shaft fixing blocks (7-5) are symmetrically fixed on the moving block (7-3). A second bearing is provided in the middle of each rotating shaft fixing block (7-5). Hole (7-51), the two ends of the second rotating shaft (7-6) are respectively rotatably connected to the two second bearing holes (7-51), one end of the second rotating shaft (7-6) is connected to the second motor (7-4), the bottom of the bracket fixing plate (7-7) is provided with a fixing plate support column (7-71), one end of the fixing plate support column (7-71) is fixed to the outer periphery of the second rotating shaft (7-6), and the other end of the fixing plate support column (7-71) is fixedly connected to the bottom of the bracket fixing plate (7-7). The bracket fixing plate (7-7) is provided with two bracket slots (7-72), the position and size of the bracket slots (7-72) correspond to the position and size of the bracket guide rail (5-11); The dryer (8) is located at one end of the transmission device (2).
2. The Lamp-type LED semi-finished product dispensing production line according to claim 1, characterized in that, The glue-dispensing roller (6-4) is located between two grooves (3-3).
3. The Lamp-type LED semi-finished product dispensing production line according to claim 2, characterized in that, The transmission device (2) includes a transmission device base (2-1), a transmission roller (2-2), a transmission motor (2-3), a second linear module (2-4), and a rotating device (2-5). The transmission device base (2-1) has a roller groove (2-11) in the middle. The roller groove (2-11) has third bearing holes (2-12) on the left and right sides respectively. The two ends of the transmission roller (2-2) are connected to the third bearing holes (2-12) at both ends respectively. The transmission device base (2-1) has a cavity (2-13) inside, which communicates with the bearing holes (2-12). The transmission motor (2-3) is installed inside the cavity (2-13) and is connected to the transmission roller (2-2). The base (2-1) of the transmission device is provided with a feeding groove (2-14), which is perpendicular to and connected to the roller groove (2-11). The rotating device (2-5) is fixed at the connection between the feeding groove (2-14) and the roller groove (2-11). The second linear module (2-4) is located above the rotating device (2-5). A linear module fixing frame (2-41) is fixed at the bottom of the second linear module (2-4). The linear module fixing frame (2-41) is fixedly installed on the base (2-1) of the transmission device. A push rod (2-42) is connected to the second linear module.
4. The Lamp-type LED semi-finished product dispensing production line according to claim 3, characterized in that, The rotating device (2-5) includes a fixed frame (2-51), a rotating device base (2-52), a rotating shaft (2-53), and a third cylinder (2-54). The rotating device base (2-52) is fixed to the bottom of the roller groove (2-11). The rotating device base (2-52) has a hollow box structure. A rotating shaft hole (2-55) is provided on the top of the rotating device base (2-52). One end of the rotating shaft (2-53) passes through the rotating shaft hole (2-55) and is located at... Inside the base (2-52) of the rotating device, the other end of the rotating shaft (2-53) is fixed to the bottom of the fixed frame (2-51). An external gear ring (2-56) is provided on the bottom side of the rotating shaft (2-53). The external gear ring (2-56) meshes with a rack (2-57). One end of the rack is located inside the base (2-52) of the rotating device, and the other end of the rack (2-57) passes through the base (2-52) of the rotating device and is connected to the third cylinder (2-54).
5. The Lamp-type LED semi-finished product dispensing production line according to claim 4, characterized in that, The transmission roller (2-2) has a groove (2-21) in the middle, and the size of the groove (2-21) corresponds to the size of the mold (3).
Citation Information
Patent Citations
Automatic process method for coating fluorescent glue to SMD LED semi-finished products
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