CN210884092U - Stacking device for LED lamp panel - Google Patents

Stacking device for LED lamp panel Download PDF

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Publication number
CN210884092U
CN210884092U CN201921459903.0U CN201921459903U CN210884092U CN 210884092 U CN210884092 U CN 210884092U CN 201921459903 U CN201921459903 U CN 201921459903U CN 210884092 U CN210884092 U CN 210884092U
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China
Prior art keywords
led lamp
plate
lamp panel
riser
lamp plate
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CN201921459903.0U
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Chinese (zh)
Inventor
邓朝旭
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Shenzhen Zhaoyangguang Te Technology Co ltd
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Shenzhen Zhaoyangguang Te Technology Co ltd
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Abstract

The utility model provides a fold material device of LED lamp plate for the material is folded in separation of unqualified LED lamp plate that detects out with product detection device, include: the bottom plate, the curb plate, the belt pulley, the belt, the roof, can make progress the jacking device of jacking roof, the baffle, can promote the stop device of baffle, the inductor, the controller of control stop device and jacking device work, the LED lamp plate is kept flat on two belts, both sides board upper end is provided with respectively with curb plate parallel arrangement's riser, two risers set up respectively in the both sides of roof, the riser inboard is provided with in the retraction riser when following the lower part jacking, stretch out the riser during free state and block and support the device that stacks of LED lamp plate. The utility model discloses a fold material device of LED lamp plate simple structure, it is reliable to stack unqualified LED lamp plate, has avoided unqualified LED lamp plate tiling to place, has saved the space, is favorable to the unqualified LED lamp plate of recovery in order, has improved unqualified LED lamp plate and has detected and reworking efficiency.

Description

Stacking device for LED lamp panel
Technical Field
The utility model relates to a mechanical equipment technical field especially relates to a fold material device of LED lamp plate.
Background
Led (light emitting diode), a solid semiconductor device capable of converting electrical energy into visible light. When the LED lamp panel is produced in the prior art, appearance inspection is carried out on the LED lamp panel on an assembly line, appearance conditions such as glue dispensing and positions of LED lamp beads on the LED lamp panel are inspected, then unqualified LED lamp panels are separated, the separated unqualified LED lamp panels are tiled and placed, the occupied space is very large, the arrangement and recovery of the unqualified LED lamp panels are not facilitated, and the detection rework of the unqualified LED lamp panels is influenced.
Therefore, it is urgently needed to provide a material stacking device of an LED lamp panel, which is simple in structure, reliable and good in stability.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to avoid the weak point among the prior art and provide a LED lamp plate fold material device that simple structure, reliable, stability are good.
The utility model provides a fold material device of LED lamp plate for the material is folded in separation of unqualified LED lamp plate that detects out with product detection device, include: the LED lamp panel lifting device comprises a bottom plate, two side plates which are vertically arranged on the bottom plate relatively, four rotatable belt pulleys which are respectively fixed at the inner sides of the two side plates, two belts which are sleeved on the belt pulleys fixed with the same side plate and used for conveying the LED lamp panel, a top plate which is arranged between the two side plates and has a width smaller than a gap between the two belts, a lifting device which is connected with the side plates and the top plate and can lift the top plate upwards, a baffle plate which is arranged between the two side plates and is positioned at the front end of the top plate, a blocking device which is connected with the side plates and the baffle plate and can lift the baffle plate to block the LED lamp panel on the belt from moving forwards, an inductor which is fixed at the inner side of the blocking device and is used for detecting the position of the LED lamp panel, and a controller which controls the blocking device and the lifting device to work according, the controller respectively with the inductor stop device with the jacking device electricity is connected, the LED lamp plate keep flat in two on the belt, two curb plate upper end be provided with respectively with curb plate parallel arrangement's riser, two the riser set up respectively in the both sides of roof, the riser inboard is provided with from the lower part jack-up retraction in the riser, stretch out during free state the riser blocks the support the device that stacks of LED lamp plate.
Preferably, the aforesaid stack device including set up in the inboard horizontal interval of riser set up the mounting groove, set up in intercommunication in the riser is all the shaft hole of mounting groove, set up in the material piece that stacks that has a mounting hole in the mounting groove, set up in all are worn to establish by the activity in the shaft hole the round pin axle of first mounting hole, the shaft hole is located in vertical direction the middle part of mounting groove, the lateral surface of material piece that stacks is the rectangle, when the lateral surface of material piece was perpendicular with the horizontal plane, its lateral surface with the riser medial surface flushes, the edges and corners between its upper surface and its lateral surface are protruding expose in when material piece free state outside the riser.
Preferably, two inner side surfaces of the stacking block are horseshoe-shaped, and the first mounting hole is formed in one arc-shaped end of the horseshoe-shaped stacking block.
Preferably, the jacking device comprises a mounting seat with a second mounting hole and two sides fixed on the inner side of the side plate, and a first cylinder with a first telescopic rod and fixed at the lower end of the mounting seat, the first telescopic rod penetrates through the second mounting hole, the upper end of the first telescopic rod is fixedly connected with the lower end of the top plate, and the controller controls the first telescopic rod to stretch.
Preferably, the jacking device further comprises two third mounting holes arranged on the mounting seat and respectively located on two sides of the second mounting hole, two linear bearings fixed at the lower end of the top plate and penetrating through the third mounting holes, and two guide shafts with one ends fixed on the bottom plate and the other ends sleeved in the linear bearings.
Preferably, the blocking device comprises a second cylinder fixed on the side plate and provided with a second telescopic rod, the baffle plate is fixedly connected with the second telescopic rod, and the controller controls the second telescopic rod to stretch.
Preferably, a connecting plate is arranged between the second cylinder and the baffle.
Preferably, the blocking device further comprises a guide block fixedly connected with the mounting base, and a linear rail provided with a guide rail and a sliding block which are matched with each other, the sliding block can slide on the guide rail, the guide block is fixedly connected with the sliding block, the guide rail is fixedly connected with the baffle, and the sensor is mounted on the back of the guide block.
Preferably, a protruding block having a fourth mounting hole is disposed on an upper portion of a back surface of the guide block, and the inductor is inserted and fixed in the fourth mounting hole.
Compared with the prior art, the utility model has the following advantage: the utility model discloses a both ends cover of folding every belt of material device of LED lamp plate on with two belt pulleys of one side board fixed, two belt parallel arrangement, LED lamp plate keep flat on two belts, two sets of belt pulley synchronous rotations, two belts are following the operation, and then transport the LED lamp plate forward. When the sensor detects that the LED lamp panel is conveyed to a set position and the product detection device detects that the LED lamp panel is an unqualified product, sending a control signal to the controller; the controller sequentially sends control signals to the blocking device and the jacking device, the blocking device is controlled to lift the baffle connected with the blocking device upwards, the baffle is lifted to the belt, and the baffle blocks the LED lamp panel on the belt to be conveyed forwards; then the controller controls the jacking device to jack the top plate connected with the jacking device upwards, and the top plate supports the LED lamp panel from the lower part and jacks the LED lamp panel upwards from the belt because the width of the top plate is smaller than the gap between the two belts; when the LED lamp panel is jacked to the stacking device positioned on the inner side of the vertical plate, the stacking device retracts into the vertical plate under the action of jacking force of the LED lamp panel from the lower part upwards, and the jacking device jacks the LED lamp panel to continuously move upwards; after the LED lamp panel reaches the preset position, the jacking device moves downwards, and the top plate drives the LED lamp panel to move downwards; when the LED lamp panel moves to the position of the stacking device, the stacking device restores a free state, extends out of the vertical plate, the top plate can continuously move downwards to pass through the stacking device, the LED lamp panel is clamped on the stacking device and supported by the stacking device, and the top plate continuously moves downwards to return to the initial position.
When the product detection device detects the next unqualified product, the unqualified LED lamp panel is supported by the top plate from the lower part, and the unqualified LED lamp panel is jacked up to the stacking device positioned on the inner side of the vertical plate from the belt; when the LED lamp panels move to the position of the stacking device, the stacking device restores a free state, the top plate continues to move downwards to pass through the stacking device, all unqualified LED lamp panels are clamped on the stacking device and supported by the stacking device, and the top plate continues to move downwards to return to the initial position, namely, each new unqualified product is stacked to the lowest part of the unqualified products supported by the stacking device and is continuously accumulated, and then the stacking of the unqualified products is realized.
The utility model discloses a fold material device of LED lamp plate simple structure, it is reliable to stack unqualified LED lamp plate, has avoided unqualified LED lamp plate tiling to place, has saved the space, is favorable to the unqualified LED lamp plate of recovery in order, has improved unqualified LED lamp plate and has detected and reworking efficiency.
Drawings
The invention will be further described with reference to the accompanying drawings, to which, however, the embodiments do not constitute any limitation.
Fig. 1 is a schematic structural view of a material stacking device of an LED lamp panel before stacking materials;
fig. 2 is a schematic structural view of the LED lamp panel after stacking by the stacking device of the present invention;
fig. 3 is a schematic structural diagram of a stacking device of an LED lamp panel before stacking;
fig. 4 is a schematic structural view of a stacking device of an LED lamp panel after stacking;
fig. 5 is an exploded schematic view of a stacking device of an LED lamp panel according to the present invention;
fig. 6 is an exploded schematic view of a part of a stacking device of an LED lamp panel according to the present invention;
fig. 7 is a schematic structural view of a part of a stacking device of an LED lamp panel according to the present invention;
fig. 8 is the utility model discloses a stop device of fold material device of LED lamp plate has installed the schematic structure of inductor.
Detailed Description
The invention will be further described with reference to the following examples and drawings:
a material stacking device for LED lamp panels is used for separating and stacking unqualified LED lamp panels 15 detected by a product detection device (not marked in the figures), and comprises the following components as shown in figures 1 to 8: a bottom plate 10, two side plates 11 vertically arranged on the bottom plate 10, four rotatable belt pulleys 12 respectively fixed at the inner sides of the two side plates 11, two belts 13 with two ends respectively sleeved on the belt pulleys 12 fixed with the same side plate 11 and used for conveying the LED lamp panel 15, a top plate 16 arranged between the two side plates 11 and having a width smaller than the gap between the two belts 13, a jacking device 20 connecting the side plates 11 and the top plate 16 and capable of jacking the top plate 16 upwards, a baffle plate 17 arranged between the two side plates 11 and positioned at the front end of the top plate 16, a blocking device 30 connecting the side plates 11 and the baffle plate 17 and capable of lifting the baffle plate 17 to block the LED lamp panel 15 on the belt 13 from moving forwards, a sensor 18 fixed at the inner side of the blocking device 30 and used for detecting the position of the LED lamp panel 15, and a controller (not shown in the figure) for controlling the blocking device 30 and the jacking device 20 to work according to the sensing signal, the controller (not marked in the figure) is respectively electrically connected with the inductor 18, the blocking device 30 and the jacking device 20, the LED lamp panel 15 is horizontally placed on the two belts 13, the upper ends of the two side plates 11 are respectively provided with a vertical plate 40 which is parallel to the side plates 11, the two vertical plates 40 are respectively arranged on two sides of the top plate 16, and the inner sides of the vertical plates 40 are provided with stacking devices 50 which retract into the vertical plates 40 when jacking from the lower part and stretch out of the vertical plates 40 to clamp and support the LED lamp panel 15 in a free state.
The utility model discloses a fold material device of LED lamp plate every belt 13's both ends cover on with two belt pulleys 12 of one side board 11 fixed, two belt 13 parallel arrangement, LED lamp plate 15 keep flat on two belts 13, two sets of belt pulley 12 rotate in step, two belts 13 are following the operation, and then transport LED lamp plate 15 forward. When the sensor 18 detects that the LED lamp panel 15 is transported to a set position and a product detection device (not shown) detects that the LED lamp panel 15 is an unqualified product, sending a control signal to a controller (not shown); the controller (not shown in the figures) sequentially sends control signals to the blocking device 30 and the jacking device 20, firstly controls the blocking device 30 to lift the baffle 17 connected with the blocking device upwards, the baffle 17 is lifted to the belt 13, and then the baffle 17 blocks the LED lamp panels 15 on the belt 13 to be conveyed forwards; then the controller (not shown) controls the jacking device 20 to jack the top plate 16 connected with the jacking device upwards, and as the width of the top plate 16 is smaller than the gap between the two belts 13, the top plate 16 supports the LED lamp panel 15 from the lower part, and the LED lamp panel 15 is jacked upwards from the belts 13; when the LED lamp panel 15 is jacked to the stacking device 50 located on the inner side of the vertical plate 40, due to the jacking action of the LED lamp panel 15 from the lower part to the upper part, the stacking device 50 retracts into the vertical plate 40, and the jacking device 20 jacks the LED lamp panel 15 to continuously move upwards; after the preset position is reached, the jacking device 20 moves downwards, and the top plate 16 drives the LED lamp panel 15 to move downwards; when the LED lamp panel 15 moves to the position of the stacking device 50, the stacking device 50 extends out of the vertical plate 40 due to the fact that the stacking device 50 restores to a free state, the top plate 16 can continuously move downwards to pass through the stacking device 50, the LED lamp panel 15 is clamped on the stacking device 50 and supported by the stacking device 50, and the top plate 16 continuously moves downwards to return to the initial position.
When a product detection device (not shown) detects a next unqualified product, the top plate 16 supports the unqualified LED lamp panel 15 from the lower part, and the unqualified LED lamp panel 15 is jacked from the belt 13 to the stacking device 50 positioned on the inner side of the vertical plate 40, because of the jacking force of the unqualified LED lamp panel 15 from the lower part, the stacking device 50 retracts into the vertical plate 40, the jacking device 20 jacks the unqualified LED lamp panel 15 and the unqualified LED lamp panel 15 originally supported by the stacking device 50 to move upwards continuously, and after the preset position is reached, the jacking device 20 moves downwards, and the top plate 16 drives all the unqualified LED lamp panels 15 to move downwards; when the LED lamp panels are moved to the position of the stacking device 50, the stacking device 50 is restored to the free state, the top plate 16 continues to move downwards to pass through the stacking device 50, all the unqualified LED lamp panels 15 are clamped on the stacking device 50 and supported by the stacking device 50, and the top plate 16 continues to move downwards to return to the initial position, namely, each new unqualified product is stacked to the lowest part of the unqualified products supported by the stacking device 50 and is continuously accumulated, and therefore stacking of the unqualified products is achieved.
The utility model discloses a fold material device of LED lamp plate simple structure, it is reliable to stack unqualified LED lamp plate 15, has avoided unqualified LED lamp plate 15 tiling to place, has saved the space, is favorable to arranging in order to retrieve unqualified LED lamp plate 15, has improved unqualified LED lamp plate 15 and has detected and reworking efficiency.
Preferably, as shown in fig. 1 to 5, the stacking device 50 includes mounting slots 51 disposed at horizontal intervals inside the vertical plate 40, a shaft hole 52 disposed inside the vertical plate 40 and communicating with all the mounting slots 51, a stacking block 53 disposed inside the mounting slot 51 and having a first mounting hole 54, and a pin 55 disposed inside the shaft hole 52 and movably passing through all the first mounting holes 54, wherein the shaft hole 52 is located at the middle of the mounting slot 51 in the vertical direction, an outer side 56 of the stacking block 53 is rectangular, when the outer side 56 of the stacking block 53 is perpendicular to the horizontal plane, the outer side 56 is flush with the inner side of the vertical plate 40, and when the stacking block 53 is in a free state, an edge angle between the upper surface 57 and the outer side 56 is exposed outside the vertical plate 40. As shown in fig. 5, the pin 55 penetrates into the shaft hole 52 from the side, since the shaft hole 52 is communicated with all the mounting grooves 51, the pin 55 sequentially penetrates through the first mounting holes 54 of the stacking blocks 53 positioned in the mounting grooves 51, and further all the stacking blocks 53 are movably fixed in series in the vertical plate 40, and the stacking blocks 53 can rotate on the vertical plane by taking the pin 55 as the center. In a free state, as shown in fig. 3, the stacking block 53 naturally droops, the bottom of the stacking block 53 is supported by the bottom surface of the mounting groove 51, the edge angle between the upper surface 57 and the outer side surface 56 of the stacking block 53 is partially exposed out of the vertical plate 40, the stacking device 50 is arranged on the two vertical plates 40, and the upper surface 57 of the stacking block 53 can support the LED lamp panel 15. When the stacking block 53 receives the lower jacking force, as shown in fig. 4, the stacking block 53 jacks the outer side surface 56 of the stacking block 53 from the lower part, the stacking block 53 receives a force upwards approaching the vertical plate 40, the stacking block 53 retracts into the vertical plate 40, the outer side surface 56 of the stacking block 53 is flush with the inner side surface of the vertical plate 40, and the LED lamp panel 15 can ascend and pass through. The outer side surface 56 of the stacking block 53 is rectangular, and the LED lamp panel 15 is supported favorably.
Preferably, as shown in fig. 5, the two inner sides 58 of the stacking block 53 are horseshoe-shaped, and the first mounting hole 54 is disposed at one arc end of the horseshoe-shape. The first mounting hole 54 is provided at one end of the horseshoe-shaped arc, and facilitates the stacking block 53 to rotate on a vertical plane around the pin 55.
Preferably, as shown in fig. 6 to 7, the jacking device 20 includes a mounting base 21 having second mounting holes 22 and both sides fixed to the inner side of the side plate 11, a first cylinder 23 having a first telescopic rod 24 fixed to the lower end of the mounting base 21, the first telescopic rod 24 passes through the second mounting hole 22, and the upper end of the first telescopic rod is fixedly connected to the lower end of the top plate 16, and a controller (not shown) controls the extension and retraction of the first telescopic rod 24. First telescopic link 24 of first cylinder 23 passes behind the second mounting hole 22 with the lower extreme fixed connection of roof 16, and the flexible of first telescopic link 24 of controller (not marking in the picture), and then control roof 16 up-and-down motion, and then realize the jacking to LED lamp plate 15, each spare part cooperation precision is high, simple structure is reliable.
Preferably, as shown in fig. 6 to 7, the jacking device 20 further includes two third mounting holes 25 respectively disposed on the mounting base 21 and located on two sides of the second mounting hole 22, two linear bearings 26 fixed to the lower end of the top plate 16 and passing through the third mounting holes 25, and two guide shafts 27 having one end fixed to the bottom plate 10 and the other end sleeved in the linear bearings 26. Linear bearings 26 are provided on both sides of the first telescopic rod 24 of the first cylinder 23 of the top plate 16, and the linear bearings 26 can move up and down along the guide shaft 27 when the top plate 16 moves up and down. The linear bearing 26 and the guide shaft 27 are matched and arranged on two sides of the first telescopic rod 24 of the first air cylinder 23, so that the top plate 16 can be prevented from shaking in the up-and-down movement process, and the balance and stability of the top plate 16 can be improved.
Preferably, as shown in fig. 6 to 8, the blocking device 30 includes a second cylinder 31 having a second telescopic rod 32 fixed to the side plate 11, the baffle 17 is fixedly connected to the second telescopic rod 32, and a controller (not shown) controls the second telescopic rod 32 to extend and retract. The controller (not labeled in the figure) controls the extension and retraction of the second telescopic rod 32, so as to control the baffle plate 170 to move up and down, and the blocking effect on the LED lamp panel 15 can be realized.
Preferably, as shown in fig. 6 to 8, a connecting plate 38 is provided between the second cylinder 31 and the baffle 17. The connection plate 38 may increase the reliability of the connection of the second cylinder 31 and the baffle 17.
Preferably, as shown in fig. 6 to 8, the blocking device 30 further includes a guide block 60 fixedly connected to the mounting base 21, and a wire track having a guide rail 62 and a sliding block 61 which are engaged with each other, wherein the sliding block 61 is slidable on the guide rail 62, the guide block 60 is fixedly connected to the sliding block 61, the guide rail 62 is fixedly connected to the baffle 17, and the sensor 18 is mounted on the back surface of the guide block 60. The sliding block 61 can slide on the guide rail 62, the guide block 60 is fixedly connected with the sliding block 61, and the mounting base 21 is fixedly connected with the guide block 60, that is, when the second telescopic rod 32 moves up and down, the baffle 17 moves up and down to drive the guide rail 62 to move up and down relative to the sliding block 61. The arrangement of the wire rails and the guide blocks 60 can enhance the structural stability of the blocking device 30.
Preferably, as shown in fig. 8, the guide block 60 is provided at an upper portion of a rear surface thereof with a projection 63 having a fourth mounting hole 64, and the inductor 18 is inserted and fixed in the fourth mounting hole 64. The inductor 18 is inserted and fixed in the fourth mounting hole 64, and the structure is firm and reliable.
It should be finally noted that the above embodiments are only intended to illustrate the technical solutions of the present invention, and not to limit the scope of the present invention, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present invention can be modified or replaced with equivalents without departing from the spirit and scope of the technical solutions of the present invention.

Claims (9)

1. The utility model provides a fold material device of LED lamp plate for fold material, its characterized in that includes with the separation of unqualified LED lamp plate that product detection device detected out: the LED lamp panel lifting device comprises a bottom plate, two side plates which are vertically arranged on the bottom plate relatively, four rotatable belt pulleys which are respectively fixed at the inner sides of the two side plates, two belts which are sleeved on the belt pulleys fixed with the same side plate and used for conveying the LED lamp panel, a top plate which is arranged between the two side plates and has a width smaller than a gap between the two belts, a lifting device which is connected with the side plates and the top plate and can lift the top plate upwards, a baffle plate which is arranged between the two side plates and is positioned at the front end of the top plate, a blocking device which is connected with the side plates and the baffle plate and can lift the baffle plate to block the LED lamp panel on the belt from moving forwards, an inductor which is fixed at the inner side of the blocking device and is used for detecting the position of the LED lamp panel, and a controller which controls the blocking device and the lifting device to work according, the controller respectively with the inductor stop device with the jacking device electricity is connected, the LED lamp plate keep flat in two on the belt, two curb plate upper end be provided with respectively with curb plate parallel arrangement's riser, two the riser set up respectively in the both sides of roof, the riser inboard is provided with from the lower part jack-up retraction in the riser, stretch out during free state the riser blocks and supports the device that stacks of LED lamp plate.
2. The material stacking device of the LED lamp panel according to claim 1, wherein: stack the device including set up in the inboard horizontal interval of riser sets up the mounting groove, set up in intercommunication in the riser is all the shaft hole of mounting groove, set up in the material piece that stacks that has a mounting hole in the mounting groove, set up in all are worn to establish by the shaft hole internalization the round pin axle of first mounting hole, the shaft hole is located in vertical direction the middle part of mounting groove, the lateral surface of material piece stacks is the rectangle, when the lateral surface of material piece stacks is perpendicular with the horizontal plane, its lateral surface with the riser medial surface flushes, its upper surface and the edges and corners between its lateral surface are protruding expose in when material piece free state outside the riser.
3. The material stacking device of the LED lamp panel according to claim 2, wherein: the two inner side surfaces of the stacking block are in a horseshoe shape, and the first mounting hole is formed in the arc-shaped end of the horseshoe shape.
4. The material stacking device of the LED lamp panel according to claim 3, wherein: the jacking device comprises a mounting seat with a second mounting hole and two sides fixed on the inner side of the side plate, and a first air cylinder with a first telescopic rod and fixed on the lower end of the mounting seat, the first telescopic rod penetrates through the second mounting hole, the upper end of the first telescopic rod is fixedly connected with the lower end of the top plate, and the controller controls the first telescopic rod to stretch.
5. The fold material device of LED lamp plate of claim 4, its characterized in that: the jacking device further comprises two third mounting holes which are arranged on the mounting seat and are respectively positioned on two sides of the second mounting hole, two linear bearings which are fixed at the lower end of the top plate and penetrate through the third mounting holes, and two guide shafts, one ends of which are fixed at the other end of the bottom plate, and the other ends of which are sleeved in the linear bearings.
6. The material stacking device of the LED lamp panel according to claim 5, wherein: the blocking device comprises a second cylinder which is fixed on the side plate and provided with a second telescopic rod, the baffle is fixedly connected with the second telescopic rod, and the controller controls the second telescopic rod to stretch.
7. The material stacking device of the LED lamp panel according to claim 6, wherein: and a connecting plate is arranged between the second cylinder and the baffle.
8. The material stacking device of the LED lamp panel according to claim 7, wherein: the blocking device further comprises a guide block fixedly connected with the mounting seat, and a linear rail provided with a guide rail and a sliding block which are matched with each other, the sliding block can slide on the guide rail, the guide block is fixedly connected with the sliding block, the guide rail is fixedly connected with the baffle, and the inductor is mounted on the back of the guide block.
9. The material stacking device of the LED lamp panel according to claim 8, wherein: the upper portion of the back of the guide block is provided with a convex block with a fourth mounting hole, and the inductor is inserted and fixed in the fourth mounting hole.
CN201921459903.0U 2019-09-04 2019-09-04 Stacking device for LED lamp panel Active CN210884092U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921459903.0U CN210884092U (en) 2019-09-04 2019-09-04 Stacking device for LED lamp panel

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Application Number Priority Date Filing Date Title
CN201921459903.0U CN210884092U (en) 2019-09-04 2019-09-04 Stacking device for LED lamp panel

Publications (1)

Publication Number Publication Date
CN210884092U true CN210884092U (en) 2020-06-30

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CN201921459903.0U Active CN210884092U (en) 2019-09-04 2019-09-04 Stacking device for LED lamp panel

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112170240A (en) * 2020-09-17 2021-01-05 广东吉洋视觉技术有限公司 LED lamp bead dispensing double-face detection, stamping rejection and stripping material receiving all-in-one machine
CN113967599A (en) * 2021-11-04 2022-01-25 浙江瓯明流体铸业有限公司 Accurate conveying and guiding device for parts for valve machining

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112170240A (en) * 2020-09-17 2021-01-05 广东吉洋视觉技术有限公司 LED lamp bead dispensing double-face detection, stamping rejection and stripping material receiving all-in-one machine
CN113967599A (en) * 2021-11-04 2022-01-25 浙江瓯明流体铸业有限公司 Accurate conveying and guiding device for parts for valve machining

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