CN217778091U - Gilt automatic conveying tool of socket panel - Google Patents

Gilt automatic conveying tool of socket panel Download PDF

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Publication number
CN217778091U
CN217778091U CN202221955334.0U CN202221955334U CN217778091U CN 217778091 U CN217778091 U CN 217778091U CN 202221955334 U CN202221955334 U CN 202221955334U CN 217778091 U CN217778091 U CN 217778091U
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China
Prior art keywords
socket panel
group
transmission channel
jacking
gilt
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CN202221955334.0U
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Chinese (zh)
Inventor
林建雄
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Huizhou Shengli Technology Co ltd
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Huizhou Shengli Technology Co ltd
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Abstract

The utility model discloses a gilt automatic conveying tool of socket panel, including the board to be equipped with gilt device, transmission path, material feeding unit and material collecting device at the board, material feeding unit and material collecting device are located transmission path's both ends respectively, and gilt device is located transmission path's top, and transmission path's below is equipped with and transmits path complex top mounting apparatus. The utility model discloses gilt automatic conveying tool of socket panel, place in the feeding bin and pile up the socket panel of treating gilt, and through centre gripping group, first fender position group and first promotion group push away it to gilt device department, combine top set to gilt socket panel by gilt device again, socket panel after gilt then conveys to receiving bin department, and pile up socket panel by second fender position group and jacking in proper order in receiving bin by supreme down, finally, the autoloading and the receipts material of having accomplished socket panel, with this gilt efficiency and the quality that improves socket panel, reduce artifical intensity of labour simultaneously, practice thrift the cost of labor.

Description

Gilt automatic conveying tool of socket panel
Technical Field
The utility model relates to a socket panel production technical field, in particular to gilt automatic conveying tool of socket panel.
Background
The socket (also called power socket, switch socket) is a socket into which one or more circuit connection wires can be inserted, and through which various connection wires can be inserted, it is convenient to connect with other circuits. The power socket is an electrical device for providing a power interface for household appliances, is also an electrical accessory used in the electrical design of a house, and has a very close relationship with the life of people.
Correspondingly, the socket has a socket panel, and the socket panel is divided into three types, namely, a 86-type switch panel, a 118-type switch panel and a 120-type switch panel according to the external dimensions, and panels produced by various manufacturers are conveniently distinguished, so that the socket panel is generally subjected to gold stamping treatment.
Among the prior art, socket panel is when carrying out gilt processing, and it is gilt to place the gilt machine with socket panel through the manual work on taking, after gilt, takes the socket panel away again and collects, consequently, leads to socket panel inefficiency when gilt, and the quality is not good, and simultaneously, artifical intensity of labour is great.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a gilt automatic conveying tool of socket panel of raise efficiency and quality.
For solving the above technical problem, the utility model discloses can adopt following technical scheme to realize:
the utility model provides a gilt automatic conveying tool of socket panel, includes the board to be equipped with gilt device, transmission path, material feeding unit and material collecting device on the board, wherein, material feeding unit is located transmission path's one end, and material collecting device then is located transmission path's the other end, and gilt device is located transmission path's top to be equipped with the overhead device below transmission path, and the overhead device cooperatees with gilt device and gilt to the socket panel on the transmission path.
In one embodiment, the feeding device comprises a feeding bin, a clamping group, a first blocking group and a first pushing group, wherein the feeding bin is located at the end part of one end of the conveying channel, the clamping group and the first blocking group are oppositely arranged on two sides of the feeding bin, the clamping group is located above the first blocking group, and the first pushing group is arranged on the conveying channel and pushes the socket panel in the feeding bin into the conveying channel.
In one embodiment, the clamping group comprises a clamping cylinder and a clamping block, the clamping cylinder is connected with the clamping block and drives the clamping block to penetrate through the side wall of the feeding bin to clamp the socket panel in the feeding bin; the first gear group comprises a first gear cylinder and a first baffle, the first gear cylinder is connected with the first baffle, and drives the first baffle to penetrate through the side wall of the feeding bin to block a socket panel in the feeding bin; first promotion group is connected with the push pedal including first promotion cylinder and push pedal to order about the push pedal and push socket panel in with the pay-off storehouse in proper order to transmission channel.
In one embodiment, the material receiving device comprises a material receiving bin, a second stopping group and a jacking group, the material receiving bin is arranged at the end part of the other end of the conveying channel, the second stopping group is arranged on two sides of the material receiving bin, the second stopping groups on the two sides are arranged oppositely, and the jacking group is arranged at the bottom of the material receiving bin.
In one embodiment, the second blocking group comprises a second blocking cylinder and a second blocking plate, the second blocking cylinder is connected with the second blocking plate and drives the second blocking plate to penetrate through the side wall of the collecting bin to block the socket panel in the collecting bin; jacking group is connected with the jacking board including jacking cylinder and jacking board to order about the jack-up board and will receive the socket panel jack-up that makes progress in the feed bin.
In one embodiment, after the second baffles on the two sides penetrate into the receiving bin, the distance between the second baffles on the two sides is larger than the width of the lifting plate.
In one embodiment, the jacking device comprises a jacking cylinder, a jacking plate and a limiting plate, the limiting plate is arranged on the top surface of the transmission channel, the jacking cylinder is located at the bottom of the transmission channel and is connected with the jacking plate, the jacking plate is driven to jack up the socket panel on the transmission channel, and the height of the jack-up of the socket panel is limited by the limiting plate.
In one of them embodiment, when transmission channel is vertical bending structure, be equipped with thrust unit at the department of bending, thrust unit includes second push cylinder and catch bar, and second push cylinder is connected with the catch bar to order about the catch bar and promote the socket panel of the department of bending.
Has the beneficial effects that:
the utility model discloses gilt automatic conveying tool of socket panel, place a plurality of socket panel of treating gilt of piling up in the feeding bin, and through centre gripping group, first fender group and first promotion group push the socket panel in feeding bin to transmission channel in proper order, and push away to gilt device department, combine top mounting by gilt device again and carry out gilt to socket panel, socket panel after gilt then conveys to receiving bin department, and pile up socket panel by second fender group and top mounting in proper order in receiving bin by lower supreme, finally, the autoloading and the receipts material to socket panel have been accomplished, with this gilt efficiency and the quality that improves socket panel, reduce artifical intensity of labour simultaneously, practice thrift the cost of labor.
Drawings
Fig. 1 is a schematic structural diagram of the automatic conveying jig for gold stamping of the socket panel of the present invention;
fig. 2 is a schematic structural view of the automatic conveying jig for gold stamping of the socket panel of the present invention;
fig. 3 is a schematic structural view of a feeding device of the automatic conveying jig for gold stamping of the socket panel of the present invention;
fig. 4 is a schematic structural view of the clamping group, the first blocking group and the first pushing group of the automatic conveying jig for gold stamping of the socket panel of the present invention;
fig. 5 is a schematic structural view of a material receiving device of the automatic conveying jig for gold stamping of the socket panel of the present invention;
fig. 6 is a schematic structural view of a second retaining group and a jacking group of the automatic conveying jig for gold stamping of the socket panel of the present invention;
fig. 7 is the structure schematic diagram of the jacking device and the pushing device of the gilt automatic conveying jig of socket panel of the utility model.
As shown in the attached drawings:
100. a machine platform;
200. a gold stamping device;
300. a transmission channel;
400. a feeding device; 410. a feeding bin; 420. a clamping group; 421. a clamping cylinder; 422. a clamping block; 430. a first gear group; 431. a first gear cylinder; 432. a first baffle plate; 440. a first push group; 441. a first push cylinder; 442. pushing the plate;
500. a material receiving device; 510. a material receiving bin; 520. a second bit retaining group; 521. a second stop cylinder; 522. a second baffle; 530. jacking group; 531. a jacking cylinder; 532. a jacking plate;
600. a jacking device; 610. lifting the cylinder; 620. an upper top plate; 630. a limiting plate;
700. a pushing device; 710. a second push cylinder; 720. a push rod.
Detailed Description
In order to make the above objects, features and advantages of the present invention more comprehensible, embodiments of the present invention are described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. The present invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein, as those skilled in the art will be able to make similar modifications without departing from the spirit and scope of the present invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. In contrast, when an element is referred to as being "directly on" another element, there are no intervening elements present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for descriptive purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1 and 2, an automatic conveying jig for gold stamping of a socket panel includes a machine table 100, and a gold stamping device 200, a transmission channel 300, a feeding device 400, and a receiving device 500 are disposed on the machine table 100, wherein the feeding device 400 is located at one end of the transmission channel 300, the receiving device 500 is located at the other end of the transmission channel 300, the gold stamping device 200 is located above the transmission channel 300, a jacking device 600 is disposed below the transmission channel 300, and the jacking device 600 cooperates with the gold stamping device 200 to gold stamp the socket panel on the transmission channel 300.
In this embodiment, a feeding device 400 and a receiving device 500 are respectively disposed at two ends of the transmission channel 300, wherein a plurality of socket panels for gold stamping are stacked in the feeding device 400, the stacked socket panels are sequentially conveyed into the transmission channel 300 through the feeding device 400 and pushed to the gold stamping device 200, the gold stamping device 200 is combined with the top-loading device 600 to perform gold stamping on the socket panels, so as to improve the gold stamping quality of the socket panels, after the gold stamping of the socket panels is completed, the socket panels are sequentially conveyed to the receiving device 500, the socket panels subjected to gold stamping are sequentially stacked from the bottom through the receiving device 500, and finally, automatic gold stamping and automatic conveying of the socket panels are realized, so as to improve the gold stamping efficiency of the socket panels.
Referring to fig. 3 and 4, in order to realize automatic transmission of the socket panels, the feeding device 400 in this embodiment includes a feeding bin 410, a clamping group 420, a first blocking group 430, and a first pushing group 440, the feeding bin 410 is located at an end of one end of the transmission channel 300, the clamping group 420 and the first blocking group 430 are oppositely disposed on two sides of the feeding bin 410, the clamping group 420 is located above the first blocking group 430, and the first pushing group 440 is located in the transmission channel 300, so as to push the socket panels in the feeding bin 410 into the transmission channel 300.
The clamping group 420 comprises a clamping cylinder 421 and a clamping block 422, the clamping cylinder 421 is connected with the clamping block 422, and drives the clamping block 422 to penetrate through the side wall of the feeding bin 410 to clamp the socket panel in the feeding bin 410; the first gear group 430 comprises a first gear cylinder 431 and a first baffle 432, the first gear cylinder 431 is connected with the first baffle 432, and drives the first baffle 432 to penetrate through the side wall of the feeding bin 410 to block the socket panel in the feeding bin 410; the first pushing group 440 includes a first pushing cylinder 441 and a pushing plate 442, the first pushing cylinder 441 is connected to the pushing plate 442, and drives the pushing plate 442 to sequentially push the socket panels in the feeding bin 410 to the conveying channel 300.
When gilding is performed, a plurality of socket panels to be gilded are stacked in the feeding bin 410, the socket panel at the lowest position is blocked by the first baffle 432, when the socket panels need to be conveyed, the clamping cylinder 421 drives the clamping block 422 to clamp the socket panel at the second position, the first blocking cylinder 431 drives the first baffle 432 to retreat, so that the socket panel at the lowest position falls to the lowest position of the feeding bin 410, at the moment, the first blocking cylinder 431 drives the first baffle 432 to block the socket panel at the upper position, the clamping cylinder 421 drives the clamping block 422 to loosen the socket panel at the upper position, so that the socket panel falls on the first baffle 432 and falls to the socket panel at the lowest position of the feeding bin 410, and the socket panels are pushed into the conveying channel 300 under the driving of the first pushing group 441 and the pushing plate 442, and are circulated, so that automatic feeding of the socket panels is realized, manual operation is reduced, and gilding efficiency is improved.
Referring to fig. 7, after the socket panels are sequentially pushed to the transmission channel 300 and then pushed to the gold stamping device 200, at this time, in order to ensure the gold stamping quality of the socket panels, the gold stamping device 200 needs to be combined with the top plate 600, so the top plate 600 in this embodiment includes a top cylinder 610, a top plate 620 and a limiting plate 630, the limiting plate 630 is disposed on the top surface of the transmission channel 300, the top cylinder 610 is located at the bottom of the transmission channel 300 and connected to the top plate 620, and drives the top plate 620 to jack up the socket panels on the transmission channel 300, and the gold stamping device is the prior art and will not be described herein.
Because of socket panel when production shaping, can have certain thickness difference, and in order to ensure every socket panel's gilt effect, so when socket panel was delivered to gilt device 200 department, upward top cylinder 610 can order about upper plate 620 and upwards jack-up, upper plate 620 then jacks up socket panel here, and carry on spacingly by limiting plate 630 to socket panel jack-up's height, thereby make every socket panel's upper surface height one extremely, after socket panel was jacked up, gilt device 200 then gilts socket panel, thereby make socket panel's gilt of high quality.
Referring to fig. 5 and 6, after the gold stamping of the socket panel is completed, the socket panel is pushed to the receiving device 500 and is sequentially received by the receiving device 500, and in order to achieve automatic receiving, the receiving device 500 in this embodiment includes a receiving bin 510, a second stopping group 520 and a lifting group 530, the receiving bin 510 is located at the end of the other end of the transmission channel 300, the second stopping group 520 is disposed on both sides of the receiving bin 510, the second stopping group 520 on both sides is disposed opposite to each other, and the lifting group 530 is disposed at the bottom of the receiving bin 510.
The second blocking group 520 comprises a second blocking cylinder 521 and a second blocking plate 522, the second blocking cylinder 521 is connected with the second blocking plate 522 and drives the second blocking plate 522 to penetrate through the side wall of the receiving bin 510 to block the socket panel in the receiving bin 510; the jacking group 530 comprises a jacking cylinder 531 and a jacking plate 532, the jacking cylinder 531 is connected with the jacking plate 532, and drives the jacking plate 532 to jack up the socket panel in the material receiving bin 510.
When receiving materials, the socket panel which is finished by gold stamping can be pushed to the bottom of the material receiving bin 510, at the moment, the jacking cylinder 531 can drive the jacking plate 532 to jack upwards, the jacking plate 532 jacks the socket panel at the bottom of the material receiving bin 510 upwards to a set position, the second baffle cylinder 521 drives the second baffle 522 to penetrate through the side wall of the material receiving bin 510, the jacked socket panel is blocked, after blocking, the jacking cylinder 531 drives the jacking plate 532 to descend, next socket panel is jacked, when jacking, the second baffle cylinder 521 drives the second baffle 522 to open, when the jacking plate 532 jacks in place, the second baffle 522 blocks the socket panel again, and circulation is adopted, automatic stacking of the socket panel downwards and upwards is realized, and the gold stamping efficiency of the socket panel is improved.
Of course, in order to make the material receiving process reasonable, after the second baffles 522 on both sides penetrate into the material receiving bin 510, the distance between the second baffles needs to be larger than the width of the lifting plate 532, so as to conveniently make the lifting plate 532 descend to lift the next socket panel.
Referring to fig. 7, in order to make the overall design of the fixture of the present embodiment reasonable, therefore, the transmission channel 300 is a vertical bending structure, so a pushing device 700 needs to be disposed at the bending position, the pushing device 700 includes a second pushing cylinder 710 and a pushing rod 720, the second pushing cylinder 710 is connected with the pushing rod 720, and the pushing rod 720 is driven to push the socket panel at the bending position.
When the socket panel carries out the propelling movement, when being pushed to the department of bending of transmission channel 300, at this moment, second promotion cylinder 710 can drive catch bar 720 and promote the socket panel of bending to change the propelling movement direction of socket panel, make socket panel move towards material collecting device 500 department, finally, make the reasonable in design of tool, and overall layout is convenient.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above. The present invention can be smoothly implemented by those skilled in the art according to the drawings and the above description; however, those skilled in the art should understand that the equivalent embodiments of the present invention are equivalent embodiments of the present invention, and that the changes, modifications and evolutions made by the above-disclosed technical contents are not departed from the technical scope of the present invention; meanwhile, any changes, modifications, evolutions, etc. of equivalent changes made to the above embodiments according to the essential technology of the present invention still belong to the protection scope of the technical solution of the present invention.

Claims (8)

1. The utility model provides a gilt automatic conveying tool of socket panel, includes the board, its characterized in that:
the machine table is provided with a gold stamping device, a transmission channel, a feeding device and a receiving device, wherein the feeding device is located at one end of the transmission channel, the receiving device is located at the other end of the transmission channel, the gold stamping device is located above the transmission channel, an ejecting device is arranged below the transmission channel, and the ejecting device and the gold stamping device are matched to perform gold stamping on a socket panel on the transmission channel.
2. The automatic conveying jig for gold stamping of the socket panel as claimed in claim 1, wherein:
feeding device includes the feeding bin, and centre gripping group, first fender position group and first promotion group, feeding bin are located the tip of transmission channel one end, all are equipped with the relative centre gripping group that sets up in feeding bin's both sides and the relative first fender position group that sets up, and centre gripping group is located the top of first fender position group, and transmission channel is then located to first promotion group, pushes away the socket panel in the feeding bin to transmission channel.
3. The automatic conveying jig for gold stamping of the socket panel as claimed in claim 2, wherein:
the clamping group comprises a clamping cylinder and a clamping block, the clamping cylinder is connected with the clamping block, and the clamping block is driven to penetrate through the side wall of the feeding bin to clamp the socket panel in the feeding bin;
the first gear group comprises a first gear cylinder and a first baffle, the first gear cylinder is connected with the first baffle, and drives the first baffle to penetrate through the side wall of the feeding bin to block a socket panel in the feeding bin;
first promotion group is connected with the push pedal including first promotion cylinder and push pedal to order about the push pedal and push socket panel in with the pay-off storehouse in proper order to transmission channel.
4. The automatic conveying jig for gold stamping of the socket panel as claimed in claim 1, wherein:
the material collecting device comprises a material collecting bin, a second stopping group and a jacking group, wherein the material collecting bin is arranged at the end part of the other end of the transmission channel, the second stopping group is arranged on the two sides of the material collecting bin, the second stopping groups on the two sides are arranged oppositely, and the bottom of the material collecting bin is arranged on the jacking group.
5. The automatic conveying jig for gold stamping of the socket panel as claimed in claim 4, wherein:
the second baffle group comprises a second baffle cylinder and a second baffle, the second baffle cylinder is connected with the second baffle, and drives the second baffle to penetrate through the side wall of the collecting bin to block the socket panel in the collecting bin;
jacking group is connected with the jacking board including jacking cylinder and jacking board to order about the jack-up board and will receive the socket panel jack-up that makes progress in the feed bin.
6. The automatic conveying jig for gold stamping of the socket panel as claimed in claim 5, wherein:
after the second baffles on the two sides penetrate into the material receiving bin, the distance between the second baffles is larger than the width of the jacking plate.
7. The automatic conveying jig for gold stamping of the socket panel as claimed in claim 1, wherein:
the jacking device comprises a jacking cylinder, a jacking plate and a limiting plate, the limiting plate is arranged on the top surface of the transmission channel, the jacking cylinder is located at the bottom of the transmission channel and is connected with the jacking plate, the jacking plate is driven to jack up the socket panel on the transmission channel, and the height of the jack-up of the socket panel is limited by the limiting plate.
8. The automatic conveying jig for gold stamping of the socket panel as claimed in claim 1, wherein:
when the transmission channel is a vertical bending structure, a pushing device is arranged at the bending position and comprises a second pushing cylinder and a pushing rod, the second pushing cylinder is connected with the pushing rod, and the pushing rod is driven to push the socket panel at the bending position.
CN202221955334.0U 2022-07-27 2022-07-27 Gilt automatic conveying tool of socket panel Active CN217778091U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221955334.0U CN217778091U (en) 2022-07-27 2022-07-27 Gilt automatic conveying tool of socket panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221955334.0U CN217778091U (en) 2022-07-27 2022-07-27 Gilt automatic conveying tool of socket panel

Publications (1)

Publication Number Publication Date
CN217778091U true CN217778091U (en) 2022-11-11

Family

ID=83940273

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221955334.0U Active CN217778091U (en) 2022-07-27 2022-07-27 Gilt automatic conveying tool of socket panel

Country Status (1)

Country Link
CN (1) CN217778091U (en)

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