CN212734234U - Drilling and collecting integrated equipment for sheet body - Google Patents

Drilling and collecting integrated equipment for sheet body Download PDF

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Publication number
CN212734234U
CN212734234U CN202022138312.2U CN202022138312U CN212734234U CN 212734234 U CN212734234 U CN 212734234U CN 202022138312 U CN202022138312 U CN 202022138312U CN 212734234 U CN212734234 U CN 212734234U
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drilling
stacking
placing
taking
movable
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CN202022138312.2U
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Chinese (zh)
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谢思燕
叶婷
王龙
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Shijiazhuang Binting Technology Co ltd
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Dongguan Xiangfei Intelligent Equipment Technology Co Ltd
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Abstract

The invention relates to drilling and collecting integrated equipment for sheet bodies, which comprises a lower rack and an upper rack, wherein a square-frame-shaped sheet body conveying groove is arranged on the lower rack, a stacking lifting device is arranged at the tail end of the sheet body conveying groove, a stacking box is arranged on the stacking lifting device, drill bit translation grooves with the same direction as that of the sheet body conveying groove are formed in the front and the rear parts of the sheet body conveying groove, the drill bit translation grooves are communicated with a conveying inner cavity of the sheet body conveying groove, a drilling device is arranged below the upper rack and comprises a drilling movable device arranged on the upper rack, a drilling lifting cylinder is arranged below the drilling movable device, the drilling lifting cylinder is connected with a drilling lifting seat, a drilling motor is arranged on the drilling lifting seat, the drilling motor is connected with a drill bit capable of penetrating into the drill bit translation grooves, and the positions of the drill bits in the; through the design to the drilling structure, realize the drilling structure and drive the accurate feeding of lamellar body, realize the continuous drilling processing of lamellar body, improved machining efficiency.

Description

Drilling and collecting integrated equipment for sheet body
Technical Field
The invention relates to the field of sheet processing equipment, in particular to drilling and collecting integrated equipment for sheets.
Background
The lamellar body is a part commonly used, especially the little lamellar body of cutting out on a big metal lamellar body, mainly be used for electronic component, need carry out subsequent operation of bending, in order to raise the efficiency, can choose for use direct and metal lamellar body complex equipment of bending, the bending of all lamellar bodies on the disposable completion metal sheet, need carry the metal sheet, the hole site that is used for carrying is generally beaten on the metal sheet, current metal sheet all is that manual mode punches to the drilling equipment, and the line location is drawn a lot of, machining efficiency is low.
Disclosure of Invention
The invention aims to provide drilling and collecting integrated equipment for sheet bodies, which is characterized in that through the design of a drilling structure, the drilling structure drives the sheet bodies to be accurately fed, the continuous drilling processing of the sheet bodies is realized, the marking and positioning procedures are reduced, and the processing efficiency is improved.
In order to achieve the above purpose, the invention adopts the technical scheme that: a drilling and collecting integrated device for sheet bodies comprises a lower frame and an upper frame, wherein the lower frame is provided with a square sheet body conveying groove, the tail end of the sheet conveying groove is provided with a stacking lifting device, a stacking box is arranged on the stacking lifting device, the front and the rear parts of the sheet conveying groove are provided with drill bit translation grooves with the same direction as the sheet conveying groove, the drill bit translation groove is communicated with the conveying inner cavity of the sheet conveying groove, a drilling device is arranged below the upper frame, the drilling device comprises a drilling movable device arranged on the upper frame, a drilling lifting cylinder is arranged below the drilling movable device, the drilling lifting cylinder is connected with a drilling lifting seat, a drilling motor is arranged on the drilling lifting seat, the drilling motor is connected with a drill bit capable of penetrating into the drill bit translation grooves, and the positions of the drill bits in the drill bit translation grooves of the front part and the rear part are consistent.
Preferably, the drilling movable device comprises a drilling movable screw rod and a drilling movable motor which are arranged below the upper frame and matched with each other, the drilling movable screw rod is sleeved with a drilling movable seat, three drilling movable slide rods which are distributed in a triangular mode and move vertically are arranged above the drilling movable seat, the upper end of each drilling movable slide rod is in a step shape with a large upper end and a small lower end, and a drilling movable slide rail matched with the drilling movable slide rods is arranged on the upper frame.
Preferably, two drill bits are matched in the drill bit translation grooves at the front and rear parts, four drill bit insertion holes in sleeve fit with the drill bits are uniformly formed in the bottoms of the drill bit translation grooves at the front and rear parts, and the distance between the adjacent drill bit insertion holes is consistent with the distance between the adjacent drill bits; and the lower frame is also provided with a scrap collecting box matched with the drill bit inserting hole.
Preferably, the stacking box comprises a box body matched with the stacking lifting device, the box body is uniformly provided with stacking supporting blocks on the front inner wall and the rear inner wall, an intercepting block is vertically inserted into the position, far away from the sheet conveying groove, of the box body, the distance from the end face, close to the sheet conveying groove, of the box body to the intercepting block is consistent with the length of the sheet body, a box body taking and placing device is arranged below the upper frame, and a box body conveying device matched with the box body taking and placing device is arranged on the lower frame.
Preferably, stack elevating gear stack the lift cylinder including setting up two in the frame down, the cylinder push rod of stacking the lift cylinder be connected with the box lower part cup joint the complex lift frame of stacking, and stack lift frame and box and be interference fit, the bottom plate center of stacking the lift frame seted up and piled the liftout groove.
Preferably, the lower rack on be provided with through the support and stack ejecting piece, and stack ejecting piece and be located two and stack between the lift cylinder, stack ejecting piece on the embedding have and stack ejecting gyro wheel, stack ejecting piece can pass and stack ejecting groove, the lower rack on still be provided with the ejection of compact propelling movement piece that can push out the stacking box that stacks ejecting gyro wheel, ejection of compact propelling movement piece be connected with power part.
Preferably, box conveyor's end be provided with the baffle, the box get put the device including setting up in last frame below get put the movable cylinder, get to put the movable cylinder and be connected with and get the movable block, get to put movable block below and be provided with and get and put the lift cylinder, get to put lift cylinder below and be provided with and get and put the lift block, get to be provided with on the lift block and get and put the motor, get to put the motor and be connected with vertical decurrent getting and put the screw rod, the box on set up and get and put the screw with getting to put screw rod screw-thread fit.
Preferably, the upper frame is further provided with a left limiting block and a right limiting block which are matched with the left side and the right side of the movable block respectively, the left limiting block is an L-shaped block, the right end of the horizontal part is an inclined plane which inclines downwards, and the distance from the horizontal part to the lower side surface of the upper frame is consistent with the thickness of the movable block.
Preferably, one side of the intercepting block, which is close to the feeding end of the box body, is embedded with a contact sensor, the number of the contact sensors is consistent with the number of layers of the box body, which are used for loading the sheet bodies, the positions of the contact sensors correspond to the sheet bodies after being boxed one by one, the upper part of the intercepting block is provided with an electric contact piece, the contact sensors are communicated with the electric contact piece through wires, and the box body taking and placing device is provided with an electric connection structure which is electrically communicated with the electric contact piece.
Preferably, connect the electric structure including setting up the right angle shape on getting to put the lifting block and connect the electricity frame, the below of connecing the electricity frame be provided with and connect the electric cover, connect the electric cover in connect the electric spring cup joint and connect the electric post, the electric post with connect electric contact electric connection, the electric post pass through the wire and be connected to the distribution structure.
Drawings
FIG. 1 is a schematic structural view of a drilling and collecting integrated device for sheet bodies;
FIG. 2 is a schematic structural view of a drilling device and a sheet conveying trough;
FIG. 3 is a partial enlarged view of B in FIG. 2;
FIG. 4 is a schematic view of the stacking box;
FIG. 5 is a schematic structural view of the stacking elevating device;
FIG. 6 is a schematic structural view of a box pick-and-place device;
fig. 7 is a partial enlarged view of a in fig. 6.
The text labels shown in the figures are represented as: 1. a lower frame; 2. an upper frame; 3. a sheet conveying trough; 4. stacking a lifting device; 5. a box body taking and placing device; 6. a box body conveying device; 7. stacking boxes; 8. a sheet body; 9. a drilling device; 10. a scrap collecting box; 11. a box body; 12. stacking the supporting blocks; 13. taking and placing screw holes; 14. an intercepting block; 15. a contact sensor; 16. connecting a contact piece; 21. a stacking lifting cylinder; 22. stacking the lifting frame; 23. stacking the top out of the groove; 24. stacking the ejection blocks; 25. stacking the ejection rollers; 26. a discharging pushing block; 31. taking and placing the movable cylinder; 33. Taking and placing the movable block; 34. taking and placing the movable slide rail; 35. a right stopper; 36. a left limiting block; 37. taking and placing a lifting cylinder; 38. taking and placing the lifting block; 39. a pick-and-place motor; 40. taking and placing a screw rod; 41. a power receiving frame; 42. connecting a power sleeve; 43. connecting a power spring; 44. connecting a power post; 51. drilling a movable screw rod; 52. a drilling movable motor; 53. drilling a movable seat; 54. drilling a movable slide bar; 55. drilling a movable sliding rail; 56. a drilling lifting cylinder; 57. a drilling lifting seat; 58. a drilling motor; 59. a drill bit; 60. a drill bit translation slot; 61. the drill bit is inserted into the hole.
Detailed Description
The following detailed description of the present invention is given for the purpose of better understanding technical solutions of the present invention by those skilled in the art, and the present description is only exemplary and explanatory and should not be construed as limiting the scope of the present invention in any way.
As shown in fig. 1 to 3, the specific structure of the present invention is: the utility model provides an integrated equipment is collected in drilling of lamellar body, includes lower frame 1 and upper frame 2, lower frame 1 on be provided with square frame shape lamellar body conveyer trough 3, the end of lamellar body conveyer trough 3 be provided with and stack elevating gear 4, stack elevating gear 4 on be provided with and stack case 7, lamellar body conveyer trough 3 the front and back portion seted up the drill bit translation groove 60 that moves towards the unanimity with lamellar body conveyer trough 3, and drill bit translation groove 60 communicates with the transport inner chamber of lamellar body conveyer trough 3, upper frame 2 below be provided with drilling equipment 9, drilling equipment 9 including set up the drilling head movable device on upper frame 2, drilling head movable device below be provided with drilling lift cylinder 56, drilling lift cylinder 56 be connected with drilling lift seat 57, drilling lift seat 57 on be provided with drilling motor 58, drilling motor 58 be connected with drill bit 59 that can penetrate drill bit translation groove 60, and the positions of the bits 59 in the bit translation slots 60 of the front and rear portions coincide.
During the specific operation, the sheet body 8 is put into the sheet body conveying groove 3, then the drill bit is driven to move to the position above the sheet body 8 through the drilling movable device, then the drill bit 59 is driven to rotate through the drilling motor 58, then the drilling lifting seat 57 is driven to descend through the drilling lifting cylinder 56, the rotating drill bit enters the drill bit translation groove 60 and contacts the sheet body 8, the drilling of the sheet body 8 is completed along with the continuous descending, then the rotation of the drilling motor is stopped, the drilling lifting cylinder is driven to move through the drilling movable device, and then the drill bit is driven to move, the drill bit can drive the sheet body 8 to move, then the drill bit is lifted to be separated from the sheet body, and then the drill bit returns to the original position, the operation is repeated, the continuous drilling of the sheet body is realized, meanwhile, the conveying of the sheet body can also be realized, the distance between adjacent hole sites can be determined through the movable, the processing efficiency is greatly improved.
As shown in fig. 2, the drilling movable device includes a drilling movable screw 51 and a drilling movable motor 52 which are arranged below the upper frame 2 and are matched with each other, the drilling movable screw 51 is sleeved with a drilling movable seat 53, three drilling movable slide bars 54 which are distributed in a triangular shape and move vertically are arranged above the drilling movable seat 53, the upper ends of the drilling movable slide bars 54 are in a step shape with a large upper part and a small lower part, and a drilling movable slide rail 55 matched with the drilling movable slide bars 54 is arranged on the upper frame 2.
The drilling movable device drives the drilling screw rod to rotate through the drilling motor, and then drilling of the drilling movable seat 53 is realized, and in the moving process, the moving distance can be controlled through the rotating turns of the drilling motor, the triangular drilling movable slide rod 54 is arranged at the same time, the upper end of the drilling movable slide rod 54 is arranged to be in a ladder shape, so that after the drilling movable slide rod is matched with the drilling movable slide rail 55, an accurate moving track can be ensured, and meanwhile, the drilling movable seat 53 can be ensured to be kept horizontal.
As shown in fig. 3, two drill bits 59 are respectively matched in the drill bit translation grooves 60 at the front and rear parts, four drill bit insertion holes 61 which are in sleeve fit with the drill bits are uniformly formed at the bottoms of the drill bit translation grooves 60 at the front and rear parts, and the distance between the adjacent drill bit insertion holes 61 is consistent with the distance between the adjacent drill bits 59; the lower frame 1 is also provided with a scrap collecting box 10 matched with the drill bit inserting hole 61.
When drilling, the drill bit can insert in drill bit patchhole 61, so can ensure complete drilling, when driving the slice body and removing, the drill bit is in drill bit translation groove 60, after accomplishing the removal, can make the drill bit reinsert in back drill bit patchhole 61, if can insert, prove that the lead screw drives the range of drill bit bulk movement and is accurate, otherwise, if can not insert, then prove that the lead screw drives the range of drill bit bulk movement not accurate, need shut down the adjustment.
As shown in fig. 4, the stacking box 7 includes a box body 11 matched with the stacking lifting device 4, stacking support blocks 12 are uniformly arranged on the front and rear inner walls of the box body 11, a blocking block 14 is vertically inserted into a position of the box body 11 far away from the sheet conveying groove 3, the distance between the end surface of the box body 11 close to the sheet conveying groove 3 and the blocking block 14 is consistent with the length of the sheet body 8, a box body taking and placing device 5 is arranged below the upper frame 2, and a box body conveying device 6 matched with the box body taking and placing device 5 is arranged on the lower frame 1.
The stacking box 7 is firstly placed on the box body conveying device 6 and conveyed to the tail end by the box body conveying device 6, and then is taken and placed on the stacking lifting device 4 by the box body taking and placing device 5, then the position of the butt joint of the uppermost layer stacking supporting block 12 and the sheet body conveying groove 3 is adjusted through the stacking lifting device 4, then the drilling and conveying operation of the sheet bodies is carried out, the sheet bodies can enter the stacking box 7 and are supported by the stacking supporting block 12, along with the drilling conveying, the sheet bodies can be intercepted by the intercepting block 14, at the moment, the sheet bodies just completely enter the stacking box 7, then the stacking lifting cylinder drives the stacking box to descend, so that the stacking supporting block 12 at the next layer is butted with the sheet conveying groove 3, the subsequent sheet boxing operation is carried out, thus realizing automatic boxing, and through the design of the interception block, the situation that the subsequent sheet bodies enter the same layer stacking supporting block in the boxing process can be avoided.
As shown in fig. 5, the stacking lifting device 4 includes two stacking lifting cylinders 21 disposed on the lower frame 1, a cylinder push rod of the stacking lifting cylinder 21 is connected with a stacking lifting frame 22 in fit with the lower portion of the box 11, the stacking lifting frame 22 and the box 11 are in interference fit, and a stacking ejection slot 23 is disposed at the center of a bottom plate of the stacking lifting frame 22.
The specific operation of stacking lifting device 4 is to drive stacking lifting frame 22 to ascend through stacking lifting cylinder 21, and then make the lower part of stacking lifting frame 22 and box 11 cup joint, and under the effect of box taking and placing device, can ensure that box 11 can embolia stacking lifting frame 22 in, after accomplishing the vanning of stacking box 7, push up ejecting groove 23 through ejecting part with box 11 top from stacking lifting frame 22, later will stack box 7 and wholly take away, can enough conveniently stack getting of box 7 and put, can ensure again at the lift in-process simultaneously, stack box 7 and the inseparable cooperation of cup jointing of stacking lifting frame 22.
As shown in fig. 5, the lower frame 1 is provided with stacking ejection blocks 24 through a support, the stacking ejection blocks 24 are located between the two stacking lifting cylinders 21, stacking ejection rollers 25 are embedded in the stacking ejection blocks 24, the stacking ejection blocks 24 can penetrate through the stacking ejection slots 23, the lower frame 1 is further provided with discharge pushing blocks 26 capable of pushing out the stacking boxes 7 stacked on the stacking ejection rollers 25, and the discharge pushing blocks 26 are connected with a power component.
After stacking the case 7 and being full of lamellar body 8, along with stacking the drop frame 22 and descend, at the in-process that descends, it can penetrate to stack ejecting piece 24 and stack ejecting groove 23 in, and then can make and stack the bottom that ejecting gyro wheel contacted box 11, along with stacking the continuous decline of drop frame 22, box 11 can be by ejecting stacking drop frame 22 completely, later rethread power part drives ejection of compact propelling movement piece 26 and will stack the whole release of box 11, at the in-process of concrete operation, can be equipped with special blown down tank, make and stack case 7 and directly be pushed in the conveyer trough, also can not produce the interference with stacking drop frame 22 simultaneously.
As shown in fig. 6, the end of the box conveying device 6 is provided with a baffle, the box taking and placing device 5 comprises a taking and placing movable cylinder 31 arranged below the upper frame 2, the taking and placing movable cylinder 31 is connected with a taking and placing movable block 33, a taking and placing lifting cylinder 37 is arranged below the taking and placing movable block 33, a taking and placing lifting block 38 is arranged below the taking and placing lifting cylinder 37, a taking and placing motor 39 is arranged on the taking and placing lifting block 38, the taking and placing motor 39 is connected with a vertical downward taking and placing screw rod 40, and a taking and placing screw hole 13 in threaded fit with the taking and placing screw rod 40 is formed in the box 11.
The specific operation of picking and placing the box body is as follows, firstly, the picking and placing movable block 33 is driven by the picking and placing movable cylinder 31 to move to the position matched with the tail end of the box body conveying device 6, then the picking and placing lifting block 38 is driven by the picking and placing lifting cylinder 37 to move, the picking and placing screw 40 is contacted with the picking and placing screw hole 13 and blocked, then the picking and placing screw 40 is driven by the picking and placing motor 39 to rotate, along with the descending of the picking and placing lifting block 38, the picking and placing screw 40 is inserted into the picking and placing screw hole 13 in a threaded sleeve manner until the picking and placing lifting block 38 is contacted with the upper part of the box body 11, thus completing the clamping of the stacking box 7, then the rotation of the picking and placing motor 39 is stopped, the stacking box 7 is placed on the stacking lifting device 4 through the matching of the picking and placing movable cylinder 31 and the picking and placing lifting cylinder, ensuring smooth feeding of the tablets.
As shown in fig. 6, the upper frame 2 is further provided with a movable sliding rail 34 for taking and placing, which is matched with the movable block 33 for taking and placing, and the upper frame 2 is further provided with a left limiting block 36 and a right limiting block 35, which are matched with the left side and the right side of the movable block 33 for taking and placing respectively, the left limiting block 36 is an L-shaped block, the right end of the horizontal part is an inclined plane which is inclined downwards, and the distance from the horizontal part to the lower side surface of the upper frame 2 is consistent with the thickness of the movable block 33 for taking and placing.
The movable track 34 can ensure that the movable track of the movable block 33 is not changed, the left limiting block 36 and the right limiting block 35 can ensure that the box body taking and placing device is in butt joint with the box body conveying device and the position where the lifting device is stacked accurately, the shape design of the left limiting block 36 can ensure that the movable block 33 is kept horizontal when being matched with the stacked lifting device 4, and further the accurate butt joint of the stacked box 7 and the sheet body can be ensured.
As shown in fig. 4 and 7, contact sensors 15 are embedded in one side of the intercepting block 14 close to the feeding end of the box body 11, the number of the contact sensors 15 is the same as the number of layers of the box body 11 used for loading the sheet bodies 8, the positions of the contact sensors 15 correspond to the boxed sheet bodies 8 one by one, an electric contact piece 16 is arranged on the upper portion of the intercepting block 14, the contact sensors 15 are all communicated with the electric contact piece 16 through wires, and an electric connection structure electrically communicated with the electric contact piece 16 is arranged on the box body pick-and-place device 5.
When the stacking box 7 is placed on the stacking lifting device 4 through the box taking and placing device 5, the power connection structure on the box taking and placing device 5 is communicated with the power connection contact piece 16, so that the power on of the contact inductor 15 can be ensured, a contact induction signal can be generated and transmitted, when the sheet body 8 enters the stacking supporting block, the sheet body can be contacted with the power connection contact piece 16 and generate an induction signal along with the continuous sheet body conveying, so that the sheet body completely enters the stacking box 7, and further the subsequent lifting operation of the stacking box 7 can be carried out through the feedback of the signal (the lifting of the stacking lifting device can be realized by the way of illuminating a signal lamp and carrying out an artificial button, the signal can also be transmitted to a computer, and then the lifting of the stacking lifting device can be realized in a computer control way), so that the sheet body 8 can completely enter the stacking box 7, avoid adjacent lamellar body to produce with the lift of stacking the case and interfere.
As shown in fig. 7, the power connection structure includes a right-angle power connection frame 41 disposed on the pick-and-place lifting block 38, a power connection sleeve 42 is disposed below the power connection frame 41, a power connection post 44 is sleeved in the power connection sleeve 42 through a power connection spring 43, the power connection post 44 is electrically connected to the power connection contact 16, and the power connection post 44 is connected to the power distribution structure through a wire.
The specific operation of the power connection structure is as follows, as the pick-and-place lifting block descends, the power connection post 44 contacts and is electrically connected with the power connection contact 16, then the pick-and-place lifting block still descends for a certain distance, the power connection spring 43 at the moment is compressed, and the power connection post 44 is tightly pressed on the power connection contact 16, so that the good power connection performance can be ensured, and meanwhile, the integral pick-and-place of the stacking box 7 cannot be influenced.
When the intelligent control device is used specifically, a control system can be equipped for controlling the cooperative work of all the power parts, and the integral operation can be realized through the control buttons of all the power parts.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
The principle and embodiments of the present invention have been described herein by way of specific examples, which are provided only to help understand the method and the core idea of the present invention, and the above is only a preferred embodiment of the present invention, and it should be noted that there are objectively infinite specific structures due to the limited character expressions, and it will be apparent to those skilled in the art that a plurality of modifications, decorations or changes can be made without departing from the principle of the present invention, and the above technical features can also be combined in a suitable manner; such modifications, variations, combinations, or adaptations of the invention using its spirit and scope, as defined by the claims, may be directed to other uses and embodiments.

Claims (10)

1. A drilling and collecting integrated device for sheet bodies comprises a lower rack (1) and an upper rack (2), and is characterized in that a square-frame-shaped sheet body conveying groove (3) is formed in the lower rack (1), a stacking lifting device (4) is arranged at the tail end of the sheet body conveying groove (3), a stacking box (7) is arranged on the stacking lifting device (4), drill bit translation grooves (60) with the same direction as that of the sheet body conveying groove (3) are formed in the front and back parts of the sheet body conveying groove (3), the drill bit translation grooves (60) are communicated with a conveying inner cavity of the sheet body conveying groove (3), a drilling device (9) is arranged below the upper rack (2), the drilling device (9) comprises a drilling movable device arranged on the upper rack (2), and a drilling lifting cylinder (56) is arranged below the drilling movable device, drilling lift cylinder (56) be connected with drilling lift seat (57), drilling lift seat (57) on be provided with drilling motor (58), drilling motor (58) be connected with drill bit (59) that can penetrate into in drill bit translation groove (60), and drill bit (59) position in the drill bit translation groove (60) of front and back portion is unanimous.
2. The integrated drilling and collecting device for the sheet body according to claim 1, wherein the drilling movable device comprises a drilling movable screw rod (51) and a drilling movable motor (52) which are arranged below the upper frame (2) and matched with each other, the drilling movable screw rod (51) is sleeved with a drilling movable seat (53), three drilling movable sliding rods (54) which are distributed in a triangular shape and move vertically are arranged above the drilling movable seat (53), the upper ends of the drilling movable sliding rods (54) are in a step shape with a large upper part and a small lower part, and a drilling movable sliding rail (55) matched with the drilling movable sliding rods (54) is arranged on the upper frame (2).
3. The integrated drilling and collecting device for the sheet bodies as claimed in claim 2, wherein two drill bits (59) are respectively matched in the drill bit translation grooves (60) at the front and rear parts, four drill bit insertion holes (61) which are matched with the drill bits in a sleeved mode are uniformly formed in the bottoms of the drill bit translation grooves (60) at the front and rear parts, and the distance between the adjacent drill bit insertion holes (61) is consistent with the distance between the adjacent drill bits (59); the lower frame (1) is also provided with a scrap collecting box (10) matched with the drill bit inserting hole (61).
4. The integrated drilling and collecting device for sheet bodies according to claim 1, wherein the stacking box (7) comprises a box body (11) matched with the stacking lifting device (4), stacking support blocks (12) are uniformly arranged on the front inner wall and the rear inner wall of the box body (11), a blocking block (14) is vertically inserted into a position, away from the sheet body conveying groove (3), of the box body (11), the distance from the end face, close to the sheet body conveying groove (3), of the box body (11) to the blocking block (14) is consistent with the length of the sheet body (8), a box body taking and placing device (5) is arranged below the upper frame (2), and a box body conveying device (6) matched with the box body taking and placing device (5) is arranged on the lower frame (1).
5. The integrated equipment is collected in drilling of lamellar body according to claim 4, characterized in that, stack elevating gear (4) including set up two on lower frame (1) and stack lift cylinder (21), the cylinder push rod of stacking lift cylinder (21) be connected with box (11) lower part cup joint the complex lift frame (22) of stacking, and stack lift frame (22) and box (11) be interference fit, the bottom plate center of stacking lift frame (22) seted up and piled up ejecting groove (23).
6. The integrated drilling and collecting device for sheet bodies according to claim 5, wherein the lower frame (1) is provided with stacking ejection blocks (24) through a support, the stacking ejection blocks (24) are located between the two stacking lifting cylinders (21), stacking ejection rollers (25) are embedded into the stacking ejection blocks (24), the stacking ejection blocks (24) can penetrate through the stacking ejection grooves (23), the lower frame (1) is further provided with discharging pushing blocks (26) capable of pushing out stacking boxes (7) stacked on the stacking ejection rollers (25), and the discharging pushing blocks (26) are connected with a power component.
7. The integrated drilling and collecting device for sheet bodies according to claim 4, wherein a baffle is arranged at the tail end of the box conveying device (6), the box taking and placing device (5) comprises a taking and placing movable cylinder (31) arranged below the upper frame (2), the taking and placing movable cylinder (31) is connected with a taking and placing movable block (33), a taking and placing lifting cylinder (37) is arranged below the taking and placing movable block (33), a taking and placing lifting block (38) is arranged below the taking and placing lifting cylinder (37), a taking and placing motor (39) is arranged on the taking and placing lifting block (38), the taking and placing motor (39) is connected with a vertically downward taking and placing screw rod (40), and a taking and placing screw hole (13) matched with the taking and placing screw rod (40) in a threaded manner is formed in the box body (11).
8. The integrated drilling and collecting device for sheet bodies according to claim 7, wherein the upper frame (2) is further provided with a movable slide rail (34) for taking and placing, which is matched with the movable block (33) for taking and placing, the upper frame (2) is further provided with a left limiting block (36) and a right limiting block (35), which are matched with the left side and the right side of the movable block (33) for taking and placing respectively, the left limiting block (36) is an L-shaped block, the right end of the horizontal part is an inclined plane which is inclined downwards, and the distance from the horizontal part to the lower side of the upper frame (2) is consistent with the thickness of the movable block (33) for taking and placing.
9. The integrated drilling and collecting device for sheet bodies according to claim 7, wherein contact sensors (15) are embedded in one side, close to the feeding end of the box body (11), of the intercepting block (14), the number of the contact sensors (15) is the same as the number of layers, used for loading the sheet bodies (8), of the box body (11), the positions of the contact sensors (15) correspond to the sheet bodies (8) after boxing in a one-to-one mode, the upper portion of the intercepting block (14) is provided with electric contact pieces (16), the contact sensors (15) are communicated with the electric contact pieces (16) through conducting wires, and an electric connection structure electrically communicated with the electric contact pieces (16) is arranged on the box body taking and placing device (5).
10. The integrated drilling and collecting device for sheet bodies according to claim 9, wherein the electricity connecting structure comprises a right-angle electricity connecting frame (41) arranged on the taking and placing lifting block (38), an electricity connecting sleeve (42) is arranged below the electricity connecting frame (41), an electricity connecting column (44) is sleeved in the electricity connecting sleeve (42) through an electricity connecting spring (43), the electricity connecting column (44) is electrically connected with the electricity connecting contact piece (16), and the electricity connecting column (44) is connected to the power distribution structure through a conducting wire.
CN202022138312.2U 2020-09-26 2020-09-26 Drilling and collecting integrated equipment for sheet body Active CN212734234U (en)

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Application Number Priority Date Filing Date Title
CN202022138312.2U CN212734234U (en) 2020-09-26 2020-09-26 Drilling and collecting integrated equipment for sheet body

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Application Number Priority Date Filing Date Title
CN202022138312.2U CN212734234U (en) 2020-09-26 2020-09-26 Drilling and collecting integrated equipment for sheet body

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113752394A (en) * 2021-08-30 2021-12-07 郑凯莉 Optical lens with drilling processing function

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113752394A (en) * 2021-08-30 2021-12-07 郑凯莉 Optical lens with drilling processing function
CN113752394B (en) * 2021-08-30 2024-02-20 重庆镜辰美科技有限公司 Optical lens with drilling processing function

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