CN215589946U - Printed circuit board pad pasting pile production line - Google Patents
Printed circuit board pad pasting pile production line Download PDFInfo
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- CN215589946U CN215589946U CN202122305179.XU CN202122305179U CN215589946U CN 215589946 U CN215589946 U CN 215589946U CN 202122305179 U CN202122305179 U CN 202122305179U CN 215589946 U CN215589946 U CN 215589946U
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- film
- printed circuit
- circuit board
- frame
- cutting
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Abstract
The utility model provides a printed circuit board pad pasting pile production line, which comprises a pad pasting cutting device and a stacking device, wherein the pad pasting cutting device comprises a pad pasting frame (15), a film roll (16) and a cutting assembly, four synchronous transmission carrier rollers (17) are arranged on the pad pasting frame (15) from front to back, a compression roller (18) is arranged above the corresponding carrier roller (17), and the stacking device comprises a blanking guide groove (30), a material returning plate (31), a material returning plate driving cylinder (32), a material receiving frame (33) and a pile supporting plate (34), and has the advantages that: after the films are attached and cut, the air pipes blow up the films on the two sides, so that a carrier roller at the rear end is matched with a compression roller to wrap the side edges of the printed circuit board by the films; the printed circuit board after the film is cut is automatically stacked through the stacking device, and the labor intensity of workers is reduced.
Description
Technical Field
The utility model relates to the technical field of printed circuit board production, in particular to a film pasting and stacking production line for a printed circuit board.
Background
At present, printed circuit board is as the providing of electronic components electrical connection, and is used extensively, and printed circuit board need carry out the pad pasting after the piecemeal and deposit, tears the film again in the use, and current pad pasting is simple to cover the film on the circuit board, and the film can not wrap up the circuit board all around, leads to the film to drop easily, and the circuit board behind the pad pasting needs the staff to collect the pile-up, and working strength is great.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to provide a film-pasting and stacking production line for printed circuit boards.
The film laminating and cutting device comprises a film laminating and cutting device and a stacking device, wherein the film laminating and cutting device comprises a film laminating rack, a film winding roller and a cutting assembly, four carrier rollers which are synchronously driven are arranged on the film laminating rack from front to back, a pressing roller is arranged above the corresponding carrier roller, a driving motor for driving the carrier rollers to rotate is arranged on one side of the film laminating rack, the film winding roller is arranged below the feeding end of the film laminating rack, a pair of deviation rectifying rollers are arranged on the film laminating rack between the film winding roller and the carrier rollers, an annular groove for a printed circuit board to pass through is formed in the carrier roller at the rearmost end, and a group of air pipes with upward openings are arranged on the front side of the carrier roller at the rearmost end; the cutting assembly comprises a cutting table, a cutting blade and a cutting blade driving cylinder, the cutting table is arranged on the film pasting rack between the two carrier rollers in the middle, and the cutting blade driving cylinder is arranged on the cutting table and drives the cutting blade to move up and down for cutting;
the stacking device comprises a discharging guide groove, a material returning plate driving cylinder, a material receiving frame and a stacking support plate, wherein the discharging end of the film pasting frame is installed at the discharging end of the material receiving frame through a support frame, the discharging end of the discharging guide groove is installed at the discharging end of the material returning plate, a slot is formed in the bottom of the discharging end of the discharging guide groove, the material returning plate is movably inserted into the slot, the material returning plate driving cylinder is installed at the bottom of the discharging guide groove and drives the material returning plate to move back and forth, one end of the stacking support plate is movably installed in the material receiving frame through a connecting plate, a vertical rack is arranged on one side of the connecting plate, a ratchet wheel matched with the vertical rack for use is arranged on the material receiving frame, and a pawl for driving the ratchet wheel to rotate is arranged on a piston rod of the material returning plate driving cylinder.
The two ends of the pressing roller are adjustably mounted on the film pasting rack through lifting components respectively, each lifting component comprises a sliding seat and an adjusting screw rod, sliding grooves are formed in the two sides of the film pasting rack respectively, the adjusting screw rods are mounted at the tops of the sliding grooves, and the sliding seats are driven to move up and down in the sliding grooves.
Two sides of the connecting plate are respectively movably connected with the material receiving frame through linear guide rails.
The width of the material returning plate is smaller than the width of the top opening of the material receiving frame, and notches are formed in one sides of the material receiving frame and one side of the stacking support plate.
The utility model has the advantages that: after the films are attached and cut, the air pipes blow up the films on the two sides, so that a carrier roller at the rear end is matched with a compression roller to wrap the side edges of the printed circuit board by the films; the printed circuit board after the film is cut is automatically stacked through the stacking device, and the labor intensity of workers is reduced.
Description of the drawings
FIG. 1 is a schematic diagram of the present invention.
Fig. 2 is a schematic view of the internal structure of the present invention.
FIG. 3 is a schematic structural diagram of a stacking apparatus according to the present invention.
Detailed Description
As shown in the attached drawings, the film laminating and cutting device comprises a film laminating and cutting device and a stacking device, wherein the film laminating and cutting device comprises a film laminating rack 15, a film winding roller 16 and a cutting assembly, four carrier rollers 17 which are synchronously driven are arranged on the film laminating rack 15 from front to back, a pressing roller 18 is arranged above the corresponding carrier roller 17, a driving motor for driving the carrier rollers 17 to rotate is arranged on one side of the film laminating rack 15, the film winding roller 16 is arranged below the feeding end of the film laminating rack 15, a pair of deviation rectifying rollers 20 is arranged on the film laminating rack 15 between the film winding roller 16 and the carrier rollers 17, an annular groove for a printed circuit board to pass through is formed in the carrier roller 17 at the rearmost end, and a group of air pipes 22 with upward openings are arranged on the front side of the carrier roller 17 at the rearmost end; the cutting assembly comprises a cutting table 25, a cutting blade 26 and a cutting blade driving cylinder 27, the cutting table 25 is mounted on the film sticking machine frame 15 between the two middle carrier rollers 17, and the cutting blade driving cylinder 27 is mounted on the cutting table 25 and drives the cutting blade 26 to move up and down for cutting;
the stacking device comprises a discharging guide groove 30, a material returning plate 31, a material returning plate driving cylinder 32, a material receiving frame 33 and a stacking support plate 34, wherein the discharging guide groove 30 is installed at the discharging end of the film sticking rack 15 through a support frame, the material receiving frame 33 is installed at the discharging end of the discharging guide groove 30, a slot is formed in the bottom of the discharging end of the discharging guide groove 30, the material returning plate 31 is movably inserted into the slot, the material returning plate driving cylinder 32 is installed at the bottom of the discharging guide groove 30 and drives the material returning plate 31 to move back and forth, one end of the stacking support plate 34 is movably installed in the material receiving frame 33 through a connecting plate 35, a vertical rack is arranged on one side of the connecting plate 35, a ratchet wheel 37 matched with the vertical rack for use is arranged on the material receiving frame 33, and a pawl 38 for driving the ratchet wheel 37 to rotate is arranged on a piston rod of the material returning plate driving cylinder 32.
The two ends of the pressing roller 18 are respectively adjustably mounted on the film pasting rack 15 through a lifting assembly, the lifting assembly comprises a sliding seat 42 and an adjusting screw rod 43, sliding grooves are respectively formed in the two sides of the film pasting rack 15, and the adjusting screw rod 43 is mounted at the tops of the sliding grooves and drives the sliding seat 42 to move up and down in the sliding grooves.
Two sides of the connecting plate 35 are movably connected with the material receiving frame 33 through linear guide rails respectively.
The width of the stripper plate 31 is smaller than the width of the top opening of the receiving frame 33, and one side of the receiving frame 33 and one side of the stacking support plate 34 are both provided with notches 45.
The working mode is as follows: printed circuit board and film pass through between the bearing roller 17 and the pinch roller 18 of feed end together, it makes film and printed circuit board bonding together to be compressed tightly by pinch roller 18 in the process of passing through, when printed circuit board was through cutting assembly, cutting blade 26 cut off the film that two adjacent printed circuit boards are connected, printed circuit board after cutting is in the time of passing through tuber pipe 22, tuber pipe 22 upwards blows the film all around of printed circuit board, the roller face between the bearing roller 17 of rearmost end and the pinch roller 18 is laminated mutually, when printed circuit board passed through in the annular groove of bearing roller 17 of rearmost end, the width of annular groove is less than the width of film, the film is inwards folded by oneself and is wrapped up the both sides of printed circuit board. The stripper plate 31 extends out of the opening at the top of the material receiving frame 33 under the default condition, the output printed circuit board enters the stripper plate 31 through the blanking guide groove 30, when the printed circuit board completely falls on the stripper plate 31, the stripper plate 31 retracts into the blanking guide groove 30, the printed circuit board falls on the stacking support plate 34, each time the stripper plate driving cylinder 32 extends and retracts, the stacking support plate 34 moves downwards for a certain distance, the next printed circuit board is sequentially stacked on the stacking support plate 34, when the stacking support plate 34 moves to the lowest part, a worker takes away the stacked printed circuit board, then the stacking support plate 34 is pushed upwards to the initial position, and the next batch of printed circuit boards are stacked.
Two ends of the pressing roller 18 are respectively and adjustably mounted on the film pasting rack 15 through lifting components, so that the distance between the pressing roller 18 and the carrier roller 17 can be conveniently adjusted.
Two sides of the connecting plate 35 are movably connected with the material receiving frame 33 through linear guide rails respectively, so that the stacking support plate 34 keeps stable when moving up and down.
The width of the stripper plate 31 is smaller than the width of the top opening of the receiving frame 33, one side of the receiving frame 33 and one side of the stacking support plate 34 are both provided with notches 45, and the notches 45 are convenient for grabbing the stacked printed circuit boards.
Claims (4)
1. A printed circuit board film-sticking and stacking production line is characterized by comprising a film-sticking cutting device and a stacking device, wherein the film-sticking cutting device comprises a film-sticking frame (15), a film winding roller (16) and a cutting assembly, four carrier rollers (17) which are synchronously driven are arranged on the film-sticking frame (15) from front to back, a pressing roller (18) is arranged above the corresponding carrier roller (17), a driving motor for driving the carrier roller (17) to rotate is arranged at one side of the film sticking frame (15), a film winding roller (16) is arranged below the feeding end of the film sticking frame (15), a pair of deviation rectifying rollers (20) are arranged on the film pasting frame (15) between the film winding roller (16) and the carrier roller (17), the carrier roller (17) at the rearmost end is provided with an annular groove for the printed circuit board to pass through, and a group of air pipes (22) with upward openings are arranged at the front side of the carrier roller (17) at the rearmost end; the cutting assembly comprises a cutting table (25), a cutting blade (26) and a cutting blade driving cylinder (27), the cutting table (25) is installed on the film pasting rack (15) between the two middle carrier rollers (17), and the cutting blade driving cylinder (27) is installed on the cutting table (25) and drives the cutting blade (26) to move up and down for cutting;
the stacking device comprises a blanking guide groove (30), a material returning plate (31), a material returning plate driving cylinder (32), a material receiving frame (33) and a stacking support plate (34), wherein the blanking guide groove (30) is arranged at the discharge end of the film sticking rack (15) through a support frame, the material receiving frame (33) is arranged at the discharge end of the blanking guide groove (30), a slot is arranged at the bottom of the discharge end of the blanking guide groove (30), the material returning plate (31) is movably inserted in the slot, the material returning plate driving cylinder (32) is arranged at the bottom of the blanking guide groove (30), and drives the stripper plate (31) to move back and forth, one end of the stacking support plate (34) is movably installed in the material receiving frame (33) through a connecting plate (35), a vertical rack is arranged on one side of the connecting plate (35), a ratchet wheel (37) matched with the vertical rack for use is arranged on the material receiving frame (33), and a pawl (38) for driving the ratchet wheel (37) to rotate is arranged on a piston rod of the stripper plate driving cylinder (32).
2. The printed circuit board film laminating and stacking production line according to claim 1, wherein two ends of the pressing roller (18) are respectively and adjustably mounted on the film laminating machine frame (15) through a lifting assembly, the lifting assembly comprises a sliding seat (42) and an adjusting screw rod (43), sliding grooves are respectively formed in two sides of the film laminating machine frame (15), the adjusting screw rod (43) is mounted at the tops of the sliding grooves, and the sliding seat (42) is driven to move up and down in the sliding grooves.
3. The printed circuit board film laminating and stacking production line of claim 1, wherein two sides of the connecting plate (35) are movably connected with the material receiving frame (33) through linear guide rails respectively.
4. The film-laminating and stacking production line for printed circuit boards according to claim 1, wherein the width of the stripper plate (31) is smaller than the width of the top opening of the receiving frame (33), and one side of the receiving frame (33) and one side of the stacking pallet (34) are provided with notches (45).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122305179.XU CN215589946U (en) | 2021-09-23 | 2021-09-23 | Printed circuit board pad pasting pile production line |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122305179.XU CN215589946U (en) | 2021-09-23 | 2021-09-23 | Printed circuit board pad pasting pile production line |
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CN215589946U true CN215589946U (en) | 2022-01-21 |
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Family Applications (1)
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CN202122305179.XU Active CN215589946U (en) | 2021-09-23 | 2021-09-23 | Printed circuit board pad pasting pile production line |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN117400524A (en) * | 2023-12-14 | 2024-01-16 | 江苏南晶红外光学仪器有限公司 | Optical glass surface film laminating equipment |
-
2021
- 2021-09-23 CN CN202122305179.XU patent/CN215589946U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN117400524A (en) * | 2023-12-14 | 2024-01-16 | 江苏南晶红外光学仪器有限公司 | Optical glass surface film laminating equipment |
CN117400524B (en) * | 2023-12-14 | 2024-02-20 | 江苏南晶红外光学仪器有限公司 | Optical glass surface film laminating equipment |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
PE01 | Entry into force of the registration of the contract for pledge of patent right |
Denomination of utility model: A Film Stacking Production Line for Printed Circuit Board Effective date of registration: 20230619 Granted publication date: 20220121 Pledgee: Hubei Science and Technology Financing Guarantee Co.,Ltd. Pledgor: HUBEI XIEJIN SEMICONDUCTOR TECHNOLOGY Co.,Ltd. Registration number: Y2023980044553 |
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PE01 | Entry into force of the registration of the contract for pledge of patent right |