CN205283954U - High -efficient automatic reinforcement equipment - Google Patents

High -efficient automatic reinforcement equipment Download PDF

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Publication number
CN205283954U
CN205283954U CN201521139302.3U CN201521139302U CN205283954U CN 205283954 U CN205283954 U CN 205283954U CN 201521139302 U CN201521139302 U CN 201521139302U CN 205283954 U CN205283954 U CN 205283954U
Authority
CN
China
Prior art keywords
fpc
platform
automatic
stacking platform
slide rail
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201521139302.3U
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Chinese (zh)
Inventor
裴本建
洪军
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Xwell Automation Equipment Co Ltd
Original Assignee
Shenzhen Xwell Automation Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Xwell Automation Equipment Co Ltd filed Critical Shenzhen Xwell Automation Equipment Co Ltd
Priority to CN201521139302.3U priority Critical patent/CN205283954U/en
Application granted granted Critical
Publication of CN205283954U publication Critical patent/CN205283954U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a high -efficient automatic reinforcement equipment, include base plate and the left automatic lift platform mechanism and the right automatic lift platform mechanism that are located the base plate front side, all install the FPC suction nozzle of liftable in automatic lift platform mechanism in a left side and the right automatic lift platform mechanism, the front side of base plate installs that the immature FPC who removes about can pile up the platform and finished product FPC piles up the platform, accomplish FPC and pile up the platform and pile up the platform with finished product FPC and be located between left automatic lift platform mechanism and the right automatic lift platform mechanism, but be equipped with the work platform of back -and -forth movement respectively under the FPC suction nozzle of left side automation lift platform mechanism and right automatic lift platform mechanism. The utility model discloses a high -efficient automatic reinforcement equipment can get automatically puts the board, need not to wait for, improves production efficiency, and the reduction personnel contact the product and cause bad phenomenon, frequently get the board potential safety hazard problem of putting when solving production, and the reduction personnel dispose alone multimachine, reduce manufacturing cost.

Description

A kind of efficient automatic stiffening equipment
Technical field
The utility model relates to FPCB (flexible circuit board) reinforcement field, particularly relates to a kind of efficient automatic stiffening equipment.
Background technology
At FPCB (flexible circuit board) board industry, the feature of FPC is compact, therefore in use easily produces discounting, scar etc.; Physical strength is little, easily chaps. The object of lamination reinforcement material (stiffener) is the physical strength in order to strengthen FPC, convenient surface dress part etc., and reinforced rubber sheet type is multiple, determine according to goods service requirements difference, mainly contain PET, PI, back of the body glue, metal or resin stiffening plate etc.
The reinforcement machine used on the market now does not all configure automatic clamping and placing plate function, is artificial taking laying board entirely, complete machine stopping work when getting plate, greatly waste the working hour, increase person works's amount, frequently get the potential safety hazard of plate, and the FPC that artificial taking laying board causes is bad.
Practical novel content
The purpose of this utility model is to provide a kind of efficient automatic stiffening equipment, automatic clamping and placing plate, it is not necessary to wait, improve production efficiency, reduce human contact's product and cause bad phenomenon, solve frequent taking laying board security hidden trouble when producing, reduce the personnel depaly one many machines of people, reduce manufacturing cost.
For achieving the above object, the utility model provides a kind of efficient automatic stiffening equipment, comprise automatic clamping and placing plate, without the need to waiting, improve production efficiency, reduce human contact's product and cause bad phenomenon, solve frequent taking laying board security hidden trouble when producing, reduce the personnel depaly one many machines of people, reduce manufacturing cost.
As further improvement of the utility model, described left automatic rising-sinking platform mechanism is identical with right automatic rising-sinking platform mechanism structure and is symmetrical arranged, described left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism include vertical mount pad, the first drive unit, the first transmission mechanism and adsorption unit, described vertical mount pad is provided with vertical slide rail, described adsorption unit is arranged on vertical slide rail, described first drive unit is arranged on vertical mount pad and by the first transmission mechanism linkage adsorption unit, described adsorption unit is provided with described FPC suction nozzle.
Further improve as of the present utility model, described first drive unit is servomotor, described first transmission mechanism is leading screw and nut mechanism, and the nut of described leading screw and nut mechanism is fixed on adsorption unit, and the screw mandrel of described leading screw and nut mechanism is vertically arranged on vertical mount pad.
As further improvement of the utility model, horizontal slide rail and lower horizontal slide rail it is provided with on front side of described substrate, the described FPC of not completing stacking platform is arranged on horizontal slide rail, described finished product FPC stacking platform is arranged on lower horizontal slide rail, the 2nd drive unit, the 2nd transmission mechanism, the 3rd drive unit and the 3rd transmission mechanism also it is provided with on front side of described substrate, described 2nd drive unit does not complete FPC stacking platform by the 2nd transmission mechanism linkage, and described 3rd drive unit is by the 3rd transmission mechanism linkage finished product FPC stacking platform.
Further improving as of the present utility model, the front side of described substrate is respectively equipped with at the two ends, left and right of upper horizontal slide rail and lower horizontal slide rail and does not complete FPC stacking platform and FPC inductor block corresponding to finished product FPC stacking platform.
Further improve as of the present utility model, described 2nd drive unit and the 3rd drive unit are servomotor, described 2nd transmission mechanism and the 3rd transmission mechanism are leading screw and nut mechanism, the screw mandrel level of described leading screw and nut mechanism is arranged on front side of substrate, described does not complete FPC stacking platform and finished product FPC stacking platform is arranged on the nut of corresponding leading screw and nut mechanism.
Further improving as of the present utility model, described upper horizontal slide rail and lower horizontal slide rail all have two, and described two go up between horizontal slide rail and are respectively equipped with the screw mandrel of bar nut body described between two lower horizontal slide rails.
Further improving as of the present utility model, the described FPC of not completing stacking platform is provided with vacuum detecting tensimeter.
Further improving as of the present utility model, the described FPC of not completing stacking platform is provided with FPC and puts plate Buffer Unit.
Further improve as of the present utility model, all offering, on the described FPC of not completing stacking platform and finished product FPC stacking platform, the adjustment hole arranged along the longitudinal direction, the end face of the described FPC of not completing stacking platform and finished product FPC stacking platform is respectively equipped with the FPC adjustable plate that may correspond on the adjustment hole being arranged on different positions.
Compared with prior art, the useful effect of efficient automatic stiffening equipment of the present utility model is as follows:
(1) by not completing moving left and right and alternately work about FPC suction nozzle in left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism of FPC stacking platform and finished product FPC stacking platform, complete automatic upper and lower plates function, without the need to waiting, improve production efficiency, reduce human contact's product and cause bad phenomenon, solve frequent taking laying board security hidden trouble when producing, reduce the personnel depaly one many machines of people, reduce manufacturing cost.
(2) inductor block is adopted can to contribute to automatically completing FPC upper and lower plates function, it is to increase production efficiency.
(3) adopting FPC to put plate Buffer Unit, can to avoid not completing FPC stacking platform impaired, extends its work-ing life.
(4) FPC adjustable plate is adopted can to facilitate the FPC not completing to place different size on FPC stacking platform and finished product FPC stacking platform.
(5) adopt two upper horizontal slide rails and two lower horizontal slide rails can ensure not complete FPC stacking platform and finished product FPC stacking platform stable.
(6) adopting leading screw and nut mechanism as transmission, adopt servomotor as driving, thus one-piece construction can be made simple, function easily realizes.
By following description and by reference to the accompanying drawings, the utility model will become more clear, and these accompanying drawings are for explaining embodiment of the present utility model.
Accompanying drawing explanation
Fig. 1 is the stereographic map of efficient automatic stiffening equipment.
Fig. 2 is the front view of efficient automatic stiffening equipment.
Embodiment
With reference now to accompanying drawing, describing embodiment of the present utility model, element numbers similar in accompanying drawing represents similar element.
Please refer to Fig. 1-2, described efficient automatic stiffening equipment comprises substrate 1 and is positioned at the left automatic rising-sinking platform mechanism on front side of substrate 1 and right automatic rising-sinking platform mechanism, described left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism are all provided with liftable FPC suction nozzle 2, for adsorbing FPC. The installed in front of described substrate 1 have can move left and right do not complete FPC stacking platform 3 and finished product FPC stacking platform 4, described FPC stacking platform 3 and the finished product FPC stacking platform 4 of completing, between left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism, is respectively equipped with the workplatform (not shown) that can move forward and backward in the underface of left automatic rising-sinking platform mechanism and the FPC suction nozzle 2 of right automatic rising-sinking platform mechanism.
Specifically, described left automatic rising-sinking platform mechanism is identical with right automatic rising-sinking platform mechanism structure and be symmetrical arranged. Described left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism include vertical mount pad 5, first drive unit 6, first transmission mechanism 7 and adsorption unit 8, described vertical mount pad 5 is provided with vertical slide rail 9, described adsorption unit 8 is arranged on vertical slide rail 9, described first drive unit 6 is arranged on vertical mount pad 5 and is linked adsorption unit 8 by the first transmission mechanism 7, and described adsorption unit 8 is provided with described FPC suction nozzle 2. Described first drive unit 6 is servomotor, and described first transmission mechanism 7 is leading screw and nut mechanism, and the nut of described leading screw and nut mechanism is fixed on adsorption unit 8, and the screw mandrel of described leading screw and nut mechanism is vertically arranged on vertical mount pad 5.
Being provided with horizontal slide rail 10 and lower horizontal slide rail 11 on front side of described substrate 1, the described FPC of not completing stacking platform 3 is arranged on horizontal slide rail 10, and described finished product FPC stacking platform 3 is arranged on lower horizontal slide rail 11. The 2nd drive unit 12, the 2nd transmission mechanism 13, the 3rd drive unit 14 and the 3rd transmission mechanism 15 also it is provided with on front side of described substrate 1, described 2nd drive unit 12 is linked by the 2nd transmission mechanism 13 and is not completed FPC stacking platform 3, and described 3rd drive unit 14 is linked finished product FPC stacking platform 4 by the 3rd transmission mechanism 15. The front side of described substrate 1 is respectively equipped with at the two ends, left and right of upper horizontal slide rail 10 and lower horizontal slide rail 11 and does not complete FPC stacking platform 3 and FPC inductor block 16 corresponding to finished product FPC stacking platform 4, thus can sense the position not completing FPC stacking platform 3 and finished product FPC stacking platform 4 in time, so that the FPC suction nozzle 2 in left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism never completes timely to draw FPC on FPC stacking platform 3 and is placed on by FPC timely on finished product FPC stacking platform 4. Described 2nd drive unit 12 and the 3rd drive unit 14 are servomotor, described 2nd transmission mechanism 13 and the 3rd transmission mechanism 15 are leading screw and nut mechanism, the screw mandrel level of described leading screw and nut mechanism is arranged on front side of substrate 1, described does not complete FPC stacking platform 3 and finished product FPC stacking platform 4 is arranged on the nut of corresponding leading screw and nut mechanism. Described upper horizontal slide rail 10 and lower horizontal slide rail 11 all have two, and described two go up between horizontal slide rail 10 and are respectively equipped with the screw mandrel of bar nut body described between two lower horizontal slide rails 11.
The bottom surface of the described FPC of not completing stacking platform 3 is provided with vacuum detecting tensimeter 17, can conveniently detect vacuum pressure. The bottom surface of the described FPC of not completing stacking platform 3 is provided with FPC and puts plate Buffer Unit 18, cushions not completing FPC stacking platform 3, prevents it impaired because being pressed. The described FPC of not completing stacking platform 3 and finished product FPC stacking platform 4 all offer the adjustment hole 19 arranged along the longitudinal direction, the end face of the described FPC of not completing stacking platform 3 and finished product FPC stacking platform 4 is respectively equipped with the FPC adjustable plate 20 that may correspond on the adjustment hole 19 being arranged on different positions, such that it is able to place the FPC of different size.
During work, described 2nd drive unit 12 drives the 2nd transmission mechanism 13 to rotate, make not complete FPC stacking platform 3 to move left and right along upper horizontal slide rail 10, simultaneously, 3rd drive unit 14 drives the 3rd transmission mechanism 15 to rotate so that finished product FPC stacking platform 4 moves left and right along lower horizontal slide rail 11. when not completing FPC stacking platform 3 and move to immediately below the FPC suction nozzle 2 of left automatic rising-sinking platform mechanism, the FPC suction nozzle 2 of left automatic rising-sinking platform mechanism never completes FPC stacking platform 3 place and draws FPC, and do not complete after FPC stacking platform 3 removes, FPC suction nozzle 2 in left automatic rising-sinking platform mechanism moves down and is placed on by the FPC of absorption on the workplatform immediately below this FPC suction nozzle 2, FPC starts to paste reinforcing chip after being placed on workplatform, after subsides reinforcing chip completes, automatically detection, from workplatform, draw finished product FPC by left automatic rising-sinking platform mechanism again and rise, time immediately below the FPC suction nozzle 2 that finished product FPC stacking platform 4 moves to left automatic rising-sinking platform mechanism, the finished product FPC being drawn to is placed on above finished product FPC stacking platform 4 by this FPC suction nozzle 2. when not completing FPC stacking platform 3 and move to immediately below the FPC suction nozzle 2 of right automatic rising-sinking platform mechanism, the FPC suction nozzle 2 of right automatic rising-sinking platform mechanism never completes FPC stacking platform 3 place and draws FPC, and do not complete after FPC stacking platform 3 removes, FPC suction nozzle 2 in right automatic rising-sinking platform mechanism moves down and is placed on by the FPC of absorption on the workplatform immediately below this FPC suction nozzle 2, FPC starts to paste reinforcing chip after being placed on workplatform, after subsides reinforcing chip completes, automatically detection, from workplatform, draw finished product FPC by right automatic rising-sinking platform mechanism again and rise, time immediately below the FPC suction nozzle 2 that finished product FPC stacking platform 4 moves to right automatic rising-sinking platform mechanism, the finished product FPC being drawn to is placed on above finished product FPC stacking platform 4 by this FPC suction nozzle 2. by not completing moving left and right and FPC suction nozzle about 2 alternately work in left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism of FPC stacking platform 3 and finished product FPC stacking platform 4, complete automatic upper and lower plates function, without the need to waiting, improve production efficiency, reduce human contact's product and cause bad phenomenon, solve frequent taking laying board security hidden trouble when producing, reduce the personnel depaly one many machines of people, reduce manufacturing cost.
More than in conjunction with most preferred embodiment, the utility model is described, but the utility model is not limited to the embodiment of above announcement, and should contain various carry out according to essence of the present utility model amendment, equivalent combinations.

Claims (10)

1. an efficient automatic stiffening equipment, it is characterized in that, comprise: substrate (1) and be positioned at substrate (1) front side left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism, described left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism are all provided with liftable FPC suction nozzle (2), the installed in front of described substrate (1) have can move left and right do not complete FPC stacking platform (3) and finished product FPC stacking platform (4), described FPC stacking platform (3) and finished product FPC stacking platform (4) of completing is between left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism, it is respectively equipped with the workplatform that can move forward and backward in the underface of left automatic rising-sinking platform mechanism and the FPC suction nozzle (2) of right automatic rising-sinking platform mechanism.
2. efficient automatic stiffening equipment as claimed in claim 1, it is characterized in that: described left automatic rising-sinking platform mechanism is identical with right automatic rising-sinking platform mechanism structure and is symmetrical arranged, described left automatic rising-sinking platform mechanism and right automatic rising-sinking platform mechanism include vertical mount pad (5), first drive unit (6), first transmission mechanism (7) and adsorption unit (8), described vertical mount pad (5) is provided with vertical slide rail (9), described adsorption unit (8) is arranged on vertical slide rail (9), described first drive unit (6) is arranged on vertical mount pad (5) and above and passes through the first transmission mechanism (7) linkage adsorption unit (8), described adsorption unit (8) is provided with described FPC suction nozzle (2).
3. efficient automatic stiffening equipment as claimed in claim 2, it is characterized in that: described first drive unit (6) is servomotor, described first transmission mechanism (7) is leading screw and nut mechanism, the nut of described leading screw and nut mechanism is fixed on adsorption unit (8), and the screw mandrel of described leading screw and nut mechanism is vertically arranged on vertical mount pad (5).
4. efficient automatic stiffening equipment as claimed in claim 1, it is characterized in that: described substrate (1) front side is provided with horizontal slide rail (10) and lower horizontal slide rail (11), the described FPC of not completing stacking platform (3) is arranged on horizontal slide rail (10), described finished product FPC stacking platform (4) is arranged on lower horizontal slide rail (11), described substrate (1) front side is also provided with the 2nd drive unit (12), 2nd transmission mechanism (13), 3rd drive unit (14) and the 3rd transmission mechanism (15), described 2nd drive unit (12) does not complete FPC stacking platform (3) by the 2nd transmission mechanism (13) linkage, described 3rd drive unit (14) is by the 3rd transmission mechanism (15) linkage finished product FPC stacking platform (4).
5. automatic stiffening equipment as claimed in claim 4 efficient, it is characterised in that: the front side of described substrate (1) is respectively equipped with at the two ends, left and right of upper horizontal slide rail (10) and lower horizontal slide rail (11) and does not complete FPC stacking platform (3) and FPC inductor block (16) corresponding to finished product FPC stacking platform (4).
6. efficient automatic stiffening equipment as claimed in claim 4, it is characterized in that: described 2nd drive unit (12) and the 3rd drive unit (14) are servomotor, described 2nd transmission mechanism (13) and the 3rd transmission mechanism (15) are leading screw and nut mechanism, the screw mandrel level of described leading screw and nut mechanism is arranged on substrate (1) front side, described does not complete FPC stacking platform (3) and finished product FPC stacking platform (4) is arranged on the nut of corresponding leading screw and nut mechanism.
7. efficient automatic stiffening equipment as claimed in claim 6, it is characterized in that: described upper horizontal slide rail (10) and lower horizontal slide rail (11) all have two, described two go up between horizontal slide rail (10) and are respectively equipped with the screw mandrel of bar nut body described between two lower horizontal slide rails (11).
8. efficient automatic stiffening equipment as described in claim 1 or 4, it is characterised in that: the described FPC of not completing stacking platform (3) is provided with vacuum detecting tensimeter (17).
9. efficient automatic stiffening equipment as described in claim 1 or 4, it is characterised in that: the described FPC of not completing stacking platform (3) is provided with FPC and puts plate Buffer Unit (18).
10. efficient automatic stiffening equipment as described in claim 1 or 4, it is characterized in that: the described FPC of not completing stacking platform (3) and finished product FPC stacking platform (4) all offer the adjustment hole (19) arranged along the longitudinal direction, the FPC adjustable plate (20) that the end face of the described FPC of not completing stacking platform (3) and finished product FPC stacking platform (4) is respectively equipped with on the adjustment hole (19) that may correspond to and be arranged on different positions.
CN201521139302.3U 2015-12-31 2015-12-31 High -efficient automatic reinforcement equipment Withdrawn - After Issue CN205283954U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521139302.3U CN205283954U (en) 2015-12-31 2015-12-31 High -efficient automatic reinforcement equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521139302.3U CN205283954U (en) 2015-12-31 2015-12-31 High -efficient automatic reinforcement equipment

Publications (1)

Publication Number Publication Date
CN205283954U true CN205283954U (en) 2016-06-01

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Application Number Title Priority Date Filing Date
CN201521139302.3U Withdrawn - After Issue CN205283954U (en) 2015-12-31 2015-12-31 High -efficient automatic reinforcement equipment

Country Status (1)

Country Link
CN (1) CN205283954U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105451452A (en) * 2015-12-31 2016-03-30 深圳市鑫美威自动化设备有限公司 Efficient automatic reinforcing device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105451452A (en) * 2015-12-31 2016-03-30 深圳市鑫美威自动化设备有限公司 Efficient automatic reinforcing device
CN105451452B (en) * 2015-12-31 2018-06-29 深圳市鑫美威自动化设备有限公司 A kind of efficient automatic stiffening equipment

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C14 Grant of patent or utility model
AV01 Patent right actively abandoned

Granted publication date: 20160601

Effective date of abandoning: 20180629

AV01 Patent right actively abandoned