CN104129138A - Film lamination machine - Google Patents

Film lamination machine Download PDF

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Publication number
CN104129138A
CN104129138A CN201410335910.5A CN201410335910A CN104129138A CN 104129138 A CN104129138 A CN 104129138A CN 201410335910 A CN201410335910 A CN 201410335910A CN 104129138 A CN104129138 A CN 104129138A
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China
Prior art keywords
cylinder
slide rail
film
module
pad pasting
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CN201410335910.5A
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Chinese (zh)
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CN104129138B (en
Inventor
龚志平
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DONGGUAN LAIBAO ELECTRICAL TECHNOLOGY Co Ltd
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DONGGUAN LAIBAO ELECTRICAL TECHNOLOGY Co Ltd
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Priority to CN201410335910.5A priority Critical patent/CN104129138B/en
Publication of CN104129138A publication Critical patent/CN104129138A/en
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Abstract

The invention discloses a film lamination machine comprising a frame, a discharge module, a film suction-lamination module, a positioning detector, and a material receiving module. The suction-lamination module comprises a forward-backward moving slide rail, a front-back moving slide tail, a cylinder mounting seat, an elevation cylinder, a film suction cylinder, an upper film suction plate, an upper film suction plate connection block, a connection slide rail, and a film lamination roller. The front-back moving slide rail is slidably connected on the forward-backward moving slide rail with a forward-backward manner. The cylinder mounting seat is slidably connected on the front-back moving slide rail with a front-back manner. An output end of the elevation cylinder and an output end of the film suction cylinder are respectively fixedly connected with corresponding places of the upper film suction plate connection block. The connection slide rail is fixedly connected on a back side of the cylinder mounting seat. The back end of the upper film suction connection block is vertically slidably connected on a front side end of the connection slide rail. The film lamination cylinder is vertically connected to the back side end of the connection slide rail. An output end of the lamination cylinder is fixedly connected with the film lamination roller. The film lamination machine provided by the invention has the advantages of simple structure, precise film lamination, and high production efficiency.

Description

Laminator
Technical field
The present invention relates to a kind of mechanical field, relate in particular to a kind of laminator.
Background technology
Film is posted on the surface of some glass products on the market, in this product processing, generally by staff, film is labelled on glass product, and pad pasting precision is low, production efficiency is low.
Thereby, the laminator that urgently a kind of pad pasting precision is high, production efficiency is high.
Summary of the invention
The object of the present invention is to provide the laminator that a kind of pad pasting precision is high, production efficiency is high.
To achieve these goals, technical scheme of the present invention is: a kind of laminator is provided, comprise frame and be installed on the control panel in described frame, blowing module, inhale pad pasting module, positioning detector and the module that connects material, described blowing module comprises the installing plate of at right angle setting in described frame, CD-ROM drive motor and be installed on the rotating disk of the positive side of described installing plate, the first pan feeding guide wheel, the second pan feeding guide wheel, detect photoelectricity, vacuum film adsorption plate, pinch roller, main drive wheel and winder wheel, described the first pan feeding guide wheel is positioned at the front of described rotating disk, described the second pan feeding guide wheel is positioned at the front lower place of described the first pan feeding guide wheel, described detection photoelectricity is placed in the front of described the second pan feeding guide wheel, described vacuum film adsorption plate level is placed in the front of described detection photoelectricity, described pinch roller and described active drive wheel are positioned at the below of described vacuum film adsorption plate successively, described winder wheel is positioned at the rear of described main drive wheel, described CD-ROM drive motor is installed on the dorsal part of described installing plate and the output of described CD-ROM drive motor and described main drive wheel and joins, described suction pad pasting module comprises and moves forward and backward slide rail, shifting sledge just dorsad, cylinder mount pad, lift cylinder, inhale film cylinder, pad pasting cylinder, upper suction lamina membranacea, upper suction template contiguous block, connecting sliding rail and pad pasting roller, the described slide rail front and back trend that moves forward and backward is installed in described frame, described in being slidably connected to before and after described shifting sledge just dorsad, move forward and backward on slide rail, the positive dorsal glide of described cylinder mount pad is connected on described shifting sledge just dorsad, described lift cylinder and described suction film cylinder from rear and front at right angle setting successively in the front side of described cylinder mount pad, the output of the output of described lift cylinder and described suction film cylinder respectively with described upper suction lamina membranacea contiguous block corresponding position Joint, described connecting sliding rail is fixed in the rear side of described cylinder mount pad, the rear end of described upper suction film contiguous block slides up and down the front side end that is connected in described connecting sliding rail, described pad pasting cylinder is vertically fixed in the rear side end of described connecting sliding rail, the output of described pad pasting cylinder and described pad pasting roller are affixed, described positioning detector is installed on the front lower place of corresponding described vacuum film adsorption plate in described frame, the trailing position to position and just for the front and back of diaphragm that detection and localization is inhaled, the described module that connects material is installed on the front of corresponding described positioning detector in described frame.
The described module that connects material comprises the base that connects material, 180 degree rotary cylinders, disk and two absorption articles holding tables connect material, the front of the described floor installation corresponding described positioning detector in described frame that connects material, described in being fixed on, described 180 degree rotary cylinders connect material on base, the described disc level that connects material is fixed in the output of described 180 degree rotary cylinders, adsorbs connect material described in the being symmetrically placed in rear and front end at top of disk of articles holding table described in two.
Described positioning detector comprises optical fiber slide rail, front and back detection fiber and detection fiber just dorsad, and described optical fiber slide rail is fixed in described frame, and described front and back detection fiber and described detection fiber just are dorsad slidably connected on described optical fiber slide rail.
Described rotating disk comprises rotating disk main body, the fixing plum blossom knob of raw material film and the fixing plum blossom knob of rotating disk.
Compared with prior art, film pasting mechanism of the present invention is simple in structure, pad pasting is accurate, production efficiency is high.
By following description also by reference to the accompanying drawings, it is more clear that the present invention will become, and these accompanying drawings are used for explaining embodiments of the invention.
Brief description of the drawings
Fig. 1 is the structure chart of laminator of the present invention.
Fig. 2 is the local structural graph of laminator of the present invention.
Fig. 3 is the structure chart of an angle of blowing module of laminator of the present invention.
Fig. 4 is the structure chart of an angle of suction pad pasting module of laminator of the present invention.
Fig. 5 is the structure chart of another angle of suction pad pasting module of laminator of the present invention.
Fig. 6 is the structure chart of an angle of the module that connects material of laminator of the present invention.
Fig. 7 is the structure chart of another angle of the module that connects material of laminator of the present invention.
Detailed description of the invention
Referring to figs. 1 to Fig. 7, laminator 100 of the present invention comprises frame 10 and is installed on control panel 20, blowing module 30, suction pad pasting module 40, positioning detector 50 and the module 60 that connects material in described frame 10.
Described blowing module 30 comprise installing plate 31, the CD-ROM drive motor 32 of at right angle setting in described frame 10 and be installed on the rotating disk 33 of the positive side of described installing plate 31, the first pan feeding guide wheel 34, the second pan feeding guide wheel 35, detect photoelectricity 36, vacuum film adsorption plate 37, pinch roller 38, main drive wheel 39 and winder wheel 391.Described the first pan feeding guide wheel 34 is positioned at the front of described rotating disk 33, and described the second pan feeding guide wheel 35 is positioned at the front lower place of described the first pan feeding guide wheel 34.Described detection photoelectricity 36 is placed in the front 35 of described the second pan feeding guide wheel, and described vacuum film adsorption plate 392 levels are placed in the front of described detection photoelectricity 36.Described pinch roller 38 and described active drive 39 are taken turns the below that is positioned at successively described vacuum film adsorption plate 37, described winder wheel 391 is positioned at the rear of described main drive wheel 39, and described CD-ROM drive motor 32 is installed on the dorsal part of described installing plate 31 and the output of described CD-ROM drive motor 32 and described main drive wheel 39 and joins.
Described suction pad pasting module 40 comprise move forward and backward slide rail 41, just dorsad shifting sledge 42, cylinder mount pad 43, lift cylinder 44, inhale film cylinder 45, pad pasting cylinder 46, upper suction lamina membranacea 47, upper suction template contiguous block 48, connecting sliding rail 49 and pad pasting roller 491.The described slide rail 41 front and back trends that move forward and backward are installed in described frame 10, described in described shifting sledge just dorsad 42 front and back are slidably connected to, move forward and backward on slide rail 41.The positive dorsal glide of described cylinder mount pad 43 is connected on described shifting sledge just dorsad 42.Described lift cylinder 44 and described suction film cylinder 45 from rear and front at right angle setting successively in the front side of described cylinder mount pad 43.The output of the output of described lift cylinder 44 and described suction film cylinder 45 respectively with described upper suction lamina membranacea contiguous block 48 corresponding position Joints.Described connecting sliding rail 49 is fixed in the rear side of described cylinder mount pad 43.The rear end of described upper suction film contiguous block 48 slides up and down the front side end that is connected in described connecting sliding rail 49.Described pad pasting cylinder 46 is vertically fixed in the rear side end of described connecting sliding rail 49.The output of described pad pasting cylinder 46 and described pad pasting roller 491 are affixed.
Described positioning detector 50 is installed on the front lower place of corresponding described vacuum film adsorption plate 392 in described frame 10, for the front and back of diaphragm that detection and localization is inhaled to position and positive trailing position.Particularly, described positioning detector 50 comprises optical fiber slide rail 51, front and back detection fiber 52 and detection fiber 53 just dorsad.Described optical fiber slide rail 51 is fixed in described frame 10, and described front and back detection fiber 52 and described detection fiber just dorsad 53 are slidably connected on described optical fiber slide rail 51.
The described module 60 that connects material is installed on the front of corresponding described positioning detector 50 in described frame 10.The described module 60 that connects material is installed on the front of corresponding described positioning detector 50 in described frame 10.The described module 60 that connects material comprises base 61, the 180 degree rotary cylinders 62 that connect material, disk 63 and two absorption articles holding tables 64 connect material.The described base 61 that connects material is installed on the front of corresponding described positioning detector 50 in described frame 10, described in being fixed on, described 180 degree rotary cylinders 62 connect material on base 61, described disk 63 levels that connect material are fixed in the output of described 180 degree rotary cylinders 62, adsorb connect material described in the being symmetrically placed in rear and front end at top of disk 63 of articles holding table 64 described in two.The described base 61 that connects material is provided with some control buttons 611.
Described rotating disk 33 comprises rotating disk main body 331, the fixing plum blossom knob 332 of raw material film and the fixing plum blossom knob 333 of rotating disk.Rotating the fixing plum blossom knob 332 of described raw material film can fix raw material diaphragm, regulates fixing 333 of the plum blossom knobs of rotating disk can make rotating disk main body 331 stop operating.
When laminator 100 of the present invention is worked, raw material diaphragm is wound on described rotating disk 33, one end of raw material diaphragm is successively through the first pan feeding guide wheel 34, the second pan feeding guide wheel 35, detect photoelectricity 36, lower floor's diaphragm of raw material diaphragm is furled by winder wheel 391, vacuum film adsorption plate 37 holds one end raw material diaphragm of regular length, through positioning detector 50 position of having good positioning, cylinder mount pad 43 with shifting sledge just dorsad 42 along the top that moves forward and backward slide rail 41 and move to vacuum film adsorption plate 37, lift cylinder 44 startups afterwards press down, then inhaling film cylinder 45 presses down, upper suction lamina membranacea 47 holds the raw material diaphragm of having good positioning, then cylinder mount pad 43 moves to and treats glass product along moving forward and backward slide rail 41 with shifting sledge just dorsad 42, upper suction lamina membranacea 47 unloads air pressure, raw material diaphragm drops down onto the upper surface of glass product, now pad pasting cylinder 46 starts, pad pasting roller 491 is pressed down be adjacent to raw material diaphragm and in the upper surface roll extrusion of glass product, thereby complete film process.180 degree rotary cylinder 62 Rotate 180 degree afterwards, another absorption articles holding table 64 that is placed with glass product goes to position to be processed, and each parts reset, and prepare the film process of next glass product.
Laminator of the present invention is simple in structure, pad pasting is accurate, production efficiency is high.
In conjunction with most preferred embodiment, present invention is described above, but the present invention is not limited to the embodiment of above announcement, and should contain the various amendments of carrying out according to the essence of the present embodiment, equivalent combinations.

Claims (4)

1. a laminator, it is characterized in that: comprise frame and be installed on the control panel in described frame, blowing module, inhale pad pasting module, positioning detector and the module that connects material, described blowing module comprises the installing plate of at right angle setting in described frame, CD-ROM drive motor and be installed on the rotating disk of the positive side of described installing plate, the first pan feeding guide wheel, the second pan feeding guide wheel, detect photoelectricity, vacuum film adsorption plate, pinch roller, main drive wheel and winder wheel, described the first pan feeding guide wheel is positioned at the front of described rotating disk, described the second pan feeding guide wheel is positioned at the front lower place of described the first pan feeding guide wheel, described detection photoelectricity is placed in the front of described the second pan feeding guide wheel, described vacuum film adsorption plate level is placed in the front of described detection photoelectricity, described pinch roller and described active drive wheel are positioned at the below of described vacuum film adsorption plate successively, described winder wheel is positioned at the rear of described main drive wheel, described CD-ROM drive motor is installed on the dorsal part of described installing plate and the output of described CD-ROM drive motor and described main drive wheel and joins, described suction pad pasting module comprises and moves forward and backward slide rail, shifting sledge just dorsad, cylinder mount pad, lift cylinder, inhale film cylinder, pad pasting cylinder, upper suction lamina membranacea, upper suction template contiguous block, connecting sliding rail and pad pasting roller, the described slide rail front and back trend that moves forward and backward is installed in described frame, described in being slidably connected to before and after described shifting sledge just dorsad, move forward and backward on slide rail, the positive dorsal glide of described cylinder mount pad is connected on described shifting sledge just dorsad, described lift cylinder and described suction film cylinder from rear and front at right angle setting successively in the front side of described cylinder mount pad, the output of the output of described lift cylinder and described suction film cylinder respectively with described upper suction lamina membranacea contiguous block corresponding position Joint, described connecting sliding rail is fixed in the rear side of described cylinder mount pad, the rear end of described upper suction film contiguous block slides up and down the front side end that is connected in described connecting sliding rail, described pad pasting cylinder is vertically fixed in the rear side end of described connecting sliding rail, the output of described pad pasting cylinder and described pad pasting roller are affixed, described positioning detector is installed on the front lower place of corresponding described vacuum film adsorption plate in described frame, the trailing position to position and just for the front and back of diaphragm that detection and localization is inhaled, the described module that connects material is installed on the front of corresponding described positioning detector in described frame.
2. laminator as claimed in claim 1, it is characterized in that: described in connect material module comprise the base that connects material, 180 degree rotary cylinders, connect material disk and two absorption articles holding tables, the front of the described floor installation corresponding described positioning detector in described frame that connects material, described in being fixed on, described 180 degree rotary cylinders connect material on base, the described disc level that connects material is fixed in the output of described 180 degree rotary cylinders, adsorbs connect material described in the being symmetrically placed in rear and front end at top of disk of articles holding table described in two.
3. laminator as claimed in claim 1, it is characterized in that: described positioning detector comprises optical fiber slide rail, front and back detection fiber and detection fiber just dorsad, described optical fiber slide rail is fixed in described frame, and described front and back detection fiber and described detection fiber just are dorsad slidably connected on described optical fiber slide rail.
4. laminator as claimed in claim 1, is characterized in that: described rotating disk comprises rotating disk main body, the fixing plum blossom knob of raw material film and the fixing plum blossom knob of rotating disk.
CN201410335910.5A 2014-07-15 2014-07-15 Laminator Active CN104129138B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410335910.5A CN104129138B (en) 2014-07-15 2014-07-15 Laminator

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Application Number Priority Date Filing Date Title
CN201410335910.5A CN104129138B (en) 2014-07-15 2014-07-15 Laminator

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CN104129138B CN104129138B (en) 2016-01-20

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105905343A (en) * 2016-06-15 2016-08-31 东莞市绿科塑胶制品有限公司 Laminator
CN106515171A (en) * 2016-12-09 2017-03-22 东莞市莱宝机电科技有限公司 CCD automatic laminating, cutting and material-receiving machine
CN108839847A (en) * 2018-07-06 2018-11-20 苏州富强科技有限公司 A kind of convex surface film covering device of 3D bend glass
CN108943687A (en) * 2018-10-11 2018-12-07 深圳市强瑞电子有限公司 Automatic flexible pad pasting mould group
CN109515833A (en) * 2019-01-16 2019-03-26 深圳市诺峰光电设备有限公司 A kind of dyestripping and overturning mounting device
CN112917114A (en) * 2021-01-21 2021-06-08 深圳市磐锋精密技术有限公司 Rapid laminating equipment and laminating method for sensor flat cable gasket
CN115009582A (en) * 2022-07-04 2022-09-06 苏州德机自动化科技有限公司 Automatic film pasting equipment

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08267698A (en) * 1995-03-29 1996-10-15 Nippon Steel Corp Method and apparatus for mounting film on strip
CN201931678U (en) * 2010-10-27 2011-08-17 东莞东聚电子电讯制品有限公司 Precision lining machine
CN202656568U (en) * 2012-06-19 2013-01-09 深圳市宝德自动化精密设备有限公司 Double-face film laminating machine
CN202702787U (en) * 2012-06-04 2013-01-30 昆山友来电子有限公司 Absorption laminating machine
CN203974190U (en) * 2014-07-15 2014-12-03 东莞市莱宝机电科技有限公司 Laminator

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08267698A (en) * 1995-03-29 1996-10-15 Nippon Steel Corp Method and apparatus for mounting film on strip
CN201931678U (en) * 2010-10-27 2011-08-17 东莞东聚电子电讯制品有限公司 Precision lining machine
CN202702787U (en) * 2012-06-04 2013-01-30 昆山友来电子有限公司 Absorption laminating machine
CN202656568U (en) * 2012-06-19 2013-01-09 深圳市宝德自动化精密设备有限公司 Double-face film laminating machine
CN203974190U (en) * 2014-07-15 2014-12-03 东莞市莱宝机电科技有限公司 Laminator

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105905343A (en) * 2016-06-15 2016-08-31 东莞市绿科塑胶制品有限公司 Laminator
CN106515171A (en) * 2016-12-09 2017-03-22 东莞市莱宝机电科技有限公司 CCD automatic laminating, cutting and material-receiving machine
CN108839847A (en) * 2018-07-06 2018-11-20 苏州富强科技有限公司 A kind of convex surface film covering device of 3D bend glass
CN108943687A (en) * 2018-10-11 2018-12-07 深圳市强瑞电子有限公司 Automatic flexible pad pasting mould group
CN109515833A (en) * 2019-01-16 2019-03-26 深圳市诺峰光电设备有限公司 A kind of dyestripping and overturning mounting device
CN112917114A (en) * 2021-01-21 2021-06-08 深圳市磐锋精密技术有限公司 Rapid laminating equipment and laminating method for sensor flat cable gasket
CN115009582A (en) * 2022-07-04 2022-09-06 苏州德机自动化科技有限公司 Automatic film pasting equipment
CN115009582B (en) * 2022-07-04 2024-02-09 苏州德机自动化科技有限公司 Automatic change pad pasting equipment

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