CN203901280U - Pasting mechanical arm mechanism - Google Patents
Pasting mechanical arm mechanism Download PDFInfo
- Publication number
- CN203901280U CN203901280U CN201420312163.9U CN201420312163U CN203901280U CN 203901280 U CN203901280 U CN 203901280U CN 201420312163 U CN201420312163 U CN 201420312163U CN 203901280 U CN203901280 U CN 203901280U
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Abstract
The utility model relates to a pasting mechanical arm mechanism which comprises a base, a support base, an X-axis mechanism, a Y-axis mechanism, a Z- axis mechanism, an absorbing mechanism and a calibration inspection mechanism. The X- axis mechanism is arranged on the base and the support base. The Y-axis mechanism is arranged on the X-axis mechanism. The Z-axis mechanism is arranged on the Y-axis mechanism, and the absorbing mechanism and the calibration inspection mechanism are arranged on the Z-axis mechanism. The absorbing mechanism reaches a standard operating position after being transported by the X-axis mechanism, the Y-axis mechanism and the Z-axis mechanism. By means of the pasting mechanical arm mechanism, at the laser scanning position, segment difference at the position of a product where a gasket needs to be installed is scanned in a laser mode, and thus thickness of the gasket can be determined. A CCD firstly aims at the installation position and conducts filming and calibration and then the gasket is pasted, and the CCD conduct filming and calibration again after the gasket is pasted so as to countercheck whether the gasket is installed at the standard installation position.
Description
Technical field:
The utility model relates to a kind of lamination machinery mobile phone structure.
Background technology:
When pad is installed on product, need to be by pad from absorption or gripping on charging tray and be transported to normal place and fitted on product, in the process of transporting, need to can regulate at three direction of principal axis, and need to calibrate the position of pad, now just need a kind of lamination machinery mobile phone structure to complete.
Utility model content:
The purpose of this utility model is to provide a kind of lamination machinery mobile phone structure, under the transport of X-axis mechanism, Y-axis mechanism, Z-axis mechanism and draw frame machine, makes pad arrive standard operation position.
Technology solution of the present utility model is as follows:
A kind of lamination machinery mobile phone structure, it comprises base, supporting seat, X-axis mechanism, Y-axis mechanism, Z-axis mechanism, draw frame machine and calibration check mechanism, described X-axis mechanism is arranged on base and supporting seat; Described Y-axis mechanism is arranged in X-axis mechanism; Described Z-axis mechanism is arranged in Y-axis mechanism; Described draw frame machine comprises suction nozzle installing plate and suction nozzle body, suction nozzle body comprises cylinder holder, holder, cylinder, movable plate, guide pillar, lifting platform, joint pin, connecting plate, slide unit cylinder block, slide unit cylinder, suction nozzle, jaw cylinder and jaw, described suction nozzle installing plate is arranged on the Z axis module connecting plate of Z-axis mechanism, on described suction nozzle installing plate, cylinder holder is installed, suction nozzle installing plate lower end is vertically installed with holder; On described cylinder holder, cylinder is installed, the piston-rod lower end of described cylinder is connected with movable plate; Described movable plate lower end is provided with lifting platform by guide pillar, and lifting platform is cylindrical structural, and lifting platform center is provided with a through hole, connects and fixes a joint pin in through hole, and joint pin is connecting connecting plate through its lower end of lifting platform; Described holder is provided with a square slotted eye, and connecting plate bottom is passed from square slotted eye, and connecting plate lower end is connecting slide unit cylinder block; In described slide unit cylinder block, slide unit cylinder is housed, under slide unit cylinder, suction nozzle is installed; The side of described slide unit cylinder block is provided with jaw cylinder, under jaw cylinder, is connected with jaw.
Described calibration check mechanism comprises CCD connecting plate, CCD fixed head, CCD mount pad, CCD adjustable plate, CCD adjusting nut, CCD adjusting nut holder, CCD, radium-shine, light source holder and light source, described CCD connecting plate is arranged on the left side of the Z axis module connecting plate of Z-axis mechanism, and CCD fixed head is vertically mounted on CCD connecting plate front end; Described CCD mount pad is arranged on CCD fixed head top, the described radium-shine CCD fixed head bottom that is arranged on; Described CCD adjustable plate and CCD adjusting nut holder are arranged on CCD mount pad, and regulate the position of CCD adjustable plate on CCD mount pad by CCD adjusting nut; Described CCD is arranged on CCD adjustable plate; Described light source holder is arranged on CCD fixed head side, and described light source is arranged on light source holder.
As preferably, described X-axis mechanism comprises X-axis motor, X-axis shaft coupling, the linear module of X-axis, the linear module slide block of X-axis, X-axis slide rail, X-axis slide block, X-axis mounting bar, X-axis photoelectric sensor, X-axis sensing chip and connecting plate, the linear module of described X-axis and X-axis mounting bar are arranged on respectively on base, X-axis slide rail is arranged on supporting seat, and the linear module of X-axis, X-axis slide rail and X-axis mounting bar are parallel to each other; On described X-axis slide rail, coordinate X-axis slide block is installed, X-axis photoelectric sensor is installed on X-axis mounting bar; Described X-axis motor links together by X-axis shaft coupling and the linear module of X-axis, and the linear module slide block of X-axis is installed on the linear module of X-axis; The linear module slide block of described X-axis is being connected connecting plate with on X-axis slide block, and X-axis sensing chip is arranged on the sidepiece of the linear module slide block of X-axis.
As preferably, described Y-axis mechanism comprises y-axis motor, Y-axis belt pulley, the linear module of Y-axis, the linear module slide block of Y-axis, Y-axis mounting bar, Y-axis photoelectric sensor, Y-axis sensing chip and YZ module connecting plate, described y-axis motor is arranged on connecting plate by y-axis motor holder, the linear module of described Y-axis is arranged on connecting plate, the main shaft of described y-axis motor is connecting Y-axis belt pulley, the screw mandrel end of the linear module of Y-axis is provided with driven pulley, and Y-axis belt pulley and driven pulley link together by belt, on the linear module of Y-axis, coordinate the linear module slide block of Y-axis is installed, on the linear module slide block of Y-axis, connecting YZ module connecting plate, described Y-axis mounting bar is arranged on the linear module sidepiece of Y-axis, and Y-axis photoelectric sensor is arranged on Y-axis mounting bar, and Y-axis sensing chip is arranged on the side of the linear module slide block of Y-axis.
As preferably, described Z-axis mechanism comprises Z axis motor, Z axis shaft coupling, z axis module, Z axis module connecting plate, Z axis connecting plate, Z axis mounting bar, Z axis photoelectric sensor and Z axis sensing chip, described Z axis motor links together by Z axis shaft coupling and z axis module, on z axis module, connecting Z axis module connecting plate, and z axis module back is connecting Z axis connecting plate, and Z axis connecting plate and YZ module connecting plate link together; Described Z axis mounting bar is arranged on the side of Z axis module connecting plate, and described Z axis photoelectric sensor is arranged on Z axis mounting bar, and described Z axis sensing chip is arranged on the side of YZ module connecting plate.
As preferably, described Y-axis belt pulley outer cover has a belt pulley protective cover, and belt pulley protective cover is fixed on the right part of the linear module of Y-axis.
As preferably, described jaw has two, and described suction nozzle is positioned in the middle of two jaws.
The beneficial effects of the utility model are:
The utility model draw frame machine and calibration check mechanism are under the transport of X-axis mechanism, Y-axis mechanism and Z-axis mechanism, and arrival standard operation position can be drawn pad and be transported to product joint place pad is fitted on product.Radium-shine scanning position, the section at the required installation pad of radium-shine scanning product place is poor, can determine like this thickness of pad, CCD first aims at the installation site calibration of taking pictures, pad is sticked again, pasted the rear CCD calibration of again taking pictures, whether check is arranged on standard installation site.
The utility model air cylinder driven can drive suction nozzle and jaw to move up and down in vertical direction, suction nozzle and jaw can be transported to standard operation position; Slide unit air cylinder driven can be controlled the lifting of suction nozzle; Jaw air cylinder driven can be controlled the closure of jaw and open.The present invention can draw product and step up product by jaw, ensures so not come off in Product transport process, transports steadily reliably, can drive product to install to normal place, and its operating efficiency is high, has improved product quality.
Brief description of the drawings:
Below in conjunction with accompanying drawing, the utility model is described further:
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the front view of Fig. 1;
Fig. 3 is the top view of Fig. 1;
Fig. 4 is the structural representation of Z-axis mechanism of the present utility model, draw frame machine and calibration check mechanism;
Fig. 5 is the right view of Fig. 4;
Fig. 6 is the structural representation of the suction nozzle body in Fig. 4;
Fig. 7 is the front view of Fig. 6.
Detailed description of the invention:
Embodiment, is shown in accompanying drawing 1~7, a kind of lamination machinery mobile phone structure, and it comprises base 1, supporting seat 2, X-axis mechanism I, Y-axis mechanism II, Z-axis mechanism III, draw frame machine IV and calibration check mechanism V, described X-axis mechanism is arranged on base and supporting seat; Described Y-axis mechanism is arranged in X-axis mechanism; Described Z-axis mechanism is arranged in Y-axis mechanism, and described draw frame machine and calibration check mechanism are arranged on Z-axis mechanism.
Described X-axis mechanism comprises X-axis motor 3, X-axis shaft coupling 4, the linear module 5 of X-axis, the linear module slide block 6 of X-axis, X-axis slide rail 7, X-axis slide block 8, X-axis mounting bar 9, X-axis photoelectric sensor 10, X-axis sensing chip 11 and connecting plate 12, the linear module of described X-axis and X-axis mounting bar are arranged on respectively on base, X-axis slide rail is arranged on supporting seat, and the linear module of X-axis, X-axis slide rail and X-axis mounting bar are parallel to each other; On described X-axis slide rail, coordinate X-axis slide block is installed, X-axis photoelectric sensor is installed on X-axis mounting bar; Described X-axis motor links together by X-axis shaft coupling and the linear module of X-axis, and the linear module slide block of X-axis is installed on the linear module of X-axis; The linear module slide block of described X-axis is being connected connecting plate with on X-axis slide block, and X-axis sensing chip is arranged on the sidepiece of the linear module slide block of X-axis.
Described X-axis motor drives, and can drive the linear module slide block of X-axis to move around on the linear module of X-axis, thereby connecting plate can be moved in X-direction, and displacement is determined by X-axis photoelectric sensor.
Described Y-axis mechanism comprises y-axis motor 13, Y-axis belt pulley 14, the linear module 15 of Y-axis, the linear module slide block 16 of Y-axis, Y-axis mounting bar 17, Y-axis photoelectric sensor 18, Y-axis sensing chip 19 and YZ module connecting plate 20, described y-axis motor is arranged on connecting plate by y-axis motor holder, the linear module of described Y-axis is arranged on connecting plate, the main shaft of described y-axis motor is connecting Y-axis belt pulley, the screw mandrel end of the linear module of Y-axis is provided with driven pulley, and Y-axis belt pulley and driven pulley link together by belt, on the linear module of Y-axis, coordinate the linear module slide block of Y-axis is installed, on the linear module slide block of Y-axis, connecting YZ module connecting plate, described Y-axis mounting bar is arranged on the linear module sidepiece of Y-axis, and Y-axis photoelectric sensor is arranged on Y-axis mounting bar, and Y-axis sensing chip is arranged on the side of the linear module slide block of Y-axis.Described Y-axis belt pulley outer cover has a belt pulley protective cover, and belt pulley protective cover is fixed on the right part of the linear module of Y-axis.
Described y-axis motor drives the rotation of Y-axis belt pulley, drive the screw mandrel rotation that can drive the linear module of Y-axis by belt, the linear module slide block of Y-axis is moved around on the linear module of Y-axis, thereby YZ module connecting plate can be moved in Y direction, displacement is determined by Y-axis photoelectric sensor.
Described Z-axis mechanism comprises Z axis motor 21, Z axis shaft coupling 22, z axis module 23, Z axis module connecting plate 24, Z axis connecting plate 25, Z axis mounting bar 26, Z axis photoelectric sensor 27 and Z axis sensing chip 28, described Z axis motor links together by Z axis shaft coupling and z axis module, on z axis module, connecting Z axis module connecting plate, and z axis module back is connecting Z axis connecting plate, and Z axis connecting plate and YZ module connecting plate link together; Described Z axis mounting bar is arranged on the side of Z axis module connecting plate, and described Z axis photoelectric sensor is arranged on Z axis mounting bar, and described Z axis sensing chip is arranged on the side of YZ module connecting plate.
Described Z axis motor drives, and can drive Z axis module connecting plate to move around on z axis module, thereby Z axis module connecting plate can be moved in Z-direction, and displacement is determined by Z axis photoelectric sensor.
Described draw frame machine comprises suction nozzle installing plate 29 and suction nozzle body VI, suction nozzle body comprises cylinder holder 30, holder 31, cylinder 32, movable plate 33, guide pillar 34, lifting platform 35, joint pin 36, connecting plate 37, slide unit cylinder block 38, slide unit cylinder 39, suction nozzle 40, jaw cylinder 41 and jaw 42, described suction nozzle installing plate is arranged on the Z axis module connecting plate of Z-axis mechanism, on described suction nozzle installing plate, cylinder holder is installed, suction nozzle installing plate lower end is vertically installed with holder; On described cylinder holder, cylinder is installed, the piston-rod lower end of described cylinder is connected with movable plate; Described movable plate lower end is provided with lifting platform by guide pillar, and lifting platform is cylindrical structural, and lifting platform center is provided with a through hole, connects and fixes a joint pin in through hole, and joint pin is connecting connecting plate through its lower end of lifting platform; Described holder is provided with a square slotted eye, and connecting plate bottom is passed from square slotted eye, and connecting plate lower end is connecting slide unit cylinder block; In described slide unit cylinder block, slide unit cylinder is housed, under slide unit cylinder, suction nozzle is installed; The side of described slide unit cylinder block is provided with jaw cylinder, under jaw cylinder, is connected with jaw, and jaw has two, and described suction nozzle is positioned in the middle of two jaws.
Described calibration check mechanism comprises CCD connecting plate 43, CCD fixed head 44, CCD mount pad 45, CCD adjustable plate 46, CCD adjusting nut 47, CCD adjusting nut holder 48, CCD49, radium-shine 50, light source holder 51 and light source 52, described CCD connecting plate is arranged on the left side of the Z axis module connecting plate of Z-axis mechanism, and CCD fixed head is vertically mounted on CCD connecting plate front end; Described CCD mount pad is arranged on CCD fixed head top, the described radium-shine CCD fixed head bottom that is arranged on; Described CCD adjustable plate and CCD adjusting nut holder are arranged on CCD mount pad, and regulate the position of CCD adjustable plate on CCD mount pad by CCD adjusting nut; Described CCD is arranged on CCD adjustable plate; Described light source holder is arranged on CCD fixed head side, and described light source is arranged on light source holder.
The utility model course of work: draw frame machine and calibration check mechanism are in X-axis mechanism, under the transport of Y-axis mechanism and Z-axis mechanism, arrive product top, CCD is for calibration, radium-shine scanning position, the section at the required installation pad of radium-shine scanning product place is poor, can determine like this thickness of pad, then draw frame machine drives suction nozzle to be transported to charging tray top, suction nozzle is drawn required pad, in X-axis mechanism, under the transport of Y-axis mechanism and Z-axis mechanism, be transported to the pad place that need to fit of product place, CCD first aims at the installation site calibration of taking pictures, again pad is sticked, paste the rear CCD calibration of again taking pictures, whether check is arranged on standard installation site.
Above-described embodiment is the specific descriptions that the utility model is carried out; just the utility model is further described; can not be interpreted as the restriction to the utility model protection domain, those skilled in the art according to the content of above-mentioned utility model make some nonessential improvement and adjust all fall into protection domain of the present utility model within.
Claims (6)
1. a lamination machinery mobile phone structure, is characterized in that: it comprises base, supporting seat, X-axis mechanism, Y-axis mechanism, Z-axis mechanism, draw frame machine and calibration check mechanism, and described X-axis mechanism is arranged on base and supporting seat; Described Y-axis mechanism is arranged in X-axis mechanism; Described Z-axis mechanism is arranged in Y-axis mechanism; Described draw frame machine comprises suction nozzle installing plate and suction nozzle body, suction nozzle body comprises cylinder holder, holder, cylinder, movable plate, guide pillar, lifting platform, joint pin, connecting plate, slide unit cylinder block, slide unit cylinder, suction nozzle, jaw cylinder and jaw, described suction nozzle installing plate is arranged on the Z axis module connecting plate of Z-axis mechanism, on described suction nozzle installing plate, cylinder holder is installed, suction nozzle installing plate lower end is vertically installed with holder; On described cylinder holder, cylinder is installed, the piston-rod lower end of described cylinder is connected with movable plate; Described movable plate lower end is provided with lifting platform by guide pillar, and lifting platform is cylindrical structural, and lifting platform center is provided with a through hole, connects and fixes a joint pin in through hole, and joint pin is connecting connecting plate through its lower end of lifting platform; Described holder is provided with a square slotted eye, and connecting plate bottom is passed from square slotted eye, and connecting plate lower end is connecting slide unit cylinder block; In described slide unit cylinder block, slide unit cylinder is housed, under slide unit cylinder, suction nozzle is installed; The side of described slide unit cylinder block is provided with jaw cylinder, under jaw cylinder, is connected with jaw;
Described calibration check mechanism comprises CCD connecting plate, CCD fixed head, CCD mount pad, CCD adjustable plate, CCD adjusting nut, CCD adjusting nut holder, CCD, radium-shine, light source holder and light source, described CCD connecting plate is arranged on the left side of the Z axis module connecting plate of Z-axis mechanism, and CCD fixed head is vertically mounted on CCD connecting plate front end; Described CCD mount pad is arranged on CCD fixed head top, the described radium-shine CCD fixed head bottom that is arranged on; Described CCD adjustable plate and CCD adjusting nut holder are arranged on CCD mount pad, and regulate the position of CCD adjustable plate on CCD mount pad by CCD adjusting nut; Described CCD is arranged on CCD adjustable plate; Described light source holder is arranged on CCD fixed head side, and described light source is arranged on light source holder.
2. a kind of lamination machinery mobile phone structure according to claim 1, it is characterized in that: described X-axis mechanism comprises X-axis motor, X-axis shaft coupling, the linear module of X-axis, the linear module slide block of X-axis, X-axis slide rail, X-axis slide block, X-axis mounting bar, X-axis photoelectric sensor, X-axis sensing chip and connecting plate, the linear module of described X-axis and X-axis mounting bar are arranged on respectively on base, X-axis slide rail is arranged on supporting seat, and the linear module of X-axis, X-axis slide rail and X-axis mounting bar are parallel to each other; On described X-axis slide rail, coordinate X-axis slide block is installed, X-axis photoelectric sensor is installed on X-axis mounting bar; Described X-axis motor links together by X-axis shaft coupling and the linear module of X-axis, and the linear module slide block of X-axis is installed on the linear module of X-axis; The linear module slide block of described X-axis is being connected connecting plate with on X-axis slide block, and X-axis sensing chip is arranged on the sidepiece of the linear module slide block of X-axis.
3. a kind of lamination machinery mobile phone structure according to claim 2, it is characterized in that: described Y-axis mechanism comprises y-axis motor, Y-axis belt pulley, the linear module of Y-axis, the linear module slide block of Y-axis, Y-axis mounting bar, Y-axis photoelectric sensor, Y-axis sensing chip and YZ module connecting plate, described y-axis motor is arranged on connecting plate by y-axis motor holder, the linear module of described Y-axis is arranged on connecting plate, the main shaft of described y-axis motor is connecting Y-axis belt pulley, the screw mandrel end of the linear module of Y-axis is provided with driven pulley, and Y-axis belt pulley and driven pulley link together by belt, on the linear module of Y-axis, coordinate the linear module slide block of Y-axis is installed, on the linear module slide block of Y-axis, connecting YZ module connecting plate, described Y-axis mounting bar is arranged on the linear module sidepiece of Y-axis, and Y-axis photoelectric sensor is arranged on Y-axis mounting bar, and Y-axis sensing chip is arranged on the side of the linear module slide block of Y-axis.
4. a kind of lamination machinery mobile phone structure according to claim 3, it is characterized in that: described Z-axis mechanism comprises Z axis motor, Z axis shaft coupling, z axis module, Z axis module connecting plate, Z axis connecting plate, Z axis mounting bar, Z axis photoelectric sensor and Z axis sensing chip, described Z axis motor links together by Z axis shaft coupling and z axis module, on z axis module, connecting Z axis module connecting plate, and z axis module back is connecting Z axis connecting plate, and Z axis connecting plate and YZ module connecting plate link together; Described Z axis mounting bar is arranged on the side of Z axis module connecting plate, and described Z axis photoelectric sensor is arranged on Z axis mounting bar, and described Z axis sensing chip is arranged on the side of YZ module connecting plate.
5. a kind of lamination machinery mobile phone structure according to claim 3, is characterized in that: described Y-axis belt pulley outer cover has a belt pulley protective cover, and belt pulley protective cover is fixed on the right part of the linear module of Y-axis.
6. a kind of lamination machinery mobile phone structure according to claim 1, is characterized in that: described jaw has two, and described suction nozzle is positioned in the middle of two jaws.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420312163.9U CN203901280U (en) | 2014-06-12 | 2014-06-12 | Pasting mechanical arm mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420312163.9U CN203901280U (en) | 2014-06-12 | 2014-06-12 | Pasting mechanical arm mechanism |
Publications (1)
Publication Number | Publication Date |
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CN203901280U true CN203901280U (en) | 2014-10-29 |
Family
ID=51775575
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201420312163.9U Withdrawn - After Issue CN203901280U (en) | 2014-06-12 | 2014-06-12 | Pasting mechanical arm mechanism |
Country Status (1)
Country | Link |
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CN (1) | CN203901280U (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104002293A (en) * | 2014-06-12 | 2014-08-27 | 苏州乔岳软件有限公司 | Attachment mechanical arm mechanism |
CN106584435A (en) * | 2016-12-29 | 2017-04-26 | 安徽智森电子科技有限公司 | Automatic feeding manipulator mechanism |
CN105763705B (en) * | 2016-04-28 | 2018-09-21 | 北京易诚高科科技发展有限公司 | A kind of two fingers manipulator for mobile phone test |
CN110421398A (en) * | 2019-08-05 | 2019-11-08 | 华晓精密工业(苏州)有限公司 | Push and pull clamp system |
-
2014
- 2014-06-12 CN CN201420312163.9U patent/CN203901280U/en not_active Withdrawn - After Issue
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104002293A (en) * | 2014-06-12 | 2014-08-27 | 苏州乔岳软件有限公司 | Attachment mechanical arm mechanism |
CN105763705B (en) * | 2016-04-28 | 2018-09-21 | 北京易诚高科科技发展有限公司 | A kind of two fingers manipulator for mobile phone test |
CN106584435A (en) * | 2016-12-29 | 2017-04-26 | 安徽智森电子科技有限公司 | Automatic feeding manipulator mechanism |
CN110421398A (en) * | 2019-08-05 | 2019-11-08 | 华晓精密工业(苏州)有限公司 | Push and pull clamp system |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20141029 Effective date of abandoning: 20160907 |
|
C25 | Abandonment of patent right or utility model to avoid double patenting |