CN108705399B - Laminated polaroid special-shaped edging machine with movable processing clamp - Google Patents

Laminated polaroid special-shaped edging machine with movable processing clamp Download PDF

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Publication number
CN108705399B
CN108705399B CN201810371624.2A CN201810371624A CN108705399B CN 108705399 B CN108705399 B CN 108705399B CN 201810371624 A CN201810371624 A CN 201810371624A CN 108705399 B CN108705399 B CN 108705399B
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CN
China
Prior art keywords
positioning
polaroid
processing
grinding
frame
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CN201810371624.2A
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Chinese (zh)
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CN108705399A (en
Inventor
聂均宁
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Dongguan Ruibo Artificial Intelligence Technology Co ltd
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Dongguan Ruibo Artificial Intelligence Technology Co ltd
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B9/00Machines or devices designed for grinding edges or bevels on work or for removing burrs; Accessories therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • B24B41/06Work supports, e.g. adjustable steadies

Abstract

A special-shaped edge grinding machine for laminated polaroids with movable processing clamps can process a plurality of polaroids which are placed in a laminated mode at one time. The utility model provides a range upon range of polaroid dysmorphism edging machine with remove processing anchor clamps includes the frame and installs grinding and cut device and processing anchor clamps in the frame, and processing anchor clamps are used for the centre gripping to fix a position into the range upon range of polaroid, and grinding and cut the device and be used for processing the range upon range of polaroid on the processing anchor clamps. According to the invention, the grinding and cutting device, the processing clamp and the correction position are arranged, the grinding and cutting device can move up and down and left and right, the processing clamp comprises two positioning clamps which are arranged oppositely, and the two positioning clamps can be used for positioning the polaroid alternately, so that the grinding and cutting device can process the whole laminated polaroid, the correction position device can process the whole laminated polaroid, and therefore, the uniformity and the precision of processing the polaroid can be improved, and in addition, the design of the guide chute can avoid waste accumulation and influence the processing of the polaroid. The invention has strong practicability and has stronger popularization significance.

Description

Laminated polaroid special-shaped edging machine with movable processing clamp
Technical Field
The invention relates to the technical field of polaroid processing, in particular to a laminated polaroid special-shaped edging machine with a movable processing clamp.
Background
The polaroid is an optical material compounded by multiple layers of high polymer materials and has the function of generating polarized light, is a key part of a liquid crystal panel, has a wide application range, can be used as a polarized light material on a liquid crystal display, can be used as a filter of sunglasses, anti-dazzling goggles and photographic equipment, can be used for anti-dazzling treatment of an automobile headlight, can be used as a light quantity regulator and the like, and also relates to industries of a polarized light microscope, special medical glasses and the like. In the production and processing process of the polaroid, an important process is grinding, and the purpose of grinding is to remove glue overflow phenomenon and residual burrs on a tangential plane and improve the size and angle precision. However, most of the conventional edge grinding machines can only process one polaroid at a time, and the processing efficiency is low; in addition, a small number of edge grinding machines can process a plurality of polaroids at one time, however, the edge grinding machine is more suitable for processing polaroids with larger and balanced four sides, and the polaroids with small and long sizes have the defects of unstable positioning, inconvenient processing and poor processing precision.
Disclosure of Invention
Therefore, the invention aims to provide a laminated polaroid special-shaped edging machine with a movable processing clamp, so as to solve the problems of unstable positioning, inconvenient processing and poor processing precision of the conventional edging machine.
In order to achieve the above purpose, the invention mainly adopts the following technical scheme:
the utility model provides a lamination type polaroid dysmorphism edging machine with remove processing anchor clamps for processing the polaroid of piling up and placing, a lamination type polaroid dysmorphism edging machine with remove processing anchor clamps includes frame and installs grinding and cutting device and processing anchor clamps on the frame; the machine frame comprises a base and a mounting frame arranged on the top surface of the base, and the grinding and cutting device is arranged on the mounting frame and can move along the horizontal and vertical directions of the mounting frame; a positioning slot hole is formed in the middle of the top surface of the base, and guide grooves are formed in the bases on two sides of the positioning slot hole; the mounting frame is also provided with a positioning device, the positioning device comprises positioning plates which extend in three directions of X, Y, Z shafts respectively, and the three positioning plates are enclosed to form a three-dimensional right angle; the processing clamp comprises a shell, a positioning clamp, a workbench, a third guide rail, a fourth guide rail and a main driving device; the shell is arranged in the base, the workbench and the two positioning clamps are arranged on the shell and extend to the top surface of the base through the positioning long holes, and the two positioning clamps are respectively arranged on two sides of the workbench; the third guide rail is arranged in the shell, the bottom ends of the two positioning clamps are arranged on the third guide rail and can respectively move along the third guide rail, and the two positioning clamps can also respectively lift and move up and down; the fourth guide rail is arranged below the shell and is arranged in the base, a clamping part is arranged at the bottom of the shell and is arranged on the fourth guide rail, the main driving device is arranged on the bottom surface of the shell, and the main driving device drives the shell to move along the fourth guide rail.
Further, the frame also comprises a shell, the shell is arranged on the base, the base and the shell enclose to form a containing space, and the mounting frame, the grinding and cutting device and the processing clamp are arranged in the containing space.
Further, the mounting frame is arranged on one side of the base and extends along the front-back direction of the base, and the mounting frame comprises a support column and a cross beam arranged at the top ends of the two support columns; the inner side surface of the cross beam is provided with first guide rails, and the grinding and cutting device is clamped on the two first guide rails and can move along the first guide rails.
Further, the grinding and cutting device comprises a fixing frame and a first driving device; the fixing frame is provided with a buckling part which is buckled and installed on the first guide rail on the fixing frame; the first driving device is arranged on the fixing frame and drives the fixing frame to move along the first guide rail.
Further, the grinding and cutting device further comprises two limiting frames which are respectively arranged at two sides of the fixing frame and are arranged on the mounting frame; the fixing frame moves in the limiting frame.
Further, the grinding and cutting device further comprises a cutter device and a second driving device, wherein the cutter device is arranged on the fixing frame, the second driving device is arranged on the cutter device, and the second driving device drives the cutter device to move up and down along the fixing frame.
In summary, according to the invention, the grinding and cutting device, the processing clamp and the correction position are arranged, the grinding and cutting device can move up and down and left and right, the processing clamp comprises the first positioning clamp and the second positioning clamp, and the first positioning clamp and the second positioning clamp are mutually staggered to position the polaroid, so that the grinding and cutting device can process the integral polaroid, the correction position device can process the integral polaroid, and therefore uniformity and precision of processing the polaroid can be improved, and in addition, due to the design of the guide chute, waste accumulation can be avoided, and processing of the polaroid is affected. The invention has strong practicability and has stronger popularization significance.
Drawings
FIG. 1 is a schematic view of a laminated polarizer profile edge grinder with a movable processing jig according to a preferred embodiment of the present invention;
FIG. 2 is a schematic view showing an internal structure of the edging machine of FIG. 1;
FIG. 3 is a schematic view of the mounting frame and the abrasive cutting device of FIG. 2;
FIG. 4 is a schematic view of another angle structure of the mounting frame and the abrasive cutting device of FIG. 3;
FIG. 5 is a schematic view of the processing fixture of FIG. 2;
fig. 6 is a schematic structural diagram of the first positioning fixture and the second positioning fixture in fig. 5.
Detailed Description
The present invention will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present invention more apparent.
As shown in fig. 1 to 6, the present invention provides a special-shaped edge grinder for a laminated polarizer with a movable processing jig, which can process a plurality of polarizers placed in a laminated manner at one time. The special-shaped edge grinding machine for the laminated polaroid with the movable processing clamp comprises a frame 10, a grinding and cutting device 20 and a processing clamp 30, wherein the grinding and cutting device 20 and the processing clamp 30 are arranged on the frame 10, the processing clamp 30 is used for clamping and positioning the laminated polaroid, and the grinding and cutting device 20 is used for processing the laminated polaroid on the processing clamp 30.
The frame 10 comprises a base 11, a mounting frame 12, a shell 13 and supporting feet 14, wherein the mounting frame 12 and the shell 13 are arranged on the base 11, the base 11 and the shell 13 enclose to form a containing space, and the mounting frame 12, the grinding and cutting device 20 and the processing clamp 30 are arranged in the containing space, wherein the grinding and cutting device 20 is arranged on the mounting frame 12. An opening door is arranged in the middle of the right front of the base 11, a detachable waste box (not shown) is arranged in the base 11, the waste box is used for containing waste generated by processing the polaroid by the grinding and cutting device 20, and the waste box can be taken out from the base.
The mounting frame 12 is disposed at one side of the base 11 and extends along the front-rear direction of the base 11, and the mounting frame 12 includes a support 15 and a cross beam 16 erected at the top ends of the two support 15. The inner side surface of the cross beam 16 is provided with two first guide rails 17 which are arranged at intervals up and down, and the grinding and cutting device 20 is clamped on the two first guide rails 17 and can move along the first guide rails 17. An operation window corresponding to the grinding and cutting device 20 and the processing clamp 30 is arranged right in front of the shell 13, and a control panel is arranged on one side face of the operation window and is used for setting processing parameters. In addition, the supporting feet 14 are mounted on the bottom surface of the base 11.
A partition plate 18 is further arranged above the base 11, and the partition plate 18 is fixedly arranged on the inner side surfaces of the mounting frame 12 and the shell 13. The middle of the partition 18 is provided with a cross-shaped perforation comprising a longer transverse perforation and shorter and longitudinal perforations, and the machining fixture 30 is arranged to penetrate the transverse perforation and to be movable along the transverse perforation. The outer side surface of the partition 18 is provided with a guide groove 19, and the guide groove 19 is used for guiding waste materials generated by processing into a waste material box in the base 11.
The grinding and cutting device 20 comprises a fixing frame 21, a limiting frame 22, a cutter device 23, a first driving device 24 and a second driving device 25. The fixing frame 21 is provided with a fastening part 26, and the fastening part 26 is fastened and mounted on the first guide rail 17 on the mounting frame 12. The first driving device 24 is mounted on the fixing frame 21, and the first driving device 24 is used for driving the fixing frame 21 to move along the first guide rail 21. The number of the limiting frames 22 is two, the two limiting frames 22 are respectively arranged on two sides of the fixing frame 21, and the limiting frames 22 are locked on the mounting frame 12 through fasteners. The limiting frame 22 further mounts the fixing frame 21 on the positioning frame 21 to prevent the fixing frame 21 from falling off, and the fixing frame 21 moves in the limiting frame 22 while moving along the first guide rail 17.
The side surface of the fixing frame 21 far away from the mounting frame 12 is provided with a second guide rail 27, the cutter device 23 is arranged on the second guide rail 27, the second driving device 25 is arranged on the cutter device 23, and the second driving device 25 drives the cutter device 23 to move up and down along the second guide rail. Furthermore, a positioning device 28 is further provided on the fixing frame 21 outside the cutter device 23, the positioning device 28 includes positioning plates 29 having three directions of X, Y, Z axes, and the three positioning plates 29 enclose a three-dimensional right angle. In this embodiment, the positioning device 28 is disposed on the front side of the frame 10 of the cutter device 23.
The processing fixture 30 comprises a housing 31, a first positioning fixture 32, a second positioning fixture 33, a workbench 34, a third guide rail 35, a fourth guide rail 36 and a main driving device 37, wherein the first positioning fixture 32, the second positioning fixture 33, the workbench 34 and the third guide rail are arranged on the housing 31. The workbench 34 is disposed in the middle of the top surface of the housing 31, and the first positioning fixture 32 and the second positioning fixture 33 are respectively disposed on two sides of the workbench 34. The third guide rail 35 is disposed in the housing 31, and the first positioning fixture 32 and the second positioning fixture 32 are both movable along the third guide rail 35. The fourth guide rail 36 is disposed below the housing 31 and is mounted in the base 11, an engaging portion 38 is disposed at the bottom of the housing 31, the engaging portion 38 is mounted on the fourth guide rail 36, the main driving device 37 is mounted on the bottom surface of the housing 10, and the main driving device 37 drives the housing 31 to move along the fourth guide rail 36.
The table 34 is mounted to the housing 31 by fasteners, and the table 34 is disposed in correspondence with the longitudinal perforations in the partition 18 and spaced up and down from the partition 18. The table 34 is movable relative to the partition 18 in the direction of its transverse perforations.
The first positioning fixture 32 includes a first positioning arm 321, a third driving device 322 and a fourth driving device 323, the first positioning arm 321 is disposed in the transverse through hole of the partition 18, the third driving device 322 is disposed at the bottom of the first positioning arm 321 and is located in the housing 31, and the fourth driving device 323 is mounted on the third driving device 322. The third driving device 322 drives the first positioning arm 321 to move up and down, and the fourth driving device 323 drives the first positioning arm 321 to move left and right along the third rail 35.
The second positioning fixture 33 includes a second positioning arm 331, a fifth driving device 332, and a sixth driving device 333, wherein the second positioning arm 331 is disposed in the transverse through hole of the partition 18, the fifth driving device 332 is disposed at the bottom of the second positioning arm 331 and is located in the housing 31, and the sixth driving device 333 is disposed on the fifth driving device 332. The fifth driving device 332 drives the second positioning arm 331 to move up and down, and the sixth driving device 333 drives the second positioning arm 331 to move left and right along the third rail 35.
In operation, the stacked polarizer is placed on the workbench 34, and the first driving device 24 drives the grinding and cutting device 20 to move a set distance towards the rear side of the frame 10; the main driving device 37 moves the workbench 34 towards the grinding and cutting device 20, so that the innermost corner of the stacked polarizer is adapted to the inner corner of the position correcting device 28, and the position correcting device 28 corrects the stacked polarizer, thereby avoiding uneven processing. After the calibration, the fifth driving device 332 of the second positioning fixture 33 drives the second positioning arm 331 to rise to a certain height, the sixth driving device 333 drives the second positioning arm 331 to move towards the polarizer, and then the fifth driving device 332 drives the second positioning arm 331 to move downwards, so that the second positioning arm 331 is pressed on the polarizer, and the positioning of the polarizer is achieved.
The main driving device 37 moves the positioned processing clamp 30 towards the direction away from the grinding and cutting device until the cutter on the cutter device 23 is opposite to the side to be processed of the polaroid, the second driving device 25 drives the cutter device 23 to move downwards until the cutter device is outside the side to be processed, and the first driving device 24 drives the cutter device 23 to move to process the side of the polaroid. When the edge of the polarizer on one side of the second positioning arm 331 needs to be processed, the cutter device 23 pauses the processing, the third driving device 322 drives the first positioning arm 321 to rise upwards, the fourth driving device 323 drives the first positioning arm 321 to move towards the polarizer, and the third driving device 322 drives the first positioning arm 321 to move downwards to press on the top surface of the polarizer; then, the fifth driving device 332 drives the second positioning arm 331 to move upwards to be away from the polarizer, the sixth driving device 333 drives the second positioning arm 331 to move towards the direction away from the polarizer, and finally the cutter device 23 processes the side edge of the polarizer on one side of the second positioning arm 331 until the whole lamination of the polarizer is completed.
In summary, according to the invention, the grinding and cutting device, the processing clamp and the correction position are arranged, the grinding and cutting device can move up and down and left and right, the processing clamp comprises the first positioning clamp and the second positioning clamp, and the first positioning clamp and the second positioning clamp are mutually staggered to position the polaroid, so that the grinding and cutting device can process the integral polaroid, the correction position device can process the integral polaroid, and therefore uniformity and precision of processing the polaroid can be improved, and in addition, due to the design of the guide chute, waste accumulation can be avoided, and processing of the polaroid is affected. The invention has strong practicability and has stronger popularization significance.
The above description is only one preferred embodiment of the present invention and is not intended to limit the present invention, but any modifications, equivalents, improvements, etc. falling within the spirit and principles of the present invention should be included in the scope of the present invention.

Claims (6)

1. A range upon range of polaroid dysmorphism edging machine with remove adds clamping apparatus for processing range upon range of polaroid of placing, its characterized in that: the laminated polaroid special-shaped edging machine with the movable processing clamp comprises a frame, and a milling and cutting device and a processing clamp which are arranged on the frame; the machine frame comprises a base and a mounting frame arranged on the top surface of the base, and the grinding and cutting device is arranged on the mounting frame and can move along the horizontal and vertical directions of the mounting frame; a positioning slot hole is formed in the middle of the top surface of the base, and guide grooves are formed in the bases on two sides of the positioning slot hole; the mounting frame is also provided with a positioning device, the positioning device comprises positioning plates which extend in three directions of X, Y, Z shafts respectively, and the three positioning plates are enclosed to form a three-dimensional right angle; the processing clamp comprises a shell, a positioning clamp, a workbench, a third guide rail, a fourth guide rail and a main driving device; the shell is arranged in the base, the workbench and the two positioning clamps are arranged on the shell and extend to the top surface of the base through the positioning long holes, and the two positioning clamps are respectively arranged on two sides of the workbench; the third guide rail is arranged in the shell, the bottom ends of the two positioning clamps are arranged on the third guide rail and can respectively move along the third guide rail, and the two positioning clamps can also respectively lift and move up and down; the fourth guide rail is arranged below the shell and is arranged in the base, a clamping part is arranged at the bottom of the shell and is arranged on the fourth guide rail, the main driving device is arranged on the bottom surface of the shell, and the main driving device drives the shell to move along the fourth guide rail.
2. The profiled edge grinder for laminated polarizer with movable processing clamp as claimed in claim 1, wherein: the frame still includes the shell, the shell is all installed on the base, and the base encloses with the shell and closes and form a accommodation space, mounting bracket, mill cutting device and processing anchor clamps are all installed in this accommodation space.
3. The profiled edge grinder for laminated polarizer with movable processing clamp as claimed in claim 1, wherein: the mounting frame is arranged on one side of the base and extends along the front-back direction of the base, and comprises a support column and a cross beam erected at the top ends of the two support columns; the inner side surface of the cross beam is provided with first guide rails, and the grinding and cutting device is clamped on the two first guide rails and can move along the first guide rails.
4. A laminated polarizer profiled edging machine with mobile tooling as claimed in claim 3, characterized in that: the grinding and cutting device comprises a fixing frame and a first driving device; the fixing frame is provided with a buckling part which is buckled and installed on the first guide rail on the fixing frame; the first driving device is arranged on the fixing frame and drives the fixing frame to move along the first guide rail.
5. A laminated polarizer profiled edging machine with mobile tooling as claimed in claim 3, characterized in that: the grinding and cutting device further comprises two limiting frames which are respectively arranged on two sides of the fixing frame and are arranged on the mounting frame; the fixing frame moves in the limiting frame.
6. A laminated polarizer profiled edging machine with mobile tooling as claimed in claim 3, characterized in that: the grinding and cutting device further comprises a cutter device and a second driving device, wherein the cutter device is arranged on the fixing frame, the second driving device is arranged on the cutter device, and the second driving device drives the cutter device to move up and down along the fixing frame.
CN201810371624.2A 2018-04-24 2018-04-24 Laminated polaroid special-shaped edging machine with movable processing clamp Active CN108705399B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810371624.2A CN108705399B (en) 2018-04-24 2018-04-24 Laminated polaroid special-shaped edging machine with movable processing clamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810371624.2A CN108705399B (en) 2018-04-24 2018-04-24 Laminated polaroid special-shaped edging machine with movable processing clamp

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CN108705399A CN108705399A (en) 2018-10-26
CN108705399B true CN108705399B (en) 2023-08-04

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1148357A (en) * 1995-03-07 1997-04-23 花王株式会社 Chamfer working apparatus for substrate
CN202292328U (en) * 2011-10-21 2012-07-04 厦门弘宇科光电股份有限公司 Fixture of edging jig of polaroid
TW201343328A (en) * 2011-12-12 2013-11-01 Okamoto Machine Tool Works Composite chamfering processing device of columnar ingot, and method for performing cylinder grinding work and notch grinding work on work by using the same
CN104308689A (en) * 2014-10-29 2015-01-28 深圳市新昂慧科技有限公司 Automatic edge grinding machine for polarizer
CN106216772A (en) * 2016-08-31 2016-12-14 翰博高新材料(合肥)股份有限公司 A kind of cutter head of polaroid edging board

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1148357A (en) * 1995-03-07 1997-04-23 花王株式会社 Chamfer working apparatus for substrate
CN202292328U (en) * 2011-10-21 2012-07-04 厦门弘宇科光电股份有限公司 Fixture of edging jig of polaroid
TW201343328A (en) * 2011-12-12 2013-11-01 Okamoto Machine Tool Works Composite chamfering processing device of columnar ingot, and method for performing cylinder grinding work and notch grinding work on work by using the same
CN104308689A (en) * 2014-10-29 2015-01-28 深圳市新昂慧科技有限公司 Automatic edge grinding machine for polarizer
CN106216772A (en) * 2016-08-31 2016-12-14 翰博高新材料(合肥)股份有限公司 A kind of cutter head of polaroid edging board

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