CN113805362A - Device is changed to intelligence glasses lens - Google Patents

Device is changed to intelligence glasses lens Download PDF

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Publication number
CN113805362A
CN113805362A CN202110964355.2A CN202110964355A CN113805362A CN 113805362 A CN113805362 A CN 113805362A CN 202110964355 A CN202110964355 A CN 202110964355A CN 113805362 A CN113805362 A CN 113805362A
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China
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plate
fixedly installed
fixedly arranged
moving
motor
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CN202110964355.2A
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Chinese (zh)
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CN113805362B (en
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南银姬
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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C13/00Assembling; Repairing; Cleaning
    • G02C13/001Assembling; Repairing

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Ophthalmology & Optometry (AREA)
  • Optics & Photonics (AREA)
  • Eyeglasses (AREA)
  • Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)

Abstract

The invention discloses an intelligent glasses lens replacing device, which comprises a shell cover mechanism, a transverse moving walking mechanism, a longitudinal moving and taking mechanism, a rotating installation mechanism and a bottom lens taking mechanism, wherein the shell cover mechanism is a main body bearing mechanism, the middle of the shell cover mechanism comprises a lens rack and a dustproof cover, a handle is arranged on the side surface of the shell cover mechanism and can be manually carried, the transverse moving walking mechanism drives the longitudinal moving and taking mechanism to move transversely, the longitudinal moving and taking mechanism drives the rotating installation mechanism to move longitudinally, the rotating installation mechanism takes down lenses in a material area and puts the lenses into a glasses frame for installation, full-circle rotation can be carried out according to different placed positions so as to ensure that a correct installation angle is found, the bottom lens taking mechanism takes out the lenses from intelligent glasses and puts the lenses into a waste area so as to provide a precondition for lens replacement, the lenses of the intelligent glasses can be automatically replaced, and the mounting accuracy and efficiency are improved.

Description

Device is changed to intelligence glasses lens
Technical Field
The invention relates to the technical field of intelligent scientific and technological manufacturing equipment, in particular to an intelligent glasses lens replacing device.
Background
In intelligent science and technology manufacture equipment, intelligence eyes are a novel high-tech product welcomed by people, but because the change of the complicated and lens of design wherein, the artifical degree of difficulty of changing is high, and is long-time, suffers unable smooth equipment often to lead to the lens to break and glasses to damage, application number CN200100264514.9 has announced a glasses lens fixed knot and has constructed, and this structure has demonstrated the fixed of lens, but this technique can not be applicable to the change of intelligent glasses lens.
Disclosure of Invention
The invention provides an intelligent glasses lens replacing device aiming at the technical problems, which comprises a shell cover mechanism, a transverse moving walking mechanism, a longitudinal moving taking and placing mechanism, a rotating installation mechanism and a bottom taking mechanism.
The housing cover mechanism includes: a base pad and a base plate; the transverse moving mechanism comprises: a support column and a walking mounting plate; the vertical moving and placing mechanism comprises: longitudinally moving the connecting block and the right-angle seat; the rotation mounting mechanism of (1) comprises: longitudinally moving a connecting plate and a position sensor; the bottom of getting piece mechanism include: a jig mounting plate and a lower bottom plate; bed plate fixed mounting is on base pad foot, and support post fixed mounting is on the bed plate, indulges to move connecting block fixed mounting on the mounting panel of walking, indulges to move connecting plate fixed mounting on the right-angle seat, and position sensor fixed mounting is on indulging to move the connecting plate, and tool mounting panel fixed mounting is on base pad foot, and tool mounting panel fixed mounting is on the support column, and lower plate fixed mounting is on the bed plate.
Further, the shell cover mechanism also comprises a control box, a reset button, an emergency stop button, a start button, a side handle and a vertical plate supporting plate, feeding platform board, the material loading guide post, the raw materials lens, the warning light, flip hinge and dustproof flip, control box fixed mounting is on the bed plate, reset button fixed mounting is on the control box, emergency stop button fixed mounting is on the control box, start button fixed mounting is on the control box, side handle fixed mounting is on the control box, feeding platform board fixed mounting is in the riser backup pad, riser backup pad fixed mounting is on the bed plate, material loading guide post fixed mounting is on the feeding platform board, raw materials lens fixed mounting is on the material loading guide post, warning light fixed mounting is on the control box, flip hinge fixed mounting is on the control box, dustproof flip fixed mounting is on the flip hinge.
Further, the transverse moving mechanism further comprises a reinforcing cross beam, a moving side plate, a moving bottom plate, a moving guide beam, a moving lead screw, a guide lead screw seat, a motor installation block and a moving servo motor, wherein the reinforcing cross beam is fixedly installed on the supporting stand column, the moving side plate is fixedly installed on the reinforcing cross beam, the moving bottom plate is fixedly installed on the moving side plate, the moving guide beam is fixedly installed on the moving bottom plate, the moving lead screw is fixedly installed on the moving side plate, the guide lead screw seat is fixedly installed on the moving lead screw, the moving installation plate is fixedly installed on the guide lead screw seat, the motor installation block is fixedly installed on the moving guide beam, and the moving servo motor is fixedly installed on the motor installation block.
Further, the longitudinal moving taking and placing mechanism further comprises a longitudinal moving motor, a motor speed reducer, a follow-up rotor seat, a connecting reinforcing rib, a side balancing weight and a guiding unit, wherein the longitudinal moving motor is fixedly installed on the motor speed reducer, the motor speed reducer is fixedly installed on the longitudinal moving connecting block, the follow-up rotor seat is fixedly installed on the longitudinal moving connecting block, a right-angle seat is fixedly installed on the follow-up rotor seat, the connecting reinforcing rib is fixedly installed on the right-angle seat, the side balancing weight is fixedly installed on the longitudinal moving connecting block, and the guiding unit is fixedly installed on the motor speed reducer.
Further, the rotation installation mechanism further comprises a higher-level speed reducer, a higher-level servo motor, a middle-level motor installation plate, a middle-level motor, a lower-level motor installation plate, a lower-level motor, a lateral motor, a position control unit, a central dividing head, a dividing head connection plate and a bidirectional sucker, wherein the position sensor is fixedly installed on the longitudinal movement connection plate, the higher-level speed reducer is fixedly installed on the longitudinal movement connection plate, the higher-level servo motor is fixedly installed on the higher-level speed reducer, the middle-level motor is fixedly installed on the middle-level motor installation plate, the lower-level motor is fixedly installed on the lower-level motor installation plate, the lateral motor is fixedly installed on the central dividing head, the position control unit is fixedly installed on the lateral motor, the central dividing head is fixedly installed on the lower-level motor, the dividing head connection plate is fixedly installed on the central dividing head, and the bidirectional sucker is fixedly installed on the dividing head connection plate.
Further, the piece mechanism is got to bottom still includes the supporting shoe, intelligent glasses, the support column, lower rectangular plate, the lift riser, the connecting plate rotates, rotate the seat, the push rod cylinder, the slurcam, vacuum chuck and rotation cylinder down, intelligence glasses fixed mounting is on the supporting shoe, support column fixed mounting is on the tool mounting panel, lower rectangular plate fixed mounting is on the bottom plate down, lift riser fixed mounting is on lower rectangular plate, rotate connecting plate fixed mounting on the lift riser, it rotates on the connecting plate fixed mounting to rotate seat fixed mounting, push rod cylinder fixed mounting rotates on the seat, slurcam fixed mounting is on the push rod cylinder, vacuum chuck fixed mounting is on the slurcam down, it installs on the push rod cylinder to rotate cylinder fixed mounting.
Furthermore, the walking side plate is fixedly arranged on the reinforcing cross beam, and the position sensor is fixedly arranged on the longitudinal movement connecting plate.
Further, higher level servo motor fixed mounting is on higher level speed reducer, and tool mounting panel fixed mounting is on the base pad foot.
Further, lower vacuum chuck fixed mounting is on intelligent glasses, and two-way sucking disc fixed mounting is on intelligent glasses, and direction unit fixed mounting is on the side balancing weight.
Compared with the prior art, the invention has the beneficial effects that: (1) the intelligent glasses lens replacing device can realize the automatic replacing process; (2) the intelligent glasses lens replacing device can automatically take out the waste lenses; (3) the intelligent glasses lens replacing device can intelligently replace lenses, reduces labor cost and operation difficulty, and enables the lens replacing process to be easier and more effective.
Drawings
Fig. 1 is a schematic structural view of the present invention in use.
Fig. 2 is a schematic structural diagram of the housing cover mechanism of the invention.
FIG. 3 is a schematic structural view of the inventive traversing mechanism.
Fig. 4 is a schematic structural view of the vertical moving and picking mechanism of the present invention.
FIG. 5 is a schematic view of the structure of the inventive rotating installation mechanism.
Fig. 6 is a schematic structural view of the bottom sheet taking mechanism of the invention.
Reference numerals: 1-housing cover mechanism; 2-a transverse moving and walking mechanism; 3-longitudinal moving and placing mechanism; 4-a rotation mounting mechanism; 5-a bottom sheet taking mechanism; 101-base foot pad; 102-a base plate; 103-a control box; 104-a reset button; 105-emergency stop button; 106-start button; 107-side handle; 108-a riser support plate; 109-feeding platform plate; 110-a feeding guide column; 111-a stock lens; 112-warning light; 113-a flip hinge; 114-a dust flip; 201-supporting upright posts; 202-a reinforcing beam; 203-walking side plate; 204-a walking bottom plate; 205-walking guide beam; 206-a walking screw rod; 207-guide screw base; 208-a walking mounting plate; 209-motor mounting block; 210-a walking servo motor; 301-a longitudinal movement motor; 302-motor reducer; 303-longitudinally moving a connecting block; 304-a follower rotor seat; 305-a right angle seat; 306-connecting reinforcing ribs; 307-side weight block; 308-a guiding unit; 401-longitudinally shifting the connecting plate; 402-a position sensor; 403-upper speed reducer; 404-upper servo motor; 405-a mid-stage motor mounting plate; 406-a medium-sized motor; 407-lower motor mounting plate; 408-a lower stage motor; 409-lateral motor; 410-a position control unit; 411-a central index head; 412-indexing head joint plates; 413-bidirectional sucker; 501-a jig mounting plate; 502-a support block; 503-smart glasses; 504-support column; 505-a lower floor; 506-lower square plate; 507-lifting vertical plates; 508-rotating the connecting plate; 509-rotating seat; 510-a push rod cylinder; 511-a push plate; 512-lower vacuum chuck; 513-rotating cylinder.
Detailed Description
The present invention will be further described with reference to specific examples, which are illustrative of the invention and are not to be construed as limiting the invention.
Example (b): as shown in fig. 1, 2, 3, 4, 5 and 6, the intelligent eyeglass lens exchange device comprises a housing cover mechanism 1, a traverse traveling mechanism 2, a longitudinal moving pick-and-place mechanism 3, a rotating installation mechanism 4 and a bottom pick-and-place mechanism 5.
The housing cover mechanism 1 includes: base feet 101 and a base plate 102; the traverse traveling mechanism 2 includes: a support column 201 and a walking mounting plate 208; the vertical shift pick and place mechanism 3 includes: longitudinally moving the connecting block 303 and the right-angle seat 305; the rotation mounting mechanism 4 includes: a longitudinally moving connecting plate 401 and a position sensor 402; the bottom film taking mechanism 5 comprises: a jig mounting plate 501 and a lower plate 505; the base plate 102 is fixedly mounted on the base pad 101, the supporting upright 201 is fixedly mounted on the base plate 102, the longitudinal moving connecting block 303 is fixedly mounted on the walking mounting plate 208, the longitudinal moving connecting plate 401 is fixedly mounted on the right-angle seat 305, the position sensor 402 is fixedly mounted on the longitudinal moving connecting plate 401, the jig mounting plate 501 is fixedly mounted on the base pad 101, the jig mounting plate 501 is fixedly mounted on the supporting column 504, and the lower base plate 505 is fixedly mounted on the base plate 102.
The housing cover mechanism 1 further comprises a control box 103, a reset button 104, an emergency stop button 105, a start button 106, a side handle 107, a vertical plate support plate 108, a feeding platform plate 109, a feeding guide post 110, a raw material lens 111, a warning light 112, a flip hinge 113 and a dust-proof flip 114, wherein the control box 103 is fixedly arranged on the base plate 102, the reset button 104 is fixedly arranged on the control box 103, the emergency stop button 105 is fixedly arranged on the control box 103, the start button 106 is fixedly arranged on the control box 103, the side handle 107 is fixedly arranged on the control box 103, the feeding platform plate 109 is fixedly arranged on the vertical plate support plate 108, the vertical plate support plate 108 is fixedly arranged on the base plate 102, the feeding guide post 110 is fixedly arranged on the feeding platform plate 109, the raw material lens 111 is fixedly arranged on the feeding guide post 110, the warning light 112 is fixedly arranged on the control box 103, the flip hinge 113 is fixedly installed on the control box 103, the dustproof flip 114 is fixedly installed on the flip hinge 113, and the reset button 104, the emergency stop button 105 and the start button 106 are all operation elements.
The traverse traveling mechanism 2 further comprises a reinforcing beam 202, a traveling side plate 203, a traveling bottom plate 204, a traveling guide beam 205, a traveling screw rod 206, a guide screw rod seat 207, a motor mounting block 209 and a traveling servo motor 210, wherein the reinforcing beam 202 is fixedly mounted on the support upright 201, the traveling side plate 203 is fixedly mounted on the reinforcing beam 202, the traveling bottom plate 204 is fixedly mounted on the traveling side plate 203, the traveling guide beam 205 is fixedly mounted on the traveling bottom plate 204, the traveling screw rod 206 is fixedly mounted on the traveling side plate 203, the guide screw rod seat 207 is fixedly mounted on the traveling screw rod 206, the traveling mounting plate 208 is fixedly mounted on the guide screw rod seat 207, the motor mounting block 209 is fixedly mounted on the traveling guide beam 205, the traveling servo motor 210 is fixedly mounted on the motor mounting block 209, and the reinforcing beam 202 is made of carbon steel.
The vertical movement taking and placing mechanism 3 further comprises a vertical movement motor 301, a motor speed reducer 302, a follow-up rotor seat 304, a connecting reinforcing rib 306, a side balancing weight 307 and a guiding unit 308, wherein the vertical movement motor 301 is fixedly installed on the motor speed reducer 302, the motor speed reducer 302 is fixedly installed on a vertical movement connecting block 303, the follow-up rotor seat 304 is fixedly installed on the vertical movement connecting block 303, a right angle seat 305 is fixedly installed on the follow-up rotor seat 304, the connecting reinforcing rib 306 is fixedly installed on the right angle seat 305, the side balancing weight 307 is fixedly installed on the vertical movement connecting block 303, the guiding unit 308 is fixedly installed on the motor speed reducer 302, and the vertical movement motor 301 drives the motor speed reducer 302 to rotate and increase torque.
The rotary mounting mechanism 4 further comprises an upper speed reducer 403, an upper servo motor 404, a middle motor mounting plate 405, a middle motor 406, a lower motor mounting plate 407, a lower motor 408, a lateral motor 409, a position control unit 410, a central indexing head 411, an indexing head joint plate 412 and a bidirectional suction cup 413, the position sensor 402 is fixedly mounted on the longitudinal movement connecting plate 401, the upper speed reducer 403 is fixedly mounted on the longitudinal movement connecting plate 401, the upper servo motor 404 is fixedly mounted on the upper speed reducer 403, the middle motor 406 is fixedly mounted on the middle motor mounting plate 405, the lower motor 408 is fixedly mounted on the lower motor mounting plate 407, the lateral motor 409 is fixedly mounted on the central indexing head 411, the position control unit 410 is fixedly mounted on the lateral motor 409, the central indexing head 411 is fixedly mounted on the lower motor 408, the indexing head joint plate 412 is fixedly mounted on the central indexing head 411, the bidirectional suction cup 413 is fixedly installed on the index head connection plate 412, and the upper servo motor 404 drives the upper speed reducer 403 to rotate and increase the torque.
Bottom sheet taking mechanism 5 still includes supporting shoe 502, intelligent glasses 503, support column 504, lower right-angle plate 506, lift riser 507, rotation connecting plate 508, rotate seat 509, push rod cylinder 510, push plate 511, lower vacuum chuck 512 and rotation cylinder 513, intelligent glasses 503 fixed mounting is on supporting shoe 502, support column 504 fixed mounting is on tool mounting panel 501, lower right-angle plate 506 fixed mounting is on lower plate 505, lift riser 507 fixed mounting is on lower right-angle plate 506, rotation connecting plate 508 fixed mounting is on lift riser 507, rotate seat 509 fixed mounting on rotation connecting plate 508, push rod cylinder 510 fixed mounting is on rotation seat 509, push plate 511 fixed mounting is on push rod cylinder 510, lower vacuum chuck 512 fixed mounting is on push plate 511, rotation cylinder 513 fixed mounting is on push rod cylinder 510, support column 504 is the stainless steel material.
The walking side plate 203 is fixedly arranged on the reinforcing beam 202, the position sensor 402 is fixedly arranged on the longitudinal movement connecting plate 401, and the reinforcing beam 202 is welded on the walking side plate 203.
The upper servo motor 404 is fixedly installed on the upper speed reducer 403, the jig installation plate 501 is fixedly installed on the base pad 101, and the upper servo motor 404 drives the upper speed reducer 403 to rotate, so that the rotating speed is reduced, and the torque is increased.
Lower vacuum chuck 512 fixed mounting is on intelligent glasses 503, and two-way sucking disc 413 fixed mounting is on intelligent glasses 503, and guide unit 308 fixed mounting is on side balancing weight 307, and lower vacuum chuck 512 is the flexible glue material.

Claims (9)

1. The utility model provides a device is changed to intelligence glasses lens, includes that shell shroud mechanism (1), sideslip running gear (2), indulge to move and get and put mechanism (3), rotation installation mechanism (4) and bottom take piece mechanism (5), its characterized in that:
the housing cover mechanism (1) comprises: a base pad (101) and a base plate (102);
the transverse moving mechanism 2 comprises: a support upright column (201) and a walking mounting plate (208);
the longitudinal moving, taking and placing mechanism (3) comprises: longitudinally moving a connecting block (303) and a right-angle seat (305);
the rotation installation mechanism (4) comprises: a longitudinally moving connecting plate (401) and a position sensor (402);
the bottom sheet taking mechanism (5) comprises: a jig mounting plate (501) and a lower base plate (505);
the base plate (102) is fixedly installed on a base pad foot (101), a supporting upright post (201) is fixedly installed on the base plate (102), a longitudinal moving connecting block (303) is fixedly installed on a walking installation plate (208), a longitudinal moving connecting plate (401) is fixedly installed on a right-angle seat (305), a position sensor (402) is fixedly installed on the longitudinal moving connecting plate (401), a jig installation plate (501) is fixedly installed on the base pad foot (101), the jig installation plate (501) is fixedly installed on a supporting column (504), and a lower bottom plate (505) is fixedly installed on the base plate 102.
2. The intelligent eyeglass lens changer of claim 1, wherein: the shell cover mechanism (1) further comprises a control box (103), a reset button (104), an emergency stop button (105), a start button (106), a side handle (107), a vertical plate supporting plate (108), a feeding platform plate (109), a feeding guide post (110), a raw material lens (111), a warning lamp (112), a flip hinge (113) and a dustproof flip cover (114), wherein the control box (103) is fixedly arranged on the base plate (102), the reset button (104) is fixedly arranged on the control box (103), the emergency stop button (105) is fixedly arranged on the control box (103), the start button (106) is fixedly arranged on the control box (103), the side handle (107) is fixedly arranged on the control box (103), the feeding platform plate (109) is fixedly arranged on the vertical plate supporting plate (108), the vertical plate supporting plate (108) is fixedly arranged on the base plate (102), feeding guide post 110 fixed mounting is on feeding platform board (109), and raw materials lens (111) fixed mounting is on feeding guide post (110), warning light (112) fixed mounting is on control box (103), flip hinge (113) fixed mounting is on control box (103), and dustproof flip (114) fixed mounting is on flip hinge (113).
3. The intelligent eyeglass lens changer of claim 1, wherein: the transverse moving mechanism (2) also comprises a reinforcing beam (202), a moving side plate (203), a moving bottom plate (204), a moving guide beam (205), a moving screw rod (206), a guide screw rod seat (207), a motor installation block (209) and a moving servo motor (210), wherein the reinforcing beam (202) is fixedly arranged on the supporting upright post (201), the moving side plate (203) is fixedly arranged on the reinforcing beam (202), the moving bottom plate (204) is fixedly arranged on the moving side plate (203), the moving guide beam (205) is fixedly arranged on the moving bottom plate (204), the moving screw rod (206) is fixedly arranged on the moving side plate (203), the guide screw rod seat (207) is fixedly arranged on the moving screw rod (206), the moving installation plate (208) is fixedly arranged on the guide screw rod seat (207), the motor installation block (209) is fixedly arranged on the moving guide beam (205), the walking servo motor (210) is fixedly arranged on the motor mounting block (209).
4. The intelligent eyeglass lens changer of claim 1, wherein: the longitudinal moving taking and placing mechanism (3) further comprises a longitudinal moving motor (301), a motor speed reducer (302), a follow-up rotor seat (304), a connecting reinforcing rib (306), a side balancing weight (307) and a guiding unit (308), wherein the longitudinal moving motor (301) is fixedly installed on the motor speed reducer (302), the motor speed reducer (302) is fixedly installed on the longitudinal moving connecting block (303), the follow-up rotor seat (304) is fixedly installed on the longitudinal moving connecting block (303), a right-angle seat (305) is fixedly installed on the follow-up rotor seat (304), the connecting reinforcing rib (306) is fixedly installed on the right-angle seat (305), the side balancing weight (307) is fixedly installed on the longitudinal moving connecting block (303), and the guiding unit 308 is fixedly installed on the motor speed reducer (302).
5. The intelligent eyeglass lens changer of claim 1, wherein: the rotary mounting mechanism (4) also comprises a superior speed reducer (403), a superior servo motor (404), a middle motor mounting plate (405), a middle motor (406), a inferior motor mounting plate (407), a inferior motor (408), a lateral motor (409), a position control unit (410), a central indexing head (411), an indexing head connecting plate (412) and a bidirectional sucker (413), wherein a position sensor (402) is fixedly arranged on the longitudinal moving connecting plate (401), the superior speed reducer (403) is fixedly arranged on the longitudinal moving connecting plate (401), the superior servo motor (404) is fixedly arranged on the superior speed reducer (403), the middle motor (406) is fixedly arranged on the middle motor mounting plate (405), the inferior motor (408) is fixedly arranged on the inferior motor mounting plate (407), and the lateral motor (409) is fixedly arranged on the central indexing head (411), the position control unit (410) is fixedly arranged on the lateral motor (409), the central dividing head (411) is fixedly arranged on the lower-level motor (408), the dividing head joint plate (412) is fixedly arranged on the central dividing head (411), and the bidirectional sucker 413 is fixedly arranged on the dividing head joint plate (412).
6. The intelligent eyeglass lens changer of claim 1, wherein: the bottom sheet taking mechanism (5) further comprises a supporting block (502), intelligent glasses (503), a supporting column (504), a lower right-angle plate (506), a lifting vertical plate (507), a rotating connecting plate (508), a rotating seat (509), a push rod cylinder (510), a push plate (511), a lower vacuum chuck (512) and a rotating cylinder (513), the intelligent glasses (503) are fixedly installed on the supporting block (502), the supporting column (504) is fixedly installed on a jig installing plate (501), the lower right-angle plate (506) is fixedly installed on a lower bottom plate (505), the lifting vertical plate (507) is fixedly installed on the lower right-angle plate (506), the rotating connecting plate (508) is fixedly installed on the lifting vertical plate (507), the rotating seat (509) is fixedly installed on the rotating connecting plate (508), the push rod cylinder (510) is fixedly installed on the rotating seat (509), the push plate (511) is fixedly installed on the push rod cylinder (510), the lower vacuum sucker (512) is fixedly arranged on the pushing plate (511), and the rotating cylinder (513) is fixedly arranged on the push rod cylinder (510).
7. The intelligent eyeglass lens changer of claim 1, wherein: the walking side plates (203) are fixedly arranged on the reinforcing cross beam (202), and the position sensor (402) is fixedly arranged on the longitudinal movement connecting plate (401).
8. The intelligent eyeglass lens changer according to claim 1, wherein: the upper-level servo motor (404) is fixedly installed on the upper-level speed reducer (403), and the jig installation plate (501) is fixedly installed on the base foot pad (101).
9. The intelligent eyeglass lens changer according to claim 1, wherein: the lower vacuum sucker (512) is fixedly installed on the intelligent glasses (503), the bidirectional sucker (413) is fixedly installed on the intelligent glasses (503), and the guide unit (308) is fixedly installed on the lateral balancing weight (307).
CN202110964355.2A 2021-08-22 2021-08-22 Intelligent glasses lens replacement device Active CN113805362B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110964355.2A CN113805362B (en) 2021-08-22 2021-08-22 Intelligent glasses lens replacement device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110964355.2A CN113805362B (en) 2021-08-22 2021-08-22 Intelligent glasses lens replacement device

Publications (2)

Publication Number Publication Date
CN113805362A true CN113805362A (en) 2021-12-17
CN113805362B CN113805362B (en) 2023-12-05

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103100712A (en) * 2013-01-23 2013-05-15 西安铂力特激光成形技术有限公司 Multistage f-theta scan lens exchange device
US20140073227A1 (en) * 2011-03-21 2014-03-13 Gunter Schneider Device and method for machining of an optical lens
CN209127619U (en) * 2018-08-20 2019-07-19 临海市中创自动化设备有限公司 Eyeglass conveying device
CN111266316A (en) * 2020-03-30 2020-06-12 大智精创(厦门)科技有限公司 Automatic detection equipment for defects of sunglass lenses
CN113200354A (en) * 2021-04-27 2021-08-03 福州汇思博信息技术有限公司 POS machine postposition lens vision snatchs automatic assembly equipment

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20140073227A1 (en) * 2011-03-21 2014-03-13 Gunter Schneider Device and method for machining of an optical lens
CN103100712A (en) * 2013-01-23 2013-05-15 西安铂力特激光成形技术有限公司 Multistage f-theta scan lens exchange device
CN209127619U (en) * 2018-08-20 2019-07-19 临海市中创自动化设备有限公司 Eyeglass conveying device
CN111266316A (en) * 2020-03-30 2020-06-12 大智精创(厦门)科技有限公司 Automatic detection equipment for defects of sunglass lenses
CN113200354A (en) * 2021-04-27 2021-08-03 福州汇思博信息技术有限公司 POS machine postposition lens vision snatchs automatic assembly equipment

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