CN205289558U - Automatic curved scissors foot device of optical assembly - Google Patents

Automatic curved scissors foot device of optical assembly Download PDF

Info

Publication number
CN205289558U
CN205289558U CN201521120278.9U CN201521120278U CN205289558U CN 205289558 U CN205289558 U CN 205289558U CN 201521120278 U CN201521120278 U CN 201521120278U CN 205289558 U CN205289558 U CN 205289558U
Authority
CN
China
Prior art keywords
support plate
curved scissors
electromagnetic valve
bending
foot device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201521120278.9U
Other languages
Chinese (zh)
Inventor
张小栋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Hi Optel Technology Co ltd
Original Assignee
Shenzhen Hi Optel Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Hi Optel Technology Co ltd filed Critical Shenzhen Hi Optel Technology Co ltd
Priority to CN201521120278.9U priority Critical patent/CN205289558U/en
Application granted granted Critical
Publication of CN205289558U publication Critical patent/CN205289558U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Fluid-Pressure Circuits (AREA)

Abstract

The utility model is suitable for a manufacture field provides an automatic curved scissors foot device of optical assembly, including the support frame, on the bottom plate was located to the support frame, on positioning mechanism located the support frame, under waste material box located the positioning mechanism in the support frame, on pneumatic mechanism located the support frame, positioning mechanism was connected to pneumatic mechanism's cylinder pole, and pneumatic mechanism's control end is connected to the output of controller. Automatic curved scissors foot anchor clamps have realized through the decomposition to manual curved scissors foot and comprehensive that the 5PCS subassembly carries out the curved scissors simultaneously, cuts the foot adjustable length. During the subassembly of the different pin length of curved scissors, the fixture board that only needs to change different thickness can, the range of bending is adjustable. The range of bending is bent the flexible length of cylinder through the adjustment and can be realized, adopt the piecemeal cutter, realize that once action can 5 subassemblies of a curved scissors, the subassembly pin mode of bending that sets up was assembled when making things convenient for the soldering tin operation, also improved curved scissors efficiency simultaneously, adopt PLC control, the simplified operation step reduces intensity of labour.

Description

A kind of automatic curved scissors foot device of optical assembly
Technical field
This utility model belongs to manufacture processing technique field, particularly relates to the automatic curved scissors foot device of a kind of optical assembly.
Background technology
Existing technique adopts needle-nose pliers and cutting nippers, carries out manual curved scissors foot. This process is divided into two steps, first with needle-nose pliers pin carries out bending, then carries out cutting foot with cutting nippers and process.
Cannot position because of manual curved scissors foot and different work person can there are differences, welding efficiency and quality are all had a certain impact, the amplitude of bending and to cut foot length wayward. Bending amplitude is excessive, is unfavorable for welding, and amplitude has difficulties when crossing widgets and PCB assembling, need to carry out second pruning during the long welding of pin simultaneously, and pin is short, and assembly cannot be carried out welding; The whole process of hammer-shears foot needs operation twice, first carries out bending, then carries out cutting foot, and production efficiency is relatively low; During manual curved scissors foot, pin root is not protected, and there is the risk that cellophane is torn, it is possible to tube core can be caused to lose efficacy.
Utility model content
The purpose of this utility model is in that to provide the automatic curved scissors foot device of a kind of optical assembly, it is intended to solve above-mentioned technical problem.
This utility model is realized in, a kind of automatic curved scissors foot device of optical assembly, described automatic curved scissors foot device includes base plate, bracing frame, waste material box, pneumatic mechanism, controller and detent mechanism, support frame as described above is located on described base plate, described detent mechanism is located on support frame as described above, described waste material box is located under the detent mechanism in support frame as described above, described pneumatic mechanism is located on support frame as described above, the cylinder rod of described pneumatic mechanism connects described detent mechanism, and the outfan of described controller connects the control end of described pneumatic mechanism.
Further technical scheme of the present utility model is: described detent mechanism is located in the middle of the long limit of support frame as described above.
Further technical scheme of the present utility model is: described detent mechanism includes pedestal, it is located at the Cut Block on described pedestal, it is located at the pressed seat on described Cut Block and bending seat, positioning seat is located at described pressed seat and the top of bending seat, and described Cut Block, pressed seat and bending seat move with the motion of pneumatic mechanism.
Further technical scheme of the present utility model is: described Cut Block includes connecting seat, is located at described connection seat upper junction plate, is located at the multiple shears blocks on connecting plate, and multiple shears blocks are all parallel, and described connection seat is provided with connecting hole.
Further technical scheme of the present utility model is: the end face of described pedestal is provided with downward depressed part, and described depressed part two side is provided with opposing arcuate depression, and the pedestal of both sides, described depressed part bottom surface is provided with fixing hole.
Further technical scheme of the present utility model is: described pressed seat includes contiguous block, and described contiguous block is inverted L shape, and the front end of the transverse slat of described contiguous block is provided with multiple parallel compact heap, and the riser of described contiguous block is provided with two connecting holes.
Further technical scheme of the present utility model is: described bending seat includes folded block, is located at the bending plate on described folded block, and described bending plate is provided with the bending hole that multiple two i types are arranged side by side, and described folded block is provided with two even holes.
Further technical scheme of the present utility model is: described location-plate is cuboid, and the end face of described location-plate is provided with groove, and described groove floor is provided with hole, multiple location, and described groove is respectively arranged at two ends with bolt hole, and the bottom surface of described location-plate is provided with opening.
Further technical scheme of the present utility model is: described pneumatic mechanism includes the first cylinder, second cylinder, 3rd cylinder, air pump, press button, first electromagnetic valve, second electromagnetic valve and the 3rd electromagnetic valve, the air inlet of described first cylinder connects the gas outlet of described first electromagnetic valve by trachea, the air inlet of described second cylinder connects the gas outlet of described second electromagnetic valve by trachea, the air inlet of described second cylinder connects the gas outlet of described second electromagnetic valve by trachea, the air inlet of described first electromagnetic valve, the air inlet of the second electromagnetic valve and the air inlet of the 3rd electromagnetic valve connect the gas outlet of described air pump respectively, the control end of described first electromagnetic valve, the end that controls controlling end and the 3rd electromagnetic valve of the second electromagnetic valve connects the outfan of described controller respectively, the outfan of described press button connects the input of described controller.
Further technical scheme of the present utility model is: support frame as described above includes the first support plate, second support plate, 3rd support plate, 4th support plate, first top board and the second top board, the two ends of described second support plate connect one end of described first support plate and one end of the 3rd support plate respectively, the two ends of described 4th support plate connect the other end of described first support plate and the other end of the 3rd support plate respectively, described first support plate is parallel with described 3rd support plate, described second support plate is parallel with described 4th support plate, the bottom surface of described first top board connects end face one end of described first support plate respectively, the end face of the second support plate and end face one end of the 3rd support plate, the bottom surface of described second top board connects the end face other end of described first support plate respectively, the end face of the 4th support plate and the end face other end of the 3rd support plate, the cross section of described first support plate and the 3rd support plate is T-shaped, it is provided with square window in the middle of the long limit of described first support plate.
Further technical scheme of the present utility model is: what described controller adopted is PLC.
The beneficial effects of the utility model are: curved scissors foot fixture passes through the decomposition to manual curved scissors foot with comprehensive automatically, it is achieved that 5PCS assembly carries out curved scissors simultaneously, cuts foot adjustable length. During the assembly of curved scissors difference pin length, only need to change the fixture location-plate of different-thickness; Bending amplitude is adjustable. Bending amplitude can realize by adjusting bending Telescopic-cylinder length; Adopt piecemeal cutter, it is achieved one-off can 5 assemblies of a curved scissors; The component pin wrap direction arranged facilitates assembles during scolding tin operation, also improves curved scissors efficiency simultaneously; Adopt PLC to control, simplify operating procedure, reduce labor intensity.
Accompanying drawing explanation
Fig. 1 is the structural representation of the automatic curved scissors foot device of the optical assembly that this utility model embodiment provides.
Fig. 2 is the structural representation of the detent mechanism that this utility model embodiment provides.
Detailed description of the invention
Accompanying drawing labelling: 1-detent mechanism 2-the second cylinder 3-the 3rd cylinder 4-the first cylinder 5-base plate 6-box body 7-pedestal 8-shakes hands 9-bracing frame 10-pressed seat 11-Cut Block 12-bending seat 13-positioning seat.
Fig. 1 illustrates the automatic curved scissors foot device of a kind of optical assembly that this utility model provides, described automatic curved scissors foot device includes base plate, bracing frame 9, waste material box, pneumatic mechanism, controller and detent mechanism 1, support frame as described above 9 is located on described base plate, described detent mechanism 1 is located on support frame as described above 9, described waste material box is located in support frame as described above 9 and is placed in detent mechanism 1 time, described pneumatic mechanism is located on support frame as described above 9, the cylinder rod of described pneumatic mechanism connects described detent mechanism 1, and the outfan of described controller connects the control end of described pneumatic mechanism.
Described detent mechanism 1 is located in the middle of the long limit of support frame as described above 9.
Described detent mechanism 1 includes pedestal 7, it is located at the Cut Block 11 on described pedestal 7, it is located at the pressed seat 10 on described Cut Block 11 and bending seat 12, positioning seat 13 is located at the top of described pressed seat 10 and bending seat 12, and described Cut Block 11, pressed seat 10 and bending seat 12 move with the motion of pneumatic mechanism.
Described Cut Block 11 includes connecting seat, is located at described connection seat upper junction plate, is located at the multiple shears blocks on connecting plate, and multiple shears blocks are all parallel, and described connection seat is provided with connecting hole.
The end face of described pedestal 7 is provided with downward depressed part, and described depressed part two side is provided with opposing arcuate depression, and the pedestal 11 of both sides, described depressed part bottom surface is provided with fixing hole.
Described pressed seat 10 includes contiguous block, and described contiguous block is inverted L shape, and the front end of the transverse slat of described contiguous block is provided with multiple parallel compact heap, and the riser of described contiguous block is provided with two connecting holes.
Described bending seat 12 includes folded block, is located at the bending plate on described folded block, and described bending plate is provided with the bending hole that multiple two i types are arranged side by side, and described folded block is provided with two even holes.
Described location-plate is cuboid, and the end face of described location-plate is provided with groove, and described groove floor is provided with hole, multiple location, and described groove is respectively arranged at two ends with bolt hole, and the bottom surface of described location-plate is provided with opening.
Described pneumatic mechanism includes the first cylinder 4, second cylinder 2, 3rd cylinder 3, air pump, press button, first electromagnetic valve, second electromagnetic valve and the 3rd electromagnetic valve, the air inlet of described first cylinder 4 connects the gas outlet of described first electromagnetic valve by trachea, the air inlet of described second cylinder 2 connects the gas outlet of described second electromagnetic valve by trachea, the air inlet of described 3rd cylinder 3 connects the gas outlet of described 3rd electromagnetic valve by trachea, the air inlet of described first electromagnetic valve, the air inlet of the second electromagnetic valve and the air inlet of the 3rd electromagnetic valve connect the gas outlet of described air pump respectively, the control end of described first electromagnetic valve, the end that controls controlling end and the 3rd electromagnetic valve of the second electromagnetic valve connects the outfan of described controller respectively, the outfan of described press button connects the input of described controller.
Support frame as described above 9 includes the first support plate, second support plate, 3rd support plate, 4th support plate, first top board and the second top board, the two ends of described second support plate connect one end of described first support plate and one end of the 3rd support plate respectively, the two ends of described 4th support plate connect the other end of described first support plate and the other end of the 3rd support plate respectively, described first support plate is parallel with described 3rd support plate, described second support plate is parallel with described 4th support plate, the bottom surface of described first top board connects end face one end of described first support plate respectively, the end face of the second support plate and end face one end of the 3rd support plate, the bottom surface of described second top board connects the end face other end of described first support plate respectively, the end face of the 4th support plate and the end face other end of the 3rd support plate, the cross section of described first support plate and the 3rd support plate is T-shaped, it is provided with square window in the middle of the long limit of described first support plate.
What described controller adopted is PLC.
Described press button includes the first button and the second button.
Waste material box includes box body 6 and handle, and described handle is located on described box body 6.
Use brainstorming, by curved scissors decomposition of movement, control electromagnetic valve and cylinder with PLC, it is achieved that 5PCS assembly is automatic curved scissors foot simultaneously,
1. its working method is as follows,
A. place the assembly in and location-plate (can once put 5 at most);
B. pressing starting switch, the first cylinder 4 clamping will the pin (preventing pin root stress) of bending;
C. the time controls the second cylinder 2 bending pin;
D. time control the 3rd cylinder 3 cuts pin;
E. the time controls the first cylinder 4 and the 3rd cylinder 3 is return, and takes out assembly;
F. touch the button reset the second cylinder 2;
G. placing modules repeats next and cuts foot flow process.
Its operation principle is as follows:
Component pin is inserted in corresponding hole (can disposable placement 5PCS assembly), ensures that component bottom and location-plate develop simultaneously. Pressing folder ambilateral first button and the second button, the first cylinder 4 drives pressed seat 10 two pins of bending to be pressed on location-plate; Second cylinder 2 drives bending seat 12 action, and assembly needs two pins of bending carry out bending. The big I of bending amplitude herein is regulated by the second cylinder 2 distance of stretch out and draw back; 3rd cylinder 3(square cylinder) drive cutting knife to be cut by 5 component pin simultaneously. Cutting knife is divided into 5 blades herein, stress time simultaneously for 5 blade differences of guarantee, reduces the resistance of cylinder and the vibrations of fixture, and 5 blade spaces are unequal. PLC controls the first cylinder 4 and the 3rd cylinder 3 resets, and takes out the assembly that curved scissors is good. Pressing the second button, PLC controls the second cylinder 2 and resets, and a curved scissors action completes. Continue placing modules and can carry out curved scissors next time.
The foregoing is only preferred embodiment of the present utility model; not in order to limit this utility model; all any amendment, equivalent replacement and improvement etc. made within spirit of the present utility model and principle, should be included within protection domain of the present utility model.

Claims (10)

1. the automatic curved scissors foot device of an optical assembly, it is characterized in that, described automatic curved scissors foot device includes base plate, bracing frame, waste material box, pneumatic mechanism, controller and detent mechanism, support frame as described above is located on described base plate, described detent mechanism is located on support frame as described above, described waste material box is located under the detent mechanism in support frame as described above, described pneumatic mechanism is located on support frame as described above, the cylinder rod of described pneumatic mechanism connects described detent mechanism, and the outfan of described controller connects the control end of described pneumatic mechanism.
2. automatic curved scissors foot device according to claim 1, it is characterised in that described detent mechanism is located in the middle of the long limit of support frame as described above.
3. automatic curved scissors foot device according to claim 2, it is characterized in that, described detent mechanism includes pedestal, it is located at the Cut Block on described pedestal, it is located at the pressed seat on described Cut Block and bending seat, positioning seat is located at described pressed seat and the top of bending seat, and described Cut Block, pressed seat and bending seat move with the motion of pneumatic mechanism.
4. automatic curved scissors foot device according to claim 3, it is characterised in that described Cut Block includes connecting seat, it is located at described connection seat upper junction plate, being located at the multiple shears blocks on connecting plate, multiple shears blocks are all parallel, and described connection seat is provided with connecting hole.
5. automatic curved scissors foot device according to claim 4, it is characterised in that the end face of described pedestal is provided with downward depressed part, described depressed part two side is provided with opposing arcuate depression, and the pedestal of both sides, described depressed part bottom surface is provided with fixing hole.
6. automatic curved scissors foot device according to claim 5, it is characterized in that, described pressed seat includes contiguous block, and described contiguous block is inverted L shape, the front end of the transverse slat of described contiguous block is provided with multiple parallel compact heap, and the riser of described contiguous block is provided with two connecting holes.
7. automatic curved scissors foot device according to claim 6, it is characterised in that described bending seat includes folded block, is located at the bending plate on described folded block, described bending plate is provided with the bending hole that multiple two i types are arranged side by side, and described folded block is provided with two even holes.
8. automatic curved scissors foot device according to claim 7, it is characterised in that described location-plate is cuboid, the end face of described location-plate is provided with groove, described groove floor is provided with hole, multiple location, and described groove is respectively arranged at two ends with bolt hole, and the bottom surface of described location-plate is provided with opening.
9. automatic curved scissors foot device according to claim 8, it is characterized in that, described pneumatic mechanism includes the first cylinder, second cylinder, 3rd cylinder, air pump, press button, first electromagnetic valve, second electromagnetic valve and the 3rd electromagnetic valve, the air inlet of described first cylinder connects the gas outlet of described first electromagnetic valve by trachea, the air inlet of described second cylinder connects the gas outlet of described second electromagnetic valve by trachea, the air inlet of described second cylinder connects the gas outlet of described second electromagnetic valve by trachea, the air inlet of described first electromagnetic valve, the air inlet of the second electromagnetic valve and the air inlet of the 3rd electromagnetic valve connect the gas outlet of described air pump respectively, the control end of described first electromagnetic valve, the end that controls controlling end and the 3rd electromagnetic valve of the second electromagnetic valve connects the outfan of described controller respectively, the outfan of described press button connects the input of described controller.
10. automatic curved scissors foot device according to claim 9, it is characterized in that, support frame as described above includes the first support plate, second support plate, 3rd support plate, 4th support plate, first top board and the second top board, the two ends of described second support plate connect one end of described first support plate and one end of the 3rd support plate respectively, the two ends of described 4th support plate connect the other end of described first support plate and the other end of the 3rd support plate respectively, described first support plate is parallel with described 3rd support plate, described second support plate is parallel with described 4th support plate, the bottom surface of described first top board connects end face one end of described first support plate respectively, the end face of the second support plate and end face one end of the 3rd support plate, the bottom surface of described second top board connects the end face other end of described first support plate respectively, the end face of the 4th support plate and the end face other end of the 3rd support plate, the cross section of described first support plate and the 3rd support plate is T-shaped, it is provided with square window in the middle of the long limit of described first support plate.
CN201521120278.9U 2015-12-30 2015-12-30 Automatic curved scissors foot device of optical assembly Active CN205289558U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521120278.9U CN205289558U (en) 2015-12-30 2015-12-30 Automatic curved scissors foot device of optical assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521120278.9U CN205289558U (en) 2015-12-30 2015-12-30 Automatic curved scissors foot device of optical assembly

Publications (1)

Publication Number Publication Date
CN205289558U true CN205289558U (en) 2016-06-08

Family

ID=56473345

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201521120278.9U Active CN205289558U (en) 2015-12-30 2015-12-30 Automatic curved scissors foot device of optical assembly

Country Status (1)

Country Link
CN (1) CN205289558U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105750445A (en) * 2015-12-30 2016-07-13 深圳市恒宝通光电子股份有限公司 Automatic pin bending and shearing device for optical assemblies

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105750445A (en) * 2015-12-30 2016-07-13 深圳市恒宝通光电子股份有限公司 Automatic pin bending and shearing device for optical assemblies

Similar Documents

Publication Publication Date Title
CN105750445A (en) Automatic pin bending and shearing device for optical assemblies
CN207685570U (en) A kind of textile cloth cutting means
CN205289558U (en) Automatic curved scissors foot device of optical assembly
CN202726974U (en) Multifunctional sleeve cutting device
CN205702622U (en) A kind of Automatic-feeding plate shearing machine
CN204426086U (en) Multifunctional pruning shears
CN204168806U (en) Seedling device is cut in scion
CN206083683U (en) Electronic components one shot forming die clamper
CN208451692U (en) A kind of thin plate shears
CN202180490U (en) Horizontal punching device for solar battery adhesive-film cutting equipment
CN201278698Y (en) Plant grafting and incising device
CN201471454U (en) Scissors
CN207952771U (en) Pipe fitting cutting machine
CN202943671U (en) Special tool for cutting interfaces
CN202894741U (en) Clamp for automatically and curvedly cutting optical communication device pin
CN207543688U (en) A kind of seedling grafting pincers
CN206154369U (en) Device is tailor to flexible glue
CN207736384U (en) Automatic tube cutting tool
CN208246250U (en) Electric detonator payment to a porter cuts flat with bending integral machine
CN201997789U (en) Online hydraulic section cutter
CN201511168U (en) Packing belt shearing machine
CN204914278U (en) Automatic fixing device of clipper single crystal silicon rod
CN213214434U (en) Pruning instrument convenient to operation
CN202750511U (en) Novel lopper machine
CN204424789U (en) Apparatus for peeling off sheared by cable

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CP02 Change in the address of a patent holder
CP02 Change in the address of a patent holder

Address after: 518000 809, 810, 811, block B, building 6, Shenzhen International Innovation Valley, Dali community, Xili street, Nanshan District, Shenzhen City, Guangdong Province

Patentee after: SHENZHEN HI-OPTEL TECHNOLOGY Co.,Ltd.

Address before: 518000 East, 4th, 5th and 6th floors of Gaofa No.2 factory building, maotoushan Gaofa Industrial Zone, Beihuan Road, Nanshan District, Shenzhen City, Guangdong Province

Patentee before: SHENZHEN HI-OPTEL TECHNOLOGY Co.,Ltd.