CN212083737U - Output head optic fibre end cap corrodes and assembly quality - Google Patents

Output head optic fibre end cap corrodes and assembly quality Download PDF

Info

Publication number
CN212083737U
CN212083737U CN202020824909.XU CN202020824909U CN212083737U CN 212083737 U CN212083737 U CN 212083737U CN 202020824909 U CN202020824909 U CN 202020824909U CN 212083737 U CN212083737 U CN 212083737U
Authority
CN
China
Prior art keywords
optical fiber
end cap
output head
fixing
fixed
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
CN202020824909.XU
Other languages
Chinese (zh)
Inventor
李骁军
赵宝健
卫宇
侯晓亮
马昌赞
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.)
Shanghai Feibo Laser Technology Co ltd
Original Assignee
Shanghai Feibo Laser Technologies 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 Shanghai Feibo Laser Technologies Co ltd filed Critical Shanghai Feibo Laser Technologies Co ltd
Priority to CN202020824909.XU priority Critical patent/CN212083737U/en
Application granted granted Critical
Publication of CN212083737U publication Critical patent/CN212083737U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Optical Couplings Of Light Guides (AREA)

Abstract

The utility model relates to an output head optic fibre end cap corrodes and assembly device, including PMKD and optic fibre corruption chamber part, still include the fixed regulating part of output head casing: the output head shell is used for fixing and adjusting the output head shell so that the optical fiber penetrating through the output head shell is assembled and fixed with the optical fiber and the quartz end cap thereof by adjusting the output head shell after the optical fiber corrosion cavity part is corroded; optical fiber end cap fixing and adjusting part: the quartz end cap and the optical fiber are adjusted and fixed, so that the optical fiber is corroded and then fixedly assembled with the output head shell; the optical fiber corrosion cavity component, the output head shell fixing and adjusting component and the optical fiber end cap fixing and adjusting component are fixedly arranged on the fixed bottom plate. The utility model integrates the parts needed by the corrosion and packaging process of the optical fiber end cap into a set of tool to complete the corrosion and packaging process, thereby effectively reducing the risk of breaking the optical fiber and saving the production cost; moreover, the device is low in implementation cost and simple to operate, and the production efficiency is effectively improved.

Description

Output head optic fibre end cap corrodes and assembly quality
Technical Field
The utility model belongs to the technical field of the optic fibre end cap is handled, in particular to output head optic fibre end cap corrodes and assembly quality.
Background
The optical fiber output head is a laser output interface of the optical fiber laser, and the optical fiber laser is connected with various laser processing devices through the optical fiber output head. The optical fiber end cap in the optical fiber output head is an energy transmission assembly of an optical fiber laser and is formed by combining a quartz end cap and an optical fiber in a fusion mode, the optical fiber end cap is installed inside the output head shell, and the shell can provide protection and temperature regulation for the optical fiber end cap. In the production and assembly process of the output head, the corrosion of the optical fiber in the optical fiber end cap and the installation of the optical fiber end cap in the output head shell are two independent process steps. In the existing production process, as the optical fiber of the end cap becomes very fragile after being corroded, the optical fiber can be broken off without care in the process of transferring materials to the next production procedure and in the assembling process of the optical fiber end cap and the output head shell, so that not only is the material wasted, but also the production efficiency is seriously influenced.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides an output head optic fibre end cap corrodes and assembly device accomplishes on one set of frock through corroding with the encapsulation with optic fibre end cap to effectively reduced the risk of the optic fibre rupture that brings in the material handling process, and this device realizes with low costs and easy operation, can improve production efficiency when reducing production man-hour by a wide margin.
The technical scheme for realizing the purpose is as follows:
the utility model provides an output head optic fibre end cap corrodes and assembly quality, corrode the chamber part including PMKD and optic fibre, still include: the output head shell fixes the adjusting part: the output head shell is used for fixing and adjusting the output head shell, so that the optical fiber passing through the output head shell is assembled and fixed with the optical fiber and the quartz end cap thereof by adjusting the output head shell after the optical fiber corrosion cavity part is corroded; optical fiber end cap fixing and adjusting part: the quartz end cap and the optical fiber are adjusted and fixed, so that the optical fiber is corroded and then fixedly assembled with the output head shell; the optical fiber corrosion cavity component, the output head shell fixing and adjusting component and the optical fiber end cap fixing and adjusting component are fixedly arranged on the fixed bottom plate.
Preferably, the optical fiber corrosion cavity part comprises a Z-axis sliding table and an optical fiber corrosion cavity fixedly arranged on the Z-axis sliding table, and meanwhile, the Z-axis sliding table is provided with a feeding knob for adjusting the height of the optical fiber corrosion cavity.
Preferably, a groove is formed in the optical fiber corrosion cavity, frosted corrosive liquid is arranged in the groove, and the optical fiber corrosion cavity is made of polytetrafluoroethylene.
Preferably, the fixed adjustment part of output head casing is including being used for the centre gripping the V type seat and the clamp plate of output head casing, V type seat and clamp plate set up on a ball linear guide, ball linear guide sets up on the guide rail seat, the guide rail seat passes through stabilizer blade fixed mounting and is in PMKD, simultaneously, but still be provided with two at least tops tightly and be used for fixing to the guide rail seat on the V type seat the hand screw of V type seat.
Preferably, the fixed regulating part of optic fibre end cap include one install in cross ball linear slide rail on the PMKD and the connecting plate on the fixed connection it, fixed quartz end cap fixing base and the optic fibre fixing base of being provided with on the connecting plate, simultaneously, still be provided with an X axle slip table on the connecting plate, X axle slip table through a slip table fixing base still fixed set up in PMKD.
Preferably, a circular groove, an end cap gland and a screw matched with the end cap gland are arranged on the quartz end cap fixing seat and used for fixing the quartz end cap.
Preferably, the optical fiber fixing seat comprises a base, a V-shaped groove and an optical fiber gland are arranged on the base, the optical fiber gland is hinged with the base, and the optical fiber gland and the base are provided with magnetic materials.
Has the advantages that: compared with the prior art, the utility model has the difference that the utility model provides an output head optical fiber end cap corrosion and assembly device, which integrates the parts needed by the optical fiber end cap corrosion and packaging process into a set of tool to complete the corrosion and the packaging process, thereby effectively reducing the risk of breaking the optical fiber and saving the production cost; and the device is low in implementation cost and simple to operate, so that the production efficiency is effectively improved.
Drawings
FIG. 1 is an overall exploded view of the output stub fiber end cap etching and assembly apparatus of a preferred embodiment;
FIG. 2 is an exploded view of the detailed structure of the output stub fiber end cap etching and assembly apparatus of a preferred embodiment;
FIG. 3 is a schematic view of the fiber end cap secured to the output stud housing;
FIG. 4 is a schematic diagram of a fiber etching process;
fig. 5 is a schematic view of an assembly process.
The optical fiber corrosion device comprises a fixed bottom plate, a 2-optical fiber corrosion cavity component, a 21-Z-axis sliding table, a 22-optical fiber corrosion cavity, a 23-feeding knob, a 3-output head shell fixing and adjusting component, a 31-V-shaped seat, a 32-pressing plate, a 33-ball linear guide rail, a 34-guide rail seat, a 35-supporting leg, a 36-hand screw, a 37-output head shell, a 4-optical fiber end cap fixing and adjusting component, a 41-optical fiber fixing seat, a 42-quartz end cap fixing seat and a 43-X-axis sliding table, wherein the fixed bottom plate is fixed on the fixed bottom plate; 44-a sliding table fixing seat; 45-connecting plates; 46-crossed ball linear slide rail, 51-end cap gland, 52-screw, 53-quartz end cap, 54-optical fiber gland, 55-base, 56-magnet, 57-optical fiber.
Detailed Description
The invention will be further explained with reference to the drawings and the specific embodiments.
Referring to fig. 1 to 5, the utility model provides an output head optic fibre end cap corrodes and assembly device, corrode chamber part 2 including PMKD 1 and optic fibre, optic fibre corrode chamber part 2 include a Z axle slip table 21 and fixed set up in the optic fibre of Z axle slip table 21 corrodes chamber 22, through Z axle slip table, optic fibre corrodes chamber part 2 can fixed set up in on the PMKD 1. And a feeding knob 23 is arranged on the Z-axis sliding table 21 and can be used for adjusting the height of the optical fiber corrosion cavity 22. The optical fiber corrosion cavity 22 is provided with a groove, the groove is internally provided with frosted corrosive liquid, when the optical fiber corrosion cavity works, the height of the optical fiber corrosion cavity 22 is adjusted to place the optical fiber 57 into the groove for corrosion, and the optical fiber corrosion cavity 22 is made of corrosion-resistant polytetrafluoroethylene.
Referring to fig. 2 and 3 in particular, the output head housing fixing and adjusting component 3 for fixing and adjusting the output head housing 37 can enable the optical fiber 57 penetrating through the output head housing 37 to be assembled and fixed by adjusting the output head housing 37, the optical fiber 57 and the quartz end cap 53 thereof after the optical fiber corrosion chamber component 2 is corroded. The fixed regulating part 2 of output head casing is including being used for the centre gripping output head casing 37's V type seat 31 and clamp plate 32, V type seat 31 and clamp plate 32 set up on a ball linear guide 33, ball linear guide 33 sets up on guide rail seat 34, guide rail seat 34 passes through stabilizer blade 35 fixed mounting and is in PMKD 1, simultaneously, but it is used for fixing to guide rail seat 34 still to be provided with two at least tops on the V type seat 31 the hand screw 36 of V type seat 31 slides in order to prevent V type seat 31.
The optical fiber end cap fixing and adjusting part 4 is used for adjusting and fixing the quartz end cap 53 and the optical fiber 57, so that the optical fiber 57 is corroded and then fixedly assembled with the output head shell 37; fixed regulating part 4 of optic fibre end cap through the cross ball linear slide rail 46 that sets up install in on PMKD 1, cross ball linear slide rail 46 still is connected with a connecting plate 45, fixed quartz end cap fixing base 42 and the optic fibre fixing base 44 of being provided with on the connecting plate 45, simultaneously, still be provided with an X axle slip table 43 on the connecting plate 45, X axle slip table 43 through a slip table fixing base 44 still fixed set up in on PMKD 1. The quartz end cap fixing seat 42 is provided with a circular groove, an end cap pressing cover 51 and a screw 52 matched with the end cap pressing cover for fixing the quartz end cap 53. The optical fiber fixing seat 44 includes a base 55, a V-groove and an optical fiber gland 54 are disposed on the base 55, the optical fiber gland 54 is hinged to the base 55, and magnetic materials 56 are disposed on the optical fiber gland 54 and the base 55.
Specifically referring to fig. 4 and 5, in operation, firstly, the optical fiber 57 penetrates through the output head housing 37, then the quartz end cap 53 is fixed on the quartz end cap fixing seat 42, the optical fiber 57 is fixed on the optical fiber fixing seat 44 in a stretched manner, the output head housing 37 is fixed on the V-shaped seat 31 through the pressing plate 32, the V-shaped seat 31 is adjusted to a proper position, the hand screw 36 is screwed down, the V-shaped seat 31 is fixed, the feed knob 23 of the Z-axis sliding table 21 is adjusted, the optical fiber corrosion chamber 22 is lifted, the frosted corrosion liquid is added into the groove of the optical fiber corrosion chamber 22 to corrode the optical fiber 58, and after corrosion is completed, the optical fiber corrosion chamber 22 is lowered. Then, the thumb screw 36 of the V-shaped seat 31 of the optical fiber end cap fixing and adjusting member 4 is loosened, the output head case 37 is moved toward the quartz end cap 53 and is fitted over the quartz end cap 53, and then the thumb screw 36 is tightened again to hold the output head case 37 in place. At this time, the X-axis sliding table 43 in the optical fiber end cap fixing and adjusting component 4 is adjusted to finely adjust the axial position of the quartz end cap 53, and after the adjustment is completed, the X-axis sliding table is fixed to ensure that the optical fiber end cap fixing and adjusting component 4 is fixed. At this point, the retaining paste is injected into the outer shell of the output head housing through the corresponding process hole in the output head housing 37, and the quartz end cap 53 and the optical fiber 57 are fixed, respectively. After the glue injection is completed, all the fixing devices of the output head shell 37, the quartz end cap 53 and the optical fiber 47 are loosened, the output head shell 37 is taken down, and the output head shell is circulated to the next procedure for subsequent assembly.
It should be noted that the terms "first and second" in the present invention are used for descriptive purposes only, do not denote any order, are not to be construed as indicating or implying any relative importance, and are to be interpreted as names.
The above embodiments are merely preferred embodiments of the present disclosure, which are not intended to limit the present disclosure, and any modifications, equivalents, improvements and the like, which are within the spirit and principle of the present disclosure, should be included in the scope of the present disclosure.

Claims (7)

1. The utility model provides an output head optic fibre end cap corrodes and assembly quality, includes PMKD and optic fibre corruption chamber part, its characterized in that still includes:
the output head shell fixes the adjusting part: the output head shell is used for fixing and adjusting the output head shell, so that the optical fiber passing through the output head shell is assembled and fixed with the optical fiber and the quartz end cap thereof by adjusting the output head shell after the optical fiber corrosion cavity part is corroded;
optical fiber end cap fixing and adjusting part: the quartz end cap and the optical fiber are adjusted and fixed, so that the optical fiber is corroded and then fixedly assembled with the output head shell;
the optical fiber corrosion cavity component, the output head shell fixing and adjusting component and the optical fiber end cap fixing and adjusting component are fixedly arranged on the fixed bottom plate.
2. The output stub fiber end cap etching and assembly apparatus of claim 1 wherein: the optical fiber corrosion cavity part comprises a Z-axis sliding table and an optical fiber corrosion cavity fixedly arranged on the Z-axis sliding table, and meanwhile, the Z-axis sliding table is provided with a feeding knob for adjusting the height of the optical fiber corrosion cavity.
3. The output stub fiber end cap etching and assembly apparatus of claim 2, wherein: the optical fiber corrosion cavity is provided with a groove, frosted corrosive liquid is arranged in the groove, and the optical fiber corrosion cavity is made of polytetrafluoroethylene.
4. The output stub fiber end cap etching and assembly apparatus of claim 1 wherein: the fixed regulating part of output head casing is including being used for the centre gripping the V type seat and the clamp plate of output head casing, V type seat and clamp plate set up on a ball linear guide, ball linear guide sets up on the guide rail seat, the guide rail seat passes through stabilizer blade fixed mounting and is in PMKD, simultaneously, but it is used for fixing to the guide rail seat tightly to push up to still be provided with two at least on the V type seat the hand screw of V type seat.
5. The output stub fiber end cap etching and assembly apparatus of claim 1 wherein: the fixed adjusting part of optic fibre end cap include one install in cross ball linear slide on the PMKD and the connecting plate on the fixed connection it, fixed quartz end cap fixing base and the optic fibre fixing base of being provided with on the connecting plate, simultaneously, still be provided with an X axle slip table on the connecting plate, X axle slip table still fixed set up in PMKD through a slip table fixing base.
6. The output stub fiber end cap etching and assembly apparatus of claim 5, wherein: the quartz end cap fixing seat is provided with a circular groove, an end cap pressing cover and a screw matched with the end cap pressing cover, and the screw is used for fixing the quartz end cap.
7. The output stub fiber end cap etching and assembly apparatus of claim 5, wherein: the optical fiber fixing seat comprises a base, a V-shaped groove and an optical fiber gland are arranged on the base, the optical fiber gland is hinged with the base, and the optical fiber gland and the base are provided with magnetic materials.
CN202020824909.XU 2020-05-18 2020-05-18 Output head optic fibre end cap corrodes and assembly quality Active CN212083737U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020824909.XU CN212083737U (en) 2020-05-18 2020-05-18 Output head optic fibre end cap corrodes and assembly quality

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020824909.XU CN212083737U (en) 2020-05-18 2020-05-18 Output head optic fibre end cap corrodes and assembly quality

Publications (1)

Publication Number Publication Date
CN212083737U true CN212083737U (en) 2020-12-04

Family

ID=73567752

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020824909.XU Active CN212083737U (en) 2020-05-18 2020-05-18 Output head optic fibre end cap corrodes and assembly quality

Country Status (1)

Country Link
CN (1) CN212083737U (en)

Similar Documents

Publication Publication Date Title
EP0399684B1 (en) Laser pigtail assembly and method of manufacture
CA2172646C (en) Optical attenuation fiber assembly
CN212083737U (en) Output head optic fibre end cap corrodes and assembly quality
ES447657A1 (en) Method of terminating optical fibers
CN109702909A (en) A kind of clamping device and production method applied to the production of the spherical surface bent crystal
JPH0545610U (en) Optical fiber rule assembly
JPH06289236A (en) Optical fiber array
CN216829158U (en) Laser welding gun convenient to equipment and light path overhaul
JPS57118210A (en) Muilti-core connector of optical fiber
CN112447561B (en) Vacuum bonding device
CN213843603U (en) Fixed length tool of AOC optic fibre wire jumper
GB2313676A (en) Attachment of an optical fibre
CN210938908U (en) Automatic threaded connection spherical surface clamp of centering
CN210270262U (en) Optical fiber array with positioning holes and optical fiber array connector
US6558047B1 (en) Cold welding process for fiber optic/ferrule attachment
CN209466175U (en) A kind of plane mirror mounting and positioning device
CN111580242A (en) High-precision reference prism device for field work
CN207488553U (en) A kind of laser couples naked fibre clamp assemblies
CN218612512U (en) Clamp for processing identical optical fiber F-P cavity string
CN217830645U (en) Ultraviolet curing device installed on focal length instrument
JPS6218508A (en) Fixing method for optical parts
CN113900187B (en) Optical fiber polarization control device and method based on Coriolis effect
JPH04362607A (en) Optical semiconductor module
CN1025370C (en) Optical connector and mothod of making same
CN211180302U (en) Electric tool suitable for fast assembling FC type optical fiber movable connector

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CP01 Change in the name or title of a patent holder
CP01 Change in the name or title of a patent holder

Address after: 201821 4th floor, building 5, 2201 Yongsheng Road, Jiading District, Shanghai

Patentee after: Shanghai Feibo Laser Technology Co.,Ltd.

Address before: 201821 4th floor, building 5, 2201 Yongsheng Road, Jiading District, Shanghai

Patentee before: SHANGHAI FEIBO LASER TECHNOLOGIES Co.,Ltd.

CP02 Change in the address of a patent holder
CP02 Change in the address of a patent holder

Address after: Room J2018, Building 6, No. 1288, Yecheng Road, Jiading District, Shanghai, 200000

Patentee after: Shanghai Feibo Laser Technology Co.,Ltd.

Address before: 201821 4th floor, building 5, 2201 Yongsheng Road, Jiading District, Shanghai

Patentee before: Shanghai Feibo Laser Technology Co.,Ltd.