Optical fiber processing tool
By designing an optical fiber processing fixture with a liftable etching tank and optical fiber support platform, the problems of optical fiber displacement and breakage during processing were solved, achieving effective etching treatment of fiber with shell, maintaining the coaxiality of the fiber and reducing the risk of breakage.
Patent Information
- Application Number
- CN202520007851.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Existing vertical fiber processing fixtures cannot process fiber optic cables with housings. The fiber optic cables are prone to displacement during processing, resulting in poor coaxiality. Furthermore, they cannot process both ends of the fiber optic cable simultaneously, posing a risk of breakage.
Design an optical fiber processing fixture that includes an etching tank platform and an optical fiber support platform. The optical fiber support is used for natural coiling, the etching tank is adjustable in height, and the optical fiber is fixed by a fixing structure and a limiting groove to prevent movement. The etching length is controlled by scale lines.
It enables etching treatment without moving the optical fiber, reducing the impact of coaxiality and the risk of breakage. It is suitable for integrated devices and is simple and quick to operate.
Smart Images

Figure CN223671037U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to optical fiber technical field especially relates to a kind of optical fiber processing frock. BACKGROUND
[0002] Optical fiber is corroded in tail end when making optical device due to different performance and use requirement, let optical fiber cladding diameter become small. The vertical processing frock in the related art is upper and lower structure, by the cooperation of frock support and optical fiber processing disc, the end of pure optical fiber can be processed, when using, optical fiber is wound in small circle from the end without needing to be processed (diameter 10-15cm), 10-20cm optical fiber is stripped from the tail end coating, and then optical fiber and optical fiber coil are fixed on processing disc, by the suspension and up and down adjustment of processing disc on frock, optical fiber tail end enters the corrosion groove in bottom, and the required optical fiber cladding diameter is obtained after a certain time.
[0003] However, the vertical processing frock in the related art has the following shortcomings: optical fiber tail end must be wound in small circle, and then fixed on processing disc, shell optical fiber cannot be operated; optical fiber cladding is processed by the lifting of optical fiber processing disc all the time, and there is displacement risk of optical fiber; after processing, optical fiber processing disc is taken out as a whole, and is washed in washing pool, there is breakage risk in the movement of optical fiber.
[0004] Due to the above limitations, optical fiber frequently changes position during processing, which can cause optical fiber displacement and deviation of optical fiber vertical state, directly affecting the coaxiality of processed optical fiber. At the same time, since the other end of optical fiber can only be wound and fixed, this frock can only process the tail fiber of pure optical fiber, and is not suitable for the processing of optical fiber of connected device (the other end of optical fiber has shell when processing, both ends need to be processed), both ends of optical fiber cannot be corroded, there is no storage position for shell, and the middle optical fiber cannot be wound in small circle. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a kind of optical fiber processing frock to solve at least one of the technical problems in the above background technology.
[0006] To achieve the above object, the utility model embodiment provides a kind of optical fiber processing frock, including corrosion groove platform and optical fiber support platform;
[0007] The optical fiber support platform includes optical fiber support and optical fiber fixing disc, the optical fiber support is used to wind and fix the optical fiber to be processed, and the optical fiber to be processed is in natural winding state, the optical fiber fixing disc is arranged in the horizontal extension direction of the optical fiber support, and the optical fiber fixing disc is used to fix the tail optical fiber of the optical fiber to be processed;
[0008] The corrosion tank platform comprises a liftable corrosion tank, the corrosion tank platform is arranged on one side of the optical fiber support platform close to the optical fiber fixing disc, and the notch of the corrosion tank is kept in the same vertical direction with the tail optical fiber fixed on the optical fiber fixing disc, the corrosion tank platform is used for lifting the corrosion tank, so that the tail optical fiber fixed on the optical fiber fixing disc is corroded by the corrosion liquid in the corrosion tank.
[0009] In the embodiment of the utility model, the corrosion tank platform further comprises a lifting table, the corrosion tank is arranged on the lifting table, and the corrosion tank platform adjusts the height position of the corrosion tank through the lifting table.
[0010] In the embodiment of the utility model, the corrosion tank platform further comprises a height adjusting structure, the height adjusting structure is connected with the lifting table, and the height adjusting structure is used for adjusting the lifting height of the lifting table.
[0011] In the embodiment of the utility model, a scale line is arranged on the corrosion tank platform.
[0012] In the embodiment of the utility model, the optical fiber support comprises two vertical columns, a first horizontal rod arranged between the two vertical columns, and one or more second horizontal rods arranged on the first horizontal rod, the optical fiber fixing disc is arranged on any one of the vertical columns and extends a certain distance away from the vertical column.
[0013] The first horizontal rod is used for moving up and down between the two vertical columns, the second horizontal rod is used for moving horizontally on the first horizontal rod and is used for coiling and fixing the to-be-processed optical fiber.
[0014] In the embodiment of the utility model, the optical fiber processing tool further comprises a shell placing structure, the optical fiber support platform is arranged on the shell placing structure, and the shell placing structure is used for placing the optical fiber shell of the to-be-processed optical fiber.
[0015] In the embodiment of the utility model, limit grooves are arranged on the optical fiber support and the shell placing structure respectively, the limit groove in the optical fiber support is used for placing the coiled to-be-processed optical fiber, and the limit groove in the shell placing structure is used for placing the optical fiber shell of the to-be-processed optical fiber.
[0016] In the embodiment of the utility model, the limit groove is an EVA groove.
[0017] In the embodiment of the utility model, the optical fiber processing tool further comprises a fixing structure, the fixing structure is arranged on the optical fiber support, the optical fiber fixing disc and the shell placing structure respectively, and the fixing structure is used for fixing the to-be-processed optical fiber and the shell of the to-be-processed optical fiber.
[0018] In the embodiment of the utility model, the fixed structure is high temperature adhesive tape.
[0019] The utility model embodiment provides a kind of optical fiber processing frock, by lifting etching tank, to be treated optical fiber is fixedly corroded by etching liquid in etching tank, can be etched in the case where optical fiber is not moved, to optical fiber, avoid affecting the coaxiality of the optical fiber after processing, and reduce the risk of optical fiber fracture. BRIEF DESCRIPTION OF DRAWINGS
[0020] The technical solutions of the present application and other beneficial effects will become apparent from the following detailed description of specific embodiments of the present application, combined with the accompanying drawings.
[0021] Figure 1 It is a structural schematic diagram of the optical fiber processing frock provided by the utility model embodiment;
[0022] In the drawings, the reference numerals are:
[0023] 100, optical fiber processing frock;110, etching tank platform;120, optical fiber support platform;130, shell placement structure;
[0024] 111, etching tank;112, lifting platform;113, height adjusting structure;114, scale line;
[0025] 121, optical fiber support;1211, stand;1212, first cross bar;1213, second cross bar;122, optical fiber fixing disc;
[0026] 200, to be treated optical fiber;210, tail optical fiber;220, optical fiber shell. DETAILED DESCRIPTION
[0027] The technical solutions of the present application and other beneficial effects will become apparent from the following detailed description of specific embodiments of the present application, combined with the accompanying drawings.
[0028] It should be noted that the direction terms mentioned in the present application, such as [up], [down], [front], [back], [left], [right], [in], [out], [side] and the like, are only the direction of the attached drawings. Therefore, the direction terms used are used to explain and understand the present application, not to limit the present application. In the drawings, similar structures are represented by the same reference numerals. Moreover, the thickness and shape in the drawings of the present application do not reflect the true proportion, the purpose is only to illustrate the content of the embodiments of the present application.
[0029] The terms "first", "second", "third", "fourth" etc. (if any) in the description and claims of the utility model and the above drawings are used to distinguish similar objects and do not have to be used to describe a particular order or sequence. It should be understood that the data used in this way can be exchanged under appropriate circumstances so that the embodiments of the utility model described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0030] In the embodiment of the utility model, the fiber tail end is corroded to make the fiber cladding diameter smaller when making optical devices due to different performance and use requirements. The vertical processing tool in the related art is an up-down structure, which can process one end of pure fiber through the cooperation of the tool support and the fiber processing disc. When in use, the fiber is wound in a small circle (diameter 10-15 cm) from the end that does not need to be processed, 10-20 cm of fiber is left for processing, the tail end coating layer is stripped, and then the fiber and the fiber coil are fixed on the processing disc. Through the suspension and up-down adjustment of the processing disc on the tool, the fiber tail end enters the corrosion tank at the bottom, and the required fiber cladding diameter is obtained after a certain period of time.
[0031] However, the vertical processing tool in the related art has the following disadvantages: the fiber tail end must be wound in a small circle and then fixed on the processing disc, which cannot be operated for the fiber with a shell; the fiber cladding processing is completed through the lifting of the fiber processing disc throughout the process, and the fiber has a displacement risk; after the processing is completed, the fiber processing disc is taken out as a whole and taken to the cleaning pool for cleaning, and there is a risk of breakage during the movement of the fiber.
[0032] Due to the above limitations, the frequent change of position of the fiber during the processing may cause the fiber to be displaced and the fiber vertical state to be deviated, which directly affects the coaxiality of the processed fiber. At the same time, since the other end of the fiber can only be wound and fixed, this tool can only process the tail fiber of one end of pure fiber, and is not suitable for the processing of the fiber of the gradually increasing connected devices (the other end of the fiber has a shell when processing the fiber / both ends of the fiber need to be processed), the two ends of the fiber cannot be corroded, there is no storage position for the shell, and the middle fiber cannot be wound in a small circle.
[0033] In order to solve the above technical problems, the utility model embodiment provides a fiber processing tool 100, which is described in detail below.
[0034] Referring to Figure 1 , Figure 1 is a structural schematic diagram of the optical fiber processing tool 100 provided by the embodiment of the utility model, as Figure 1 shown, the optical fiber processing tool 100 includes etching tank platform 110 and optical fiber support platform 120;
[0035] Among them, the optical fiber support platform 120 includes optical fiber support 121 and optical fiber fixing disc 122, the optical fiber support 121 is used for coiling and fixing the optical fiber to be processed 200, and makes the optical fiber to be processed 200 be in the natural coiling state, the optical fiber fixing disc 122 is arranged in the horizontal extension direction of the optical fiber support 121, and the optical fiber fixing disc 122 is used for fixing the tail optical fiber 210 of the optical fiber to be processed 200;The etching tank platform 110 includes the lifting etching tank 111, the etching tank platform 110 is arranged at the side of the optical fiber support platform 120 close to the optical fiber fixing disc 122, and the notch of the etching tank 111 and the tail optical fiber 210 fixed on the optical fiber fixing disc 122 are kept in the same vertical direction, and the etching tank platform 110 is used for lifting the etching tank 111, so that the tail optical fiber 210 fixed on the optical fiber fixing disc 122 is etched by the etching liquid in the etching tank 111.
[0036] Among them, through the lifting etching tank 111 provided by the embodiment, the lifting height of the etching tank 111 can be adjusted to control the contact position of the etching liquid in the etching tank 111 and the tail optical fiber 210 during the etching process of the tail optical fiber 210 fixed on the optical fiber fixing disc 122, the demand of different optical fibers of different lengths is realized, and the etching efficiency of the optical fiber is effectively improved.
[0037] It should be noted that the optical fiber support platform 120 and the etching tank platform 110 provided by the embodiment are separable structure designs, that is, the optical fiber support platform 120 and the etching tank platform 110 can be spliced together to etch the optical fiber to be processed 200 on the optical fiber support platform 120 by the etching tank platform 110;After completing the etching process, the optical fiber support platform 120 and the etching tank platform 110 can be separated, and then the optical fiber support platform 120 is transferred to the edge of the water tank for optical fiber flushing, so that the cleaning work of the optical fiber can be completed, which is simple and fast, and effectively reduces the risk of optical fiber fracture. In this way, the optical fiber processing tool 100 provided by the embodiment of the utility model not only can complete the etching process of the optical fiber without moving the optical fiber, but also can complete the cleaning work of the optical fiber without moving the optical fiber, so that the coaxiality of the processed optical fiber can be effectively avoided, and the risk of optical fiber fracture is reduced.
[0038] In some embodiments, in order to realize the lifting function of the etching tank 111 provided in the embodiment, please continue to refer to Figure 1 The etching tank platform 110 provided in the embodiment can further comprise a lifting table 112, the etching tank 111 is arranged on the lifting table 112, and the etching tank platform 110 adjusts the height position of the etching tank 111 through the lifting table 112.
[0039] In the embodiment, the etching tank platform 110 can further comprise a height adjusting structure 113, the height adjusting structure 113 is connected with the lifting table 112, and the height adjusting structure 113 is used for adjusting the lifting height of the lifting table 112.
[0040] Specifically, the lifting table 112 provided in the embodiment can be a mechanical lifting table 112 or an electric lifting table 112, that is, the height adjusting structure 113 can be a rotating hand wheel as shown in Figure 1 , which manually adjusts the lifting height of the lifting table 112 by rotating the hand wheel; or the height adjusting structure 113 can be an electric control button (not shown in the figure), which adjusts the lifting height of the lifting table 112 by triggering the corresponding control instruction of the control button. In this way, the height position of the etching tank 111 can be controlled through the matched height adjusting structure 113.
[0041] In the embodiment, the etching tank platform 110 provided in the embodiment can further be provided with a scale line 114, so that the etching treatment of the specified length can be performed on the optical fiber to be treated 200 according to the product production requirement without moving the optical fiber to be treated 200. In this way, the technical problem that there is no scale mark on the processing tool in the related art, the length of the optical fiber etching treatment needs to be measured by external tools, and there is a certain measurement error can be solved by adopting the embodiment of the utility model.
[0042] In the embodiment of the utility model, please continue to refer to Figure 1 The optical fiber support 121 provided in the embodiment comprises two vertical columns 1211 arranged vertically, a first cross bar 1212 arranged between the two vertical columns 1211, and one or more second cross bars 1213 arranged on the first cross bar 1212, the optical fiber fixing disc 122 is arranged on any one of the vertical columns 1211 and extends a certain distance away from the vertical column 1211, the first cross bar 1212 is used for moving up and down between the two vertical columns 1211, and the second cross bar 1213 is used for moving horizontally on the first cross bar 1212 and is used for coiling and fixing the optical fiber to be treated 200.
[0043] The second cross bar 1213 can be used to coil and fix the to-be-processed optical fiber 200, and the horizontal distance between the to-be-processed optical fiber 200 and the optical fiber fixing disc 122 can be adjusted by moving the second cross bar 1213 horizontally on the first cross bar 1212; the vertical distance between the to-be-processed optical fiber 200 and the optical fiber fixing disc 122 can be adjusted by moving the first cross bar 1212 up and down between the two stand columns 1211, so as to drive the to-be-processed optical fiber 200 to move up and down.
[0044] Specifically, in one case, the number of the second cross bar 1213 can be one, and the to-be-processed optical fiber 200 is coiled on the second cross bar 1213 to realize the coiling and fixing of the to-be-processed optical fiber 200; in other cases, the number of the second cross bar 1213 can be multiple, for example, two, and the to-be-processed optical fiber 200 is coiled on the two second cross bars 1213, so that the size of the coil of the to-be-processed optical fiber 200 can be adjusted by adjusting the relative position between the two second cross bars 1213, and the to-be-processed optical fiber 200 is in a natural bending state, so that the stress on the to-be-processed optical fiber 200 is minimized. In this way, the optical fiber processing tool 100 provided by the embodiment can adjust the size of the coil of the to-be-processed optical fiber 200 and the height of the optical fiber coil through the optical fiber support 121, so that the corrosion requirements of semi-finished devices of different lengths can be met.
[0045] In the embodiment of the utility model, in order to realize the corrosion treatment to the optical fiber with the shell, please continue to refer to Figure 1 The optical fiber processing tool 100 provided by the embodiment can also include a shell placing structure 130, and the optical fiber support platform 120 is arranged on the shell placing structure 130, and the shell placing structure 130 is used to place the optical fiber shell 220 of the to-be-processed optical fiber 200.
[0046] Among them, the shell placing structure 130 provided by the embodiment can be provided with foam cotton, and the foam cotton is used to limit the optical fiber shell 220 placed in the shell placing structure 130, so that the optical fiber shell 220 cannot move during the corrosion treatment process, and the optical fiber inside the shell cannot be pulled and stretched by stress, thereby effectively reducing the risk of optical fiber breakage.
[0047] Optionally, in order to further reduce the risk of optical fiber breakage, the optical fiber support 121 and the shell placing structure 130 can be respectively provided with a limiting groove, the limiting groove in the optical fiber support 121 is used to place the coiled to-be-processed optical fiber 200, and the limiting groove in the shell placing structure 130 is used to place the optical fiber shell 220 of the to-be-processed optical fiber 200.
[0048] Specifically, the limiting groove can be an EVA groove. In this way, the EVA groove can effectively limit the to-be-processed optical fiber 200 and protect the optical fiber from being damaged, so that the to-be-processed optical fiber 200 and the optical fiber shell 220 can be kept in a fixed state during the whole use of the optical fiber processing tool 100, and the coaxiality of the processed optical fiber is enhanced. Meanwhile, the EVA groove in the shell placing structure 130 can move the sticking position of the EVA groove according to the size of the optical fiber shell 220, and adjust the height and width of the optical fiber support 121 according to the diameter and length of the optical fiber, so that the optical fiber with the shell can be in a natural coiled state without stress pulling, and the risk of optical fiber breakage is effectively reduced.
[0049] In the embodiment of the utility model, the optical fiber processing tool 100 provided by the embodiment can further include a fixing structure, which is arranged on the optical fiber support 121, the optical fiber fixing disc 122 and the shell placing structure 130 respectively, and is used for fixing the to-be-processed optical fiber 200 and the shell of the to-be-processed optical fiber 200. Specifically, the fixing structure can be a high-temperature adhesive tape.
[0050] In order to better illustrate the optical fiber processing tool 100 provided by the embodiment, the use method of the optical fiber processing tool 100 will be described below:
[0051] Firstly, if the to-be-processed optical fiber 200 has an optical fiber shell 220, the optical fiber shell 220 of the to-be-processed optical fiber 200 is placed and fixed in the shell placing structure 130, and the optical fiber at one end of the to-be-processed optical fiber 200 which does not need to be processed is coiled on one side in the shell placing structure 130; according to the length and cladding diameter of the to-be-processed optical fiber 200, the width and height of the optical fiber support 121 are adjusted, and the optical fiber at one end of the to-be-processed optical fiber 200 which needs to be processed is coiled on the EVA groove on the optical fiber support 121; then, the tail optical fiber 210 of the to-be-processed optical fiber 200 is placed on the optical fiber fixing disc 122 and fixed by the high-temperature adhesive tape; after the to-be-processed optical fiber 200 is fixed, the shell is fixed by the high-temperature adhesive tape to prevent displacement; then, the height of the corrosion tank 111 is raised to the required height by controlling the rotating handle according to the scale line 114, and the tail optical fiber 210 fixed on the optical fiber fixing disc 122 is subjected to corrosion treatment; after the corrosion treatment is completed, the height of the corrosion tank 111 is lowered by rotating the handle, so that the tail optical fiber 210 is separated from the corrosion liquid; finally, the whole optical fiber support platform 120 is transferred to the edge of the water pool, and the tail optical fiber 210 is subjected to suspended washing and wiping, and is hung to dry.
[0052] At this point, the whole description of the optical fiber processing tool 100 provided by the embodiment is completed.
[0053] In conclusion, the utility model discloses an embodiment provides a kind of optical fiber processing tool, including etching groove platform and optical fiber support platform, optical fiber support platform includes optical fiber support and optical fiber fixing disc, optical fiber support is used to coil the optical fiber to be handled, and make the optical fiber to be handled in natural coiling state, optical fiber fixing disc is arranged in the horizontal extension direction of optical fiber support, and optical fiber fixing disc is used to fix the tail optical fiber of optical fiber to be handled, etching groove platform includes liftable etching groove, etching groove platform is arranged in the side of optical fiber support platform close to optical fiber fixing disc, and make the notch of etching groove and the tail optical fiber fixed on optical fiber fixing disc keep in the same vertical direction, etching groove platform is used to lift etching groove, to carry out etching treatment to the tail optical fiber fixed on optical fiber fixing disc by etching liquid in etching groove.
[0054] Adopt the utility model embodiment, can realize following beneficial effect:
[0055] 1), through the optical fiber processing tool provided by the embodiment, one of the shell of the connected device can be placed in the shell placing structure, and the shell placing structure is embedded with foam and fixed limit, the shell will not move during etching, and will not cause stress pulling to the optical fiber inside the shell;
[0056] 2), the shell outside of the optical fiber to be handled is coiled on the support, and the size of the coil and the height of the optical fiber coil can be controlled by adjusting the width and the up-down distance of the optical fiber support, so that the optical fiber can be in a natural bending state, the stress is minimum, and the adjustable size and height of the coil can solve the etching needs of semi-finished product devices of different lengths;
[0057] 3), the support in contact with the optical fiber is equipped with EVA groove, which can effectively limit the optical fiber and reduce the risk of fiber damage;
[0058] 4), the tail optical fiber to be handled is fixed on the optical fiber fixing disc on the left side of the optical fiber support, and the etching groove platform on the left side of the optical fiber fixing disc is provided with a scale line, which can rotate the hand wheel to raise the etching liquid to the required height according to the production needs of product, so that the optical fiber does not need to be moved, and the risk of low coaxiality of the optical fiber after processing is reduced;
[0059] 5), after etching is completed, rotate the hand wheel to lower the etching groove height, without taking the optical fiber out of the optical fiber fixing disc, only need to transfer the whole optical fiber support platform on the right side to the edge of the pool for optical fiber flushing, the operation is more simple and fast, and the risk of optical fiber fracture is also reduced.
[0060] In addition to the above embodiments, the present application can have other implementation manners. Any technical solution formed by equivalent replacement or equivalent replacement falls within the protection scope required by the present application.
[0061] Although the preferred embodiments of the application have been disclosed with reference to a few embodiments, a person having ordinary skill in the art will understand that various modifications and changes can be made thereto without departing from the spirit and scope of the application, which are indicated by the appended claims.
Claims
1. An optical fiber handling tool, characterized by, The platform comprises an etching tank platform and a fiber support platform. The fiber support platform comprises a fiber support and a fiber fixing disc, the fiber support is used for coiling and fixing the to-be-processed optical fiber and making the to-be-processed optical fiber in a natural coiling state, the fiber fixing disc is arranged in the horizontal extension direction of the fiber support, and the fiber fixing disc is used for fixing tail optical fibers of the to-be-processed optical fiber. The etching tank platform comprises a liftable etching tank, the etching tank platform is arranged on the side of the fiber support platform close to the fiber fixing disc, and the tank opening of the etching tank is kept in the same vertical direction as the tail optical fibers fixed on the fiber fixing disc, the etching tank platform is used for lifting the etching tank to corrode the tail optical fibers fixed on the fiber fixing disc by the etching liquid in the etching tank.
2. The optical fiber handling tool of claim 1, wherein, The etching tank platform further comprises a lifting table, the etching tank is arranged on the lifting table, and the etching tank platform adjusts the height position of the etching tank through the lifting table.
3. The optical fiber handling tool of claim 2, wherein, The etching tank platform further comprises a height adjusting structure connected with the lifting table, and the height adjusting structure is used for adjusting the lifting height of the lifting table.
4. The optical fiber handling tool of claim 2 or 3, wherein, The etching tank platform is provided with a scale line.
5. The optical fiber handling tool of claim 1, wherein, The fiber support comprises two vertical columns, a first horizontal rod arranged between the two columns, and one or more second horizontal rods arranged on the first horizontal rod, the fiber fixing disc is arranged on any one of the columns and extends away from the column by a certain distance, the first horizontal rod is used for moving up and down between the two columns, and the second horizontal rod is used for moving horizontally on the first horizontal rod and coiling and fixing the to-be-processed optical fiber. The fiber processing tool further comprises a shell placing structure, the fiber support platform is arranged on the shell placing structure, and the shell placing structure is used for placing the optical fiber shell of the to-be-processed optical fiber.
6. The optical fiber handling tool of claim 5, wherein, The fiber support and the shell placing structure are respectively provided with limiting grooves, the limiting grooves in the fiber support are used for placing the coiled to-be-processed optical fiber, and the limiting grooves in the shell placing structure are used for placing the optical fiber shell of the to-be-processed optical fiber.
7. The optical fiber handling tool of claim 6, wherein, The limiting grooves are EVA grooves.
8. The optical fiber handling tool of claim 7, wherein, The fiber processing tool further comprises a fixing structure arranged on the fiber support, the fiber fixing disc and the shell placing structure respectively, and the fixing structure is used for fixing the to-be-processed optical fiber and the shell of the to-be-processed optical fiber.
9. The optical fiber handling tool of claim 7, wherein, The fixing structure is a high-temperature adhesive tape.
10. The optical fiber handling tool of claim 9, wherein,