Fiber ceramic ferrule cylindrical surface degumming device

CN224794073UActive Publication Date: 2026-09-25HONGYA CHUANGJIE COMM
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Patent Information

Application Number
CN202522212684.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2026-09-25
Estimated Expiration
2035-10-20

AI Technical Summary

Technical Problem

[0004]针对现有技术中所存在的不足,本实用新型的目的在于提供一种带纤陶瓷插芯柱面去胶装置,以解决现有技术中,采用刀片对陶瓷插芯外表面刮胶存在清理效率、清理效果不佳且还易造成陶瓷插芯出现损伤的问题

Benefits of technology

本带纤陶瓷插芯柱面去胶装置主要由刮胶支撑座、刮胶车件、插芯支撑座、高度调节组件、顶进移动组件、插芯顶块、顶出移动组件和顶出杆等结构构成,来对陶瓷插芯实现半自动去胶处理,提高了去胶效率;且对陶瓷插芯实现360度去胶,增强了去胶效果;同时通过刮胶车件上开设刮胶孔来与陶瓷插芯适配,能够大大减小陶瓷插芯表面出现损伤的几率。

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Abstract

The utility model discloses a kind of with fibre pottery ceramic ferrule cylindrical surface degumming device, including scraping glue support seat, insert core support seat, top into mobile assembly and top out mobile assembly, scraping glue support seat top is connected with scraping glue car spare by fixed structure, scraping glue hole is formed in scraping glue car spare for ceramic ferrule to wear into and carry out friction scraping glue;The insert core support seat is arranged below scraping glue car spare one end and is formed with accommodating groove thereon, and the insert core support seat is connected with height adjusting assembly for driving it to move along vertical direction;The top into mobile assembly is connected with insert core top block;The top out mobile assembly is connected with top out rod located outside another end of scraping glue hole;For driving top out rod to slide into scraping glue hole and top out ceramic ferrule to accommodating groove;Compared with prior art, improve degumming efficiency;And 360 degrees degumming is realized to ceramic ferrule, and degumming effect is enhanced;While greatly reduce the probability of damage on ceramic ferrule surface.
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Description

Technical Field

[0001] This utility model relates to the field of electrical component processing technology, specifically to a device for removing adhesive from the cylindrical surface of a fiber-reinforced ceramic ferrule. Background Technology

[0002] Ceramic ferrules are a crucial and precise miniature connector in optical fiber communication networks, primarily used to achieve accurate and low-loss splicing of two optical fibers.

[0003] During the connection of ceramic ferrules to optical fibers, adhesive is used to fix them in place. This process results in adhesive adhering to the outer surface of the cylindrical ceramic ferrule. Current methods use blades to mechanically scrape away the hardened adhesive from the outer surface of the ceramic ferrule, leading to the following problems: 1. There may be glue residue when scraping the glue with a blade; 2. Applying adhesive to the cylindrical surface with the blade may cause some damage to the cylindrical surface; 3. Removing adhesive with a blade requires skill from the operator and is relatively inefficient. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a device for removing glue from the cylindrical surface of a ceramic ferrule with fiber, so as to solve the problems of poor cleaning efficiency and cleaning effect, and easy damage to the ceramic ferrule when using a blade to scrape glue on the outer surface of the ceramic ferrule in the existing technology.

[0005] To achieve the above objectives, this utility model adopts the following technical solution: a device for removing adhesive from the cylindrical surface of a fiber-reinforced ceramic ferrule, comprising: The adhesive scraper support base has an adhesive scraper component connected to its top via a fixed structure. The adhesive scraper component has an adhesive scraper hole inside for the ceramic insert to pass through and perform frictional adhesive scraping. A ferrule support is provided below one end of the adhesive scraper and has a receiving groove formed thereon for providing support for the ceramic ferrule before and after adhesive removal. The ferrule support is connected to a height adjustment component that drives it to move in the vertical direction. The push-in moving assembly is connected to a core insert block located outside one end of the scraping hole, which is used to drive the core insert block to move towards or away from the scraping part to push the material or retract the blade. An ejector moving assembly is connected to an ejector rod located outside the other end of the scraping hole; the ejector rod is used to drive the ejector rod to slide into the scraping hole and eject the ceramic insert onto the receiving groove.

[0006] Technical principle: In use, the height adjustment component drives the ferrule support to move upward to the support position and then stops. At this time, the receiving groove is connected to one end of the scraping hole, and then the ceramic ferrule is placed in the receiving groove. The subsequent pushing and moving component drives the ferrule top block to move closer to the scraping part to push the ceramic ferrule in the receiving groove into the scraping hole; during this process, the height adjustment component drives the ferrule support to move downward to the idle position to avoid the ferrule support from obstructing the pushing process; during the process of pushing the ceramic ferrule in the receiving groove into the scraping hole, because the scraping hole and the ceramic ferrule are adapted, the glue adhering to the outer surface of the ceramic ferrule is scraped off by friction until the ceramic ferrule is completely pushed into the scraping hole and the operation stops. The jacking moving component continues to drive the ferrule top block to move away from the scraper to retract the blade, avoiding obstruction when pushing the ceramic ferrule out of the scraper hole, until the ferrule top block returns to the initial position and stops running; Next, the height adjustment component drives the ferrule support to move upward to the support position and then stops operating; Finally, the ejector moving component drives the ejector rod to slide within the scraping hole, thereby completely ejecting the ceramic insert from the scraping hole and placing it on the receiving groove to stop operation. At this point, the ceramic insert can be removed from the receiving groove, and the above operation can be repeated for continuous operation.

[0007] Compared with the prior art, the present invention has the following beneficial effects: This fiber-reinforced ceramic ferrule de-adhesive device mainly consists of a de-adhesive support base, a de-adhesive carriage, a ferrule support base, a height adjustment component, a jacking and moving component, a ferrule top block, an ejection and moving component, and an ejection rod. It achieves semi-automatic de-adhesive processing of ceramic ferrules, improving de-adhesive removal efficiency. It also achieves 360-degree de-adhesive removal of ceramic ferrules, enhancing the de-adhesive removal effect. At the same time, by opening de-adhesive holes on the de-adhesive carriage to fit the ceramic ferrule, the probability of damage to the surface of the ceramic ferrule can be greatly reduced. Attached Figure Description

[0008] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model; Figure 2 for Figure 1 Schematic diagram of local structure Figure 1 ; Figure 3 for Figure 1 Schematic diagram of local structure Figure 2 ; Figure 4 for Figure 1 Schematic diagram of local structure Figure 3 ; Figure 5 for Figure 1A schematic diagram of the structure of the glue scraper component in the process; Figure 6 for Figure 1 Schematic diagram of local structure Figure 4 .

[0009] The reference numerals in the accompanying drawings include: base 1, glue scraping support 2, insert support 3, receiving groove 31, first limiting port 32, jacking moving assembly 4, mounting base 41, slide table 42, horizontal moving adjuster 43, displacement table adapter block 44, guide rail 45, ejection moving assembly 5, ejection support 51, ejection moving adjuster 52, ejection guide plate 53, fixing sleeve 54, glue scraping part 6, glue scraping hole 61, height adjusting assembly 7, height adjuster 71, guide adapter block 72, guide rod 73, elastic support 74, insert top block 8, clearance notch 81, ejection rod 9, fixing structure 10, V-shaped bayonet 101, pressure block 102, ejection guide block 11, guide notch 111, vacuum impurity removal assembly 12, vacuum suction hole 121, connecting pipe 122. Detailed Implementation

[0010] The present invention will be further described in detail below through specific embodiments: like Figures 1-6 As shown in the figure, this utility model embodiment proposes a device for removing adhesive from the cylindrical surface of a ceramic ferrule with fiber reinforcement, including a scraping support 2, a ferrule support 3, an infeeding moving component 4, and an ejection moving component 5. The top of the scraping support 2 is connected to a scraping carriage 6 via a fixing structure 10. The scraping carriage 6 has a scraping hole 61 formed inside for the ceramic ferrule to pass through and be scraped with adhesive. The ferrule support 3 is located below one end of the scraping carriage 6 and has a groove formed thereon for removing adhesive from the ceramic ferrule before and after the adhesive removal process. The core provides support in the receiving groove 31, and the core support base 3 is connected to a height adjustment component 7 that drives it to move vertically; the pushing moving component 4 is connected to a core top block 8 located outside one end of the scraping hole 61, which is used to drive the core top block 8 to move closer to or away from the scraping part 6 to push the material or retract the blade; the ejecting moving component 5 is connected to an ejecting rod 9 located outside the other end of the scraping hole 61, which is used to drive the ejecting rod 9 to slide into the scraping hole 61 to push the ceramic core out onto the receiving groove 31.

[0011] When using this fiber-optic ceramic insert cylinder de-adhesive removal device: The height adjustment component 7 drives the ferrule support 3 to move upward to the support position and then stops. At this time, the receiving groove is connected to one end of the scraping hole 61, and then the ceramic ferrule is placed in the receiving groove 31. The subsequent pushing and moving component 4 drives the ferrule top block 8 to move closer to the scraper 6 to push the ceramic ferrule in the receiving groove 31 into the scraper hole 61. During this process, the height adjustment component 7 drives the ferrule support 3 to move downward to the idle position to avoid the ferrule support 3 obstructing the pushing process. During the process of pushing the ceramic ferrule in the receiving groove 31 into the scraper hole 61, since the scraper hole 61 is adapted to the ceramic ferrule, the glue adhering to the outer surface of the ceramic ferrule is scraped off by friction until the ceramic ferrule is completely pushed into the scraper hole 61 and the operation stops. The push-in moving component 4 continues to drive the insert top block 8 to move away from the scraper part 6 to retract the blade, so as to avoid obstruction when the ceramic insert is pushed out of the scraper hole 61, until the insert top block 8 returns to the initial position and stops running; Next, the height adjustment component 7 drives the insert support 3 to move upward to the support position and then stops operating; Finally, the ejector moving component 5 drives the ejector rod 9 to slide within the adhesive scraping hole 61, so that the ceramic insert is completely ejected from the adhesive scraping hole 61 and placed on the receiving groove 31 to stop operation. At this time, the ceramic insert can be removed from the receiving groove 31 and the above operation can be repeated for continuous operation.

[0012] This fiber-reinforced ceramic ferrule de-adhesive device mainly consists of a de-adhesive support base 2, a de-adhesive carriage 6, a ferrule support base 3, a height adjustment component 7, a jacking and moving component 4, a ferrule top block 8, an ejection and moving component 5, and an ejection rod 9. It achieves semi-automatic de-adhesive processing of ceramic ferrules, improving de-adhesive removal efficiency. Furthermore, it enables 360-degree de-adhesive removal of the ceramic ferrule, enhancing the de-adhesive removal effect. Simultaneously, the de-adhesive holes 61 on the de-adhesive carriage 6, adapted to fit the ceramic ferrule, significantly reduce the probability of surface damage to the ceramic ferrule.

[0013] To better understand this solution, the following will describe the structure of the height adjustment component 7, the jacking moving component 4, and the ejection moving component 5.

[0014] First is the height adjustment component 7.

[0015] like Figure 1 and Figure 2 As shown, according to another embodiment of the present invention, the fiber-coated ceramic ferrule de-adhesive device includes a height adjustment component 7 comprising a height adjuster 71 and a guide adapter block 72. The guide adapter block 72 is connected to the output end of the height adjuster 71 and is slidably connected to a guide hole opened in the vertical direction on the glue scraping support 2. The ferrule support 3 is connected to the guide adapter block 72.

[0016] In this embodiment, the height adjuster 71 is fixedly connected to the base 1 via a connecting seat, and both the adhesive scraper support 2 and the jacking moving assembly 4 are connected to the base 1. The height adjuster 71 provides power to drive the guide transition block 72 to move vertically, thereby driving the ferrule support 3 to move between the support position and the idle position, so that the ferrule support 3 moves upward into the support position to support the ceramic ferrule, or moves downward into the idle position to make way for the ferrule top block 8 to perform the jacking process.

[0017] The guide hole and the guide adapter block 72 cooperate to improve the movement stability of the insert support 3; the height adjuster 71 can be an electric telescopic rod or a cylinder. In this embodiment, a cylinder is preferred, and its stroke is controlled to adjust the distance of its upward and downward movement.

[0018] To further improve the moving stability of the ferrule support 3, the ferrule support 3 is provided with at least one guide structure. Each guide structure includes a guide rod 73 and an elastic support member 74. The guide rod 73 is vertically connected to the adhesive scraper support 2, and the ferrule support 3 and the guide rod 73 are slidably connected in the vertical direction. The elastic support member 74 is movably sleeved outside the guide rod 73 and connected between the ferrule support 3 and the adhesive scraper support 2.

[0019] In this embodiment, there are two guide structures distributed on both sides of the insert support 3. The guide rods 73 in the two guide structures guide the insert support 3 and improve its movement stability. The elastic support 74 is specifically a spring, which cooperates with the height adjuster 71 to make the insert support 3 move upward more quickly and rapidly.

[0020] Secondly, there is the insert support 3.

[0021] like Figure 2 and Figure 4 As shown, according to another embodiment of the present invention, the fiber-coated ceramic insert cylinder de-adhesive device includes a fixing structure 10 that fixes the adhesive scraper 6 to one end facing the ejector moving assembly 5. The insert support 3 is located below the end of the adhesive scraper 6 away from the ejector moving assembly 5, and its top is formed with a positioning turning platform for positioning the insert top block 8 when it ejects material. A first limiting opening 32 is formed on the high platform of the positioning turning platform in the vertical direction for limiting the adhesive scraper 6 and providing clearance when the insert support 3 moves upward toward the adhesive scraper 6. A receiving groove 31 is located between the first limiting opening 32 and the insert top block 8, and the receiving groove 31 is located on the low platform of the positioning turning platform.

[0022] In this embodiment, the scraper 6 is cylindrical, and the first limiting port 32 is U-shaped. The first limiting port 32 and the receiving groove 31 are reasonably distributed on the high and low surfaces of the positioning turning platform, enabling the following operations: When the insert support 3 moves upward to the support position, the first limiting port 32 provides clearance for the scraper 6, preventing the scraper 6 from obstructing the insert support 3 from moving into the support position; when the insert support 3 moves upward until the bottom of the scraper 6 contacts the inner bottom side of the first limiting port 32, the height adjuster 71 stops operating, the insert support 3 no longer moves upward, and the insert support 3 has just moved to the support position, with the receiving groove 31 connecting to one end of the guide hole; the ceramic insert is placed on the receiving groove 31, with the ceramic insert and the scraper hole 61 arranged coaxially; at this time, the pushing moving component 4 operates to drive the insert top block 8 to push the ceramic insert into the scraper hole 61. When the insert support 3 moves downward to the idle position, the bottom of the glue scraper 6 is still located at the top opening of the first limiting port 32 to limit the glue scraper 6 to a certain extent.

[0023] Next is the fixed structure 10.

[0024] like Figure 2 and Figure 4 As shown, according to another embodiment of the present invention, the fiber-coated ceramic insert cylinder adhesive removal device includes a fixing structure 10 comprising a VV-shaped bayonet 101 formed on the top of the adhesive scraper support 2 and a pressure block 102 fixedly connected to the top of the adhesive scraper support 2 by screws. One end of the adhesive scraper 6 is placed in the VV-shaped bayonet 101 and is pressed and fixed by the pressure block 102 to ensure the stable installation of the adhesive scraper 6.

[0025] To further improve the stability of the scraper component 6 during use, the scraper support 2 is provided with an ejector guide block 11. The ejector guide block 11 abuts against one end of the scraper component 6, and its top forms a guide notch 111 that slides with the ejector moving assembly 5. Specifically, the ejector guide block 11 abuts against the end of the scraper component 6 away from the insert top block 8. The ejector guide block 11 can ensure the stability of the scraper component 6 during the ejection process of the insert top block 8, and the guide notch 111 also guides the operation of the ejector moving assembly 5, thereby improving the stability of the operation of the ejector moving assembly 5.

[0026] The pressure plate has two mounting protrusions on the side facing the insert top block 8, and the adhesive scraper support 2 has mounting protrusions located below the two mounting protrusions on its side. The insert support 3 slides between the two mounting protrusions and the mounting protrusions. The guide rods 73 in the two guide structures are connected one-to-one between the two mounting protrusions and the mounting protrusions for reasonable arrangement.

[0027] Then comes the top-mounted moving component 4.

[0028] like Figure 1 and Figure 6 As shown, according to another embodiment of the present invention, the fiber-coated ceramic ferrule cylinder degumming device includes a mounting base 41 and a slide 42. The mounting base 41 is provided with a horizontal movement adjuster 43. The slide 42 is connected to the output end of the horizontal movement adjuster 43 and the slide 42 is connected to the ferrule top block 8 through a displacement stage adapter block 44.

[0029] In this embodiment, the mounting base 41 is fixedly connected to the base 1, and the horizontal movement adjuster 43 provides power to drive the slide table 42 to slide, which in turn drives the insert top block 8 to move through the displacement table adapter block 44, driving the insert top block 8 to move closer to or away from the scraper part 6 to eject material or retract the blade.

[0030] The horizontal movement adjuster 43 can be an electric telescopic rod or a cylinder.

[0031] To improve the stability of the slide table 42 and thus enable better cooperation between the ferrule top block 8 and the ceramic ferrule, at least one guide rail 45 is provided on the mounting base 41 along the sliding direction of the slide table 42, and the guide rail 45 is slidably connected to the slide table 42. In this embodiment, there are two guide rails 45, which are distributed on the mounting base 41 in an upper and lower position. The two guide rails 45 cooperate to guide the sliding of the slide table 42 and improve its movement stability.

[0032] To prevent damage to the optical fiber connected to the ceramic ferrule during the pushing process, the ferrule top block 8 has a boss at one end, with a clearance notch 81 formed on the top of the boss to allow the optical fiber connected to the ceramic ferrule to pass through. One end of the ceramic ferrule abuts against the outside of the clearance notch 81. When the horizontal movement adjuster 43 operates, driving the ferrule top block 8 to move closer to the glue scraper 6 for pushing, the optical fiber passes through the clearance notch 81. The clearance notch 81 makes way for the optical fiber, and the cross-sectional area of ​​one end of the clearance notch 81 is smaller than the cross-sectional area of ​​one end of the ceramic ferrule. This causes the ferrule top block 8 to apply force to the ceramic ferrule, moving the ceramic ferrule from the receiving groove 31 into the glue scraper hole 61.

[0033] Next, we move component 5 out.

[0034] like Figure 1 , Figure 2 as well as Figure 3As shown, according to another embodiment of the present invention, the fiber-coated ceramic ferrule de-adhesive device includes an ejector moving assembly 5 comprising an ejector support 51 and an ejector moving adjuster 52. The ejector support 51 is connected to an ejector guide block 11 and an ejector guide plate 53 is slidably connected thereon. The ejector guide plate 53 is connected to an ejector rod 9 via a fixing sleeve 54. The fixing sleeve 54 slides within the guide notch 111 during movement. The ejector moving adjuster 52 is connected to the ejector support 51 and its output end is connected to the ejector guide plate 53.

[0035] In this embodiment, the ejector support 51 includes an ejector support block and two connecting rods connected between the ejector support block and the ejector guide block 11. The ejector guide plate 53 is slidably connected to the two connecting rods, and each connecting rod is movably fitted with abutting against the ejector guide block 11 and the ejector guide plate 53. The ejector movement adjuster 52 is connected to the ejector support block to stably install the ejector movement adjuster 52; the ejector movement adjuster 52 can be an electric telescopic rod or a cylinder.

[0036] Specifically: The ejector movement adjuster 52 operates, driving the ejector guide plate 53 to move. The two connecting rods guide the movement of the ejector guide plate 53, and the fixed sleeve 54 slides and adapts to the guide notch 111 during movement, ensuring that the ejector rod 9 moves stably within the glue scraping hole 61 to eject the ceramic insert that has been de-adheded from the glue scraping hole 61.

[0037] To clean the residual adhesive adhering to the surface of the ceramic ferrule after de-adhesion is completed, such as... Figure 2 , Figure 3 as well as Figure 4 As shown, according to another embodiment of the present invention, the fiber-coated ceramic ferrule de-adhesive device further includes a vacuum de-adhesive assembly 12. The vacuum de-adhesive assembly 12 includes a vacuum suction hole 121 and a vacuum generator. The suction port of the vacuum suction hole 121 is located at the bottom of the receiving groove 31. The vacuum generator is connected to the vacuum suction hole 121 and is used to provide negative pressure suction force to the vacuum suction hole 121.

[0038] In this embodiment, the vacuum suction hole 121 extends from the guide adapter block 72 and the ferrule support 3, and the guide adapter block 72 is connected to a connecting pipe 122 that communicates with the vacuum suction hole 121. In use, the connecting pipe 122 is connected to a vacuum generator; after the ceramic ferrule that has been de-adhesive-removed is ejected onto the receiving groove 31, the vacuum generator is activated to generate suction force at the suction port of the vacuum suction hole 121, thereby sucking up the residual adhesive attached to the surface of the ceramic ferrule, making the cleaning of the ceramic ferrule more thorough.

[0039] The vacuum generator is an existing structure capable of generating negative pressure suction, and will not be described further here.

[0040] When using this fiber-optic ceramic insert cylinder de-adhesive removal device: Start the height adjuster 71, drive the ferrule support 3 to move upward to the support position and then stop running. Then place the ceramic ferrule in the receiving groove 31. Then, the horizontal movement adjuster 43 is activated, which drives the ferrule top block 8 to move, pushing the ceramic ferrule in the receiving slot 31 into the glue scraping hole 61 for glue removal; during this process, the height adjuster 71 is activated, driving the ferrule support 3 to move downward to the idle position and then stopping; until the ceramic ferrule is completely pushed into the glue scraping hole 61; at this time, the horizontal movement adjuster 43 runs in reverse, driving the ferrule top block 8 to move in the opposite direction to return to the initial position, and then stops. The next step is to activate the height adjuster 71, drive the insert support 3 to move upward to the support position, and then stop operating; Next, the ejector movement adjuster 52 is activated, driving the ejector rod 9 to slide within the scraping hole 61, completely ejecting the ceramic insert from the scraping hole 61 and placing it on the receiving groove 31, and then the operation is stopped. Finally, the vacuum generator is activated to generate suction force at the suction port of the vacuum suction hole 121 to suck up the residual adhesive adhering to the surface of the ceramic ferrule. During this process, the ceramic ferrule can be manually rotated until it is clean. After removing the ceramic ferrule from the receiving groove 31, the above operation can be repeated for continuous operation.

[0041] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A device for removing adhesive from the cylindrical surface of a fiber-reinforced ceramic insert, characterized in that, include: The adhesive scraper support base has an adhesive scraper component connected to its top via a fixed structure. The adhesive scraper component has an adhesive scraper hole inside for the ceramic insert to pass through and perform frictional adhesive scraping. A ferrule support is provided below one end of the adhesive scraper and has a receiving groove formed thereon for providing support for the ceramic ferrule before and after adhesive removal. The ferrule support is connected to a height adjustment component that drives it to move in the vertical direction. The push-in moving assembly is connected to a core insert block located outside one end of the scraping hole, which is used to drive the core insert block to move towards or away from the scraping part to push the material or retract the blade. An ejector moving assembly is connected to an ejector rod located outside the other end of the scraping hole; Used to drive the ejector rod to slide into the scraper hole and eject the ceramic insert onto the receiving slot.

2. The adhesive removal device for a fiber-reinforced ceramic insert cylinder according to claim 1, characterized in that, It also includes a vacuum cleaning component, which comprises: Vacuum suction hole, wherein the suction port of the vacuum suction hole is located at the bottom of the receiving groove; A vacuum generator, which is connected to a vacuum suction port, is used to provide negative pressure suction force to the vacuum suction port.

3. The adhesive removal device for a fiber-reinforced ceramic insert cylinder according to claim 1 or 2, characterized in that, The fixing structure fixes the scraper piece to one end facing the ejector moving assembly. The insert support is located below the end of the scraper piece away from the ejector moving assembly, and its top has a positioning turning platform for positioning the insert top block when it ejects material. A first limiting opening is formed on the high platform of the positioning turning platform in the vertical direction for limiting the scraper piece and providing clearance when the insert support moves upward toward the scraper piece. The receiving groove is located between the first limiting opening and the insert top block, and the receiving groove is located on the low platform of the positioning turning platform.

4. The adhesive removal device for a fiber-reinforced ceramic insert cylinder according to claim 1, characterized in that, The height adjustment component includes: Height adjuster; A guide adapter block is connected to the output end of the height adjuster and is slidably connected to a guide hole opened in the vertical direction on the glue scraper support. The insert support is connected to the guide adapter block.

5. A device for removing adhesive from the cylindrical surface of a fiber-reinforced ceramic insert according to claim 1 or 4, characterized in that, The insert support base is provided with at least one guide structure, each guide structure including: A guide rod is vertically connected to the glue scraper support, and the insert support and the guide rod are slidably connected vertically. An elastic support member is movably sleeved outside the guide rod and connected between the insert support seat and the adhesive scraper support seat.

6. The adhesive removal device for the cylindrical surface of a fiber-reinforced ceramic insert according to claim 1, characterized in that, The top of one end of the ferrule has a boss, and a clearance notch is formed on the top of the boss for the optical fiber connected to the ceramic ferrule to pass through. One end of the ceramic ferrule abuts against the outside of the clearance notch.

7. A device for removing adhesive from the cylindrical surface of a fiber-reinforced ceramic insert according to claim 1 or 6, characterized in that, The jacking moving assembly includes: Mounting base, wherein a horizontal movement adjuster is provided on the mounting base; The slide is connected to the output end of the horizontal movement adjuster and is connected to the core top block through the displacement stage adapter block.

8. The adhesive removal device for a fiber-reinforced ceramic insert cylinder according to claim 7, characterized in that, The mounting base is provided with at least one guide rail arranged along the sliding direction of the slide table, and the guide rail is slidably connected to the slide table.

9. The adhesive removal device for a fiber-reinforced ceramic insert cylinder according to claim 1, characterized in that, The scraper support is provided with an ejector guide block, which abuts against one end of the scraper and has a guide notch at its top that slides with the ejector moving component.

10. The adhesive removal device for a fiber-reinforced ceramic ferrule according to claim 9, characterized in that, The ejection moving component includes: An ejection support is provided, which is connected to an ejection guide block and has an ejection guide plate slidably connected thereon. The ejection guide plate is connected to the ejection rod through a fixed sleeve. The fixed sleeve slides and adapts to the guide notch during movement. An ejector movement adjuster is connected to an ejector support base and its output end is connected to an ejector guide plate.