Disassembly pliers for removing a fiber optic conduit support from a clip

By designing a disassembly clamp for the clip, and utilizing clearance grooves and protrusions, the problem of time-consuming and laborious operation of removing the fiber optic conduit support from the clip channel is solved, achieving a more labor-saving and easier disassembly operation and reducing operator fatigue.

CN224587832UActive Publication Date: 2026-08-04QIAGEN SHENZHEN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QIAGEN SHENZHEN CO LTD
Filing Date
2025-09-04
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

During the assembly and rework of the clips, the removal of the fiber optic conduit support from the clip's channel lacks auxiliary tools, resulting in time-consuming and labor-intensive operations, as well as operator fatigue.

Method used

A disassembly clamp for removing fiber optic conduit supports from clips has been designed, comprising a first clamp body and a second clamp body. Through the structural design of clearance grooves and protrusions, the fiber optic conduit supports can be disassembled in a directional manner, reducing the difficulty and time of operation.

Benefits of technology

The design of the slot, the first opening, and the second opening accommodates the entry, exit, and passage of the fiber optic conduit. The first operating end provides support and clearance, while the protrusion of the second operating end ensures that the fiber optic conduit support can be pushed out of the narrow channel, reducing the difficulty of operation, reducing operation time, and alleviating operator fatigue.

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Abstract

This application provides a disassembly clamp for removing fiber optic conduit supports from a clamp, comprising a first clamp body and a second clamp body. The first clamp body has a first operating end; the second clamp body has a second operating end, and the second clamp body and the first clamp body are rotatably connected by a pin. A clearance groove is provided at the end of the first operating end away from the pin; the clearance groove has an opening on the side away from the pin; a first opening is provided on the side of the clearance groove facing the second operating end, and a second opening is provided on the side of the clearance groove away from the second operating end; an abutment surface is provided on the side of the first operating end facing the second operating end, the abutment surface surrounding the outer periphery of the first opening; a protrusion is provided on the side of the second operating end facing the first operating end, the protrusion being opposite to the first opening, and the protrusion is used to move the fiber optic conduit support from the clamp's channel through the clearance groove to the outside of the channel. This disassembly clamp can significantly reduce the difficulty of operation for operators, reduce operation time, and alleviate operator fatigue caused by delicate operations.
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Description

Technical Field

[0001] This application relates to the field of biological monitoring device technology, and more specifically to a disassembly clamp for removing fiber optic catheter stents from clips. Background Technology

[0002] Nucleic acid analysis gel columns (or simply clips) are the core product of fully automated DNA / RNA analysis systems. They are primarily used for the automated analysis of large molecules such as DNA or RNA with high sensitivity and high resolution, and are widely applied in key scenarios such as genetics, disease screening, DNA fingerprinting analysis, and pathogen monitoring. The production of clips follows a strict process, involving incoming material cleaning, assembly of the middle and bottom support, capillary inspection, and pressure cleaning. Finally, after passing inspection, the clips proceed to the packaging stage.

[0003] The clip has several channels, each of which can accommodate a fiber optic conduit support with a fiber optic cable. During the assembly and rework of the clip, the fiber optic conduit support needs to be removed from the clip's channels. However, there are no tools available to assist in removing the fiber optic conduit support from the clip's channels. The small size of both the fiber optic conduit support and the channels, coupled with the lack of auxiliary tools, leads to operator fatigue and makes the process time-consuming and labor-intensive. Utility Model Content

[0004] This application provides a disassembly pliers for removing fiber optic conduit supports from clips, which solves the problem that there are no tools to assist in removing fiber optic conduit supports from the channels of clips.

[0005] To address the aforementioned technical problems, this application provides a disassembly clamp for removing fiber optic conduit supports from clips, comprising a first clamp body and a second clamp body. The first clamp body has a first operating end; the second clamp body has a second operating end, and the second clamp body is rotatably connected to the first clamp body via a pin, allowing the first operating end and the second operating end to move closer and further apart relative to each other.

[0006] The first operating end has a clearance groove at the end away from the pin, which is used to accommodate the optical fiber conduit on the optical fiber conduit support. The clearance groove has an opening on the side away from the pin, which is used for the optical fiber conduit to enter and exit the clearance groove. The clearance groove has a first opening on the side facing the second operating end and a second opening on the side facing away from the second operating end. The first opening and the second opening are used for the optical fiber conduit to pass through. The first operating end has an abutment surface on the side facing the second operating end, which surrounds the outer periphery of the first opening and is used to abut against the clip.

[0007] The second operating end has a protrusion on the side facing the first operating end. The protrusion is positioned opposite to the first opening. The protrusion is used to move the fiber optic conduit support from inside the clamp channel through the clearance groove to outside the channel.

[0008] In one embodiment, a limiting surface is provided on the side of the second operating end facing the first operating end, and a protrusion is provided on the limiting surface. When the limiting surface and the abutment surface are rotated to be relatively parallel, the end of the protrusion away from the limiting surface extends into the clearance groove through the first opening.

[0009] In one embodiment, the maximum outer diameter of the protrusion in the direction parallel to the limiting surface is smaller than the maximum inner diameter of the clearance groove in the direction parallel to the abutment surface.

[0010] In one embodiment, the first clamp body further includes a first handle end, the first handle end including a first connecting portion, and the second clamp body further includes a second handle end, the second handle end including a second connecting portion, the first connecting portion being detachably connected to the first operating end, and the second connecting portion being detachably connected to the second operating end.

[0011] In one embodiment, the disassembly forceps for removing the fiber optic conduit support from the clip further includes a first threaded part and a second threaded part, wherein the first connecting part is connected to the first operating end via the first threaded part, and the second connecting part is connected to the second operating end via the second threaded part.

[0012] In one embodiment, the first operating end near the first connecting part has a first mounting groove, the first mounting groove has a third opening on the side facing the first connecting part, at least a portion of the first connecting part can be inserted into the first mounting groove through the third opening, and the first connecting part located in the first mounting groove is connected to the groove wall of the first mounting groove by a first threaded component.

[0013] The second operating end has a second mounting groove at one end near the second connecting part. The second mounting groove has a fourth opening on the side facing the second connecting part. At least a portion of the second connecting part can be inserted into the second mounting groove through the fourth opening. The second connecting part located in the second mounting groove is connected to the groove wall of the second mounting groove by a second threaded component.

[0014] In one embodiment, the first clamp body further includes a first handle end, the first handle end further includes a first hand-held portion, the second clamp body further includes a second handle end, the second handle end further includes a second hand-held portion, the first hand-held portion and the second hand-held portion are located on one side of the pin, the first operating end and the second operating end are located on the other side of the pin, when the first hand-held portion and the second hand-held portion are relatively close, the first operating end and the second operating end are relatively close, when the first hand-held portion and the second hand-held portion are relatively far apart, the first operating end and the second operating end are relatively far apart.

[0015] In one embodiment, the first handle end further includes a first assembly part, and the second handle end further includes a second assembly part. The two ends of the first assembly part are respectively connected to the first hand-held part and the first operating end; the two ends of the second assembly part are respectively connected to the second hand-held part and the second operating end; the first assembly part and the second assembly part are stacked, the first assembly part is provided with a first assembly hole, the second assembly part is provided with a second assembly hole, the axis of the first assembly hole coincides with the axis of the second assembly hole, and the pin is assembled in the first assembly hole and the second assembly hole.

[0016] In one embodiment, anti-slip protrusions are provided on the first hand grip and the second hand grip.

[0017] In one embodiment, both the first clamp body and the second clamp body are made of steel, and the surfaces of both the first clamp body and the second clamp body are plated with chromium metal.

[0018] The disassembly forceps for removing fiber optic conduit supports from clips, as described in this application, are used by first positioning the first and second operating ends at a certain angle. Generally, the horizontal arm of the clip has a channel. The abutting surface of the first operating end is placed against the top surface of the horizontal arm, and the abutting surface surrounds the outside of the channel opening at the upper end of the channel, so that the clearance groove is positioned opposite the channel, with the first opening of the clearance groove directly facing the channel opening at the upper end. At this time, the fiber optic conduit on the fiber optic conduit support enters the clearance groove through the slot, and the fiber optic conduit passes vertically through the clearance groove via the first and second openings. The fiber optic conduit is cleared of obstruction. Then, the second operating end is placed at the bottom of the horizontal arm, so that the protrusion is aligned with the lower end of the channel opening. The second operating end is rotated close to the first operating end, so that the protrusion extends into the channel from the lower end of the channel opening. The protrusion can push the fiber optic conduit support in the channel upward, causing the fiber optic conduit support to enter the clearance groove from the upper end of the channel opening. The protrusion continues to push the fiber optic conduit support upward, which can make the fiber optic conduit support completely detach from the channel and be removed from the second opening of the clearance groove, thereby completing the operation of removing the fiber optic conduit support from the clip.

[0019] This disassembly pliers, with its slotted, first, and second openings, can accommodate the entry, exit, and passage of fiber optic conduits. The first operating end provides support and clearance, while the protrusion on the second operating end ensures that the fiber optic conduit support can be pushed out of narrow channels, enabling directional disassembly of the fiber optic conduit support from the clamping channel. This allows operators to operate the fiber optic conduit support without using their fingers, instead employing the more labor-saving and easier-to-use disassembly pliers. Using these pliers can significantly reduce the difficulty of operation, shorten operation time, and alleviate operator fatigue caused by delicate operations. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of a state of a disassembly forceps for removing an optical fiber conduit support from a clip, according to an embodiment of this application.

[0021] Figure 2 This is a schematic diagram of another state of the disassembly forceps for removing an optical fiber conduit support from a clip, according to an embodiment of this application.

[0022] Figure 3 An exploded view of a disassembly pliers for removing a fiber optic conduit support from a clip, according to an embodiment of this application;

[0023] Figure 4 A diagram showing the state of a disassembly pliers for removing a fiber optic conduit support from a clip, provided in an embodiment of this application, during use.

[0024] Figure 5 This is a state diagram from another perspective during use of the disassembly forceps for removing fiber optic conduit supports from clips, provided in one embodiment of this application.

[0025] Reference numerals: First clamp body 10, first operating end 11, clearance groove 111, groove 112, first opening 113, second opening 114, abutment surface 115, first mounting groove 116, third opening 1161, first connecting part 121, first hand-held part 122, first assembly part 123, second clamp body 20, second operating end 21, limiting surface 211, second mounting groove 212, fourth opening 2121, second connecting part 221, second hand-held part 222, second assembly part 223, protrusion 23, first threaded part 70, second threaded part 80, pin 30, clamp 40, cross arm 41, channel 411, fiber optic conduit support 50, fiber optic conduit 60. Detailed Implementation

[0026] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.

[0027] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments, and the operational steps involved in each embodiment can also be rearranged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for clearly describing a particular embodiment and do not imply that they represent the necessary components and / or order.

[0028] The serial numbers assigned to components in this document, such as "first" and "second," are used only to distinguish the described objects and have no sequential or technical meaning. The terms "connection" and "linkage" used in this application, unless otherwise specified, include both direct and indirect connections (linkages).

[0029] The terms "parallel" and "perpendicular," etc., are specific to the current technological level, not absolute mathematical definitions. Slight deviations are permissible; approximations of parallelism or perpendicularity are acceptable. For example, "A and B are parallel" means that A and B are parallel or approximately parallel, with an angle between A and B between 0° and 10°. Similarly, "A and B are perpendicular" means that A and B are perpendicular or approximately perpendicular, with an angle between A and B between 80° and 100°. The directional terms used in the embodiments of this application, such as "upper," "inner," "outer," and "side," are merely for reference to the accompanying drawings. Therefore, the directional terms used are for better and clearer explanation and understanding of the embodiments of this application, and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application.

[0030] Please refer to Figure 1 and Figure 2 As shown, this application provides a disassembly clamp (hereinafter referred to as disassembly clamp) for removing fiber optic conduit supports from clips. The disassembly clamp includes a first clamp body 10 and a second clamp body 20.

[0031] The first clamp body 10 has a first operating end 11, and the second clamp body 20 has a second operating end 21. Specifically, one end of the first clamp body 10 along its length is the first operating end 11, and one end of the second clamp body 20 along its length is the second operating end 21. The second clamp body 20 and the first clamp body 10 are rotatably connected by a pin 30, so that the first operating end 11 and the second operating end 21 can move closer and further apart.

[0032] Please refer to Figure 1 and Figure 2 As shown, the end of the first operating end 11 furthest from the pin 30 is provided with a clearance groove 111, such as... Figure 4 and Figure 5As shown, when the disassembly clamps are used, the clearance groove 111 is used to accommodate the fiber optic conduit 60 on the fiber optic conduit support 50. The fiber optic conduit support 50 is used to install the fiber optic conduit 60. After the fiber optic conduit support 50 and the fiber optic conduit 60 are assembled, a portion of the fiber optic conduit 60 is exposed above the fiber optic conduit support 50. Removing the fiber optic conduit support 50 from the clip 40 in this application refers to removing the fiber optic conduit support 50 with the fiber optic conduit 60 from the clip 40.

[0033] like Figure 1 , Figure 2 as well as Figure 5 As shown, the clearance groove 111 has a slot 112 on the side away from the pin 30. The slot 112 is used for the fiber optic conduit 60 to enter and exit the clearance groove 111. The clearance groove 111 has a first opening 113 on the side facing the second operating end 21, and a second opening 114 on the side facing away from the second operating end 21. The first opening 113 and the second opening 114 are used for the fiber optic conduit 60 to pass through. That is, the clearance groove 111 penetrates the first operating end 11 in the direction facing the second operating end 21. Figure 4 and Figure 5 As shown, by setting the first opening 113 and the second opening 114, when the disassembly clamp is used, the fiber optic conduit 60 can enter the clearance groove 111 through the slot 112. When a part of the fiber optic conduit 60 is set in the clearance groove 111, the fiber optic conduit 60 below the part of ...

[0034] like Figure 1 and Figure 2 As shown, the first operating end 11 has an abutment surface 115 on the side facing the second operating end 21. The abutment surface 115 surrounds the outer periphery of the first opening 113 and is used to abut against the clip 40. Specifically, as shown... Figure 4 and Figure 5 As shown, the card holder 40 has a horizontal arm 41, and a plurality of channels 411 are provided on the horizontal arm 41, which penetrate the horizontal arm 41 along the thickness direction of the horizontal arm 41. The channels 411 have channel openings at the top and bottom. The abutting surface 115 is used to abut against the top surface of the horizontal arm 41 of the card holder 40, and the abutting surface 115 surrounds the outside of the channel opening above the channel 411. The first opening 113 is directly opposite to the channel opening above the channel 411, so that the clearance groove 111 is directly opposite to the channel 411.

[0035] like Figure 1 and Figure 2As shown, the second operating end 21 has a protrusion 23 on the side facing the first operating end 11. The protrusion 23 is arranged opposite to the first opening 113. Specifically, when the first operating end 11 and the second operating end 21 are arranged in parallel (when the angle between them is about 0), the protrusion 23 is arranged opposite to the first opening 113. The protrusion 23 is used to move the fiber optic conduit support 50 from inside the channel 411 of the clip 40 through the clearance groove 111 to outside the channel 411.

[0036] like Figure 4 and Figure 5 As shown, in the actual disassembly process of the disassembly pliers for removing the fiber optic conduit support from the clip, i.e., when it is necessary to disassemble the fiber optic conduit support 50 located in the channel 411 of the clip 40, the first operating end 11 and the second operating end 21 are first arranged at a certain angle, and the abutment surface 115 of the first operating end 11 is attached to the top surface of the cross arm 41, and the abutment surface 115 surrounds the outside of the channel opening at the upper end of the channel 411, so that the clearance groove 111 is opposite to the channel 411, and the first opening 113 of the clearance groove 111 is directly opposite to the channel opening at the upper end of the channel 411; at this time, the fiber optic conduit 60 on the fiber optic conduit support 50 enters the clearance groove 111 through the slot 112, and the fiber optic conduit 60 moves up and down through the first opening 113 and the second opening 114. The fiber optic conduit 60 is passed through the clearance groove 111 to achieve clearance; then the second operating end 21 is placed at the bottom of the cross arm 41, so that the protrusion 23 is aligned with the lower end of the channel 411. The second operating end 21 is rotated close to the first operating end 11, so that the protrusion 23 extends into the channel 411 from the lower end of the channel 411. The protrusion 23 can push the fiber optic conduit support 50 in the channel 411 upward, causing the fiber optic conduit support 50 to enter the clearance groove 111 from the upper end of the channel 411. The protrusion 23 continues to push the fiber optic conduit support 50 upward, so that the fiber optic conduit support 50 can be completely separated from the channel 411 and removed from the second opening 114 of the clearance groove 111, thereby completing the operation of removing the fiber optic conduit support 50 from the clip 40.

[0037] The disassembly pliers, with their slot 112, first opening 113, and second opening 114, allow the fiber optic conduit 60 to enter, exit, and pass through. During disassembly, the clearance slot 111 avoids the fiber optic conduit 60 on the fiber optic conduit support 50 and also prevents the fiber optic conduit support 50 from being pushed out of the channel 411. The protrusion 23 on the second operating end 21 ensures that the fiber optic conduit support 50 can be pushed out of the narrow channel 411, achieving directional disassembly of the fiber optic conduit support 50 from the clamp 40 channel 411. This allows operators to avoid using their fingers to pry the fiber optic conduit support 50, instead using the more labor-saving and easier-to-operate disassembly pliers. Using these pliers significantly reduces operational difficulty and time, alleviating operator fatigue caused by delicate handling.

[0038] In one embodiment, such as Figure 1 and Figure 2 As shown, the second operating end 21 has a limiting surface 211 on the side facing the first operating end 11, and the limiting surface 211 has a protrusion 23, such as... Figure 1 When the limiting surface 211 and the abutment surface 115 rotate to be relatively parallel, the end of the protrusion 23 away from the limiting surface 211 extends into the relief groove 111 through the first opening 113, thereby making the protrusion 23 have sufficient length to ensure that the protrusion 23 has sufficient stroke to lift the fiber optic conduit support 50, and to ensure that the fiber optic conduit support 50 can be stably pushed out from the channel 411.

[0039] In one embodiment, the maximum outer diameter of the protrusion 23 in the direction parallel to the limiting surface 211 is smaller than the maximum inner diameter of the clearance groove 111 in the direction parallel to the abutment surface 115. The maximum outer diameter of the protrusion 23 in the direction parallel to the limiting surface 211 can be slightly smaller than the outer diameter of the fiber optic conduit support 50. The maximum outer diameter of the protrusion 23 in the direction parallel to the limiting surface 211 needs to be smaller than the minimum inner diameter of the channel 411 so that the protrusion 23 can extend into the channel 411. The maximum inner diameter of the clearance groove 111 in the direction parallel to the abutment surface 115 needs to be larger than the maximum outer diameter of the fiber optic conduit support 50. The maximum inner diameter of the clearance groove 111 in the direction parallel to the abutment surface 115 also needs to be larger than the maximum outer diameter of the channel 411 so that the clearance groove 111 can avoid the ejection of the fiber optic conduit support 50.

[0040] like Figure 3 As shown, in one embodiment, the first clamp body 10 further includes a first handle end, which includes a first connecting portion 121. The second clamp body 20 further includes a second handle end, which includes a second connecting portion 221. The first connecting portion 121 is detachably connected to the first operating end 11, and the second connecting portion 221 is detachably connected to the second operating end 21. By setting the detachable connection between the connecting portion and the operating end, when there are differences in the specifications of the channel 411 of the clamp 40 and the size of the fiber optic conduit support 50, the operator can quickly replace the operating end with one that is adapted to different specifications by detaching the operating end from the connecting portion. For example, if the diameter of the fiber optic conduit support 50 increases, the first operating end 11 with a larger clearance groove 111 can be replaced.

[0041] This detachable design eliminates the need to replace the entire pliers body; simply replacing the operating end meets the needs of different scenarios. This not only reduces the cost of using the tool but also lessens the burden on operators who would otherwise have to carry multiple pliers. Furthermore, when the operating end wears out due to prolonged use, the damaged end can be replaced individually, improving the tool's durability.

[0042] In one embodiment, the disassembly forceps for removing the fiber optic conduit support from the clamp further includes a first threaded member 70 and a second threaded member 80. The first connecting portion 121 is connected to the first operating end 11 via the first threaded member 70, and the second connecting portion 221 is connected to the second operating end 21 via the second threaded member 80. The threaded connection structure provides a stable and convenient way to assemble and disassemble the operating end and the handle end, ensuring that the operating end and the connecting portion remain reliably fixed during disassembly, preventing loosening due to external forces, and ensuring the stability of the disassembly process. In other embodiments, the connecting portion and the operating end may also employ other detachable connection methods.

[0043] In one embodiment, the first operating end 11 has a first mounting groove 116 at one end near the first connecting part 121. The first mounting groove 116 has a third opening 1161 on the side facing the first connecting part 121. At least a portion of the first connecting part 121 can be inserted into the first mounting groove 116 through the third opening 1161. The first connecting part 121 located in the first mounting groove 116 is connected to the groove wall of the first mounting groove 116 by a first threaded member 70.

[0044] The second operating end 21 has a second mounting groove 212 at the end near the second connecting part 221. The second mounting groove 212 has a fourth opening 2121 on the side facing the second connecting part 221. At least a portion of the second connecting part 221 can be inserted into the second mounting groove 212 through the fourth opening 2121. The second connecting part 221 located in the second mounting groove 212 is connected to the groove wall of the second mounting groove 212 by a second threaded component 80. Each connecting part and each mounting groove has a screw hole on its groove wall for connection with the corresponding threaded component. The groove wall of the mounting groove can form a circumferential limit on the connecting part, preventing relative rotation or offset between the operating end and the connecting part during disassembly and assembly, ensuring that the first threaded component 70 and the second threaded component 80 can be accurately aligned with the screw hole, reducing assembly difficulty. The opening design of the mounting groove provides a guide for the connecting part to be inserted into the mounting groove. During installation, the operator can quickly complete the initial assembly of the connecting part and the mounting groove without precise alignment, and then fix it by tightening the threaded component.

[0045] In one embodiment, the first handle end further includes a first handheld portion 122, and the second handle end further includes a second handheld portion 222. The first handheld portion 122 and the second handheld portion 222 are located on one side of the pin 30, and the first operating end 11 and the second operating end 21 are located on the other side of the pin 30. When the first handheld portion 122 and the second handheld portion 222 are relatively close, the first operating end 11 and the second operating end 21 are relatively close; when the first handheld portion 122 and the second handheld portion 222 are relatively far apart, the first operating end 11 and the second operating end 21 are relatively far apart. By setting the handheld portion, with the pin 30 as a fulcrum, and the handheld portion and the operating end located at opposite ends of the lever arm, the gripping force applied by the operator to the first handheld portion 122 and the second handheld portion 222 can be amplified and transmitted to the operating end. When pushing the fiber optic conduit support 50 out of the channel 411 of the clamp 40, sufficient force can be obtained without applying excessive gripping force, thus significantly reducing the intensity of operation. This is especially suitable for long-term operations in batch disassembly scenarios, effectively reducing operator hand fatigue.

[0046] In one embodiment, the first handle end further includes a first assembly part 123, and the second handle end further includes a second assembly part 223. The two ends of the first assembly part 123 are respectively connected to the first hand-held part 122 and the first operating end 11; the two ends of the second assembly part 223 are respectively connected to the second hand-held part 222 and the second operating end 21; the first assembly part 123 and the second assembly part 223 are stacked, the first assembly part 123 is provided with a first assembly hole, the second assembly part 223 is provided with a second assembly hole, the axis of the first assembly hole coincides with the axis of the second assembly hole, and the pin 30 is assembled in the first assembly hole and the second assembly hole.

[0047] The first assembly part 123 and the second assembly part 223 serve as intermediate connecting components between the handheld part and the operating end, providing a mounting structure for the pin 30. Specifically, one end of the first connecting part 121 is connected to the first operating end 11, the other end of the first connecting part 121 is connected to the first assembly part 123, and the end of the first assembly part 123 away from the first connecting part 121 is connected to the first handheld part 122; one end of the second connecting part 221 is connected to the second operating end 21, the other end of the second connecting part 221 is connected to the second assembly part 223, and the end of the second assembly part 223 away from the second connecting part 221 is connected to the second handheld part 222.

[0048] In one embodiment, the disassembly forceps for removing the fiber optic conduit support from the clamp further includes a first flexible sleeve (not shown) and a second flexible sleeve (not shown). The first flexible sleeve is fitted onto the first handle portion 122, and the second flexible sleeve is fitted onto the second handle portion 222. The flexible sleeves are made of flexible materials, such as silicone. The flexible sleeves have a certain degree of elasticity and softness, which can effectively cushion the pressure when the operator grips the handle portion, reduce hand fatigue, and the flexible material can also have anti-slip properties, increasing the friction between the hand and the handle portion.

[0049] In one embodiment, the first hand-held part 122 and the second hand-held part 222 are provided with anti-slip protrusions 23 (not shown). The anti-slip protrusions 23 can prevent the hand from slipping and prevent the disassembly pliers from falling out of the hand, ensuring that the operating end maintains a stable posture during the process of ejecting the fiber optic conduit support 50, thereby improving the success rate of disassembly.

[0050] In one embodiment, both the first clamp body 10 and the second clamp body 20 are made of steel, and both surfaces of the first clamp body 10 and the second clamp body 20 are plated with chromium. Steel provides high rigidity and resistance to deformation, improving the structural strength of the disassembly clamps, while chromium plating optimizes their durability. The chromium plating layer has extremely high hardness and wear resistance, reducing scratches and dents on the clamp surface. Simultaneously, the chromium plating layer exhibits excellent chemical stability, isolating the steel body from air, moisture, and impurities such as oil and dust that may be present in the disassembly environment, preventing corrosion. This is particularly suitable for medical equipment applications requiring high cleanliness, ensuring that the disassembly clamps maintain structural precision and surface finish even after long-term use.

[0051] The above examples illustrate this application only to aid understanding and are not intended to limit its scope. Those skilled in the art to which this application pertains can make various simple deductions, modifications, or substitutions based on the ideas presented.

Claims

1. A set of disassembly pliers for removing fiber optic conduit supports from clips, characterized in that, include: A first clamp body, the first clamp body having a first operating end; The second clamp body has a second operating end. The second clamp body is rotatably connected to the first clamp body by a pin, so that the first operating end and the second operating end can be relatively close to each other and far apart. The first operating end has a clearance groove at the end away from the pin, which is used to accommodate the optical fiber conduit on the optical fiber conduit support; the clearance groove has an opening on the side away from the pin, which is used for the optical fiber conduit to enter and exit the clearance groove; the clearance groove has a first opening on the side facing the second operating end, and a second opening on the side facing away from the second operating end, which are used for the optical fiber conduit to pass through; the first operating end has an abutment surface on the side facing the second operating end, which surrounds the outer periphery of the first opening and is used to abut against the clip; The second operating end has a protrusion on the side facing the first operating end. The protrusion is positioned opposite to the first opening. The protrusion is used to move the fiber optic conduit support from inside the channel of the clamp through the clearance groove to outside the channel.

2. The disassembly forceps for removing fiber optic conduit supports from clips according to claim 1, characterized in that, The second operating end has a limiting surface on the side facing the first operating end, and a protrusion is provided on the limiting surface. When the limiting surface and the abutting surface are rotated to be relatively parallel, the end of the protrusion away from the limiting surface extends into the clearance groove through the first opening.

3. The disassembly forceps for removing fiber optic conduit supports from clips according to claim 2, characterized in that, The maximum outer diameter of the protrusion in the direction parallel to the limiting surface is smaller than the maximum inner diameter of the clearance groove in the direction parallel to the abutment surface.

4. The disassembly forceps for removing fiber optic conduit supports from clips according to any one of claims 1-3, characterized in that, The first clamp body further includes a first handle end, the first handle end including a first connecting portion; the second clamp body further includes a second handle end, the second handle end including a second connecting portion; the first connecting portion is detachably connected to the first operating end, and the second connecting portion is detachably connected to the second operating end.

5. The disassembly forceps for removing fiber optic conduit supports from clips according to claim 4, characterized in that, It also includes a first threaded component and a second threaded component, wherein the first connecting part is connected to the first operating end through the first threaded component, and the second connecting part is connected to the second operating end through the second threaded component.

6. The disassembly forceps for removing fiber optic conduit supports from clips according to claim 5, characterized in that, The first operating end has a first mounting groove at one end near the first connecting part, and the first mounting groove has a third opening on the side facing the first connecting part. At least a portion of the first connecting part can be inserted into the first mounting groove through the third opening. The first connecting part located in the first mounting groove is connected to the groove wall of the first mounting groove through the first threaded part. The second operating end has a second mounting groove at one end near the second connecting part, and the second mounting groove has a fourth opening on the side facing the second connecting part. At least a portion of the second connecting part can be inserted into the second mounting groove through the fourth opening. The second connecting part located in the second mounting groove is connected to the groove wall of the second mounting groove through the second threaded part.

7. The disassembly forceps for removing fiber optic conduit supports from clips according to any one of claims 1-3, characterized in that, The first clamp body further includes a first handle end, and the first handle end further includes a first hand-held portion. The second clamp body further includes a second handle end, and the second handle end further includes a second hand-held portion. The first hand-held portion and the second hand-held portion are located on one side of the pin, and the first operating end and the second operating end are located on the other side of the pin. When the first hand-held portion and the second hand-held portion are relatively close, the first operating end and the second operating end are relatively close. When the first hand-held portion and the second hand-held portion are relatively far apart, the first operating end and the second operating end are relatively far apart.

8. The disassembly forceps for removing fiber optic conduit supports from clips according to claim 7, characterized in that, The first handle end further includes a first assembly part, and the second handle end further includes a second assembly part. The two ends of the first assembly part are respectively connected to the first hand-held part and the first operating end; the two ends of the second assembly part are respectively connected to the second hand-held part and the second operating end; the first assembly part and the second assembly part are stacked, the first assembly part is provided with a first assembly hole, the second assembly part is provided with a second assembly hole, the axis of the first assembly hole coincides with the axis of the second assembly hole, and the pin is assembled in the first assembly hole and the second assembly hole.

9. The disassembly forceps for removing fiber optic conduit supports from clips according to claim 7, characterized in that, The first and second hand grips are provided with anti-slip protrusions.

10. The disassembly forceps for removing an optical fiber conduit support from a clamp according to any one of claims 1-3, characterized in that, Both the first clamp body and the second clamp body are made of steel, and the surfaces of the first clamp body and the second clamp body are plated with chromium metal.