Curing equipment for optical fiber and optical path connection
By employing a combination of fixed and movable clamps in the curing equipment, the problem of existing equipment being unable to adapt to fiber optic connectors of different sizes is solved, achieving stable clamping of fiber optic connectors and improving the practicality of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-04-10
AI Technical Summary
Existing curing equipment for fiber optic path connection cannot properly adjust the clamping according to the size of the fiber optic connector, resulting in poor practicality.
A curing device was designed, which adopts a combination structure of fixed clamps and movable clamps. The fixed clamps separate the fiber optic connectors one by one, and the connecting rod, fixing ring and locking cover are used to fix fiber optic connectors of different sizes, avoiding the need to replace the clamps.
It achieves stable clamping of fiber optic connectors of different sizes without the need to change clamps, thus improving the practicality and adaptability of the equipment.
Smart Images

Figure CN224101130U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the related technical field of optical fiber solidification furnace especially relates to a kind of solidification equipment for optical fiber light path connection. BACKGROUND
[0002] Optical fiber solidification furnace is a kind of equipment for the heating solidification of optical fiber adhesive, is the necessary equipment for producing optical fiber patch cord, optical fiber connector, tail fiber etc.
[0003] The existing solidification equipment for optical fiber light path connection, when using, is all through specific clamp cooperation heating disc and is clamped to optical fiber connector, different optical fiber connectors need to replace different clamps, cannot be clamped according to the size of optical fiber connector, and the practicability is poor. UTILITY MODEL CONTENTS
[0004] The utility model discloses a kind of solidification equipment for optical fiber light path connection, to solve the problem that the existing solidification equipment for optical fiber light path connection is proposed in above background, when using, is all through specific clamp cooperation heating disc and is clamped to optical fiber connector, different optical fiber connectors need to replace different clamps, cannot be clamped according to the size of optical fiber connector, and the practicability is poor.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: a kind of solidification equipment for optical fiber light path connection, including solidification furnace, the upper surface of the solidification furnace is provided with heating plate, the upper surface both sides of the solidification furnace are fixedly installed with positioning plate, one end of the positioning plate is slidably connected with locating block, the side surface of the locating block is fixedly installed with magnetic attraction piece, one end of the locating block is fixedly connected with connecting plate, the upper surface of the connecting plate is embedded with flexible wire clamp, one end of the connecting plate is fixedly installed with heat conduction disc, the side surface of the heat conduction disc is fixedly installed with fixed clamp, the upper surface of the heat conduction disc is provided with movable clamp, the side surface of the fixed clamp is fixedly installed with first fixed block, the side surface of the movable clamp is fixedly installed with second fixed block, the first end of the second fixed block is penetrated with connecting rod, the outer ring of the connecting rod is sleeved with fixed ring, the outer ring of the connecting rod is sleeved with spring, the side of the movable clamp is fixedly installed with stop block, the side of the fixed clamp is provided with connecting hole, the upper surface side of the heat conduction disc is fixedly installed with third fixed block, the side of the third fixed block is fixedly penetrated with connecting sleeve, the end of the connecting sleeve is threadedly connected with locking cover.
[0006] Preferably, the positioning plate is made of metal material that can be adsorbed with the magnetic attraction piece, and the connecting plate is slidably connected with the positioning block and the positioning plate.
[0007] Preferably, the side surface of the heat conduction disc is fixedly installed with guide rail, one end of the guide rail is slidably connected with limit block, and the limit block is fixedly connected with the movable clamp.
[0008] Preferably, the fixed clamps are equidistantly distributed on the surface of the heat conduction disc, and the fixed clamps and the movable clamps are one-to-one corresponding.
[0009] Preferably, the fixed ring is provided with multiple groups, and is attached to the side of the movable clamp, and the springs are sequentially arranged between the movable clamp and the fixed frame.
[0010] Preferably, the side of the upper surface of the fixed clamp is fixedly installed with fixed frame, both ends of the fixed frame are sleeved with torsion spring, one end of the torsion spring is fixedly connected with arc-shaped plate, and one end of the arc-shaped plate is fixedly installed with top block.
[0011] Preferably, one end of the connecting rod penetrates the connecting sleeve, and the connecting sleeve is connected and tightened by the locking cover at the opening of the front end.
[0012] Compared with the prior art, the fixing device for optical fiber light path connection has the advantages that: the fixing device for optical fiber light path connection is provided with the fixed clamps and the movable clamps, and when the optical fiber connectors are placed on the heat-conducting disc in sequence, the fixed clamps are separated from each other, and one end of the optical fiber connector is in contact with the side of the stopper, and then the top block is used to press the top of the optical fiber connector, and then the connecting rod is pulled, the connecting rod drives the movable clamps to shrink to the side of the fixed clamps through the fixed ring, and the movable clamps are attached to the other side of the optical fiber connector, and when the optical fiber connector is fixed, the end of the connecting sleeve is shrunk by rotating the locking cover, and the connecting rod is attached to the connecting rod, and the position of the connecting rod is fixed, and the optical fiber connectors of different sizes can be fixed through the clamping of the movable clamps, and the clamps do not need to be replaced. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is an overall appearance structure schematic view of the utility model;
[0014] Figure 2 It is a mutual cooperation structure schematic view of the positioning plate and the positioning block of the utility model;
[0015] Figure 3 It is a mutual cooperation structure schematic view of the connecting plate and the heat-conducting disc of the utility model;
[0016] Figure 4 It is a mutual cooperation structure schematic view of the fixed clamp and the movable clamp of the utility model;
[0017] Figure 5 It is a mutual cooperation structure schematic view of the connecting rod and the fixed ring of the utility model;
[0018] Figure 6 It is a mutual cooperation structure schematic view of the connecting sleeve and the locking cover of the utility model;
[0019] Figure 7 It is the utility model Figure 1 It is an enlarged structure schematic view of A in the utility model.
[0020] In the drawing: 1, curing furnace; 2, heating plate; 3, positioning plate; 4, positioning block; 5, magnetic block; 6, connecting plate; 7, flexible wire clamp; 8, heat-conducting disc; 9, fixed clamp; 10, movable clamp; 11, guide rail; 12, limit block; 13, first fixed block; 14, second fixed block; 15, connecting rod; 16, fixed ring; 17, spring; 18, stopper; 19, connecting hole; 20, fixed frame; 21, torsional spring; 22, arc plate; 23, top block; 24, third fixed block; 25, connecting sleeve; 26, locking cover. DETAILED DESCRIPTION
[0021] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0022] Please refer to Figures 1-7 The utility model provides a technical scheme: a kind of solidification equipment for optical fiber light path connection, including solidification furnace 1, the upper surface of solidification furnace 1 is provided with heating plate 2, the upper surface both sides of solidification furnace 1 are fixedly installed with positioning plate 3, one end of positioning plate 3 is slidably connected with locating block 4, the side surface of locating block 4 is fixedly installed with magnetic attraction piece 5, one end of locating block 4 is fixedly connected with connecting plate 6, the upper surface of connecting plate 6 is embedded with flexible wire clamp 7, one end of connecting plate 6 is fixedly installed with heat conduction disc 8, the side surface of heat conduction disc 8 is fixedly installed with fixed clamp 9, the upper surface of heat conduction disc 8 is provided with movable clamp 10, the side surface of fixed clamp 9 is fixedly installed with first fixed block 13, the side surface of movable clamp 10 is fixedly installed with second fixed block 14, one end of second fixed block 14 is penetrated with connecting rod 15, the outer ring of connecting rod 15 is sleeved with fixed ring 16, the outer ring of connecting rod 15 is sleeved with spring 17, the side of movable clamp 10 is fixedly installed with stop block 18, the side of fixed clamp 9 is provided with connecting hole 19, the side of the upper surface of heat conduction disc 8 is fixedly installed with third fixed block 24, the side of third fixed block 24 is fixedly penetrated with connecting sleeve 25, one end of connecting sleeve 25 is threadedly connected with locking cover 26.
[0023] Further, the positioning plate 3 is made of metal material that can be adsorbed by the magnetic attraction piece 5, the connecting plate 6 is slidably connected with the positioning block 4 and the positioning plate 3, through the setting of the positioning block 4, in use, the connecting plate 6 can be quickly sent into one end of the positioning plate 3 through the positioning block 4, and at the same time, the connecting plate 6 is adsorbed and fixed by the magnetic attraction piece 5 and the positioning plate 3, so that the connecting plate 6 can be quickly installed.
[0024] Further, the side surface of the heat conduction disc 8 is fixedly installed with the guide rail 11, one end of the guide rail 11 is slidably connected with the limiting block 12, and the limiting block 12 is fixedly connected with the movable clamp 10, through the setting of the guide rail 11, the movable clamp 10 can stably slide at one end of the guide rail 11 through the limiting block 12, so that the movable clamp 10 can move by adhering to the surface of the heat conduction disc 8.
[0025] Further, the fixed clamps 9 are evenly distributed on the surface of the heat conduction disc 8, and the fixed clamps 9 and the movable clamps 10 are one-to-one corresponding, through the setting of the heat conduction disc 8, the heat conduction disc 8 can adhere to the heating plate 2 to transfer heat.
[0026] Further, the fixed ring 16 is provided with multiple groups, and is attached to one side of the movable clamp 10 respectively, and the spring 17 is sequentially arranged between the movable clamp 10 and the fixed frame 9. Through the arrangement of the fixed ring 16 and the spring 17, the multiple groups of fixed ring 16 can simultaneously pull the connecting rod 15 to move the corresponding movable clamp 10, and the spring 17 can prevent the movable clamp 10 from damaging the fiber connector due to excessive clamping force.
[0027] Further, the upper surface of the fixed clamp 9 is fixedly provided with a fixed frame 20, both ends of the fixed frame 20 are sleeved with a torsion spring 21, one end of the torsion spring 21 is fixedly connected with an arc-shaped plate 22, and one end of the arc-shaped plate 22 is fixedly provided with a top block 23. Through the arrangement of the top block 23, the arc-shaped plate 22 can drive the top block 23 to rotate at one end of the fixed clamp 20, and the torsion spring 21 can automatically reset to press from the top of the fiber connector.
[0028] Further, one end of the connecting rod 15 penetrates through the connecting sleeve 25, and the front end opening of the connecting sleeve 25 is connected and tightened by the locking cover 26. Through the arrangement of the connecting sleeve 25, the connecting rod 15 can pass through one end of the connecting sleeve 25, and the front end of the connecting sleeve 25 can be made of rubber material. Due to the tapered structure of the front end of the locking cover 26, when the locking cover 26 is rotated and tightened, the tapered opening at the front end continuously tightly contacts the front end of the connecting sleeve 25, so that the front end of the connecting sleeve 25 tightens the connecting rod 15, and the fixation of the connecting rod 15 is completed.
[0029] Working principle: first, the connecting plate 6 is quickly embedded into the slot of the positioning plate 3 through the positioning block 4, and then the magnetic attraction block 5 and the positioning plate 3 are adsorbed and fixed, and the front end of the heat conduction disc 8 of the connecting plate 6 is attached to the surface of the heating plate 2. Secondly, the fiber connector is placed on the surface of the heat conduction disc 8 in sequence, one side is attached to the side of the fixed clamp 9, and one end is in contact with the stop block 18. At the same time, pull the arc-shaped plate 22 to drive the top block 23 to attach to the upper surface of the fiber connector, and tighten under the action of the torsion spring 21. Secondly, pull the connecting rod 15 at one end of the connecting sleeve 25, and the connecting rod 15 drives the movable clamp 10 to move through the fixed ring 16. The movable clamp 10 moves stably at one end of the guide rail 11 through the limiting block 12, and the side close to the fixed clamp 9. When the side of the movable clamp 10 is in contact with the side of the fiber connector, rotate the locking cover 26 at one end of the connecting sleeve 25, and the tapered opening at the front end of the locking cover 26 continuously contacts the front end of the connecting sleeve 25, so that the front end of the connecting sleeve 25 and the outer circle of the connecting rod 15 are more and more tightly contacted, so that the connecting rod 15 is fixed. After the movable clamp 10 and the fixed clamp 9 clamp the fiber connector, the heat conduction disc 8 is heated by the heating plate 2, and the solidification is completed.
[0030] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A curing apparatus for splicing optical fiber light paths, comprising a curing oven (1), characterized in that: The upper surface of the curing furnace (1) is provided with a heating plate (2), both sides of the upper surface of the curing furnace (1) are fixedly installed with a positioning plate (3), one end of the positioning plate (3) is slidably connected with a positioning block (4), one side surface of the positioning block (4) is fixedly installed with a magnetic attraction block (5), one end of the positioning block (4) is fixedly connected with a connecting plate (6), the upper surface of the connecting plate (6) is embedded with a flexible wire clamp (7), one end of the connecting plate (6) is fixedly installed with a heat conduction disc (8), one side surface of the heat conduction disc (8) is fixedly installed with a fixed clamp (9), the upper surface of the heat conduction disc (8) is provided with a movable clamp (10), one side surface of the fixed clamp (9) is fixedly installed with a first fixed block (13), one side surface of the movable clamp (10) is fixedly installed with a second fixed block (14), one end of the second fixed block (14) penetrates through a connecting rod (15), the outer circle of the connecting rod (15) is sleeved with a fixed ring (16), the outer circle of the connecting rod (15) is sleeved with a spring (17), one side of the movable clamp (10) is fixedly installed with a stop block (18), one side of the fixed clamp (9) is provided with a connecting hole (19), one side of the upper surface of the heat conduction disc (8) is fixedly installed with a third fixed block (24), one side of the third fixed block (24) penetrates through and is fixedly installed with a connecting sleeve (25), one end of the connecting sleeve (25) is threadedly connected with a locking cover (26).
2. A curing apparatus for splicing optical fiber light paths according to claim 1, characterized by: The positioning plate (3) is made of metal material which can be adsorbed by the magnetic attraction block (5), and the connecting plate (6) is slidably connected with the positioning block (4) and the positioning plate (3).
3. A curing apparatus for splicing optical fiber light paths according to claim 1, characterized by: The side surface of the heat conduction disc (8) is fixedly installed with a guide rail (11), one end of the guide rail (11) is slidably connected with a limiting block (12), and the limiting block (12) is fixedly connected with the movable clamp (10).
4. The curing apparatus for splicing optical fibers according to claim 1, wherein: The fixed clamps (9) are equidistantly distributed on the surface of the heat conduction disc (8), and the fixed clamps (9) and the movable clamps (10) are one-to-one corresponding.
5. The curing apparatus for splicing optical fiber according to claim 1, wherein: The fixed ring (16) is provided with multiple groups and is attached to one side of the movable clamp (10), and the springs (17) are sequentially arranged between the movable clamps (10) and the fixed clamps (9).
6. A curing apparatus for splicing optical fiber light paths as defined in claim 1, wherein: One side of the upper surface of the fixed clamp (9) is fixedly installed with a fixed frame (20), both ends of the fixed frame (20) are sleeved with a torsional spring (21), one end of the torsional spring (21) is fixedly connected with an arc-shaped plate (22), and one end of the arc-shaped plate (22) is fixedly installed with a top block (23).
7. The curing apparatus for splicing optical fiber light paths according to claim 1, wherein: One end of the connecting rod (15) penetrates through the connecting sleeve (25), and the connecting sleeve (25) is connected and tightened through the locking cover (26) at the opening of the front end.