Adjustable optical fiber support
Through the combination of the I-shaped crossbar elastic bracket and the cable tie filler, the problem of wear and bending of the optical fiber bracket under the action of external force is solved, and the protection and stable fixation of the optical fiber is achieved.
Patent Information
- Application Number
- CN202422050534.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-08-23
AI Technical Summary
When the existing adjustable fiber bracket is pulled by external force, the crossbar structure is prone to wear and large bending on the fiber, affecting the service life of the fiber.
The I-shaped cross-bar elastic bracket is used, combined with the elastic rod, longitudinal rod, fixing rod and cable ties to fill the fixture. The elastic rod is used to buffer the optical fiber when it is pulled to avoid large bending, and the gap is filled with the cable ties to prevent the optical fiber from being compressed.
Effectively avoid wear and large bending of optical fibers when subjected to external forces, improve the service life of optical fibers, and protect the optical fibers from being damaged when moving the control cabinet of power plants.
Smart Images

Figure CN223284440U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an optical fiber bracket, more precisely to an adjustable optical fiber bracket. Background Art
[0002] Existing adjustable fiber optic mounts typically only utilize a crossbar structure to support the optical fiber. When the optical fiber is pulled by external forces, the crossbar structure has sharp edges that can easily cause wear and tear on the optical fiber, affecting its usability. For example, Patent Publication No. CN218332083U discloses a Chinese utility model patent document for an adjustable optical fiber placement mount. As shown in Figure 7, the technical solution disclosed in this patent document utilizes a rod-shaped mount as a support for the optical fiber. The mount is a square rod-shaped structure. When the optical fiber is subjected to force, the mating portion between the optical fiber and the mount is prone to wear and significant bending, affecting the usability of the optical fiber. Summary of the Invention
[0003] The purpose of the utility model is to provide an adjustable optical fiber bracket, which can allow an elastic rod to cooperate with the optical fiber after the first optical fiber clamp tube and the second optical fiber clamp tube fix the optical fiber, so that when the optical fiber is pulled, the elastic rod can use its elasticity to buffer the optical fiber, allowing the elastic rod to follow the bending of the optical fiber within a certain range, avoiding the optical fiber from being easily bent too much and preventing the optical fiber from being easily damaged.
[0004] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical solutions:
[0005] The adjustable optical fiber bracket includes an I-shaped cross bar elastic bracket and a cable tie filling fixture. The I-shaped cross bar elastic bracket includes a fixing rod, the middle part of the fixing rod is connected to the longitudinal rod, one end of the longitudinal rod is matched with the fixing rod, and the other end of the longitudinal rod is installed with an elastic rod, the middle part of the elastic rod is connected to the longitudinal rod, and the first optical fiber clamp tube is connected to the elastic rod. The cable tie filling fixture includes a cable tie, and the side of the cable tie is matched with the side of the longitudinal rod.
[0006] In order to further achieve the purpose of the present invention, the following technical solution can also be adopted: the side of the longitudinal rod is connected to the first ring and the second ring, the outer side of the first ring and the outer side of the second ring are both connected to the longitudinal rod, and the cable tie passes through the first ring and the second ring and matches the end to end.
[0007] A first optical fiber clamp tube and a second optical fiber clamp tube are connected to both sides of the upper part of the elastic rod. A second strip-shaped through groove is opened on one side of the second optical fiber clamp tube, and a first strip-shaped through groove is opened on one side of the first optical fiber clamp tube. The first optical fiber clamp tube and the second optical fiber clamp tube are both elastic tubular structures, and the first strip-shaped through groove and the second strip-shaped through groove are respectively located on both sides of the elastic rod.
[0008] The advantages of the present invention are as follows: the present invention adds an I-shaped crossbar elastic bracket, which can be combined with an elastic rod, a longitudinal rod, a fixed rod, a first optical fiber clamp, etc. On the one hand, after the first optical fiber clamp and the second optical fiber clamp fix the optical fiber, the elastic rod can cooperate with the optical fiber, so that when the optical fiber is pulled, the elastic rod can use its elasticity to cushion the optical fiber, allowing the elastic rod to follow the bending of the optical fiber within a certain range, preventing the optical fiber from being easily bent too much and easily damaged. On the other hand, the cable tie can be bent into a circle to fill the gap between the I-shaped crossbar elastic bracket and the power plant control cabinet, so that the I-shaped crossbar elastic bracket fits against the wall, thereby preventing the optical fiber from being easily crushed when the power plant control cabinet is moved. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0010] Figure 1 This is a schematic diagram of the main structure of the utility model;
[0011] Figure 2 for Figure 1 A-direction enlarged structural diagram;
[0012] Figure 3 for Figure 1 Schematic diagram of the enlarged structure in the B direction;
[0013] Figure 4 This is a left-side structural schematic diagram of the present utility model;
[0014] Figure 5 This is a schematic diagram of the structure of the utility model disposed between a wall (11) and a power plant control cabinet (12);
[0015] Figure 6 for Figure 4 Schematic diagram of the enlarged structure of Part I;
[0016] Figure 7 It is a structural diagram of the prior art CN218332083U.
[0017] Labeled parts: 1 first optical fiber clamp tube 2 second optical fiber clamp tube 3 second strip-shaped through-groove 4 first strip-shaped through-groove 5 elastic rod 6 longitudinal rod 7 tie 8 first ring 9 second ring 10 fixing rod 11 wall 12 power plant control cabinet. DETAILED DESCRIPTION
[0018] The following describes the preferred embodiments of the present invention in conjunction with the accompanying drawings.
[0019] Adjustable fiber optic bracket, such as Figures 1-6 As shown, it includes an I-shaped cross bar elastic bracket and a cable tie filling fixture, the I-shaped cross bar elastic bracket includes a fixing rod 10, the middle part of the fixing rod 10 is connected to the longitudinal rod 6, one end of the longitudinal rod 6 cooperates with the fixing rod 10, the other end of the longitudinal rod 6 is installed with an elastic rod 5, the middle part of the elastic rod 5 is connected to the longitudinal rod 6, and the first optical fiber clamp tube 1 is connected to the elastic rod 5, and the cable tie filling fixture includes a cable tie 7, and the side of the cable tie 7 cooperates with the side of the longitudinal rod 6.
[0020] The present invention adds an I-shaped crossbar elastic bracket, which can be combined with an elastic rod 5, a longitudinal rod 6, a fixing rod 10, and a first optical fiber clamp 1. On the one hand, after the first optical fiber clamp 1 and the second optical fiber clamp 2 fix the optical fiber, the elastic rod 5 can cooperate with the optical fiber. When the optical fiber is pulled, the elastic rod 5 can use its elasticity to buffer the optical fiber, allowing the elastic rod 5 to follow the bending of the optical fiber within a certain range, preventing the optical fiber from being easily bent too much and easily damaged. On the other hand, the cable tie 7 can be bent into a circle to fill the gap between the I-shaped crossbar elastic bracket and the power plant control cabinet 12, so that the I-shaped crossbar elastic bracket fits against the wall 11, thereby preventing the optical fiber from being easily crushed when the power plant control cabinet 12 is moved.
[0021] Specific implementation of material selection and feasibility analysis: The samples we actually made use the drawings in the specification as drawings and are implemented according to the proportions and matching methods of the various components in the drawings. The connections mentioned are common connection methods such as strong adhesive connection, welding, riveting, flange connection, one-piece molding connection, etc. In actual production, the corresponding connection method, thickness and strength of the connection point can be selected creatively according to the actual connection strength requirements.
[0022] Example 2:
[0023] Adjustable fiber optic bracket, such as Figures 1-6 As shown, it includes an I-shaped crossbar elastic bracket and a cable tie filling fixture. The I-shaped crossbar elastic bracket includes a fixed rod 10, the middle of which is connected to a longitudinal rod 6, one end of which is engaged with the fixed rod 10, and the other end of the longitudinal rod 6 is mounted with an elastic rod 5, the middle of which is connected to the longitudinal rod 6, and the elastic rod 5 is connected to a first optical fiber clamp 1. The cable tie filling fixture includes a cable tie 7, the side of which is engaged with the side of the longitudinal rod 6. The side of the longitudinal rod 6 is connected to a first ring 8 and a second ring 9, the outer sides of the first ring 8 and the outer sides of the second ring 9 are both connected to the longitudinal rod 6, and the cable tie 7 passes through the first ring 8 and the second ring 9 and is engaged end to end.
[0024] The first ring 8 and the second ring 9 of the present invention can facilitate the matching of the longitudinal rod 6 and the cable tie 7. When it is necessary to place the I-shaped crossbar elastic bracket between the wall 11 and the power plant control cabinet 12, a cable tie 7 can be passed through the first ring 8 and the second ring 9 and matched end to end, so that the cable tie 7 forms a circular structure on one side of the longitudinal rod 6. Since the cable tie 7 itself is elastic, the cable tie 7 can fill the gap between the longitudinal rod 6 and the power plant control cabinet 12, so that the elastic force of the cable tie 7 pushes the longitudinal rod 6 and the wall 11 to match with a certain pressure, so that the optical fibers fixed by the first optical fiber clamp 1 and the second optical fiber clamp 2 can be lifted off the ground, and the power plant control cabinet 12 can be prevented from being crushed by the power plant control cabinet 12 during the movement.
[0025] Example 3:
[0026] Adjustable fiber optic bracket, such as Figures 1-6 As shown, it includes an I-shaped crossbar elastic support and a cable tie filling fixture. The I-shaped crossbar elastic support includes a fixed rod 10, the middle of which is connected to a longitudinal rod 6, one end of which cooperates with the fixed rod 10, and the other end of the longitudinal rod 6 is mounted with an elastic rod 5, the middle of which is connected to the longitudinal rod 6, and a first optical fiber clamp tube 1 is connected to the elastic rod 5. The cable tie filling fixture includes a cable tie 7, the side of which cooperates with the side of the longitudinal rod 6. A first optical fiber clamp tube 1 and a second optical fiber clamp tube 2 are connected to both sides of the upper portion of the elastic rod 5. A second strip-shaped through-groove 3 is provided on one side of the second optical fiber clamp tube 2, and a first strip-shaped through-groove 4 is provided on one side of the first optical fiber clamp tube 1. The first optical fiber clamp tube 1 and the second optical fiber clamp tube 2 are both elastic tubular structures, and the first strip-shaped through-groove 4 and the second strip-shaped through-groove 3 are respectively located on both sides of the elastic rod 5.
[0027] The first optical fiber clamp tube 1 and the second optical fiber clamp tube 2 of the present invention can fix the optical fiber. The outer diameter of the optical fiber is smaller than the first strip through groove 4 or the second strip through groove 3, so that the optical fiber is not easy to fall off after being matched with the first optical fiber clamp tube 1 or the second optical fiber clamp tube 2.
[0028] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention.
Claims
1. Adjustable optical fiber bracket, characterized by: The invention comprises an I-shaped crossbar elastic bracket and a cable tie filling fixture, wherein the I-shaped crossbar elastic bracket comprises a fixing rod (10), the middle of the fixing rod (10) is connected to the longitudinal rod (6), one end of the longitudinal rod (6) cooperates with the fixing rod (10), the other end of the longitudinal rod (6) is installed with an elastic rod (5), the middle of the elastic rod (5) is connected to the longitudinal rod (6), and the elastic rod (5) is connected to a first optical fiber clamp tube (1), and the cable tie filling fixture comprises a cable tie (7), and the side of the cable tie (7) cooperates with the side of the longitudinal rod (6).
2. The adjustable optical fiber bracket according to claim 1, wherein: The side of the longitudinal rod (6) is connected to the first ring (8) and the second ring (9), the outer side of the first ring (8) and the outer side of the second ring (9) are both connected to the longitudinal rod (6), and the cable tie (7) passes through the first ring (8) and the second ring (9) and is matched end to end.
3. The adjustable optical fiber holder according to claim 1, wherein: A first optical fiber clamp tube (1) and a second optical fiber clamp tube (2) are connected to both sides of the upper portion of the elastic rod (5); a second strip-shaped through groove (3) is provided on one side of the second optical fiber clamp tube (2); and a first strip-shaped through groove (4) is provided on one side of the first optical fiber clamp tube (1); both the first optical fiber clamp tube (1) and the second optical fiber clamp tube (2) are elastic tubular structures; and the first strip-shaped through groove (4) and the second strip-shaped through groove (3) are respectively located on both sides of the elastic rod (5).
Citation Information
Patent Citations
Adjustable optical fiber placing support
CN218332083U