CN217425775U - Optical fiber distribution cabinet with high space utilization efficiency - Google Patents

Optical fiber distribution cabinet with high space utilization efficiency Download PDF

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Publication number
CN217425775U
CN217425775U CN202220802734.1U CN202220802734U CN217425775U CN 217425775 U CN217425775 U CN 217425775U CN 202220802734 U CN202220802734 U CN 202220802734U CN 217425775 U CN217425775 U CN 217425775U
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distribution cabinet
plate
limiting plate
activity
groove
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CN202220802734.1U
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Chinese (zh)
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鲍传江
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Nanjing Yuanzhi Electromechanical Equipment Co ltd
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Nanjing Yuanzhi Electromechanical Equipment Co ltd
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Abstract

The utility model discloses an optic fibre distribution cabinet that space utilization efficiency is high relates to auxiliary device technical field for the optic fibre distribution, for solving current optic fibre distribution cabinet often because not good enough and the unable problem of placing of equipment that leads to the space utilization when using. The inside lower extreme of optic fibre distribution cabinet cylinder is provided with separates well core plate, the top of separating well core plate is provided with movable plate, and movable plate is provided with four, the both sides of activity plate below all are provided with movable limiting plate, and movable limiting plate passes through draw-in groove fixed connection with movable plate, movable limiting plate's below is provided with T type piece spout, the lower extreme of T type piece spout is provided with T type piece activity groove, the inside in T type piece activity groove is provided with promotes T type piece, the inside both ends of optic fibre distribution cabinet cylinder all are provided with limiting plate joint groove, and limiting plate joint groove is provided with more than two.

Description

Optical fiber distribution cabinet with high space utilization efficiency
Technical Field
The utility model relates to an auxiliary device technical field for the optical fiber distribution specifically is an optical fiber distribution cabinet that space utilization efficiency is high.
Background
The optical fiber is a short-hand writing of optical fiber, is a fiber made of glass or plastic, can be used as a light conduction tool, and the transmission principle is 'total reflection of light', so that various auxiliary equipment can be used when the optical fiber is treated, and the most frequently used auxiliary equipment is an optical fiber distribution cabinet.
The problem that equipment cannot be placed due to poor space utilization is often caused when an existing optical fiber distribution cabinet is used, and therefore an optical fiber distribution cabinet with high space utilization efficiency is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an optic fibre distribution cabinet that space utilization efficiency is high to it often leads to the unable problem of placing of equipment owing to not being good enough to the space utilization to provide current optic fibre distribution cabinet in solving above-mentioned background art and using.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an optical fiber distribution cabinet that space utilization efficiency is high, includes optical fiber distribution cabinet cylinder, the inside lower extreme of optical fiber distribution cabinet cylinder is provided with separates well core plate, the top of separating well core plate is provided with movable plate, and the movable plate is provided with four, the both sides of activity plate below all are provided with movable limiting plate, and movable limiting plate and movable plate pass through draw-in groove fixed connection, movable limiting plate's below is provided with T type piece spout, the lower extreme of T type piece spout is provided with T type piece activity groove, the inside in T type piece activity groove is provided with promotes T type piece, the inside both ends of optical fiber distribution cabinet cylinder all are provided with limiting plate joint groove, and limiting plate joint groove is provided with more than two.
Preferably, four corners of optic fibre distribution cabinet cylinder below all are provided with unable adjustment base, and unable adjustment base and optic fibre distribution cabinet cylinder welded connection, the both sides of optic fibre distribution cabinet cylinder all are provided with the outer soft strip of protection, and the outer soft strip of protection pastes with optic fibre distribution cabinet cylinder and is connected, the outer soft strip of protection is provided with more than two.
Preferably, the top of fiber distribution cabinet cylinder one side is provided with the distribution cabinet door, and the distribution cabinet door passes through draw-in groove fixed connection with fiber distribution cabinet cylinder, the one end of distribution cabinet door is provided with the cabinet door and erects the handle, the top of fiber distribution cabinet cylinder is provided with the protection and fills up, and fills up and paste with fiber distribution cabinet cylinder and be connected on the protection, the one end of fiber distribution cabinet cylinder below is provided with the ventilative piece of keeping off the rain.
Preferably, both ends of the separation center plate are provided with reserved vertical grooves, both sides of the lower portion of the separation center plate are provided with supporting risers, and the supporting risers are connected with the separation center plate and the optical fiber distribution cabinet cylinders in a welding mode.
Preferably, the inside of separating the center plate is provided with a lower bearing block, the lower bearing block is fixedly connected with the separating center plate through a buffer spring, the lower end of the inside of the lower bearing block is provided with a buffer inner pad, sliding rolling balls are arranged on two sides of the lower bearing block and rotatably connected with the lower bearing block through a clamping groove, and damping lugs are arranged at two ends of the upper part of the separating center plate.
Preferably, one side below the movable limiting plate is provided with a rolling ball, the rolling ball is rotatably connected with the movable limiting plate through a clamping groove, one end of the movable limiting plate is provided with an adsorption magnetic block, the upper end of the movable limiting plate is provided with an anti-skidding upper soft cushion, one side of the adsorption magnetic block is provided with an iron block, and the iron block is fixedly connected with the movable plate through the clamping groove.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this kind of fiber distribution cabinet that space utilization efficiency is high compares with current auxiliary device for fiber distribution, limiting plate joint groove has been equipped with, activity limiting plate and promotion T type piece, can let activity limiting plate's fixed more convenient through promoting T type piece, through limiting plate joint groove, the design of activity limiting plate and promotion T type piece can let the combination of separating well core plate more convenient, can adjust separating well core plate according to the demand of oneself, it is more meticulous to let the space utilize, the problem that current fiber distribution cabinet often leads to the unable equipment of placing because not good enough to the space utilization when using has been solved.
2. This kind of optic fibre distribution cabinet that space utilization efficiency is high compares with current optic fibre auxiliary device for distribution, it accepts down the piece to have been equipped with, cushion and buffer spring in the buffering, buffer spring's design can let and accept down the piece and cushion in fixed more firm, through accepting down the piece, cushion and buffer spring's combined design can effectively reduce the impact force that equipment received when dropping in the buffering, the problem of the impaired probability of equipment increase is often owing to be good inadequately to equipment protection when having solved current optic fibre distribution cabinet and using.
Drawings
FIG. 1 is a perspective view of the overall structure of the present invention;
FIG. 2 is a cross-sectional view of the overall structure of the present invention;
fig. 3 is a partially enlarged view of the area a of fig. 2 according to the present invention.
In the figure: 1. a fiber distribution cabinet column; 2. a rain-shielding ventilation block; 3. a distribution cabinet door; 4. a cabinet door vertical handle; 5. a protective outer soft strip; 6. a protective upper pad; 7. a movable plate; 8. a limiting plate clamping groove; 9. carrying out lower block bearing; 10. a buffer inner pad; 11. a shock absorbing bump; 12. sliding the ball; 13. a divider central panel; 14. reserving a vertical groove; 15. a buffer spring; 16. a support vertical plate; 17. a fixed base; 18. an anti-skid upper soft cushion; 19. a movable limit plate; 20. a ball; 21. a T-shaped block chute; 22. pushing the T-shaped block; 23. a T-shaped block movable groove; 24. an adsorption magnetic block; 25. and (4) iron blocks.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, the present invention provides an embodiment: an optical fiber distribution cabinet with high space utilization efficiency comprises an optical fiber distribution cabinet column body 1, a rain-shielding ventilation block 2, a distribution cabinet door 3, a cabinet door vertical handle 4, a protective outer soft strip 5, a protective upper cushion 6, a movable plate 7, a limiting plate clamping groove 8, a receiving lower block 9, a buffering inner cushion 10, a damping lug 11, a sliding rolling ball 12, a separating central plate 13, a reserved vertical groove 14, a buffering spring 15, a supporting vertical plate 16, a fixed base 17, an anti-sliding upper cushion 18, a movable limiting plate 19, a rolling ball 20, a T-shaped block sliding groove 21, a pushing T-shaped block 22, a T-shaped block movable groove 23, an adsorption magnetic block 24 and an iron block 25;
a distribution cabinet door 3 which is arranged above one side of the optical fiber distribution cabinet cylinder 1, the distribution cabinet door 3 is fixedly connected with the optical fiber distribution cabinet cylinder 1 through a clamping groove, a cabinet door vertical handle 4 is arranged at one end of the distribution cabinet door 3, and a rain-shielding ventilation block 2 is arranged at one end below the optical fiber distribution cabinet cylinder 1;
referring to fig. 1, protective outer soft strips 5 are arranged on both sides of a fiber distribution cabinet cylinder 1, and the protective outer soft strips 5 are connected with the fiber distribution cabinet cylinder 1 in a sticking manner, so that the connection between the protective outer soft strips 5 and the fiber distribution cabinet cylinder 1 is firmer, more than two protective outer soft strips 5 are arranged, a protective upper pad 6 is arranged above the fiber distribution cabinet cylinder 1, the protective upper pad 6 is connected with the fiber distribution cabinet cylinder 1 in a sticking manner, and the connection between the protective upper pad 6 and the fiber distribution cabinet cylinder 1 is firmer;
referring to fig. 2, a partition central board 13 is disposed at the lower end of the inside of a fiber distribution cabinet column 1, a movable board 7 is disposed above the partition central board 13, four movable boards 7 are disposed, limiting board clamping grooves 8 are disposed at both ends of the inside of the fiber distribution cabinet column 1, more than two limiting board clamping grooves 8 are disposed, fixed bases 17 are disposed at four corners of the bottom of the fiber distribution cabinet column 1, the fixed bases 17 are welded to the fiber distribution cabinet column 1, so that the fixed bases 17 are more firmly connected to the fiber distribution cabinet column 1, vertical grooves 14 are disposed at both ends of the partition central board 13, supporting risers 16 are disposed at both sides of the bottom of the partition central board 13, the supporting risers 16 are welded to the partition central board 13 and the fiber distribution cabinet column 1, a receiving lower block 9 is disposed inside the partition central board 13, and the receiving lower block 9 is fixedly connected to the partition central board 13 through a buffer spring 15, the connection between the bearing lower block 9 and the separating central plate 13 is firmer, the lower end inside the bearing lower block 9 is provided with a buffering inner pad 10, two sides below the bearing lower block 9 are both provided with sliding rolling balls 12, the sliding rolling balls 12 are rotatably connected with the bearing lower block 9 through clamping grooves, the connection between the sliding rolling balls 12 and the bearing lower block 9 is firmer, and two ends above the separating central plate 13 are both provided with damping lugs 11;
referring to fig. 3, both sides of the lower portion of the movable plate 7 are provided with movable limiting plates 19, the movable limiting plates 19 are fixedly connected with the movable plate 7 through slots, so that the movable limiting plates 19 are more firmly connected with the movable plate 7, a T-shaped block chute 21 is arranged below the movable limiting plates 19, a T-shaped block movable groove 23 is arranged at the lower end of the T-shaped block chute 21, a pushing T-shaped block 22 is arranged inside the T-shaped block movable groove 23, a rolling ball 20 is arranged at one side of the lower portion of the movable limiting plates 19, the rolling ball 20 is rotatably connected with the movable limiting plates 19 through slots, so that the rolling ball 20 is more firmly connected with the movable limiting plates 19, an adsorption magnetic block 24 is arranged at one end of the movable limiting plates 19, an anti-skid upper cushion 18 is arranged at the upper end of the movable limiting plates 19, an iron block 25 is arranged at one side of the adsorption magnetic block 24, and the iron block 25 is fixedly connected with the movable plate 7 through slots, the connection between the iron block 25 and the movable plate 7 is firmer.
The working principle is as follows: remove the position department that needs to use with this kind of optical fiber distribution cabinet that space utilization efficiency is high during the use earlier, wiring cabinet door 3 just can be opened this moment, then the staff just can adjust the position of activity plate 7 according to the demand, when reacing suitable position department, just can adjust the activity limiting plate 19 of activity plate 7 both sides below this moment and extend to the inside of limiting plate joint groove 8 can, just at this moment can carry out more careful utilization to the inside space of optical fiber distribution cabinet cylinder 1, when equipment drops, will fall to the inside of accepting lower piece 9 this moment, it effectively reduces the impaired probability of equipment to open through cushion 10 in accepting lower piece 9 inside buffering and buffer spring 15 of below.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides an efficient optic fibre distribution cabinet of space utilization, includes optic fibre distribution cabinet cylinder (1), its characterized in that: the inside lower extreme of fiber distribution cabinet cylinder (1) is provided with separates well core plate (13), the top of separating well core plate (13) is provided with movable plate (7), and activity plate (7) are provided with four, the both sides of activity plate (7) below all are provided with movable limiting plate (19), and activity limiting plate (19) and activity plate (7) pass through draw-in groove fixed connection, the below of activity limiting plate (19) is provided with T type piece spout (21), the lower extreme of T type piece spout (21) is provided with T type piece activity groove (23), the inside in T type piece activity groove (23) is provided with promotes T type piece (22), the inside both ends of fiber distribution cabinet cylinder (1) all are provided with limiting plate joint groove (8), and limiting plate joint groove (8) are provided with more than two.
2. A space-efficient fiber organizer as claimed in claim 1, wherein: four corners of optic fibre distribution cabinet cylinder (1) below all are provided with unable adjustment base (17), and unable adjustment base (17) and optic fibre distribution cabinet cylinder (1) welded connection, the both sides of optic fibre distribution cabinet cylinder (1) all are provided with protection outer soft strip (5), and protect outer soft strip (5) and paste with optic fibre distribution cabinet cylinder (1) and be connected, protection outer soft strip (5) are provided with more than two.
3. A space-efficient fiber organizer as claimed in claim 1, wherein: the utility model discloses a protection device for the optical fiber distribution cabinet, including optical fiber distribution cabinet cylinder (1), distribution cabinet door (3) are provided with distribution cabinet door (3) in the top of optical fiber distribution cabinet cylinder (1) one side, and distribution cabinet door (3) and optical fiber distribution cabinet cylinder (1) pass through draw-in groove fixed connection, the one end of distribution cabinet door (3) is provided with the cabinet door and erects (4), the top of optical fiber distribution cabinet cylinder (1) is provided with protection upper padding (6), and protects upper padding (6) and optical fiber distribution cabinet cylinder (1) and paste and be connected, the one end of optical fiber distribution cabinet cylinder (1) below is provided with weather block (2).
4. A space-efficient fiber organizer as claimed in claim 1, wherein: both ends of separating well core plate (13) all are provided with and reserve perpendicular groove (14), both sides of separating well core plate (13) below all are provided with support riser (16), and support riser (16) and separate well core plate (13) and optic fibre distribution cabinet cylinder (1) and all welded connection.
5. A space-efficient fiber organizer as claimed in claim 1, wherein: the inside of separating well core plate (13) is provided with accepts down piece (9), and accepts down piece (9) and separates well core plate (13) and pass through buffer spring (15) fixed connection, the lower extreme of accepting down piece (9) inside is provided with pad (10) in the buffering, the both sides of accepting down piece (9) below all are provided with slip grounder (12), and slip grounder (12) with accept down piece (9) and rotate through the draw-in groove and be connected, the both ends of separating well core plate (13) top all are provided with shock bump (11).
6. A space-efficient fiber organizer as claimed in claim 1, wherein: one side of activity limiting plate (19) below is provided with spin (20), and spin (20) rotate with activity limiting plate (19) through the draw-in groove and be connected, the one end of activity limiting plate (19) is provided with adsorbs magnetic path (24), the upper end of activity limiting plate (19) is provided with antiskid upper cushion (18), one side of adsorbing magnetic path (24) is provided with iron plate (25), and iron plate (25) pass through draw-in groove fixed connection with activity plate (7).
CN202220802734.1U 2022-04-07 2022-04-07 Optical fiber distribution cabinet with high space utilization efficiency Active CN217425775U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220802734.1U CN217425775U (en) 2022-04-07 2022-04-07 Optical fiber distribution cabinet with high space utilization efficiency

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220802734.1U CN217425775U (en) 2022-04-07 2022-04-07 Optical fiber distribution cabinet with high space utilization efficiency

Publications (1)

Publication Number Publication Date
CN217425775U true CN217425775U (en) 2022-09-13

Family

ID=83183544

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220802734.1U Active CN217425775U (en) 2022-04-07 2022-04-07 Optical fiber distribution cabinet with high space utilization efficiency

Country Status (1)

Country Link
CN (1) CN217425775U (en)

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