CN214474142U - Optical fiber box with waterproof function - Google Patents
Optical fiber box with waterproof function Download PDFInfo
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- CN214474142U CN214474142U CN202120727913.9U CN202120727913U CN214474142U CN 214474142 U CN214474142 U CN 214474142U CN 202120727913 U CN202120727913 U CN 202120727913U CN 214474142 U CN214474142 U CN 214474142U
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- box body
- fiber box
- holding tank
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Abstract
The application relates to an optical fiber box with waterproof function, including the optical fiber box body, optical fiber box body top can be dismantled and be connected with the shielding piece, the shielding piece is located the optical fiber box body directly over and shelters from the optical fiber box body, optical fiber box body bottom is connected with support piece, support piece supports the optical fiber box body subaerial. When the optical fiber box body is placed on the outdoor ground for use, the optical fiber box body is firstly supported on the ground by the supporting piece so as to reduce the probability that accumulated water on the ground enters the optical fiber box body, and then the shielding piece is arranged at the top of the optical fiber box body and can play a role of shielding rain for the optical fiber box body when raining outdoors; the supporting piece can make the optical fiber box body can avoid most rainwater to get into the inside communication ability who destroys the optical fiber box body of optical fiber box body with the cooperation of shielding piece, has reduced the probability that the rainwater got into the optical fiber box, provides better guarantee for the user.
Description
Technical Field
The application relates to the field of optical fiber boxes, in particular to an optical fiber box with a waterproof function.
Background
The network gradually enters into thousands of households, and meanwhile, the dependence of people on the network is increased, and the optical fiber box is an optical fiber base station arranged in different places by a telecommunication operator and is a device for terminating optical cables between distribution lines and equipment.
The utility model with publication number CN210924051U discloses an optical fiber distribution box, which comprises a box body, a box door which can be rotatably covered on the front side of the box body, and a mounting plate which can be rotatably arranged in the box body, wherein a first connecting seat and a second connecting seat are fixedly arranged on the inner side wall of a first side plate of the box body, a rotating shaft which can be rotatably arranged between the first connecting seat and the second connecting seat is fixedly arranged on the first side of the mounting plate, a mounting seat is arranged in the middle of the top end of the front side of the mounting plate, a plurality of optical fiber adapters are fixedly arranged on the mounting seat, a first wire hole for passing an optical fiber tail fiber is arranged on the front side of the mounting plate and positioned on the first side of the mounting plate, a first wire clamping seat which is parallel to the mounting seat is fixedly arranged on the second side of the front side of the mounting plate, a second wire clamping seat which is parallel to the bottom edge of the mounting plate is fixedly arranged on the bottom end of the front side of the mounting plate, a plurality of first wire clamping grooves are arranged on the first wire clamping seat, the second wire clamping seat is provided with a plurality of second wire clamping grooves.
The above-mentioned related technical solutions have the following drawbacks: when putting foretell fiber distribution case in outdoor use, because open air weather is more changeable, especially when meetting the rain, material such as rainwater gets into fiber distribution case and can destroy fiber distribution case's communication ability, operating personnel need look for and use external canopy to shelter from the rainwater that falls on fiber distribution case to reduce the probability that the rainwater got into fiber distribution case, provide better guarantee for the user.
SUMMERY OF THE UTILITY MODEL
In order to reduce the probability that rainwater gets into the optic fibre case, provide better guarantee for the user, this application provides an optic fibre case with waterproof function.
The application provides an optical fiber box with waterproof function adopts following technical scheme:
the utility model provides an optical fiber box with waterproof function, includes the optical fiber box body, optical fiber box body top can be dismantled and be connected with the shielding piece, the shielding piece is located the optical fiber box body and shelters from the optical fiber box body directly over, optical fiber box body bottom is connected with support piece, support piece supports the optical fiber box body subaerial.
By adopting the technical scheme, when the optical fiber box body is placed on the outdoor ground for use, the supporting piece is firstly used for supporting the optical fiber box body on the ground so as to reduce the probability that accumulated water on the ground enters the optical fiber box body, and then the shielding piece is arranged at the top of the optical fiber box body, so that when the outdoor rain falls, the shielding piece can play a role of shielding the optical fiber box body from rain; the supporting piece can make the optical fiber box body can avoid most rainwater to get into the inside communication ability who destroys the optical fiber box body of optical fiber box body with the cooperation of shielding piece, has reduced the probability that the rainwater got into the optical fiber box, provides better guarantee for the user.
Preferably, support piece includes two faggings and locking piece one, and two faggings articulate respectively in the bottom of optic fibre case body, locking piece one is fixed two faggings on the optic fibre case body, and when the locking piece was with two faggings locking on the optic fibre case body, two faggings supported the optic fibre case body subaerial.
Through adopting above-mentioned technical scheme, use two faggings to support the optic fibre case body subaerial, can make the optic fibre case body have one end distance apart from ground to reduce this internal probability of subaerial ponding entering optic fibre case.
Preferably, the holding tank has been seted up on the optic fibre case body bottom surface, and two faggings articulate respectively in the both sides of holding tank diapire, when the fagging orientation is kept away from holding tank one side and is rotated to the butt when on the holding tank lateral wall, locking piece one fixes the fagging in the holding tank, and when the fagging rotated to the butt on the holding tank diapire towards holding tank diapire one side, two faggings all were located the holding tank.
Through adopting above-mentioned technical scheme, when the optic fibre case body was placed at indoor use, can rotate the fagging to folding in the holding tank, then place the bottom surface of optic fibre case body subaerial, the size of shared space when can reducing the optic fibre case body and place.
Preferably, the inclined plane has been seted up on the both sides lateral wall of holding tank, the one end that the inclined plane is close to the holding tank diapire to the one end of keeping away from the holding tank diapire apart from the distance crescent at holding tank diapire center, when the fagging rotates to the butt on close inclined plane, locking piece one fixes the fagging on the holding tank.
Through adopting above-mentioned technical scheme, when the fagging butt on the inclined plane, the action of gravity of optic fibre case body is on the fagging, and the fagging disperses the gravity of optic fibre case body to subaerial, and the fagging can be more stable support the optic fibre case body subaerial.
Preferably, the optical fiber box body comprises a box body, a door plate and a second locking piece, a placing groove is formed in the side face of one side of the box body, the door plate is hinged to the side face of one side of the box body, the second locking piece is used for fixing the door plate and the box body together, when the second locking piece fixes the door plate and the box body, the door plate shields the placing groove, a sealing ring is arranged on the side face of one side, facing the door plate, of the box body, and the placing groove is isolated from the outside by the sealing ring.
Through adopting above-mentioned technical scheme, the sealing ring with the better and external isolated the opening of standing groove, can reduce the rainwater and get into the probability in the standing groove through the gap between door plant and the standing groove, increase the water-proof effects of optic fibre case body.
Preferably, a sealing groove matched with the sealing ring is formed in the side face, facing the box body, of the door plate, and when the door plate rotates to abut against the side face of the box body, the sealing ring is embedded into the sealing groove.
Through adopting above-mentioned technical scheme, sealing ring and seal groove are little to be formed with labyrinth seal, can play waterproof sealing effect better.
Preferably, still include the baffle, can dismantle in the standing groove and be connected with the baffle, the baffle is kept away from the setting of standing groove bottom surface.
Through adopting above-mentioned technical scheme, when local area water is higher than optic fibre case body bottom surface, for further placing in the rainwater gets into the holding tank, use the baffle to install in the holding tank, then place optical fiber equipment in the baffle top, because baffle and standing groove diapire have one end distance, can reduce the probability that the rainwater contacted optical fiber equipment.
Preferably, the side wall of the box body is provided with heat dissipation holes communicated with the placing groove and the outside, the outer side wall of the box body, which is located on the heat dissipation holes, is provided with a shielding cover, and the shielding cover covers the heat dissipation holes.
Through adopting above-mentioned technical scheme, the louvre can make the air in the box exchange with the outside air, makes in the box during the heat transfer that optical fiber equipment work produced to the outside cold air to improve the radiating effect of optic fibre case body, further increase the stability of optical fiber equipment operation.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the sealing ring, the placing groove is better isolated from the outside by the sealing ring, the probability that rainwater enters the placing groove through a gap between the door plate and the placing groove can be reduced, and the waterproof effect of the optical fiber box body is improved;
2. by arranging the partition plate, when the area water is higher than the bottom wall of the optical fiber box body, in order to further place rainwater into the containing tank, the partition plate is installed in the containing tank, and then the optical fiber equipment is placed above the partition plate, so that the probability that the rainwater contacts the optical fiber equipment can be reduced due to the fact that the distance is reserved between the partition plate and the bottom wall of the containing tank;
3. through setting up the louvre, the louvre can make the air in the box exchange with the outside air to improve the radiating effect of optic fibre case body, further increase the stability of optical fiber equipment operation.
Drawings
Fig. 1 is a structural schematic diagram of a folded state of a supporting plate in the embodiment of the application.
Fig. 2 is a schematic structural view of the strut in an open state according to the embodiment of the present application.
Fig. 3 is a schematic view of the connection of the top cover and the box body.
Description of reference numerals: 11. accommodating grooves; 111. a second fixture block; 112. a first card slot; 113. an inclined surface; 12. a supporting plate; 121. a second card slot; 122. a first clamping block; 13. an optical fiber box body; 131. a box body; 132. a door panel; 1321. a sealing groove; 14. a handle; 15. a bolt; 151. inserting a rod; 152. a pin boss; 16. a fixed block; 17. a placement groove; 171. a chute; 172. heat dissipation holes; 173. a partition plate; 174. a slot; 18. a shield cover; 181. a shielding cavity; 19. a seal ring; 2. a top cover; 21. the block is inserted.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses fiber box with waterproof function.
Referring to fig. 1 and 2, the optical fiber box with the waterproof function of the embodiment includes an optical fiber box body 13, the optical fiber box body 13 is connected with a support member in a foldable manner, the support member is used for supporting the optical fiber box body 13 on the ground, and the top of the optical fiber box body 13 is detachably connected with a shielding member, and the shielding member is used for shielding the optical fiber box body 13 from rain.
Referring to fig. 1 and 2, the supporting member includes a first locking member and two supporting plates 12, an accommodating groove 11 is formed in a bottom surface of the optical fiber box body 13, a length direction of the accommodating groove 11 is parallel to a length direction of the optical fiber box body 13, and a width direction of the accommodating groove 11 is parallel to a width direction of the optical fiber box body 13. Holding tank 11 rotates and is connected with two pivots, and the both ends of pivot are rotated respectively and are connected on holding tank 11 width direction's both sides lateral wall, and two pivots are located holding tank 11 length direction's both ends respectively, and two fagging 12 are fixed connection respectively in two pivots, and fagging 12 width direction's one end fixed connection is in the pivot, and the length direction of fagging 12 is on a parallel with the length direction of pivot.
Referring to fig. 1 and 2, the inclined surfaces 113 are respectively disposed on the two side walls of the accommodating groove 11 in the length direction, and the distance from one end of the inclined surface 113 close to the bottom wall of the accommodating groove 11 to the end far away from the bottom wall of the accommodating groove 11 to the center of the bottom wall of the accommodating groove 11 gradually increases. When two fagging 12 rotate to the butt on holding tank 11 diapire towards holding tank 11 one side, two fagging 12 are located holding tank 11 completely, have certain space between two fagging 12 to be used for being convenient for operating personnel to open two fagging 12. At this moment, the supporting plate 12 is fixedly connected with the first clamping block 122 on the side surface of one side of the bottom wall of the accommodating groove 11, two first clamping grooves 112 are formed in the bottom wall of the accommodating groove 11, and when the supporting plate 12 rotates to abut against the bottom wall of the accommodating groove 11, the first clamping block 122 is clamped on the first clamping grooves 112.
Referring to fig. 1 and 2, when the two supporting plates 12 rotate to abut against the two inclined surfaces 113 toward the side away from the accommodating groove 11, the locking member locks the two supporting plates 12 on the accommodating groove 11, and the two supporting plates 12 support the optical fiber box body 13 on the ground in an inclined state. The first locking part is two second clamping blocks 111, the two second clamping blocks 111 are respectively and fixedly connected to the two inclined surfaces 113, a second clamping groove 121 matched with the second clamping block 111 is formed in the side surface of the supporting plate 12 facing the side surface corresponding to the inclined surface 113, and when the supporting plate 12 rotates to abut against the corresponding inclined surface 113, the second clamping block 111 is clamped on the second clamping groove 121.
Referring to fig. 1 and 2, the fiber box body 13 includes a box body 131, a door 132, and a second locking member, a placing groove 17 for placing a fiber instrument is opened on one side surface of the box body 131 in the width direction, and the length direction of the placing groove 17 is parallel to the width direction of the box body 131. The door plate 132 is hinged on the side surface of the box body 131 on one side of the accommodating groove 11, the locking piece is used for fixing the door plate 132 and the box body 131 together, and when the locking piece II fixes the door plate 132 and the box body 131, the door plate 132 is abutted on the box body 131 and isolates the accommodating groove 17 from the outside.
Referring to fig. 1 and 2, the locking element two includes a bolt 15 and a fixed block 16, the fixed block 16 is fixedly connected to an outer side wall of one side of the box 131 far away from the hinge joint of the door panel 132 and the box 131, the bolt 15 includes a pin seat 152 and an inserted rod 151, the pin seat 152 is fixedly connected to a side wall of one side of the fixed block 16, the inserted rod 151 is slidably connected to a side surface of the door panel 132 far away from the placing groove 17, when the door panel 132 rotates to abut against the box 131, the inserted rod 151 faces the pin seat 152 and can slide into the pin seat 152, so as to fix the door panel 132 and the box 131 together. A handle 14 for applying force by hand is fixed on the side of the door panel 132 away from the box body 131.
Referring to fig. 1 and 2, fixedly connected with sealing ring 19 is gone up to one side of box 131 towards door plant 132, sealing ring 19 is the setting of L type, sealing ring 19 surrounds one side of box 131 towards door plant 132 with the articulated shaft of door plant 132 and box 131, door plant 132 has seted up the seal groove 1321 that matches with sealing ring 19 on the side of one side of box 131, when door plant 132 rotates to the laminating on box 131, in sealing ring 19 embedding seal groove 1321, can play a better water-proof effects to standing groove 17.
Referring to fig. 2 and 3, a plurality of sets of sliding grooves 171 are respectively formed in the side walls on the two sides of the length direction of the placement groove 17, the plurality of sets of sliding grooves 171 are sequentially distributed along the height direction of the box body 131, and the plurality of sets of sliding grooves 171 are all located at the bottom of the box body 131. Each group of sliding grooves 171 includes two sliding grooves 171, the two sliding grooves 171 are opposite to each other and are respectively located the two side walls of the length direction of the placing groove 17, the length direction of the sliding grooves 171 is parallel to the width direction of the placing groove 17, and one end of the sliding groove 171, which is far away from the bottom wall of the placing groove 17, extends to be communicated with the outside. A partition 173 is slidably connected to the sliding groove 171, and both ends of the partition 173 in the length direction are slidably connected to the two sliding grooves 171 facing each other.
If the optical fiber box body 13 is placed in the open air in heavy rainfall, if the water level of the accumulated water in the place is high, the operator can install the partition 173 in the chute 171 with a proper height according to the judgment of the water level fluctuation, and then place the optical fiber equipment on the partition 173.
Referring to fig. 2 and 3, a plurality of heat dissipation holes 172 are formed in a side wall of the placing slot 17 away from the hinge joint of the door 132 and the box 131, and the heat dissipation holes 172 are all centrally located at the top end of the box 131. For preventing rainwater from entering the placing groove 17 from the heat dissipation holes 172, the box body 131 is fixedly connected with a shielding cover 18 on the outer side wall of one side of the heat dissipation holes 172, a shielding cavity 181 communicated with the heat dissipation holes 172 is formed in the bottom surface of the shielding cover 18, and the heat dissipation holes 172 are arranged just opposite to the shielding cavity 181.
Referring to fig. 2 and 3, the shielding element is a top cover 2, the top cover 2 is triangular prism-shaped, the vertical cross section of the top cover 2 is triangular, the bottom surface of the top cover 2 is fixedly connected with an insertion block 21, a slot 174 matched with the insertion block 21 in a clamping manner is formed in the top surface of the box body 131, when the insertion block 21 is inserted into the slot 174, the bottom surface of the top cover 2 is attached to the top surface of the box body 131, one end of the top cover 2, which is far away from the door plate 132, is flush with one side surface of the box body 131, which is far away from the door plate 132, one end of the top cover 2, which is close to the door plate 132, is located on one side of the door plate 132, the length direction of the top cover 2 is parallel to the length direction of the box body 131, two ends of the length direction of the top cover 2 are respectively located on two sides of the box body 131, and one end of the top cover 2, which is close to the shielding cover 18, is located right above the shielding cover 18.
The implementation principle of the optical fiber box with the waterproof function in the embodiment of the application is as follows: place optical fiber box body 13 when open air, operating personnel rotates out and with second fixture block 111 joint on second draw-in groove 121 with two fagging 12 from holding tank 11, make two fagging 12 support optical fiber box body 13 subaerial, then operating personnel opens door plant 132 again and installs baffle 173 on the spout 171 of suitable high position, install fiber equipment in holding tank 11 and be located baffle 173 top, then close door plant 132 and lock door plant 132 on box 131, then install overhead guard 2 at the box 131 top, make overhead guard 2 play the effect of keeping off the rain to optical fiber box body 13.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides an optical fiber box with waterproof function, includes optical fiber box body (13), its characterized in that: the optical fiber box is characterized in that a shielding piece is detachably connected to the top of the optical fiber box body (13), the shielding piece is located right above the optical fiber box body (13) and shields the optical fiber box body (13), a supporting piece is connected to the bottom of the optical fiber box body (13), and the supporting piece supports the optical fiber box body (13) on the ground.
2. The optical fiber box with the waterproof function according to claim 1, wherein: support piece includes two fagging (12) and locking piece one, and two fagging (12) articulate respectively in the bottom of optic fibre case body (13), locking piece one fixes two fagging (12) on optic fibre case body (13), and when locking piece one with two fagging (12) locking on optic fibre case body (13), two fagging (12) support optic fibre case body (13) subaerial.
3. The optical fiber box with the waterproof function according to claim 2, wherein: holding tank (11) have been seted up on optic fibre case body (13) bottom surface, two fagging (12) articulate respectively in the both sides of holding tank (11) diapire, when holding tank (11) one side is kept away from to fagging (12) orientation and rotates to the butt when on holding tank (11) lateral wall, locking piece one is fixed fagging (12) in holding tank (11), when fagging (12) rotate to the butt on holding tank (11) diapire one side towards holding tank (11), and two fagging (12) all are located holding tank (11).
4. The optical fiber box with waterproof function according to claim 3, wherein: inclined plane (113) have been seted up on the both sides lateral wall of holding tank (11), inclined plane (113) are close to the one end of holding tank (11) diapire to the one end of keeping away from holding tank (11) diapire apart from holding tank (11) diapire distance crescent at the center, when fagging (12) rotate to the butt on close inclined plane (113), the locking piece is first to fix fagging (12) on holding tank (11).
5. The optical fiber box with the waterproof function according to claim 1, wherein: the optical fiber box body (13) comprises a box body (131), a door plate (132) and a second locking piece, a placing groove (17) is formed in the side face of one side of the box body (131), the door plate (132) is hinged to the side face of one side of the box body (131), the door plate (132) and the box body (131) are fixed together through the second locking piece, when the door plate (132) and the box body (131) are fixed through the second locking piece, the door plate (132) shields the placing groove (17), a sealing ring (19) is arranged on the side face, facing the door plate (132), of one side of the box body (131), and the placing groove (17) is isolated from the outside through the sealing ring (19).
6. The optical fiber box with waterproof function according to claim 5, wherein: a sealing groove (1321) matched with the sealing ring (19) is formed in the side face, facing the box body (131), of the door panel (132), and when the door panel (132) rotates to abut against the side face of the box body (131), the sealing ring (19) is embedded into the sealing groove (1321).
7. The optical fiber box with waterproof function according to claim 5, wherein: still include baffle (173), detachably be connected with baffle (173) in standing groove (17), baffle (173) are kept away from standing groove (17) bottom surface and are set up.
8. The optical fiber box with waterproof function according to claim 5, wherein: the heat dissipation device is characterized in that the side wall of the box body (131) is provided with heat dissipation holes (172) communicated with the placing groove (17) and the outside, the outer side wall of the box body (131) located at the heat dissipation holes (172) is provided with a shielding cover (18), and the shielding cover (18) covers the heat dissipation holes (172).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120727913.9U CN214474142U (en) | 2021-04-09 | 2021-04-09 | Optical fiber box with waterproof function |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120727913.9U CN214474142U (en) | 2021-04-09 | 2021-04-09 | Optical fiber box with waterproof function |
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Publication Number | Publication Date |
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CN214474142U true CN214474142U (en) | 2021-10-22 |
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CN202120727913.9U Active CN214474142U (en) | 2021-04-09 | 2021-04-09 | Optical fiber box with waterproof function |
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2021
- 2021-04-09 CN CN202120727913.9U patent/CN214474142U/en active Active
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