CN112234554A - Line beam-returning protection device for 5G base station - Google Patents

Line beam-returning protection device for 5G base station Download PDF

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Publication number
CN112234554A
CN112234554A CN202011068423.9A CN202011068423A CN112234554A CN 112234554 A CN112234554 A CN 112234554A CN 202011068423 A CN202011068423 A CN 202011068423A CN 112234554 A CN112234554 A CN 112234554A
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protection
plate
protection device
groove
hanging
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CN112234554B (en
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梁国莉
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Jiaxing Xinbo Information Technology Co ltd
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Individual
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/30Installations of cables or lines on walls, floors or ceilings
    • H02G3/34Installations of cables or lines on walls, floors or ceilings using separate protective tubing

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Details Of Indoor Wiring (AREA)

Abstract

The invention provides a line bundling protection device for a 5G base station, which relates to the technical field of wire harness protection devices and aims to solve the problems that the existing line bundling protection device mostly adopts a mode of wrapping wire harnesses for protection, so that the heat output of the wire harnesses is difficult to diffuse in time, the heat productivity is increased greatly due to a large wire harness group, particularly in the field, a monitoring protection measure is lacked, safety accidents are easy to occur, and a loop structure is required to be used for fixing at a certain distance in the wrapping process, and the protection device comprises a protection plate; the structures contained by the plurality of protection plates are mutually spliced and assembled together to form the line beam-returning protection device. In the invention, the middle part of the side wall at the right end of the protection plate is fixedly provided with the convex tenon block, the lower part of the tenon block is fixedly provided with the bottom baffle plate with the outer end being parallel and level, and the bottom baffle plate and the top baffle plate are arranged, so that the accurate joggling position can be ensured.

Description

Line beam-returning protection device for 5G base station
Technical Field
The invention relates to the technical field of wire harness protection devices, in particular to a line beam-returning protection device for a 5G base station.
Background
The 5G base station is a core device of the 5G network, provides wireless coverage, and realizes wireless signal transmission between a wired communication network and a wireless terminal. The architecture and morphology of the base station directly affect how the 5G network is deployed. In the technical standard, the frequency band of 5G is much higher than that of 2G, 3G and 4G networks, and the 5G network mainly works in the frequency band of 3000-5000MHz at present. The base station density of a 5G network will be higher since the higher the frequency, the greater the attenuation in the signal propagation.
In the process of 5G base station construction, the arrangement of network cables is more and is a vulnerable component, and the existing protection device is a cable protection device (1) in patent application CN201880002247.3, which has a support member (20) that enables adjacent substantially cylindrical protection shells (10) to be connected to each other in a swingable manner, and the protection shells (10) are held inside the protection shells (10) so that the protection shells (10) are not separated from each other. The support member (20) connects arm members (21) arranged corresponding to the protective case (10) by means of a flexible linear body (22) extending along the center axis (CL) of the protective case (10). The arm member (21) has a base portion (21a) connected to the linear body (22) and a plurality of arm portions (21b) extending radially outward, one end portions of the arm portions (21b) are connected to the base portion (21a), the other end portions are connected to a surface of the protective case (10) on the side of the central axis (CL), and the arm portions (21b) are arranged at equal angular intervals around the central axis (CL).
The existing line bundling protection device mostly adopts a mode of wrapping the wire harness for protecting, so that the heat output of the wire harness is difficult to diffuse out in time, and because the wire harness group is large, the heat productivity is increased greatly, particularly in the field, monitoring protection measures are lacked, safety accidents are easy to occur, and the sleeving mode needs to fix the wire sleeve structure at a certain interval in the installation process.
Therefore, in view of the above, research and improvement are made on the existing structure and defects, and a line bundling protection device for a 5G base station is provided, so as to achieve the purpose of higher practical value.
Disclosure of Invention
In order to solve the technical problems, the invention provides a line bundling protection device for a 5G base station, which aims to solve the problems that the existing line bundling protection device mostly adopts a mode of wrapping wire harnesses for protection, so that the heat output of the wire harnesses is difficult to diffuse in time, the heat productivity is increased greatly due to large wire harness groups, particularly in the field, a monitoring protection measure is lacked, safety accidents are easy to occur, and a loop structure is required to be used for fixing at a certain distance in the wrapping mode in the installation process.
The purpose and the effect of the line beam-returning protection device for the 5G base station are achieved by the following specific technical means:
a line beam-returning protection device for a 5G base station comprises a protection plate; the structures contained by the plurality of protection plates are mutually spliced and assembled together to form the line beam-returning protection device; the side wall of the front end of the protection plate and the side wall of the rear end of the protection plate are respectively and vertically and upwards fixedly provided with a right-angle Z-shaped structure mounting hanging plate; side guard plates are respectively and fixedly arranged at the front end edge and the rear end edge of the plane at the bottom of the protection plate vertically and downwards; the middle part of the top plane of the protection plate is fixedly provided with a lifting mechanism, and the positions of the left side and the right side of the lifting mechanism on the bottom plane of the protection plate are respectively and fixedly provided with a guide block; symmetrical hanging buckle structures are respectively inserted on the front side wall and the rear side wall of the lower end of the lifting mechanism in a sliding manner, and the left side wall and the right side wall of the two hanging buckle structures are fixedly connected through a traction mechanism; the hanging buckle structure is provided with a net wire.
Further, the protection shield includes tenon piece, end baffle, tongue-and-groove and top baffle, the right-hand member lateral wall middle part fixed mounting of protection shield has the tenon piece of evagination, and the below fixed mounting of tenon piece has the end baffle of outer looks parallel and level, and the T form tongue-and-groove of indent is then seted up at the left end lateral wall middle part of protection shield, and the top of tongue-and-groove is then fixed the tiling and has a baffle, tenon piece and tongue-and-groove homoenergetic on every group protection shield can with another group tenon piece and tongue-and-groove looks joggle.
Furthermore, the installation link plate includes the mounting hole, two around installation link plate and protection shield constitute the concave structure jointly, all set up the mounting hole that can supply the bolt to pass on the upper end flat board of protection shield.
Furthermore, the side guard plate comprises reinforcing columns, the outer wall of the side guard plate is fixedly provided with the vertical reinforcing columns which are uniform in left-right interval and wide in top and narrow in bottom, the whole reinforcing columns are of a triangular columnar structure, and the reinforcing columns are made of aluminum with good heat conducting performance.
Furthermore, elevating system includes lead screw and connecting column piece, elevating system's the perpendicular spiro union in middle part has the lead screw, and the lower extreme spiro union of its lead screw passes the protection shield and is connected with connecting column piece is fixed, and has corresponding string knot structure through string post slidable mounting respectively in the front end of connecting column piece and the rear end lateral wall.
Furthermore, the hanging buckle structure comprises a hanging groove and an extrusion block, the side wall of the hanging buckle structure corresponding to the side guard plate is provided with a fishhook-shaped hanging groove, the lowest end of the hanging groove is of a column groove structure, and the middle of the top plane of the hanging buckle structure, which is close to the connecting column block, is fixedly provided with the extrusion block in a right-angle wedge shape.
Furthermore, the traction mechanism comprises a traction column and tension springs, the front end and the rear end of the traction mechanism are respectively and fixedly installed on the front and the rear different hanging buckle structures, and the middle part of the traction mechanism is fixedly connected through the two tension springs which are mutually symmetrical up and down.
Furthermore, the guide block includes the guide way, two set up the guide way that can supply the connecting column piece to pass through in the relative lateral wall of guide block, the lower extreme notch department of its guide way is the slope structure that expands outward, and its slope is unanimous with the slope of the extrusion piece of below.
Compared with the prior art, the invention has the following beneficial effects:
because the right-hand member lateral wall middle part fixed mounting of protection shield has the tenon piece of evagination, and the below fixed mounting of tenon piece has the end baffle of outer looks parallel and level, the T form tongue-and-groove of indent is then seted up at the left end lateral wall middle part of protection shield, and the top of tongue-and-groove is then fixed the tiling has a top baffle, tenon piece and tongue-and-groove homoenergetic on every group protection shield can with tenon piece and tongue-and-groove looks joggle on another group, thereby accessible tenon piece and the mutual joggle of tongue-and-groove make a plurality of protection device establish ties together, and because the existence of end baffle and top baffle, can guarantee that the position of joggle is accurate.
The fishhook-shaped hanging groove is formed in the side wall, corresponding to the side guard plate, of the hanging buckle structure, the lowest end of the hanging groove is of a column groove structure, the middle of the plane of the top of the hanging buckle structure, close to the connecting column block, is fixedly provided with the extrusion block in a right-angle wedge shape, the net wire can be hung and buckled through the hanging groove, the net wire can be prevented from being unhooked, the extrusion block can be matched with the guide groove when the hanging buckle structure rises, the two hanging buckle structures are polymerized towards the middle, so that the side wall of the side guard plate can be conveniently separated, and the corrosion of wall hanging water drops of the side guard plate can be effectively avoided.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
FIG. 1 is a schematic view of the right front upper side axial view of the assembled state of the present invention.
Fig. 2 is a schematic view of the right front lower axial view of the assembled state of the present invention.
Fig. 3 is a right-view structural diagram of the present invention.
Fig. 4 is a schematic view of the lower axis structure of the present invention.
FIG. 5 is a schematic view of the present invention in a disassembled state.
Fig. 6 is a schematic axial view of the present invention in a disassembled state.
FIG. 7 is a schematic axial view of the skirt of the present invention in a partially removed state.
Fig. 8 is an axial view of the guide block of the present invention in a partially separated state.
In the drawings, the corresponding relationship between the component names and the reference numbers is as follows:
1. a protection plate; 101. a tenon block; 102. a bottom baffle; 103. mortises; 104. a top baffle; 2. mounting a hanging plate; 201. mounting holes; 3. a side guard plate; 301. a reinforcement column; 4. a lifting mechanism; 401. a screw rod; 402. connecting the column blocks; 5. a network cable; 6. a hanging buckle structure; 601. hanging a groove; 602. extruding the block; 7. a pulling mechanism; 701. pulling the column; 702. a tension spring; 8. a guide block; 801. a guide groove.
Detailed Description
The embodiments of the present invention will be described in further detail with reference to the drawings and examples. The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.
As shown in figures 1 to 8:
the invention provides a line beam-returning protection device for a 5G base station, which comprises a protection plate 1; the structures contained by the plurality of protection plates 1 are mutually spliced and assembled together to form a circuit beam-returning protection device; the protection plate 1 comprises a tenon block 101, a bottom baffle plate 102, a mortise 103 and a top baffle plate 104, wherein the middle part of the side wall of the right end of the protection plate 1 is fixedly provided with the convex tenon block 101, the bottom baffle plate 102 with the outer end being parallel and level is fixedly arranged below the tenon block 101, the middle part of the side wall of the left end of the protection plate 1 is provided with the concave T-shaped mortise 103, the top baffle plate 104 is fixedly and flatly laid above the mortise 103, and the tenon block 101 and the mortise 103 on each group of protection plate 1 can be joggled with the tenon block 101 and the mortise 103 on the other group, so that a plurality of protection devices can be connected in series through the mutual joggling of the tenon block 101 and the mortise 103, and the accurate position of the joggling can be ensured due to the existence of the bottom baffle plate 102 and the top; the side wall of the front end of the protection plate 1 and the side wall of the rear end are respectively vertically and upwards fixedly provided with a mounting hanging plate 2 with a right-angle Z-shaped structure; the front end edge and the rear end edge of the plane at the bottom of the protective plate 1 are respectively vertically and downwards fixedly provided with a side protective plate 3; the middle part of the top plane of the protection plate 1 is fixedly provided with a lifting mechanism 4, and the positions of the left side and the right side of the lifting mechanism 4 on the bottom plane of the protection plate 1 are respectively and fixedly provided with a guide block 8; symmetrical hanging buckle structures 6 are respectively inserted on the front side wall and the rear side wall at the lower end of the lifting mechanism 4 in a sliding manner, and the left side wall and the right side wall of the two hanging buckle structures 6 are fixedly connected through a traction mechanism 7; the hanging buckle structure 6 comprises a hanging groove 601 and an extrusion block 602, the side wall of the hanging buckle structure 6 corresponding to the side guard plate 3 is provided with the fishhook-shaped hanging groove 601, the lowest end of the hanging groove 601 is of a column groove structure, the middle part of the top plane of the hanging buckle structure 6, which is close to the connecting column block 402, is fixedly provided with the extrusion block 602 in a right-angle wedge shape, the net wire 5 can be hung and buckled through the hanging groove 601, the net wire 5 can be prevented from unhooking, and the extrusion block 602 can be matched with the guide groove 801 when the hanging buckle structure 6 rises, so that the two hanging buckle structures 6 are polymerized towards the middle, the side wall of the side guard plate 3 can be conveniently separated, and the corrosion of wall hanging water drops of the side guard plate 3 can be effectively avoided; the hanging buckle structure 6 is internally hung and buckled with a net wire 5.
Wherein, installation link plate 2 includes mounting hole 201, and two front and back installation link plates 2 and protection shield 1 constitute concave structure jointly, all offer the mounting hole 201 that can supply the bolt to pass on the upper end flat board of protection shield 1, and accessible installation link plate 2 installs protection device in basic station piping shaft.
Wherein, the side guard plate 3 includes the enhancement post 301, all fixed mounting has the vertical even narrow enhancement post 301 about of interval on the outer wall of side guard plate 3, and its enhancement post 301 is whole to be the triangle column structure, and the enhancement post 301 constitutes for the aluminium that the heat conductivility is good, and pencil wherein is protected to accessible side guard plate 3, avoids the pencil to receive the erosion or wearing and tearing, and the enhancement post 301 plays the effect of strengthening intensity when, can play radiating effect again.
Wherein, elevating system 4 includes lead screw 401 and connecting column piece 402, the perpendicular spiro union in the middle part of elevating system 4 has lead screw 401, the lower extreme spiro union of its lead screw 401 passes protection shield 1 and is connected with connecting column piece 402 is fixed, and have corresponding string knot structure 6 through string post slidable mounting respectively in the front end of connecting column piece 402 and the rear end lateral wall, the rotatory lead screw 401 of accessible pulling hangs knot structure 6 and rises or descend, so that the installation and the dismantlement of net twine 5, when rising, can pull net twine 5 to in the side guard plate 3, and when descending, can push out side guard plate 3 with net twine 5 and conveniently take out.
The traction mechanism 7 comprises a traction column 701 and tension springs 702, the front end and the rear end of the traction mechanism 7 are respectively and fixedly installed on the front and rear different hanging buckle structures 6, the middle parts of the traction mechanism 7 are fixedly connected through the two tension springs 702 which are symmetrical up and down, and the distance between the two hanging buckle structures 6 can be limited through the traction mechanism 7.
The guide blocks 8 comprise guide grooves 801, the guide grooves 801 for the connecting column blocks 402 to pass through are formed in the opposite side walls of the two guide blocks 8, the notches at the lower ends of the guide grooves 801 are of outward-expanding inclined structures, the inclined gradient of the inclined grooves is consistent with the inclined gradient of the lower extrusion block 602, and the hanging buckle structures 6 can be forced to be converged towards the middle under the action of the extrusion block 602 through the guide grooves 801, so that the wiring harness can be better protected.
The specific use mode and function of the embodiment are as follows:
when the protective plate is used, the middle part of the side wall of the right end of the protective plate 1 is fixedly provided with the convex tenon block 101, the lower part of the tenon block 101 is fixedly provided with the bottom baffle plate 102 with the outer end being parallel and level, the middle part of the side wall of the left end of the protective plate 1 is provided with the concave T-shaped mortise 103, the upper part of the mortise 103 is fixedly and flatly provided with the top baffle plate 104, the tenon block 101 and the mortise 103 on each group of protective plate 1 can be joggled with the tenon block 101 and the mortise 103 on the other group, so that a plurality of protective devices can be connected in series through the mutual joggling of the tenon block 101 and the mortise 103, and the accurate joggling position can be ensured due to the existence of the bottom baffle plate 102 and the top;
the lead screw 401 is rotated to enable the hanging buckle structure 6 to move downwards and expose from the lower end of the side guard plate 3 so as to facilitate the installation and the disassembly of the net wire 5, when the hanging buckle structure is lifted, the net wire 5 can be pulled into the side guard plate 3, when the hanging buckle structure is lowered, the net wire 5 can be pushed out of the side guard plate 3 so as to be convenient to take out, the side wall of the hanging buckle structure 6 corresponding to the side guard plate 3 is provided with a fishlike hanging groove 601, the lowest end of the hanging groove 601 is of a column groove structure, the middle part of the top plane of the hanging buckle structure 6 is fixedly provided with a right-angle wedge-shaped extrusion block 602 close to the connecting column block 402, the net wire 5 can be hung and buckled through the hanging groove 601, the net wire 5 can be prevented from unhooking, the extrusion block 602 can be matched with the guide groove 801 when the hanging buckle structure 6 is lifted, so that the two hanging buckle structures 6 are polymerized towards the middle part so as to be convenient to be separated from the, the front end and the rear end of the traction mechanism 7 are respectively and fixedly arranged on the front hanging buckle structure 6 and the rear hanging buckle structure 6, the middle parts of the traction mechanism 7 are fixedly connected through two tension springs 702 which are symmetrical up and down, and the distance between the two hanging buckle structures 6 can be limited through the traction mechanism 7.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.

Claims (8)

1. A line beam-returning protection device for a 5G base station is characterized in that: comprises a protection plate (1); the structures contained in the plurality of protection plates (1) are mutually spliced and assembled together to form a circuit beam-returning protection device; the side wall of the front end of the protection plate (1) and the side wall of the rear end are respectively and vertically and upwards fixedly provided with a right-angle Z-shaped structure mounting hanging plate (2); side guard plates (3) are respectively and fixedly arranged at the front end edge and the rear end edge of the bottom plane of the protection plate (1) vertically downwards; the middle part of the top plane of the protection plate (1) is fixedly provided with a lifting mechanism (4), and the positions of the left side and the right side of the lifting mechanism (4) on the bottom plane of the protection plate (1) are respectively and fixedly provided with a guide block (8); symmetrical hanging buckle structures (6) are respectively inserted on the front side wall and the rear side wall of the lower end of the lifting mechanism (4) in a sliding manner, and the left side wall and the right side wall of the two hanging buckle structures (6) are fixedly connected through a traction mechanism (7); the net wire (5) is hung and buckled in the hanging and buckling structure (6).
2. The line-bunching protection device for the 5G base station as set forth in claim 1, characterized in that: protection shield (1) is including tenon piece (101), end board (102), tongue-and-groove (103) and top baffle (104), the right-hand member lateral wall middle part fixed mounting of protection shield (1) has tenon piece (101) of evagination, and the below fixed mounting of tenon piece (101) has end board (102) that the outer phase is parallel and level mutually, the T form tongue-and-groove (103) of indent are then seted up at the left end lateral wall middle part of protection shield (1), and the top of tongue-and-groove (103) is then fixed the tiling has top baffle (104), tenon piece (101) and tongue-and-groove (103) on every protection shield (1) of group all can with tenon piece (101) and tongue-and-groove (103) looks joggle on another group.
3. The line-bunching protection device for the 5G base station as set forth in claim 1, characterized in that: the mounting hanging plate (2) comprises a mounting hole (201), the front mounting hanging plate and the rear mounting hanging plate (2) and the protection plate (1) jointly form a concave structure, and the upper end flat plate of the protection plate (1) is provided with the mounting hole (201) through which a bolt can pass.
4. The line-bunching protection device for the 5G base station as set forth in claim 1, characterized in that: the side guard plate (3) comprises reinforcing columns (301), the reinforcing columns (301) which are vertically and horizontally uniform in interval and are wide at the top and narrow at the bottom are fixedly mounted on the outer wall of the side guard plate (3), the whole reinforcing column (301) is of a triangular column structure, and the reinforcing column (301) is made of aluminum with good heat conductivity.
5. The line-bunching protection device for the 5G base station as set forth in claim 1, characterized in that: elevating system (4) include lead screw (401) and connection post piece (402), the perpendicular spiro union in middle part of elevating system (4) has lead screw (401), and the lower extreme spiro union of its lead screw (401) passes protection shield (1) and is connected with connection post piece (402) fixed being connected, and has corresponding string knot structure (6) through string post slidable mounting respectively in the front end of connection post piece (402) and the rear end lateral wall.
6. The line-bunching protection device for the 5G base station as set forth in claim 1, characterized in that: the hanging buckle structure (6) comprises a hanging groove (601) and an extrusion block (602), the hanging groove (601) in the shape of a fishhook is formed in the side wall, corresponding to the side guard plate (3), of the hanging buckle structure (6), the lowest end of the hanging groove (601) is of a column groove structure, and the extrusion block (602) in the shape of a right-angle wedge is fixedly mounted at the position, close to the connecting column block (402), of the middle of the top plane of the hanging buckle structure (6).
7. The line-bunching protection device for the 5G base station as set forth in claim 1, characterized in that: the traction mechanism (7) comprises a traction column (701) and tension springs (702), the front end and the rear end of the traction mechanism (7) are respectively and fixedly installed on the front and rear different hanging buckle structures (6), and the middle parts of the traction mechanism (7) are fixedly connected through the two tension springs (702) which are mutually symmetrical up and down.
8. The line-bunching protection device for the 5G base station as set forth in claim 1, characterized in that: the guide block (8) comprises guide grooves (801), two guide grooves (801) for connecting column blocks (402) to pass through are formed in the opposite side walls of the guide block (8), the lower end notch of each guide groove (801) is of an outward-expanding inclined structure, and the inclination gradient of each guide groove is consistent with that of the lower extrusion block (602).
CN202011068423.9A 2020-10-09 2020-10-09 Line beam-returning protection device for 5G base station Active CN112234554B (en)

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