Floor holding pole for mobile communication
By designing a parallelogram structure for the rooftop support pole and multiple sets of stabilizing components, the signal attenuation and stability issues of relay base stations installed on the exterior facades of high-rise buildings were resolved, resulting in signal enhancement and improved equipment stability.
Patent Information
- Application Number
- CN202510183631.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2045-02-19
AI Technical Summary
When existing relay base stations are installed on the exterior of high-rise buildings, signal attenuation is caused by reflections from the building walls, and the installation is not stable enough, affecting signal transmission and equipment lifespan.
A floor-mounted support pole for mobile communication was designed. It forms a parallelogram structure with a first rotating support rod, a second rotating support rod, and an installation cylinder, converting gravity into rotational driving force. Combined with telescopic adjustment components, fastening and limiting components, and rotating installation components, it enables the suspension installation and angle adjustment of relay base stations, thereby enhancing structural stability.
It reduces signal attenuation caused by building reflections, improves signal transmission range and heat dissipation efficiency of relay base stations, and enhances equipment stability and lifespan.
Smart Images

Figure CN119812729B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mobile communications, in particular to a floor pole for mobile communications. Background Art
[0002] With the continuous development of mobile communication networks, people's dependence on wireless networks and their demand for data rates are increasing day by day, placing higher demands on network coverage. This means that operators need to select more reasonable sites and build more base stations and base station antennas. 5G antennas will fully cover cities. Currently, outdoor antennas are mostly installed on towers or rooftops.
[0003] However, as urban buildings gradually increase in height, the signal is stronger on high floors, but weaker on middle and low floors, and there is basically no signal in the basement. To solve this problem, it is usually necessary to install relay base stations on the facades of high-rise buildings. However, most of the existing relay base stations are directly fastened on the facades of the walls. The exterior walls of modern buildings are thicker, and the walls will also reflect part of the signal, resulting in a decrease in the reception efficiency of the relay base stations. Summary of the Invention
[0004] The object of the present invention is to provide a floor mast for mobile communications to solve the problems raised in the above background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A floor mast for mobile communication, comprising a mounting tube, an assembly tube, a relay base station, a first rotating support rod, a second rotating support rod, a telescopic adjustment assembly, a rotation limiting assembly, a fastening limiting assembly, a rotating mounting assembly, and an assembly assembly;
[0007] The first rotating support rod and the second rotating support rod are arranged parallel and equidistantly, one end of the first rotating support rod and the second rotating support rod are rotatably connected to the mounting tube, and the other end of the first rotating support rod and the second rotating support rod are fixedly connected to a set of rotating connecting shafts, and the rotating connecting shafts are rotatably connected to the first mounting seat;
[0008] The first mounting seat is arranged parallel to the mounting tube, and a parallelogram is formed between the first rotating support rod, the second rotating support rod, the first mounting seat and the mounting tube, so that the gravity exerted on the mounting tube is borne by the first rotating support rod and the second rotating support rod, and the gravity of the mounting tube is converted into a rotational driving force on the first rotating support rod and the second rotating support rod;
[0009] The first rotating support rod is fixedly connected with an adjusting groove, a rotating positioning block is arranged in the adjusting groove, a rotating cylinder is fixedly connected to the rotating positioning block, one end of an extension cylinder is slidably connected in the rotating cylinder, the other end of the extension cylinder is fixedly connected with another set of rotating connecting shafts, and a second mounting seat is rotatably connected to the rotating connecting shafts.
[0010] The telescopic adjusting assembly is mounted between the rotating cylinder and the extension cylinder, is used for sliding positioning and mounting between the rotating cylinder and the extension cylinder, and after mounting, a triangular support is formed between the wall, the first rotating support rod, the rotating cylinder and the extension cylinder, so that the first rotating support rod is traction fixed.
[0011] The rotating limiting assembly is provided with three sets, two sets of the rotating limiting assembly are mounted between the first mounting seat and the rotating connecting shafts, and the other set of the rotating limiting assembly is mounted between the second mounting seat and the rotating connecting shafts, is used for axially limiting and fixing between the first mounting seat, the second mounting seat and the rotating connecting shafts, and further axially clamps the first rotating support rod, the second rotating support rod and the extension cylinder.
[0012] The fastening limiting assembly is mounted between the first rotating support rod, the second rotating support rod and the first mounting seat, is used for fastening, mounting and fixing between the first rotating support rod, the second rotating support rod and the first mounting seat, and converts the rotation driving force of the mounting cylinder applied on the first rotating support rod and the second rotating support rod into the stretching force received by the fastening limiting assembly.
[0013] The assembling assembly is mounted between the mounting seat and the assembling cylinder, and is used for fastening and mounting the assembling cylinder on the mounting cylinder.
[0014] The rotating mounting assembly is mounted on the assembling cylinder, is used for mounting and fixing a plurality of relay base stations, and adjusts the angle of the relay base station.
[0015] As a further scheme of the application, a plurality of mounting grooves are fixedly connected to the first mounting seat and the second mounting seat.
[0016] As a further scheme of the application, the telescopic adjusting assembly comprises a first positioning bolt and a second positioning bolt.
[0017] A plurality of equidistantly distributed positioning jacks are arranged in the adjusting groove, the first positioning bolt is slidably connected with the rotating positioning block through the positioning jack, a plurality of equidistantly distributed first positioning mounting holes are arranged in the rotating cylinder, a plurality of equidistantly distributed second positioning mounting holes are arranged in the extension cylinder, and the second positioning bolt is slidably connected with the first positioning mounting hole and the second positioning mounting hole.
[0018] As a further scheme of the application, the rotating limiting assembly comprises a limiting gear, a limiting clamping block and a top block.
[0019] The first mounting seat and the second mounting seat are provided with a telescopic groove, a sliding connecting rod is slidingly connected in the telescopic groove, the top block is fixedly connected to one end of the sliding connecting rod, the limiting block is fixedly connected to the other end of the sliding connecting rod, the limiting gear is fixedly connected between the rotating connecting shafts, and the limiting gear and the limiting block are matched with each other, and the telescopic groove is provided with a spring which is sleeved on the sliding connecting rod.
[0020] As a further scheme of the present application, the fastening limiting assembly comprises parallel limiting rods, a traction screw rod and a sliding groove.
[0021] The first rotating support rod and the second rotating support rod are each fixedly connected with two groups of first fixed shafts on both sides, the two ends of the parallel limiting rods are rotatably connected to the first fixed shafts, the parallel limiting rods are arranged in parallel with the first mounting seat, the sliding groove is fixedly connected between the parallel limiting rods, one end of the traction screw rod is fixedly connected to the first mounting seat, and the other end of the traction screw rod is threadedly connected with a nut through the sliding groove.
[0022] As a further scheme of the present application, the second rotating support rod is provided with a wrench groove.
[0023] As a further scheme of the present application, the assembling cylinder is fixedly connected with a sealing insertion cylinder which is slidingly connected with the mounting cylinder, and an axial limiting clamping groove is arranged between the assembling cylinder and the mounting cylinder.
[0024] As a further scheme of the present application, the rotating mounting assembly comprises a rotating arm, an adjusting screw rod and a rotating connecting rod.
[0025] The second fixed shafts are fixedly connected to the outer wall of the assembling cylinder in a circumferential distribution, the rotating arm is rotatably connected to the second fixed shafts, the assembling groove is fixedly connected to the rotating arm, and the relay base station is fastened and mounted in the assembling groove through the mounting bolt.
[0026] One end of the adjusting screw rod is rotatably connected to the sealing insertion cylinder, the second threaded cylinder is threadedly connected to the adjusting screw rod, one end of the rotating connecting rod is rotatably connected to the second threaded cylinder, and one end of the rotating connecting rod is rotatably connected to the rotating arm.
[0027] As a further scheme of the present application, a screw head is fixedly connected to the other end of the adjusting screw rod.
[0028] As a further scheme of the present application, the assembling assembly comprises a mounting screw rod and a rotating insertion cylinder.
[0029] The mounting screw rod is fixedly connected to the sealing insertion cylinder, the rotating insertion cylinder is arranged in the mounting cylinder, the first threaded cylinder is fixedly connected in the rotating insertion cylinder, the first threaded cylinder is threadedly connected with the mounting screw rod, and the rotating insertion cylinder is fixedly connected with the knob through the mounting cylinder.
[0030] Compared with the prior art, the beneficial effects of the present application are: the floor holding pole for mobile communication of the present application realizes the external suspension installation of the relay base station on the building facade, thereby reducing the signal attenuation caused by the reflection of the building, and improving the signal transmission range of the relay base station, and at the same time, the suspension installation also speeds up the air flow outside the relay base station, thereby improving the heat dissipation efficiency of the relay base station, and the present application converts and distributes the gravity of the relay base station through multiple stable structures, thereby reducing the influence of the gravity of the relay base station and external force on the structure of the present application, and thereby improving the stability and service life of the equipment structure. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is a structure schematic view of the floor holding pole for mobile communication in the present application.
[0032] Figure 2 It is a sectional view of the floor holding pole for mobile communication in the present application.
[0033] Figure 3 It is a partial enlarged view of point A. Figure 2
[0034] Figure 4 It is a partial enlarged view of point B. Figure 2
[0035] Figure 5 It is a partial enlarged view of point C. Figure 2
[0036] Figure 6 It is a sectional view of the floor holding pole for mobile communication in the present application.
[0037] Figure 7 Figure 6 It is a partial enlarged view of point D.
[0038] Figure 8 Figure 6 It is a partial enlarged view of point E.
[0039] In the figure: 1 - installation cylinder, 2 - first rotating support rod, 3 - second rotating support rod, 4 - first mounting seat, 5 - rotating connecting shaft, 6 - limiting gear, 7 - telescopic groove, 8 - sliding connecting rod, 9 - top block, 10 - spring, 11 - limiting clamping block, 12 - first fixed shaft, 13 - parallel limiting rod, 14 - traction screw, 15 - sliding groove, 16 - nut, 17 - wrench groove, 18 - adjusting groove, 19 - positioning jack, 20 - first positioning bolt, 21 - rotating positioning block, 22 - rotating cylinder, 23 - telescopic cylinder, 24 - first positioning mounting hole, 25 - second positioning mounting hole, 26 - second positioning bolt, 27 - second mounting seat, 28 - installation groove, 29 - assembly cylinder, 30 - axial limiting clamping groove, 31 - rotating insertion cylinder, 32 - first threaded cylinder, 33 - sealing insertion cylinder, 34 - installation screw, 35 - knob, 36 - second fixed shaft, 37 - rotating arm, 38 - assembly groove, 39 - relay base station, 40 - installation bolt, 41 - adjusting screw, 42 - second threaded cylinder, 43 - rotating connecting rod, 44 - screw head, 45 - telescopic adjusting assembly, 46 - rotating limiting assembly, 47 - fastening limiting assembly, 48 - rotating installation assembly, 49 - assembly assembly. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.
[0041] In one case of the present embodiment, refer to Figures 1-8 A floor holding pole for mobile communication includes an installation cylinder 1, an assembly cylinder 29, a relay base station 39, a first rotating support rod 2, a second rotating support rod 3, a telescopic adjusting assembly 45, a rotating limiting assembly 46, a fastening limiting assembly 47, a rotating installation assembly 48, and an assembly assembly 49.
[0042] The first rotating support rod 2 and the second rotating support rod 3 are arranged in parallel and equidistantly, one end of the first rotating support rod 2 and the second rotating support rod 3 is rotatably connected to the installation cylinder 1, and the other end of the first rotating support rod 2 and the second rotating support rod 3 is fixedly connected with a group of rotating connecting shafts 5, and the rotating connecting shafts 5 are rotatably connected with the first mounting seat 4.
[0043] The first mounting seat 4 is arranged in parallel with the mounting cylinder 1, at this time, a parallelogram is formed between the first rotating support rod 2, the second rotating support rod 3, the first mounting seat 4 and the mounting cylinder 1, and then the gravity of the mounting cylinder 1 is received by the first rotating support rod 2 and the second rotating support rod 3, and the gravity of the mounting cylinder 1 is converted into a rotating driving force on the first rotating support rod 2 and the second rotating support rod 3;
[0044] The first rotating support rod 2 is fixedly connected with an adjusting groove 18, the adjusting groove 18 is provided with a rotating positioning block 21, the rotating positioning block 21 is fixedly connected with a rotating cylinder 22, one end of an extension cylinder 23 is slidably connected in the rotating cylinder 22, the other end of the extension cylinder 23 is fixedly connected with another set of rotating connecting shafts 5, and the rotating connecting shafts 5 are rotatably connected with a second mounting seat 27;
[0045] The extension adjusting assembly 45 is installed between the rotating cylinder 22 and the extension cylinder 23, and is used for slidably positioning and installing the rotating cylinder 22 and the extension cylinder 23, after installation, a triangular support fixing is formed between the wall body, the first rotating support rod 2, the rotating cylinder 22 and the extension cylinder 23, so as to traction-fix the first rotating support rod 2;
[0046] The extension adjusting assembly 45 comprises first positioning bolts 20 and second positioning bolts 26.
[0047] The adjusting groove 18 is provided with a plurality of equidistantly distributed positioning insertion holes 19, the first positioning bolts 20 are slidably connected with the rotating positioning block 21 through the positioning insertion holes 19, the rotating cylinder 22 is provided with a plurality of equidistantly distributed first positioning installation holes 24, the extension cylinder 23 is provided with a plurality of equidistantly distributed second positioning installation holes 25, and the second positioning bolts 26 are slidably connected with the first positioning installation holes 24 and the second positioning installation holes 25.
[0048] The rotating limiting assembly 46 is provided with three groups, two groups of the rotating limiting assembly 46 are installed between the first mounting seat 4 and the rotating connecting shaft 5, and the other group of the rotating limiting assembly 46 is installed between the second mounting seat 27 and the rotating connecting shaft 5, which is used for axially limiting and fixing the first mounting seat 4, the second mounting seat 27 and the rotating connecting shaft 5, and then axially clamps the first rotating support rod 2, the second rotating support rod 3 and the extension cylinder 23.
[0049] The rotating limiting assembly 46 comprises a limiting gear 6, a limiting clamping block 11 and a top block 9.
[0050] The first mounting base 4 and the second mounting base 27 are provided with telescopic grooves 7, the telescopic grooves 7 are slidably connected with sliding connecting rods 8, the top block 9 is fixedly connected to one end of the sliding connecting rod 8, the limiting clamping block 11 is fixedly connected to the other end of the sliding connecting rod 8, the limiting gear 6 is fixedly connected between the rotating connecting shafts 5, the limiting gear 6 and the limiting top block 9 are matched with each other, and the telescopic groove 7 is provided with a spring 10 sleeved on the sliding connecting rod 8;
[0051] The fastening limiting assembly 47 is installed between the first rotating support rod 2, the second rotating support rod 3 and the first mounting base 4, is used for fastening and installing and fixing the first rotating support rod 2, the second rotating support rod 3 and the first mounting base 4, and converts the rotating driving force applied on the first rotating support rod 2 and the second rotating support rod 3 into the tensile force borne by the fastening limiting assembly 47;
[0052] The fastening limiting assembly 47 comprises parallel limiting rods 13, traction screws 14 and sliding grooves 15.
[0053] The first rotating support rod 2 and the second rotating support rod 3 are respectively fixedly connected with two groups of first fixed shafts 12 on both sides, the two ends of the parallel limiting rod 13 are rotatably connected to the first fixed shaft 12, the parallel limiting rod 13 is arranged in parallel with the first mounting base 4, the sliding groove 15 is fixedly connected between the parallel limiting rods 13, one end of the traction screw 14 is fixedly connected to the first mounting base 4, and the other end of the traction screw 14 is threadedly connected with a nut 16 through the sliding groove 15.
[0054] The assembling assembly 49 is installed between the mounting base and the assembling cylinder 29, and is used for fastening and installing the assembling cylinder 29 on the mounting cylinder 1.
[0055] The rotating mounting assembly 48 is installed on the assembling cylinder 29, and is used for installing and fixing a plurality of relay base stations 39 and adjusting the angle of the relay base station 39.
[0056] Firstly, according to the position and shape of the wall, holes are drilled on the wall and expansion screws are installed, then the first mounting seat 4 and the second mounting seat 27 are installed on the wall, and a certain gap is reserved between the first mounting seat 4, the second mounting seat 27 and the wall, at this time the rotating limiting assembly 46 remains in an open state, the top block 9 is elastically pushed out of the telescopic groove 7 under the elastic pushing of the spring 10, the top block 9 drives the limiting clamping teeth to move away from the limiting gear 6 through the sliding connecting rod 8, at this time the limiting gear 6 and the limiting clamping block 11 are not clamped, that is, the rotating connecting shaft 5 is no longer limited, at this time the first mounting seat 4 and the first rotating support rod 2, the second rotating support rod 3, and the second mounting seat 27 and the telescopic cylinder 23 can be freely rotated and adjusted to facilitate the adjustment and installation of the equipment, then the relative length between the rotating cylinder 22 and the telescopic cylinder 23 is adjusted through the sliding expansion between the rotating cylinder 22 and the telescopic cylinder 23, after the adjustment is completed, the second positioning bolt 26 can be inserted into the first positioning mounting hole 24 and the second positioning mounting hole 25, and then the rotating cylinder 22 and the telescopic cylinder 23 are tightly connected through the second positioning bolt 26, then the matching position between the rotating positioning block 21 and the positioning insertion hole 19 is adjusted through the sliding adjustment between the rotating positioning block 21 and the adjustment groove 18, then the first positioning bolt 20 can be inserted into the positioning insertion hole 19 and the rotating positioning block 21, and then the rotating positioning block 21 and the adjustment groove 18 are tightly connected through the first positioning bolt 20, at this time the pitch angle of the first rotating support rod 2 and the second rotating support rod 3 can be adjusted by adjusting the matching position between the rotating positioning block and the positioning insertion hole 19;
[0057] Then the fastening limiting assembly 47 drives the nut 16 to rotate through the screwing of the nut 16, and then the rotation of the nut 16 is converted into the linear motion of the nut 16 through the threaded connection between the nut 16 and the traction screw 14, and then the nut 16 moves along the traction screw 14, during assembly the nut 16 can be driven to move towards the first mounting seat 4 by screwing the nut 16, the nut 16 drives the sliding groove 15 to fold towards the first mounting seat 4 through the cooperation with the sliding groove 15, the sliding groove 15 drives the first rotating support rod 2 and the second rotating support rod 3 to rotate and rise through the rotating connection of the parallel limiting rod 13 and the first fixed shaft 12, and finally the rotating driving force of the nut 16 is converted into the upward rotating driving force of the first rotating support rod 2 and the second rotating support rod 3, and then the triangular support between the wall, the first rotating support rod 2 and the rotating cylinder 22 and the telescopic cylinder 23 is tightly pushed and fastened, thereby improving the stability of the structure in the application;
[0058] After the main body frame is installed, the expansion screws are tightened again, at this time, the first mounting seat 4 and the second mounting seat 27 are attached to the outer wall of the wall under the driving of the bolts, and then the top block 9 in the first mounting seat 4 and the second mounting seat 27 is pressed into the telescopic groove 7 under the pushing of the wall, and the top block 9 drives the limiting block 11 to move towards the limiting gear 6 through the connecting rod, when the first mounting seat 4 and the second mounting seat 27 are installed, the limiting block 11 is tightly engaged with the limiting gear 6, and then the limiting block 11 and the limiting gear 6 are axially limited and fixed, thereby axially clamping and fixing the first mounting seat 4 and the first rotating support rod 2, the second rotating support rod 3, and the second mounting seat 27 and the telescopic cylinder 23, thereby realizing the fastening connection between the first mounting seat 4 and the first rotating support rod 2, the second rotating support rod 3, and the fastening connection between the second mounting seat 27 and the telescopic cylinder 23, thereby improving the stability of the equipment structure;
[0059] Finally, the plurality of relay base stations 39 are tightly installed on the rotating mounting assembly 48, and then the assembly cylinder 29 provided with the relay base station 39 is tightly installed on the mounting cylinder 1 through the assembly assembly 49, thereby completing the assembly of the equipment;
[0060] During use of the equipment, the gravity of the relay base station 39 acts on the first rotating support rod 2 and the second rotating support rod 3 through the mounting cylinder 1, thereby converting the gravity of the relay base station 39 into downward rotating driving force of the first rotating support rod 2 and the second rotating support rod 3, and when the first rotating support rod 2 and the second rotating support rod 3 rotate downward, the distance between the sliding groove 15 and the first mounting seat 4 increases, but the sliding groove 15 cannot move under the limitation of the nut 16, and finally the gravity of the relay base station 39 is converted into a pushing force for pushing the nut 16 away from the first mounting seat 4, at this time, the friction force generated by the threaded connection between the nut 16 and the traction screw rod 14 can offset the pushing force received by the nut 16, thereby improving the stability and pressure bearing capacity of the equipment;
[0061] Meanwhile, the second mounting seat 27 applies a set of upward rotating traction force to the first rotating support rod 2 through the rotating cylinder 22 and the telescopic cylinder 23, thereby offsetting the downward rotating driving force of the first rotating support rod 2 and the second rotating support rod 3, thereby improving the pressure bearing capacity of the equipment structure.
[0062] In one case of the embodiment, please refer to Figure 1 , the second rotating support rod 3 is provided with a wrench groove 17, and the wrench groove 17 is used to facilitate the insertion of a wrench into the space between the first rotating support rod 2 and the second rotating support rod 3, and the wrench is used to drive the nut 16 to be tightened.
[0063] In one case of the embodiment, please refer toFigure 4 The sealing insertion cylinder 33 is slidably connected with the mounting cylinder 1, and an axial limiting clamping groove 30 is arranged between the assembling cylinder 29 and the mounting cylinder 1. First, the assembling cylinder 29 and the mounting cylinder 1 are slidably connected through the sliding connection of the sealing insertion cylinder 33 and the mounting cylinder 1, so as to prevent water from entering the structure and rusting. Meanwhile, the angle between the assembling cylinder 29 and the mounting cylinder 1 in the horizontal direction is adjusted through the sliding connection of the sealing insertion cylinder 33 and the mounting cylinder 1. After the adjustment is completed, the assembling cylinder 29 and the mounting cylinder 1 are tightly locked with each other under the driving of the assembling assembly 49. At this time, the axial limiting clamping grooves 30 are tightly clamped with each other, and the assembling cylinder 29 and the mounting cylinder 1 cannot rotate. Thus, the assembling cylinder 29 and the mounting cylinder 1 are tightly mounted.
[0064] In one case of the embodiment, please refer to Figure 2 and Figure 4 The rotating mounting assembly 48 comprises a rotating arm 37, an adjusting screw rod 41 and a rotating connecting rod 43. A plurality of groups of second fixed shafts 36 are fixedly connected to the outer wall of the assembling cylinder 29. The rotating arm 37 is rotatably connected to the second fixed shafts 36. The rotating arm 37 is fixedly connected with an assembling groove 38. The relay base station 39 is tightly mounted in the assembling groove 38 through mounting bolts 40. One end of the adjusting screw rod 41 is rotatably connected to the sealing insertion cylinder 33. A second threaded cylinder 42 is threadedly connected to the adjusting screw rod 41. One end of the rotating connecting rod 43 is rotatably connected to the second threaded cylinder 42. One end of the rotating connecting rod 43 is rotatably connected to the rotating arm 37. A screw head 44 is fixedly connected to the other end of the adjusting screw rod 41.
[0065] The rotating mounting assembly 48 is cooperated with the screw head 44 through a wrench. The rotating wrench drives the adjusting screw rod 41 to rotate. The adjusting screw rod 41 converts the rotary motion of the adjusting screw rod 41 into the linear motion of the second threaded cylinder 42 through the threaded connection with the second threaded cylinder 42. Thus, the second threaded cylinder 42 is driven to ascend and descend. The second threaded cylinder 42 drives the rotating connecting rod 43 to rotate and expand or contract. The rotating connecting rod 43 drives the rotating arm 37 to rotate around the second fixed shaft 36. The rotating arm 37 drives the relay base station 39 to rotate and adjust the angle of the relay base station 39.
[0066] In one case of the embodiment, please refer to Figure 2 and Figure 4 The assembling assembly 49 comprises a mounting screw rod 34 and a rotating insertion cylinder 31. The mounting screw rod 34 is fixedly connected to the sealing insertion cylinder 33. The rotating insertion cylinder 31 is arranged in the mounting cylinder 1. A first threaded cylinder 32 is fixedly connected to the rotating insertion cylinder 31. The first threaded cylinder 32 is threadedly connected with the mounting screw rod 34. The rotating insertion cylinder 31 is fixedly connected with a knob 35 through the mounting cylinder 1.
[0067] In the assembly component 49, when the sealing insert 33 is inserted into the mounting tube 1, the mounting screw 34 is inserted into the mounting tube 1 at the same time, and then the rotating insert 31 is inserted into the mounting tube 1 from the bottom of the mounting tube 1, and then the knob 35 is screwed, and the knob 35 drives the rotating insert 31 to rotate in the mounting tube 1. At this time, the rotational motion of the rotating insert 31 is converted into the linear motion of the first threaded tube 32 through the threaded connection between the first threaded tube 32 and the mounting screw 34, and then the rotation and contraction between the first threaded tube 32 and the mounting screw 34 drive the knob 35 and the assembly tube 29 to contract, thereby clamping and fixing the mounting tube 1.
[0068] In one embodiment of the present invention, see Figure 1 The first mounting seat 4 and the second mounting seat 27 are fixedly connected with multiple sets of mounting grooves 28. The present invention first drives the expansion screws into the wall, and then fastens the first mounting seat 4 and the second mounting seat 27 to the wall through the mutual cooperation between the expansion screws and the mounting grooves 28.
[0069] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A floor pole for mobile communication, characterized by comprising: The utility model provides a kind of installation structure of relay base station, including installation cylinder, assembly cylinder, relay base station, first rotating support rod, second rotating support rod, telescopic adjusting component, rotation limiting component, fastening limiting component, rotary mounting component, assembly component; The first rotating support rod and the second rotating support rod are arranged in parallel and equidistantly, one end of the first rotating support rod and the second rotating support rod is rotationally connected to the installation cylinder, and the other end of the first rotating support rod and the second rotating support rod is fixedly connected with a group of rotating connecting shafts, and a first mounting seat is rotationally connected to the rotating connecting shafts; The first mounting seat is arranged in parallel with the installation cylinder, at this time, a parallelogram is formed between the first rotating support rod, the second rotating support rod, the first mounting seat and the installation cylinder, and then the gravity received by the installation cylinder is supported by the first rotating support rod and the second rotating support rod, and the gravity of the installation cylinder is converted into a rotary driving force on the first rotating support rod and the second rotating support rod; A adjusting groove is fixedly connected to the first rotating support rod, a rotating positioning block is arranged in the adjusting groove, a rotating cylinder is fixedly connected to the rotating positioning block, one end of a telescopic cylinder is slidingly connected to the rotating cylinder, the other end of the telescopic cylinder is fixedly connected with another group of rotating connecting shafts, and a second mounting seat is rotationally connected to the rotating connecting shafts; The telescopic adjusting component is installed between the rotating cylinder and the telescopic cylinder, and is used for slidingly positioning and installing the rotating cylinder and the telescopic cylinder, after installation, a triangular support is formed between the wall, the first rotating support rod, the rotating cylinder and the telescopic cylinder, so as to traction and fix the first rotating support rod; The rotation limiting component is provided with three groups, two groups of the rotation limiting component are installed between the first mounting seat and the rotating connecting shafts, and the other group of the rotation limiting component is installed between the second mounting seat and the rotating connecting shafts, which is used for axially limiting and fixing between the first mounting seat, the second mounting seat and the rotating connecting shafts, and then axially limiting and clamping the first rotating support rod, the second rotating support rod and the telescopic cylinder; The fastening limiting component is installed between the first rotating support rod, the second rotating support rod and the first mounting seat, which is used for fastening, installing and fixing between the first rotating support rod, the second rotating support rod and the first mounting seat, and converting the rotary driving force of the installation cylinder on the first rotating support rod and the second rotating support rod into the tensile force received by the fastening limiting component; The assembly component is installed between the mounting seat and the assembly cylinder, which is used for fastening and installing the assembly cylinder on the installation cylinder; The rotary mounting component is installed on the assembly cylinder, which is used for installing and fixing a plurality of relay base stations, and adjusting the angle of the relay base station.
2. The mobile communication floor holding pole according to claim 1, wherein A plurality of mounting grooves are fixedly connected to the first mounting seat and the second mounting seat.
3. The mobile communication floor holding pole according to claim 1, wherein The telescopic adjusting component includes a first positioning bolt and a second positioning bolt. A plurality of equidistantly distributed positioning insertion holes are arranged in the adjusting groove, the first positioning bolt is slidingly connected to the rotating positioning block through the positioning insertion hole, a plurality of equidistantly distributed first positioning mounting holes are arranged in the rotating cylinder, a plurality of equidistantly distributed second positioning mounting holes are arranged in the telescopic cylinder, and the second positioning bolt is slidingly connected to the first positioning mounting hole and the second positioning mounting hole.
4. The mobile communication floor holding pole according to claim 1, wherein The rotation limiting assembly comprises a limiting gear, a limiting block, and a top block. The first mounting seat and the second mounting seat are provided with an expansion slot, a sliding connecting rod is slidingly connected in the expansion slot, the top block is fixedly connected to one end of the sliding connecting rod, the limiting block is fixedly connected to the other end of the sliding connecting rod, the limiting gear is fixedly connected between the rotating connecting shafts, the limiting gear and the limiting top block are matched with each other, and the expansion slot is provided with a spring sleeved on the sliding connecting rod.
5. The mobile communication floor pole according to claim 1, wherein The fastening limiting assembly comprises parallel limiting rods, a traction screw rod, and a sliding slot. Two groups of first fixing shafts are fixedly connected to the two sides of the first rotating support rod and the second rotating support rod respectively, the two ends of the parallel limiting rods are rotatably connected to the first fixing shafts, the parallel limiting rods are arranged in parallel with the first mounting seat, the sliding slot is fixedly connected between the parallel limiting rods, one end of the traction screw rod is fixedly connected to the first mounting seat, and the other end of the traction screw rod is threadedly connected with a nut through the sliding slot.
6. The mobile communication floor pole as claimed in claim 1, wherein The second rotating support rod is provided with a wrench slot.
7. The mobile communication floor pole as claimed in claim 1, wherein The assembly cylinder is fixedly connected with a sealing plug, the sealing plug is slidingly connected with the mounting cylinder, and an axial limiting block slot is arranged between the assembly cylinder and the mounting cylinder.
8. The mobile communication floor pole as claimed in claim 7, wherein The rotating mounting assembly comprises a rotating arm, an adjusting screw rod, and a rotating connecting rod. A plurality of circumferentially distributed second fixing shafts are fixedly connected to the outer wall of the assembly cylinder, the rotating arm is rotatably connected to the second fixing shafts, the rotating arm is fixedly connected with an assembly slot, and the relay base station is fastened and mounted in the assembly slot through mounting bolts; One end of the adjusting screw rod is rotatably connected to the sealing plug, a second threaded cylinder is threadedly connected to the adjusting screw rod, one end of the rotating connecting rod is rotatably connected to the second threaded cylinder, and one end of the rotating connecting rod is rotatably connected to the rotating arm.
9. The mobile communication floor pole according to claim 8, wherein The other end of the adjusting screw rod is fixedly connected with a screw head.
10. The mobile communication floor pole according to claim 7, wherein The assembly assembly comprises a mounting screw rod and a rotating plug; The mounting screw rod is fixedly connected to the sealing plug, the rotating plug is arranged in the mounting cylinder, a first threaded cylinder is fixedly connected in the rotating plug, the first threaded cylinder is threadedly connected with the mounting screw rod, and the rotating plug is fixedly connected with a knob through the mounting cylinder.
Citation Information
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