Communication landscape tower in the shape of a hexafoil

By designing a six-leaf-shaped communication landscape tower and utilizing a combination of flip-up connecting rods and arc-shaped support plates, the problem of aesthetically pleasing but functionally insufficient landscape towers was solved, achieving both protection and convenient maintenance.

CN117432271BActive Publication Date: 2026-04-218TELECOM INT HLDG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
8TELECOM INT HLDG CO LTD
Filing Date
2023-10-07
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The existing landscape tower only has an aesthetic function and lacks substantial functional improvement, and it is inconvenient for workers to operate during maintenance.

Method used

A six-leaf-shaped communication landscape tower was designed, which includes supporting columns, flipping linkages, and lifting rings. The combination of flipping linkages and arc-shaped support plates simulates a six-leaf shape, providing protection and convenient maintenance path.

Benefits of technology

It achieves both aesthetic appeal and protection against fallen foreign objects, while also providing convenient access for maintenance and improving maintenance efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a simulated six-leaf-shaped communication landscape tower, belonging to the field of communication landscape towers. It includes a supporting column, a flipping linkage, and a lifting ring. The supporting column is vertically erected, and a signal compartment is fixedly installed below its outer end face. A circular fixed disk is fixedly installed on the outer end face of the supporting column, above the signal compartment. Several flipping linkages are located on the outer end face of the fixed disk. This invention uses a flipping shaft to rotate the two curved support plates closer together. After the curved support plates move and flip, the magnetic fasteners on both sides move closer together and fit together. Magnetic suction plates then combine the two curved support plates into an arc-shaped ladder. This invention simulates the shape of a six-leaf foliage through the curvature between the flipping linkages and the curved support plates, thus protecting against falling debris while maintaining the aesthetic appeal of the landscape tower and ensuring its normal use.
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Description

Technical Field

[0001] This invention relates to the field of communication landscape tower technology, specifically to a six-leaf-shaped communication landscape tower. Background Technology

[0002] Communication towers are a type of signal transmission tower. Their main functions are to be aesthetically pleasing and to support signal transmission antennas. They are used by communication departments such as China Mobile, China Unicom, China Telecom, and transportation satellite positioning systems.

[0003] While typical landscape towers only aim for aesthetic appeal, the decorative components used to beautify them do not offer any real functional improvement. They are merely simple structures. In contrast, the decorative elements on some ground-mounted landscape towers can protect the tower structure and assist maintenance workers in their work. Summary of the Invention

[0004] Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this invention provides a simulated six-leaf-shaped communication landscape tower, which solves the problems mentioned in the background section.

[0006] Technical solution

[0007] To achieve the above objectives, the present invention provides the following technical solution: a six-leaf-shaped communication landscape tower, comprising a supporting column, flipping links, and lifting rings. The supporting column is vertically erected, and a signal housing is fixedly located below the outer end face of the supporting column. A circular fixed disk is fixedly located on the outer end face of the supporting column above the signal housing. Several flipping links are located on the outer end face of the fixed disk, arranged in a circular pattern. One end of each flipping link is hinged to the outer end face of the fixed disk. Two outward-facing lifting cavities are located on the outer end face of the supporting column above the signal housing. The lifting rings on both sides... The cavity positions are symmetrical, and the lifting cavities on both sides are equipped with lifting connecting rods that can move up and down. The lifting ring is located above the flipping connecting rods on each side. The lifting ring is circular. One end of the lifting connecting rods on both sides extends outward and is fixedly connected to the inner circular surface of the lifting ring. A disc-shaped secondary tower top plate is fixedly provided on the top of the support column. Several secondary tower support rods are fixedly provided on the lower end face of the secondary tower top plate. The secondary tower support rods are arranged in a ring. The outer end face of the secondary tower support rods is provided with a secondary tower device. The secondary tower device, the secondary tower top plate, and the secondary tower support rods form a secondary tower transmission structure. A signal transmitter is fixedly provided on the top of the secondary tower top plate.

[0008] Preferably, a base support plate is fixedly provided on the outer end face of the support column and below the signal base, and a support base plate that runs vertically through the base support plate is provided inside the base support plate.

[0009] Preferably, a plurality of lifting support cylinders are fixedly provided on the lower end face of the lifting ring, the lifting support cylinders are arranged in a ring, and a lifting slide rod that can move up and down is provided below the lifting support cylinder.

[0010] Preferably, the lower end of the lifting slide bar is connected to a lifting lock block, and the upper end face of the flipping connecting rod is hinged to a hinge rod, the top end of which is fixedly connected to the other end of the lifting lock block.

[0011] Preferably, the lifting support cylinder is provided with a downward-opening lifting groove, the lifting slide rod is slidably disposed in the lifting groove, and a lifting threaded shaft is fixedly provided on the upper wall of the lifting groove, the lifting threaded shaft being threadedly connected to the lifting slide rod.

[0012] Preferably, a threaded shaft is vertically rotatably provided inside the lifting cavity, the threaded shaft is threadedly connected to the lifting connecting rod, a lifting motor is fixedly provided inside the lower wall of the lifting cavity, and the lower end of the threaded shaft is poweredly connected to the lifting motor.

[0013] Preferably, the flipping link has two flip-able arc-shaped support plates at both ends. The arc-shaped support plates are arc-shaped, and the two end faces of the arc-shaped support plates are rotatably connected to the two outer end faces of the flipping link, respectively.

[0014] Preferably, the outer end face of the fixed disc is provided with a plurality of power blocks, the power blocks are arranged in a ring, each power block is provided with a flipping cavity with an opening facing outward, a flipping shaft is flipped in the flipping cavity, and the flipping shaft is fixedly connected to the arc-shaped support plates on both sides.

[0015] Preferably, magnetic buckles are fixedly provided on both sides of the upper surface of the arc-shaped support plate, and a plurality of supporting rods are fixedly provided on the outer end face of the flipping connecting rod. The supporting rods are arranged in a matrix, and the other end face of the supporting rods is fixedly connected to the arc-shaped support plates on both sides respectively.

[0016] Preferably, the supporting connecting rod and the arc-shaped support plates on both sides are separated into several protective cavities, and a protective net is provided in each protective cavity. Beneficial effects

[0017] This invention provides a simulated six-lobed communication landscape tower. It has the following beneficial effects:

[0018] This invention uses a flipping shaft to rotate the two arc-shaped support plates closer together. After the two arc-shaped support plates move and flip closer together, the magnetic buckles on both sides move closer together and fit together. Then, the magnetic suction plate will press the two arc-shaped support plates together to form an arc-shaped escalator.

[0019] This invention simulates the shape of a six-lobed structure by using the curvature between the flipping connecting rods on each side and the arc-shaped support plate, thereby protecting the tower from falling debris while ensuring the aesthetically pleasing landscape tower is in normal use. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the external structure of the present invention;

[0021] Figure 2 This is a front view of the external structure of the present invention;

[0022] Figure 3 This is a front view of the external structure of the present invention;

[0023] Figure 4 This is a bottom view of the external structure of the present invention;

[0024] Figure 5 For the present invention Figure 3 A cross-sectional view along the AA direction;

[0025] Figure 6 This is a schematic diagram of the working state of the arc-shaped support plate component of the present invention;

[0026] Figure 7 For the present invention Figure 2 Enlarged structural diagram of the middle lifting support cylinder component.

[0027] In the diagram: 101, Support column; 102, Base support plate; 103, Support chassis; 104, Signal compartment; 105, Tilting link; 106, Support link; 107, Arc-shaped support plate; 108, Lifting support cylinder; 109, Sub-tower support rod; 111, Sub-tower top plate; 112, Signal transmitter; 113, Sub-tower unit; 114, Lifting link; 115, Lifting ring; 117, Magnetic buckle; 118, Tilting shaft; 119, Protective cavity; 120, Tilting cavity; 121, Lifting threaded shaft; 122, Lifting slide bar; 123, Lifting lock block; 124, Lifting motor; 125, Lifting cavity; 126, Lifting groove; 127, Hinge rod; 128, Fixed disc; 129, Threaded shaft; 130, Power block; 1001, Sub-tower transmission structure. Detailed Implementation

[0028] This invention provides a simulated six-leaf shaped communication landscape tower, such as... Figure 1-7As shown, the device includes a support column 101, flipping links 105, and a lifting ring 115. The support column 101 is vertically erected. A signal chamber 104 is fixedly installed below the outer end face of the support column 101. A circular fixed disk 128 is fixedly installed on the outer end face of the support column 101 and above the signal chamber 104. Several flipping links 105 are located on the outer end face of the fixed disk 128, arranged in a circular pattern. One end of each flipping link 105 is hinged to the outer end face of the fixed disk 128. Two outward-facing lifting cavities 125 are located on the outer end face of the support column 101 and above the signal chamber 104. The two lifting cavities 125 are symmetrically positioned and contain... There is a lifting link 114 that can move up and down. A lifting ring 115 is located above the flipping link 105 on each side. The lifting ring 115 is circular. One end of the lifting link 114 on both sides extends outward and is fixedly connected to the inner circular surface of the lifting ring 115. A disc-shaped secondary tower top plate 111 is fixedly provided on the top of the support column 101. Several secondary tower support rods 109 are fixedly provided on the lower end of the secondary tower top plate 111. The secondary tower support rods 109 are arranged in a ring. A secondary tower device 113 is provided on the outer end of the secondary tower support rods 109. The secondary tower device 113, the secondary tower top plate 111 and the secondary tower support rods 109 form a secondary tower transmission structure 1001. A signal transmitter 112 is fixedly provided on the top of the secondary tower top plate 111.

[0029] Furthermore, a base support plate 102 is fixedly provided on the outer end face of the support column 101 and below the signal base compartment 104, and a support base plate 103 with vertical and horizontal connection is provided inside the base support plate 102.

[0030] like Figure 2 As shown, a number of lifting cylinders 108 are fixedly provided on the lower end face of the lifting ring 115. The lifting cylinders 108 are arranged in a ring. A lifting slide rod 122 that can move up and down is provided below the lifting cylinders 108.

[0031] like Figure 7 As shown, the lower end of the lifting slide bar 122 is connected to the lifting lock block 123, and the upper end of the flipping connecting rod 105 is hinged to the hinge rod 127. The top end of the hinge rod 127 is fixedly connected to the other end of the lifting lock block 123.

[0032] like Figure 5 As shown, the lifting support cylinder 108 is provided with a downward-opening lifting groove 126. The lifting slide rod 122 is slidably disposed in the lifting groove 126. The upper wall of the lifting groove 126 is fixedly provided with a lifting threaded shaft 121, which is threadedly connected to the lifting slide rod 122.

[0033] It should be further explained that a lifting assembly is provided inside the upper part of the lifting support cylinder 108. The lifting assembly can control the rotation of the lifting threaded shaft 121, and drive the lifting slide rod 122 to move up and down through the rotation of the lifting threaded shaft 121.

[0034] Furthermore, a threaded shaft 129 is vertically rotatable inside the lifting cavity 125. The threaded shaft 129 is threadedly connected to the lifting connecting rod 114. A lifting motor 124 is fixedly installed inside the lower wall of the lifting cavity 125. The lower end of the threaded shaft 129 is poweredly connected to the lifting motor 124.

[0035] It is worth noting that when the lifting motor 124 is started, it can drive the threaded shaft 129 to rotate, and is threadedly connected to the threaded shaft 129 through the lifting connecting rod 114, thereby driving the lifting connecting rod 114 to move up and down.

[0036] like Figure 4 As shown, the flipping link 105 has two flip-able arc-shaped support plates 107 at both ends. The arc-shaped support plates 107 are arc-shaped, and the two end faces of the arc-shaped support plates 107 are rotatably connected to the two outer end faces of the flipping link 105 respectively.

[0037] Furthermore, the outer end face of the fixed disc 128 is provided with a number of power blocks 130, which are arranged in a ring. Each power block 130 has an outward-facing flipping cavity 120. A flipping shaft 118 is flipped inside the flipping cavity 120 and is fixedly connected to the arc-shaped support plates 107 on both sides.

[0038] It should be noted that the flipping cavity 120 is equipped with a flipping component, which can drive the flipping shaft 118 to flip and rotate.

[0039] Furthermore, magnetic buckles 117 are fixedly provided on both sides of the upper end face of the arc-shaped support plate 107, and several supporting rods 106 are fixedly provided on the outer end face of the flipping connecting rod 105. The supporting rods 106 are arranged in a matrix, and the other end face of the supporting rods 106 is fixedly connected to the arc-shaped support plates 107 on both sides respectively.

[0040] It should be noted that the magnetic buckle 117 is a magnetic suction plate in the prior art, and the power block 130 is equipped with a flipping component, which can drive the arc-shaped support plate 107 to flip.

[0041] Furthermore, the support rod 106 and the arc-shaped support plates 107 on both sides are divided into several protective cavities 119, and a protective net is provided in the protective cavity 119.

[0042] It is worth noting that the protective cavities 119 on both sides of the flipping link 105 are equipped with staggered protective nets.

[0043] When working, first fix the support column 101 vertically in the working position, then set the top secondary tower plate 111 at the top, and set the signal transmitter 112 vertically to facilitate subsequent signal transmission through the signal transmitter 112. At this time, the secondary tower transmission structure 1001 at the bottom plays a stable auxiliary signal transmission role.

[0044] When the communication tower is in normal operation, the protective nets with different staggered settings are installed in the protective cavity 119. At this time, the arc-shaped support plates 107 are flipped and extended to both sides and flattened, and the protective nets on both sides are used to protect the space under the support column 101 from falling objects.

[0045] During this process, the lifting assembly can control the rotation of the lifting threaded shaft 121, and through the rotation of the lifting threaded shaft 121, drive the lifting slide rod 122 to move up and down. At this time, the lifting slide rod 122 moves upward, thereby driving the lifting locking block 123 to move upward, thereby driving the hinge rod 127 to hinge with the flipping connecting rod 105, thereby driving the flipping connecting rod 105 to flip upward, thereby driving the arc-shaped support plates 107 on each side to flip upward, and through the arc between the flipping connecting rod 105 on each side and the arc-shaped support plate 107, the shape of a six-lobed structure is simulated, thereby protecting against falling foreign objects under the premise of normal use of the aesthetic landscape tower.

[0046] When maintenance personnel need to inspect the top of the support column 101, they can climb up the support column 101 and use the base plate 102 for support, which also facilitates the inspection of the signal compartment 104. After the signal compartment 104 is inspected, the flipping assembly can drive the flipping shaft 118 to rotate. The flipping shaft 118 then drives the two arc-shaped support plates 107 on both sides to rotate closer together. After the two arc-shaped support plates 107 move closer together and flip, the magnetic buckles 117 on both sides move closer together and fit together. Then, the magnetic suction plate will press the two arc-shaped support plates 107 together to form an arc-shaped ladder.

[0047] Meanwhile, when the lifting motors 124 on both sides are started, they can drive the threaded shaft 129 to rotate, and connect to the threaded shaft 129 through the lifting connecting rod 114, thereby driving the lifting connecting rod 114 to move up and down. At this time, as the lifting connecting rod 114 moves upward, it drives the lifting ring 115 to move up and down. At the same time, the lifting component in the lifting support cylinder 108 is started to control the rotation of the lifting threaded shaft 121, and the lifting sliding rod 122 moves up and down through the rotation of the lifting threaded shaft 121. At this time, as the lifting sliding rod 122 moves up and down, it drives the flipping connecting rods 105 on each side to flip at different angles. At this time, the flipping connecting rods 105 on each side after being tightened have different height deviations, and form a threaded support ladder through the flipping connecting rods 105 on each side. At this time, the support ladder further facilitates the inspection personnel to climb up through the threaded support, and further facilitates the inspection personnel to carry out maintenance work on the secondary tower transmission structure 1001 and signal transmitter 112 at the top of the support column 101, thereby improving the maintenance efficiency of the staff.

[0048] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A six-leaf-shaped communication landscape tower, comprising a supporting column (101), a flipping connecting rod (105), and a lifting ring (115), characterized in that: A signal chamber (104) is fixedly installed below the outer end face of the support column (101). A fixed disk (128) is fixedly installed on the outer end face of the support column (101) and above the signal chamber (104). Several flipping links (105) are located on the outer end face of the fixed disk (128). The flipping links (105) are arranged in a ring. One end of the flipping link (105) is hinged to the outer end face of the fixed disk (128). Two outward-facing lifting cavities (125) are provided on the outer end face of the support column (101) and above the signal chamber (104). The lifting cavities (125) on both sides are symmetrically positioned. Lifting links (114) are provided in the lifting cavities (125) on both sides. A circular ring (115) is located above the flipping connecting rod (105) on each side. One end of the lifting connecting rod (114) on both sides extends outward and is fixedly connected to the inner circular surface of the lifting circular ring (115). A secondary tower top plate (111) is fixedly provided on the top of the supporting column (101). Several secondary tower support rods (109) are fixedly provided on the lower end face of the secondary tower top plate (111). The secondary tower support rods (109) are arranged in a ring. A secondary tower device (113) is provided on the outer end face of the secondary tower support rod (109). The secondary tower device (113), the secondary tower top plate (111), and the secondary tower support rods (109) form a secondary tower transmission structure (1001). A signal transmitter (112) is fixedly provided on the top of the secondary tower top plate (111). The lower end face of the lifting ring (115) is fixedly provided with a number of lifting support cylinders (108), the lifting support cylinders (108) are arranged in a ring, and a lifting slide rod (122) is provided below the lifting support cylinders (108). The lower end of the lifting slide bar (122) is connected to a lifting lock block (123), and the upper end of the flipping connecting rod (105) is hinged to a hinge rod (127). The top end of the hinge rod (127) is fixedly connected to the other end of the lifting lock block (123). The lifting support cylinder (108) is provided with a downward-opening lifting groove (126), the lifting slide rod (122) is slidably disposed in the lifting groove (126), and a lifting threaded shaft (121) is fixedly provided on the upper wall of the lifting groove (126), the lifting threaded shaft (121) is threadedly connected to the lifting slide rod (122). The flipping link (105) has two arc-shaped support plates (107) at both ends, and the two end faces of the arc-shaped support plates (107) are rotatably connected to the two outer end faces of the flipping link (105). The outer end face of the fixed disc (128) is provided with a plurality of power blocks (130), the power blocks (130) are arranged in a ring, the power blocks (130) are provided with an outward-facing flipping cavity (120), the flipping cavity (120) is provided with a flipping shaft (118), and the flipping shaft (118) is fixedly connected to the arc-shaped support plates (107) on both sides; The upper end face of the arc-shaped support plate (107) is fixed with magnetic buckles (117) on both sides. The outer end face of the flipping link (105) is fixed with several support links (106). The support links (106) are arranged in a matrix. The other end face of the support links (106) is fixedly connected to the arc-shaped support plate (107) on both sides.

2. The simulated six-leaf-shaped communication landscape tower according to claim 1, characterized in that: The outer end face of the support column (101) and below the signal base (104) is fixedly provided with a base support plate (102), and the base support plate (102) is provided with a support base plate (103) that runs vertically through it.

3. The simulated six-leaf shaped communication landscape tower according to claim 1, characterized in that: The lifting cavity (125) is vertically rotatably provided with a threaded shaft (129), which is threadedly connected to the lifting connecting rod (114). The lower wall of the lifting cavity (125) is fixedly provided with a lifting motor (124), and the lower end of the threaded shaft (129) is poweredly connected to the lifting motor (124).

4. The simulated six-leaf shaped communication landscape tower according to claim 1, characterized in that: The supporting connecting rod (106) and the arc-shaped support plates (107) on both sides are separated into several protective cavities (119), and a protective net is provided in the protective cavity (119).

Citation Information

Patent Citations

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    CN115898123A

  • View communication tower

    CN207436619U