Urban beautification communication landscape tower
By installing ladders, slide mechanisms, and control mechanisms on the communication tower, the merging and separation of the ribbons can be achieved, which solves the limitations of ribbon aesthetic design on climbing and maintenance, provides the function of quickly transporting components and has a bird-repelling effect, and improves maintenance efficiency and safety.
Patent Information
- Application Number
- CN202311087111.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-28
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2043-08-28
AI Technical Summary
The decorative ribbon design of existing communication towers restricts personnel climbing and maintenance space, making maintenance inconvenient.
An urban beautification communication landscape tower was designed. By setting up ladders, slide mechanisms, control mechanisms, and ribbon-shaped components, the ribbons can be merged and separated, providing the function of assisting personnel to quickly transport components and can also drive away birds.
This not only beautifies the communication tower but also facilitates the rapid transport of components and the removal of birds, improving maintenance efficiency and safety.
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Figure CN116892310B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of communication signal tower equipment technology, specifically to urban beautification communication landscape towers. Background Technology
[0002] Existing communication towers typically have ribbons installed at the top to cover the communication antennas, preventing them from being directly exposed to the public and improving the overall aesthetics of the tower.
[0003] For example, a Chinese patent discloses a "ribbon-decorated communication tower" (patent number: CN201920124721.1). This patent includes a tube body, a ladder installed on the outer wall of the tube body, and the ladder includes two symmetrically arranged handrails, multiple footboards connected between the two handrails, and a safety mechanism. Two vertical plates are provided between the two handrails. The safety mechanism includes a slider, a safety belt connected to the slider, and several safety units. Slide grooves are provided on the opposite sides of the two vertical plates, and the slider is slidably connected to the two slide grooves. Several safety units are evenly distributed along the length of the slide grooves. Each safety unit includes two baffles, two pull wires, and a release component. One end of each of the two baffles in the same safety unit is hinged to the opposite sides of the two vertical plates. The pull wires are connected between the release component and the corresponding baffles, and the release component controls the length of the pull wires between the two vertical plates. This safety mechanism prevents falls and ensures the safety of workers.
[0004] However, while the spiral ribbon in this patented design enhances aesthetics and conceals the antenna, it also restricts the space for personnel to climb and maintain the equipment. Therefore, it not only offers no assistance to maintenance personnel but also causes inconvenience to their work. Summary of the Invention
[0005] Technical problems to be solved
[0006] To address the shortcomings of existing technologies, this invention provides an urban beautification communication landscape tower.
[0007] Technical solution
[0008] To achieve the above objectives, the present invention provides the following technical solution: an urban beautification communication landscape tower, comprising a tower body, a ladder frame, a component equipment box, a ribbon-shaped component, a slide mechanism, a control mechanism, and multiple crossbars. The ladder frame is mounted on the tower body, and the multiple crossbars are evenly spaced on the ladder frame. The slide mechanism is located at the top of the tower body, and the control mechanism is located at the top of the slide mechanism. The component equipment box is mounted on the control mechanism, and the ribbon-shaped component is linked and connected to both the control mechanism and the slide mechanism.
[0009] Preferably, the ribbon-shaped component includes a first spiral slide, a second spiral slide, a third spiral slide, a fourth spiral slide, multiple fixed seats, and driving sliders. The multiple fixed seats are respectively disposed on the first, second, third, and fourth spiral slides. The multiple driving sliders are slidably engaged with the slide grooves, and the first, second, third, and fourth spiral slides correspond one-to-one with the multiple driving sliders.
[0010] Preferably, the first spiral slide, the second spiral slide, the third spiral slide, and the fourth spiral slide are all connected to a plurality of drive sliders in sequence from bottom to top via connecting rods.
[0011] Preferably, the slide mechanism includes an annular slide seat, a slotted slide block, and a telescopic rod. The annular slide seat is located at the top of the tower body, and the slide groove communicates with the annular slide seat. The slotted slide block is slidably engaged with the annular slide seat, and the slotted slide block corresponds to the slide groove. Multiple drive slide blocks are disposed within the slotted slide block, and the telescopic rod is detachably engaged with the drive slide block located at the lowest point.
[0012] Preferably, the control mechanism includes a housing and a main motor. The main motor is vertically mounted inside the annular slide seat, and the housing is mounted on the output end of the main motor. The housing is connected to the slot seat slider.
[0013] Preferably, the control mechanism further includes a motor, a rotating wheel, a linkage assembly, and a connecting rope. The motor is mounted on the housing, and the rotating wheel is mounted on the housing. The output end of the motor is linked to the bearing of the rotating wheel via the linkage assembly. One end of the connecting rope is mounted on the linkage assembly, and the other end is wound around the linkage assembly and passes sequentially through the fourth spiral slide, the third spiral slide, and the second spiral slide, and is connected to the fixed seat on the first spiral slide.
[0014] Preferably, it further includes a third connector, a second connector, and a first connector. The protrusion lengths of the first connector, the second connector, and the third connector increase sequentially. The first connector is connected to the top end of the first helical slide. The second connector is connected to the top end of the second helical slide, and the third connector is connected to the top end of the third helical slide.
[0015] Preferably, the system further includes a first card holder, a second card holder, and a third card holder. The relative positions of the first card holder, the second card holder, and the third card holder are arranged in a zigzag upward shape. The first card holder is located at the bottom end of the second spiral slide. The second card holder is located at the bottom end of the third spiral slide. The third card holder is located at the bottom end of the fourth spiral slide.
[0016] Preferably, the first connector corresponds to the first card holder, the second connector corresponds to the second card holder, and the third connector corresponds to the third card holder.
[0017] Preferably, it further includes a slot slider and a hook, wherein the slot slider is slidably engaged with the outside of the fourth helical slide. The hook is disposed at the bottom of the slot slider.
[0018] Preferably, the component equipment box corresponds to the position of the ribbon-shaped component. Beneficial effects
[0019] This invention provides an urban beautification communication landscape tower. It has the following beneficial effects:
[0020] This urban beautification communication tower utilizes a combination of a tower body, ladders, component boxes, ribbon-shaped assemblies, a sliding mechanism, a control mechanism, and multiple crossbars. This allows the ribbon-shaped assemblies, originally used to obscure and beautify antennas, to serve two new functions through merging and separating: repelling birds and facilitating the rapid descent of components from a height. This greatly simplifies user operation. Attached Figure Description
[0021] Figure 1 This is a first perspective view of the present invention;
[0022] Figure 2 This is a second perspective view of the present invention;
[0023] Figure 3 This is a third perspective view of the present invention;
[0024] Figure 4 This is a perspective view of a first partial component of the present invention;
[0025] Figure 5 This is a perspective view of the second partial component of the present invention;
[0026] Figure 6 For the present invention Figure 2 Enlarged view of point A in the middle;
[0027] Figure 7 For the present invention Figure 3 Enlarged view of section B in the middle.
[0028] In the diagram: 1. Tower body, 2. Slide groove, 3. Connecting rod, 4. Connecting rope, 5. Slide mechanism, 6. Ribbon-shaped component, 7. Component equipment box, 8. Housing, 9. Control mechanism, 10. Circular slide seat, 11. Crossbar, 12. Ladder frame, 13. First spiral slide, 14. Second spiral slide, 15. Third spiral slide, 16. Fourth spiral slide, 17. Fixed seat, 18. First connector, 19. Second connector, 20. Third connector, 21. Drive slider, 22. First card seat, 23. Second card seat, 24. Third card seat, 25. Main motor, 26. Motor, 27. Rotating wheel, 28. Linkage component, 29. Telescopic rod, 30. Slot seat slider, 31. Card slot slider, 32. Hook. Detailed Implementation
[0029] Embodiments of the present invention provide urban beautification communication landscape towers, such as... Figure 1-7 As shown, the structure includes a tower body 1, a ladder frame 12, a component equipment box 7, a ribbon-shaped assembly 6, a slide mechanism 5, a control mechanism 9, and multiple crossbars 11. The ladder frame 12 is mounted on the tower body 1, and the multiple crossbars 11 are evenly spaced on the ladder frame 12. The slide mechanism 5 is located at the top of the tower body 1, and the control mechanism 9 is located at the top of the slide mechanism 5. The component equipment box 7 is mounted on the control mechanism 9, and the ribbon-shaped assembly 6 is linked to both the control mechanism 9 and the slide mechanism 5.
[0030] The ribbon-shaped component 6 includes a first spiral slide 13, a second spiral slide 14, a third spiral slide 15, a fourth spiral slide 16, multiple fixing seats 17, and driving sliders 21. The multiple fixing seats 17 are respectively disposed on the first spiral slide 13, the second spiral slide 14, the third spiral slide 15, and the fourth spiral slide 16. The multiple driving sliders 21 are slidably engaged with the slide groove 2, and the first spiral slide 13, the second spiral slide 14, the third spiral slide 15, and the fourth spiral slide 16 correspond one-to-one with the multiple driving sliders 21.
[0031] The first spiral slide 13, the second spiral slide 14, the third spiral slide 15, and the fourth spiral slide 16 are all connected to multiple drive sliders 21 in sequence from bottom to top via connecting rods 3.
[0032] The slide mechanism 5 includes an annular slide seat 10, a slotted slide block 30, and a telescopic rod 29. The annular slide seat 10 is located at the top of the tower body 1, and the slide groove 2 communicates with the annular slide seat 10. The slotted slide block 30 is slidably engaged with the annular slide seat 10, and the slotted slide block 30 corresponds to the slide groove 2. Multiple drive slide blocks 21 are disposed within the slotted slide block 30, and the telescopic rod 29 is detachably engaged with the drive slide block 21 located at the lowest point.
[0033] The control mechanism 9 includes a housing 8 and a main motor 25. The main motor 25 is vertically mounted inside the annular slide seat 10, and the housing 8 is mounted on the output end of the main motor 25. The housing 8 is connected to the slot seat slider 30.
[0034] The control mechanism 9 also includes a motor 26, a rotating wheel 27, a linkage assembly 28, and a connecting rope 4. The motor 26 and the rotating wheel 27 are both mounted on the housing 8. The output end of the motor 26 is linked to the bearing of the rotating wheel 27 via the linkage assembly 28. One end of the connecting rope 4 is mounted on the linkage assembly 28, and the other end is wound around the linkage assembly 28 and sequentially passes through the fourth spiral slide 16, the third spiral slide 15, and the second spiral slide 14, connecting to the fixed seat 17 on the first spiral slide 13.
[0035] It also includes a third connector 20, a second connector 19, and a first connector 18. The protrusion lengths of the first connector 18, the second connector 19, and the third connector 20 increase sequentially. The first connector 18 is connected to the top end of the first spiral slide 13. The second connector 19 is connected to the top end of the second spiral slide 14, and the third connector 20 is connected to the top end of the third spiral slide 15.
[0036] It also includes a first card holder 22, a second card holder 23, and a third card holder 24. The relative positions of the first card holder 22, the second card holder 23, and the third card holder 24 are in a zigzag upward shape. The first card holder 22 is located at the bottom end of the second spiral slide 14. The second card holder 23 is located at the bottom end of the third spiral slide 15. The third card holder 24 is located at the bottom end of the fourth spiral slide 16.
[0037] The first connector 18 corresponds to the first card holder 22, the second connector 19 corresponds to the second card holder 23, and the third connector 20 corresponds to the third card holder 24.
[0038] It also includes a slot slider 31 and a hook 32. The slot slider 31 is slidably engaged with the outside of the fourth spiral slide 16. The hook 32 is located at the bottom of the slot slider 31.
[0039] The component equipment box 7 corresponds to the position of the ribbon-shaped component 6.
[0040] Working principle: When in use, personnel can first climb up the ladder 12 to the vicinity of the component equipment box 7 to install and maintain it.
[0041] When personnel need to remove or replace old components, they don't need to carry them on their bodies. The housing 8 rotates, moving the slot slider 30 to a position corresponding to the slide 2, and then the telescopic rod 29 retracts. This forces multiple drive sliders 21 within the slot slider 30 to slide into the slide 2 under gravity. Simultaneously, the drive sliders 21 control the descent speed of the first spiral slide 13, the second spiral slide 14, the third spiral slide 15, and the fourth spiral slide 16. Once the designated position is reached, the drive sliders 21 are fixed within the slide 2, completing the fixation of the first spiral slide 13, the second spiral slide 14, the third spiral slide 15, and the fourth spiral slide 16. At this point, the ribbon-shaped component 6 changes from a ribbon shape to a spiral slide. Personnel can then attach the slot slider 31 to the outside of the ribbon-shaped component 6 to fix the component to be lowered onto the hook 32. The slot slider 31 then automatically descends under gravity, eliminating the need for personnel to carry the component down the tower. This significantly saves personnel's physical strength.
[0042] After the personnel descend the tower, the motor 26 starts working. At this time, the linkage component 28 drives the rotating wheel 27 to rotate, retracting the connecting rope 4. The connecting rope 4 pulls the first spiral slide 13 at the bottom upward. The first spiral slide 13 sequentially squeezes and pushes the second spiral slide 14, the third spiral slide 15 and the fourth spiral slide 16 to merge and move into the slot seat slider 30 and be fixed by the telescopic rod 29.
[0043] When encountering periods of high activity of migratory birds or other birds, the main motor 25 controls the housing 8 to rotate, and the housing 8 drives the slot block slider 30 to rotate, thereby causing the ribbon-shaped component 6 to make circular motion around the component equipment box 7, which serves to drive away the birds.
[0044] In summary, this urban beautification communication landscape tower, through the coordinated arrangement of the tower body 1, ladder frame 12, component equipment box 7, ribbon-shaped component 6, slide mechanism 5, control mechanism 9, and multiple crossbars 11, allows the invention to utilize the ribbon-shaped component 6, originally used to obscure and beautify the antenna, through both merging and separating methods, thereby acquiring two new and different functions: repelling birds and assisting personnel in quickly transporting components down from a height. This greatly facilitates personnel use.
Claims
1. A city beautification communication landscape tower, characterized by: The system includes a tower body (1), a ladder frame (12), a component equipment box (7), a ribbon-shaped component (6), a slide mechanism (5), a control mechanism (9), and multiple crossbars (11). The ladder frame (12) is installed on the tower body (1), and multiple crossbars (11) are installed at equal intervals on the ladder frame (12). The slide mechanism (5) is installed on the top of the tower body (1), the control mechanism (9) is installed on the top of the slide mechanism (5), the component equipment box (7) is installed on the control mechanism (9), and the ribbon-shaped component (6) is linked to the control mechanism (9) and the slide mechanism (5) respectively. The ribbon-shaped component (6) includes a first spiral slide (13), a second spiral slide (14), a third spiral slide (15), a fourth spiral slide (16), multiple fixed seats (17), and a driving slider (21). The multiple fixed seats (17) are respectively set on the first spiral slide (13), the second spiral slide (14), the third spiral slide (15), and the fourth spiral slide (16). The multiple driving sliders (21) are slidably engaged on the slide groove (2). The first spiral slide (13), the second spiral slide (14), the third spiral slide (15), and the fourth spiral slide (16) correspond one-to-one with the multiple driving sliders (21). The first spiral slide (13), the second spiral slide (14), the third spiral slide (15) and the fourth spiral slide (16) are all connected to multiple drive sliders (21) in sequence from bottom to top via connecting rods (3); The slide mechanism (5) includes an annular slide seat (10), a slotted slide block (30), and a telescopic rod (29). The annular slide seat (10) is located at the top of the tower body (1). The slide groove (2) communicates with the annular slide seat (10). The slotted slide block (30) is slidably fitted on the annular slide seat (10). The slotted slide block (30) corresponds to the slide groove (2). Multiple drive slide blocks (21) are located inside the slotted slide block (30). The telescopic rod (29) is detachably snapped into the drive slide block (21) located at the lowest point. The control mechanism (9) includes a housing (8) and a main motor (25). The main motor (25) is vertically mounted in the annular slide seat (10). The housing (8) is mounted on the output end of the main motor (25). The housing (8) is connected to the slot seat slider (30). The control mechanism (9) also includes a motor (26), a rotating wheel (27), a linkage component (28), and a connecting rope (4). The motor (26) is mounted on the housing (8), and the rotating wheel (27) is mounted on the housing (8). The output end of the motor (26) is linked to the bearing of the rotating wheel (27) through the linkage component (28). One end of the connecting rope (4) is mounted on the linkage component (28), and the other end is wound around the linkage component (28) and passes through the fourth spiral slide (16), the third spiral slide (15), and the second spiral slide (14) in sequence, and is connected to the fixed seat (17) on the first spiral slide (13). It also includes a third connector (20), a second connector (19) and a first connector (18), the first connector (18), the second connector (19) and the third connector (20) having progressively increasing protrusion lengths, the first connector (18) being connected to the top end of the first spiral slide (13), the second connector (19) being connected to the top end of the second spiral slide (14), and the third connector (20) being connected to the top end of the third spiral slide (15); It also includes a first card holder (22), a second card holder (23) and a third card holder (24). The relative positions of the first card holder (22), the second card holder (23) and the third card holder (24) are in a zigzag upward shape. The first card holder (22) is located at the bottom end of the second spiral slide (14), the second card holder (23) is located at the bottom end of the third spiral slide (15), and the third card holder (24) is located at the bottom end of the fourth spiral slide (16).
2. The urban beautification communication landscape tower according to claim 1, characterized in that: The first connector (18) corresponds to the first card holder (22), the second connector (19) corresponds to the second card holder (23), and the third connector (20) corresponds to the third card holder (24).
3. The urban beautification communication landscape tower according to claim 2, characterized in that: It also includes a slot slider (31) and a hook (32), wherein the slot slider (31) is slidably engaged with the outside of the fourth spiral slide (16), and the hook (32) is disposed at the bottom of the slot slider (31).
Citation Information
Patent Citations
Ribbon beautifying communication tower
CN209924547U