Communication tower that can prevent children from climbing
By designing a communication tower with columns, frame mobilization components and climbing components, the problems of communication tower antenna icing and children's climbing are solved, the formation and deicing functions of safe passages are realized, and the safety and practicality of communication towers are improved.
Patent Information
- Application Number
- CN202211265021.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-14
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2042-10-14
AI Technical Summary
During use, existing communication towers have the risk of collapse caused by icy antennas, as well as the hidden dangers of falling and electric shock caused by children climbing, which affects the safety and practicality of communication towers.
A communication tower including a cylinder, an outer frame mobilization assembly and a climbing assembly was designed. By setting up a climbing split assembly and an outer frame mobilization assembly to form a safe passage, and using a pneumatic telescopic handle and horn to make a loud noise to drive out the climber, while deicing the ice under low temperature conditions through intelligent adjustment components.
Effectively prevent children from climbing, improve the safety and practicality of communication towers, ensure deicing under low temperature conditions, prevent antenna collapse and climbers from slipping.
Smart Images

Figure CN115822354B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of communication tower equipment, and particularly to a communication tower that can prevent children from climbing. Background Art
[0002] There are still some deficiencies in the existing communication iron towers during actual use. For example, in the problem of antenna icing, the ice layer will increase the load of the antenna, resulting in the collapse of the antenna and affecting the use of the communication iron tower. Moreover, since the position of the antenna is relatively high, once the ice layer on the antenna falls from a high place, it may pose a threat to the life and property safety of the surrounding people, and the safety is not high. In addition, many naughty children like to climb the iron tower, but there are potential hazards of falling and electric shock during the climbing process, which is very dangerous. These all reduce the practicability and safety of the communication iron tower.
[0003] For example, the Chinese patent discloses "A safe communication iron tower with ice removal and anti-climbing functions" (Patent No.: CN201810322054.8). This patent includes a pillar, a platform and an antenna, and also includes an ice removal mechanism and a prevention mechanism. The ice removal mechanism includes a rotation component, a lifting component and an ice removal component, and the prevention mechanism includes a reciprocating component and a rotating component. In this safe communication iron tower with ice removal and anti-climbing functions, through the ice removal mechanism, the ice layer around the antenna can be evenly and comprehensively removed, preventing the ice layer from increasing the load of the antenna and resulting in the collapse of the antenna and affecting the use of the communication iron tower, and avoiding the ice layer falling from a high place and posing a threat to the life and property safety of the surrounding people. Through the prevention mechanism, the ladder can be made to vibrate and rise a certain height and then stop, and the cross bar of the ladder can be made to flip a certain angle, preventing children from directly contacting the ladder, thereby preventing children from climbing and achieving the effect of safety protection, improving the practicability and safety of the communication iron tower.
[0004] However, the above patent only constitutes preventive measures through electronic component dogs, and its ice removal only removes ice from the antenna, and there is no treatment means for the ice on the surface of the climbing ladder. Summary of the Invention
[0005] (1) Technical Problems to be Solved
[0006] In view of the deficiencies of the prior art, the present invention provides a communication tower that can prevent children from climbing.
[0007] (2) Technical Solutions
[0008] To achieve the above object, the present invention is realized through the following technical solutions: A communication tower that can prevent children from climbing, including a column, an outer frame adjustment component, and a climbing component. The climbing component and the outer frame adjustment component are both arranged on the column, the outer frame adjustment component is located outside the climbing component, and the climbing component includes a plurality of climbing sub-components. The plurality of climbing sub-components are pivotally connected to each other, and the climbing sub-component is arranged on the front of the column. The climbing sub-component is detachably clamped to the outer frame adjustment component. The climbing sub-component includes a housing, a fixed seat, two grip rods, and an open-toothed ring. The fixed seat is arranged on the front of the column, and the two open-toothed rings are pivotally connected coaxially with each other. The open-toothed ring located at a lower position is pivotally connected coaxially with the top of the housing, and the two grip rods are symmetric to each other. The two grip rods are respectively arranged on the two open-toothed rings. The fixed seat, the housing, and the column are provided with strip-shaped grooves, and the opening of the open-toothed ring corresponds to the strip-shaped groove.
[0009] Preferably, the outer frame adjustment component includes a plurality of clamping and fixing components, a linkage rod, and a pneumatic telescopic handle. A slotted opening is provided on the column, and the plurality of clamping and fixing components are hinged in the slotted opening at equal intervals along the length direction of the column. One end of the linkage rod located inside the column is hinged to the plurality of clamping and fixing components. One end of the pneumatic telescopic handle is hinged to the linkage rod, and the other end passes through the slotted opening and extends outside the column.
[0010] The outer frame adjustment component further includes a movable handle, a connecting rod, a telescopic fixing frame, and a pressing block. The movable handle is movably sleeved on the bottom of the climbing component, the connecting rod passes through the strip-shaped groove and extends into the column. The pressing block is connected to the connecting rod. The telescopic fixing frame is arranged on the front of the column.
[0011] Preferably, the clamping and fixing component includes an extension rod and a clamping rod. The middle of the clamping rod is pivotally connected in the slotted opening. The extension rod is connected to the end of the clamping rod located outside the column, and the other end of the clamping rod is hinged to the linkage rod. It also includes a fixed support and a plurality of cross bars. The cross bars are arranged between the two extension rods. The fixed support is arranged on the bottom inner wall of the slotted opening, and the fixed support is detachably clamped to the pneumatic telescopic handle.
[0012] Preferably, it further includes a linkage component. The linkage component is arranged on the bottom inner wall of the column and corresponds to the connecting rod.
[0013] Preferably, the linkage component includes two split air bags, two electromagnets, and a split support. The two split air bags are arranged inside the column, and the split support is arranged on the top of the split air bag. The two electromagnets are arranged on the pressing block, and the electromagnets are attracted to the split support.
[0014] Preferably, the column body is provided with an opening, and the linkage assembly further includes a main airbag, a movable platform, a horn and a telescopic rod. The telescopic rod is vertically arranged in the column body, and the movable platform is arranged at the movable end of the telescopic rod. The main airbag is arranged on the movable platform and corresponds to the pressing block. One end of the horn passes through the movable platform and communicates with the main airbag, and the other end passes through the opening and extends to the outside of the column body.
[0015] Preferably, it further includes an intelligent adjustment component, which is arranged in the column body. The intelligent adjustment component passes through the strip-shaped groove and corresponds to the opening tooth ring. The intelligent adjustment component includes a climbing robot, a driving gear, a belt, a second holding rod, a gear and two linkage wheels. The climbing robot is arranged on the inner wall of the column body. One end of the second holding rod is arranged on the climbing robot, and the other end passes through the strip-shaped groove and extends into the belt. The two linkage wheels are respectively arranged at both ends of the second holding rod, and the belt is sleeved on the two linkage wheels. The driving gear is arranged on the climbing robot, and the output end of the driving gear is coaxially connected to one of the linkage wheels. The gear is coaxially connected to the other linkage wheel. The gear is located in the belt and meshes with the inner tooth pattern of the opening tooth ring. The telescopic fixing frame and the pneumatic telescopic handle are both communicated with the split airbag.
[0016] (III) Beneficial effects
[0017] The present invention provides a communication tower that can prevent children from climbing. It has the following beneficial effects:
[0018] 1. For the communication tower that can prevent children from climbing, through the mutual cooperation of the arranged column body, outer frame adjustment component and climbing component. When children or other people climb, since the handle closest to the ground is movable, the main airbag is compressed during the process of people jumping and pulling down, and the horn makes a huge noise to expel people. At the same time, the airflow brought by the noise blows the ground at the takeoff position of people, completing the cleaning of sundries such as ice and snow mixtures or sand and gravel on the ground, and preventing people from slipping after jumping and falling. Description of the drawings
[0019] Figure 1 It is the first three-dimensional view of the present invention;
[0020] Figure 2 It is the second three-dimensional view of the present invention;
[0021] Figure 3 It is the side sectional view of the present invention;
[0022] Figure 4 It is the first partial component three-dimensional view of the present invention;
[0023] Figure 5 It is the first partial component side view of the present invention;
[0024] Figure 6 This is the perspective view of the second partial component of the present invention;
[0025] Figure 7 This is the side view of the second partial component of the present invention;
[0026] Figure 8 This is the perspective view of the third partial component of the present invention;
[0027] Figure 9 This is the perspective view of the fourth partial component of the present invention;
[0028] Figure 10 This is the perspective view of the fifth partial component of the present invention.
[0029] In the figure: 1 column, 2 outer frame adjustment component, 3 grip bar, 4 slot, 5 opening, 6 horn, 7 movable handle, 8 climbing component, 9 second grip bar, 10 housing, 11 cross bar, 12 extension rod, 13 clamping rod, 14 clamping and fixing component, 15 linkage rod, 16 telescopic rod, 17 intelligent adjustment component, 18 movable platform, 19 main airbag, 20 connecting rod, 21 telescopic fixing frame, 22 climbing split component, 23 linkage wheel, 24 open tooth ring, 25 belt, 26 fixed seat, 27 pneumatic telescopic handle, 28 fixed support, 29 split airbag, 30 split bracket, 31 linkage component, 32 electromagnet, 33 pressing block, 34 gear, 35 climbing robot, 36 driving gear. Detailed implementation manners
[0030] The embodiment of the present invention provides a communication tower that can prevent children from climbing, as Figure 1-10 shown, including a column 1, an outer frame adjustment component 2, and a climbing component 8. The climbing component 8 and the outer frame adjustment component 2 are both arranged on the column 1, the outer frame adjustment component 2 is located outside the climbing component 8, and the climbing component 8 includes a plurality of climbing split components 22. The plurality of climbing split components 22 are pivotally connected to each other, and the climbing split components 22 are arranged on the front of the column 1. The climbing split components 22 are detachably clamped to the outer frame adjustment component 2. The climbing split components 22 include a housing 10, a fixed seat 26, two grip bars 3, and an open tooth ring 24. The fixed seat 26 is arranged on the front of the column 1, and the two open tooth rings 24 are pivotally connected coaxially with each other. The open tooth ring 24 at the lower position is pivotally connected coaxially with the top of the housing 10, and the two grip bars 3 are symmetrical to each other. The two grip bars 3 are respectively arranged on the two open tooth rings 24. The fixed seat 26, the housing 10, and the column 1 are provided with strip-shaped grooves, and the opening of the open tooth ring 24 corresponds to the strip-shaped groove.
[0031] The outer frame adjustment component 2 includes a plurality of clamping and fixing components 14, a linkage rod 15, and a pneumatic telescopic handle 27. A slot 4 is formed on the column 1, and a plurality of clamping and fixing components 14 are hinged in the slot 4 at equal intervals along the length direction of the column 1. One end of the linkage rod 15 located inside the column 1 is hinged to the plurality of clamping and fixing components 14. One end of the pneumatic telescopic handle 27 is hinged to the linkage rod 15, and the other end passes through the slot 4 and extends outside the column 1.
[0032] Through the mutual cooperation of the plurality of clamping and fixing components 14, the linkage rod 15, and the pneumatic telescopic handle 27 provided, it can not only fix the position of the movable grip of the present invention, but also protect the safety of personnel climbing, form a safety passage similar to a loop with the handle, and restrict the position of the personnel's body. At the same time, the two grips can be combined and then knocked and collided to complete the de-icing operation on the surface of the grip.
[0033] The outer frame adjustment component 2 further includes a movable handle 7, a connecting rod 20, a telescopic fixing frame 21, and a pressing block 33. The movable handle 7 is movably sleeved on the bottom of the climbing component 8, and the connecting rod 20 passes through the strip-shaped groove and extends into the column 1. The pressing block 33 is connected to the connecting rod 20. The telescopic fixing frame 21 is arranged on the front surface of the column 1.
[0034] The clamping and fixing component 14 includes an extension rod 12 and a clamping rod 13. The middle of the clamping rod 13 is pivotally connected in the slot 4. The extension rod 12 is connected to one end of the clamping rod 13 located outside the column 1, and the other end of the clamping rod 13 is hinged to the linkage rod 15. It also includes a plurality of cross bars 11 and a fixed support 28. The cross bars 11 are arranged between the two extension rods 12. The fixed support 28 is arranged on the bottom inner wall of the slot 4, and the fixed support 28 is detachably clamped to the pneumatic telescopic handle 27.
[0035] It further includes a linkage component 31. The linkage component 31 is arranged on the bottom inner wall of the column 1 and corresponds to the connecting rod 20.
[0036] The linkage component 31 includes two split air bags 29, two electromagnets 32, and a split support 30. The two split air bags 29 are arranged inside the column 1, and the split support 30 is arranged on the top of the split air bags 29. The two electromagnets 32 are arranged on the pressing block 33, and the electromagnets 32 are attracted to the split support 30.
[0037] An opening 5 is formed on the column 1. The linkage component 31 further includes a main air bag 19, a movable platform 18, a horn 6, and a telescopic rod 16. The telescopic rod 16 is vertically arranged inside the column 1, and the movable platform 18 is arranged at the movable end of the telescopic rod 16. The main air bag 19 is arranged on the movable platform 18 and corresponds to the pressing block 33. One end of the horn 6 passes through the movable platform 18 and communicates with the main air bag 19, and the other end passes through the opening 5 and extends outside the column 1.
[0038] It further includes an intelligent adjustment component 17, which is arranged inside the column 1. The intelligent adjustment component 17 passes through the strip-shaped groove and corresponds to the open-tooth ring 24. The intelligent adjustment component 17 includes a climbing robot 35, a driving gear 36, a belt 25, a second grip rod 9, a gear 34 and two linkage wheels 23. The climbing robot 35 is arranged on the inner wall of the column 1. One end of the second grip rod 9 is arranged on the climbing robot 35, and the other end passes through the strip-shaped groove and extends into the belt 25. The two linkage wheels 23 are respectively arranged at both ends of the second grip rod 9, and the belt 25 is sleeved on the two linkage wheels 23. The driving gear 36 is arranged on the climbing robot 35, and the output end of the driving gear 36 is coaxially connected to one of the linkage wheels 23. The gear 34 is coaxially centered with the other linkage wheel 23. The gear 34 is located inside the belt 25, and the gear 34 meshes with the inner tooth pattern of the open-tooth ring 24. The telescopic fixing frame 21 and the pneumatic telescopic handle 27 are both communicated with the split airbag 29.
[0039] Working principle: When in use, when it is necessary to prevent children from climbing, since the height difference between children and adults is significant, the climbing ladder is set at a certain height from the ground, so that children cannot easily climb up. However, many children will also choose to jump to grab the handle. At this time, the movable handle 7 is lowered by the weight of the child, causing the pressing block 33 to compress the main airbag 19. At the same time, the electromagnet 32 is in a power-off state, causing the split support 30 to separate from it, allowing the air flow to pass through the horn 6, thereby making a huge noise and attracting the attention of surrounding adults or administrators. It also plays a role in intimidating and expelling children, having a certain early warning function.
[0040] When the staff needs to climb, control the telescopic rod 16 to retract, so that the main airbag 19 and the horn 6 move downward to separate from the pressing block 33. At the same time, the electromagnet 32 on the pressing block 33 is energized and attracted to the split support 30 to complete the fixation of the split support 30. The staff pulls the movable handle 7. At this time, the split airbag 29 is squeezed to make the telescopic fixing frame 21 and the pneumatic telescopic handle 27 that were originally retracted inside the column 1 extend. Then the staff fixes the movable handle 7 on the telescopic fixing frame 21, and at the same time pulls down the pneumatic telescopic handle 27. Using the parallelogram principle, the originally obliquely upward clamping and fixing component 14 drops and is parallel to the climbing split component 22. At the same time, the clamping rod 13 is clamped and fixed to the grip rod 3, and the staff can complete the climbing operation. At the same time, the formed outer frame can also effectively protect the safety of the staff.
[0041] When entering rainy and snowy weather with low temperature, the intelligent adjustment component 17 moves upward from the lowest point on the inner wall of the column 1 at this time. The gear 34 moves within the belt 25. When it moves into the open tooth ring 24, rotating the open tooth ring 24 forces the grip rod 3 to rotate, bringing the two grip rods 3 closer to each other and joining them together. In this way, when ice or ice cones form on the grip rod 3, the two grip rods 3 are combined into one at this time. Therefore, the falling coverage area of the ice cones is smaller than that of the ice cones on the handles at both ends of the traditional ladder, so the danger is lower. At the same time, the person flips the pneumatic telescopic handle 27, and during the falling process of the cross bar 11, it will collide with the two grip rods 3 that were originally combined together to complete the de-icing operation on the ice surface of the handle.
[0042] In summary, for the communication tower that can prevent children from climbing, through the mutual cooperation of the column 1, the outer frame adjustment component 2, and the climbing component 8 provided. When children or other people climb, since the handle closest to the ground is movable, the main airbag 19 is compressed during the process of the person jumping and pulling down, and the horn 6 emits a huge sound to expel the person. At the same time, the airflow brought by the sound blows the ground at the person's takeoff position to complete the cleaning of ice and snow mixtures or sundries such as sand and gravel on the ground, preventing the person from slipping after jumping and falling.
Claims
1. A communication tower that can prevent children from climbing, characterized in that: It includes a column body (1), an outer frame adjustment component (2) and a climbing component (8). The climbing component (8) and the outer frame adjustment component (2) are both arranged on the column body (1). The outer frame adjustment component (2) is located outside the climbing component (8). The climbing component (8) includes a plurality of climbing split components (22). The plurality of climbing split components (22) are pivotally connected to each other. The climbing split component (22) is arranged on the front surface of the column body (1). The climbing split component (22) is detachably clamped with the outer frame adjustment component (2). The climbing split component (22) includes a housing (10), a fixed seat (26), two grip rods (3) and an open-tooth ring (24). The fixed seat (26) is arranged on the front surface of the column body (1). The two open-tooth rings (24) are pivotally connected coaxially with each other. The open-tooth ring (24) at the lower position is pivotally connected coaxially with the top of the housing (10). The two grip rods (3) are symmetrical to each other. The two grip rods (3) are respectively arranged on the two open-tooth rings (24). The fixed seat (26), the housing (10) and the column body (1) are provided with strip-shaped grooves. The opening of the open-tooth ring (24) corresponds to the strip-shaped groove; The outer frame adjustment component (2) includes a plurality of clamping and fixing components (14), a linkage rod (15) and a pneumatic telescopic handle (27). A slot (4) is opened on the column body (1). The plurality of clamping and fixing components (14) are hinged in the slot (4) at equal intervals along the length direction of the column body (1). The linkage rod (15) is hinged to one end of the plurality of clamping and fixing components (14) located inside the column body (1). One end of the pneumatic telescopic handle (27) is hinged to the linkage rod (15), and the other end passes through the slot (4) and extends outside the column body (1); The outer frame adjustment component (2) further includes a movable handle (7), a connecting rod (20), a telescopic fixing frame (21) and a pressing block (33). The movable handle (7) is movably sleeved on the bottom of the climbing component (8). The connecting rod (20) passes through the strip-shaped groove and extends into the column body (1). The pressing block (33) is connected to the connecting rod (20). The telescopic fixing frame (21) is arranged on the front surface of the column body (1); The clamping and fixing component (14) includes an extension rod (12) and a clamping rod (13). The middle of the clamping rod (13) is pivotally connected in the slot (4). The extension rod (12) is connected to one end of the clamping rod (13) located outside the column body (1). The other end of the clamping rod (13) is hinged to the linkage rod (15). It also includes a fixed support (28) and a plurality of cross bars (11). The cross bars (11) are arranged between the two extension rods (12). The fixed support (28) is arranged on the bottom inner wall of the slot (4). The fixed support (28) is detachably clamped with the pneumatic telescopic handle (27); It further includes a linkage component (31). The linkage component (31) is arranged on the bottom inner wall of the column body (1). The linkage component (31) corresponds to the connecting rod (20); The linkage component (31) includes two split air bags (29), two electromagnets (32) and a split bracket (30). The two split air bags (29) are arranged inside the column body (1). The split bracket (30) is arranged on the top of the split air bag (29). The two electromagnets (32) are arranged on the pressing block (33). The electromagnet (32) is attracted to the split bracket (30). An opening (5) is formed on the column body (1). The linkage component (31) further includes a main air bag (19), a movable platform (18), a horn (6) and a telescopic rod (16). The telescopic rod (16) is vertically arranged inside the column body (1). The movable platform (18) is arranged at the movable end of the telescopic rod (16). The main air bag (19) is arranged on the movable platform (18). The main air bag (19) corresponds to the pressing block (33). One end of the horn (6) passes through the movable platform (18) and communicates with the main air bag (19), and the other end passes through the opening (5) and extends outside the column body (1).
2. A communication tower that can prevent children from climbing according to claim 1, characterized in that: It further includes an intelligent adjustment component (17). The intelligent adjustment component (17) is arranged inside the column body (1). The intelligent adjustment component (17) passes through the strip-shaped groove and corresponds to the open-tooth ring (24). The intelligent adjustment component (17) includes a climbing robot (35), a driving gear (36), a belt (25), a second grip rod (9), a gear (34) and two linkage wheels (23). The climbing robot (35) is arranged on the inner wall of the column body (1). One end of the second grip rod (9) is arranged on the climbing robot (35), and the other end passes through the strip-shaped groove and extends into the belt (25). The two linkage wheels (23) are respectively arranged at both ends of the second grip rod (9). The belt (25) is sleeved on the two linkage wheels (23). The driving gear (36) is arranged on the climbing robot (35). The output end of the driving gear (36) is coaxially connected to one linkage wheel (23). The gear (34) is coaxially connected to the other linkage wheel (23). The gear (34) is located inside the belt (25). The gear (34) meshes with the inner tooth pattern of the open-tooth ring (24). Both the telescopic fixing frame (21) and the pneumatic telescopic handle (27) communicate with the split air bag (29).
Citation Information
Patent Citations
Safe communication tower with deicing and anti-climbing functions
CN108729724A
Anti-climbing base of electric iron tower
CN106968504A
Anti-climbing communication tower
CN108756422A