Dynamic mechanical structure type wind vane landing landscape tower
By designing a dynamic mechanical structure-type weather vane ground-mounted landscape tower, and utilizing a combination of flipping guide rods, head, tail, and extension plates, the weather vane can be dynamically adjusted and illuminated at night. This solves the problem of existing landscape tower weather vanes being difficult to clearly indicate, and improves the accuracy of wind direction sensing and identification.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- 8TELECOM INT HLDG CO LTD
- Filing Date
- 2023-08-11
- Publication Date
- 2026-04-21
AI Technical Summary
The existing weather vanes on the observation towers are not able to clearly indicate the wind direction both day and night, and pedestrians cannot easily observe the wind direction.
The wind vane is a dynamic mechanical structure-type ground-mounted landscape tower. Through the combination design of flipping guide rod, head, tail and extension plate, and the cooperation of threaded connection, electromagnet and illumination plate, the wind vane can be dynamically adjusted and illuminated at night, improving the accuracy of wind direction sensing and identification.
It can intuitively express wind direction both day and night, improving the accuracy and recognition rate of wind direction sensing, making it easier for pedestrians to understand the wind direction.
Smart Images

Figure CN117127852B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of communication landscape tower technology, specifically a dynamic mechanical structure type weather vane ground-mounted landscape tower. Background Technology
[0002] While possessing excellent electrical and communication functions, landscape towers are also more aesthetically pleasing, playing a role in beautifying the city. Furthermore, the shape and structure of some landscape towers can be optimized for functionality based on their intended design.
[0003] For example, a Chinese patent discloses "A Landscape Tower" (patent number: CN201420271715.6). This patent includes a tower body and a base. A hexagonal decorative box is installed at four-thirds of the tower's height. The decorative box tapers outwards, wider at the top and narrower at the bottom. Four lights are installed around the outer edge of the decorative box. A fixed rod extends from inside the decorative box. Two circular signal frames are fixed above the decorative box and the fixed rod; the upper one is the upper signal frame, and the lower one is the lower signal frame. Four signal receivers are welded around the sides of each signal frame. A camera is welded and fixed below the lower signal frame. This utility model has a novel design and an attractive appearance after installation. The two signal frames can be adjusted and rotated 360° by a motor inside the decorative box, allowing the signal receivers and camera to search for signals or adjust the monitoring angle from all 360°, making it an ideal landscape tower.
[0004] However, the aforementioned observation towers are designed to facilitate all-around shooting and adjustment by cameras. Some observation towers that are intended to serve as directional landmarks cannot use rotation adjustment to indicate direction. Furthermore, some wind vane observation towers simply indicate wind direction with a wind vane, which pedestrians cannot easily observe the specific wind direction that the wind vane is meant to represent, and it is also difficult to observe at night. Summary of the Invention
[0005] Technical problems to be solved
[0006] To address the shortcomings of existing technologies, this invention provides a dynamic mechanical structure-type wind vane ground-mounted landscape tower, which solves the problems mentioned in the background section.
[0007] Technical solution
[0008] To achieve the above objectives, the present invention provides the following technical solution: a dynamic mechanical structure wind vane ground-mounted landscape tower, comprising a landscape column, a flipping guide rod, a vane head, a vane tail, and an extension plate. Two annular sub-tower structures are provided on the upper and lower sides of the outer end face of the landscape column, symmetrically positioned. Four outward-facing adjustment cavities are provided on the outer end face of the landscape column, located between the upper and lower annular sub-tower structures, arranged in a ring. An adjustment shaft is rotatably mounted between the two walls of each adjustment cavity. One end of the flipping guide rod is fixedly connected to the outer end face of the adjustment shaft, and the end of the flipping guide rod furthest from the landscape column is... The landscape column has a directional sign. Above the outer end face of the landscape column, there is an outward-facing annular groove. The annular groove is circular. A circular turntable is rotatably installed inside the annular groove. Two telescopic support cylinders are fixedly connected to both sides of the outer end face of the turntable. The telescopic support cylinders on both sides are symmetrically positioned. The sign head and the sign tail are respectively located on the telescopic support cylinders on both sides, away from each other at one end. The sign head and the sign tail are slidably connected to the telescopic support cylinders. The top of the sign head is pointed, and the tail of the sign tail is fishtail shaped. The end face of the sign tail away from the landscape column has an outward-facing extension cavity. The extension plate is located on one side wall of the extension cavity.
[0009] Preferably, a vertical signal transmitter is fixed at the top of the landscape column.
[0010] Preferably, the telescopic support cylinder is provided with an outward-opening movable groove, and the movable groove is provided with a movable telescopic rod, and the telescopic rods on both sides are fixedly connected to the tail of the target and the head of the target, respectively.
[0011] Preferably, an electromagnet is fixedly installed on one side wall of each movable slide, and a connecting spring is fixedly connected between the electromagnet and the telescopic rod.
[0012] Preferably, two extension shafts are rotatably provided between the two walls of the extension cavity, and the positions of the extension shafts on both sides are symmetrical. An extension rotating plate is fixedly connected to the outer end face of the extension shaft, and the extension rotating plate is fixedly connected to the extension plate on one side close to each other.
[0013] Preferably, the directional sign is provided with a light plate, and the flip guide rods are provided with an outward-opening connecting groove on one side of their opposite ends. The connecting groove is provided with a movable connecting guide plate, and the connecting guide plate is fixedly connected to the directional sign.
[0014] Preferably, one side wall of the connecting slide is connected to a telescopic slide, one side wall of the telescopic slide is rotatably provided with a telescopic threaded shaft, a movable telescopic connecting cylinder is provided in the telescopic slide, the telescopic connecting cylinder is threadedly connected to the telescopic threaded shaft, and one end face of the telescopic connecting cylinder extends into the connecting slide and is fixedly connected to the connecting guide plate.
[0015] Preferably, the inner wall of the annular groove is connected to a rotating cavity, and a transmission shaft is rotatably arranged between the upper and lower walls of the rotating cavity. A transmission turntable is fixedly connected to the outer end face of the transmission shaft, and the transmission turntable is fixedly connected to the annular turntable.
[0016] Preferably, the lower wall of the rotating cavity is provided with a chamber, the lower end of the drive shaft extends downward into the chamber and is fixedly connected to a detection turntable, and two symmetrically positioned detection contacts are fixedly connected to the outer end face of the detection turntable.
[0017] Preferably, a detection device is fixedly provided on the inner wall of the cavity, and the detection contact is in contact with the surface of the detection device. Beneficial effects
[0018] This invention provides a dynamic mechanical structure-type ground-mounted weather vane tower. It has the following beneficial effects:
[0019] This solution uses a threaded connection to move the telescopic cylinder outward, which in turn moves the connecting guide plate, and then drives the directional sign outward through transmission. As the directional sign moves outward, it becomes easier for pedestrians to understand the wind direction, and the direction of the wind can be clearly expressed.
[0020] This scheme involves deforming the extension plate to increase the wind-receiving area of the beacon tail. By expanding the wind-sensing area, the accuracy of the wind vane's sensing is improved, making it easier to adjust and sense the wind direction angle. Furthermore, the change in the dynamic mechanical structure enhances the wind vane's sensing effect.
[0021] This solution uses a signal processor to control the brightness of the corresponding illumination panel, thereby making it easier for pedestrians to identify at night and further improving the accuracy of directional identification. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the external structure of the present invention;
[0023] Figure 2 This is a schematic diagram of the main structure of the present invention;
[0024] Figure 3 This is a bottom-view structural diagram of the present invention;
[0025] Figure 4 This is a front view structural diagram of the present invention;
[0026] Figure 5 For the present invention Figure 4 A cross-sectional view along the AA direction;
[0027] Figure 6 For the present invention Figure 5 Enlarged structural diagram of the middle extension plate component;
[0028] Figure 7 For the present invention Figure 5 Enlarged structural diagram of the connecting guide plate component in the middle;
[0029] Figure 8 For the present invention Figure 5 An enlarged structural diagram of the rotating detection unit.
[0030] In the diagram: 101. Landscape column; 102. Flipping guide rod; 103. Circular turntable; 104. Marker head; 105. Signal transmitter; 106. Telescopic support cylinder; 107. Directional sign; 108. Circular secondary tower structure; 109. Illumination panel; 111. Telescopic connecting cylinder; 112. Adjustment cavity; 113. Connecting guide plate; 114. Adjustment shaft; 116. Drive shaft; 117. Telescopic rod; 118. Detection turntable; 1 19. Extension shaft; 120. Extension cavity; 121. Extension rotating plate; 122. Extension plate; 124. Telescopic slide; 125. Telescopic threaded shaft; 126. Connecting slide; 127. Annular slide; 128. Rotating cavity; 129. Chamber; 130. Detection contact; 131. Detection device; 132. Transmission turntable; 133. Marker tail; 135. Electromagnet; 136. Connecting spring; 137. Moving slide. Detailed Implementation
[0031] This invention provides a dynamic mechanical structure type ground-mounted weather vane landscape tower, such as... Figure 1-8 As shown, the structure includes a landscape column 101, a flipping guide rod 102, a marker head 104, a marker tail 133, and an extension plate 122. Two annular sub-tower structures 108 are symmetrically positioned on the upper and lower sides of the outer end face of the landscape column 101. Four outward-facing adjustment cavities 112 are located between the upper and lower annular sub-tower structures 108, arranged in a ring. An adjustment shaft 114 is rotatably mounted between the two walls of each adjustment cavity 112. One end of the flipping guide rod 102 is fixedly connected to the outer end face of the adjustment shaft 114. A directional sign 107 is located at the end of the flipping guide rod 102 away from the landscape column 101. An annular groove 127 with an outward opening is provided on the upper end face. The annular groove 127 is circular. An annular turntable 103 is rotatably provided inside the annular groove 127. Two telescopic support cylinders 106 are fixedly connected to both sides of the outer end face of the annular turntable 103. The telescopic support cylinders 106 on both sides are symmetrical. The head 104 and the tail 133 are respectively located on the telescopic support cylinders 106 on both sides, away from each other at one end. The head 104 and the tail 133 are slidably connected to the telescopic support cylinders 106. The top of the head 104 is pointed, and the tail 133 is fishtail shaped. The end face of the tail 133 away from the landscape column 101 is provided with an extension cavity 120 with an outward opening. An extension plate 122 is provided on one side wall inside the extension cavity 120.
[0032] It should be noted that the directional sign 107 is a directional sign in the prior art. The tail 133, the head 104, and the telescopic support cylinder 106 are combined to form a wind vane. The adjustment cavity 112 is equipped with an adjustment device, which can control and drive the adjustment shaft 114 to rotate and adjust the direction.
[0033] like Figure 2 A vertical signal transmitter 105 is fixed at the top of the landscape column 101.
[0034] It is worth noting that the signal transmitter 105 is a signal transmitting device in the prior art.
[0035] like Figure 5 As shown, the telescopic support cylinder 106 is provided with an outward-facing movable slide groove 137, and a movable telescopic rod 117 is provided in the movable slide groove 137. The telescopic rods 117 on both sides are fixedly connected to the tail 133 and the head 104 respectively.
[0036] Furthermore, an electromagnet 135 is fixedly installed on one side wall of the movable slide 137 close to each other, and a connecting spring 136 is fixedly connected between the electromagnet 135 and the telescopic rod 117.
[0037] It is worth noting that the telescopic rod 117 is made of magnetic material, and the electromagnet 135 is an electromagnet in the prior art.
[0038] like Figure 6 As shown, two extension shafts 119 are rotatably provided between the two walls of the extension cavity 120. The positions of the two extension shafts 119 are symmetrical. An extension rotating plate 121 is fixedly connected to the outer end face of the extension shaft 119. The extension rotating plate 121 is fixedly connected to the extension plate 122 on one side close to each other.
[0039] It is worth noting that the extension plate 122 is made of an elastic and stretchable material.
[0040] It should be noted that a flipping device is provided in one side wall of the extension cavity 120. The flipping device can drive the extension shaft 119 to rotate, thereby driving the extension rotating plate 121 to flip.
[0041] When this solution is used, the flipping device is activated and drives the extension shaft 119 to rotate, which in turn drives the extension plate 121 to flip. At this time, the extension plates 121 on both sides flip outward and pull the extension plate 122 to deform, thereby increasing the wind-receiving area of the tail 133.
[0042] like Figure 7As shown, the directional sign 107 is provided with a light plate 109, and the flip guide rods 102 are provided with an outward-facing connecting groove 126 on one side of their opposite ends. The connecting groove 126 is provided with a movable connecting guide plate 113, and the connecting guide plate 113 is fixedly connected to the directional sign 107.
[0043] Furthermore, a telescopic slide 124 is provided on one side wall of the connecting slide 126. A telescopic threaded shaft 125 is rotatably provided on one side wall of the telescopic slide 124. A movable telescopic connecting cylinder 111 is provided in the telescopic slide 124. The telescopic connecting cylinder 111 is threadedly connected to the telescopic threaded shaft 125. One end face of the telescopic connecting cylinder 111 extends into the connecting slide 126 and is fixedly connected to the connecting guide plate 113.
[0044] It is worth noting that the flipping guide rod 102 is equipped with a moving motor, and one end of the telescopic threaded shaft 125 is powered to the moving motor.
[0045] When the mobile motor starts, it can drive the telescopic threaded shaft 125 to rotate, which in turn drives the telescopic connecting cylinder 111 to move outward through the threaded connection, which in turn drives the connecting guide plate 113 to move, and then drives the direction sign 107 to move outward through the transmission.
[0046] like Figure 5 and Figure 8 As shown, the inner wall of the annular groove 127 is connected to a rotating cavity 128. A transmission shaft 116 is rotatably mounted between the upper and lower walls of the rotating cavity 128. A transmission turntable 132 is fixedly connected to the outer end face of the transmission shaft 116. The transmission turntable 132 is fixedly connected to the annular turntable 103.
[0047] Furthermore, a chamber 129 is provided in the lower wall of the rotating cavity 128, and the lower end of the drive shaft 116 extends downward into the chamber 129 and is fixedly connected to a detection turntable 118. Two detection contacts 130 with symmetrical positions are fixedly connected to the outer end face of the detection turntable 118.
[0048] It should be noted that the two detection contacts 130 correspond to the head 104 and the tail 133, respectively.
[0049] Furthermore, a detection device 131 is fixedly provided on the inner wall of the chamber 129, and the detection contact 130 contacts and abuts against the surface of the detection device 131.
[0050] It is worth noting that the detection device 131 is a contact sensor in the prior art.
[0051] It should be noted that the landscape column 101 is equipped with a signal processor, which processes information through the signal input of the contact sensor and controls the start and stop of each component in the landscape column 101.
[0052] When in operation, after the landscape column 101 is placed at the ground position, it achieves communication transmission through the ring-shaped secondary tower structure 108 and the signal transmitter 105.
[0053] At this point, the head 104, telescopic support cylinder 106, and tail 133 form a wind vane that can rotate in the wind. When pushed by the wind, the wind-receiving surfaces of the head 104 and tail 133 push the wind vane to rotate, pointing in the direction of the wind. The rotation of the wind vane drives the telescopic support cylinder 106 to rotate, which in turn drives the transmission turntable 132 to rotate. The rotation of the transmission turntable 132, in turn, drives the detection turntable 118 to rotate via the transmission shaft 116. As the detection turntable 118 rotates, it drives the detection contacts 130 on both sides to rotate, and this rotation is transmitted through the detection device 13... The sensor senses the rotation direction of the detection contacts 130 on both sides and outputs the signal through the detection device 131. The signal is then processed by the signal processor to control the start of the moving motor in the corresponding direction. When the moving motor starts, it can drive the telescopic threaded shaft 125 to rotate, which in turn drives the telescopic connecting cylinder 111 to move outward through the threaded connection, which in turn drives the connecting guide plate 113 to move, which in turn drives the direction sign 107 to move outward through the transmission. As the direction sign 107 moves outward, it is easier for pedestrians to understand the direction of the wind and can intuitively express the direction of the wind.
[0054] When the wind is weak and it is difficult to sense the wind, the electromagnet 135 is activated and pushes the telescopic rods 117 on both sides to move outward against the elastic force of the connecting spring 136. At this time, the telescopic rods 117 move and drive the head 104 and tail 133 to move outward. At the same time, the flipping device is activated and drives the extension shaft 119 to rotate, which in turn drives the extension plate 121 to flip. At this time, the extension plates 121 on both sides flip outward and pull the extension plate 122 to deform, increasing the wind-receiving area of the tail 133. By expanding the wind-receiving sensing area, the sensing accuracy of the wind vane is improved, making it easier to adjust and sense the wind direction angle. Thus, the sensing effect of the wind vane is improved through the change of dynamic mechanical structure.
[0055] When used at night, the adjustment device can control and drive the adjustment shaft 114 to rotate and adjust the direction. In turn, the adjustment shaft 114 drives the flipping guide rod 102 to flip downward and lower the height of the direction sign 107, thereby improving visibility.
[0056] At the same time, the illumination panel 109 inside the directional sign 107 is activated and illuminated to facilitate pedestrians' observation at night. When the nighttime wind vane rotates to the corresponding direction, the signal processor controls the corresponding illumination panel 109 to increase its brightness, thereby making it easier for pedestrians to identify at night and further improving the accuracy of directional identification.
[0057] 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 dynamic mechanical structure type weather vane ground-mounted landscape tower, comprising a landscape column (101), a flipping guide rod (102), a marker head (104), a marker tail (133), and an extension plate (122), characterized in that: The landscape column (101) has two annular sub-tower structures (108) on its upper and lower sides on its outer end face. The annular sub-tower structures (108) on the upper and lower sides are symmetrically positioned. The landscape column (101) has four outward-facing adjustment cavities (112) on its outer end face. The adjustment cavities (112) are arranged in a ring. An adjustment shaft (114) is rotatably provided between the two walls of the adjustment cavity (112). One end of the flipping guide rod (102) is fixedly connected to the outer end face of the adjustment shaft (114). A direction sign (107) is provided at the end of the flipping guide rod (102) away from the landscape column (101). An outward-facing annular groove (127) is provided above the outer end face of the landscape column (101). An annular turntable (103) is rotatably provided inside the annular groove (127). Two telescopic support cylinders (106) are fixedly connected to both sides of the outer end face of the annular turntable (103). The telescopic support cylinders (106) on both sides are symmetrically positioned. The marker head (104) and the marker tail (133) are respectively located on the telescopic support cylinders (106) on both sides, away from each other at one end. The marker head (104) and the marker tail (133) are respectively slidably connected to the telescopic support cylinders (106). The marker tail (133) has an extension cavity (120) with an outward opening on the end face away from the landscape column (101). The extension plate (122) is located on one side wall inside the extension cavity (120). The extension cavity (120) is provided with two extension shafts (119) rotatably between the two walls. The extension shafts (119) on both sides are symmetrically positioned vertically. An extension rotating plate (121) is fixedly connected to the outer end face of the extension shaft (119). The extension rotating plate (121) is fixedly connected to the extension plate (122) on one side close to each other. The extension cavity (120) is provided with a flipping device in one side wall. The flipping device can drive the extension shaft (119) to rotate, thereby driving the extension plate (121) to flip.
2. The dynamic mechanical structure type weather vane ground-mounted landscape tower according to claim 1, characterized in that: A signal transmitter (105) is fixedly installed at the top of the landscape column (101).
3. The dynamic mechanical structure type ground-mounted weather vane landscape tower according to claim 1, characterized in that: The telescopic support cylinder (106) is provided with an outward-facing movable slide groove (137), and a telescopic rod (117) is provided in the movable slide groove (137). The telescopic rods (117) on both sides are fixedly connected to the tail (133) and the head (104) respectively.
4. The dynamic mechanical structure type weather vane ground-mounted landscape tower according to claim 3, characterized in that: Electromagnets (135) are fixedly installed on one side wall of the movable slide (137) close to each other, and a connecting spring (136) is fixedly connected between the electromagnet (135) and the telescopic rod (117).
5. The dynamic mechanical structure type ground-mounted weather vane landscape tower according to claim 1, characterized in that: The directional sign (107) is provided with a light plate (109), and the flipping guide rod (102) is provided with an outward-facing connecting groove (126) on one side of its opposite end. The connecting groove (126) is provided with a connecting guide plate (113), and the connecting guide plate (113) is fixedly connected to the directional sign (107).
6. The dynamic mechanical structure type weather vane ground-mounted landscape tower according to claim 5, characterized in that: The connecting slide (126) has a telescopic slide (124) connected to one side wall. The telescopic slide (124) has a telescopic threaded shaft (125) rotatably mounted on one side wall. The telescopic slide (124) has a movable telescopic connecting cylinder (111) inside. The telescopic connecting cylinder (111) is threadedly connected to the telescopic threaded shaft (125). One end face of the telescopic connecting cylinder (111) extends into the connecting slide (126) and is fixedly connected to the connecting guide plate (113).
7. The dynamic mechanical structure type weather vane ground-mounted landscape tower according to claim 1, characterized in that: The inner wall of the annular groove (127) is connected to a rotating cavity (128). A transmission shaft (116) is rotatably provided between the upper and lower walls of the rotating cavity (128). A transmission turntable (132) is fixedly connected to the outer end face of the transmission shaft (116). The transmission turntable (132) is fixedly connected to the annular turntable (103).
8. The dynamic mechanical structure type weather vane ground-mounted landscape tower according to claim 7, characterized in that: The lower wall of the rotating cavity (128) is provided with a chamber (129). The lower end of the transmission shaft (116) extends downward into the chamber (129) and is fixedly connected to a detection turntable (118). Two symmetrically positioned detection contacts (130) are fixedly connected to the outer end face of the detection turntable (118).
9. The dynamic mechanical structure type weather vane ground-mounted landscape tower according to claim 8, characterized in that: The inner wall of the chamber (129) is fixedly provided with a detection device (131), and the detection contact (130) is in contact with the surface of the detection device (131).
Citation Information
Patent Citations
Cabin module construction field environment real-time monitoring equipment
CN115774118A
Landscape tower
CN203867263U