Main pole structure of intelligent lamp pole and intelligent traffic flow guiding device comprising main pole structure
By adopting the design of hollow cylinder structure and circular wiring channels in the smart lamp pole, the problems of irregular cable layout and safety hazards are solved, the orderly and hidden arrangement of cables are realized, and the structural strength and aesthetics of the lamp pole are improved.
Patent Information
- Application Number
- CN202421788426.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-25
AI Technical Summary
In the existing smart lamp poles, the cable layout is irregular, the strong and weak electric power is mixed, and there are safety hazards and electromagnetic interference. The equipment is poor in installation adaptability and difficult to maintain and replace.
The main rod body with a hollow cylinder structure is separated by an independent strong and weak electric bin. The outer wall extends to multiple connecting walls to form a outlet groove. The closed cover cover forms an annular wiring channel. The cable is out of line from any side through the threading hole, which realizes orderly wiring and hidden threading.
The orderly and concealed arrangement of cables is realized, safety hazards and electromagnetic interference are reduced, equipment signal stability is improved, maintenance and replacement process is simplified, and the overall structural strength and aesthetics of the lamp pole are improved.
Smart Images

Figure CN222864839U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lamp poles, and in particular to a main pole structure of a smart lamp pole and a smart traffic diversion device comprising the main pole structure. Background Art
[0002] Smart light poles, as the name implies, are street light poles with intelligent functions. They not only have the lighting function of traditional street lamps, but also integrate multiple intelligent functions such as video surveillance, environmental monitoring, wireless communication, information release, emergency calls, charging piles, etc. The integration of these functions makes smart light poles an important node of the urban Internet of Things, providing strong support for urban management and public services. Smart light poles are widely used in various places such as urban roads, parks, squares, scenic spots, etc.
[0003] In the related art, most street light poles do not have compartments inside or only use steel sheet slots for wiring. This type of integrated pole puts all the cables together inside the main pole. The main pole contains both strong electricity such as lighting and weak electricity such as video surveillance. Since there is no independent compartment, it is impossible to separate the strong and weak electricity. All cables are mixed inside the pole, which not only poses a safety hazard but also interferes with the equipment signal.
[0004] To this end, the utility model with application number 201920283461.2 discloses a smart lamp pole structure with separate compartments for strong and weak electricity, which relates to the technical field of lamp poles, including a lamp pole body and an isolation tube. The lamp pole body is a hollow cylindrical structure, an electricity compartment is arranged in the lamp pole body, the isolation tube is fixedly installed in the middle of the electricity compartment, a mounting plate is arranged on the outer wall of the lamp pole body, and weak and strong electricity wires are arranged in the electricity compartment. The utility model ensures that the wiring inside the lamp pole is standardized and neat, which is convenient for later maintenance, and at the same time eliminates the hidden danger of electromagnetic interference, and solves the problems of unstable signals and system abnormalities in traditional wiring. However, the above-mentioned standard pole has the following problems: its weak wires and strong wires are both connected to the through holes on the first mounting plate through the first wire trough, and the weak wires and strong wires are both connected to the through holes on the second mounting plate through the second wire trough. Since the positions of the first mounting plate and the second mounting plate are fixed, the external equipment can only be installed according to the positions of the first mounting plate and the second mounting plate, and the adaptability is poor; and since the main body of the lamp pole is a hollow cylindrical structure, the isolation tube is composed of three rectangular tubes welded in sequence, and the three rectangular tubes are inserted into the interior of the lamp pole together, and the two ends are welded and fixed to the inner wall of the main body of the lamp pole. Thus, there are disadvantages of troublesome laying, maintenance and replacement of cables. Utility Model Content
[0005] In order to overcome the shortcomings of the prior art, one of the purposes of the utility model is to provide a main pole structure of a smart lamp pole, which, through the design of a circular wiring channel and a detachable closed cover, makes it very simple and convenient to lead out the wires from any side of the pole body, making the laying, maintenance and replacement of cables simple and quick, reducing maintenance costs and time; the orderly cable management and hidden wire threading hole design keep the appearance of the lamp pole neat and beautiful, in line with the requirements of modern urban landscape; the design of the connecting wall not only provides wiring space for the cables, but also enhances the overall structural strength of the lamp pole, and improves the wind pressure resistance and stability.
[0006] A second objective of the present utility model is to provide an intelligent traffic diversion device including the above-mentioned main pole structure.
[0007] The first aspect of the utility model is to provide a main pole structure of a smart lamp pole, comprising:
[0008] The main rod body comprises a hollow cylinder, the inner cavity of which comprises a strong current compartment and a weak current compartment which are independent of each other; the outer wall of the hollow cylinder extends outwardly in the transverse direction to form a plurality of connecting walls, and a wire outlet groove extending in the vertical direction is formed between each two adjacent connecting walls;
[0009] A housing assembly, the housing assembly comprising a plurality of closing covers, the plurality of closing covers correspondingly covering the wire outlet grooves in a detachable connection manner, so that a ring-shaped wiring channel is formed between the housing assembly and the hollow cylinder;
[0010] Each of the connecting walls is provided with a threading hole connected to the annular wiring channel, the side wall of the high-voltage warehouse is provided with a first through hole connected to the annular wiring channel, and the side wall of the low-voltage warehouse is provided with a second through hole connected to the annular wiring channel.
[0011] In the first aspect of the utility model, as a preferred embodiment, the number of the connecting walls is four, and they are respectively distributed on the four corners of the hollow cylinder; the four connecting walls divide the annular wiring channel into four wiring compartments;
[0012] The closing cover includes four first covers and four second covers, the first covers include arc-shaped first cover plates and guide rails extending outward from both ends of the first cover plates; the middle portion of each first cover plate is connected to the outer end portion of a connecting wall; the second cover includes a vertical second cover plate and a protrusion extending outward from one side of the second cover plate, guide grooves are formed on two opposite side surfaces of the protrusion, and the two guide grooves of the protrusion of each second cover plate are respectively slidably connected to the guide rails of two adjacent first cover plates.
[0013] In the first aspect of the utility model, as a preferred embodiment, the number of the connecting walls is eight, and two connecting walls are arranged in parallel on each side of the hollow cylinder;
[0014] Each of the connecting walls is provided with a buckle portion, and the buckle portions between two adjacent connecting walls at four corners of the hollow cylinder are arranged opposite to each other;
[0015] Each of the connecting walls is provided with a first partition wall perpendicular to the connecting wall, and the first partition walls between two adjacent connecting walls on four sides of the hollow cylinder are arranged opposite to each other;
[0016] The closure cover comprises four third covers and four fourth covers, wherein the third covers comprise a third cover plate and slots extending outwardly from both ends of the third cover plate, and the two slots of each third cover plate are correspondingly snap-connected with the snap-connecting portions between two adjacent connecting walls at the corners;
[0017] The fourth cover includes a vertical fourth cover plate and a protrusion extending outwardly along a side surface of the fourth cover plate, and grooves are formed on two opposite sides of the protrusion. The two grooves of the protrusion of each fourth cover plate correspond to the two first partition walls between two adjacent connecting walls and are slidably connected.
[0018] In the first aspect of the utility model, as a preferred embodiment, two opposite second partition walls are arranged between any two adjacent connecting walls, and the two second partition walls, the two connecting walls and the side wall of the hollow cylinder form a water pipe bin, and a gap is formed between the two second partition walls; a water pipe bin cover is installed at the gap in a detachable manner.
[0019] In the first aspect of the utility model, as a preferred embodiment, the wire threading hole of the connecting wall, the first through hole of the high-voltage compartment and the second through hole of the low-voltage compartment are located on the same horizontal plane, wherein the first through hole of the high-voltage compartment and the second through hole of the low-voltage compartment are respectively located on two opposite side walls of the hollow cylinder.
[0020] A smart traffic diversion device comprises the main pole structure described in the first aspect of the present invention.
[0021] In the second aspect of the utility model, as a preferred embodiment, it also includes a mounting platform structure, the mounting platform structure includes a cantilever connection assembly and a box body;
[0022] The cantilever connection assembly includes a first connection member and a second connection member; the first connection member includes a first transverse connection tube and a first vertical connection tube, one end of the first transverse connection tube is connected to the main rod structure in a detachable manner, and the other end thereof extends vertically downward to form the first vertical connection tube; the second connection member includes a second transverse connection tube and a second vertical connection tube, one end of the second transverse connection tube is connected to the main rod structure in a detachable manner, and the other end thereof extends vertically upward to form the second vertical connection tube;
[0023] The top wall of the box is hinged to the lower end of the first vertical connecting tube, the bottom wall of the box is hinged to the upper end of the second vertical connecting tube, and the outer side surface of the box is used to install additional equipment.
[0024] In the second aspect of the present invention, as a preferred embodiment, it also includes:
[0025] A connecting assembly, the connecting assembly comprising a vertical support member, a transverse connecting member and a vertical connecting member; the lower end of the vertical support member is connected to the top surface of the main rod body, and the upper end thereof is connected to the bottom surface of the transverse connecting member; the transverse connecting member, the vertical support member and the top surface of the main rod body are surrounded to form a receiving groove; the vertical connecting member is connected to the side surface of the vertical support member and is located in the receiving groove;
[0026] A cantilever structure, the cantilever structure includes a cantilever body, a first flange, a first connecting bolt and a first protective cover, the first flange is connected to the vertical connecting member through the first connecting bolt, the first protective cover can be movably sleeved on the outside of the cantilever body, and the first protective cover is used to cover the first flange and the first connecting bolt; the first flange, the first connecting bolt and the first protective cover are all received in the accommodating groove.
[0027] In the second aspect of the utility model, as a preferred embodiment, it also includes a sub-rod structure, which includes a sub-rod body, and the sub-rod body is connected to the transverse connecting member by a detachable connection; the sub-rod structure also includes a second flange, a second connecting bolt and a second protective cover, the second flange is connected to the lower end of the sub-rod body, the second flange is connected to the transverse connecting member by the second connecting bolt, and the second protective cover can be movably sleeved on the outside of the sub-rod body, and the second protective cover is used to cover the second flange and the second connecting bolt.
[0028] In the second aspect of the utility model, as a preferred embodiment, it also includes a lamp structure, which includes a lamp holder and a lamp arm assembly, and the lamp arm assembly includes a first clamping member, a second clamping member, a locking member and a transverse plug-in arm; the first clamping member and the second clamping member are enclosed to form a clamping space for clamping the auxiliary rod, and the first clamping member and the second clamping member can be locked on the auxiliary rod through the locking assembly, one end of the transverse plug-in arm is fixedly connected to the second clamping member, and the other end thereof is detachably connected to the lamp holder.
[0029] Compared with the prior art, the beneficial effects of the present invention are:
[0030] 1. The main pole body of the utility model adopts a hollow column structure, and the internal space is divided into a strong current compartment and a weak current compartment to achieve separation of strong and weak electricity. Multiple connecting walls extend from the outer wall of the hollow column to form a wire outlet groove extending in the vertical direction, which is convenient for cable layout and management. The closed cover covers the wire outlet groove and forms a circular wiring channel together with the hollow column to provide an orderly wiring space for the cable. Each connecting wall is provided with a threading hole, allowing the cable to be wired out from any position, increasing the flexibility of wiring. The side walls of the strong current compartment and the weak current compartment are respectively provided with a first through hole and a second through hole, which are connected to the circular wiring channel to facilitate the introduction and extraction of the cable. In this way, the circular wiring channel of this embodiment provides an orderly and concealed wiring space for the cable. Through this circular wiring channel, the cables can be neatly arranged inside the lamp pole, avoiding the disorder and safety hazards caused by the exposure of the cables. Since the cables are placed in the circular wiring channel, the cables can be prevented from being damaged by the external environment, such as wind, rain, ultraviolet rays, etc., thereby extending the service life of the cables. The design of the circular wiring channel makes the maintenance and replacement of cables easier and faster. When the cables need to be inspected or replaced, maintenance personnel can easily open the closed cover and enter the circular wiring channel for operation without disassembling the entire light pole. By hiding the cables in the circular wiring channel, the appearance of the smart light pole is neater and more beautiful, improving the overall image of the light pole. The formation of the circular wiring channel depends in part on the connecting walls extending from the outer wall of the hollow cylinder. These connecting walls not only provide wiring space for the cables, but also enhance the overall structural strength of the light pole, improving its wind pressure resistance and stability.
[0031] 2. The main pole body of the utility model serves as the supporting foundation of the entire lamp pole, bearing the weight of the lamp pole and the mounting equipment. The vertical support member, the horizontal connector and the vertical connector in the connecting assembly together form a stable frame, and at the same time form a receiving groove for storing the connecting parts and protective covers of the cantilever structure. The cantilever body is firmly connected to the vertical connector through the first flange and the first connecting bolt. The first protective cover is sleeved on the outside of the cantilever body to protect the first flange and the first connecting bolt from the external environment, such as rain, dust, etc. The function of the first protective cover is not only to protect the connecting parts from the external environment, but also to cleverly hide these connection details, such as the first flange and the first connecting bolt. This makes the appearance of the entire lamp pole more concise, without exposed complex connection structures and bolts, thereby improving the aesthetics. By storing the connecting parts in the receiving groove and covering them with the first protective cover, the connecting part of the entire cantilever structure and the main pole forms a visual whole. This design avoids the visual sense of clutter and makes the appearance of the lamp pole more unified and harmonious. As part of the city's infrastructure, the aesthetics of smart light poles have an important impact on the city's landscape. The design of the first protective cover and the receiving slot takes this into consideration. By hiding and integrating the connecting parts, the light pole can be better integrated into the urban environment and become part of the city's landscape.
[0032] 3. The utility model uses the design of the cantilever connection component to enable the box to be flexibly installed on the main pole, which is not only convenient for adjusting the position, but also helps to realize a variety of additional functions, such as indication and display. The cantilever connection component adopts a detachable connection method, which greatly simplifies the installation process of the box and additional equipment. This design allows the relevant work to be completed quickly during installation or maintenance without complicated operating steps. The hinged design of the box further enhances its flexibility, making it easier and more convenient to adjust the angle or position. In addition, the cooperation of the cantilever connection component and the box realizes 360° spatial extension, which means that a full-range installation platform structure is formed around the lamp pole. This design can maximize the use of the space around the lamp pole, so that more smart devices or functional modules can be integrated into the lamp pole. As the space is fully expanded, the types and number of components that can be carried on the smart lamp pole also increase. Whether it is an environmental monitoring sensor, a wireless communication module, a video surveillance camera, or other various smart devices, they can be flexibly matched and installed according to actual needs. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 This is a schematic diagram of the split structure of the main rod structure of the first embodiment of the utility model;
[0034] Figure 2 This is a schematic diagram of the split structure of the main rod structure of the second implementation mode of the utility model;
[0035] Figure 3 This is a schematic diagram of the split structure of the main rod structure of the third implementation mode of the utility model;
[0036] Figure 4 This is a schematic diagram of the split structure of the main rod structure of the third implementation mode of the utility model;
[0037] Figure 5 It is a structural schematic diagram of a smart traffic diversion device with a mounting platform structure of the utility model;
[0038] Figure 6 It is a structural schematic diagram of the intelligent traffic diversion device with two installation platform structures of the utility model;
[0039] Figure 7 It is a schematic diagram of the split structure of the main rod structure and the first connecting member of the utility model;
[0040] Figure 8 It is a structural schematic diagram of the first connecting member of the utility model;
[0041] Fig. 9 It is a structural schematic diagram of the second connecting member of the utility model;
[0042] Fig.10 It is a structural schematic diagram of the intelligent traffic diversion device of the utility model;
[0043] Fig.11 This is a schematic diagram of the split structure of the intelligent traffic diversion device of the utility model;
[0044] Fig.12 It is a structural schematic diagram of the main rod structure of the utility model;
[0045] Fig.13 It is a structural schematic diagram of the cantilever structure of the utility model;
[0046] Fig.14 It is a structural schematic diagram of the auxiliary rod structure and the lamp structure of the utility model.
[0047] In the figure:
[0048] 10. Main pole structure; 101. Main pole body; 11. Strong current compartment; 111. First through hole; 12. Weak current compartment; 121. Second through hole; 13. Connecting wall; 131. Threading hole; 132. Buckle; 133. First partition wall; 134. Second partition wall; 135. Water pipe compartment; 136. Water pipe compartment cover; 14. Wire outlet groove;
[0049] 20. housing assembly; 21. first cover; 211. first cover plate; 212. guide rail; 22. second cover; 221. second cover plate; 222. protrusion; 223. guide groove; 23. third cover; 231. third cover plate; 232. slot; 24. fourth cover; 241. fourth cover plate; 242. protrusion; 243. groove;
[0050] 30. Cantilever connection assembly; 31. First connection piece; 311. First horizontal connection pipe; 312. First vertical connection pipe; 313. First flange; 314. First bolt; 315. First protective cover; 32. Second connection piece; 321. Second horizontal connection pipe; 322. Second vertical connection pipe; 323. Second flange; 324. Second bolt; 325. Second protective cover; 33. Box; 34. Additional equipment;
[0051] 40. Connecting assembly; 41. Vertical supporting member; 42. Horizontal connecting member; 421. Third threaded hole; 43. Vertical connecting member; 431. First threaded hole; 410. Accommodating groove;
[0052] 50. cantilever structure; 51. cantilever body; 52. first flange; 521. second threaded hole; 53. first connecting bolt; 54. first protective cover; 55. first reinforcing rib plate;
[0053] 60. Auxiliary rod structure; 61. Auxiliary rod body; 62. Second flange; 621. Fourth threaded hole; 63. Second connecting bolt; 64. Second protective cover; 65. Second reinforcing rib plate;
[0054] 70. Lamp structure; 71. Lamp holder; 72. Lamp arm assembly; 721. First clamping piece; 7211. Fifth threaded hole; 722. Second clamping piece; 7221. Sixth threaded hole; 723. Locking piece; 724. Horizontal plug-in arm. DETAILED DESCRIPTION
[0055] Below, in conjunction with the accompanying drawings and specific embodiments, the utility model is further described. It should be noted that, under the premise of no conflict, the various embodiments described below or the various technical features can be arbitrarily combined to form a new embodiment. Except for special instructions, the materials and equipment used in this embodiment can be purchased from the market. Examples of the embodiments are shown in the accompanying drawings, in which the same or similar reference numerals throughout represent the same or similar elements or elements with the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present application, and cannot be understood as limiting the present application.
[0056] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific position, be constructed and operated in a specific position, and therefore cannot be understood as a limitation on the present application. In the description of the present application, "plurality" means two or more, unless otherwise precisely and specifically specified.
[0057] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "connected", "connected", and "connection" should be understood in a broad sense, for example, it can be connected, or connected through an intermediary medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0058] The terms "first", "second", etc. in the specification and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0059] Please refer to Figure 1-4 As shown, this embodiment provides a main pole structure 10 of a smart lamp pole, including:
[0060] The main rod body 101 includes a hollow cylinder, the inner cavity of the hollow cylinder includes a strong current compartment 11 and a weak current compartment 12 which are independent of each other; the outer wall of the hollow cylinder extends outward in the transverse direction to form a plurality of connecting walls 13, and a wire outlet groove 14 extending in the vertical direction is formed between each two adjacent connecting walls 13;
[0061] The housing assembly 20 includes a plurality of closed covers, which cover the outlet grooves 14 one by one in a detachable connection manner, so that a ring-shaped wiring channel is formed between the housing assembly 20 and the hollow cylinder;
[0062] Each connecting wall 13 is provided with a threading hole 131 connected to the annular wiring channel, the side wall of the high-voltage compartment 11 is provided with a first through hole 111 connected to the annular wiring channel, and the side wall of the low-voltage compartment 12 is provided with a second through hole 121 connected to the annular wiring channel.
[0063] On the basis of the above structure, the main pole body 101 of this embodiment adopts a hollow cylindrical structure, and the internal space is divided into a strong current compartment 11 and a weak current compartment 12 to achieve separation of strong and weak electricity. Multiple connecting walls 13 extend from the outer wall of the hollow cylinder to form a wire outlet groove 14 extending in the vertical direction, which is convenient for cable layout and management. The closed cover covers the wire outlet groove 14 and forms a circular wiring channel together with the hollow cylinder to provide an orderly wiring space for the cable. A threading hole 131 is provided on each connecting wall 13, allowing the cable to be routed from any position, increasing the flexibility of wiring. The side walls of the strong current compartment 11 and the weak current compartment 12 are respectively provided with a first through hole and a second through hole, which are connected to the circular wiring channel to facilitate the introduction and extraction of cables. In this way, the circular wiring channel of this embodiment provides an orderly and concealed wiring space for the cables. Through this circular wiring channel, the cables can be neatly arranged inside the lamp pole, avoiding the disorder and safety hazards caused by the exposed cables. Since the cables are placed in the circular wiring channel, they can be prevented from being damaged by the external environment, such as wind, rain, ultraviolet rays, etc., thereby extending the service life of the cables. The design of the circular wiring channel makes the maintenance and replacement of cables easier and faster. When the cables need to be inspected or replaced, maintenance personnel can easily open the closed cover and enter the circular wiring channel for operation without disassembling the entire lamp pole. By hiding the cables in the circular wiring channel, the appearance of the smart lamp pole is neater and more beautiful, improving the overall image of the lamp pole. The formation of the circular wiring channel depends in part on the connecting walls 13 extending from the outer wall of the hollow cylinder. These connecting walls 13 not only provide wiring space for the cables, but also enhance the overall structural strength of the lamp pole, improving its wind pressure resistance and stability.
[0064] In a preferred embodiment of the present utility model, there are four connecting walls 13, which are respectively distributed at the four corners of the hollow cylinder; the four connecting walls 13 divide the annular wiring channel into four wiring compartments;
[0065] The closing cover includes four first covers 21 and four second covers 22. The first covers 21 include an arc-shaped first cover plate 211 and guide rails 212 extending outward from both ends of the first cover plate 211; the middle part of each first cover plate 211 is connected to the outer end of a connecting wall 13; the second cover includes a vertical second cover plate 221 and a protrusion 222 extending outward from one side of the second cover plate 221, and guide grooves 223 are formed on the opposite sides of the protrusion 222. The two guide grooves 223 of the protrusion 222 of each second cover plate 221 are respectively slidably connected to the guide rails 212 of two adjacent first cover plates 211.
[0066] On the basis of the above structure, the number of connecting walls 13 is four, which are respectively distributed on the four corners of the hollow body. Such a layout not only enhances the structural strength of the lamp pole, but also provides sufficient wiring space for the cables. The four connecting walls 13 divide the annular wiring channel into four independent wiring compartments. This separation design allows different types of cables to be arranged in different wiring compartments, thereby avoiding mutual interference between cables and improving the orderliness of cable management. During installation, the two guide grooves 223 of the raised portion 222 of each vertical cover plate are respectively slidably connected to the guide rails 212 of the two adjacent arc-shaped cover plates. This sliding connection design allows the closed cover to be easily opened or closed, thereby facilitating the layout, maintenance and replacement of cables.
[0067] In a preferred embodiment of the present utility model, the number of the connecting walls 13 is eight, and two connecting walls 13 are arranged in parallel on each side of the hollow cylinder;
[0068] Each connecting wall 13 is provided with a buckle portion 132, and the buckle portions 132 between two adjacent connecting walls 13 at four corners of the hollow cylinder are arranged opposite to each other;
[0069] Each connecting wall 13 is provided with a first partition wall 133 perpendicular to the connecting wall 13, and the first partition walls 133 located between two adjacent connecting walls 13 on four sides of the hollow cylinder are arranged opposite to each other;
[0070] The closing cover includes four third covers 23 and four fourth covers. The third covers 23 include a third cover plate 231 and slots 232 extending outward from both ends of the third cover plate 231. The two slots 232 of each third cover plate 231 are correspondingly snap-connected with the snap-on portions 132 between two adjacent connecting walls 13 at the corners.
[0071] The fourth cover 24 includes a vertical fourth cover plate 241 and a protrusion 242 extending outward from a side surface of the fourth cover plate 241, and grooves 243 are formed on two opposite sides of the protrusion 242. The two grooves 243 of the protrusion 242 of each fourth cover plate 241 correspond to the two first partition walls 133 between two adjacent connecting walls 13 for sliding fit connection.
[0072] On the basis of the above structure, the number of connecting walls 13 is eight, and two connecting walls 13 are arranged in parallel on each side. Such a layout not only further enhances the structural strength of the lamp pole, but also provides more sufficient wiring space for cables. A buckle portion 132 is provided on each connecting wall 13, and the buckle portions 132 between two adjacent connecting walls 13 at the four corners of the hollow cylinder are arranged oppositely. This design allows adjacent connecting walls 13 to be fixed to each other through the buckle portions 132, thereby enhancing the stability of the structure. A first partition wall 133 perpendicular to the connecting wall 13 is also provided on each connecting wall 13, and the first partition walls 133 between two adjacent connecting walls 13 at the four sides of the hollow cylinder are arranged oppositely. The design of the first partition wall 133 further separates the wiring space, so that different types of cables can be arranged more orderly. The two slot portions 232 of each third cover plate 231 are buckled and connected with the buckle portions 132 between two adjacent connecting walls 13 at the corners, and this design allows the third cover 23 to be firmly fixed at the corners, while being convenient to open and close. The two grooves 243 of the protrusion 242 of each fourth cover plate 241 correspond to the two first partition walls 133 between the two adjacent connecting walls 13 for sliding fit connection. This sliding fit design allows the fourth cover to be easily moved along the first partition walls 133, thereby conveniently opening or closing the wiring compartment.
[0073] In a preferred embodiment of the utility model, two opposite second partition walls 134 are arranged between any two adjacent connecting walls 13, and the two second partition walls 134, the two connecting walls 13 and the side walls of the hollow cylinder form a water pipe bin 135, and a gap is formed between the two second partition walls 134; a water pipe bin cover 136 is installed at the gap in a detachable manner.
[0074] On the basis of the above structure, by integrating the water pipe bin in the main pole structure 10 of the smart lamp pole, the diversification and integration of the lamp pole functions are achieved. This design not only saves space, but also improves the utilization efficiency of urban infrastructure. The detachable connection design of the water pipe bin makes the maintenance and replacement of water pipes simpler and faster. Maintenance personnel can easily open the water pipe bin cover and enter the water pipe bin for operation without disassembling the entire lamp pole. The design of the connecting wall 13 and the second partition wall 134 not only provides an independent compartment for the water pipe, but also enhances the overall structural strength of the lamp pole. At the same time, the closed design of the water pipe bin also ensures the safety of the water pipe system and prevents damage or leakage of the water pipe caused by external factors. In this way, this embodiment realizes the orderly management of cables and water pipes, the convenience of maintenance, and the beauty and strength of the structure through the coordinated design of the connecting wall 13, the second partition wall 134 and the water pipe bin cover.
[0075] In a preferred embodiment of the present invention, the wire threading hole 131 of the connecting wall 13, the first through hole of the high-voltage compartment 11 and the second through hole of the low-voltage compartment 12 are located on the same horizontal plane, wherein the first through hole of the high-voltage compartment 11 and the second through hole of the low-voltage compartment 12 are respectively located on two opposite side walls of the hollow cylinder.
[0076] On the basis of the above structure, the threading hole 131 of the connecting wall 13, the first through hole of the strong current compartment 11 and the second through hole of the weak current compartment 12 are located on the same horizontal plane. Such a layout ensures the smooth horizontal direction of the cables, avoids unnecessary bending and crossing, reduces the risk of cable damage, and improves the convenience of cable management. The first through hole of the strong current compartment 11 and the second through hole of the weak current compartment 12 are respectively located on the two opposite side walls of the hollow cylinder. This layout realizes the effective separation of strong and weak electricity and improves the safety of the system.
[0077] Embodiment 2:
[0078] Please refer to the figure Figure 1-14 As shown, this embodiment provides a smart traffic diversion device, including the main pole structure 10 of embodiment 1; and also includes a mounting platform structure, the mounting platform structure includes a cantilever connection assembly 30 and a box body 33;
[0079] Specifically, the cantilever connection assembly 30 includes a first connection member 31 and a second connection member 32;
[0080] The first connecting member 31 includes a first transverse connecting tube 311 and a first vertical connecting tube 312. One end of the first transverse connecting tube 311 is connected to the main rod structure 10 in a detachable manner, and the other end thereof extends vertically downward to form the first vertical connecting tube 312.
[0081] The second connecting member 32 includes a second transverse connecting tube 321 and a second vertical connecting tube 322. One end of the second transverse connecting tube 321 is connected to the main rod structure 10 in a detachable manner, and the other end thereof vertically extends upward to form a second vertical connecting tube 322.
[0082] Specifically, the top wall of the box body 33 is hinged to the lower end of the first vertical connecting pipe 312 , the bottom wall of the box body 33 is hinged to the upper end of the second vertical connecting pipe 322 , and the outer side surface of the box body 33 is used to install the additional equipment 34 .
[0083] On the basis of the above structure, in the actual installation process, first, the main pole structure 10 is erected and fixed on the ground to ensure its stability. Then, the first connecting member 31 and the second connecting member 32 are respectively installed on the main pole structure 10 by a detachable connection method. The two connecting members extend downward and upward respectively to form a first vertical connecting tube 312 and a second vertical connecting tube 322. The top wall of the box 33 is hinged to the lower end of the first vertical connecting tube 312 by a hinge, and the bottom wall is also hinged to the upper end of the second vertical connecting tube 322 by a hinge. By adjusting the tightness of the hinge, the angle and position of the box 33 can be easily adjusted to meet the needs of actual applications. Additional equipment 34 such as indicator signs or display screens are installed on the outer surface of the box 33, and these devices can be connected to other intelligent systems of the main pole structure 10 through internal lines. When it is necessary to display information or issue instructions, the corresponding functions can be realized by simply sending instructions to the additional equipment 34 through the control system. In this way, the utility model enables the box 33 to be flexibly installed on the main pole through the design of the cantilever connection component 30, which is not only convenient for adjusting the position, but also helps to realize a variety of additional functions, such as indication, display, etc. The cantilever connection component 30 adopts a detachable connection method, which greatly simplifies the installation process of the box 33 and the additional equipment 34. This design allows the relevant work to be completed quickly during installation or maintenance without complicated operating steps. The hinged design of the box 33 further enhances its flexibility, making it easier and more convenient to adjust the angle or position. In addition, the cooperation of the cantilever connection component 30 and the box 33 realizes 360° spatial extension, which means that a full-range installation platform structure is formed around the main pole structure 10. This design can maximize the use of the space around the main pole structure 10, so that more smart devices or functional modules can be integrated into the main pole structure 10. Since the space has been fully expanded, the types and number of components that can be carried on the smart main pole structure 10 have also increased accordingly. Whether it is environmental monitoring sensors, wireless communication modules, video surveillance cameras, or other various smart devices, they can be flexibly matched and installed according to actual needs.
[0084] In a preferred embodiment of the present invention, a vertically arranged wire outlet groove 14 is formed on the side of the main pole structure 10, and one end of the first connecting member 31 and the second connecting member 32 are respectively installed in the wire outlet groove 14 of the main pole structure 10 by a detachable connection.
[0085] On the basis of the above structure, the wire outlet groove 14 extends along the longitudinal direction of the main pole structure 10, providing a stable and convenient interface for the installation of the cantilever connection assembly 30. This design not only optimizes the overall installation process, but also ensures the connection strength and stability between the cantilever connection assembly 30 and the main pole structure 10. One end of the first connector 31 and the second connector 32 are respectively designed to adapt to the structure of the wire outlet groove 14 of the main pole structure 10. By adopting a detachable connection method, the first connector 31 and the second connector 32 can be easily and firmly installed in the wire outlet groove 14 of the main pole structure 10. This connection method is not only convenient for initial installation, but also can be quickly disassembled and reinstalled when necessary, which greatly improves the convenience of maintenance and upgrading.
[0086] In a preferred embodiment of the present invention, the first connecting member 31 also includes a first flange 313 and a plurality of first bolts 314 . The first flange 313 is installed at one end of the first transverse connecting pipe 311 . The first flange 313 is connected to the wire outlet groove 14 via the first bolts 314 .
[0087] During the installation process, the first flange 313 is placed at a position corresponding to the outlet groove 14 of the main rod structure 10, and then the first flange 313 is fastened in the outlet groove 14 using a plurality of first bolts 314. These first bolts 314 pass through the bolt holes on the flange and are screwed into the threaded holes in the outlet groove 14, thereby achieving a stable connection between the first connecting member 31 and the main rod structure 10. This flange connection method not only ensures the connection strength and stability between the first connecting member 31 and the main rod structure 10, but also provides a convenient disassembly and reinstallation function. When the first connecting member 31 needs to be maintained or replaced, the first connecting member 31 can be easily removed from the main rod structure 10 by simply loosening the first bolts 314.
[0088] In a preferred embodiment of the present utility model, four first threaded holes 431 are provided in the wire outlet groove 14, four second threaded holes 521 are correspondingly provided on the first flange 313, and the number of the first bolts 314 is four. The first threaded holes 431 of the wire outlet groove 14 and the second threaded holes 521 on the first flange 313 can be locked one by one through the four first bolts 314.
[0089] This connection method is not only structurally stable, but also easy to disassemble and reinstall, greatly improving the maintainability and flexibility of the equipment. At the same time, the design of four connection points also ensures the balance of the installation and prevents the stability problems that may be caused by a single point connection.
[0090] In a preferred embodiment of the present invention, the first connecting member 31 further includes a first protective cover 315 , which is movably sleeved on the outside of the first transverse connecting pipe 311 , and is used to cover the first flange 313 and the first bolt 314 .
[0091] The main function of the first protective cover 315 is to cover and protect the first flange 313 and the first bolt 314 connecting the first flange 313 and the outlet groove 14 of the main pole structure 10. By covering these key connecting parts, the first protective cover 315 effectively reduces the erosion and damage to them by environmental factors (such as rain, dust, ultraviolet rays, etc.), thereby extending the service life of these parts. In addition, the first protective cover 315 also plays an aesthetic role. It can hide the connecting parts, making the entire smart lamp pole integrated structure more neat and unified in appearance.
[0092] In a preferred embodiment of the present invention, the second connecting member 32 further includes a second flange 323 and a plurality of second bolts 324 . The second flange 323 is installed at one end of the second transverse connecting pipe 321 . The second flange 323 is connected to the outlet groove 14 via the second bolts 324 .
[0093] During the installation process, the second flange 323 is placed at a position corresponding to the outlet groove 14 of the main rod structure 10, and then a plurality of second bolts 324 are used to tightly connect the second flange 323 to the outlet groove 14. These second bolts 324 pass through the bolt holes on the flange and are screwed into the threaded holes in the outlet groove 14, thereby achieving a stable connection between the second connecting member 32 and the main rod structure 10. Through this flange connection method, the second connecting member 32 can be stably fixed on the main rod structure 10, which not only ensures the connection strength, but also provides convenient disassembly and reinstallation functions. When the second connecting member 32 needs to be maintained or replaced, the second connecting member 32 can be easily removed from the main rod structure 10 by simply loosening the second bolts 324.
[0094] In a preferred embodiment of the utility model, four second threaded holes 521 are provided in the wire outlet groove 14, four second threaded holes 521 are correspondingly provided on the second flange 323, and the number of second bolts 324 is four. The second threaded holes 521 of the wire outlet groove 14 and the second threaded holes 521 on the second flange 323 can be locked one by one through the four second bolts 324.
[0095] This connection method is not only structurally stable, but also easy to disassemble and reinstall, greatly improving the maintainability and flexibility of the equipment. At the same time, the design of four connection points also ensures the balance of the installation and prevents the stability problems that may be caused by a single point connection.
[0096] In a preferred embodiment of the present invention, the second connecting member 32 further includes a second protective cover 325 , which is movably sleeved on the outside of the first transverse connecting pipe 311 , and is used to cover the second flange 323 and the second bolt 324 .
[0097] The main function of the second protective cover 325 is to cover and protect the second flange 323 and the second bolt 324 connecting the second flange 323 and the outlet groove 14 of the main pole structure 10. By covering these key connecting parts, the second protective cover 325 effectively reduces the erosion and damage to them by environmental factors (such as rain, dust, ultraviolet rays, etc.), thereby extending the service life of these parts. In addition, the second protective cover 325 also plays an aesthetic role. It can hide the connecting parts, making the entire smart lamp pole integrated structure more neat and unified in appearance.
[0098] In a preferred embodiment of the present invention, the four sides of the main pole structure 10 are formed with vertically arranged cable outlet grooves 14. This four-sided design not only optimizes the overall installation process, but also enables the main pole structure 10 to support more additional equipment 34 and functions, thereby meeting diverse needs.
[0099] In a preferred embodiment of the present invention, the number of the mounting platform structures is more than two.
[0100] Multiple installation platform structures are distributed along the height of the main pole structure 10, and different equipment can be installed at different heights according to actual needs. For example, the lower platform can be used to install road monitoring cameras or public information display screens, while the higher platform is suitable for installing wireless communication equipment or environmental monitoring instruments. Each installation platform has a stable support structure and sufficient bearing capacity to ensure that the equipment installed on it can operate stably. At the same time, the spatial layout between the platforms has also been carefully designed to avoid mutual interference between equipment and ensure that maintenance personnel can easily install, debug and maintain the equipment.
[0101] In a preferred embodiment of the present utility model, it also includes a cantilever structure 50 and a secondary rod structure 60;
[0102] Specifically, the main rod structure 10 includes a connection assembly 40, which includes a vertical support member 41, a transverse connection member 42 and a vertical connection member 43; the lower end of the vertical support member 41 is connected to the top surface of the main rod body 101, and the upper end thereof is connected to the bottom surface of the transverse connection member 42; the transverse connection member 42, the vertical support member 41 and the top surface of the main rod body 101 enclose a receiving groove 410; the vertical connection member 43 is connected to the side surface of the vertical support member 41 and is located in the receiving groove 410;
[0103] Specifically, the cantilever structure 50 includes a cantilever body 51, a first flange 52, a first connecting bolt 53 and a first protective cover 54. The first flange 52 is connected to the vertical connecting member 43 through the first connecting bolt 53. The first protective cover 54 is movably sleeved on the outside of the cantilever body 51. The first protective cover 54 is used to cover the first flange 52 and the first connecting bolt 53. The first flange 52, the first connecting bolt 53 and the first protective cover 54 are all received in the receiving groove 410.
[0104] Specifically, the sub-rod structure 60 includes a sub-rod body 61 , and the sub-rod body 61 is connected to the transverse connecting member 42 .
[0105] On the basis of the above structure, the main pole body 101 serves as the supporting base of the entire lamp pole, bearing the weight of the lamp pole and the mounting equipment. The vertical support member 41, the horizontal connector 42 and the vertical connector 43 in the connecting assembly 40 together form a stable frame, and at the same time form a receiving groove 410 for accommodating the connecting parts and protective cover of the cantilever structure 50. The cantilever body 51 is firmly connected to the vertical connector 43 through the first flange 52 and the first connecting bolt 53. The first protective cover 54 is sleeved on the outside of the cantilever body 51 to protect the first flange 52 and the first connecting bolt 53 from the influence of the external environment, such as rain, dust, etc. The function of the first protective cover 54 is not only to protect the connecting parts from the influence of the external environment, but also to cleverly hide these connection details, such as the first flange 52 and the first connecting bolt 53. This makes the appearance of the entire lamp pole more concise, without exposed complex connection structures and bolts, thereby improving the aesthetics. By storing the connecting parts in the receiving groove 410 and covering them with the first protective cover 54, the entire cantilever structure 50 and the connecting part of the main pole form a visual whole. This design avoids visual clutter and makes the appearance of the lamp pole more unified and harmonious. As part of the urban infrastructure, the aesthetics of the smart lamp pole has an important impact on the urban landscape. The design of the first protective cover 54 and the receiving groove 410 takes this into consideration. By hiding and integrating the connecting parts, the lamp pole can be better integrated into the urban environment and become part of the urban landscape.
[0106] In a preferred embodiment of the present invention, the cantilever structure 50 also includes a plurality of first reinforcing ribs 55, which are evenly distributed around the circumference of the cantilever body 51, and the first side surface of each first reinforcing rib plate 55 is connected to the outer side surface of the cantilever body 51, and the second side surface of each first reinforcing rib plate 55 is connected to the outer side surface of the first flange 52.
[0107] On the basis of the above structure, the first reinforcing ribs 55 play a role similar to "ribs" in the cantilever structure 50. They enhance the bending and torsion resistance of the cantilever body 51 by adding additional support areas and connection points. When the cantilever body 51 is subjected to external forces, the first reinforcing ribs 55 can effectively disperse the load to a larger area and reduce the risk of single-point stress concentration. The first reinforcing ribs 55 are evenly distributed around the circumference of the cantilever body 51, ensuring that the cantilever body 51 has similar structural strength in all directions. This design avoids stress imbalance or distortion caused by structural asymmetry. The second side of the first reinforcing rib 55 is connected to the outer side of the first flange 52, further enhancing the connection strength between the cantilever body 51 and the flange. This connection method makes the entire cantilever structure 50 more stable and can effectively transmit and disperse the load from the flange. In this way, by introducing the first reinforcing ribs 55 evenly distributed around the circumference of the cantilever body 51, the structural strength, rigidity and stability of the cantilever structure 50 are significantly improved. These first reinforcing rib plates 55 not only optimize the load distribution, but also improve the wind resistance and durability of the cantilever body 51, thereby enhancing the safety and reliability of the entire lamp pole system.
[0108] In a preferred embodiment of the present utility model, four first threaded holes 431 are provided on the vertical connecting member 43, four second threaded holes 521 are correspondingly provided on the first flange 52, and the number of the first connecting bolts 53 is four. The first threaded holes 431 of the vertical connecting member 43 and the second threaded holes 521 on the first flange 52 can be locked one by one through the four first connecting bolts 53.
[0109] On the basis of the above structure, by rotating each first connecting bolt 53 so that its thread is tightly engaged with the thread of the first threaded hole 431 and the second threaded hole 521, a firm connection between the vertical connecting member 43 and the first flange 52 is achieved, so that the entire structure can withstand the expected load and remain stable.
[0110] In a preferred embodiment of the present invention, the auxiliary rod body 61 is connected to the transverse connecting member 42 in a detachable manner. This design allows the auxiliary rod to be quickly installed, replaced or disassembled according to actual needs, thereby meeting different application scenarios and functional requirements.
[0111] In a preferred embodiment of the present utility model, the auxiliary rod structure 60 also includes a second flange 62, a second connecting bolt 63 and a second protective cover 64. The second flange 62 is connected to the lower end of the auxiliary rod body 61. The second flange 62 is connected to the transverse connecting member 42 through the second connecting bolt 63. The second protective cover 64 can be movably sleeved on the outside of the auxiliary rod body 61. The second protective cover 64 is used to cover the second flange 62 and the second connecting bolt 63.
[0112] On the basis of the above structure, the lower end of the auxiliary rod body 61 is firmly connected to the transverse connecting member 42 through the second flange 62 and the second connecting bolt 63. The bolt holes on the flange are aligned with the corresponding holes on the transverse connecting member 42, and then the second connecting bolt 63 is used to tighten, thereby ensuring a firm connection between the auxiliary rod and the main rod. The second protective cover 64 is movably sleeved on the outside of the auxiliary rod body 61, and its size and shape are designed to completely cover the second flange 62 and the second connecting bolt 63. In this way, under severe weather conditions (such as rain, snow, wind and sand, etc.), the protective cover can effectively protect these key connecting parts from damage. When the auxiliary rod structure 60 needs to be maintained or repaired, the staff can easily move or remove the second protective cover 64 to directly access the second flange 62 and the second connecting bolt 63. This design greatly simplifies the maintenance and repair process and improves work efficiency.
[0113] In a preferred embodiment of the present utility model, the auxiliary rod structure 60 also includes a plurality of second reinforcing ribs 65, which are evenly distributed around the circumference of the auxiliary rod body 61, and the first side surface of each second reinforcing rib plate 65 is connected to the outer side surface of the auxiliary rod body 61, and the second side surface of each second reinforcing rib plate 65 is connected to the outer side surface of the second flange 62.
[0114] On the basis of the above structure, the second reinforcing rib plate 65 increases the section inertia moment and section modulus of the secondary rod, thereby improving its ability to resist bending and torsion. These reinforcing rib plates are closely combined with the secondary rod body 61, jointly bearing external loads, and forming a more stable overall structure. The second reinforcing rib plates 65 are evenly distributed around the circumference of the secondary rod body 61, ensuring that the secondary rod has consistent structural strength in all directions. This design eliminates structural weaknesses and improves the adaptability of the secondary rod to complex load conditions. The second side of the second reinforcing rib plate 65 is connected to the outer side of the second flange 62, thereby enhancing the connection stiffness between the secondary rod and the flange. This connection method helps to reduce stress concentration and deformation at the connection, thereby ensuring the stability of the entire secondary rod structure 60. In this way, by introducing the second reinforcing rib plates 65 evenly distributed around the circumference of the secondary rod body 61, the structural strength, stability and wind vibration resistance of the secondary rod structure 60 are significantly improved. These reinforcing rib plates not only optimize the load distribution and transfer path, but also extend the service life of the secondary rod, and improve the safety and reliability of the entire lamp pole system.
[0115] In a preferred embodiment of the utility model, four third threaded holes 421 are provided on the transverse connecting member 42, four fourth threaded holes 621 are correspondingly provided on the second flange 62, and the number of the second connecting bolts 63 is four. The third threaded holes 421 of the transverse connecting member 42 and the fourth threaded holes 621 on the second flange 62 can be locked one by one through the four second connecting bolts 63.
[0116] On the basis of the above structure, by rotating the second connecting bolt 63, its thread will be tightly combined with the threads of the third threaded hole 421 and the fourth threaded hole 621, thereby ensuring a firm connection between the transverse connecting member 42 and the second flange 62. This one-to-one locking method not only improves the accuracy of the connection, but also enhances the stability of the overall structure.
[0117] In a preferred embodiment of the utility model, it also includes a lamp structure 70, the lamp structure 70 includes a lamp holder 71 and a lamp arm assembly 72, the lamp arm assembly 72 includes a first clamping member 721, a second clamping member 722, a locking member 723 and a transverse plug-in arm 724; the first clamping member 721 and the second clamping member 722 are enclosed to form a clamping space for clamping the auxiliary rod, and the first clamping member 721 and the second clamping member 722 can be locked on the auxiliary rod through the locking assembly, one end of the transverse plug-in arm 724 is fixedly connected to the second clamping member 722, and the other end thereof is detachably connected to the lamp holder 71.
[0118] On the basis of the above structure, the first clamping member 721 and the second clamping member 722 are enclosed and the locking function of the locking assembly ensures that the lamp can be firmly installed on the secondary rod. The detachable connection between the transverse plug arm 724 and the lamp holder 71 provides a convenient maintenance and replacement option. This comprehensive design makes the lamp structure 70 both practical and easy to maintain.
[0119] In a preferred embodiment of the present invention, the transverse plug-in arm 724 is detachably connected to the lamp holder 71 by plugging. This design provides flexibility, facilitates installation, maintenance or replacement of the lamp holder 71, and reduces maintenance costs.
[0120] In a preferred embodiment of the present utility model, the cross-sections of the first clamping member 721 and the second clamping member 722 are both U-shaped, the first clamping member 721 is provided with four fifth threaded holes 7211, and the second clamping member 722 is provided with four sixth threaded holes 7221, and the positions of the four fifth threaded holes 7211 and the four sixth threaded holes 7221 correspond to each other; the locking member 723 includes four locking bolts, which can pass through the fifth threaded holes 7211 and the sixth threaded holes 7221 and lock the first clamping member 721 and the second clamping member 722 on the sub-rod.
[0121] On the basis of the above structure, during the installation process, the auxiliary rod is first placed in the U-shaped space formed by the first clamping member 721 and the second clamping member 722. Then, four locking bolts are respectively passed through the fifth threaded hole 7211 on the first clamping member 721, and screwed into the corresponding sixth threaded hole 7221 on the second clamping member 722. By rotating the locking bolts, the distance between the two clamping members can be gradually reduced until they tightly clamp the auxiliary rod. This design connects the corresponding threaded holes on the first clamping member 721 and the second clamping member 722 through four locking bolts, thereby achieving a stable clamping of the auxiliary rod. This structure is not only simple and easy to install, but also can provide a strong clamping force to ensure the stability and safety of the lamp structure 70.
[0122] Although only certain components and embodiments of the present application have been illustrated and described, many modifications and changes may be conceived by those skilled in the art without actually departing from the scope and spirit of the claims, such as changes in the size, dimensions, structure, shape and proportion of the various elements, mounting arrangements, material usage, color, orientation, etc.
[0123] The above-mentioned implementation modes are only preferred implementation modes of the present invention, and cannot be used to limit the protection scope of the present invention. Any non-substantial changes and substitutions made by technicians in this field on the basis of the present invention shall fall within the scope of protection required by the present invention.
Claims
1. A main pole structure of a smart lamp pole, characterized in that: include: The main rod body comprises a hollow cylinder, the inner cavity of which comprises a strong current compartment and a weak current compartment which are independent of each other; the outer wall of the hollow cylinder extends outwardly in the transverse direction to form a plurality of connecting walls, and a wire outlet groove extending in the vertical direction is formed between each two adjacent connecting walls; A housing assembly, the housing assembly comprising a plurality of closing covers, the plurality of closing covers correspondingly covering the wire outlet grooves in a detachable connection manner, so that a ring-shaped wiring channel is formed between the housing assembly and the hollow cylinder; Each of the connecting walls is provided with a threading hole connected to the annular wiring channel, the side wall of the high-voltage warehouse is provided with a first through hole connected to the annular wiring channel, and the side wall of the low-voltage warehouse is provided with a second through hole connected to the annular wiring channel.
2. The main pole structure of the smart lamp pole according to claim 1, characterized in that: There are four connecting walls, which are respectively distributed at the four corners of the hollow cylinder; the four connecting walls divide the annular wiring channel into four wiring compartments; The closing cover includes four first covers and four second covers, the first covers include arc-shaped first cover plates and guide rails extending outward from both ends of the first cover plates; the middle portion of each first cover plate is connected to the outer end portion of a connecting wall; the second cover includes a vertical second cover plate and a protrusion extending outward from one side of the second cover plate, guide grooves are formed on two opposite side surfaces of the protrusion, and the two guide grooves of the protrusion of each second cover plate are respectively slidably connected to the guide rails of two adjacent first cover plates.
3. The main pole structure of the smart lamp pole according to claim 1, characterized in that: The number of the connecting walls is eight, and two connecting walls are arranged in parallel on each side of the hollow cylinder; Each of the connecting walls is provided with a buckle portion, and the buckle portions between two adjacent connecting walls at four corners of the hollow cylinder are arranged opposite to each other; Each of the connecting walls is provided with a first partition wall perpendicular to the connecting wall, and the first partition walls between two adjacent connecting walls on four sides of the hollow cylinder are arranged opposite to each other; The closure cover comprises four third covers and four fourth covers, wherein the third covers comprise a third cover plate and slots extending outwardly from both ends of the third cover plate, and the two slots of each third cover plate are correspondingly snap-connected with the snap-connecting portions between two adjacent connecting walls at the corners; The fourth cover includes a vertical fourth cover plate and a protrusion extending outwardly along a side surface of the fourth cover plate, and grooves are formed on two opposite sides of the protrusion. The two grooves of the protrusion of each fourth cover plate correspond to the two first partition walls between two adjacent connecting walls and are slidably connected.
4. The main pole structure of the smart lamp pole according to claim 3, characterized in that: Two opposite second partition walls are arranged between any two adjacent connecting walls. The two second partition walls, the two connecting walls and the side wall of the hollow cylinder enclose a water pipe bin, and a gap is formed between the two second partition walls; a water pipe bin cover is installed at the gap in a detachable manner.
5. The main pole structure of the smart lamp pole according to claim 4, characterized in that: The threading hole of the connecting wall, the first through hole of the high-voltage compartment and the second through hole of the low-voltage compartment are located on the same horizontal plane, wherein the first through hole of the high-voltage compartment and the second through hole of the low-voltage compartment are respectively located on two opposite side walls of the hollow cylinder.
6. A smart traffic diversion device, characterized in that: It comprises the main rod structure as described in any one of claims 1-5.
7. The intelligent traffic diversion device according to claim 6, characterized in that: Also included is a mounting platform structure, the mounting platform structure including a cantilever connection assembly and a box body; The cantilever connection assembly includes a first connection member and a second connection member; the first connection member includes a first transverse connection tube and a first vertical connection tube, one end of the first transverse connection tube is connected to the main rod structure in a detachable manner, and the other end thereof extends vertically downward to form the first vertical connection tube; the second connection member includes a second transverse connection tube and a second vertical connection tube, one end of the second transverse connection tube is connected to the main rod structure in a detachable manner, and the other end thereof extends vertically upward to form the second vertical connection tube; The top wall of the box is hinged to the lower end of the first vertical connecting tube, the bottom wall of the box is hinged to the upper end of the second vertical connecting tube, and the outer side surface of the box is used to install additional equipment.
8. The intelligent traffic diversion device according to claim 7, characterized in that: Also includes: A connecting assembly, the connecting assembly comprising a vertical support member, a transverse connecting member and a vertical connecting member; the lower end of the vertical support member is connected to the top surface of the main rod body, and the upper end thereof is connected to the bottom surface of the transverse connecting member; the transverse connecting member, the vertical support member and the top surface of the main rod body are surrounded to form a receiving groove; the vertical connecting member is connected to the side surface of the vertical support member and is located in the receiving groove; A cantilever structure, the cantilever structure includes a cantilever body, a first flange, a first connecting bolt and a first protective cover, the first flange is connected to the vertical connecting member through the first connecting bolt, the first protective cover can be movably sleeved on the outside of the cantilever body, and the first protective cover is used to cover the first flange and the first connecting bolt; the first flange, the first connecting bolt and the first protective cover are all received in the accommodating groove.
9. The intelligent traffic diversion device according to claim 8, characterized in that: It also includes a secondary rod structure, which includes a secondary rod body, and the secondary rod body is connected to the transverse connecting member by a detachable connection; the secondary rod structure also includes a second flange, a second connecting bolt and a second protective cover, the second flange is connected to the lower end of the secondary rod body, the second flange is connected to the transverse connecting member by the second connecting bolt, and the second protective cover can be movably sleeved on the outside of the secondary rod body, and the second protective cover is used to cover the second flange and the second connecting bolt.
10. The intelligent traffic diversion device according to claim 9, characterized in that: It also includes a lamp structure, which includes a lamp holder and a lamp arm assembly, and the lamp arm assembly includes a first clamping member, a second clamping member, a locking member and a transverse plug-in arm; the first clamping member and the second clamping member are enclosed to form a clamping space for clamping the auxiliary rod, and the first clamping member and the second clamping member can be locked on the auxiliary rod through the locking assembly, one end of the transverse plug-in arm is fixedly connected to the second clamping member, and the other end thereof is detachably connected to the lamp holder.
Citation Information
Patent Citations
Intelligent lamp pole structure with strong and weak electricity bins
CN209801396U