Outdoor device connection rod and street lamp

Through the multi-pole body splicing rod and rotary snap structure, the problem of inconvenient installation of outdoor equipment is solved, convenient installation and energy-saving power supply are achieved, and transportation and installation costs are reduced.

WO2025166937A1PCT designated stage Publication Date: 2025-08-14DONGGUAN THAILIGHT SEMICON LIGHTING CO LTD
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Patent Information

Application Number
PCT/CN2024/094222
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-03
Filing Date
2024-05-20
Publication Date
2025-08-14

AI Technical Summary

Technical Problem

Existing outdoor equipment such as street lights and billboards require long pole support, which leads to inconvenient transportation and installation, laborious and costly.

Method used

The outdoor equipment splicing rod composed of multiple rod bodies is used to quickly install and disassemble the adjacent rod body through rotary snaps. The rod body is equipped with a positioning block and a slot structure. The rod cover is used to install outdoor equipment and is equipped with a solar power supply system.

Benefits of technology

It improves the installation efficiency of outdoor equipment, reduces transportation and installation costs, and has an environmentally friendly and energy-saving power supply method, which is widely applicable.

✦ Generated by Eureka AI based on patent content.

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Abstract

An outdoor device connection rod (1), comprising: a base (10), which is located at the bottom of the outdoor device connection rod (1) to provide support; rod bodies (20), which are arranged along a vertical axis; a rotating fastener (30), which is located between two adjacent rod bodies (20); and a rod cover (40), which is used for mounting an outdoor device. There are two or more rod bodies (20). The rotating fastener (30) comprises an upper fastener (32) fixedly connected to an upper rod body (20) and a lower fastener (31) fixedly connected to a lower rod body (20). The upper fastener (32) and the lower fastener (31) can rotate relative to the axis of the rod bodies (20). The base (10) is fixedly disposed at the bottom of the lowermost rod body (20). The rod cover (40) covers the top of the uppermost rod body (20). Further provided is a street lamp using an outdoor device connection rod (1). The outdoor device connection rod (1) and the street lamp are convenient to mount.
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Description

Outdoor equipment splicing pole and street light Technical Field

[0001] The present application relates to the technical field of outdoor equipment installation, and in particular to an outdoor equipment splicing pole and a street lamp. Background Art

[0002] Existing outdoor equipment, such as streetlights, billboards, and road signs, often requires support via poles of a certain length to facilitate visibility from a distance. However, these long poles are not only difficult to transport, but also require the use of specialized equipment to lift and erect them, which is very cumbersome and laborious.

[0003] Summary of the Invention

[0004] Based on this, the purpose of this application is to provide an outdoor equipment splicing pole to improve the efficiency of outdoor equipment installation.

[0005] This application is implemented through the following technical solutions:

[0006] A splicing pole for outdoor equipment, comprising:

[0007] A base, located at the bottom of the outdoor equipment splicing pole for support, the base being fixed to the bottom of the lowest pole body;

[0008] There are two or more rods, each of which is arranged vertically along an axis;

[0009] A rotating buckle is located between two adjacent rods and includes an upper buckle fixedly connected to the upper rod and a lower buckle fixedly connected to the lower rod, wherein the upper buckle and the lower buckle are capable of relative rotation around the axis of the rod;

[0010] The pole cover is used to install outdoor equipment, and the pole cover is arranged on the top of the uppermost pole body.

[0011] Compared to the prior art, the outdoor equipment splicing pole of the present application can be easily and conveniently installed and removed between two adjacent poles by rotating the upper or lower buckle, thereby improving the installation efficiency of the outdoor equipment splicing pole. Moreover, the division into multiple poles can reduce the requirements for transportation and installation equipment, thereby reducing transportation and installation costs.

[0012] Furthermore, one of the lower buckle or the upper buckle is provided with a slot, and the other is provided with a block. As the lower buckle and the upper buckle rotate relative to each other, the block is inserted into the slot or leaves the slot, thereby achieving quick installation between the upper buckle and the lower buckle.

[0013] The lower limit of each of the two ends is lowered to the limit of each of the two ends, and the limit of each of the two ends is lowered to the limit of each of the two ends.

[0014] Furthermore, the interior of the rod body is hollow, and a positioning block and a mounting hole are provided at at least one end thereof. The positioning block is protruded from the inner wall of the rod body, and the mounting hole is opened on the positioning block and connected to the stepped hole; a lower recess is provided on the outer surface of the lower connecting block, which is concave toward the lower connecting tube; the positioning block is inserted into the lower recess to facilitate positioning of the rod body on the lower buckle.

[0015] Furthermore, the slot includes a first block and a second block protruding from the inner wall of the lower connecting tube and separated by a certain distance; projected along the axis of the rod body, at least a portion of the first block and the second block do not overlap, so that the upper buckle can be snapped into the slot.

[0016] Furthermore, the upper buckle is provided with an upper base, an upper connecting tube, an upper connecting block, a clamping block and a mounting hole; one side surface of the upper base is connected to the lower base, and an upper flange extending along the outer periphery of the upper base is protruded on the side facing away from the lower base; the upper connecting tube is protruded on the side of the upper base facing the lower base, and its axis is parallel to the lower connecting tube; the upper connecting block surrounds the outside of the upper connecting tube and has a gap between it and the upper flange; the clamping block is protruded on the outer surface of the upper connecting tube; the mounting hole is opened on the upper base and is connected to the stepped hole, and the engagement between the upper buckle and the lower buckle is achieved by the engagement of the clamping block and the slot.

[0017] Furthermore, the outer side surface of the upper connecting block is provided with an upper recessed portion concave toward the interior of the upper connecting tube, and the positioning block is inserted into the upper recessed portion to achieve positioning between the upper buckle and the rod body.

[0018] In addition, this application also provides a street lamp, the technical solution of which is as follows:

[0019] A street lamp comprises an outdoor equipment splicing pole and a street lamp assembly; the outdoor equipment splicing pole comprises:

[0020] A base, located at the bottom of the outdoor equipment splicing pole for support;

[0021] There are two or more rods, each of which is arranged vertically along an axis;

[0022] A rotating buckle is located between two adjacent rods, comprising an upper buckle fixedly connected to the upper rod and a lower buckle fixedly connected to the lower rod, wherein the upper buckle and the lower buckle are capable of relative rotation around the axis of the rod, and the base is fixedly mounted on the bottom of the lowermost rod;

[0023] Pole cover, used to install outdoor equipment, the pole cover is located on the top of the uppermost pole body

[0024] The street lamp assembly is fixed on the pole cover.

[0025] Compared to existing technologies, the streetlight of this application can be easily and conveniently installed between two adjacent poles by simply rotating the upper or lower buckle, thereby improving the installation efficiency of outdoor equipment splicing poles. Moreover, splitting the poles into multiple parts can reduce the requirements for transportation and installation equipment, thereby reducing transportation and installation costs.

[0026] Furthermore, the street lamp assembly includes a power supply unit arranged in the pole body and a lighting unit arranged outside the pole body; the power supply unit includes a support frame, a converter, a storage battery and a solar panel; the support frame is fixed to the inner wall of the pole body; the converter and the storage battery are installed on the support frame; the solar panel covers at least a part of the outside of the pole body; the solar panel, the converter, the storage battery and the lighting unit are electrically connected in sequence, powered by solar energy, and are environmentally friendly and energy-saving.

[0027] Furthermore, the lighting unit includes a connecting bend, a movable arm and a solar lamp; one end of the connecting bend extends in a direction parallel to the axis of the rod body, and the other end is bent and hinged to the movable arm; the solar lamp is fixed on the side of the movable arm away from the connecting bend, and rotates with the movable arm to adjust the illumination angle of the street lamp.

[0028] For better understanding and implementation, the present application is described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] FIG1 is a schematic diagram of the overall structure of a street lamp in one embodiment of the present application;

[0030] FIG2 is a cross-sectional view of the overall structure of the street lamp in FIG1 ;

[0031] FIG3 is a schematic diagram of the overall structure of a base in one embodiment of the present application;

[0032] FIG4 is a schematic diagram of the overall structure of a rod body in one embodiment of the present application;

[0033] FIG5 is a top view of the rod body in FIG4 ;

[0034] FIG6 is an exploded view of a rotary joint according to an embodiment of the present application;

[0035] FIG7 is a bottom view of a lower buckle according to an embodiment of the present application;

[0036] FIG8 is a top view of a lower buckle in one embodiment of the present application;

[0037] FIG9 is a cross-sectional projection view taken along line AA of FIG7 ;

[0038] FIG10 is a schematic cross-sectional view of a lower buckle and an upper buckle in another embodiment of the present application;

[0039] FIG11 is a cross-sectional projection view taken along line BB of FIG7 ;

[0040] FIG12 is a schematic diagram of the overall structure of an upper buckle in one embodiment of the present application;

[0041] FIG13 is a top view of the upper buckle in FIG12 ;

[0042] FIG14 is a top view of a rod cover according to an embodiment of the present application;

[0043] FIG15 is a schematic structural diagram of a street lamp assembly in one embodiment of the present application. DETAILED DESCRIPTION

[0044] In the description of the present invention, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended only to facilitate the description of the present invention and simplify the description. They do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limiting the present invention. In the description of the present invention, unless otherwise specified, "plurality" means two or more.

[0045] Please refer to Figures 1 to 3 , taking the outdoor device as a streetlight as an example. In this embodiment, the streetlight of the present application includes an outdoor device splicing pole 1 and a streetlight assembly 2. The outdoor device splicing pole 1 is vertically installed on a mounting surface such as the ground, extending perpendicularly to the mounting surface. The streetlight assembly 2 is installed above the outdoor device splicing pole 1 and supported by the outdoor device splicing pole 1. Alternatively, the outdoor device may be an outdoor traffic signal pole, sign pole, billboard pole, or other facility.

[0046] The outdoor equipment splicing pole 1 includes a base 10, a pole body 20, a rotating buckle 30 and a pole cover 40. One side of the base 10 is flat so as to connect with the ground. There are more than two pole bodies 20, and the bottom of one pole body 20 is fixedly connected to the top of the base 10 and extends in the vertical direction. The pole bodies 20 are arranged up and down along their axes, and the rotating buckle 30 is connected between two adjacent pole bodies 20. The pole cover 40 covers the top of the uppermost pole body 20. The street lamp assembly 2 is fixedly connected to the pole cover 40. The interiors of the pole bodies 20 and the rotating buckles 30 are interconnected, forming a wire passing space therein. Power lines, signal lines and other cables pass through the wire passing space from the base 10, are connected to the pole cover 40, and are electrically connected to the street lamp assembly 2.

[0047] In this embodiment, fixing holes 11 are opened at the four corners of the base 10. When the user installs the outdoor equipment splicing rod 1 at a designated position, bolts pass through the fixing holes 11 to fix the base 10 on an installation surface such as the ground.

[0048] Referring to Figures 4 and 5 , the rod body 20 is hollow, and at least one end of the rod body 20 in its extension direction is provided with at least a positioning block 21 and a mounting hole 22 for mounting the rotating buckle 30. The positioning block 21 protrudes from the inner side surface of the rod body 20 and is located at least at one end of the rod body 20 in its extension direction. It is understood that when the rotating buckle 30 is installed at both ends of the rod body 20, the positioning blocks 21 are also correspondingly protruded from the inner side surfaces of both ends of the rod body 20. The mounting hole 21 is provided on the positioning block 21, with its axial direction parallel to the extension direction of the rod body 20. In this embodiment, the rod body 20 is an aluminum alloy with a wall thickness of 3.5 mm to ensure strength. Furthermore, at least one rod body 20 is provided with a wire mesh 23. The wire mesh 22 is laid on the inner circumference of the rod body 20 and extends along the extension direction of the rod body 20. Compared with increasing the thickness of the rod body 20 , the grid-like structure of the steel mesh 22 increases the strength without excessively increasing the weight of the rod body 20 , thus saving materials.

[0049] Referring to Figure 6 , the rotating buckle 30 includes a lower buckle 31 and an upper buckle 32. The lower buckle 31 is fixedly mounted on the top of the lower rod 20, while the upper buckle 32 is fixedly mounted on the bottom of the upper rod 20. The lower buckle 31 and the upper buckle 32 can rotate relative to each other to engage or disengage.

[0050] Referring to Figures 6 to 10 , the lower buckle 31 comprises a lower base 311, a lower connecting tube 312, a lower connecting block 313, a slot 314, and a stepped hole 315. A lower flange 3111 is provided on the side of the lower base 311 facing away from the upper buckle 32. The lower flange 3111 extends along the periphery of the lower base 311. The lower connecting tube 312 is protruding from the side of the lower base 311 facing away from the upper buckle 32, with its axis parallel to the extension direction of the rod body 20. A lower opening 3121 is provided in the middle of the lower connecting tube 312, through which the upper buckle 32 is inserted into the lower buckle 31. The lower connecting block 313 surrounds the outer side of the lower connecting tube 312, with a certain gap between it and the lower flange 3111. The outer side of the lower connecting block 313 is provided with a lower recess 3131 that faces into the interior of the lower connecting tube 312. The lower recess 3131 extends through the lower connecting block 313 along the extension direction of the rod body 20. Projected along the axis of the rod body 20, the lower recess 3131 and the positioning block 21 have substantially the same cross-sectional shape. The positioning block 21 of the lower rod body is inserted into and engaged with the lower recess 3131, and is located between the lower flange 3111 and the lower recess 3131, thereby positioning the rod body 20 on the lower buckle 31. A slot 314 is provided on the inner side of the lower connecting tube 312. At least a portion of the upper buckle 32 can be inserted into the slot 314 to engage with the lower buckle 31, or removed from the slot 314 to separate the lower buckle 31 from the upper buckle 32. In this embodiment, the latching slot 314 includes a first latching block 3141 and a second latching block 3142. The first latching block 3141 and the second latching block 3142 are protruding from the inner side of the lower connecting tube 312 and separated by a distance along the axis of the lower connecting tube 312. Along the axis of the lower connecting tube 312, the first latching block 3141 is located on the side closer to the lower rod body 20, and the second latching block 3142 is located on the side closer to the upper buckle 32. Projected along the axis of the rod body 20, at least a portion of the first latching block 3141 and the second latching block 3142 do not overlap. Furthermore, the axis of the lower connecting tube 312 is perpendicular to the side of the first latching block 3141 facing the upper buckle 32, so as to abut against the upper buckle 32. In this embodiment, along the axis of the rod body 20, the opposing sides of the first latching block 3141 and the second latching block 3142 are parallel to each other. In another embodiment, as shown in Figure 10, on the axis of the rod body 20, the opposite sides of the first block 3141 and the second block 3142 are not parallel to each other, and in the second block 3142, the distance from the side close to the first block 3141 to the first block 3141 is greater than the distance from the side away from the first block 3141 to the first block 3141.Furthermore, a third clamping block 3143 is provided. The third clamping block 3143 is connected to the side of the second clamping block 3142 away from the first clamping block 3141 and extends away from the upper buckle 32 to limit the rotation of the upper buckle 32. The stepped hole 315 passes through the lower base 311 in a direction parallel to the axis of the rod body 20, and the cross-sectional area of ​​the side away from the upper buckle 32 is smaller than the cross-sectional area of ​​the side close to the upper buckle 32, thereby forming a support surface 3151 and a first connecting hole 3152 and a second connecting hole 3153 of unequal diameters. The first connecting hole 3152 is located on the side away from the upper buckle 32, and the second connecting hole 3153 is located on the side close to the upper buckle 32. The support surface 3151 is located between the first connecting hole 3151 and the second connecting hole 3153, and the diameter of the first connecting hole 3152 is smaller than the diameter of the second connecting hole 3153. The first connection hole 3152 is used to accommodate a bolt connecting the lower rod 20 and the lower buckle 31. The bolt connecting the lower rod 20 and the lower buckle 31 is supported by the support surface 3151. The second connection hole 3153 is used to accommodate a bolt connecting the lower buckle 31 and the upper buckle 32.

[0051] Referring to Figures 12 and 13 , the upper buckle 32 includes an upper base 321, an upper connecting tube 322, an upper connecting block 323, a clamping block 324, and a mounting hole 325. One side surface of the upper base 321 is connected to the lower base 311 for support, and an upper flange 3211 is provided on the side facing away from the lower base 311. The upper flange 3211 extends along the outer circumference of the upper base 321. The upper connecting tube 322 is protruding from the side surface of the upper base 321 facing the lower base 311 and is in communication with the upper base 321. The axis of the upper connecting tube 322 is parallel to the axis of the lower connecting tube 312. The outer diameter of the upper connecting tube 322 is smaller than the outer diameter of the lower connecting tube 312. In this embodiment, the axes of the upper connecting tube 322 and the lower connecting tube 322 coincide. The upper connecting block 323 surrounds the outer side of the lower connecting tube 312, with a certain gap between it and the lower flange 3111. The outer side of the upper connecting block 323 is provided with an upper recess 3231 that faces into the interior of the upper connecting tube 322. The upper recess 3231 extends through the upper connecting block 323 in a direction parallel to the axis of the rod body 20. Projected along the axis of the rod body 20, the upper recess 3231 and the positioning block 21 have substantially the same cross-sectional shape. The positioning block 21 of the upper rod body 20 is inserted into and engages with the upper recess 3231, and is located between the upper flange 3211 and the upper recess 3231, thereby positioning the upper rod body 20 on the upper buckle 32. The clamping block 324 protrudes from the outer circumference of the upper connecting tube 322 and engages with the clamping slot 314 to prevent the upper buckle 32 from leaving the lower buckle 31. When the upper connecting tube 322 of the upper buckle 32 is inserted into the lower connecting tube 312, the clamping block 324 first abuts against the first clamping block 3141. The upper buckle 32 is then rotated, causing the clamping block 324 to slide along the first clamping block 3141 to below the second clamping block 3142 until it abuts against the third clamping block 3143. The mounting hole 325 is defined in the upper base 321 and communicates with the stepped hole 315. A bolt is screwed into the mounting hole 325 to secure the upper buckle 32 to the lower buckle 31.

[0052] Furthermore, a first mark 316 and a second mark 326 are provided on the outer sides of the lower base 311 and the upper base 321, respectively. The second mark 326 aligns with the first mark 316 after the upper buckle 32 rotates to a certain angle, allowing for observation from the outside to ensure that the lower buckle 31 and the upper buckle 32 are properly installed. In this embodiment, the first mark 316 is an observation hole provided in the lower base 311 along the radial direction of the lower connecting tube 312, which is used to observe the connection between the interior of the lower buckle 31 and the upper buckle 32; the second mark 326 is a protruding bump on the outer side of the upper base 321.

[0053] Furthermore, a plurality of steel bars 100 extending parallel to the axis of the rod body 20 are embedded in the lower connecting tube 312 and / or the upper connecting tube 322 . The plurality of steel bars 100 are arranged circumferentially along the rod body 20 and embedded in the rod body 20 to improve strength.

[0054] Furthermore, the inner sidewall of the upper connecting tube 322 is provided with multiple cable securing buckles 327. These include a first buckle 3271 extending parallel to the axis of the rod body 20. Projected along the axis of the rod body 20, one end of the first buckle 3271 is connected to the inner sidewall of the upper connecting tube 322 and extends radially along the upper connecting tube 322. A side surface of the other end is disposed opposite the inner sidewall of the upper connecting tube 322, allowing cables to be clipped between the first buckle 3271 and the inner sidewall of the upper connecting tube 322. Furthermore, the cable securing buckle 327 also includes a second buckle 3272 extending parallel to the axis of the rod body 20. Projected along the axis of the rod body 20, the second buckle 3272 extends radially along the upper connecting tube 322, and is close to the side of the inner wall of the first wire buckle 3271 away from the upper connecting tube 322 and separated by a certain distance, thereby forming a cable accommodating space between the first wire buckle 3271 and the second buckle 3272.

[0055] Furthermore, there are two locking slots 314 of the lower buckle 31 and two locking blocks 324 of the upper buckle 32, which are arranged opposite to each other along the circumference of the rod body 20. One locking block 324 is engaged in each locking slot 314.

[0056] Referring to Figure 14 , the rod cover 40 is provided with a socket 41 for inserting the streetlight assembly 2, and a connection hole 42 communicating with the mounting hole 22. In this embodiment, projected along the axis of the rod body 20, the socket 41 is located near the center of the rod cover 40, while the connection holes 42 are located at the four corners of the rod cover 40. The cable connecting the rod body 20 and the interior of the rotating buckle 30 is connected to the outside through the socket 41. Bolts are inserted into the uppermost mounting hole 22 and the connection holes 42 to secure the rod cover 40 to the top of the uppermost rod body 20.

[0057] Referring to Figure 15 , the streetlight assembly 2 includes a power supply unit 50 and a lighting unit 60. The power supply unit 50 is located within the pole body 20 and supplies power to the lighting unit 60, which is located outside the pole body 20. In this embodiment, the power supply unit 50 includes a support frame 51, a converter 52, a battery 53, and a solar panel 54. The support frame 51 is secured to the inner wall of the pole body 20 via bolts, welding, or other means, near the lighting unit 60. The converter 52 is located at the lower end of the support frame 51. The battery 53 is secured to the support frame 51 and electrically connected to the converter 52 and the lighting unit 60, respectively. The solar panel 54 is installed on at least a portion of the outer surface of the pole body 20, with its cables extending into the cable passage space and electrically connected to the converter 52. The converter 52 converts solar energy into electrical energy, which is then stored in the battery 53 to power the lighting unit 60. In this embodiment, the lighting unit 60 includes a connecting elbow 61, a movable arm 62, and a solar lamp 63. One end of the connecting elbow 61 extends parallel to the axis of the rod body 20, then bends 90 degrees to be hinged to the movable arm 62. The movable arm 62 is pivotable about an axis parallel to the ground. The solar lamp 63 is fixed to the side of the movable arm 62 away from the connecting elbow 61 and pivots with the movable arm 62 to adjust the lighting direction.

[0058] In addition, in this embodiment, the outer cross-sectional shape of the rod body 20 is set to be a square, but according to needs, the cross-sectional shape of the rod body 20 can be set to but not limited to circular, rectangular, polygonal, special-shaped, etc.

[0059] Compared with the prior art, the outdoor equipment splicing pole and street light of this application have the following advantages:

[0060] 1. The two adjacent rods are fastened together by rotating the buckle, which makes disassembly and assembly easy and convenient for transportation, while also enhancing stability;

[0061] 2. The upper and lower buckles can be fastened together not only by buckles but also by bolts, which ensures a stable structure and is not easy to loosen.

[0062] 3. Powered by solar energy, it can save energy and be more environmentally friendly;

[0063] 4. Adjustable lighting range, wide applicability.

[0064] The above-described embodiments merely represent several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person skilled in the art may make various modifications and improvements without departing from the spirit of the present application, and such modifications and improvements are all within the scope of protection of the present application.

Claims

1. A splicing rod for outdoor equipment, characterized by: include A base, located at the bottom of the outdoor equipment splicing pole for support; There are two or more rods, each rod is arranged vertically along an axis, and the base is fixed to the bottom of the lowest rod; A rotating buckle is located between two adjacent rods and includes an upper buckle fixedly connected to the upper rod and a lower buckle fixedly connected to the lower rod, wherein the upper buckle and the lower buckle are capable of relative rotation around the axis of the rod; The pole cover is used to install outdoor equipment, and the pole cover is arranged on the top of the uppermost pole body.

2. The outdoor equipment splicing rod according to claim 1, characterized in that: One of the lower buckle or the upper buckle is provided with a card slot, and the other is provided with a card block. As the lower buckle and the upper buckle rotate relative to each other, the card block is inserted into the card slot or leaves the card slot.

3. The outdoor equipment splicing rod according to claim 2, characterized in that: The locking mechanism is configured to lock the locking cam of the locking cam, wherein the locking cam is secured to the locking cam of the locking cam, with the locking cam being secured to the locking cam of the locking cam.

4. The outdoor equipment splicing rod according to claim 3, characterized in that: The interior of the rod body is hollow, and a positioning block and a mounting hole are provided at at least one end thereof. The positioning block is protruded from the inner wall of the rod body, and the mounting hole is opened on the positioning block and connected to the stepped hole; a lower recessed portion is provided on the outer surface of the lower connecting block, which is concave toward the lower connecting tube; the positioning block is inserted into the lower recessed portion.

5. The outdoor equipment splicing rod according to claim 3, characterized in that: The clamping slot includes a first clamping block and a second clamping block protruding from the inner side wall of the lower connecting tube and separated by a certain distance; projected along the axis of the rod body, at least a portion of the first clamping block and the second clamping block do not overlap.

6. The outdoor equipment splicing rod according to claim 4, characterized in that: The upper buckle is provided with an upper base, an upper connecting tube, an upper connecting block, a clamping block and a mounting hole; one side surface of the upper base is connected to the lower base, and an upper flange extending along the outer periphery of the upper base is protruded on the side facing away from the lower base; the upper connecting tube is protruded on the side of the upper base facing the lower base, and its axis is parallel to the lower connecting tube; the upper connecting block surrounds the outside of the upper connecting tube and has a gap between it and the upper flange; the clamping block is protruded on the outer surface of the upper connecting tube; the mounting hole is opened on the upper base and is connected to the stepped hole.

7. The outdoor equipment splicing rod according to claim 6, characterized in that: An upper concave portion concave toward the interior of the upper connecting tube is provided on the outer side surface of the upper connecting block, and the positioning block is inserted into the upper concave portion.

8. A street lamp, characterized in that: It comprises the outdoor equipment splicing pole and a street light assembly as claimed in claim 1; the street light assembly is fixed on the pole cover.

9. The street lamp according to claim 8, characterized in that: The street lamp assembly includes a power supply unit arranged in the pole body and a lighting unit arranged outside the pole body; the power supply unit includes a support frame, a converter, a battery and a solar panel; the support frame is fixed to the inner wall of the pole body; the converter and the battery are installed on the support frame; the solar panel covers at least a part of the outside of the pole body; the solar panel, the converter, the battery and the lighting unit are electrically connected in sequence.

10. The street lamp according to claim 8, characterized in that: The lighting unit includes a connecting bend, a movable arm and a solar lamp; one end of the connecting bend extends in a direction parallel to the axis of the rod body, and the other end is bent and hinged to the movable arm; the solar lamp is fixed on the side of the movable arm away from the connecting bend and rotates with the movable arm.

Citation Information

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