Ultrahigh molecular weight corrosion-resistant waterproof light pile

CN224771400UActive Publication Date: 2026-09-18NINGBO NAVIGATION AIDS OFFICE DONGHAI NAVIGATION SUPPORT CENT MINISTRY OF TRANSPORT +1
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Patent Information

Application Number
CN202522289600.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-29
Publication Date
2026-09-18
Estimated Expiration
2035-10-29

AI Technical Summary

Technical Problem

[0003]不过,对于超高分子材料灯桩的话,在实际使用当中还存在一些问题,如灯桩基本都是多个桩筒上下依次安装的,其整体结构强度有待加强;再者就是,由于太阳能电池支架多采用螺栓固定安装在平台上,并且与平台护栏也采用螺栓连接,太阳能电池支架的角度一旦安装则不方便调节,其综合利用率还有待提高

Benefits of technology

本实用新型提供的一种超高分子耐腐蚀防水灯桩,通过采用加强圈和竖向角板可组成立柱内部的骨架用于提高立柱整体的结构强度;安装圈架可沿固定圈的圈面作旋转调节,而安装圈架作为太阳能电池支架的连接基础,可实现对太阳能电池支架的调节,由制动件和滚动支撑件来保证安装圈架和太阳能电池支架的稳定性,有利于提高本装置的综合利用率。本实用新型设计合理、结构强度较高、可调节太阳能电池支架且综合利用率较高,适合大规模推广。

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Abstract

The utility model belongs to the field of lamp pile, propose a kind of super high molecule corrosion -resistant waterproof lamp pile, including stand, platform, manhole, platform guardrail, thunder needle, control box and solar cell support, stand includes multiple super high molecule pile barrel distributing sequentially up and down, the inside of adjacent super high molecule pile barrel is provided with reinforcing ring, reinforcing ring is provided with two fixed bolts of connecting adjacent two super high molecule pile barrels, the inside of reinforcing ring is provided with multiple evenly distributed vertical angle plates, vertical angle plate vertically connects multiple reinforcing rings, the top of platform is fixedly provided with fixed ring, C type mounting ring frame is provided on fixed ring, mounting ring frame is connected with solar cell support by positioning bolt, the side of mounting ring frame is provided with multiple rolling support parts with fixed ring rolling cooperation, the side of platform guardrail is provided with brake part with mounting ring frame cooperation. The utility model design is reasonable, and structural strength is higher, and adjustable solar cell support and comprehensive utilization rate are higher, suitable for large-scale promotion.
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Description

Technical Field

[0001] This utility model belongs to the field of lamp posts and relates to an ultra-high molecular weight polymer corrosion-resistant and waterproof lamp post. Background Technology

[0002] Ultra-high molecular weight polymer (UHMWPP) light posts are those that use UHMWPP materials instead of traditional metal steel materials. They are resistant to seawater corrosion. For example, a UHMWPP light post disclosed in announcement number CN201442645U not only has corrosion resistance but also incorporates a solar cell support.

[0003] However, there are still some problems with ultra-high polymer material lamp posts in actual use. For example, lamp posts are basically multiple piles installed one after another, and their overall structural strength needs to be strengthened. Furthermore, since solar cell brackets are mostly fixed to the platform with bolts and are also connected to the platform railing with bolts, the angle of the solar cell brackets is not easy to adjust once installed, and their overall utilization rate needs to be improved. Utility Model Content

[0004] This utility model addresses the technical problems existing in the aforementioned lamp posts by proposing an ultra-high molecular weight corrosion-resistant and waterproof lamp post with a reasonable design, high structural strength, adjustable solar cell support, and high comprehensive utilization rate.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: This utility model provides an ultra-high molecular weight polymer corrosion-resistant and waterproof light post, including a column, a platform at the top of the column, a manhole and a platform railing on the platform, a lightning rod, a control box and a solar cell bracket connected to the platform on the inner side of the platform railing, the column including multiple ultra-high molecular weight polymer cylinders arranged vertically, a reinforcing ring inside adjacent ultra-high molecular weight polymer cylinders, a reinforcing ring having two rings of fixing bolts connecting two adjacent ultra-high molecular weight polymer cylinders, a multiple evenly distributed vertical corner plates on the inner side of the reinforcing ring, the vertical corner plates vertically connecting multiple reinforcing rings, a fixing ring fixedly installed at the top of the platform, the fixing ring having a break at the position corresponding to the manhole, a C-shaped mounting ring frame on the fixing ring, the mounting ring frame being connected to the solar cell bracket by positioning bolts, a multiple rolling support members that roll with the fixing ring on the side of the mounting ring frame, and a braking member that cooperates with the mounting ring frame on the side of the platform railing.

[0006] Preferably, the rolling support includes a bolt body for horizontally connecting and mounting the ring frame, a threaded sleeve on the bolt body, a rolling groove on the side of the threaded sleeve, a rolling ring in the rolling groove, and a track groove on the side of the fixed ring, wherein the ring surface of the rolling ring rolls in contact with the top and bottom surfaces of the track groove.

[0007] Preferably, the mounting ring includes a first mounting ring groove and a second mounting ring groove that are concentrically distributed. Each of the first mounting ring groove and the second mounting ring groove is provided with at least one ring of connecting holes arranged in a circular array. The braking component mates with the connecting holes.

[0008] Preferably, the braking component includes a horizontal rod, on which an adjusting bolt is threadedly connected, and the adjusting bolt engages with a connecting hole.

[0009] Preferably, the side of the column is provided with a ladder and a corresponding guardrail. The guardrail includes multiple vertical bars, and multiple pairs of C-shaped bars are provided on the vertical bars at intervals. Each pair of C-shaped bars is joined vertically and its ends are connected to the ladder.

[0010] Compared with the prior art, the advantages and positive effects of this utility model are as follows: This invention provides an ultra-high molecular weight polymer corrosion-resistant and waterproof light post. A reinforcing ring and vertical corner plates form the internal framework of the post, enhancing its overall structural strength. The mounting ring can be rotated and adjusted along the surface of the fixed ring. Serving as the connecting base for the solar cell support, the mounting ring allows for adjustment of the solar cell support. Braking and rolling supports ensure the stability of both the mounting ring and the solar cell support, improving the overall utilization rate of the device. This invention features a reasonable design, high structural strength, an adjustable solar cell support, and high overall utilization rate, making it suitable for large-scale promotion. Attached Figure Description

[0011] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0012] Figure 1 A perspective view of an ultra-high molecular weight polymer corrosion-resistant and waterproof light post provided as an embodiment; Figure 2 A front view of an ultra-high molecular weight polymer corrosion-resistant and waterproof light post provided for an embodiment; Figure 3 for Figure 2 A cross-sectional view of a type of ultra-high molecular weight polymer corrosion-resistant and waterproof light post along the GG direction; Figure 4 A top view of an ultra-high molecular weight polymer corrosion-resistant and waterproof light post provided as an embodiment; Figure 5 for Figure 4An enlarged schematic diagram of a type of ultra-high molecular weight corrosion-resistant and waterproof light post at point A; Figure 6 A perspective view of the fixing ring, mounting ring frame, and rolling support provided in the embodiment; Figure 7 A cross-sectional view of the rolling support provided in the embodiment; In the above figures: 1. Platform; 2. Column; 21. Ultra-high molecular weight polymer (UHMWPE) pile; 22. Reinforcing ring; 23. Fixing bolt; 24. Vertical corner plate; 3. Manhole; 4. Platform railing; 5. Lightning rod; 6. Control box; 7. Solar cell bracket; 8. Fixing ring; 81. Break; 82. Track groove; 9. Mounting ring frame; 91. First mounting ring groove; 92. Second mounting ring groove; 93. Connecting hole; 10. Rolling support; 101. Bolt body; 102. Threaded sleeve; 103. Rolling groove; 104. Rolling ring; 11. Braking component; 111. Horizontal bar; 112. Adjusting bolt; 12. Ladder; 13. Guardrail; 131. Vertical bar; 132. C-shaped bar. Detailed Implementation

[0013] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other. For ease of description, the terms "upper," "lower," "left," and "right" appearing below only indicate that they correspond to the upper, lower, left, and right directions in the accompanying drawings and do not limit the structure.

[0014] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0015] Examples, such as Figures 1-7 As shown, this utility model provides an ultra-high molecular weight polymer corrosion-resistant and waterproof light post, including a column 2. A platform 1 is provided on the top of the column 2. A manhole 3 and a platform railing 4 are provided on the platform 1. A lightning rod 5, a control box 6, and a solar panel bracket 7, all connected to the platform 1, are provided on the inner side of the platform railing 4. The control box 6 is located at the center of the platform 1. The top of the control box 6 is used to install the light beacon. The solar panel bracket 7 is used to install the solar panel. The control box 6 is used to install the power supply for the light beacon, the controller for energy storage of the solar panel, the inverter, and the rectifier. The light beacon, power supply, solar panel, controller, inverter, and rectifier are existing mature technologies and will not be described in detail here.

[0016] Based on this, the column 2 provided by this utility model includes multiple ultra-high molecular weight polymer (UHMWPP) pile cylinders 21 arranged vertically. A reinforcing ring 22 is provided inside adjacent UHMWPP pile cylinders 21. The reinforcing ring 22 is provided with two rings of fixing bolts 23 connecting two adjacent UHMWPP pile cylinders 21. Multiple evenly distributed vertical corner plates 24 are provided on the inner side of the reinforcing ring 22. The vertical corner plates 24 are vertically connected to multiple reinforcing rings 22. A fixing ring 8 is fixedly provided on the top of the platform 1. The fixing ring 8 is provided with a break 81 at the position corresponding to the manhole 3. A C-shaped mounting ring frame 9 is provided on the fixing ring 8. The mounting ring frame 9 is connected to the solar cell bracket 7 by positioning bolts. Multiple rolling support members 10 that roll with the fixing ring 8 are provided on the side of the mounting ring frame 9. Braking members 11 that cooperate with the mounting ring frame 9 are provided on the side of the platform guardrail 4.

[0017] Specifically, the ultra-high molecular weight polymer (UHMWPP) pile 21 provides better corrosion resistance for this device. As a unit, the UHMWPP pile 21 can be connected to other units using reinforcing rings 22 and fixing bolts 23 to provide the required actual height for this device. For the interior of the column 2, this invention uses a reinforcing ring + vertical corner plate. The vertical corner plate 24 is connected to the reinforcing ring 22 at the corresponding position by fixing bolts 23. At the corresponding bottom and top flange positions of the column 2, bolts are used to connect to the corresponding nodes, thereby forming the internal skeleton of the column 2 to improve the overall structural strength of the column 2. Furthermore, the fixing ring 8 is not sealed at the position corresponding to the manhole 3, which ensures that workers can get on and off through the manhole 3. At the same time, the fixing ring 8 provides a rotation adjustment path for the mounting ring frame 9. The central angle corresponding to the mounting ring frame 9 is smaller than the central angle corresponding to the fixing ring 8. The mounting ring frame 9 can be rotated and adjusted along the ring surface of the fixing ring 8. As the connecting base of the solar cell support 7, the mounting ring frame 9 can realize the adjustment of the solar cell support 7. The stability of the mounting ring frame 9 and the solar cell support 7 is ensured by the braking component 11 and the rolling support component 10, which is conducive to improving the overall utilization rate of this device.

[0018] To improve the rotational fit performance between the mounting ring 9 and the fixed ring 8, the rolling support 10 provided by this utility model includes a bolt body 101 that is horizontally connected to the mounting ring 9. A threaded sleeve 102 is provided on the bolt body 101. A rolling groove 103 is provided on the side of the threaded sleeve 102. A rolling ring 104 is provided in the rolling groove 103. A track groove 82 is provided on the side of the fixed ring 8. The ring surface of the rolling ring 104 rolls with the top and bottom surfaces of the track groove 82. In this design, the total height of the inner ring of the mounting frame 9 is greater than the total height of the fixed ring 8, and the fixed ring 8 is essentially nested inside the mounting frame 9. The track groove 82 of the fixed ring 8 faces the center of the platform 1, while the connection direction of the bolt body 101 faces the track groove 82. After the threaded sleeve 102 and the bolt body 101 establish a threaded connection, their radial positions remain unchanged. The threaded sleeve 102 provides a rolling circumference for the rolling ring 104, i.e., a rolling groove 103. By rotating the safety frame 9, the rolling ring 104 can roll along the top and bottom surfaces of the track groove 82, and provides anti-overturning force for the mounting frame 9. This facilitates the adjustment of the actual installation angle of the solar cell bracket 7, allowing it to better perform its energy storage function.

[0019] Furthermore, according to actual energy storage needs, this utility model provides two sets of solar cell brackets 7. The center distances between the two sets of solar cell brackets 7 and the mounting ring 9 are different, and they are staggered circumferentially. One set of solar cell brackets 7 is the primary one, and the other is the secondary one. To facilitate the installation of the two sets of solar cell brackets, the mounting ring 9 provided by this utility model includes a first mounting ring groove 91 and a second mounting ring groove 92 concentrically distributed. Both the first mounting ring groove 91 and the second mounting ring groove 92 are provided with at least one ring of connecting holes 93 arranged in a circular array. A connecting plate is provided at the bottom of the vertical support leg of the solar cell bracket 7. The connecting plate is provided with through holes, and the through holes are connected to the connecting holes 93 by positioning bolts. The connecting holes 93 provide sufficient selection margin for installing the solar cell brackets 7. By selecting different connecting holes 93 for connection, the staggered angle of the two solar cell brackets 7 can be adjusted.

[0020] To improve the stability of the safety ring 9 and the solar cell support 7, this invention provides a braking component 11 to brake the relative position of the mounting ring 9 and the fixed ring 8. The braking component 11 includes a horizontal rod 111 connected to the platform railing 4. The positions of the horizontal rod 111 and the platform railing 4 are fixed. An adjusting bolt 112, threadedly connected to the horizontal rod 111, engages with a connecting hole 93. By changing the vertical height of the adjusting bolt 112, the braking point of the braking component 11 can be inserted into and removed from the connecting hole 93, thereby achieving the functions of positioning and releasing the positioning.

[0021] Furthermore, this utility model provides a ladder 12 and a corresponding guardrail 13 on the side of the column 2. The ladder 12 is vertically opposite the manhole 3. The guardrail 13 includes multiple vertical bars 131, and multiple pairs of vertically spaced C-shaped bars 132 are provided on the vertical bars 131. Each pair of C-shaped bars 132 is joined vertically and its ends are connected to the ladder 12. By using double-bar parallel C-shaped bars 132, the actual structural strength of the guardrail 13 can be improved, which is beneficial to improving the safety protection performance of the guardrail 13.

[0022] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the present utility model.

Claims

1. A type of ultra-high molecular weight polymer corrosion-resistant and waterproof light post, comprising a column, a platform at the top of the column, a manhole and a platform railing on the platform, and a lightning rod, a control box and a solar cell bracket connected to the platform on the inner side of the platform railing, characterized in that, The support column comprises multiple ultra-high molecular weight polymer (UHMWPP) piles arranged vertically. Reinforcing rings are installed inside adjacent UHMWPP piles. Each reinforcing ring has two sets of fixing bolts connecting adjacent UHMWPP piles. Multiple evenly distributed vertical corner plates are installed on the inner side of each reinforcing ring, vertically connecting the reinforcing rings. A fixing ring is fixedly installed on the top of the platform. The fixing ring has a break at the position corresponding to the manhole. A C-shaped mounting ring frame is installed on the fixing ring. The mounting ring frame is connected to the solar cell bracket via positioning bolts. Multiple rolling supports that roll in cooperation with the fixing ring are installed on the side of the mounting ring frame. Braking components that cooperate with the mounting ring frame are installed on the side of the platform railing.

2. The super high molecular corrosion resistant waterproof light pile according to claim 1, characterized in that, The rolling support includes a bolt body that is horizontally connected to the mounting ring frame. The bolt body is provided with a threaded sleeve. The side of the threaded sleeve is provided with a rolling groove. A rolling ring is provided in the rolling groove. The side of the fixed ring is provided with a track groove. The ring surface of the rolling ring rolls in contact with the top and bottom surfaces of the track groove.

3. The super high molecular corrosion resistant waterproof light pile according to claim 2, characterized in that, The mounting frame includes a first mounting ring groove and a second mounting ring groove that are concentrically distributed. Each of the first mounting ring groove and the second mounting ring groove is provided with at least one ring of connecting holes arranged in a circular array. The braking component mates with the connecting holes.

4. The super high molecular corrosion resistant waterproof light pile according to claim 3, characterized in that, The braking component includes a horizontal rod, on which an adjusting bolt is threadedly connected, and the adjusting bolt engages with a connecting hole.

5. The super high molecular corrosion resistant waterproof light pile according to claim 1 or 4, characterized in that, The side of the column is provided with a ladder and a corresponding guardrail. The guardrail includes multiple vertical bars, and multiple pairs of C-shaped bars are provided on the vertical bars at intervals. Each pair of C-shaped bars is joined vertically and its ends are connected to the ladder.

Citation Information

Patent Citations

  • Ultrahigh molecular weight polyethylene light beacon

    CN201442645U