An assembling method of a street lamp pole

By installing a housing unit and a cavity forming part on existing street light poles, the difficulties and strength issues of adding equipment to light poles are solved, enabling convenient equipment installation and functional expansion, and reducing production and installation costs.

CN116538478BActive Publication Date: 2025-12-30FSL LIGHTING EQUIP CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310371967.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-07
Publication Date
2025-12-30
Estimated Expiration
2043-04-07

AI Technical Summary

Technical Problem

Adding intelligent control and monitoring equipment to existing street light poles presents challenges such as high difficulty, unavoidable damage to the pole's strength, high production and installation costs, and low efficiency.

Method used

A method for assembling a street light pole is provided. By setting an outer shell unit on an existing light pole, including a groove forming part and a cavity forming part, and adopting a pre-positioning, assembly covering and fixing process, the outer shell unit is arranged in an array along the circumference of the pole core to form a groove and a cavity, which facilitates the addition of equipment and functional expansion.

Benefits of technology

It reduces assembly difficulty, improves the strength of the light pole and the convenience of equipment installation, and realizes the convenient expansion of street light functions and stable fixation of equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116538478B_ABST
    Figure CN116538478B_ABST
Patent Text Reader

Abstract

The application discloses an assembling method of a street lamp pole, which comprises a pole core and a plurality of shell units arranged along the circumference of the pole core. Each shell unit comprises a sliding groove forming part for forming a sliding groove arranged along the extending direction of the outer wall of the pole core, and a first cavity forming part for forming a first cavity in cooperation with the outer wall of the pole core and the sliding groove forming part. The assembling method comprises the following steps: a pre-positioning step of abutting the sliding groove forming part of one shell unit against the outer wall of the pole core; a fitting and covering step of abutting the sliding groove forming part of each of the other shell units against the outer wall of the pole core one by one, and connecting the first cavity forming part with the first cavity forming part or the sliding groove forming part of the adjacent shell unit to form a first cavity, until the pole core is covered by the shell units; and a fixing step of fixing the sliding groove forming part to the pole core. The application can be directly reformed on the basis of the existing street lamp, and is convenient to assemble and convenient to add external equipment in the later period.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of lighting bracket technology, and more particularly to a method for assembling a street light pole. Background Technology

[0002] As cities develop, streetlights are expanding their functions beyond just illumination. The construction of smart cities, in particular, relies heavily on multifunctional streetlights. With the development of IoT technology, more and more intelligent control, monitoring, and command equipment will be installed on light poles.

[0003] However, installing various devices on traditional light poles is difficult and inevitably damages the strength and protection of the poles. To ensure the strength of the light poles and facilitate the installation of functional equipment, traditional light poles are usually upgraded and replaced with light poles with grooves. However, these light poles have problems such as high production and installation costs, difficulty in nesting, and low production efficiency.

[0004] Therefore, it is necessary to provide a street light pole that can be directly modified from existing street lights and is easy to assemble and expand its functions. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to provide a method for assembling street light poles, which can be directly modified on the basis of existing street lights, is easy to assemble, and facilitates the later addition of external equipment.

[0006] To solve the above-mentioned technical problems, the present invention provides a method for assembling a street light pole. The street light pole includes a pole core and outer shell units arranged in a circumferential array along the pole core. The outer shell unit includes a groove forming part for forming a groove arranged along the extending direction of the outer wall of the pole core; and a first cavity forming part for cooperating with the outer wall of the pole core and the groove forming part to form a first cavity. The method for assembling the street light pole includes the following steps:

[0007] In the pre-positioning process, the groove forming part of a housing unit abuts against the outer wall of the rod core;

[0008] In the assembly and covering process, the groove forming part of other outer shell units is brought into contact with the outer wall of the rod core one by one, and the first cavity forming part is connected with the first cavity forming part or groove forming part of the adjacent outer shell unit to form the first cavity, until the rod core is covered by the outer shell unit.

[0009] In the fixing process, the groove forming part is fixed to the rod core.

[0010] As an improvement to the above solution, the groove forming part includes a first abutting plate, and a first rib and a second rib arranged parallel to both sides of the first abutting plate, wherein the first abutting plate, the first rib, and the second rib form a first groove.

[0011] The first cavity forming part is symmetrically arranged on both sides of the first groove and is connected to the first stiffening plate and the second stiffening plate;

[0012] In the pre-positioning process and the assembly and covering process, the first abutting plate abuts against the outer wall of the rod core;

[0013] In the fixing process, the first abutment plate is fixed to the rod core.

[0014] As an improvement to the above solution, the chute forming part further includes a retaining plate, which is arranged parallel to both sides of the chute to form a retaining opening communicating with the chute.

[0015] As an improvement to the above solution, the outer shell unit further includes a second cavity forming part, which is used to cooperate with the first cavity forming part and the slide groove forming part to form a second cavity. The second cavity forming part is connected to the adjacent plates of the two adjacent slide grooves.

[0016] As an improvement to the above solution, the rod core is cylindrical, and the first cavity forming part is provided on both sides of the first groove of each outer shell unit;

[0017] The groove forming part includes a second abutment plate, a third rib plate and a fourth rib plate. The second abutment plate is connected to the third rib plate and abuts against the rod core and the fourth rib plate of the adjacent outer shell unit. The second abutment plate, the third rib plate and the fourth rib plate of the adjacent outer shell unit form a second groove.

[0018] In the pre-positioning process and the assembly and covering process, the second abutting plate abuts against the outer wall of the rod core;

[0019] In the fixing process, the second abutment plate is fixed to the rod core.

[0020] As an improvement to the above solution, the first cavity forming part further includes a limiting plate, which is connected to the fourth rib plate and is disposed on the side of the second abutment plate away from the second slide groove.

[0021] During the assembly and covering process, the limiting plate abuts against the second abutting plate.

[0022] As an improvement to the above solution, the rod core is a conical cylinder, and the outer wall of the rod core has a polygonal cross-section.

[0023] The first cavity forming part includes a connecting plate connected to the groove forming part, and an overlapping plate for connecting with the groove forming part of an adjacent housing unit, wherein the connecting plate and the overlapping plate form a preset angle.

[0024] As an improvement to the above solution, the card plate includes a first card plate and a second card plate respectively disposed on both sides of the slide groove. The thickness of the first card plate is greater than that of the second card plate. When the slide groove forming part of another housing unit abuts against the outer wall of the rod core, the outer wall of the overlapping plate is flush with the first card plate of the adjacent housing unit.

[0025] As an improvement to the above solution, in the assembly and covering process, the overlapping plate is laid on the second clamping plate of the adjacent shell unit, and is flush with the end face of the second clamping plate of the adjacent shell unit at the opening.

[0026] As an improvement to the above solution, the rod core is a conical cylinder, and the first cavity forming part is provided on both sides of the first groove of each outer shell unit, and the first cavity forming parts of adjacent outer shell units are connected.

[0027] Implementing this invention has the following beneficial effects:

[0028] This invention discloses a method for assembling a street light pole. The outer shell unit is spliced ​​sequentially around the pole core in the circumferential direction, and finally covers the pole core in the circumferential direction. The outer shell unit does not need to be nested outside the pole core, which reduces the assembly difficulty and makes it convenient to directly modify existing street light poles installed on the roadside.

[0029] During the assembly process, each outer shell unit can be automatically adjusted and adapted to achieve positioning. This can reduce the positioning accuracy of the first outer shell unit and the rod core along the extension direction of the rod core in the pre-positioning process, making assembly and positioning more convenient and faster.

[0030] The first cavity formed by the first cavity forming part, the outer wall of the rod core, and the groove forming part can provide protection for the cylindrical rod core and at the same time improve the strength of the groove forming part;

[0031] Each outer shell unit arranged in a circumferential array along the pole core is formed by a groove forming part, which forms a groove along the extension direction of the outer wall of the pole core. Various external devices are fixed in different grooves to realize the installation of devices at different orientations and angles on the street light pole.

[0032] Various external devices can be installed at different heights by fixing them to different positions on the same slide rail, making it convenient for street light poles to expand their functions. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of the first embodiment of the street light pole involved in the assembly method of the street light pole of the present invention;

[0034] Figure 2 yes Figure 1 A schematic diagram of the decomposed structure;

[0035] Figure 3 yes Figure 2 A schematic diagram of the outer shell unit;

[0036] Figure 4 This is a schematic diagram of the second embodiment of the street light pole involved in the assembly method of the street light pole of the present invention;

[0037] Figure 5 yes Figure 4 A schematic diagram of the decomposed structure;

[0038] Figure 6 yes Figure 5 A schematic diagram of the outer shell unit;

[0039] Figure 7 This is a schematic diagram of the third embodiment of a street light pole involved in the assembly method of a street light pole of the present invention;

[0040] Figure 8 yes Figure 8 A schematic diagram of the decomposed structure;

[0041] Figure 9 yes Figure 7 A schematic diagram of the outer shell unit. Detailed Implementation

[0042] To make the objectives, technical solutions, and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings.

[0043] First, combined Figures 1 to 9 The composition and structure of the street light pole involved in the assembly method of the street light pole of the present invention will be described.

[0044] The streetlight pole includes a cylindrical pole core 1 and an outer shell unit 2, the outer shell units 2 being arranged in a circumferential array along the pole core 1. The outer shell unit 2 includes staggered groove forming portions 21 and first cavity forming portions 22, wherein the groove forming portions 21 are used to form grooves extending along the outer wall of the pole core 1, and the first cavity forming portions 22 are used to cooperate with the outer wall of the pole core 1 and the groove forming portions 21 to form a first cavity A.

[0045] Each outer shell unit 2 arranged in a circumferential array along the pole core 1 has a groove formed by a groove forming part 21, which extends along the outer wall of the pole core 1. Various external devices are fixed in different grooves to realize the installation of devices at different angles on the street light pole. Various external devices are fixed in different positions of the same groove to realize the installation of devices at different heights, which facilitates the expansion of various functions of the street light pole.

[0046] The outer shell unit 2 is arranged in a circumferential array along the pole core 1. The outer shell unit 2 directly covers the pole core 1 from the outside. The outer shell unit 2 does not need to be nested outside the pole core 1, which reduces the assembly difficulty and makes it convenient to directly modify the existing street light poles installed on the roadside.

[0047] The first cavity A formed by the first cavity forming part 22, the outer wall of the rod core 1, and the groove forming part 21 can provide protection for the cylindrical rod core 1 and at the same time improve the strength of the groove forming part 21.

[0048] Specifically, the groove forming part 21 includes a first abutting plate 211, and a first rib plate 212 and a second rib plate 213 arranged parallel to both sides of the first abutting plate 211. The first abutting plate 211, the first rib plate 212, and the second rib plate 213 form a first groove B.

[0049] The first cavity forming part 22 is symmetrically arranged on both sides of the first groove B and is connected to the first stiffening plate 212 and the second stiffening plate 213.

[0050] Preferably, the chute forming part 21 further includes a retaining plate 214, which is arranged parallel to both sides of the chute to form a retaining opening communicating with the chute. The distance between the retaining plates 214 on both sides of the retaining opening is less than the width of the chute. The retaining plates 214 on both sides of the retaining opening provide protection and limit for the fasteners installed in the chute and used to fix external equipment, preventing the fasteners installed in the chute from falling out of the chute, thereby improving safety.

[0051] Secondly, regarding the aforementioned street light poles, this invention discloses a method for assembling street light poles, the method comprising the following steps:

[0052] In the pre-positioning process, the first abutting plate 211 of the groove forming part 21 of the outer shell unit 2 is kept in contact with the outer wall of the rod core 1 along the extension direction of the outer wall;

[0053] In the assembly and covering process, the first abutting plate 211 of the groove forming part 21 of other outer shell units 2 is kept in contact with the outer wall of the rod core 1 along the extension direction of the outer wall, and the first cavity forming part 22 is connected with the first cavity forming part 22 or groove forming part 21 of the adjacent outer shell unit 2 to form the first cavity A, until the outer shell unit 2 covers the rod core 1 circumferentially.

[0054] In the fixing process, the first abutment plate 211 of the groove forming part 21 is fixed to the rod core 1.

[0055] The pole core 1 can be an existing street light pole installed on the roadside, or it can be a newly manufactured cylindrical pole core 1.

[0056] For cylindrical rod cores 1 of different shapes, the present invention provides different outer shell unit 2 structures adapted to them, and the various embodiments are described in detail below.

[0057] like Figures 1 to 3 As shown, the present invention provides a first embodiment of a street light pole. When the pole core 1 is cylindrical, that is, the cross-sectional area of ​​the pole core 1 is equal at all points along the axial direction, in order to simplify the splicing process of the outer shell unit 2 and improve the assembly efficiency, it is preferable that the first cavity forming part 22 is provided on both sides of the first groove B of each outer shell unit 2. In addition to the first abutting plate 211 used to form the first groove B, and the first rib plate 212 and the second rib plate 213 arranged parallel to both sides of the first abutting plate 211, the groove forming part 21 also includes a second abutting plate 216, a third rib plate 217 and a fourth rib plate 218. The second abutting plate 216 is connected to the third rib plate 217 and abuts against the pole core 1 and the fourth rib plate 218 of the adjacent outer shell unit 2. The second abutting plate 216, the third rib plate 217 and the fourth rib plate 218 of the adjacent outer shell unit 2 form a second groove C.

[0058] Furthermore, the first cavity forming part 22 also includes a limiting plate 221, which is connected to the fourth rib plate 218. The limiting plate 221 is disposed on the side of the second abutment plate 216 opposite to the second slide groove C. In the assembly and covering process, the limiting plate 221 abuts against the second abutment plate 216, making the structure between adjacent outer shell units 2 more stable, while effectively isolating the first cavity A from the external space, forming comprehensive protection around the rod core 1.

[0059] To better protect the core 1 and strengthen the outer shell unit 2 itself, the outer shell unit 2 in this embodiment further includes a second cavity forming part 23. The second cavity forming part 23 is used to cooperate with the first cavity forming part 22 and the slide groove forming part 21 to form a second cavity D. The second cavity forming part 23 is connected to the adjacent retaining plates 214 of the two adjacent slide grooves.

[0060] Furthermore, the present invention also provides a method for assembling a street lamp pole with a straight cylindrical core 1, the method comprising the following steps:

[0061] In the pre-positioning process, the first abutting plate 211 and the second abutting plate 216 of the outer shell unit 2 abut against the outer wall of the rod core 1;

[0062] In the assembly and covering process, the first abutting plate 211 and the second abutting plate 216 of the other outer shell units 2 are abutted against the outer wall of the rod core 1 one by one, and the limiting plate 221 of the first cavity forming part 22 is connected to the second abutting plate 216 of the adjacent outer shell unit 2 to form the first cavity A, until the rod core 1 is covered by the outer shell unit 2.

[0063] In the fixing process, the first abutment plate 211 is fixed to the rod core 1.

[0064] like Figures 4 to 6 As shown, the present invention provides a second embodiment of a street light pole. The pole core 1 is a conical cylindrical shape, and the cross-section of the outer wall of the pole core 1 is polygonal. The number of outer shell units 2 covering the outer periphery of the pole core 1 corresponds to the number of corners in the cross-section of the pole core 1, and they are arranged in an array along the circumference of the pole core 1. The outer shell unit 2 includes a groove forming part 21 and a first cavity forming part 22. The groove forming part 21 is used to form a groove along the extension direction of the outer wall of the pole core 1. The groove forming part 21 includes a retaining plate 214, a first abutting plate 211, and a first rib 212 and a second rib 213 arranged parallel to both sides of the first abutting plate 211. The first abutting plate 211, the first rib 212, and the second rib 213 form a first groove B. The retaining plate 214 is arranged parallel to both sides of the first groove B and is used to form a slot communicating with the first groove B. The first cavity forming part 22 of the outer shell unit 2 specifically includes a connecting plate 222 connected to the groove forming part 21, and an overlapping plate 223 for connecting with the groove forming part 21 of the adjacent outer shell unit 2, wherein the connecting plate 222 and the overlapping plate 223 form a preset angle.

[0065] In this embodiment, the clamping plate 214 specifically includes a first clamping plate 214a and a second clamping plate 214b respectively disposed on both sides of the slide groove. The thickness of the first clamping plate 214a is greater than that of the second clamping plate 214b. When the slide groove forming part 21 of another outer shell unit 2 abuts against the outer wall of the rod core 1, the outer wall of the overlapping plate 223 is flush with the first clamping plate 214a of the adjacent outer shell unit 2. In addition, in the assembly and covering process, the overlapping plate 223 is laid on the second clamping plate 214b of the adjacent outer shell unit 2 and is flush with the end face of the second clamping plate 214b of the adjacent outer shell unit 2 at the bayonet opening. This effectively isolates the first cavity A from the external space, providing comprehensive protection around the rod core 1 while achieving the same limiting effect on both sides of the bayonet opening for the fasteners used to fix external equipment, facilitating the sliding assembly of the fasteners.

[0066] Furthermore, the present invention also provides a method for assembling a street light pole with a conical cylindrical core 1, the method comprising the following steps:

[0067] In the pre-positioning process, the first abutting plate 211 of the outer shell unit 2 abuts against the outer wall of the rod core 1;

[0068] In the assembly and covering process, the first abutting plate 211 of each other outer shell unit 2 is abutted against the outer wall of the rod core 1, and the first cavity forming part 22 is connected to the sliding groove forming part 21 of the adjacent outer shell unit 2 to form the first cavity A, until the rod core 1 is covered by the outer shell unit 2; in this process, the overlapping plate 223 of the first cavity forming part 22 is placed on the second clamping plate 214b of the sliding groove forming part 21 of the adjacent outer shell unit 2, and is flush with the end face of the second clamping plate 214b of the adjacent outer shell unit 2 at the clamping opening;

[0069] In the fixing process, the first abutment plate 211 is fixed to the rod core 1.

[0070] like Figures 7 to 9As shown, the present invention provides a third embodiment of a street light pole, wherein the pole core 1 is a conical cylindrical shape, and the outer shell units 2 covering the outer periphery of the pole core 1 are arranged in a circumferential array along the pole core 1. The outer shell unit 2 includes a groove forming part 21 and a first cavity forming part 22, wherein the groove forming part 21 is used to form a groove arranged along the extension direction of the outer wall of the pole core 1, the groove forming part 21 includes a retaining plate 214, a first abutting plate 211, and a first rib plate 212 and a second rib plate 213 arranged parallel to both sides of the first abutting plate 211. The first abutting plate 211, the first rib plate 212, and the second rib plate 213 form a first groove B, and the retaining plate 214 is arranged parallel to both sides of the first groove B to form a locking opening communicating with the first groove B; each outer shell unit 2 has a first cavity forming part 22 on both sides of the first groove B, and the first cavity forming part 22 is connected to the first rib plate 212 and the second rib plate 213. The first cavity forming part 22 of the adjacent outer shell unit 2 is connected, and the outer wall of the rod core 1 cooperates with the first cavity forming part 22 and the groove forming part 21 of the adjacent outer shell unit 2 to form the first cavity A.

[0071] Furthermore, the present invention also provides a method for assembling a street light pole with a conical cylindrical core 1, the method comprising the following steps:

[0072] In the pre-positioning process, the first abutting plate 211 of the outer shell unit 2 abuts against the outer wall of the rod core 1;

[0073] In the assembly and covering process, the first abutting plate 211 of other outer shell units 2 is abutted against the outer wall of the rod core 1 one by one, and the first cavity forming part 22 is connected to the first cavity forming part 22 of the adjacent outer shell unit 2 to form the first cavity A, until the rod core 1 is covered by the outer shell unit 2.

[0074] In the fixing process, the first abutment plate 211 is fixed to the rod core 1.

[0075] It should be noted that in this invention, the fixing process can be interspersed between the pre-positioning process and the assembly and covering process, as well as between the two assembly and covering processes. That is, after the first abutting plate 211 of each outer shell unit 2 is positioned and abutted against the rod core 1, the first abutting plate 211 of the outer shell unit 2 is fixed to the rod core 1; or after the pre-positioning process is completed, the first abutting plate 211 of the outer shell unit 2 is fixed to the rod core 1, and then the assembly and covering process is carried out. After the rod core 1 is covered by each outer shell unit 2 in the circumference, the other assembled outer shell units 2 are fixed to the rod core 1. Preferably, after the pre-positioning process and the assembly and covering process are completed for each outer shell unit 2 in the circumference of the rod core 1, the first abutting plate 211 of each outer shell unit 2 is fixed to the rod core 1. During the assembly process, the automatic adjustment and adaptation of each outer shell unit 2 can be realized to achieve positioning. This can weaken the positioning accuracy of the first outer shell unit 2 and the rod core 1 along the extension direction of the rod core 1 in the pre-positioning process, making the assembly and positioning more convenient and faster.

[0076] The above description is merely a preferred embodiment of the present invention and should not be construed as limiting the scope of the invention. Therefore, any equivalent variations made in accordance with the claims of the present invention are still within the scope of the present invention.

Claims

1. An assembling method of a street lamp pole, the street lamp pole comprising a pole core and a plurality of shell units arranged in a circumferential array along the pole core, each of the shell units comprising a sliding groove forming portion for forming a sliding groove arranged along an extending direction of an outer wall of the pole core, the sliding groove forming portion comprising a first abutting plate, a second abutting plate, a third rib plate, a fourth rib plate, and a first rib plate and a second rib plate arranged in parallel on two sides of the first abutting plate, the first abutting plate, the first rib plate and the second rib plate forming a first sliding groove; the second abutting plate being connected with the third rib plate and abutting against the pole core and the fourth rib plate of an adjacent shell unit, the second abutting plate, the third rib plate and the fourth rib plate of the adjacent shell unit forming a second sliding groove; and a first cavity forming portion for forming a first cavity in cooperation with the outer wall of the pole core and the sliding groove forming portion, the first cavity forming portion being arranged symmetrically on two sides of the first sliding groove and connected with the first rib plate and the second rib plate, the first cavity forming portion further comprising a limiting plate connected with the fourth rib plate, the limiting plate being arranged on a side of the second abutting plate away from the second sliding groove. The assembling method of the street lamp pole is characterized in that it comprises the following steps: a pre-positioning step of abutting the first abutting plate and the second abutting plate of the sliding groove forming portion of a shell unit against the outer wall of the pole core; a covering assembling step of abutting the first abutting plate and the second abutting plate of each of the other shell units against the outer wall of the pole core one by one, and abutting the limiting plate of the first cavity forming portion against the second abutting plate of an adjacent shell unit to form a first cavity, and abutting the limiting plate against the second abutting plate until the pole core is covered by the shell units; a fixing step of fixing the first abutting plate and the second abutting plate of the sliding groove forming portion to the pole core.

2. The method of assembling a street light pole according to claim 1, wherein, The sliding groove forming portion further comprises a clamping plate arranged in parallel on two sides of the sliding groove to form a clamping opening communicating with the sliding groove.

3. The method of assembling a street light pole according to claim 2, wherein, The shell unit further comprises a second cavity forming portion for forming a second cavity in cooperation with the first cavity forming portion and the sliding groove forming portion, the second cavity forming portion being connected with adjacent clamping plates of two adjacent sliding grooves.

4. The method of assembling a street light pole of claim 1, wherein, The pole core is in a straight cylindrical shape, and the first cavity forming portion is arranged on two sides of the first sliding groove of each of the shell units.

2. The assembling method of the street lamp pole according to claim 1, wherein the pole core is in a straight cylindrical shape, and the first cavity forming portion is arranged on two sides of the first sliding groove of each of the shell units.

Citation Information

Patent Citations

  • Lamp post and intelligent street lamp with lamp post

    CN212408460U

  • Lamp post and street lamp

    CN212901210U