Concrete telegraph pole structure

By introducing a detachable locking component into the concrete utility pole, the problem of loose connection between the threaded post and the nut was solved, achieving a stable connection between the pole assembly and the embedded base, thus improving the stability and safety of the connection.

CN223893910UActive Publication Date: 2026-02-10GUANGDONG XINRONGRONG POWER TECH CO LTD
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Patent Information

Application Number
CN202520378070.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-02-10
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

The threaded post and nut connection of existing concrete utility poles is prone to loosening, resulting in unstable pole assembly connections and easy wobbling.

Method used

A concrete utility pole structure including a pre-embedded base and a pole assembly was designed. A detachable locking component is adopted. By moving the locking component between the locked position and the unlocked position, a stable connection between the pole assembly and the pre-embedded base is achieved. Loosening is prevented by the cooperation of locking mating parts, moving parts and locking restraint parts.

Benefits of technology

This improves the connection stability between the embedded base and the pole assembly, prevents loosening, and ensures the safety and stability of the utility pole.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a concrete telegraph pole structure which comprises a pre-buried base and a pole body assembly, the pole body assembly is detachably arranged on the pre-buried base, and the pre-buried base is provided with a locking assembly; the locking assembly is movably arranged relative to the pre-embedded base so that reciprocating motion between a locking position and an unlocking position can be achieved. When the locking assembly is located at the locking position, the locking assembly and the rod body assembly are mutually locked so as to restrain the rod body assembly from moving relative to the embedded base to cause separation; when the locking assembly is located at the unlocking position, the locking assembly and the rod body assembly are mutually unlocked, and the rod body assembly can move relative to the embedded base to achieve separation. Compared with the prior art, under the action of the locking assembly, connection between the pre-embedded base and the rod body assembly is further strengthened, so that rod body shaking caused by looseness of the detachable connecting structure is prevented, the overall connecting stability is improved, and safety is ensured.
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Description

Technical Field

[0001] This utility model relates to the field of concrete utility pole technology, and in particular to a concrete utility pole structure. Background Technology

[0002] A concrete utility pole is a type of pole primarily composed of concrete. In existing pole structures, assembly involves fixing a pre-embedded base to the bottom surface using concrete, and then securing the pole assembly to the pre-embedded base using bolts and nuts.

[0003] The problem with the existing technology is that the connection between the threaded column and the nut is unstable when the nut becomes loose, which can cause the connection of the rod assembly to be unstable and prone to shaking. Further improvements are needed. Utility Model Content

[0004] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes a concrete utility pole structure.

[0005] A concrete utility pole structure designed for this purpose includes an embedded base and a pole assembly, wherein the pole assembly is detachably mounted on the embedded base, and the embedded base is provided with a locking component;

[0006] The locking component is movably configured relative to the pre-embedded base to reciprocate between the locked position and the unlocked position;

[0007] When the locking component is in the locked position, the locking component and the rod assembly are locked together to restrict the rod assembly from moving relative to the pre-embedded base and causing it to disengage.

[0008] When the locking component is in the unlocked position, the locking component and the rod assembly unlock each other, and the rod assembly can move relative to the pre-embedded base to achieve separation.

[0009] Preferably, the locking assembly includes a locking mating part, a moving part, and a locking constraint part;

[0010] The locking mating component is provided with a locking mating groove, and the locking constraint component is provided on the moving component;

[0011] The movable component is movably mounted on the embedded base, and the locking component is mounted on the rod assembly;

[0012] The movement of the movable component relative to the embedded base can drive the locking constraint component to be inserted into or disengaged from the locking groove.

[0013] Preferably, the movable component is rotatably arranged relative to the pre-embedded base.

[0014] Preferably, the movable component is provided with a limiting constraint component that limits and constrains the movement of the movable component relative to the pre-embedded base.

[0015] Preferably, the limiting constraint assembly includes a limiting bolt, and the movable part is provided with a threaded hole, and the limiting bolt is threadedly connected in the threaded hole;

[0016] The embedded base is provided with a locking groove, and the end of the limiting bolt facing the locking groove is provided with a locking protrusion;

[0017] When the locking component is in the unlocked position, the movement of the limiting bolt relative to the threaded hole can cause the locking protrusion to be inserted into or disengaged from the locking groove.

[0018] Preferably, the pre-embedded base is provided with an annular groove;

[0019] The locking groove is disposed on the groove wall of the annular groove;

[0020] The limiting bolt extends through the threaded hole into the annular groove.

[0021] Preferably, the locking constraint is provided with a positioning trajectory groove with an open end, and a positioning post is provided in the locking groove;

[0022] When the locking constraint moves from the unlocked position to the locked position, the positioning post enters the positioning trajectory groove and moves to the end of the positioning trajectory groove to achieve abutment and limit.

[0023] Preferably, the embedded base has a circular structure, the movable component has an annular structure, and the movable component is sleeved on the peripheral wall of the embedded base.

[0024] Preferably, the pre-embedded base is provided with multiple threaded columns arranged in a circumferential array;

[0025] The rod assembly is provided with multiple through holes, and the threaded post passes through the through holes and extends upward;

[0026] The threaded column is threadedly connected to a locking nut, and the rod assembly is clamped and fixed on the locking nut and the pre-embedded base.

[0027] Preferably, the rod assembly consists of a connecting seat and a concrete rod.

[0028] Compared with the prior art, this utility model further strengthens the connection between the pre-embedded base and the rod assembly under the action of the locking component, so as to prevent the rod from shaking due to the loosening of the detachable connection structure, thereby improving the overall connection stability and ensuring safety. Attached Figure Description

[0029] Figure 1 This is a schematic diagram showing the locking component in the locked position.

[0030] Figure 2 This is a schematic diagram showing the locking component in the unlocked position.

[0031] Figure 3 for Figure 2 Enlarged structural diagram at point A in the middle.

[0032] Figure 4 This is one of the cross-sectional structural schematic diagrams of this utility model.

[0033] Figure 5 for Figure 4 Enlarged structural diagram at point B.

[0034] Figure 6 This is the second cross-sectional structural schematic diagram of this utility model.

[0035] Figure 7 for Figure 6 Enlarged structural diagram at point C. Detailed Implementation

[0036] The embodiments of the technical solution of this application will now be described in detail with reference to the accompanying drawings. These embodiments are only used to more clearly illustrate the technical solution of this application and are therefore merely examples, and should not be used to limit the scope of protection of this application.

[0037] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains; the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms “comprising” and “having”, and any variations thereof, in the specification, claims, and foregoing description of the drawings are intended to cover non-exclusive inclusion.

[0038] In the description of the embodiments of this application, technical terms such as "first" and "second" are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly indicating the number, specific order, or primary and secondary relationship of the indicated technical features.

[0039] In this document, the term "implementation" means that a specific feature, structure, or characteristic described in connection with an implementation may be included in at least one implementation of this application. The appearance of this phrase in various places in the specification does not necessarily refer to the same implementation, nor is it a separate or alternative implementation mutually exclusive with other implementations. It will be explicitly and implicitly understood by those skilled in the art that the implementations described herein can be combined with other implementations.

[0040] In the description of the embodiments in this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.

[0041] In the description of the embodiments of this application, the term "multiple" refers to two or more (including two), similarly, "multiple groups" refers to two or more (including two groups), and "multiple pieces" refers to two or more (including two pieces).

[0042] In the description of the embodiments of this application, the technical terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application.

[0043] In the description of the embodiments of this application, unless otherwise explicitly specified and limited, the technical terms such as "installation," "connection," "joining," and "fixing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in the embodiments of this application can be understood according to the specific circumstances.

[0044] See Figures 1-7A concrete utility pole structure includes an embedded base 10 and a pole assembly 20. The pole assembly 20 is detachably mounted on the embedded base 10, and the embedded base 10 is provided with a locking component 30. The locking component 30 is movably mounted relative to the embedded base 10 to reciprocate between a locked position and an unlocked position. When the locking component 30 is in the locked position, it is locked to the pole assembly 20 to prevent the pole assembly 20 from moving relative to the embedded base 10 and disengaging. When the locking component 30 is in the unlocked position, it is unlocked to the pole assembly 20, allowing the pole assembly 20 to move relative to the embedded base 10 and separate. In this embodiment, the effect achieved is that after the embedded base 10 and the pole assembly 20 are connected, the locking component 30 further moves them to the locked position to restrain them and prevent the detachable connection between the embedded base 10 and the pole assembly 20 from becoming loose.

[0045] In this invention, the locking assembly 30 includes a locking mating part 220, a movable part 310, and a locking constraint part 320. The locking mating part 220 is provided with a locking mating groove 230, and the locking constraint part 320 is disposed on the movable part 310. The movable part 310 is movably disposed on the pre-embedded base 10, and the locking mating part 220 is disposed on the rod assembly 20. The movable part 310, relative to the pre-embedded base 10, can drive the locking constraint part 320 to be inserted into or disengaged from the locking mating groove 230. After the connection between the pre-embedded base 10 and the rod assembly 20 is completed, the movable part 310 is driven to move the locking constraint part 320 relative to the locking mating part 220, so that the locking constraint part 320 enters the locking mating groove 230, thereby achieving a limiting constraint.

[0046] In this invention, the locking component 30 is movably configured relative to the pre-embedded base 10, and this movable configuration includes a moving configuration and a rotating configuration.

[0047] Furthermore, the movable component 310 is rotatably configured relative to the pre-embedded base 10. The advantage of the rotatable configuration of the movable component 310 is that when multiple locking mating parts 220 are configured to engage with the locking constraint parts 320, the rotatable movable component 310 can drive multiple locking constraint parts 320 to move at one time, thereby achieving rapid locking and rapid unlocking.

[0048] Furthermore, the movable component 310 is linearly movable relative to the embedded base 10. The movable component 310 is a moving block that moves linearly relative to the embedded base 10, and the moving block is slidably engaged with the embedded base 10 using a slide rail or slide groove. As the moving block moves, it drives the locking constraint component 320 to move into or out of the locking engagement groove 230.

[0049] like Figure 3 As shown, the movable component 310 is provided with a limiting constraint component 40 that mutually limits and constrains the pre-embedded base 10 to restrict the movement of the movable component 310 relative to the pre-embedded base 10. The function of the limiting constraint component 40 is to prevent the movable component 310 from moving arbitrarily and causing unlocking, thereby improving the locking stability.

[0050] like Figure 5 As shown, the limiting constraint assembly 40 includes a limiting bolt 420, and the movable part 310 is provided with a threaded hole 410, and the limiting bolt 420 is threadedly connected in the threaded hole 410.

[0051] The pre-embedded base 10 is provided with a locking groove 440, and the end of the limiting bolt 420 facing the locking groove 440 is provided with a locking protrusion 430;

[0052] When the locking component 30 is in the unlocked position, the movement of the limiting bolt 420 relative to the threaded hole 410 can cause the locking protrusion 430 to be inserted into or disengaged from the locking groove 440.

[0053] like Figure 5 As shown, the pre-embedded base 10 is provided with an annular groove 100; the locking groove 440 is provided on the groove wall of the annular groove 100; the limiting bolt 420 extends through the threaded hole 410 into the annular groove 100.

[0054] like Figure 3 As shown, the locking constraint member 320 is provided with a positioning trajectory groove 330 with one end open, and a positioning post 240 is provided in the locking engagement groove 230. When the locking constraint member 320 moves from the unlocked position to the locked position, the positioning post 240 enters the positioning trajectory groove 330 and moves to the end of the positioning trajectory groove 330 to achieve abutment and limit. The purpose of the positioning post 240 abutting and limiting the end of the positioning trajectory groove 330 is to lock the displacement of the constraint member 320, so that when it moves to the locked position, it cannot move further, thus letting the operator know that the locked position has been reached, serving as a reminder of the limit.

[0055] like Figure 5 As shown, the embedded base 10 has a circular structure, the movable part 310 has an annular structure, and the movable part 310 is sleeved on the peripheral wall of the embedded base 10.

[0056] like Figure 5As shown, the pre-embedded base 10 is arranged with multiple threaded posts 520 in a circumferential array; the rod assembly 20 is provided with multiple through holes 510, and the threaded posts 520 pass through the through holes 510 and extend upward; the threaded posts 520 are threadedly connected to locking nuts 530, and the rod assembly 20 is clamped and fixed on the locking nuts 530 and the pre-embedded base 10.

[0057] like Figure 4 As shown, the rod assembly 20 consists of a connecting seat 210 and a concrete rod 200.

[0058] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A concrete utility pole structure, comprising an embedded base (10) and a pole assembly (20), wherein the pole assembly (20) is detachably mounted on the embedded base (10), characterized in that: The pre-embedded base (10) is provided with a locking component (30); The locking component (30) is movably set relative to the pre-embedded base (10) to achieve reciprocating movement between the locked position and the unlocked position; When the locking component (30) is in the locked position, the locking component (30) and the rod assembly (20) are locked to each other to restrict the rod assembly (20) from moving relative to the pre-embedded base (10) and causing it to disengage; When the locking component (30) is in the unlocked position, the locking component (30) and the rod component (20) unlock each other, and the rod component (20) can move relative to the pre-embedded base (10) to achieve separation.

2. The concrete utility pole structure according to claim 1, characterized in that: The locking assembly (30) includes a locking mating part (220), a moving part (310), and a locking constraint part (320); The locking fitting (220) is provided with a locking fitting groove (230), and the locking constraint (320) is provided on the movable part (310); The movable component (310) is movably mounted on the pre-embedded base (10), and the locking fitting component (220) is mounted on the rod assembly (20); The movable part (310) relative to the embedded base (10) can drive the locking constraint (320) to be inserted into or disengaged from the locking groove (230).

3. A concrete utility pole structure according to claim 2, characterized in that: The movable component (310) is rotatably arranged relative to the pre-embedded base (10).

4. A concrete utility pole structure according to claim 3, characterized in that: The movable part (310) is provided with a limiting constraint component (40) that limits and constrains each other with the pre-embedded base (10) to restrict the movement of the movable part (310) relative to the pre-embedded base (10).

5. A concrete utility pole structure according to claim 4, characterized in that: The limiting constraint assembly (40) includes a limiting bolt (420), and the movable part (310) is provided with a threaded hole (410), and the limiting bolt (420) is threadedly connected in the threaded hole (410); The pre-embedded base (10) is provided with a locking groove (440), and the end of the limiting bolt (420) facing the locking groove (440) is provided with a locking protrusion (430); When the locking assembly (30) is in the unlocked position, the movement of the limiting bolt (420) relative to the threaded hole (410) can cause the locking protrusion (430) to be inserted into or disengaged from the locking groove (440).

6. A concrete utility pole structure according to claim 5, characterized in that: The pre-embedded base (10) is provided with an annular groove (100); The locking groove (440) is disposed on the groove wall of the annular groove (100); The limiting bolt (420) extends through the threaded hole (410) into the annular groove (100).

7. A concrete utility pole structure according to claim 2, characterized in that: The locking constraint (320) is provided with a positioning trajectory groove (330) with one end open, and a positioning post (240) is provided in the locking mating groove (230); When the locking constraint (320) moves from the unlocked position to the locked position, the positioning post (240) enters the positioning trajectory groove (330) and moves to the end of the positioning trajectory groove (330) to achieve abutment and limit.

8. A concrete utility pole structure according to claim 6, characterized in that: The embedded base (10) has a circular structure, and the movable part (310) has an annular structure. The movable part (310) is sleeved on the peripheral wall of the embedded base (10).

9. A concrete utility pole structure according to claim 1, characterized in that: The pre-embedded base (10) is arranged with multiple threaded columns (520) in a circumferential array; The rod assembly (20) is provided with a plurality of through holes (510), and the threaded post (520) passes through the through holes (510) and extends upward; The threaded post (520) is threadedly connected to a locking nut (530), and the rod assembly (20) is clamped and fixed on the locking nut (530) and the pre-embedded base (10).

10. A concrete utility pole structure according to claim 1, characterized in that: The rod assembly (20) consists of a connecting seat (210) and a concrete rod (200).