Power transformation framework anti-climbing device

By designing a substation frame anti-climb device with a curved grip bar and connecting components, the problem of poor column installation stability was solved, and the convenience and safety of posture adjustment during climbing were achieved.

CN223952591UActive Publication Date: 2026-02-27WEIFANG ZHONGMAO ELECTRIC POWER EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520371561.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-02-27
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

The existing substation structure has poor column installation stability, making it difficult for workers to grip the top of the column and adjust their posture.

Method used

A substation frame anti-climb device was designed, including an anti-climb frame, an anti-climb mechanism, a climbing component, a connecting component, and an opening and closing component. The gripping rod inside the climbing component is curved to enhance the ease of gripping. The connecting component enhances the structural stability. The opening and closing component achieves closure through a locking block to prevent climbing.

Benefits of technology

This improves the stability of the column installation, makes it easier for workers to adjust their posture during climbing, avoids random climbing, and ensures safety and stability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223952591U_ABST
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Abstract

The utility model relates to the technical field of electric power facility construction, in particular to a power transformation framework anti-climbing device which comprises an anti-climbing frame and an anti-climbing mechanism, the anti-climbing mechanism comprises two mounting plates, two inclined rods, a sealing plate, a plurality of climbing assemblies, a connecting assembly and an opening and closing assembly, and a holding rod in the connecting assembly is in a bent arc shape. A worker can conveniently adjust the posture of the worker in time after climbing to the upper end of the frame body, holding is convenient, the structural connection strength of the frame body is enhanced through the bottom plate and the two mounting plates while closing of the frame body by an opening and closing door in the opening and closing assembly is not affected and random climbing is avoided, and the problems that the mounting stability of the two stand columns is poor, and the working efficiency is high are solved. A worker cannot grasp the stand column conveniently after climbing to the top of the stand column, and the posture of the worker cannot be adjusted conveniently after climbing to the top of the stand column.
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Description

TECHNICAL FIELD

[0001] The utility model relates to power facility construction technical field especially, relates to a power transformation framework anti -climbing device. BACKGROUND

[0002] Power transformation framework is very common in substation, with the requirement of safe operation is higher and higher, generally will require setting up anti -climbing door in the framework ladder bottom, guarantee not to climb at will, the existing anti -climbing door structure is bigger, inconvenient to use and install.

[0003] In the prior art, patent (CN111764815A) proposes a kind of anti -climbing device of power transformation framework, including stand, door plate, hinged structure and locking structure;Multiple steps are arranged between two stands, one side of door plate is hinged with one of stand by hinged structure, door plate can rotate along hinged structure, so that door plate covers on the step between stand, and the other side of door plate is fixed with another stand by locking structure;Door plate is hinged on stand, when door plate rotates and covers part of step between two stands, then is fixed with another stand by locking structure, so that climber cannot climb through step, also cannot directly climb over ladder door plate, effectively block climbing is realized, when using, normal unlocking guarantees use function, this anti -climbing door structure is simple, and anti -climbing effect is good, has extensive applicability to double stand pole ladder.

[0004] But in the prior art described above, two stand installation stability is poor, staff climbs to the top of stand inconveniently grips, inconveniently adjusts own posture after climbing to the top. SUMMARY

[0005] The utility model aims at providing a kind of power transformation framework anti -climbing device, solve the two stand installation stability of prior art described above is poor, staff climbs to the top of stand inconveniently grips, inconveniently adjusts own posture after climbing to the top.

[0006] To achieve the above object, the utility model provides a kind of power transformation framework anti -climbing device, including anti -climbing frame and anti -climbing mechanism, the anti -climbing mechanism includes two installation plates, two inclined rods, sealing plate, multiple climbing components, connecting component and opening and closing component, the opening and closing component is fixedly connected with the anti -climbing frame, and located the positive side of the anti -climbing frame, the connecting component is fixedly connected with the anti -climbing frame, and located the top of the anti -climbing frame, each the climbing component is fixedly connected with the anti -climbing frame, and located the inner side of the anti -climbing frame, the sealing plate is fixedly connected with two the inclined rods, and located the upper end of two the inclined rods, the lower end of two the inclined rods is fixedly connected with the opening and closing component, and located the positive side of the opening and closing component, two the installation plates are fixedly connected with the anti -climbing frame, and located the two sides of the anti -climbing frame respectively.

[0007] Each of the climbing assemblies comprises a positioning shaft, a climbing plate and two limiting plates, the two limiting plates and the positioning shaft are fixedly connected with the anti-climbing frame and located on the inner side of the anti-climbing frame, and the climbing plate is rotationally connected with the positioning shaft and located on the circumferential side of the positioning shaft.

[0008] The connecting assembly comprises a connecting rod, two holding rods and two fixing plates, each of the fixing plates is fixedly connected with a corresponding holding rod and located at one end of the corresponding holding rod, the other ends of the two holding rods are fixedly connected with the anti-climbing frame and located above the anti-climbing frame, and the two ends of the connecting rod are fixedly connected with the corresponding holding rods and located on the side of the corresponding holding rods.

[0009] The opening and closing assembly comprises an opening and closing door, two hinged plates and a hinged shaft, the hinged shaft is rotationally connected with the two hinged plates and located on the inner side of the two hinged plates, the two hinged plates are fixedly connected with the anti-climbing frame and located on the front side of the anti-climbing frame, and the opening and closing door is fixedly connected with the hinged shaft and located on the circumferential side of the hinged shaft.

[0010] The anti-climbing frame comprises a frame body, a bottom plate and a locking block, the locking block is fixedly connected with the frame body and located on the front side of the frame body, the bottom plate is fixedly connected with the frame body and located below the frame body, and the frame body is fixedly connected with the connecting rod and located below the connecting rod.

[0011] The anti-climbing device for the power transformation framework is characterized in that the holding rods in the connecting assembly are curved and arc-shaped, so that the staff can conveniently adjust the own posture after climbing to the upper end of the frame body, conveniently hold, and not affect the opening and closing door in the opening and closing assembly to close the frame body main body, avoid random climbing, and enhance the structural connection strength of the frame body through the bottom plate and the two mounting plates, so that the installation stability of the two stand columns is improved, the staff can conveniently hold after climbing to the top of the stand column, and the own posture can be conveniently adjusted after climbing to the top. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced.

[0013] Figure 1 is the overall structural schematic view of the anti-climbing device for the power transformation framework.

[0014] Figure 2 is the rear view of the anti-climbing device for the power transformation framework.

[0015] Figure 3 is a front view of the anti-climbing device of the power transformation framework,

[0016] Figure 4 is the A-A line section view of the anti-climbing device of the power transformation framework, Figure 3

[0017] Figure 5 is the B-B line section view of the anti-climbing device of the power transformation framework. Figure 4

[0018] 101-anti-climbing frame, 102-anti-climbing mechanism, 103-mounting plate, 104-inclined rod, 105-enclosing plate, 106-climbing assembly, 107-connection assembly, 108-opening and closing assembly, 109-positioning shaft, 110-climbing plate, 111-limiting plate, 112-connection rod, 113-holding rod, 114-fixing plate, 115-opening and closing door, 116-hinge plate, 117-hinge shaft, 118-frame body, 119-bottom plate, 120-locking block. DETAILED DESCRIPTION

[0019] The embodiments of the present application are described in detail below, examples of which are shown in the drawings. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.

[0020] Please refer to Figures 1-5 , wherein Figure 1 is a structure diagram of the anti-climbing device of the power transformation framework, Figure 2 is a rear view of the anti-climbing device of the power transformation framework, Figure 3 is a front view of the anti-climbing device of the power transformation framework, Figure 4 is the A-A line section view of the anti-climbing device of the power transformation framework, Figure 3 Figure 5 is the B-B line section view of the anti-climbing device of the power transformation framework. Figure 4

[0021] The present application provides an anti-climbing device of a power transformation framework, comprising an anti-climbing frame 101 and an anti-climbing mechanism 102, the anti-climbing mechanism 102 comprising two mounting plates 103, two inclined rods 104, an enclosing plate 105, a plurality of climbing assemblies 106, a connection assembly 107 and an opening and closing assembly 108, each of the climbing assemblies 106 comprising a positioning shaft 109, a climbing plate 110 and two limiting plates 111, the connection assembly 107 comprising a connection rod 112, two holding rods 113 and two fixing plates 114, the opening and closing assembly 108 comprising an opening and closing door 115, two hinge plates 116 and a hinge shaft 117, the anti-climbing frame 101 comprising a frame body 118, a bottom plate 119 and a locking block 120. ​​​​

[0022] For this specific embodiment, the opening and closing assembly 108 is fixedly connected with the anti-climbing frame 101, the connecting assembly 107 is fixedly connected with the anti-climbing frame 101, each of the climbing assemblies 106 is fixedly connected with the anti-climbing frame 101, the sealing plate 105 is fixedly connected with the two inclined rods 104, the lower ends of the two inclined rods 104 are fixedly connected with the opening and closing assembly 108, the two mounting plates 103 are fixedly connected with the anti-climbing frame 101, the two limiting plates 111 and the positioning shaft 109 are fixedly connected with the anti-climbing frame 101, the climbing plate 110 is rotationally connected with the positioning shaft 109, each of the fixing plates 114 is fixedly connected with the corresponding holding rod 113, the other ends of the two holding rods 113 are fixedly connected with the anti-climbing frame 101, the two ends of the connecting rod 112 are fixedly connected with the corresponding holding rods 113, the hinge shaft 117 is rotationally connected with the two hinge plates 116, the two hinge plates 116 are fixedly connected with the anti-climbing frame 101, the opening and closing door 115 is fixedly connected with the hinge shaft 117, the locking block 120 is fixedly connected with the frame body 118, the bottom plate 119 is fixedly connected with the frame body 118, the frame body 118 is fixedly connected with the connecting rod 112, and the holding rod 113 in the connecting assembly 107 is arranged in a curved arc shape, which facilitates the staff to climb to the upper end of the frame body 118 and adjust their posture in time, facilitates holding, does not affect the opening and closing door 115 in the opening and closing assembly 108 to close the main body of the frame body 118, avoids random climbing, and enhances the structural connection strength of the frame body 118 through the bottom plate 119 and the two mounting plates 103, thereby solving the problems of poor mounting stability of two stand columns, difficulty in holding after the staff climbs to the top of the stand column, and difficulty in adjusting the posture after climbing to the top.

[0023] Among them, the opening and closing assembly 108 is located on the front side of the anti-climbing frame 101, the connecting assembly 107 is located above the anti-climbing frame 101, each of the climbing assemblies 106 is located on the inner side of the anti-climbing frame 101, the sealing plate 105 is located on the upper end of the two inclined rods 104, the lower ends of the two inclined rods 104 are located on the front side of the opening and closing assembly 108, the two mounting plates 103 are respectively located on the two sides of the anti-climbing frame 101, the two holding rods 113 are connected through the connecting rod 112, and the holding rods 113 are fixed on the platform of the power transformation frame by the fixing plates 114.

[0024] Secondly, the two said limiting plates 111 and the positioning shaft 109 are located on the inner side of the anti-climbing frame 101, the climbing plate 110 is located on the circumferential side of the positioning shaft 109, each said fixed plate 114 is respectively located on one end of the corresponding said holding rod 113, the other end of the two said holding rods 113 is located above the anti-climbing frame 101, the two ends of the connecting rod 112 are respectively located on one side of the corresponding said holding rod 113, each said climbing plate 110 is respectively rotationally connected with the corresponding said positioning shaft 109, under the limiting of the limiting plate 111, the staff will not overturn when stepping, the stability is high, the opening and closing door 115 is rotationally connected with the frame body 118 through the hinge shaft 117 and the two said hinge plates 116, and fastening is realized through the locking block in the locking block 120 and the lock core.

[0025] Meanwhile, the hinge shaft 117 is located on the inner side of the two said hinge plates 116, the two said hinge plates 116 are located on the front side of the anti-climbing frame 101, the opening and closing door 115 is located on the circumferential side of the hinge shaft 117, the locking block 120 is located on the front side of the frame body 118, the bottom plate 119 is located below the frame body 118, the frame body 118 is located below the connecting rod 112, the locking block 120 is opened through the key, in the conventional state, the opening and closing door 115 is fixed on the front side of the frame body 118 through the hinge shaft 117, cooperates with the two said inclined rods 104 and the sealing plate 105, and plays a blocking role on the personnel who want to directly climb, the height of the frame body 118 is formulated according to the actual use requirement, but it needs to be noted that the height of the sealing plate 105 is generally higher than 2m, so as to ensure that it will not be easily touched, when the opening and closing door 115 is opened, the staff can move to the upper side of the frame body 118 through stepping the corresponding said climbing plate 110, the two said holding rods 113 on the upper side of the frame body 118 can facilitate the staff to hold, so as to facilitate the staff to adjust the posture and smoothly climb to the top of the frame body 118, the two said holding rods 113 are respectively fixed by the corresponding said fixed plate 114 and the connecting rod 112, the stability is high, and the staff will not have a safety accident when pulling and climbing.

[0026] In this embodiment, two said holding rods 113 are connected through the connecting rod 112, and the holding rods 113 are fixed on the platform of the power transformation frame by the fixing plate 114. Under the limiting of the limiting plate 111, the turnover of the staff when stepping does not occur, the stability is high, the opening and closing door 115 is rotationally connected with the frame body 118 through the hinged shaft 117 and two said hinged plates 116, and is fastened through the locking block in the locking block 120 and the lock core. The locking block 120 is opened by a key. In the normal state, the opening and closing door 115 is fixed on the front side of the frame body 118 through the hinged shaft 117, cooperates with two said inclined rods 104 and the sealing plate 105, and plays a blocking role on the personnel who want to directly climb. The height of the frame body 118 is determined according to the actual use requirement, but it needs to be noted that the height of the sealing plate 105 is generally higher than 2m, so as to ensure that it cannot be easily touched. When the opening and closing door 115 is opened, the staff can move upwards to the frame body 118 by stepping on the corresponding climbing plate 110. The two said holding rods 113 above the frame body 118 can facilitate the staff to hold, so as to facilitate the staff to adjust the posture and smoothly climb to the top of the frame body 118. Two said holding rods 113 are fixed by the corresponding fixing plate 114 and the connecting rod 112, the stability is high, and the staff will not have safety accidents when pulling and climbing.

[0027] The above disclosure is only one or more preferred embodiments of the present application, which cannot limit the scope of the rights of the present application. Those skilled in the art can understand that the implementation of all or part of the above-mentioned embodiments is still within the scope covered by the present application.

Claims

1. A transformer framework anti-climbing device, comprising an anti-climbing framework, characterized in that, It also comprises an anti-climbing mechanism, the anti-climbing mechanism comprises two mounting plates, two inclined rods, a sealing plate, a plurality of climbing assemblies, a connecting assembly and an opening and closing assembly, the opening and closing assembly is fixedly connected with the anti-climbing framework and located on the front side of the anti-climbing framework, the connecting assembly is fixedly connected with the anti-climbing framework and located above the anti-climbing framework, each climbing assembly is fixedly connected with the anti-climbing framework and located on the inner side of the anti-climbing framework, the sealing plate is fixedly connected with the two inclined rods and located at the upper end of the two inclined rods, the lower end of the two inclined rods is fixedly connected with the opening and closing assembly and located on the front side of the opening and closing assembly, and the two mounting plates are fixedly connected with the anti-climbing framework and respectively located on the two sides of the anti-climbing framework.

2. The transformer framework anti-climbing device according to claim 1, characterized in that, Each climbing assembly comprises a positioning shaft, a climbing plate and two limiting plates, the two limiting plates and the positioning shaft are fixedly connected with the anti-climbing framework and located on the inner side of the anti-climbing framework, and the climbing plate is rotationally connected with the positioning shaft and located on the circumferential side of the positioning shaft.

3. The transformer framework anti-climbing device according to claim 2, characterized in that, The connecting assembly comprises a connecting rod, two holding rods and two fixed plates, each fixed plate is fixedly connected with a corresponding holding rod and located at one end of the corresponding holding rod, the other end of the two holding rods is fixedly connected with the anti-climbing framework and located above the anti-climbing framework, and the two ends of the connecting rod are fixedly connected with the corresponding holding rods and located on the side of the corresponding holding rods.

4. The transformer framework anti-climbing device according to claim 3, characterized in that, The opening and closing assembly comprises an opening and closing door, two hinge plates and a hinge shaft, the hinge shaft is rotationally connected with the two hinge plates and located on the inner side of the two hinge plates, the two hinge plates are fixedly connected with the anti-climbing framework and located on the front side of the anti-climbing framework, and the opening and closing door is fixedly connected with the hinge shaft and located on the circumferential side of the hinge shaft.

5. The transformer framework anti-climbing device according to claim 4, characterized in that, The anti-climbing framework comprises a framework body, a bottom plate and a locking block, the locking block is fixedly connected with the framework body and located on the front side of the framework body, the bottom plate is fixedly connected with the framework body and located below the framework body, and the framework body is fixedly connected with the connecting rod and located below the connecting rod.

Citation Information

Patent Citations

  • Anti-climbing device for substation truss

    CN111764815A