Electric power facility mounting bracket

By designing an adjustable power facility installation bracket for line fixing component sets and cross frame component sets, the problem of fixing the number of fixed rings in the prior art and being unable to support the power lines that have been connected to the equipment is solved, achieving higher flexibility and applicability.

CN222928080UActive Publication Date: 2025-05-30LEMDAR ELECTRIC POWER ENGINEERING (TIANJIN) CO LTD
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Patent Information

Application Number
CN202421615711.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-10
Publication Date
2025-05-30
Estimated Expiration
2034-07-10

AI Technical Summary

Technical Problem

The number of fixed rings of the existing power facilities installation brackets is fixed and cannot be adjusted according to the number and layout of the power lines, resulting in the inability to meet the power lines fixing needs under different projects and needs, which reduces the applicability of the installation brackets. At the same time, existing brackets can only be installed when the equipment is not connected to both ends of the power line, and cannot conveniently support the power line that has been connected to the equipment.

Method used

A power facility installation bracket is designed, including a line fixing component set and a cross frame component set. The line fixing component set can adjust the number and position of the fixing rings according to needs through the combination of multiple sets of main fixing parts, side frame plates, closure plates and springs to adapt to the needs of different power lines. The cross frame component set is connected by the connection of the cross threaded rod and the nut piece, allowing the line fixing component set to be installed and adjusted in different positions.

Benefits of technology

This design enhances the flexibility and applicability of the mounting bracket, and can be flexibly adjusted according to the number and layout of the power lines to meet the power lines fixing needs in various scenarios. At the same time, the design allows for convenient fixation of power lines that have been connected to the equipment, improving the practicality of the overall mounting bracket.

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    Figure CN222928080U_ABST
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Abstract

The utility model relates to the technical field of electric power facilities, in particular to an electric power facility mounting bracket, which comprises a line fixing component group arranged outside a power line body, the line fixing component group is used for fixing the power line body, the line fixing component group comprises a main fixing piece, and a side frame plate is arranged on one side of the main fixing piece. According to the utility model, through the design of the line fixing component groups and the transverse frame component groups, the installation number of the line fixing component groups can be selectively adjusted according to the number of power lines, so that the line fixing component groups can be changed according to requirements, and the positions of the line fixing component groups can be adjusted; and the flexibility and the applicability of the mounting bracket are enhanced by the integral structure.
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Description

Technical Field

[0001] The utility model relates to the technical field of power facilities, in particular to an installation bracket for power facilities. Background Technique

[0002] In power construction, an installation bracket for power lines is required to fix the power lines to prevent them from scattering. For example, the installation bracket for power facilities with the publication number: CN211530642U. It discloses an installation bracket for power facilities, including a base, an adjustment sleeve fixed on the base, a lower support pillar installed in the adjustment sleeve, the top of the lower support pillar is connected to the upper support pillar through a fixed sleeve, a cross beam is provided at the top of the upper support pillar, a fixing ring is provided on the cross beam, and two groups of upper and lower fixing rings are arranged at the top and bottom of the cross beam. A stabilizing pile bracket is provided between the adjustment sleeve and the base, and fixing bolts are provided on both the fixed sleeve and the adjustment sleeve. The structure of the utility model is reasonably arranged, the installation and adjustment between components are convenient, which is convenient to meet the installation requirements of different heights, the device has good stability, convenient operation, and the device can be disassembled and transported, which is convenient for wide promotion.

[0003] However, the number of fixing rings for fixing the power lines in the above patent structure is fixed and cannot be adjusted adaptively according to the number of power lines to be installed. Furthermore, in actual construction, the number and layout of power lines will vary due to different projects and requirements. The fixed number of fixing rings may not meet the power line fixing requirements in various scenarios, reducing the applicability of the installation bracket. Moreover, the installation bracket in the disclosed patent can only be installed when the power lines at both ends are not yet connected to the power equipment because the power lines need to pass through the fixing rings. It is not convenient to support and fix the power lines that have already been connected to the equipment, reducing the practicality of the overall installation bracket. Content of the Utility Model

[0004] In order to overcome the above technical problems, the purpose of the utility model is to provide an installation bracket for power facilities to solve the problem of poor adaptability of the installation bracket for power facilities proposed in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] A power facility installation bracket, comprising a main component group, the main component group including a power line body and an upper support body, an outer part of the power line body is provided with a line fixing component group for fixing the power line body, the line fixing component group including a main fixing piece, a side frame plate is arranged on one side of the main fixing piece, a closing plate is arranged on the top of the side frame plate, a tension spring piece is arranged on one side of the closing plate, a horizontal threaded rod is arranged on the top of the main fixing piece, and a nut piece is arranged on an outer part of the horizontal threaded rod; a horizontal frame component group is arranged at the bottom of the line fixing component group for connecting with the upper support body, the horizontal frame component group including a large frame body, a side frame body is arranged on one side of the large frame body, and a screw piece is arranged inside the side frame body.

[0007] Preferably: A plurality of groups of the line fixing component groups are provided, a bottom of the main fixing piece and the large frame body are in sliding contact through a chute, and a bottom of the side frame plate is connected with the main fixing piece.

[0008] Preferably: A rotating shaft is arranged at a position of the side frame plate corresponding to the closing plate, and the side frame plate and the closing plate are connected through the rotating shaft. A groove is arranged at a position of the main fixing piece corresponding to the closing plate, and the main fixing piece and the closing plate are in contact through the groove.

[0009] Preferably: One end of the tension spring piece is connected with the closing plate through a convex frame, and the other end of the tension spring piece is connected with the main fixing piece through a convex frame.

[0010] Preferably: One end of the horizontal threaded rod is connected with the main fixing piece, the horizontal threaded rod is in sliding contact with the side frame body through a chute, the nut piece is connected with the horizontal threaded rod through a thread, and one side of the nut piece is in contact with the side frame body.

[0011] Preferably: The side frame body is connected to the large frame body through a screw piece, and a bottom of the large frame body is connected with the upper support body.

[0012] Preferably: The power line body is located inside a frame structure formed by the main fixing piece, the side frame plate and the closing plate.

[0013] Compared with the prior art, the beneficial effects of the present utility model are:

[0014] 1. This kind of installation bracket for power facilities is provided with a line fixing component group and a cross-frame component group. In the above patent structure, the number of fixing rings for fixing power lines is fixed and cannot be adjusted adaptively according to the number of power lines to be installed. Therefore, in actual construction, the number and layout of power lines will vary due to different projects and requirements. The fixed number of fixing rings may not meet the power line fixing requirements in various scenarios, reducing the applicability of the installation bracket. In the corresponding designed line fixing component group and cross-frame component group, the number of the line fixing component group can be adjusted adaptively according to the number of power line bodies to be fixed. When installing the line fixing component group on the cross-frame component group, first pass the horizontal threaded rod in the structure of the line fixing component group to be installed through the sliding groove of the side frame body, and then adjust the positions of multiple line fixing component groups. After adjusting to the appropriate position, screw the nut piece onto the horizontal threaded rod. One side of the nut piece will contact the side frame body, and then the side frame body can be connected to the main frame body through screw pieces. The bottom side of the main fixing piece contacts the side frame body and the other side contacts the main frame body. At this time, the installation of the line fixing component group is completed. If the position of the line fixing component group needs to be adjusted at this time, the nut piece can be removed, and the line fixing component group can slide on the cross-frame component group. After adjusting to the appropriate position, reconnecting the nut piece can fix the position of the line fixing component group. The design of this line fixing component group and cross-frame component group can selectively adjust the installation quantity of the line fixing component group according to the number of power lines, so it can change according to the change of demand, and the position of the line fixing component group can be adjusted. The overall structure enhances the flexibility and applicability of the installation bracket;

[0015] 2. The power facility installation bracket is provided with a line fixing component group and a cross-frame component group. The installation bracket in the above-mentioned disclosed patent can only be installed when the power lines at both ends are not yet connected to the power equipment. Because the power lines need to pass through the fixing rings, it is not convenient to support and fix the power lines that have already been connected to the equipment, reducing the practicality of the overall installation bracket. In the correspondingly designed line fixing component group and cross-frame component group, when the power line body is fixed to the line fixing component group, the power line body is directly pressed into the frame structure formed by the main fixing piece, the side frame plate and the closing plate from top to bottom. When the power line body contacts the top of the closing plate, press down the power line body, and the convex frame on one side of the closing plate will pull the spring piece to stretch and store energy. The contact between one side position of the closing plate and the groove of the main fixing piece will be released, and the power line body can enter between the main fixing piece and the side frame plate. Subsequently, when the power line body contacts the bottom of the frame structure of the main fixing piece, the closing plate can be released, and the spring piece will release the stored energy and pull the closing plate back to its original position. The closing plate will contact the main fixing piece again through the groove, completing the fixation of the power line body. The design of this line fixing component group and cross-frame component group can fix the power line body whose both ends have been connected to the power equipment to the line fixing component group, improving the practicality of the overall installation bracket. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0017] Figure 2 is a schematic diagram of the structure of the back of the overall of the present invention;

[0018] Figure 3 is a schematic diagram of the structure of the line fixing component group part of the present invention;

[0019] Figure 4 is a schematic diagram of the back structure of the line fixing component group part of the present invention;

[0020] Figure 5 is a two-dimensional schematic diagram of the line fixing component group part of the present invention;

[0021] Figure 6 of the present invention Figure 1 is a schematic diagram of the structure at A in;

[0022] Figure 7 is an exploded schematic diagram of the cross-frame component group part of the present invention.

[0023] In the figure: 01, main body component group; 11, power line body; 12, upper support body; 02, line fixing component group; 21, main fixing piece; 22, side frame plate; 23, closing plate; 24, tension spring piece; 25, horizontal threaded rod; 26, nut piece; 03, cross frame component group; 31, large frame body; 32, side frame body; 33, screw piece. Detailed implementation mode

[0024] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0025] Please refer to Figure 1-7 , an embodiment provided by the present invention: a power facility installation bracket, including a main body component group 01, the main body component group 01 includes a power line body 11 and an upper support body 12, an external part of the power line body 11 is provided with a line fixing component group 02, the line fixing component group 02 is used for fixing the power line body 11, the line fixing component group 02 includes a main fixing piece 21, a side frame plate 22 is arranged on one side of the main fixing piece 21, a closing plate 23 is arranged on the top of the side frame plate 22, a tension spring piece 24 is arranged on one side of the closing plate 23, a horizontal threaded rod 25 is arranged on the top of the main fixing piece 21, and a nut piece 26 is arranged on the external part of the horizontal threaded rod 25; a cross frame component group 03 is arranged at the bottom of the line fixing component group 02, the cross frame component group 03 is used for connecting with the upper support body 12, the cross frame component group 03 includes a large frame body 31, a side frame body 32 is arranged on one side of the large frame body 31, and a screw piece 33 is arranged inside the side frame body 32.

[0026] Multiple groups of line fixing component groups 02 are arranged, the bottom of the main fixing piece 21 and the large frame body 31 are in sliding contact through a chute, and the bottom of the side frame plate 22 is connected with the main fixing piece 21.

[0027] The side frame plate 22 is provided with a rotating shaft at a position corresponding to the closing plate 23, and the side frame plate 22 and the closing plate 23 are connected through the rotating shaft. The main fixing piece 21 is provided with a groove at a position corresponding to the closing plate 23, and the main fixing piece 21 and the closing plate 23 are in contact through the groove.

[0028] One end of the tension spring piece 24 is connected with the closing plate 23 through a convex frame, and the other end of the tension spring piece 24 is connected with the main fixing piece 21 through a convex frame.

[0029] One end of the horizontal threaded rod 25 is connected to the main fixing member 21. The horizontal threaded rod 25 is in sliding contact with the side frame body 32 through a chute. The nut member 26 is connected to the horizontal threaded rod 25 by a thread, and one side of the nut member 26 is in contact with the side frame body 32.

[0030] The side frame body 32 is connected to the large frame body 31 by a screw member 33, and the bottom of the large frame body 31 is connected to the upper support body 12.

[0031] The power line body 11 is located inside the frame structure formed by the main fixing member 21, the side frame plate 22 and the closing plate 23.

[0032] Working principle: In the above patent structure, the number of fixing rings for fixing power lines is fixed and cannot be adaptively adjusted according to the number of power lines to be installed. Therefore, in actual construction, the number and layout of power lines will vary due to different projects and requirements. The fixed number of fixing rings may not meet the power line fixing requirements in various scenarios, reducing the applicability of the installation bracket. In the corresponding designed line fixing component group 02 and cross-frame component group 03, the number of the line fixing component group 02 can be adaptively adjusted according to the number of power line bodies 11 to be fixed. When installing the line fixing component group 02 onto the cross-frame component group 03, first pass the horizontal threaded rod 25 in the structure of the line fixing component group 02 to be installed through the sliding groove of the side frame body 32. Then, adjust the positions of multiple line fixing component groups 02. After adjusting to the appropriate positions, screw the nut member 26 onto the horizontal threaded rod 25. One side of the nut member 26 will contact the side frame body 32. Subsequently, the side frame body 32 can be connected to the main frame body 31 through the screw member 33. The bottom side of the main fixing member 21 contacts the side frame body 32 and the other side contacts the main frame body 31. At this time, the installation of the line fixing component group 02 is completed. If the position of the line fixing component group 02 needs to be adjusted at this time, the nut member 26 can be removed. The line fixing component group 02 can slide on the cross-frame component group 03. After adjusting to the appropriate position, reconnecting the nut member 26 can fix the position of the line fixing component group 02. The design of this line fixing component group 02 and cross-frame component group 03 can selectively adjust the installation quantity of the line fixing component group 02 according to the number of power lines, so that it can change according to the change of requirements, and the position of the line fixing component group 02 can be adjusted. The overall structure enhances the flexibility and applicability of the installation bracket.The mounting bracket in the above-disclosed patent can only be installed when the two ends of the power line are not yet connected to the power equipment. Since the power line needs to pass through the fixing ring, it is not convenient to support and fix the power line that has already been connected to the equipment, reducing the practicality of the overall mounting bracket. In the corresponding designed line fixing component group 02 and cross-frame component group 03, when the power line body 11 is fixed to the line fixing component group 02, the power line body 11 is directly pressed into the frame structure formed by the main fixing piece 21, the side frame plate 22, and the closing plate 23 from top to bottom. When the power line body 11 contacts the top of the closing plate 23, press down the power line body 11, and the convex frame on one side of the closing plate 23 will pull the spring piece 24 to stretch and store energy. The contact between one side position of the closing plate 23 and the groove of the main fixing piece 21 will be released, and the power line body 11 can enter between the main fixing piece 21 and the side frame plate 22. Subsequently, when the power line body 11 contacts the bottom of the frame structure of the main fixing piece 21, the closing plate 23 can be released, and the spring piece 24 will release the stored energy and pull the closing plate 23 back to its original position. The closing plate 23 will contact the main fixing piece 21 again through the groove, completing the fixation of the power line body 11. The design of this line fixing component group 02 and cross-frame component group 03 enables the power line body 11 whose two ends have been connected to the power equipment to be fixed to the line fixing component group 02, improving the practicality of the overall mounting bracket.

[0033] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.

Claims

1. A power facility mounting bracket, comprising a main component group (01), wherein the main component group (01) comprises a power line body (11) and an upper support body (12), characterized in that: A line fixing component group (02) is arranged outside the power line body (11), and the line fixing component group (02) is used to fix the power line body (11). The line fixing component group (02) comprises a main fixing member (21), a side frame plate (22) is arranged on one side of the main fixing member (21), a closing plate (23) is arranged on the top of the side frame plate (22), a tension spring member (24) is arranged on one side of the closing plate (23), a transverse threaded rod (25) is arranged on the top of the main fixing member (21), and a nut member (26) is arranged on the outside of the transverse threaded rod (25); A cross frame component group (03) is arranged at the bottom of the line fixing component group (02), and the cross frame component group (03) is used to be connected to the upper support column (12). The cross frame component group (03) includes a large frame body (31), and a side frame body (32) is arranged on one side of the large frame body (31), and a screw member (33) is arranged inside the side frame body (32).

2. The electric power facility mounting bracket according to claim 1, characterized in that: The line fixing component group (02) is provided with multiple groups, the bottom of the main fixing member (21) and the large frame body (31) are in sliding contact through a sliding groove, and the bottom of the side frame plate (22) is connected to the main fixing member (21).

3. The electric power facility mounting bracket according to claim 1, characterized in that: The side frame plate (22) is provided with a rotating shaft at a position corresponding to the closing plate (23), and the side frame plate (22) and the closing plate (23) are connected via the rotating shaft; the main fixing member (21) is provided with a groove at a position corresponding to the closing plate (23), and the main fixing member (21) and the closing plate (23) are in contact via the groove.

4. The electric power facility mounting bracket according to claim 1, characterized in that: One end of the tension spring member (24) is connected to the closing plate (23) via a protrusion, and the other end of the tension spring member (24) is connected to the main fixing member (21) via a protrusion.

5. The electric power facility mounting bracket according to claim 1, characterized in that: One end of the transverse threaded rod (25) is connected to the main fixing member (21), the transverse threaded rod (25) is in sliding contact with the side frame body (32) through a sliding groove, the nut member (26) is connected to the transverse threaded rod (25) through a thread, and one side of the nut member (26) is in contact with the side frame body (32).

6. The electric power facility mounting bracket according to claim 1, characterized in that: The side frame body (32) is connected to the large frame body (31) via screws (33), and the bottom of the large frame body (31) is connected to the upper support body (12).

7. The electric power facility mounting bracket according to claim 1, characterized in that: The power line body (11) is located in a frame structure formed by a main fixing member (21), a side frame plate (22) and a closing plate (23).

Citation Information

Patent Citations

  • Electric power facility mounting bracket

    CN211530642U