Energy-saving reactor

By using C-shaped welding blocks and fixing mechanisms on energy-saving reactors, the main body of the reactor can be easily disassembled and installed, solving the problem of inconvenient disassembly in the existing technology and improving the ease of use and the firmness of fixing of the reactor.

CN223513741UActive Publication Date: 2025-11-04SIBELAND ELECTRIC (BEIJING) CO LTD
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Patent Information

Application Number
CN202422897725.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-11-04
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

When existing energy-saving reactors are installed on utility poles, disassembly and maintenance are inconvenient, resulting in long maintenance time and labor costs and reducing ease of use.

Method used

The reactor body is easily disassembled and installed by using C-shaped welding blocks and a fixing mechanism, including mounting groove, mounting plate, rotating groove, rotating shaft, handle, bolts and limit blocks. The main body of the reactor is easily disassembled and installed by bolt connection and the locking and unlocking of limit blocks.

Benefits of technology

It improves the ease of disassembly and installation of reactors, reduces maintenance time and effort, and enhances the robustness of the fixing mechanism.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223513741U_ABST
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Abstract

The utility model relates to the technical field of installation, support or suspension of transformers, electric reactors or choking coils, and discloses an energy-saving electric reactor which comprises a C-shaped welding block, an electric reactor body is arranged in the welding block, the upper side of the electric reactor body is fixedly connected with an upper fixing block, and the lower side of the electric reactor body is fixedly connected with a lower fixing block. A lower fixing block is fixedly connected to the lower side of the reactor body, limiting grooves are formed in the sides, away from each other, of the upper fixing block and the lower fixing block, fixing mechanisms are arranged on the upper side and the lower side of the welding block, the reactor body can be clamped and fixed through the two fixing mechanisms, and the two fixing mechanisms are the same in connecting structure and are symmetrically arranged. Through the mode, the electric reactor main body can be simply and conveniently detached from the telegraph pole, so that when the energy-saving electric reactor is checked and maintained, the electric reactor main body is not required to be detached for a long time and effort, and the use convenience of the energy-saving electric reactor is further improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the installation, support or suspension technical field of transformer, electric reactor or choke coil, concretely is a kind of energy-saving electric reactor. BACKGROUND

[0002] The working principle of electric reactor is based on the characteristics of inductance and capacitance, in the inductance aspect, when current passes through conductor, magnetic field is generated around it, if conductor is solenoid coil, i.e.

[0003] The existing energy-saving electric reactor is mostly installed on electric pole when using, and the part in contact with electric pole is mostly connected by welding, which leads to that when checking and maintaining energy-saving electric reactor, staff is inconvenient to detach energy-saving electric reactor from electric pole, thereby making energy-saving electric reactor be maintained more time-consuming and laborious, and the convenience of energy-saving electric reactor is reduced. UTILITY MODEL CONTENT

[0004] (I) the technical problem solved

[0005] In view of the deficiencies of prior art, the utility model provides an energy-saving electric reactor, with the function of simple and convenient detachment of electric reactor body from electric pole, thereby not spending long time and effort on the detachment of electric reactor when checking and maintaining energy-saving electric reactor, thereby improving the convenience of energy-saving electric reactor.

[0006] (II) technical scheme

[0007] To achieve the above purpose, the utility model provides the following technical scheme: an energy-saving electric reactor, comprising welding block, the shape of welding block is C-shaped, welding block is provided with electric reactor body in the inside;

[0008] The upper side of electric reactor body is fixedly connected with upper fixed block, and the lower side of electric reactor body is fixedly connected with lower fixed block;

[0009] The side of upper fixed block and lower fixed block away from each other is provided with limiting slot, the upper side and the lower side of welding block are provided with fixed mechanism, and the electric reactor body can be clamped and fixed by two fixed mechanisms, and the connecting structures of two fixed mechanisms are same and symmetrically arranged;

[0010] Fixed mechanism includes installation slot, mounting plate, two rotating grooves, rotating shaft, handle, two connecting grooves, two bolts, connecting port and limiting block.

[0011] Preferably, the mounting groove is formed on the upper side of the welding block, the left wall of the mounting groove extends out of the welding block, and the mounting plate is disposed inside the mounting groove;

[0012] The right side of the mounting plate is semi-cylindrical, with two rotating slots respectively formed on the front and rear walls of the mounting slot.

[0013] Preferably, the rotating shaft is disposed inside the mounting plate, with both the front and rear ends of the rotating shaft extending out of the mounting plate, and the front and rear ends of the rotating shaft respectively rotatably extending into the interior of the front and rear rotating slots.

[0014] The handle is fixedly connected to the left side of the mounting plate, and two connection slots are respectively opened inside the mounting plate.

[0015] Preferably, the two connecting grooves are arranged one in front of the other, with the top walls of both connecting grooves extending out of the mounting plate and the bottom walls of both connecting grooves extending into the interior of the welding block.

[0016] The bottom walls of both connecting slots extend beyond the lower side of the welding block, and both bolts are located on the upper side of the mounting plate.

[0017] Preferably, the lower ends of the two bolts are respectively used to fix the mounting plate and the welding block together through two connecting grooves;

[0018] The connection port is located inside the welding block, and the top wall of the connection port extends into the interior of the mounting groove.

[0019] Preferably, a welding block extends from the bottom wall of the connection port, and a limiting block is fixedly connected to the lower side of the mounting plate. The limiting block extends through the connection port and is adapted to the limiting groove.

[0020] (III) Beneficial Effects

[0021] Compared with the prior art, this utility model provides an energy-saving reactor with the following advantages:

[0022] (1) For this energy-saving reactor, firstly, remove the two bolts on the upper side, then pull the mounting plate up by pulling the handle. After transmission, the locking limit between the upper limit block and the upper limit groove will be released. Then, the locking state between the lower limit block and the lower limit groove will also be released. Then, move the reactor body, and the reactor body will drive the upper and lower fixing blocks to move out from the inside of the welding block. Then, the reactor body can be inspected and maintained. During installation, the reactor body can be installed in the above way. In this way, the reactor body can be easily and conveniently removed from the utility pole. Therefore, when inspecting and maintaining the energy-saving reactor, it will not take a long time and effort to disassemble the reactor body, thus improving the convenience of using the energy-saving reactor.

[0023] (2) The energy-saving reactor is fixed to the main body of the reactor by means of two bolts on the upper side of the mounting plate, and the lower ends of the two bolts are respectively fixed to the mounting plate and the welding block through two connecting grooves, which improves the firmness of the fixing mechanism when fixing the main body of the reactor. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of an energy-saving reactor according to the present invention;

[0025] Figure 2 This is a schematic diagram of the main connection structure of the reactor of this utility model;

[0026] Figure 3 This is a schematic diagram of the cross-sectional connection structure of the welding block of this utility model;

[0027] Figure 4 for Figure 3 Enlarged diagram of point A.

[0028] In the diagram: 1. Welding block; 2. Reactor body; 3. Upper fixing block; 4. Lower fixing block; 5. Limiting groove; 6. Mounting groove; 7. Mounting plate; 8. Rotating groove; 9. Rotating shaft; 10. Handle; 11. Connecting groove; 12. Bolt; 13. Connecting port; 14. Limiting block. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] Please see Figures 1 to 4 This utility model provides a new technical solution: an energy-saving reactor, including a welding block 1, which is C-shaped. A reactor body 2 is disposed inside the welding block 1. An upper fixing block 3 is fixedly connected to the upper side of the reactor body 2, and a lower fixing block 4 is fixedly connected to the lower side of the reactor body 2. Limiting grooves 5 are provided on the sides of the upper fixing block 3 and the lower fixing block 4 that are far apart from each other. Fixing mechanisms are provided on the upper and lower sides of the welding block 1. The reactor body 2 can be clamped and fixed by the two fixing mechanisms. The connection structure of the two fixing mechanisms is the same and symmetrically arranged. The following description focuses on the upper fixing mechanism. The fixing mechanism includes an installation groove 6, an installation plate 7, two rotating grooves 8, a rotating shaft 9, a handle 10, two connecting grooves 11, two bolts 12, a connecting port 13, and a limiting block 14.

[0031] Furthermore, a mounting groove 6 is formed on the upper side of the welding block 1, and the welding block 1 extends out of the left wall of the mounting groove 6. A mounting plate 7 is set inside the mounting groove 6, and the right side of the mounting plate 7 is semi-cylindrical. Two rotating grooves 8 are respectively formed on the front and rear walls of the mounting groove 6. A rotating shaft 9 is set inside the mounting plate 7, and both the front and rear ends of the rotating shaft 9 extend out of the mounting plate 7. The front and rear ends of the rotating shaft 9 rotatably extend into the interior of the front and rear rotating grooves 8, respectively. A handle 10 is fixedly connected to the left side of the mounting plate 7. Two connecting grooves 11 are respectively formed inside the mounting plate 7, and the two connecting grooves 11 are arranged front to back. Mounting plate 7 extends from the top wall of each of the two connecting grooves 11. The bottom walls of the two connecting grooves 11 extend into the interior of the welding block 1. The bottom walls of the two connecting grooves 11 extend out of the lower side of the welding block 1. Two bolts 12 are set on the upper side of the mounting plate 7. The lower ends of the two bolts 12 are respectively fixedly connected to the mounting plate 7 and the welding block 1 through the two connecting grooves 11. The connecting port 13 is opened inside the welding block 1. The top wall of the connecting port 13 extends into the interior of the mounting groove 6. The bottom wall of the connecting port 13 extends out of the welding block 1. The limiting block 14 is fixedly connected to the lower side of the mounting plate 7. The limiting block 14 extends through the connecting port 13. The limiting block 14 is adapted to the limiting groove 5.

[0032] Furthermore, when starting work, if it is necessary to disassemble the reactor body 2 for inspection and maintenance, the worker first removes the two upper bolts 12, then pulls the handle 10 to lift the mounting plate 7. The mounting plate 7 will then rotate around the upper rotating shaft 9, causing the upper limit block 14 to move out of the upper limit groove 5. This releases the locking mechanism between the upper limit block 14 and the upper limit groove 5. Next, the two lower bolts 12 are removed, and the lower handle 10 is pulled downwards. As described above, the lower limit block 14 and the lower limit groove 5... The locking state between slots 5 will also be released. Then, move the reactor body 2, and the reactor body 2 will drive the upper fixing block 3 and the lower fixing block 4 to move out of the inside of the welding block 1. Then, the reactor body 2 can be inspected and maintained. During installation, the reactor body 2 can be installed in the above way. In this way, the reactor body 2 can be easily and conveniently removed from the utility pole. Therefore, when inspecting and maintaining the energy-saving reactor, the time and effort spent on disassembling the reactor body 2 will not be long, thus improving the convenience of using the energy-saving reactor.

[0033] Working principle: When starting work, if it is necessary to disassemble the reactor body 2 for inspection and maintenance, the operator first removes the two upper bolts 12, and then pulls the handle 10 to lift the mounting plate 7. The mounting plate 7 will then rotate with the upper rotating shaft 9 as the center. After that, the upper limit block 14 will move out of the upper limit groove 5, and the locking limit between the upper limit block 14 and the upper limit groove 5 will be released. Then, the two lower bolts 12 are also removed, and the lower handle 10 is pulled down. As mentioned above, the locking state between the lower limit block 14 and the lower limit groove 5 will also be released. Then, the reactor body 2 is moved, and the reactor body 2 will drive the upper fixing block 3 and the lower fixing block 4 to move out of the welding block 1, so that the reactor body 2 can be inspected and maintained. The reactor body 2 can be installed in the same way.

[0034] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An energy-saving reactor, comprising a welding block (1), the welding block (1) being C-shaped, and a reactor body (2) being disposed inside the welding block (1); An upper fixing block (3) is fixedly connected to the upper side of the reactor body (2), and a lower fixing block (4) is fixedly connected to the lower side of the reactor body (2). Limiting grooves (5) are provided on the sides of the upper fixing block (3) and the lower fixing block (4) that are far apart from each other, characterized in that: The upper and lower sides of the welding block (1) are provided with fixing mechanisms. The reactor body (2) can be clamped and fixed by the two fixing mechanisms. The connection structure of the two fixing mechanisms is the same and they are symmetrically arranged. The fixing mechanism includes a mounting slot (6), a mounting plate (7), two rotating slots (8), a rotating shaft (9), a handle (10), two connecting slots (11), two bolts (12), a connecting port (13), and a limiting block (14).

2. The energy-saving reactor according to claim 1, characterized in that: The mounting groove (6) is opened on the upper side of the welding block (1), the left wall of the mounting groove (6) extends out of the welding block (1), and the mounting plate (7) is set inside the mounting groove (6); The right side of the mounting plate (7) is semi-cylindrical, and two rotating grooves (8) are respectively opened on the front and rear walls of the mounting groove (6).

3. The energy-saving reactor according to claim 1, characterized in that: The rotating shaft (9) is located inside the mounting plate (7). The front end and the rear end of the rotating shaft (9) extend out of the mounting plate (7). The front end and the rear end of the rotating shaft (9) extend into the front and rear rotating grooves (8) respectively. The handle (10) is fixedly connected to the left side of the mounting plate (7), and two connecting slots (11) are respectively opened inside the mounting plate (7).

4. The energy-saving reactor according to claim 3, characterized in that: The two connecting grooves (11) are arranged one in front of the other, the top walls of the two connecting grooves (11) extend out of the mounting plate (7), and the bottom walls of the two connecting grooves (11) extend into the interior of the welding block (1). The bottom walls of both connecting grooves (11) extend out of the lower side of the welding block (1), and both bolts (12) are located on the upper side of the mounting plate (7).

5. An energy-saving reactor according to claim 4, characterized in that: The lower ends of the two bolts (12) respectively fix the mounting plate (7) and the welding block (1) together through two connecting grooves (11); The connection port (13) is located inside the welding block (1), and the top wall of the connection port (13) extends into the interior of the mounting groove (6).

6. An energy-saving reactor according to claim 5, characterized in that: A welding block (1) extends from the bottom wall of the connection port (13), and a limiting block (14) is fixedly connected to the lower side of the mounting plate (7). The limiting block (14) extends through the connection port (13) and is adapted to the limiting groove (5).