Electric reactor convenient for arranging outgoing lines from side surface

By setting up structures such as sliding cavity, limit block, spring and collar between the connecting tube of the reactor and the fixed tube, the connecting tube is detachable and replaced, solving the problems of connecting tube erosion and deterioration of the stability of the connecting tube, reducing the cost of use and improving the stability of the reactor.

CN223006643UActive Publication Date: 2025-06-20SHANDONG ZHONGKE ELECTRIC CO LTD
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Patent Information

Application Number
CN202421738525.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-06-20
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The connecting pipes of existing reactors come into contact with moisture for a long time, which leads to erosion of the connecting pipes, deterioration of stability, affects the normal operation of the reactor, and increases the cost of use.

Method used

A reactor is designed to facilitate the arrangement and outgoing of the side. By setting up a structure such as sliding cavity, limit block, spring and collar between the connecting pipe and the fixed pipe, the connecting pipe can be detachable and replaced, avoiding direct contact between the connecting pipe and the outer wall waterway.

Benefits of technology

Through the removable design, the damaged connecting pipe can be replaced separately to ensure the normal operation of the water-cooling equipment inside the reactor, reduce the cost of use, and improve the stability and service life of the reactor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electric reactors, and discloses an electric reactor convenient to arrange outgoing lines on the side face, which comprises an electric reactor body, a terminal main body and a connecting pipe, one end of the terminal main body far away from the electric reactor body is fixedly connected with a fixing pipe matched with the connecting pipe, and the outer wall of the connecting pipe is provided with a plurality of sliding cavities. Limiting blocks are slidably connected into the sliding cavities, springs are fixedly connected to the sides, away from the limiting blocks, of the inner walls of the sliding cavities, the other ends of the springs are fixedly connected with the limiting blocks, the sides, away from the springs, of the limiting blocks extend out of connecting pipes, and through grooves matched with the limiting blocks are formed in the fixing pipes. According to the electric reactor convenient to arrange the outgoing lines from the side face, the connecting pipe can be detached by pulling the lantern ring, so that the electric reactor has the advantages that when the connecting pipe is damaged after the electric reactor is used for a long time, the connecting pipe can be independently replaced, and normal operation of water cooling equipment in the electric reactor can be guaranteed; therefore, the use cost of the reactor is effectively reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of reactors, in particular to a reactor facilitating side-arranged wire outlet. Background Technique

[0002] A reactor, also called an inductor, is widely used in circuits. Due to the effect of electromagnetic induction in the circuit, there is a certain inductance, which can play a role in preventing current changes. When a conductor is energized, a magnetic field will be generated in a certain space range it occupies. Therefore, all current-carrying conductors have inductance in a general sense. However, the inductance of a long straight energized conductor is small, and the generated magnetic field is not strong. Therefore, an actual reactor is formed by winding a wire into a solenoid shape, called an air-core reactor; sometimes, in order to make this solenoid have a larger inductance, an iron core is inserted into the solenoid, called an iron-core reactor;

[0003] In the prior art, as disclosed in the patent No. CN219958748U, a reactor with side-arranged wire outlet is proposed. This technical solution relates to the technical field of reactors, including a reactor main body, a reactor winding arranged in the reactor main body, and a wire outlet end face arranged on the side wall of the reactor main body. The reactor winding includes a winding coil arranged in the reactor main body and two wire outlet terminals arranged on both sides of the winding coil. Both of the two wire outlet terminals are arranged on the wire outlet end face of the reactor main body, and the two wire outlet terminals are centrosymmetric with each other. The ends of the two wire outlet terminals are all on the side far from the central axis of the reactor winding. The extending direction of the wire outlet terminal is perpendicular to the central axis of the reactor main body, and the extending direction of the wire outlet terminal is parallel to the wire outlet end face of the reactor main body. This reactor with side-arranged wire outlet effectively shortens the space distance of the reactor, which is beneficial to the arrangement of products in the effective space and facilitates the installation and use of the reactor;

[0004] However, in the prior art solution, an internal thread is arranged in the connecting pipe to facilitate the connection between the wire outlet terminal and the external water circuit. Since the connecting pipe is made of metal material, when the device is used for a long time, the connecting pipe will be eroded due to long-term contact with water, resulting in poor stability when the connecting pipe is connected to the outer wall water circuit. As a result, the internal water cooling equipment of the reactor cannot operate normally, and even the reactor cannot be used normally. Moreover, the connecting pipe is fixedly connected to the wire outlet terminal. When the connecting pipe is damaged, the connecting pipe cannot be replaced separately, thus increasing the use cost of the reactor;

[0005] To solve the above problems, a reactor facilitating side-arranged wire outlet is proposed in this application. Content of the Utility Model

[0006] The utility model aims to provide a reactor facilitating side-arranged wire outlet, mainly for solving the problem that the connecting pipe on the existing reactor is eroded when contacting water for a long time, resulting in the abnormal operation of the internal water-cooling equipment of the reactor.

[0007] To achieve the above object, the utility model provides the following technical solution: A reactor facilitating side-arranged wire outlet, comprising a reactor body, a terminal body and a connecting pipe. One end of the terminal body far from the reactor body is fixedly connected with a fixing pipe matching the connecting pipe. A plurality of sliding cavities are formed in the outer wall of the connecting pipe. A limiting block is slidably connected inside the sliding cavity. Springs are fixedly connected to one sides of the inner walls of the sliding cavities far from the limiting block. The other ends of the springs are fixedly connected with the limiting blocks. One side of the limiting block far from the spring extends out of the connecting pipe. A through groove matching the limiting block is formed in the fixing pipe. A pushing block is slidably connected inside the through groove. One side of the pushing block abuts against the limiting block, and the other side extends out of the fixing pipe. A collar is slidably connected to the outer wall of the fixing pipe.

[0008] The working principle and beneficial effects of the utility model:

[0009] 1. Working principle: When the connecting pipe is damaged after the reactor is used for a long time, the collar can be pulled to move towards the pushing block. When the collar contacts the pushing block, the pushing block will be extruded and move downward. While the pushing block moves downward, it will push the limiting block to move. After the limiting block disengages from the through groove, the connecting pipe can be disassembled. When a new connecting pipe is inserted into the fixing pipe, the limiting block will be extruded and move into the sliding cavity, and at the same time, the spring will be in a compressed state. After the connecting pipe is completely inserted into the fixing pipe, the limiting block will pop out under the action of the spring and be clamped with the through groove on the fixing pipe, and the reactor can be used normally.

[0010] 2. Beneficial effects: The connecting pipe can be disassembled by pulling the collar. The advantage of this setting is that when the connecting pipe is damaged after the reactor is used for a long time, the connecting pipe can be replaced separately, which can ensure the normal operation of the internal water-cooling equipment of the reactor, thereby effectively reducing the use cost of the reactor.

[0011] Preferably, a plurality of T-shaped sliders are fixedly connected to the inner wall of the collar, and a plurality of T-shaped chutes matching the T-shaped sliders are formed in the outer wall of the fixing pipe. When the collar slides on the fixing pipe, through the plurality of T-shaped sliders arranged on the inner wall of the collar and the T-shaped chutes formed in the outer wall of the fixing pipe, a better limiting and guiding effect can be achieved on the collar, thereby effectively preventing the collar from rotating on the fixing pipe, and further making the collar have higher stability when sliding on the fixing pipe.

[0012] Preferably, a sealing gasket is fixedly connected to the inner wall of the fixed tube, and the sealing gasket can be made of rubber material. Since rubber material has good sealing and buffering properties, the sealing gasket arranged on the inner wall of the fixed tube can effectively avoid hard contact between the connecting tube and the fixed tube, thereby providing better protection for the connecting tube and making the device more sealed when in use.

[0013] Preferably, guide blocks are fixedly connected to both sides of the push block, and guide grooves matching the guide blocks are provided on the inner wall of the through slot. When the push block slides inside the through slot, the guide blocks arranged on both sides of the push block and the guide grooves provided on the inner wall of the through slot can play a better role in limiting and guiding the push block, thereby making the push block more stable when sliding inside the through slot and effectively preventing the push block from leaving the through slot, thereby effectively ensuring the normal use of the device.

[0014] Preferably, a plurality of balls are rotatably connected to the side of the T-shaped slider away from the collar, and the balls are evenly distributed in a linear array on one side of the T-shaped slider. When the collar slides on the fixed tube, the friction between the T-shaped slider and the inner wall of the T-shaped groove can be effectively reduced by the plurality of balls arranged on the T-shaped slider, thereby making the collar slide more smoothly on the fixed tube.

[0015] Preferably, the outer wall of the ring is provided with a rubber sleeve, and the outer wall of the rubber sleeve is provided with anti-slip grooves. When the staff pulls the ring to make it slide on the fixed tube, the rubber sleeve provided on the outer wall of the ring can make people's hands more comfortable when pulling the ring. The anti-slip grooves provided on the outer wall of the rubber sleeve can effectively increase the friction between people's hands and the ring, preventing people's hands from slipping when pulling the ring.

[0016] Preferably, the corner of the inner wall of the collar close to the push block is chamfered. When the staff pulls the collar, the collar will squeeze the push block to move it. By chamfering the inner wall of the collar close to the push block, it is easier for the collar to push the push block to move. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the utility model;

[0018] Figure 2 This is a schematic diagram of the front cross-sectional structure of the connection between the connecting pipe and the fixed pipe of the utility model;

[0019] Figure 3 It is a schematic diagram of the side cross-sectional structure of the connection between the connecting pipe and the fixed pipe of the utility model;

[0020] Figure 4 It is a schematic diagram of the overall structure of the sleeve of the utility model;

[0021] Figure 5 For this utility modelFigure 1 Schematic enlarged structure diagram at position A in the [Chinese context].

[0022] In the figure: 1. Reactor body; 2. Terminal body; 3. Connecting pipe; 4. Fixed pipe; 5. Sliding cavity; 6. Limiting block; 7. Spring; 8. Through groove; 9. Pushing block; 10. Collar; 11. T-shaped slider; 12. T-shaped sliding groove; 13. Sealing gasket; 14. Guide block; 15. Guide groove; 16. Ball. Specific implementation manners

[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0024] Please refer to Figures 1-5, A reactor facilitating side - arranged wire outlet, comprising a reactor body 1, a terminal body 2 and a connecting pipe 3. One end of the terminal body 2 far from the reactor body 1 is fixedly connected with a fixing pipe 4 matching the connecting pipe 3. The connection between the connecting pipe 3 and the fixing pipe 4 is detachable, which is convenient for people to replace the connecting pipe 3. A sealing gasket 13 is fixedly connected to the inner wall of the fixing pipe 4, which can not only play a good protective role for the connecting pipe 3, but also make the device have better sealing performance during use. A plurality of sliding cavities 5 are opened on the outer wall of the connecting pipe 3. A limiting block 6 is slidably connected inside the sliding cavity 5. Springs 7 are fixedly connected to the sides of the inner wall of the sliding cavity 5 far from the limiting block 6. The other end of the spring 7 is fixedly connected with the limiting block 6. One side of the limiting block 6 far from the spring 7 extends out of the connecting pipe 3. A through - groove 8 matching the limiting block 6 is opened on the fixing pipe 4. A pushing block 9 is slidably connected inside the through - groove 8. Guide blocks 14 are fixedly connected to both sides of the pushing block 9. Guide grooves 15 matching the guide blocks 14 are opened on the inner wall of the through - groove 8. One side of the pushing block 9 abuts against the limiting block 6, and the other side extends out of the fixing pipe 4. A collar 10 is slidably connected to the outer wall of the fixing pipe 4. By pulling the collar 10 to move towards the pushing block 9, when the collar 10 contacts the pushing block 9, it will squeeze the pushing block 9, causing it to move downward. While the pushing block 9 moves downward, it will push the limiting block 6 to move. After the limiting block 6 disengages from the through - groove 8, the connecting pipe 3 can be disassembled and replaced. A rubber sleeve is sleeved on the outer wall of the collar 10, and anti - slip lines are opened on the outer wall of the rubber sleeve. The corner of the inner wall of the collar 10 near the pushing block 9 is chamfered. A plurality of T - shaped sliders 11 are fixedly connected to the inner wall of the collar 10. T - shaped sliding grooves 12 matching the T - shaped sliders 11 are opened on the outer wall of the fixing pipe 4. A plurality of rolling balls 16 are rotatably connected to the side of the T - shaped slider 11 far from the collar 10, and the rolling balls 16 are linearly arrayed and equally spaced on one side of the T - shaped slider 11. When the collar 10 slides on the fixing pipe 4, through the plurality of rolling balls 16 arranged on the T - shaped slider 11, the friction between the T - shaped slider 11 and the inner wall of the T - shaped sliding groove 12 can be effectively reduced, so that the collar 10 slides more smoothly on the fixing pipe 4.

[0025] As can be seen from the above, the specific implementation manner of the present utility model is as follows:

[0026] When the connecting pipe 3 is damaged after the reactor has been used for a long time, the collar 10 can be pulled to move towards the pushing block 9. When the collar 10 contacts the pushing block 9, it will squeeze the pushing block 9, causing it to move downward. While the pushing block 9 moves downward, it will push the limiting block 6 to move. After the limiting block 6 disengages from the through - groove 8, the connecting pipe 3 can be disassembled. When inserting a new connecting pipe 3 into the fixing pipe 4, the limiting block 6 will be squeezed and move into the sliding cavity 5, and at the same time, the spring 7 will be in a compressed state. After the connecting pipe 3 is completely inserted into the fixing pipe 4 and abuts against the sealing gasket 13, the limiting block 6 will pop out under the action of the spring 7 and be clamped with the through - groove 8 on the fixing pipe 4, and the reactor can be used normally.

[0027] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A reactor that is convenient for lateral arrangement of outgoing wires, comprising a reactor body (1), a terminal body (2) and a connecting pipe (3), characterized in that: One end of the terminal body (2) away from the reactor body (1) is fixedly connected to a fixed tube (4) matching the connecting tube (3); the outer wall of the connecting tube (3) is provided with a plurality of sliding cavities (5); the interior of the sliding cavity (5) is slidably connected to a limit block (6); the inner wall of the sliding cavity (5) is fixedly connected to a spring (7) on one side away from the limit block (6); the other end of the spring (7) is fixedly connected to the limit block (6); the side of the limit block (6) away from the spring (7) extends out of the connecting tube (3); a through groove (8) matching the limit block (6) is provided on the fixed tube (4); a push block (9) is slidably connected inside the through groove (8); one side of the push block (9) is arranged to abut against the limit block (6); the other side extends out of the fixed tube (4); the outer wall of the fixed tube (4) is slidably connected to a collar (10).

2. A reactor that facilitates the arrangement of outgoing wires on the side according to claim 1, characterized in that: The inner wall of the collar (10) is fixedly connected with a plurality of T-shaped sliding blocks (11), and the outer wall of the fixed tube (4) is provided with a plurality of T-shaped sliding grooves (12) matching the T-shaped sliding blocks (11).

3. A reactor that facilitates the side arrangement of outgoing wires according to claim 1, characterized in that: A sealing gasket (13) is fixedly connected to the inner wall of the fixed tube (4).

4. The reactor for facilitating the side arrangement of outgoing wires according to claim 1, characterized in that: Guide blocks (14) are fixedly connected to both sides of the push block (9), and the inner wall of the through groove (8) is provided with a guide groove (15) matching with the guide block (14).

5. The reactor for facilitating the side arrangement of outgoing wires according to claim 2, characterized in that: A plurality of balls (16) are rotatably connected to one side of the T-shaped slider (11) away from the collar (10), and the balls (16) are evenly distributed in a linear array on one side of the T-shaped slider (11).

6. The reactor for facilitating the side arrangement of outgoing wires according to claim 1, characterized in that: The outer wall of the sleeve ring (10) is sleeved with a rubber sleeve, and the outer wall of the rubber sleeve is provided with anti-slip grooves.

7. The reactor for facilitating the side arrangement of outgoing wires according to claim 1, characterized in that: The corner of the inner wall of the collar (10) close to the push block (9) is chamfered.