A magnetic energy storage connection terminal
The magnetic connection structure and protective plate design solve the problems of loosening and impurities entering the energy storage connection terminals during the plug-in process, achieving an efficient and stable connection effect.
Patent Information
- Application Number
- CN202411777521.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2044-12-05
AI Technical Summary
The existing energy storage connection terminals are easily loosened due to accidental pulling when the plug is connected to the socket, resulting in poor fastening effect, and impurities are easily introduced during the plugging process, causing poor contact.
A magnetic connection structure is adopted, and the adsorption effect of the first magnet and the second magnet is used to automatically lock the card block into the card slot. The anti-slip ring and the limit block are combined to limit the rotation angle and enhance the connection stability. Before plugging in, the spring is used to push the protective plate to close the center hole to prevent impurities from entering. The wire is clamped by the magnetic adsorption screw sleeve and the limit slot structure to ensure the connection strength.
It improves the convenience and stability of the plug-in operation, avoids accidental loosening and foreign matter intrusion, enhances the protection performance and scope of use of the connection, and simplifies the disassembly process.
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Figure CN119651262B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of energy storage equipment, and in particular to a magnetic energy storage connection terminal. Background Art
[0002] Energy storage refers to the process of storing energy through a medium or device and releasing it when needed. According to the energy storage method, energy storage can be divided into three categories: physical energy storage, chemical energy storage, and electromagnetic energy storage. Among them, chemical energy storage mainly includes lead-acid batteries, lithium-ion batteries, sodium-sulfur batteries, flow batteries, etc. When using energy storage equipment, connection terminals are required for wiring.
[0003] For example, the patent with publication number CN217881995U discloses a terminal structure and an energy storage connector. This patent provides an inner cavity within the terminal base and sets a conductive ring as an elastic structure with a variable diameter. After the conductive ring is placed into the inner cavity from the opening, the conductive ring is clamped and abutted against the inner cavity under the action of its own elastic force, so it will not fall out, avoiding the use of welding and riveting processes. During the production and assembly of the product, the process adopted is simple and reliable, and there will be no product defect rate problems, thereby greatly improving production efficiency and effectively reducing production costs. However, in actual use, after the plug is inserted into the socket, it is tightened by the elastic deformation of the conductive ring. When subjected to a large accidental pull, the plug and the socket may fall off, resulting in a relatively poor overall tightening effect.
[0004] Therefore, in view of this, the existing structure and defects are studied and improved, and a magnetic energy storage connection terminal is proposed. Summary of the Invention
[0005] The object of the present invention is to provide a magnetic energy storage connection terminal to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a magnetic energy storage connection terminal, comprising a plug shell and a connection assembly, wherein a connector seat is fixed inside the plug shell, and a crown spring seat is slidably connected to the outer side of one end of the connector seat, and the outer side of the crown spring seat is connected to the socket shell, and the connection assembly is arranged on the outer sides of the plug shell and the socket shell, and the connection assembly comprises an anti-slip ring, a block, a first magnet, a limit block, a fixing ring, a slot, and a second magnet, an anti-slip ring is rotatably connected to the outer side of one end of the plug shell, and a block is fixed on one side of the anti-slip ring, and one side of the end of the block is connected to the first magnet, and a limit block is fixed on the other side of the anti-slip ring, a fixing ring is fixed on one end of the socket shell, and a slot is provided on the outer side of the fixing ring, and a second magnet is placed inside one end of the slot.
[0007] Furthermore, a protective assembly is provided inside the fixed ring, and the protective assembly includes a sliding cavity, a spring, a protective plate and a guide portion. Sliding cavities are opened at both ends of the interior of the fixed ring, and springs are connected to the upper and lower ends of the interior of the sliding cavity. A protective plate is fixed to one end of the spring, and a guide portion is provided at one end of the protective plate.
[0008] Furthermore, the protective assembly further includes a sealing ring and a sealing groove. One side of the fixing ring is connected to the sealing ring. One side of the plug shell is provided with a sealing groove, and the shape of the sealing groove matches that of the sealing ring.
[0009] Furthermore, a first fixing component is provided at the other end of the plug shell, and the first fixing component includes a cotton sleeve, a positioning rod and an anti-slip plate. The cotton sleeve is fixed inside the other end of the plug shell, and the positioning rod is slidably connected inside the other end of the plug shell, and an anti-slip plate is placed at one end of the positioning rod.
[0010] Furthermore, the first fixing component also includes a third magnet, a screw sleeve and a limiting groove. The third magnet is fixed inside the other end of the positioning rod, and the other end of the positioning rod is slidably connected to the screw sleeve. A limiting groove is opened on the inner side of the screw sleeve, and the screw sleeve is threadedly connected to the plug shell.
[0011] Furthermore, a first stabilizing component is connected to the outer side of the screw sleeve, and the first stabilizing component includes a tooth groove, a slide rod and a pressure block. A tooth groove is opened on one side of the screw sleeve, and the upper and lower ends of the screw sleeve are slidably connected to the slide rod, and the end of the slide rod is fixed with a pressure block.
[0012] Furthermore, the first stabilizing assembly also includes a guide ring, an end tooth ring and a fourth magnet. One end of the pressure block is slidably connected to the guide ring, and the end tooth ring is fixed inside the guide ring, and the fourth magnet is fixed on one side of the guide ring.
[0013] Furthermore, the first stabilizing component also includes a limit plate, a limit sleeve, a pressure rod and an elastic contact piece. A limit plate is arranged on one side of the end tooth ring, and one end of the limit plate is slidingly connected to the limit sleeve on the outside. A pressure rod is arranged inside the limit sleeve, and the end of the pressure rod is connected to the elastic contact piece, and the elastic contact piece is electrically connected to the connector seat.
[0014] Furthermore, the limiting sleeve is fixedly connected to the plug shell, and the plug shell is slidably connected to the pressure rod.
[0015] Furthermore, a second fixing component is provided at the other end of the socket shell, and the structure of the second fixing component is the same as that of the first fixing component. A second stabilizing component is connected to one side of the second fixing component, and the structure of the second stabilizing component is consistent with that of the first stabilizing component.
[0016] The present invention provides a magnetic energy storage connection terminal, which has the following beneficial effects:
[0017] The locking block is then locked into the slot on the fixing ring, and the first and second magnets are attracted to each other, causing the anti-slip ring to rotate, and the locking block is locked into the slot. Therefore, after the plug shell and the socket shell are plugged into each other, they are automatically locked by magnetic attraction, thereby improving the convenience of operation and enhancing the stability of the connection, avoiding the situation of loosening due to accidental pulling. When disassembling, the groove on the outside of the anti-slip ring can increase the friction force, so that the restriction between the anti-slip ring and the fixing ring can be released by twisting the anti-slip ring, so that no other tools are needed for disassembly, which is very convenient. At the same time, the limit block is used to limit the rotatable angle of the anti-slip ring, so there is no need to spend time to align and adjust the angle of the anti-slip ring during the plugging process, which is conducive to improving the efficiency of plugging.
[0018] 2. Before plugging in, the spring of the present invention can push the protective plate to slide inside the sliding cavity, thereby sealing the central hole of the fixing ring. When not plugged in, the protective plate can be used to shield and protect the end of the socket shell, preventing impurities and dust from entering the interior of the socket shell, which is difficult to clean, and avoiding poor contact of the crown spring seat due to the adhesion of impurities. During plugging in, the connector seat will squeeze the guide portion on the protective plate, so that the two protective plates will automatically move apart to avoid it. No additional operation is required to open it, which is more convenient. After plugging in, the sealing ring will also fit tightly with the sealing groove, further improving the protection performance of the connection.
[0019] 3. When the plug shell of the present invention is installed on the wire, it is only necessary to insert the wire into the interior of the plug shell. At this time, the third magnet will attract the iron screw sleeve, which will be separated outward, so that a larger space is formed in the middle to avoid blocking the wire from entering. After the wire is inserted, it is only necessary to rotate the screw sleeve to move the screw sleeve to the outside of the plug shell, and the plug shell will limit the horizontal position of the positioning rod. Therefore, the screw sleeve will squeeze the positioning rod through the limit groove, so that all the anti-slide plates move toward the center at the same time, and the rubber of wires of different thicknesses can be clamped and fixed, thereby improving the range of use of the connecting terminal. When disassembling, it is only necessary to rotate the screw sleeve in the opposite direction to reset the screw sleeve. At this time, the third magnet will drive all the positioning rods to move outward at the same time, so that the anti-slide plate can loosen the wire rubber, making disassembly very convenient. Similarly, the second fixing component can also be used to conveniently fix another wire to the socket shell.
[0020] 4. When rotating the screw sleeve, the present invention allows the user to first pinch the pressure block. At this time, the pressure block will squeeze the inclined surface of the guide ring under the guidance of the slide rod, causing the end tooth ring to separate from the tooth groove, thereby not restricting the rotation of the screw sleeve. After locking the screw sleeve, the user releases the pressure block, and the fourth magnet attracts the screw sleeve, thereby causing the teeth on the end tooth ring to insert into the tooth groove. Since the limit sleeve restricts the position of the limit plate, the rotation direction of the screw sleeve can be locked, preventing the wire from accidentally loosening from the plug shell due to loose threads, thereby improving the strength of the connection. Before rotating the screw sleeve, the elastic contact will open under elastic deformation to allow the wire end to be inserted into the elastic contact. When the screw sleeve drives the limit plate to slide inside the limit sleeve, the limit plate will also squeeze the inclined surface of the pressure rod, causing it to move toward the tooth groove, causing the elastic contact to deform and fully contact the wire end, thereby connecting the wire to the connector seat. Similarly, the use of the second stabilizing component can also enhance the stability of the connection between the wire and the socket shell, and at the same time, it can quickly connect the wire to the crown spring seat. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the overall three-dimensional structure of a magnetic energy storage connection terminal of the present invention;
[0022] Figure 2 This is a schematic diagram of the three-dimensional structure of a plug shell of a magnetic energy storage connection terminal of the present invention;
[0023] Figure 3 This is a schematic diagram of the three-dimensional structure of a limit block of a magnetic energy storage connection terminal of the present invention;
[0024] Figure 4 This is a schematic diagram of the three-dimensional structure of a socket shell of a magnetic energy storage connection terminal of the present invention;
[0025] Figure 5 This is a schematic diagram of the three-dimensional structure of a protective component of a magnetic energy storage connection terminal of the present invention;
[0026] Figure 6 This is a schematic diagram of the internal structure of a screw sleeve of a magnetic energy storage connection terminal of the present invention;
[0027] Figure 7 This is a schematic diagram of the three-dimensional structure of the first stabilizing component of a magnetic energy storage connection terminal of the present invention.
[0028] In the figure: 1. Plug housing; 2. Connector base; 3. Crown spring base; 4. Socket housing; 5. Connecting assembly; 501. Anti-slip ring; 502. Clamping block; 503. First magnet; 504. Stop block; 505. Fixing ring; 506. Clamping groove; 507. Second magnet; 6. Protective assembly; 601. Sliding cavity; 602. Spring; 603. Protective plate; 604. Guide portion; 605. Sealing ring; 606. Sealing groove; 7. First fixing assembly; 701. Cotton sleeve; 702. Positioning rod; 703. Anti-skid plate; 704. Third magnet; 705. Screw sleeve; 706. Limiting groove; 8. First stabilizing component; 801. Tooth groove; 802. Slide rod; 803. Pressure block; 804. Guide ring; 805. End tooth ring; 806. Fourth magnet; 807. Limiting plate; 808. Limiting sleeve; 809. Pressure rod; 810. Elastic contact piece; 9. Second fixing component; 10. Second stabilizing component. DETAILED DESCRIPTION
[0029] See also Figures 1 to 7 The present invention provides a technical solution: a magnetic energy storage connection terminal, including a plug shell 1 and a connecting component 5, a connector seat 2 is fixed inside the plug shell 1, and a crown spring seat 3 is slidably connected to the outer side of one end of the connector seat 2, and the outer side of the crown spring seat 3 is connected to the socket shell 4, and the connecting component 5 is arranged on the outer side of the plug shell 1 and the socket shell 4, and the connecting component 5 includes an anti-slip ring 501, a block 502, a first magnet 503, a limit block 504, a fixing ring 505, a slot 506 and a second magnet 507, an anti-slip ring 501 is rotatably connected to the outer side of one end of the plug shell 1, and a block 502 is fixed on one side of the anti-slip ring 501, and one side of the end of the block 502 is connected to the first magnet 503, and the other side of the anti-slip ring 501 is fixed with a limit block 504, a fixing ring 505 is fixed at one end of the socket shell 4, and a slot 506 is opened on the outer side of the fixing ring 505, and a second magnet 507 is placed inside one end of the slot 506.
[0030] See also Figures 1 to 5 , a protective assembly 6 is provided inside the fixing ring 505, and the protective assembly 6 includes a sliding cavity 601, a spring 602, a protective plate 603 and a guide portion 604. Sliding cavities 601 are opened at both ends of the interior of the fixing ring 505, and the upper and lower ends of the interior of the sliding cavity 601 are connected to the spring 602. A protective plate 603 is fixed to one end of the spring 602, and a guide portion 604 is provided at one end of the protective plate 603. The protective assembly 6 also includes a sealing ring 605 and a sealing groove 606. A sealing ring 605 is connected to one side of the fixing ring 505, and a sealing groove 606 is opened on one side of the plug housing 1, and the sealing groove 606 matches the shape of the sealing ring 605;
[0031] The specific operation is as follows: first, dock the plug shell 1 with the socket shell 4, and the connector seat 2 will squeeze the guide part 604 on the protective plate 603, so that the two protective plates 603 will automatically separate to both sides for avoidance, without the need for other additional operations, which is more convenient. After plugging in, the sealing ring 605 will also fit tightly with the sealing groove 606, further improving the protection performance of the connection. At the same time, the limit block 504 is used to limit the rotatable angle of the anti-slip ring 501, so there is no need to spend time to align the angle of the anti-slip ring 501 during the plugging process, which is conducive to improving the efficiency of plugging in. When the connector seat 2 is inserted into the crown spring seat 3, the clamping block 502 will also slide into the clamping groove 506 on the fixing ring 505. At the same time, due to the mutual adsorption of the first magnet 503 and the second magnet 507, the anti-slip ring 501 rotates, and the clamping block 502 will be clamped into the clamping groove 506. 505 , thereby preventing the plug housing 1 from being loosened due to accidental pulling. When disassembling, the groove on the outside of the anti-slip ring 501 can increase the friction force, so that the restriction between the anti-slip ring 501 and the fixing ring 505 can be released by twisting the anti-slip ring 501, so that no other tools are required for disassembly, which is very convenient. At the same time, the spring 602 can also push the protective plate 603 to slide inside the sliding cavity 601, thereby closing the central hole of the fixing ring 505. When not plugged in, the protective plate 603 can be used to shield and protect the end of the socket housing 4, preventing impurities and dust from entering the interior of the socket housing 4 and making it difficult to clean, and preventing the crown spring seat 3 from having poor contact when it is subsequently plugged in again due to impurities adhering to it.
[0032] See also Figure 1 、 Figure 3 、 Figure 6 and Figure 7, the other end of the plug shell 1 is provided with a first fixing component 7, and the first fixing component 7 includes a cotton sleeve 701, a positioning rod 702 and an anti-slip plate 703, the other end of the plug shell 1 is fixed with a cotton sleeve 701, and the other end of the plug shell 1 is internally slidably connected to the positioning rod 702, and one end of the positioning rod 702 is provided with an anti-slip plate 703, the first fixing component 7 also includes a third magnet 704, a screw sleeve 705 and a limiting groove 706, the other end of the positioning rod 702 is internally fixed with a third magnet 704, and the positioning rod The other end of 702 is slidably connected to a screw sleeve 705, and a limiting groove 706 is provided on the inner side of the screw sleeve 705, and the screw sleeve 705 is threadedly connected to the plug shell 1, and the outer side of the screw sleeve 705 is connected to a first stabilizing component 8, and the first stabilizing component 8 includes a tooth groove 801, a slide rod 802 and a pressure block 803, a tooth groove 801 is provided on one side of the screw sleeve 705, and the upper and lower ends of the screw sleeve 705 are slidably connected to the slide rod 802, and the end of the slide rod 802 is fixed with a pressure block 803, the first stabilizing component 8 also includes a guide Ring 804, end tooth ring 805 and fourth magnet 806, one end of the pressure block 803 is slidably connected to the guide ring 804, and the end tooth ring 805 is fixed inside the guide ring 804, and the fourth magnet 806 is fixed on one side of the guide ring 804, the first stabilizing component 8 also includes a limit plate 807, a limit sleeve 808, a pressure rod 809 and an elastic contact piece 810, a limit plate 807 is placed on one side of the end tooth ring 805, and one end of the limit plate 807 is slidably connected to the limit sleeve 808, the inner part of the limit sleeve 808 A pressure rod 809 is provided, and the end of the pressure rod 809 is connected to an elastic contact piece 810, and the elastic contact piece 810 is electrically connected to the connector seat 2. The limiting sleeve 808 is fixedly connected to the plug shell 1, and the plug shell 1 is slidably connected to the pressure rod 809. The other end of the socket shell 4 is provided with a second fixing component 9, and the structure of the second fixing component 9 is the same as that of the first fixing component 7. A second stabilizing component 10 is connected to one side of the second fixing component 9, and the structure of the second stabilizing component 10 is consistent with that of the first stabilizing component 8.
[0033] The specific operation is as follows: insert the wire into the interior of the plug shell 1. At this time, the third magnet 704 will attract the iron screw sleeve 705, which will be separated to the outside, so that a larger space is formed in the middle to avoid blocking the wire from entering. In this process, the elastic contact piece 810 will open under elastic deformation so that the wire end can be inserted into the elastic contact piece 810. Then pinch the pressure block 803. At this time, the pressure block 803 will squeeze the inclined surface of the guide ring 804 under the guidance of the slide bar 802, so that it drives the end tooth ring 805 to separate from the tooth groove 801, thereby not restricting the rotation of the screw sleeve 705. When the screw sleeve 705 is rotated, the screw sleeve 705 can be moved to the outside of the plug shell 1, and the plug shell 1 will limit the horizontal position of the positioning rod 702. Therefore, the screw sleeve 705 will squeeze the positioning rod 702 through the limiting groove 706, so that all the anti-slide plates 703 move toward the center at the same time, so that the rubber of wires of different thicknesses can be clamped and fixed. In this process, the screw sleeve The sleeve 705 will drive the limiting plate 807 to slide inside the limiting sleeve 808. The limiting plate 807 will also squeeze the inclined surface of the pressure rod 809, causing it to move toward the tooth groove 801, causing the elastic contact piece 810 to deform, thereby fully contacting the wire end, and then the wire can be connected to the connector seat 2. After tightening the screw sleeve 705, release it, and the fourth magnet 806 will attract the screw sleeve 705, thereby driving the teeth on the end tooth ring 805 to insert into the tooth groove 801. Since the limiting sleeve 808 will limit the position of the limiting plate 807, the rotation direction of the screw sleeve 705 can be locked, preventing the wire from accidentally loosening from the plug shell 1 due to loose threads, further improving the strength of the connection. Similarly, the second fixing component 9 can also facilitate the fixed connection of another wire to the socket shell 4, and the second stabilizing component 10 can also enhance the stability of the connection between the wire and the socket shell 4, and at the same time, the wire can be connected to the crown spring seat 3.
[0034] In summary, when using this magnetic energy storage connection terminal, first insert the wire into the interior of the plug shell 1. At this time, the third magnet 704 will attract the iron screw sleeve 705, which will separate outward, forming a larger space in the middle. During this process, the elastic contact piece 810 will open under elastic deformation so that the end of the wire can be inserted into the elastic contact piece 810. Then, pinch the pressure block 803. At this time, the pressure block 803 will squeeze the inclined surface of the guide ring 804 under the guidance of the slide rod 802, so that it drives the end tooth ring 805 to separate from the tooth groove 801, thereby not restricting the rotation of the screw sleeve 705. Secondly, by rotating the screw sleeve 705, the screw sleeve 705 can be moved to the outside of the plug shell 1, and the plug shell 1 will restrict the positioning rod 702. When the screw sleeve 705 is tightened, the fourth magnet 806 will absorb the screw sleeve 705, thereby driving the teeth on the end gear ring 805 to be inserted into the tooth groove 801, and because the limiting sleeve 808 will limit the limiting plate 807, the limiting plate 807 will also squeeze the inclined surface of the pressure rod 809, causing it to move toward the tooth groove 801, causing the elastic contact piece 810 to deform, thereby fully contacting the wire end, and then the wire can be connected to the connector seat 2. 07, thereby locking the rotation direction of the screw sleeve 705, avoiding the situation that the wire and the plug shell 1 are accidentally loosened due to loose threads. Similarly, the second fixing component 9 is also convenient for fixing the other wire to the socket shell 4, and the second stabilizing component 10 can also enhance the stability of the connection between the wire and the socket shell 4, and at the same time, the wire can be connected to the crown spring seat 3. After that, just dock the plug shell 1 with the socket shell 4, the connector seat 2 will squeeze the guide part 604 on the protective plate 603, so that the two protective plates 603 will automatically separate to both sides for avoidance, and after plugging, the sealing ring 605 will also fit tightly with the sealing groove 606, and when the connector seat 2 is inserted into the crown spring seat 3, the block 502 It will also slide into the slot 506 on the fixing ring 505. At the same time, due to the mutual attraction between the first magnet 503 and the second magnet 507, the anti-slip ring 501 rotates, and the block 502 is stuck in the slot 506. Therefore, after the plug shell 1 and the socket shell 4 are plugged in, they will be automatically locked by magnetic attraction. Finally, when disassembling, twisting the anti-slip ring 501 can release the restriction between the anti-slip ring 501 and the fixing ring 505. At the same time, the spring 602 can push the protective plate 603 to slide inside the sliding cavity 601, thereby closing the center hole of the fixing ring 505. When not plugged in, the protective plate 603 can be used to shield and protect the end of the socket shell 4 to prevent impurities and dust from entering the interior of the socket shell 4.
[0035] The embodiments of the present invention are presented for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described in order to better illustrate the principles of the invention and its practical application and to enable those skilled in the art to understand the invention and design various embodiments with various modifications as suited for specific applications.
Claims
1. A magnetic energy storage connection terminal, characterized in that: The invention comprises a plug shell (1) and a connecting assembly (5), wherein a connector seat (2) is fixed inside the plug shell (1), and a crown spring seat (3) is slidably connected to the outer side of one end of the connector seat (2), and the outer side of the crown spring seat (3) is connected to the socket shell (4), and the connecting assembly (5) is arranged on the outer sides of the plug shell (1) and the socket shell (4), and the connecting assembly (5) comprises an anti-slip ring (501), a clamping block (502), a first magnet (503), a limit block (504), A fixing ring (505), a card slot (506) and a second magnet (507), one end of the plug shell (1) is rotatably connected to the outside with an anti-slip ring (501), and a card block (502) is fixed on one side of the anti-slip ring (501), and one end of the card block (502) is connected to the first magnet (503), and the other side of the anti-slip ring (501) is fixed with a limit block (504), one end of the socket shell (4) is fixed with a fixing ring (505), and the fixing ring (5 05) is provided with a card slot (506) on the outside, and a second magnet (507) is arranged inside one end of the card slot (506), a protective component (6) is provided inside the fixing ring (505), and the protective component (6) includes a sliding cavity (601), a spring (602), a protective plate (603) and a guide portion (604), the sliding cavities (601) are provided at both ends of the interior of the fixing ring (505), and the upper and lower ends of the interior of the sliding cavity (601) are connected to the spring (602), one end of the spring (602) is fixed with a protective plate (603), and one end of the protective plate (603) is provided with a guide portion (604), the protective component (6) also includes a sealing ring (605) and a sealing groove (606), one side of the fixing ring (505) is connected to the sealing ring (605), and one side of the plug shell (1) is provided with a sealing groove (606), and the shape of the sealing groove (606) matches that of the sealing ring (605).
2. The magnetic energy storage connection terminal according to claim 1, characterized in that: The other end of the plug shell (1) is provided with a first fixing assembly (7), and the first fixing assembly (7) includes a cotton sleeve (701), a positioning rod (702) and an anti-slide plate (703). The cotton sleeve (701) is fixed inside the other end of the plug shell (1), and the positioning rod (702) is slidably connected inside the other end of the plug shell (1), and an anti-slide plate (703) is arranged on one end of the positioning rod (702).
3. The magnetic energy storage connection terminal according to claim 2, characterized in that: The first fixing assembly (7) further comprises a third magnet (704), a screw sleeve (705) and a limiting groove (706); the third magnet (704) is fixed inside the other end of the positioning rod (702); the screw sleeve (705) is slidably connected to the other end of the positioning rod (702); a limiting groove (706) is provided on the inner side of the screw sleeve (705), and the screw sleeve (705) is threadedly connected to the plug housing (1).
4. The magnetic energy storage connection terminal according to claim 3, characterized in that: The outer side of the screw sleeve (705) is connected to a first stabilizing component (8), and the first stabilizing component (8) includes a tooth groove (801), a slide rod (802) and a pressure block (803). One side of the screw sleeve (705) is provided with a tooth groove (801), and the upper and lower ends of the screw sleeve (705) are slidably connected to the slide rod (802), and the end of the slide rod (802) is fixed with a pressure block (803).
5. The magnetic energy storage connection terminal according to claim 4, characterized in that: The first stabilizing assembly (8) further comprises a guide ring (804), an end tooth ring (805) and a fourth magnet (806); one end of the pressing block (803) is slidably connected to the guide ring (804); the end tooth ring (805) is fixed inside the guide ring (804); and the fourth magnet (806) is fixed on one side of the guide ring (804).
6. The magnetic energy storage connection terminal according to claim 5, characterized in that: The first stabilizing component (8) further comprises a limiting plate (807), a limiting sleeve (808), a pressure rod (809) and an elastic contact piece (810); the limiting plate (807) is arranged on one side of the end tooth ring (805), and the outer side of one end of the limiting plate (807) is slidably connected to the limiting sleeve (808); a pressure rod (809) is arranged inside the limiting sleeve (808), and the end of the pressure rod (809) is connected to the elastic contact piece (810), and the elastic contact piece (810) is electrically connected to the connector seat (2).
7. The magnetic energy storage connection terminal according to claim 6, characterized in that: The limiting sleeve (808) is fixedly connected to the plug housing (1), and the plug housing (1) is slidably connected to the pressure rod (809).
8. The magnetic energy storage connection terminal according to claim 7, characterized in that: A second fixing assembly (9) is provided at the other end of the socket housing (4), and the structure of the second fixing assembly (9) is the same as that of the first fixing assembly (7); a second stabilizing assembly (10) is connected to one side of the second fixing assembly (9), and the structure of the second stabilizing assembly (10) is consistent with that of the first stabilizing assembly (8).
Citation Information
Patent Citations
Terminal structure of energy storage connector and energy storage connector
CN217881995U
Energy storage high voltage connector
CN110112602A
Plug terminal and lock catch plug
CN220021680U