A new energy vehicle charging pile
By introducing electromagnetic blocks and pressure sensors into new energy vehicle charging piles, the problem of automatic identification of charging gun ports has been solved, ensuring charging accuracy and stability, and enhancing the working efficiency and safety of charging piles.
Patent Information
- Application Number
- CN202510190312.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2045-02-20
AI Technical Summary
Existing new energy vehicle charging piles cannot automatically identify when the charging gun port is disconnected from the vehicle's charging port during the charging process, resulting in inaccurate charging status and affecting the charging effect.
A new energy vehicle charging pile was designed, which includes a charging gun plate, auxiliary components, protective components and portable components. The charging status is monitored in real time through the magnetic connection of the electromagnetic block and the cooperation of the pressure sensor. The stability and protection of charging are improved through the use of a cooler, vacuum suction cup and spring structure.
It achieves precise connection and stable charging of the charging gun, improves the working efficiency of the charging pile, and enhances the safety and convenience of the charging process.
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Figure CN119734603B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of charging piles, and particularly relates to a new energy automobile charging pile. BACKGROUND
[0002] The charging pile, also known as an electric vehicle charging station or an electric vehicle power supply device, is a device for providing electric energy for an electric vehicle, so that the electric vehicle can store enough electric energy to support its operation; at present, the prospect of new energy vehicles is becoming more and more broad, and the charging problem of new energy vehicles is becoming more and more prominent.
[0003] Through retrieval, in the prior art, Chinese patent publication No. CN119239348A, published on January 3, 2025, discloses a new energy automobile charging pile, which comprises a main machine box, a main transmission line is arranged on the inner side of the main machine box, a plug-in connector is arranged at the end of the main transmission line, a transmission groove is formed on the lower side of the main machine box, a conveying belt is installed on the inner side of the transmission groove, a plurality of transmission heads are placed on the conveying belt, the transmission head comprises an end transmission line, a charging head is fixedly connected to the lower side of the end transmission line, a dust cover is slidably connected to the end transmission line, a positioning block and a push block are fixedly connected to the upper side of the dust cover; the above embodiment can automatically disconnect after the automobile charging is completed, thereby providing convenience for subsequent users.
[0004] However, the device still has the following defects:
[0005] During the charging process, the vehicle owner will not stay near the charging pile for a long time, and when the charging gun port is disconnected from the vehicle charging port, it cannot be distinguished according to the vehicle itself, which limits the charging state, thereby reducing the working effect of the new energy automobile charging pile. SUMMARY
[0006] In view of the above problems, the application provides a new energy automobile charging pile. The new energy automobile charging pile comprises a charging pile shell, a charging gun clamping plate is installed on the outer wall of the charging pile shell, a cavity is formed on the outer wall of the charging pile shell, and an auxiliary assembly is arranged in the cavity.
[0007] The auxiliary assembly comprises a first limiting ring, a third fixed plate is installed on one side wall of the first limiting ring, a sleeve shell is slidably connected to the outer wall of the third fixed plate, a second electromagnetic block is installed on the outer wall of the sleeve shell, a first electromagnetic block is installed on the outer wall of the third fixed plate, a plurality of image monitoring structures are installed at equal intervals on one side wall of the third fixed plate, and a pressure sensor is installed on one side wall of the sleeve shell.
[0008] Only when the charging gun is in the state of source charging, the second electromagnetic block circuit source and the first electromagnetic block are in the magnetic connection state, so that whether the charging pile is in the source working state is judged in real time.
[0009] Further, the bottom inner wall of the charging pile shell is provided with a protection assembly, the top of the protection assembly is provided with an electronic element structure, the top of the electronic element structure is electrically connected with a power supply structure, and the two side inner walls of the charging pile shell are symmetrically provided with two groups of convenient assembly components.
[0010] Further, the auxiliary assembly further comprises a first fixing plate, one side wall of the first fixing plate is mounted on one side inner wall of the cavity, a sleeve sleeve is mounted on one side wall of the first fixing plate, a sliding tube is slidably connected to the inner wall of the sleeve sleeve, a second fixing plate is mounted on one side wall of the sliding tube, and one side wall of the first fixing plate is symmetrically provided with one end of two groups of first compression springs.
[0011] Further, the dustproof gauze is connected between the first fixing plate and the second fixing plate, the first limiting ring is mounted on one side wall of the second fixing plate, the dust removal pad layer is mounted on the inner wall of the first limiting ring, the first electric push rod is mounted on the outer wall of the first limiting ring, the second limiting ring is mounted on the output end of the first electric push rod, and the protective pad layer is mounted on the inner wall of the second limiting ring.
[0012] Further, one side wall of the sleeve shell is mounted on the inner wall of the cavity, the first electromagnetic block is magnetically connected with the second electromagnetic block, and the third fixing plate is provided with a refrigerator structure away from one side wall of the first electromagnetic block.
[0013] Further, the protection assembly comprises a first connecting plate, the bottom of the first connecting plate is mounted on the bottom inner wall of the charging pile shell, a sliding cavity is formed in the top of the first connecting plate, two groups of mounting blocks are symmetrically mounted on the two side inner walls of the first connecting plate, one group of connecting rods is mounted on one side wall of each mounting block, one end of one group of second compression springs is mounted on one side wall of each mounting block close to the connecting rod, and one group of sliding rectangular blocks is mounted on the other end of each second compression spring.
[0014] Further, the top of the two groups of sliding rectangular blocks is connected with a second connecting plate, the top of the second connecting plate is symmetrically provided with two groups of vacuum tubes, one group of vacuum suction cups is mounted on the top of each vacuum tube, and one group of air pumps is mounted on the outer wall of each vacuum tube.
[0015] Further, the portable assembly comprises third connecting plates, one side wall of each group of the third connecting plates is mounted on the inner wall of the charging pile shell, one group of sleeve pipes is mounted on one side wall of each group of the third connecting plates, one group of sliding rods is slidably connected to the inner wall of each group of the sleeve pipes, and one group of fourth connecting plates is mounted on one side wall of each group of the sliding rods.
[0016] Further, one group of insulating limit blocks is mounted on one side wall of each group of the fourth connecting plates, and one end of two groups of third compression springs is symmetrically mounted on the edge of one side wall of each group of the third connecting plates, and the other end of each group of the third compression springs is mounted on the edge of one side wall of the fourth connecting plate.
[0017] Further, one group of fourth electromagnetic blocks is mounted on the top of each group of the fourth connecting plates, one group of second electric push rods is mounted on the top of each group of the third connecting plates, one group of third electromagnetic blocks is mounted on the output end of each group of the second electric push rods, and the third electromagnetic blocks are magnetically connected with the fourth electromagnetic blocks.
[0018] The beneficial effects of the present application are:
[0019] 1. The third fixed plate drives the refrigeration device structure to assist in cooling the electronic element structure during sliding in the sleeve shell, and drives several groups of image monitoring structures to monitor the car being charged. Only when the charging gun is in the state of source charging, the second electromagnetic block circuit source and the first electromagnetic block are in the state of magnetic connection, the working state of the charging pile is judged in real time, and after the work is completed, the compression spring drives the outer wall of the first limit ring to extrude the pressure sensor. Only when the value of the pressure sensor is in the specified state, the charging gun port can be clamped on the charging gun clamping plate, thereby improving the charging accuracy and the working effect of the charging pile.
[0020] 2. The charging gun is taken out of the charging gun clamping plate and moved towards the first fixed plate during the taking process. The sliding tube slides in the sleeve during the movement, and the two groups of first compression springs are extruded. The dustproof gauze isolates impurities during the movement, and then the dust removal pad layer isolates the impurities on the outer wall of the charging wire during the recycling process, so that the impurities are prevented from entering the charging pile. The first electric push rod is started to drive the second limit ring to extend forward, and the suspended charging wire is supported by gravity, thereby avoiding the problem of subsequent charging gun disengagement and improving the stability of the work.
[0021] 3, start the air pump to pump the air in the vacuum tube, so that the vacuum tube is for negative pressure state, then drive several groups of vacuum chuck negative adsorption on the bottom of the electronic component structure, improve the support fixed effect at the same time improve the electronic component structure easy to disassemble and carry effect, when the charging pile shell is impacted will drive two groups of sliding rectangular block in the sliding cavity, start to squeeze and pull two groups of second compression spring, two groups of second compression spring according to the pressure of the body start to rebound, in the rebound process, restore balance, improve the buffering effect at the same time improve the protection effect of structure.
[0022] 4, start the second electric push rod to drive the fourth connecting plate to move to the direction close to the third connecting plate, start to squeeze two groups of third compression spring in the sliding process, then place the electronic component structure on the top of several groups of vacuum chuck, then separate the magnetic connection state of the third electromagnetic block and the fourth electromagnetic block, when the third compression spring feels the pressure disappears, drive two groups of fourth connecting plate to move to the direction close to the electronic component structure, drive two groups of insulating limit block to limit the outer wall of the electronic component structure in the moving process, improve the limiting compatibility effect at the same time expand the heat dissipation space.
[0023] The other characteristics and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art, and will be learned only from practice of the application. The objectives and other advantages of the present application will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0025] Figure 1 The automobile charging pile structure schematic diagram according to the embodiment of the present application is shown;
[0026] Figure 2 The electronic component structure structure schematic diagram according to the embodiment of the present application is shown;
[0027] Figure 3 The easy-to-assemble component structure schematic diagram according to the embodiment of the present application is shown;
[0028] Figure 4 The auxiliary component structure schematic diagram according to the embodiment of the present application is shown;
[0029] Figure 5 The pressure sensor structure schematic diagram according to the embodiment of the present application is shown;
[0030] Figure 6 A protective assembly cross-sectional view is shown according to an embodiment of the present application;
[0031] Figure 7 A sleeve pipe structure schematic diagram is shown according to an embodiment of the present application.
[0032] In the figure: 1, charging pile shell; 2, charging gun clamping plate; 3, cavity; 4, auxiliary assembly; 401, first fixed plate; 402, sleeve; 403, sliding pipe; 404, second fixed plate; 405, first compression spring; 406, dust separation gauze; 407, first limiting ring; 408, dust removal pad; 409, first electric push rod; 410, second limiting ring; 411, protective pad; 412, third fixed plate; 413, sleeve shell; 414, first electromagnetic block; 415, second electromagnetic block; 416, image monitoring structure; 417, pressure sensor; 5, electronic element structure; 6, source structure; 7, protective assembly; 701, first connecting plate; 702, sliding cavity; 703, mounting block; 704, connecting rod; 705, second compression spring; 706, sliding rectangular block; 707, second connecting plate; 708, vacuum pipe; 709, vacuum chuck; 710, air pump; 8, easy-to-wear assembly; 801, third connecting plate; 802, sleeve pipe; 803, sliding rod; 804, fourth connecting plate; 805, insulating limiting block; 806, third compression spring; 807, second electric push rod; 808, third electromagnetic block; 809, fourth electromagnetic block. DETAILED DESCRIPTION
[0033] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the following will be combined with the accompanying drawings of the embodiments of the present application to make a clear and complete description of the technical solutions in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0034] The embodiments of the present application provide a new energy automobile charging pile. The new energy automobile charging pile comprises a charging pile shell 1, as shown in Figure 1 , Figure 2 and Figure 3 , a charging gun clamping plate 2 is mounted on the outer wall of the charging pile shell 1, a cavity 3 is formed on the outer wall of the charging pile shell 1, an auxiliary assembly 4 is arranged in the cavity 3, a protective assembly 7 is mounted on the inner wall of the bottom of the charging pile shell 1, an electronic element structure 5 is arranged on the top of the protective assembly 7, a source structure 6 is electrically connected to the top of the electronic element structure 5, and two groups of easy-to-wear assemblies 8 are symmetrically mounted on the inner walls of the two sides of the charging pile shell 1.
[0035] As shown in Figure 4 and Figure 5 The auxiliary assembly 4 comprises a first fixed plate 401, one side wall of the first fixed plate 401 is installed on the inner wall of one side of the cavity 3, a sleeve socket 402 is installed on one side wall of the first fixed plate 401, a sliding pipe 403 is slidably connected to the inner wall of the sleeve socket 402, a second fixed plate 404 is installed on one side wall of the sliding pipe 403, one side wall of the first fixed plate 401 is symmetrically installed with one end of two groups of first compression springs 405, the other end of each group of first compression springs 405 is installed on one side wall of the second fixed plate 404, dustproof gauze 406 is connected between the first fixed plate 401 and the second fixed plate 404, a first limiting ring 407 is installed on one side wall of the second fixed plate 404, a dust removal pad layer 408 is installed on the inner wall of the first limiting ring 407, a first electric push rod 409 is installed on the outer wall of the first limiting ring 407, a second limiting ring 410 is installed on the output end of the first electric push rod 409, a protective pad layer 411 is installed on the inner wall of the second limiting ring 410, a third fixed plate 412 is installed on one side wall of the first limiting ring 407, a sleeve shell 413 is slidably connected to the outer wall of the third fixed plate 412, one side wall of the sleeve shell 413 is installed on the inner wall of the cavity 3, a second electromagnetic block 415 is installed on the outer wall of the sleeve shell 413, a first electromagnetic block 414 is installed on the outer wall of the third fixed plate 412, the first electromagnetic block 414 is magnetically connected with the second electromagnetic block 415, a plurality of groups of image monitoring structures 416 are installed on one side wall of the third fixed plate 412 close to the first electromagnetic block 414 at equal intervals, a refrigeration device structure is installed on one side wall of the third fixed plate 412 away from the first electromagnetic block 414, and a pressure sensor 417 is installed on one side wall of the sleeve shell 413 close to the first limiting ring 407.
[0036] Before the installation work of the new energy automobile charging pile, the charging gun port is clamped in the charging gun clamping plate 2, and then the charging wire is electrically connected to the source structure 6 after penetrating through the second limiting ring 410 and the first limiting ring 407 in turn, and then the electronic component structure 5 is electrically connected to the source structure 6.
[0037] When charging the car, the charging gun is taken out of the charging gun card plate 2, and moved to the direction close to the first fixed plate 401 during the taking process, drives the sliding pipe 403 to slide in the sleeve 402 during the movement process, and starts to compress the two groups of first compression springs 405, and isolates the impurities through the dust isolation gauze 406 during the movement process, and then isolates the impurities on the outer wall of the charging wire through the dust removal pad 408 during the recycling process, so as to avoid the impurities entering into the charging pile, and start the first electric push rod 409 to drive the second limiting ring 410 to extend forward, so as to support the suspended charging wire with gravity, avoid the problem of subsequent charging gun disengagement, and improve the stability of the work.
[0038] The first limiting ring 407 moves to the direction close to the first fixed plate 401, drives the third fixed plate 412 to slide in the sleeve 413, drives the refrigeration device structure to assist the cooling work of the electronic element structure 5 during the sliding process, and drives the image monitoring structure 416 to monitor the car being charged. Only when the charging gun is in the state of source charging, the second electromagnetic block 415 will be in circuit source, so that the second electromagnetic block 415 and the first electromagnetic block 414 are in magnetic connection state, the working state of the charging pile can be judged in real time. After the work is finished, the first electromagnetic block 414 and the second electromagnetic block 415 are disconnected from the magnetic connection state, and the compression spring drives the outer wall of the first limiting ring 407 to press the pressure sensor 417. When the value of the pressure sensor 417 is in the specified state, the charging gun port will be clamped on the charging gun card plate 2, which improves the charging precision effect and improves the working effect of the charging pile.
[0039] For example, Figure 6As shown, the protection assembly 7 comprises a first connecting plate 701, the bottom of the first connecting plate 701 is mounted on the inner wall of the bottom of the charging pile shell 1, a sliding cavity 702 is opened on the top of the first connecting plate 701, two groups of mounting blocks 703 are symmetrically mounted on the inner walls of the two sides of the first connecting plate 701, a group of connecting rods 704 are mounted on one side wall of each group of mounting blocks 703, one end of a group of second compression springs 705 is mounted on the side wall of each group of mounting blocks 703 close to the connecting rod 704, each group of second compression springs 705 is movably sleeved on the outer wall of the connecting rod 704, a group of sliding rectangular blocks 706 is mounted on the other end of each group of second compression springs 705, each group of sliding rectangular blocks 706 is movably sleeved on the outer wall of the connecting rod 704, the outer wall of each group of sliding rectangular blocks 706 is movably connected in the sliding cavity 702, a second connecting plate 707 is connected between the top of the two groups of sliding rectangular blocks 706, two groups of vacuum tubes 708 are symmetrically mounted on the top of the second connecting plate 707, a group of vacuum suction cups 709 is mounted on the top of each group of vacuum tubes 708, a group of air pumps 710 is mounted on the outer wall of each group of vacuum tubes 708, and the bottom of the electronic element structure 5 is located directly above the several groups of vacuum suction cups 709.
[0040] The air pump 710 is started to pump the air in the vacuum tube 708, so that the vacuum tube 708 is in a negative pressure state, and then drives the several groups of vacuum suction cups 709 to be negatively adsorbed on the bottom of the electronic element structure 5, thereby improving the supporting and fixing effect and the disassembly and carrying effect of the electronic element structure, when the charging pile shell 1 is impacted, the two groups of sliding rectangular blocks 706 slide in the sliding cavity 702, and the two groups of sliding rectangular blocks 706 start to squeeze and pull the two groups of second compression springs 705 when sliding on the outer wall of the connecting rod 704, when the impact and shaking ends, the two groups of second compression springs 705 start to rebound according to their own pressure, and recover to balance in the rebounding process, thereby improving the buffering effect and the protection effect of the structure.
[0041] For example, Figure 7As shown, the portable assembly 8 comprises a third connecting plate 801, one side wall of each group of the third connecting plate 801 is mounted on the inner wall of the charging pile shell 1, one group of sleeve pipes 802 is mounted on one side wall of each group of the third connecting plate 801, one group of sliding rods 803 is slidingly connected to the inner wall of each group of the sleeve pipes 802, one group of fourth connecting plates 804 is mounted on one side wall of each group of the sliding rods 803, one group of insulating limit blocks 805 is mounted on one side wall of each group of the fourth connecting plates 804, one end of two groups of third compression springs 806 is symmetrically mounted on the edge of one side wall of each group of the third connecting plates 801, the other end of each group of the third compression springs 806 is mounted on the edge of one side wall of the fourth connecting plate 804, one group of fourth electromagnetic blocks 809 is mounted on the top of each group of the fourth connecting plates 804, one group of second electric push rods 807 is mounted on the top of each group of the third connecting plates 801, one group of third electromagnetic blocks 808 is mounted on the output end of each group of the second electric push rods 807, and the third electromagnetic blocks 808 are magnetically connected with the fourth electromagnetic blocks 809.
[0042] During use of the charging pile, the second electric push rod 807 is first started to drive the third electromagnetic block 808 to magnetically connect with the fourth electromagnetic block 809, and then the second electric push rod 807 is started to drive the fourth connecting plate 804 to move towards the third connecting plate 801, in the process of movement, the sliding rod 803 is slidingly driven in the sleeve pipe 802 to maintain a parallel state, and in the process of sliding, the two groups of third compression springs 806 are started to be squeezed, then the electronic element structure 5 is placed on the top of the plurality of groups of vacuum suction cups 709, then the magnetic connection state of the third electromagnetic block 808 and the fourth electromagnetic block 809 is separated, and when the third compression spring 806 senses that the pressure disappears, the two groups of fourth connecting plates 804 are driven to move towards the electronic element structure 5, in the process of movement, the two groups of insulating limit blocks 805 are driven to limit the outer wall of the electronic element structure 5, which improves the limiting compatibility effect and expands the heat dissipation space.
[0043] In the process of sliding of the third fixed plate 412 in the sleeve shell 413, the refrigeration device structure cools the electronic element structure 5, and a plurality of image monitoring structures 416 monitor the car being charged, only when the charging gun is in a source charging state, the second electromagnetic block 415 circuit source and the first electromagnetic block 414 are in a magnetic connection state, the working state of the charging pile is judged in real time, after the work is completed, the compression spring drives the outer wall of the first limiting ring 407 to press the pressure sensor 417, only when the value of the pressure sensor 417 is in a specified state, the charging gun port is clamped on the charging gun clamping plate 2, which improves the charging accuracy and improves the working effect of the charging pile.
[0044] The charging gun is taken out of the charging gun clamping plate 2, and is moved to the direction close to the first fixed plate 401 during taking, drives the sliding pipe 403 to slide in the sleeve 402 during movement, and starts to press the two groups of first compression springs 405, isolates impurities through the dust isolation gauze 406 during movement, then isolates impurities on the outer wall of the charging wire through the dust removal pad 408 during recycling, avoids impurities from entering the charging pile, and starts the first electric push rod 409 to drive the second limiting ring 410 to extend forward, so as to support the suspended charging wire with gravity, avoid the problem that the charging gun is separated later, and improve the stability of the work.
[0045] The air pump 710 is started to pump out the air in the vacuum pipe 708, so that the vacuum pipe 708 is in a negative pressure state, and then a plurality of groups of vacuum suction cups 709 are driven to be negatively adsorbed on the bottom of the electronic element structure 5, so as to improve the supporting and fixing effect and improve the disassembly and carrying effect of the electronic element structure. When the charging pile shell 1 is impacted, the two groups of sliding rectangular blocks 706 are driven to slide in the sliding cavity 702, and start to press and pull the two groups of second compression springs 705, respectively. The two groups of second compression springs 705 start to rebound according to their own pressure, restore balance during rebounding, improve the buffering effect, and improve the protection effect of the structure.
[0046] The second electric push rod 807 is started to drive the fourth connecting plate 804 to move close to the third connecting plate 801, and starts to press the two groups of third compression springs 806 during sliding. Then the electronic element structure 5 is placed on the top of the plurality of groups of vacuum suction cups 709, and then the magnetic connection state of the third electromagnetic block 808 and the fourth electromagnetic block 809 is separated. When the third compression spring 806 senses that the pressure disappears, the two groups of fourth connecting plates 804 are driven to move close to the electronic element structure 5, and the two groups of insulating limiting blocks 805 limit the outer wall of the electronic element structure 5 during movement, improve the limiting and compatible effect, and expand the heat dissipation space.
[0047] Although the present application is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A new energy vehicle charging pile, comprising a charging pile shell, characterized in that: The outer wall of the charging pile shell is provided with a charging gun clamping plate, and a cavity is formed in the outer wall of the charging pile shell. The auxiliary assembly comprises a first limiting ring, a third fixing plate is mounted on one side wall of the first limiting ring, a sleeve shell is slidably connected to the outer wall of the third fixing plate, a second electromagnetic block is mounted on the outer wall of the sleeve shell, a first electromagnetic block is mounted on the outer wall of the third fixing plate, and a plurality of image monitoring structures are mounted on the side wall of the third fixing plate at equal intervals. The auxiliary assembly further comprises a first fixing plate, one side wall of the first fixing plate is mounted on one side inner wall of the cavity, a sleeve barrel is mounted on one side wall of the first fixing plate, a sliding tube is slidably connected to the inner wall of the sleeve barrel, a second fixing plate is mounted on one side wall of the sliding tube, and one end of each of two groups of first compression springs is symmetrically mounted on one side wall of the first fixing plate. Dustproof gauze is connected between the first fixing plate and the second fixing plate, the first limiting ring is mounted on one side wall of the second fixing plate, a dust removal pad layer is mounted on the inner wall of the first limiting ring, a first electric push rod is mounted on the outer wall of the first limiting ring, a second limiting ring is mounted on the output end of the first electric push rod, and a protective pad layer is mounted on the inner wall of the second limiting ring. One side wall of the sleeve shell is mounted on the inner wall of the cavity, the first electromagnetic block and the second electromagnetic block are magnetically connected, and a refrigeration device structure is mounted on the side wall of the third fixing plate away from the first electromagnetic block. Only when the charging gun is in a state of being charged by a power source, the second electromagnetic block circuit is connected to the power source and magnetically connected to the first electromagnetic block, so that the working state of the charging pile is determined in real time.
2. The new energy vehicle charging pile according to claim 1, characterized in that: A protective assembly is mounted on the bottom inner wall of the charging pile shell, an electronic element structure is arranged on the top of the protective assembly, a power supply structure is electrically connected to the top of the electronic element structure, and two groups of convenient assembly components are symmetrically mounted on the inner walls of the charging pile shell.
3. The new energy vehicle charging pile according to claim 2, characterized in that: The protective assembly comprises a first connecting plate, the bottom of the first connecting plate is mounted on the bottom inner wall of the charging pile shell, a sliding cavity is formed in the top of the first connecting plate, two groups of mounting blocks are symmetrically mounted on the inner walls of the first connecting plate, one group of connecting rods is mounted on one side wall of each mounting block, one end of one group of second compression springs is mounted on one side wall of each mounting block close to the connecting rod, and one group of sliding rectangular blocks is mounted on the other end of each group of second compression springs.
4. The new energy vehicle charging pile according to claim 3, characterized in that: The top of the two groups of sliding rectangular blocks is connected with a second connecting plate, the top of the second connecting plate is symmetrically provided with two groups of vacuum tubes, the top of each group of vacuum tubes is provided with a group of vacuum suction cups, the outer wall of each group of vacuum tubes is provided with a group of air pumps, and the bottom of the electronic component structure is located directly above a plurality of groups of vacuum suction cups.
5. The new energy vehicle charging pile according to claim 2, characterized in that: The convenient assembly comprises third connecting plates, one side wall of each group of third connecting plates is installed on the inner wall of the charging pile shell, one side wall of each group of third connecting plates is provided with a group of sleeve pipes, the inner wall of each group of sleeve pipes is slidably connected with a group of sliding rods, and one side wall of each group of sliding rods is provided with a group of fourth connecting plates.
6. The new energy vehicle charging pile according to claim 5, characterized in that: One side wall of each group of fourth connecting plates is provided with a group of insulating limit blocks, and one side wall edge of each group of third connecting plates is symmetrically provided with one end of two groups of third compression springs.
7. The new energy vehicle charging pile according to claim 6, characterized in that: The top of each group of fourth connecting plates is provided with a group of fourth electromagnetic blocks, the top of each group of third connecting plates is provided with a group of second electric push rods, the output end of each group of second electric push rods is provided with a group of third electromagnetic blocks, and the third electromagnetic blocks are magnetically connected with the fourth electromagnetic blocks.
Citation Information
Patent Citations
New energy automobile charging pile
CN119239348A
Automatic charging system of electric car and control method of automatic charging system
CN106696747A
Electric vehicle charging station
WO2013051583A1