Intelligent wall-mounted new energy charging pile
By using a combination of extrusion control components and sealing cloth in the intelligent wall-mounted new energy charging pile, the problem of dust and impurities entering the charging plug during charging is solved, achieving higher sealing and longer service life.
Patent Information
- Application Number
- CN202510415711.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-06-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When the existing smart wall-mounted new energy charging pile is charged and used, external dust and impurities will enter the grooves and sockets, affecting the service life of the charging plug.
An intelligent wall-mounted new energy charging pile is designed, using a combination of extrusion control components and sealing cloth. The sealing gasket body is driven to be tightly fit through the return spring of the extrusion control components to form a sealing barrier to prevent dust and impurities from entering.
It effectively improves sealing, protects the charging plug, avoids dust and impurities entering, thereby extending the service life of the charging plug.
Smart Images

Figure CN120191235A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of charging piles, and specifically to an intelligent wall-mounted new energy charging pile. Background Art
[0002] Compared with fuel vehicles, electric vehicles can be charged using renewable energy (such as solar energy, wind energy), so air pollution and greenhouse gas emissions can be reduced. With the popularization of electric vehicles, the demand for new energy charging piles is also increasing day by day. The intelligent wall-mounted new energy charging pile is one of various charging piles. Since the intelligent wall-mounted new energy charging pile can be attached to the wall for installation, it does not occupy a large installation space and can meet different usage requirements; For example, in the prior art, the patent with the publication number "CN112519607B" and the patent name "A wall-mounted charging pile for an electric vehicle charging shed" discloses that by setting a pressurizing mechanism, a positioning mechanism and a sealing mechanism, when in use, the micro electric control air valve is started and kept open. After the rotating cylinder is rotated to drive the positioning plate out of the positioning groove, the plug can be directly pulled out for use. The operation of removing the plug for use is simple and convenient to take. After the charging pile is used, the plug is placed at the inner bottom end of the V-shaped card slot. After the plug is inserted into the placement socket in the outer cylinder, the rotating cylinder is rotated to drive the positioning plate to be clamped in the positioning groove, and then the micro pressurizing pump is started to inflate the air bag through the air inlet pipe. After the air bag expands in the annular placement groove, it pushes the moving ring to move in the annular card slot towards the direction close to the fixed ring, which can drive one end of the push cylinder with the sealing rubber pad to tightly abut against the fixed ring. The sealing rubber pad is clamped between the push cylinder and the outer cylinder at the same time, which can improve the air tightness inside the outer cylinder, prevent a large amount of dust or water from entering the inside of the outer cylinder, avoid the pins on the plug from touching water and leaking electricity or adhering to dust, which affects its normal use in the charging shed. Another example is that in the prior art, the patent with the publication number "CN112622662B" and the patent name "A waterproof and dustproof wall-mounted charging pile" discloses that by setting a sealing mechanism, a transmission mechanism and a U-shaped positioning plate, when the charging plug is not in use and is inserted into the idle socket inside the inner groove, the two transmission motors are started. Since the inner threaded sleeve is fixedly connected to the connecting sleeve through the connecting rod, the output end of the transmission motor rotates the external threaded screw rod to screw and feed the inner threaded sleeve towards the direction close to the charging plug, and drives the docking plate to move towards the fixed sleeve through the connecting column. The two docking plates are simultaneously clamped on the fixed sleeve between the two limit rings through the sealing gasket and the clamping groove. The two docking plates are abutted against each other through the sealing gasket. Both opposite sides of the docking plate are abutted against the inner side wall of the U-shaped positioning plate through the U-shaped sealing gasket. The limit sleeve is abutted against the inner side wall of the movable groove through the sealing sleeve, which can block the opening of the inner groove and improve the air tightness inside the inner groove, prevent rainwater or dust from entering the idle socket inside the outdoor charging pile housing in rainy weather, thereby preventing the pins of the charging plug from being stained with rainwater or adhering to dust, and avoiding affecting normal power-on use.
[0003] In the above-mentioned intelligent wall-mounted new energy charging pile in the prior art, although the sealing mechanism can seal the gap between the groove and the charging plug to prevent rainwater or dust from entering the idle socket inside the charging pile housing outdoors during rainy weather, thereby preventing the pins of the charging plug from being stained with rainwater or dust and avoiding affecting normal power-on use. However, the above-mentioned sealing mechanism can only perform sealing operations when not in use for charging. When the charging plug is pulled out of the groove and used to charge a new energy electric vehicle, at this time, both the groove and the socket are exposed. Since the clamping groove and the sealing gasket are semicircularly arranged, the clamping groove and the sealing gasket cannot seal the groove either. As a result, during the process of using the charging plug for charging, external dust and impurities will enter the groove and the socket, causing dust and impurities to enter the charging plug after the charging plug finishes charging and is inserted into the groove and the socket later. Therefore, it will affect the charging use and service life of the charging plug for electric vehicles in the later stage. So, we propose an intelligent wall-mounted new energy charging pile to solve the problems raised above. Summary of the Invention
[0004] The purpose of the present invention is to provide an intelligent wall-mounted new energy charging pile to solve the problem in the above-mentioned background technology that in the currently available intelligent wall-mounted new energy charging piles on the market, during the process of using the charging plug for charging, external dust and impurities will enter the groove and the socket, resulting in dust and impurities entering the charging plug after the charging plug finishes charging and is inserted into the groove and the socket later, thus affecting the charging use and service life of the charging plug for electric vehicles in the later stage.
[0005] To achieve the above purpose, the present invention provides the following technical solution: An intelligent wall-mounted new energy charging pile includes a housing and a front housing installed on the front side of the housing. And indicator lights and a display screen are sequentially connected inside the front side of the front housing from top to bottom. The housing is wall-mounted through a mounting bracket connected to the rear side, and a hanging mechanism for winding and placing the charging cable is fixed to the bottom surface of the mounting bracket. Moreover, one end of the charging cable is connected to the bottom surface of the housing, and the other end of the charging cable is connected to a charging plug. A placement protection frame is fixed to the right side of the housing. Inside the placement protection frame, a placement socket connected to the charging plug and a sealing cloth for preventing dust and impurities from entering are sequentially installed from left to right. Two rows of extrusion control components are symmetrically installed inside the sealing cloth.
[0006] Preferably, a rectangular insertion through-hole is formed in the middle inside the sealing cloth, and sealing pads are symmetrically fixed inside the insertion through-hole. The material of the sealing cloth is umbrella cloth material.
[0007] Preferably, the extrusion control assembly includes a first connecting column, a second connecting column, and a third connecting column. The interiors of the first connecting column and the second connecting column are both hollow, and limiting grooves are symmetrically formed inside the first connecting column and the second connecting column. Limiting blocks are symmetrically installed on the outer sides of the second connecting column and the third connecting column, and the limiting grooves are in snap-fit sliding connection with the limiting blocks. Return springs are installed above the second connecting column and the third connecting column. The second connecting column and the first connecting column form a sliding structure, and the third connecting column and the second connecting column form a sliding structure.
[0008] Preferably, the two gasket bodies are closely attached through the extrusion control assembly, so that the gasket bodies seal and block the insertion through-port.
[0009] Preferably, the first connecting column, the second connecting column, and the third connecting column form a telescopic structure.
[0010] Preferably, a control rope is installed at one end of the third connecting column close to the second connecting column, and the other end of the control rope penetrates through one side surface of the second connecting column, the first connecting column, the sealing cloth, and the placement protection frame.
[0011] Preferably, sliding grooves are formed on the upper and lower side surfaces of the placement protection frame, and a control frame in a "hui" shape is arranged outside the placement protection frame. Sliding blocks are symmetrically installed on the inner side of the control frame, and the sliding blocks are in one-to-one sliding connection with the sliding grooves.
[0012] Preferably, the other end of the control rope is connected to the right side surface of the control frame through a guide wheel installed on the outer side surface of the placement protection frame.
[0013] Preferably, one end of the third connecting column away from the second connecting column is adhesively connected to the sealing cloth at a position corresponding to the insertion through-port.
[0014] Preferably, one end of the third connecting column away from the second connecting column is rotatably connected to an extrusion block through a rotating rod. A scroll spring is nested on the outer side of one end of the rotating rod, and one side surface of the "U"-shaped extrusion block is adhesively connected to the sealing cloth at a position corresponding to the insertion through-port.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: This intelligent wall-mounted new energy charging pile is convenient for increasing the extrusion force on the gasket body, thereby improving the tightness of the contact between the two gasket bodies, further improving the later-stage sealing performance, and protecting the charging plug to prevent impurities and dust from entering the charging plug. The specific content is as follows: When the charging plug is pulled out from the placement protection frame, the accumulated force of the return spring in the extrusion control assembly at the corresponding position can automatically drive the second connecting column and the third connecting column to move away from the first connecting column, so that the third connecting column applies a thrust to the sealing gasket body, and then the two sealing gasket bodies are tightly fitted, so that the sealing cloth seals and shields the inside of the placement protection frame, preventing external dust and impurities from entering the placement protection frame and the placement socket when the charging plug is used for charging, so that the charging plug can be inserted into the groove and the socket after the charging operation is completed, and the charging plug can be protected to prevent impurities and dust from entering the charging plug, so that the charging use and service life of the charging plug for the electric vehicle will not be affected; Furthermore, by using a "U"-shaped extrusion block, the direct contact area between the extrusion block and the sealing cloth and the indirect contact area between the extrusion block and the sealing gasket body can be increased, thereby facilitating increasing the extrusion force on the sealing gasket body, thereby improving the tightness of the contact between the two sealing gasket bodies and further improving the sealing performance in the later stage.
[0016] At the same time, by setting up multiple groups of extrusion control components, the third connecting column in the extrusion control components at different positions can be lifted and lowered in the second connecting column, and the second connecting column can be lifted and lowered in the second connecting column. Therefore, when the charging plug is inserted into the placement protection frame and is not used for charging, the sealing cloth can be closely fitted and contacted with the outer side of the charging plug through the cooperation of the extrusion control component, the sealing cloth and the sealing pad body, thereby preventing external dust from entering the placement protection frame; By controlling the movement of the control frame in the shape of a "U" character, it is convenient to pull multiple sets of control ropes at the same time, so that the insertion opening can be opened so that some areas of the two sealing pad bodies do not contact, thereby facilitating the insertion of the charging plug into the placement socket in the placement protection frame. The structure is simple and the operation is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 It is a rear view structural schematic diagram of the present invention; Figure 3 This is a schematic diagram of the three-dimensional structure of placing a protective frame in the present invention; Figure 4 It is a schematic diagram of the cross-sectional structure of the protection side of the present invention; Figure 5 For the present invention Figure 4 The enlarged structural diagram at A in the middle; Figure 6 This is a schematic cross-sectional view of the main structure of the sealing cloth of the present invention; Figure 7 This is a schematic diagram of the connection structure between the sealing cloth and the sealing gasket body of the present invention; Figure 8 Schematic front view structure diagram when the sealing cloth of the present invention is separated from the charging plug; Figure 9 Schematic main sectional view structure diagram when the sealing cloth of the present invention is separated from the charging plug; Figure 10 Schematic structure diagram of the extrusion control component of the present invention; Figure 11 Schematic sectional view structure diagram of the connection between the first connecting column and the second connecting column of the present invention.
[0018] In the figure: 1, outer housing; 2, front housing; 3, display screen; 4, indicator light; 5, mounting bracket; 6, suspension mechanism; 7, charging plug; 8, placement protection frame; 9, sealing cloth; 91, insertion through port; 10, sealing gasket; 11, control frame; 12, sliding groove; 13, control rope; 14, placement socket; 15, slider; 16, extrusion control component; 161, first connecting column; 162, second connecting column; 163, third connecting column; 164, limiting block; 165, limiting groove; 166, return spring; 17, extrusion block; 171, rotating rod; 172, scroll spring; 18, charging cable. Detailed implementation manners
[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0020] Please refer to Figures 1-11 , the present invention provides the following technical solutions: Embodiment 1: The intelligent wall-mounted new energy charging pile in this embodiment is not only convenient for sealing and protecting the charging plug 7 after it is inserted into the placement protection frame 8, avoiding foreign impurities and dust from entering the placement protection frame 8 and the placement socket 14, but also convenient for sealing and protecting the inside of the placement protection frame 8 when the charging plug 7 is used to charge an electric vehicle, avoiding foreign impurities and dust from entering the placement protection frame 8 and the placement socket 14, thereby preventing foreign dust from entering the charging plug 7 later. The specific structure is referred to in the appendix Figures 1-10As shown in the figure, it includes a housing 1 and a front housing 2 installed on the front side of the housing 1. Inside the front side of the front housing 2, an indicator light 4 and a display screen 3 are connected in sequence from top to bottom. The housing 1 is wall-mounted through a mounting bracket 5 connected to the rear side, and a hanging mechanism 6 for winding and placing the charging cable 18 is fixed to the bottom surface of the mounting bracket 5. One end of the charging cable 18 is connected to the bottom surface of the housing 1, and the other end of the charging cable 18 is connected to a charging plug 7. A placement protection frame 8 is fixed to the right side of the housing 1. Inside the placement protection frame 8, a placement socket 14 connected to the charging plug 7 and a sealing cloth 9 for preventing dust and impurities from entering are installed in sequence from left to right. Two rows of extrusion control components 16 are symmetrically installed inside the sealing cloth 9. A rectangular insertion opening 91 is formed in the middle of the sealing cloth 9. Sealing pads 10 are symmetrically fixed inside the insertion opening 91. The material of the sealing cloth 9 is umbrella cloth material.
[0021] The extrusion control component 16 includes a first connection column 161, a second connection column 162, and a third connection column 163. The interiors of the first connection column 161 and the second connection column 162 are both hollow, and limiting grooves 165 are symmetrically formed inside the first connection column 161 and the second connection column 162. Limiting blocks 164 are symmetrically installed on the outer sides of the second connection column 162 and the third connection column 163. The limiting grooves 165 are in snap-fit sliding connection with the limiting blocks 164. Return springs 166 are installed above the second connection column 162 and the third connection column 163. The second connection column 162 and the first connection column 161 form a sliding structure, and the third connection column 163 and the second connection column 162 form a sliding structure. The two sealing pads 10 are closely attached through the extrusion control component 16, so that the sealing pads 10 seal and block the insertion opening 91. The first connection column 161, the second connection column 162, and the third connection column 163 form a telescopic structure. A control rope 13 is installed at one end of the third connection column 163 close to the second connection column 162. The other end of the control rope 13 passes through the second connection column 162, the first connection column 161, the sealing cloth 9, and one side of the placement protection frame 8. Sliding grooves 12 are formed on the upper and lower sides of the placement protection frame 8. A control frame 11 in a "hui" shape is arranged outside the placement protection frame 8. Sliders 15 are symmetrically installed on the inner side of the control frame 11. The sliders 15 are in one-to-one sliding connection with the sliding grooves 12. The other end of the control rope 13 is connected to the right side of the control frame 11 through a guide wheel installed on the outer side of the placement protection frame 8. The end of the third connection column 163 far from the second connection column 162 is adhesively connected to the sealing cloth 9 at the corresponding position of the insertion opening 91.
[0022] First, install the entire intelligent wall-mounted new energy charging pile on the wall or column through the mounting bracket 5, and then the entire intelligent wall-mounted new energy charging pile can be used. The user manually pulls the charging plug 7 to the right. At this time, the charging plug 7 is separated from the placement socket 14, so that the charging plug 7 is pulled out from the placement protection frame 8, and then the charging plug 7 is inserted into the charging socket of the electric vehicle. Then, the charging operation of the electric vehicle can be carried out. At the same time, through the energy storage of the return spring 166 in the extrusion control component 16 at the corresponding position, the second connecting column 162 in the extrusion control component 16 at the corresponding position can be automatically driven to slide in the first connecting column 161, and the third connecting column 163 slides in the second connecting column 162, so that the second connecting column 162 and the third connecting column 163 slide away from the first connecting column 161. At this time, through the cooperation of the limit block 164 and the limit groove 165, the separation of the second connecting column 162 from the first connecting column 161 is avoided, and the separation of the third connecting column 163 from the second connecting column 162 is avoided. As a result, the third connecting column 163 exerts a thrust on the sealing cloth 9 and the gasket body 10 at the insertion through hole 91 position, so that the two gasket bodies 10 are closely attached together, thereby sealing the insertion through hole 91 with the two gasket bodies 10. Since the material of the sealing cloth 9 is umbrella cloth material, the sealing cloth 9 can seal the inside of the placement protection frame 8, avoiding the entry of external dust and impurities into the placement protection frame 8 when the charging plug 7 is in use for charging, because the inside of the placement protection frame 8 is exposed. Therefore, the contact between the charging plug 7 and dust is avoided after the charging plug 7 is inserted into the placement protection frame 8 later, which is convenient for protecting the charging plug 7 and improving the service life of the charging plug 7.
[0023] After the charging is completed, pull out the charging plug 7 from the charging socket of the electric vehicle, and then end the charging operation of the electric vehicle. Then manually pull the control frame 11 towards the outer casing 1 outside the placement protection frame 8. At this time, the slider 15 inside the control frame 11 slides in the chute 12, which can ensure the stable sliding of the control frame 11. Then the control frame 11 simultaneously pulls multiple control ropes 13. The multiple control ropes 13 respectively pull the third connecting columns 163 in multiple extrusion control components 16, so that the third connecting columns 163 move into the second connecting columns 162. Then the second connecting columns 162 move into the first connecting columns 161. At this time, the return spring 166 is squeezed and stores energy. Therefore, the third connecting columns 163 drive the sealing cloth 9 and the sealing gasket 10 at the corresponding positions of the insertion through-hole 91 to move, and then the insertion through-hole 91 is opened. Then the charging plug 7 can be inserted into the placement protection frame 8 and the placement socket 14 through the insertion through-hole 91. When the charging plug 7 is properly inserted into the placement socket 14, release the control frame 11 at this time. Then, through the energy stored in the return spring 166 at the corresponding position, the third connecting columns 163 and the second connecting columns 162 can be automatically driven to move away from the first connecting columns 161. At this time, by the same token as described above, the third connecting columns 163 apply an extrusion thrust to the sealing cloth 9 and the sealing gasket 10 at the corresponding positions in the insertion through-hole 91, so that the sealing gasket 10 is in close contact with the outer side surface of the charging plug 7, thereby preventing external dust from entering the placement protection frame 8 through the gap between the insertion through-hole 91 and the charging plug 7.
[0024] Embodiment 2: In the intelligent wall-mounted new energy charging pile in this embodiment, on the basis of Embodiment 1, the tightness of the fitting contact between the two sealing gaskets 10 can be further improved, so the sealing performance can be further improved, and external dust and impurities can be prevented from entering the placement protection frame 8. The specific structure is shown in the attached Figures 3-11 As shown, one end of the third connecting column 163 away from the second connecting column 162 is rotatably connected to the extrusion block 17 through a rotating rod 171. A scroll spring 172 is nested on the outer side of one end of the rotating rod 171. One side surface of the "U"-shaped extrusion block 17 is adhesively connected to the sealing cloth 9 at the corresponding position of the insertion through-hole 91.
[0025] When the second connecting column 162 and the third connecting column 163 slide in the direction away from the first connecting column 161, the "U"-shaped extrusion block 17 connected to one end of the third connecting column 163 applies a thrust to the sealing cloth 9 and the sealing gasket body 10 inserted at the opening 91. At this time, through the setting of the extrusion block 17, the direct contact area between the extrusion block 17 and the sealing cloth 9 inserted at the opening 91 can be increased, and the indirect contact area between the extrusion block 17 and the sealing gasket body 10 can be increased, thereby increasing the pushing and squeezing force on the two sealing gasket bodies 10, and then increasing the tightness of the contact between the two sealing gasket bodies 10, so that the two sealing gasket bodies 10 can be sealed to the insertion opening 91, and further improving the sealing of the sealing cloth 9 to the inside of the protective frame 8.
[0026] When charging is completed, the charging plug 7 is pulled out from the charging socket of the electric vehicle. When the third connecting column 163 and the second connecting column 162 are automatically driven to move in a direction away from the first connecting column 161 by the accumulated force of the return spring 166 at the corresponding position, as shown above, the third connecting column 163 drives the rotatably connected extrusion block 17 to move together. Since the extrusion block 17 can be rotatably connected with the third connecting column 163 through the rotating rod 171, the extrusion block 17 can well apply an extrusion thrust to the sealing cloth 9 and the sealing gasket body 10 at the corresponding positions in the insertion opening 91, which can further improve the tightness of the sealing gasket body 10 and the outer side surface of the charging plug 7, thereby further preventing external dust from entering the placement protection frame 8 through the gap between the insertion opening 91 and the charging plug 7. At the same time, through the coordinated use of multiple groups of extrusion control components 16 and the extrusion blocks 17, sealing operations can be performed on charging plugs 7 of different sizes to meet different usage requirements.
[0027] Embodiment 3: The smart wall-mounted new energy charging pile in this embodiment, based on Embodiment 2, can install a rubber extrusion pad on one side of the sealing cloth 9 at the corresponding position of the extrusion block 17 close to the insertion opening 91, so as to further increase the contact area between the extrusion block 17 and the sealing cloth 9, and further increase the extrusion contact area between the sealing cloth 9 and the sealing pad body 10, so as to further improve the sealing performance of the two sealing pad bodies 10 when they are in contact with each other.
[0028] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. An intelligent wall-mounted new energy charging pile, comprising an outer shell (1) and a front shell (2) mounted on the front side of the outer shell (1), wherein the front side of the front shell (2) is connected with an indicator light (4) and a display screen (3) in sequence from top to bottom, characterized in that: The outer shell (1) is wall-mounted via a mounting bracket (5) connected to the rear side, and a suspension mechanism (6) for winding and placing a charging cable (18) is fixed to the bottom surface of the mounting bracket (5), and one end of the charging cable (18) is connected to the bottom surface of the outer shell (1), and the other end of the charging cable (18) is connected to a charging plug (7). A placement protection frame (8) is fixed to the right side of the outer shell (1), and a placement socket (14) connected to the charging plug (7) and a sealing cloth (9) for preventing dust and impurities from entering are installed in sequence from left to right inside the placement protection frame (8), and two rows of extrusion control components (16) are symmetrically installed inside the sealing cloth (9).
2. The intelligent wall-mounted new energy charging pile according to claim 1, characterized in that: A rectangular insertion opening (91) is provided in the middle of the sealing cloth (9), and a sealing pad body (10) is symmetrically fixed inside the insertion opening (91). The sealing cloth (9) is made of umbrella cloth material.
3. The intelligent wall-mounted new energy charging pile according to claim 2 is characterized in that: The extrusion control assembly (16) comprises a first connecting column (161), a second connecting column (162) and a third connecting column (163); the interior of the first connecting column (161) and the interior of the second connecting column (162) are both hollow, and the interior of the first connecting column (161) and the interior of the second connecting column (162) are both symmetrically provided with limiting grooves (165); the outer sides of the second connecting column (162) and the third connecting column (163) are both symmetrically installed with limiting blocks (164); the limiting grooves (165) and the limiting blocks (164) are slidably connected by snapping; the upper sides of the second connecting column (162) and the third connecting column (163) are both installed with return springs (166); the second connecting column (162) and the first connecting column (161) form a sliding structure, and the third connecting column (163) and the second connecting column (162) form a sliding structure.
4. The intelligent wall-mounted new energy charging pile according to claim 3 is characterized in that: The two sealing gasket bodies (10) are tightly fitted together by means of a squeezing control assembly (16), so that the sealing gasket bodies (10) seal and shield the insertion opening (91).
5. The intelligent wall-mounted new energy charging pile according to claim 3 is characterized in that: The first connecting column (161), the second connecting column (162) and the third connecting column (163) form a telescopic structure.
6. The intelligent wall-mounted new energy charging pile according to claim 4 is characterized in that: A control rope (13) is installed at one end of the third connecting column (163) close to the second connecting column (162), and the other end of the control rope (13) passes through the second connecting column (162), the first connecting column (161), the sealing cloth (9) and a side surface where the protective frame (8) is placed.
7. The intelligent wall-mounted new energy charging pile according to claim 6, characterized in that: The upper and lower sides of the placement protection frame (8) are both provided with a slide groove (12), the outer side of the placement protection frame (8) is provided with a control frame (11) in the shape of a Chinese character "U", the inner side of the control frame (11) is symmetrically provided with a slide block (15), and the slide block (15) is slidably connected to the slide groove (12) in a one-to-one correspondence.
8. The intelligent wall-mounted new energy charging pile according to claim 7, characterized in that: The other end of the control rope (13) is connected to the right side surface of the control frame (11) via a guide wheel installed on the outer side surface of the protective frame (8).
9. The intelligent wall-mounted new energy charging pile according to claim 3, characterized in that: One end of the third connecting column (163) away from the second connecting column (162) is bonded and connected to the sealing cloth (9) at a position corresponding to the insertion opening (91).
10. The intelligent wall-mounted new energy charging pile according to claim 3, characterized in that: One end of the third connecting column (163) away from the second connecting column (162) is rotatably connected to the extrusion block (17) via a rotating rod (171); a vortex spring (172) is nested and connected to the outer side of one end of the rotating rod (171); and one side surface of the "U"-shaped extrusion block (17) is adhesively connected to a sealing cloth (9) at a corresponding position of the insertion opening (91).
Citation Information
Patent Citations
A wall-mounted charging pile for electric vehicle charging sheds
CN112519607B
A waterproof and dustproof wall-mounted charging station
CN112622662B