New energy charging port cover protection assembly capable of being quickly disassembled
By adopting the engagement and separation structure between the side clip strip and the tail clip block in the new energy charging port, the rapid removal and waterproofing effect of the inner protective cover is achieved, solving the problems of disassembly difficulties and dust pollution in the traditional charging port, and improving the operation convenience and waterproof performance.
Patent Information
- Application Number
- CN202510630822.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-06-17
AI Technical Summary
The protective cover of traditional new energy charging ports requires manual insertion and removal, which leads to difficulty in disassembly, especially for less forceful personnel, and is prone to dust pollution.
The engagement and separation structure between the side clamp strip and the tail clamp is adopted to realize the coverage protection of the charging port by the inner protection cover and the rapid removal and separation operation, reduce the removal force requirements, and reduce the direct contact between the user and the inner protection cover.
It greatly improves the operation convenience of the inner protective cover, reduces the pollution of dust on the hands, reduces safety hazards caused by rainwater intrusion, and improves the waterproof performance of the charging area.
Smart Images

Figure CN120156604A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of automotive charging protection components, and particularly to a protection component for a new energy charging port cover that can be quickly disassembled. Background Art
[0002] The new energy charging port is an interface device for connecting a new energy vehicle to an external charging device to achieve power transmission. A cover protection component is provided at the new energy charging port, and the cover protection component protects the charging port.
[0003] Most of the traditional inner protection covers in new energy charging ports rely on manual plugging and unplugging by personnel to cover and separate the charging port. To ensure the stability of the charging port protection cover, the charging port and the protection cover are relatively tight, resulting in the need for greater force for personnel to plug and unplug. It is very inconvenient for personnel with less strength to separate and disassemble, and the dust accumulated on the outside of the protection cover will also contaminate the hands of personnel. Summary of the Invention
[0004] The embodiments of the present disclosure relate to a protection component for a new energy charging port cover that can be quickly disassembled. Through the engaging and separating structure between the side card strip and the tail card block, the inner protection cover can cover and protect the charging port and perform quick disassembly and separation operations, replacing the traditional operation method of manual plugging and unplugging of the protection cover, reducing the force requirement for personnel to disassemble, not only greatly improving the operation convenience of the inner protection cover, but also effectively reducing the direct contact between users and the inner protection cover, eliminating the need for manual plugging and unplugging of the existing inner protection cover by personnel, and reducing the pollution of the hands of personnel caused by dust.
[0005] In the first aspect of the present disclosure, a protection component for a new energy charging port cover that can be quickly disassembled is provided, specifically including: an outer protection box body, a middle baffle, and an inner protection cover. A middle baffle is provided in the middle of the outer protection box body, inner protection covers are provided on both sides inside the outer protection box body, an outer cover plate is rotatably provided on one side of the outer protection box body through a hinge, and the outer cover plate and the outer protection box body are closed and locked through a buckle. Charging ports are provided on both sides inside the outer protection box body, and the inner protection cover is provided at the charging port. The charging port is connected to the internal circuit of the new energy vehicle. Side card strips for restricting the position of the inner protection cover are slidably provided on both sides inside the outer protection box body, and a first connecting tension spring is connected between the side card strip and the outer protection box body.
[0006] In at least some embodiments, a side control rotating rod is rotatably connected to one side of the side card strip, and one end of the side card strip is slidably connected to the middle chute of the side control rotating rod. The side card strip is on the side of the charging port, and the first connecting tension spring pulls the side card strip to move towards the direction close to the charging port. The side card strip and the tail card block are engaged, the position of the tail card block is restricted, and the tail card block and the inner protection cover keep the charging port closed and sealed.
[0007] In at least some embodiments, rotatable first side baffles are arranged on both sides of the middle baffle through shaft fittings. A side connection slider is arranged at the tail end of the first side baffle through a shaft fitting. A lower support elastic member is fixed to the bottom of the middle baffle. The lower end of the lower support elastic member is fixedly connected to the middle connection frame. The bottom end of the first side baffle is rotatably connected to a side connection slider. The side connection slider is fixedly connected to the upper side of the side annular belt. Second side baffles are slidably connected to both sides of the middle connection frame.
[0008] In at least some embodiments, the side connection slider is slidably connected to the middle connection frame. Both sides of the side annular belt are tightly meshed and connected to the middle connection frame through shaft fittings. The lower side of the side annular belt is fixedly connected to the second side baffle. The side annular belt drives the second side baffle and the side connection slider to move towards each other synchronously. The second side baffle slides outwards synchronously away from the middle baffle for extension.
[0009] In at least some embodiments, the middle connection frame is rotatably arranged inside the outer protection box body through shaft fittings. The middle connection frame, the middle baffle and the first side baffle are located between the outer cover plate and the inner protection cover. The middle baffle, the first side baffle and the second side baffle are arranged outside the inner protection cover, forming an additional protection barrier. The gap between the outer protection box body and the outer cover plate flows down along the middle baffle, the first side baffle and the second side baffle.
[0010] In at least some embodiments, side sealing strips are slidably arranged oppositely on both sides of the inner protection cover. A first support spring is arranged between the side sealing strip and the inner protection cover. The front end of the inner protection cover is slidably connected to an outer sealing block. A second connecting pull spring is arranged between the inner protection cover and the outer sealing block. A tail clamping block protrudes from the side surface of the tail end of the inner protection cover.
[0011] In at least some embodiments, the first support spring pulls the side sealing strips on both sides of the inner protection cover to keep them closed. The side sealing strips are attached to the outside of the charging port. The inner protection cover and the outer protection box body are rotatably connected through shaft fittings and a torsion spring is arranged to keep them tilted up. The first support spring pulls the side sealing strips to fit on the outside of the charging port, reducing the entry of external dust into the inside of the charging port. At the same time, the outer sealing block seals the gap between the two side sealing strips, improving the sealing performance of the gap between the two side sealing strips.
[0012] In at least some embodiments, the second connecting pull spring pulls the outer sealing block to fit on the outside of the splicing position of the first ends of the two side sealing strips. The tail clamping block is slidably clamped and connected to the first end of the side clamping strip. A person swings the side control rotating rod to tilt to one side by hand. The side control rotating rod drives the side clamping strip to move synchronously and stretches the first connecting pull spring. The side clamping strip is separated from the tail clamping block. The inner protection cover and the side sealing strip tilt up and are separated from the charging port. By pushing the side control rotating rod by hand, the inner protection cover can cover and protect the charging port and perform quick disassembly and separation operations.
[0013] The present invention provides a new energy charging port cover protection assembly that can be quickly disassembled, which has the following beneficial effects: This component utilizes the engagement and separation structure between the side card strip and the rear card block to achieve the inner protective cover's covering and protection of the charging port and quick disassembly and separation operations, replacing the traditional protective cover that requires manual plugging and unplugging, reducing the strength requirements for personnel to disassemble. It not only greatly improves the operating convenience of the inner protective cover, but also more effectively reduces the direct contact between the user and the inner protective cover, eliminating the existing inner protective cover that requires personnel to manually plug and unplug, and reducing the situation where personnel's hands are contaminated by dust accumulated on the outside of the inner protective cover, thereby dirtying the personnel's hands.
[0014] The middle baffle is arranged on the outside of the inner protective cover, forming an additional protective barrier. The middle baffle can effectively prevent rainwater from directly eroding the inner protective cover, and significantly reduce the phenomenon of rainwater remaining on the surface of the inner protective cover and mixing with dust to form dirt, thereby maintaining the cleanliness of the inner protective cover. After the inner protective cover is opened, the inner protective cover supports the middle baffle and rotates upward at the same time. In rainy environments, the middle baffle can play a role in blocking and draining rainwater, changing the direction of rainwater flow, and greatly reducing the probability of the connection between the charging port and the charging gun being exposed to rainwater, effectively reducing the safety hazards such as short circuit and corrosion caused by rainwater intrusion.
[0015] When the charging port is opened, the lower supporting spring automatically supports the middle baffle to move upward, thereby causing the first side baffle to tilt upward and tilt toward both sides and lower its height, guiding rainwater to flow to both sides, further reducing the contact between the exposed part of the middle electric gun and rainwater, and improving the waterproof performance of the charging area. The tilting movement of the first side baffle is driven by the side connecting slider and the side annular belt to drive the second side baffle to slide outward and extend synchronously, thereby expanding the rainproof coverage area of the overall protective assembly, effectively reducing the amount of water entering the outer protective box body, and providing a more comprehensive and reliable waterproof protection for the charging port, ensuring that the charging process can be carried out safely and stably under severe weather conditions. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solution of the embodiment of the present invention, the drawings of the embodiment are briefly introduced below.
[0017] The drawings described below are only related to some embodiments of the present invention, but are not intended to limit the present invention.
[0018] In the attached picture: Figure 1 A schematic diagram showing the overall structure of the present application; Figure 2 A schematic diagram showing the structure of the middle baffle in the flip state of the present application is shown; Figure 3 A schematic diagram showing a structure in which the inner protective cover of the present application is turned away from the charging port; Figure 4 Shows a schematic diagram of the outer protective box structure of the present application; Figure 5 Shows a schematic diagram of the lower support elastic member of the present application; Figure 6 Shows a schematic diagram of the middle baffle of the present application; Figure 7 Shows a schematic diagram of the inner protective cover of the present application; Figure 8 Shows a schematic diagram of a half-section of the inner protective cover of the present application; List of reference numerals 1. Outer protective box; 101. Outer cover plate; 102. Charging port; 103. Side clamping strip; 104. First connecting tension spring; 105. Side control rotating rod; 2. Middle baffle; 201. First side baffle; 202. Middle connecting frame; 203. Lower support elastic member; 204. Side connecting slider; 205. Side annular belt; 206. Second side baffle; 3. Inner protective cover; 301. Side sealing strip; 302. First support spring; 303. Outer sealing block; 304. Second connecting tension spring; 305. Tail clamping block. Specific embodiments
[0019] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.
[0020] Embodiment 1: Please refer to Figures 1 to 8 : The present invention provides a quickly detachable protection component for a new energy charging port cover, comprising: an outer protection box body 1, a middle baffle 2, and an inner protection cover 3. An outer cover plate 101 is rotatably arranged on one side of the outer protection box body 1 through a hinge, and the outer cover plate 101 and the outer protection box body 1 are closed and locked through a buckle. Charging ports 102 are arranged on both sides inside the outer protection box body 1, and the inner protection cover 3 is provided at the charging ports 102. The charging ports 102 are connected to the internal circuits of new energy vehicles. Side clamping strips 103 for restricting the position of the inner protection cover 3 are slidably arranged on both sides inside the outer protection box body 1. A first connecting tension spring 104 is connected between the side clamping strips 103 and the outer protection box body 1. A side control rotating rod 105 is rotatably connected to one side of the side clamping strips 103. One end of the side clamping strips 103 is slidably connected to a middle chute of the side control rotating rod 105. The side clamping strips 103 are located on one side of the charging ports 102. The first connecting tension spring 104 pulls the side clamping strips 103 to move towards the direction close to the charging ports 102. The side clamping strips 103 are engaged with the tail clamping blocks 305, and the positions of the tail clamping blocks 305 are restricted. The tail clamping blocks 305 and the inner protection cover 3 keep the charging ports 102 closed and sealed.
[0021] A middle baffle 2 is arranged in the middle of the outer protection box body 1. Rotatable first side baffles 201 are arranged on both sides of the middle baffle 2 through rotating shafts. Side connecting sliders 204 are arranged at the tails of the first side baffles 201 through rotating shafts. A lower support elastic member 203 is fixed at the bottom of the middle baffle 2. The lower end of the lower support elastic member 203 is fixedly connected to a middle connecting frame 202. The bottom end of the first side baffle 201 is rotatably connected to a side connecting slider 204. The side connecting slider 204 is fixedly connected to the upper part of a side annular belt 205. Second side baffles 206 are slidably connected to both sides of the middle connecting frame 202. The middle connecting frame 202 is rotatably arranged inside the outer protection box body 1 through a rotating shaft. The middle connecting frame 202, the middle baffle 2, and the first side baffles 201 are located between the outer cover plate 101 and the inner protection cover 3. The middle baffle 2, the first side baffles 201, and the second side baffles 206 are arranged outside the inner protection cover 3, forming an additional protection barrier. The gaps between the outer protection box body 1 and the outer cover plate 101 flow downward along the middle baffle 2, the first side baffles 201, and the second side baffles 206. The middle baffle 2 resists the direct scouring of rainwater on the inner protection cover 3, and the amount of rainwater contacting the inner protection cover 3 is further reduced. Inner protection covers 3 are arranged on both sides inside the outer protection box body 1. Side sealing strips 301 are slidably arranged oppositely on both sides of the inner protection cover 3. A first support spring 302 is arranged between the side sealing strips 301 and the inner protection cover 3. An outer sealing block 303 is slidably connected to the head end of the inner protection cover 3. A second connecting tension spring 304 is arranged between the inner protection cover 3 and the outer sealing block 303. A tail clamping block 305 protrudes from the side of the tail end of the inner protection cover 3.
[0022] In the embodiment of the present disclosure, the side connecting slider 204 and the middle connecting frame 202 are slidably connected, and the two sides of the side annular belt 205 are connected by the middle connecting frame 202 through the cooperation of the rotating shaft, and the lower side of the side annular belt 205 is fixedly connected to the second side baffle 206. The side annular belt 205 drives the second side baffle 206 and the side connecting slider 204 to move synchronously in opposite directions, and the second side baffle 206 synchronously slides outward to extend away from the middle baffle 2, thereby further expanding the rainproof area.
[0023] In the embodiment of the present disclosure, the first support spring 302 supports the side sealing strips 301 on both sides of the inner protective cover 3 to remain closed, and the side sealing strips 301 are attached to the outside of the charging port 102. The inner protective cover 3 and the outer protective box body 1 are rotatably connected through a rotating shaft and are provided with a coil spring to keep them tilted. The first support spring 302 supports the side sealing strips 301 to be attached to the outside of the charging port 102, reducing the entry of external dust into the inside of the charging port 102. At the same time, the outer sealing block 303 seals the gap between the two side sealing strips 301, thereby improving the sealing of the gap between the two side sealing strips 301 and further reducing the amount of dust entering the inside of the charging port 102.
[0024] In the embodiment of the present disclosure, the second connecting tension spring 304 pulls the outer sealing block 303 to fit the outer side of the splicing position of the head ends of the two side sealing strips 301, and the tail clamp block 305 is slidably engaged with the head end of the side clamp strip 103. The person swings the side control rotating rod 105 by hand to tilt it to one side, and the side control rotating rod 105 drives the side clamp strip 103 to move synchronously and lengthen the first connecting tension spring 104. The side clamp strip 103 and the tail clamp block 305 are separated, and the inner protective cover 3 and the side sealing strip 301 are tilted upward and separated from the charging port 102. By pushing the side control rotating rod 105 by hand, the inner protective cover 3 covers the charging port 102 for protection and the quick disassembly and separation operation is realized, which replaces the traditional protective cover that needs to be manually plugged in and out, and is more suitable for use by people with less strength.
[0025] Embodiment 2, based on embodiment 1, the outer cover 101 is opened and closed by electric control. After the outer cover 101 is opened, the side clamping strip 103 is also controlled by the motor, and the side clamping strip 103 moves away from the inner protective cover 3, and the inner protective cover 3 is automatically opened, eliminating the manual disassembly work of personnel and making it more convenient to use.
[0026] The working principle of this embodiment is as follows: the outer protective box body 1 is connected and fixed to the new energy vehicle body, and the outer cover plate 101 is set in the same color as the paint of the new energy vehicle body. When charging is needed, the outer cover plate 101 is opened, and the side control lever 105 is below the charging port 102. When the fingers press and move the side control lever 105, the palm and wrist will not be hindered by other parts, which is more convenient to use. The person swings the side control lever 105 to one side by hand, and the side control lever 105 drives the side clamping strip 103 to move synchronously and lengthen the first connecting tension spring 104, and the side clamping strip 103 and the tail clamping block 305 are separated, and the position restriction of the tail clamping block 305 is released, and the position restriction of the tail clamping block 305 and the inner protective cover 3 is released, and the inner protective cover 3 and the side sealing strip 301 are tilted upward and separated from the charging port 102, and the charging port 102 The sealing is released and the charging gun is subsequently docked for charging. This component utilizes the engagement and separation structure between the side card strip 103 and the tail card block 305. By pushing the side control lever 105 by hand, the inner protective cover 3 covers the charging port 102 and is quickly disassembled and separated. This replaces the traditional manual plugging and unplugging operation of the protective cover, reduces the strength requirements for personnel disassembly, and is more suitable for use by personnel with less strength. It greatly improves the convenience of disassembly of the inner protective cover 3, effectively reduces direct contact between the user and the inner protective cover 3, and eliminates the manual plugging and unplugging operation of the existing inner protective cover 3. It reduces the dust accumulated on the outside of the inner protective cover 3 and the dirtying of the hands of the personnel, and avoids the situation where the fingers of the personnel are contaminated with dust and need to wipe their fingers with paper, and the waste paper is thrown around and pollutes the surrounding area. When the outer protective box body 1 and the outer cover plate 101 are closed, rainwater will also enter the gap between the outer protective box body 1 and the outer cover plate 101 from above. The middle baffle 2 and the first side baffle 201 and the second side baffle 206 are in a straight baffle state. The middle baffle 2 and the first side baffle 201 and the second side baffle 206 are arranged on the outside of the inner protective cover 3 to form an additional protective barrier. The gap between the outer protective box body 1 and the outer cover plate 101 flows downward along the middle baffle 2 and the first side baffle 201 and the second side baffle 206. The middle baffle 2 can effectively prevent rainwater from directly scouring the inner protective cover 3, and the amount of rainwater contacting the inner protective cover 3 is significantly reduced, reducing the amount of rainwater on the surface of the inner protective cover 3 The phenomenon of residual and mixed dust forming dirt is eliminated, thereby maintaining the cleanliness of the inner protective cover 3. After the inner protective cover 3 is opened, the inner protective cover 3 rotates upward and simultaneously supports the middle baffle 2 and the middle connecting frame 202, the first side baffle 201 and the second side baffle 206 to rotate upward around the connection between the middle connecting frame 202 and the outer protective box body 1. In rainy environments, the middle baffle 2 and the first side baffle 201 and the second side baffle 206 can play a role in blocking and draining rainwater, change the direction of rainwater flow, and greatly reduce the probability of the connection between the charging port 102 and the charging gun being exposed to rainwater, effectively reducing the safety hazards such as short circuit and corrosion of the charging port 102 and the charging gun caused by rainwater intrusion; The lower support elastic member 203 supports the upward movement of the middle baffle 2. The middle baffle 2 moves upward and pulls the head end of the first side baffle 201 to move upward. The tail end of the first side baffle 201 drives the side connection slider 204 to move closer to the middle baffle 2. The head end of the first side baffle 201 tilts upward and the tail end reduces in height, guiding rainwater to flow to both sides, further reducing the contact quantity between the exposed part of the middle electric gun and rainwater, reducing the amount of rainwater in the charging area, and improving the waterproof performance of the charging area. The tilting movement of the first side baffle 201 moves synchronously with the side connection slider 204 and the side annular belt 205. The side annular belt 205 drives the lower second side baffle 206 to move synchronously. The second side baffle 206 slides outward synchronously away from the middle baffle 2 for extension, expanding the rain shielding coverage area of the overall protection component, effectively reducing the water inflow into the outer protection box body 1, providing more comprehensive and reliable waterproof protection for the charging port 102, and ensuring that the charging process can be carried out safely and stably under bad weather conditions; When the charging is completed, the outer cover plate 101 can be used to press the middle baffle 2 and the inner protection cover 3 to close, and press the inner protection cover 3 and the charging port 102 to close. The top of the side sealing strip 301 protrudes to form an L-shaped structure. The top of the side sealing strip 301 protrudes and is flush with the bottom of the outer cover plate 101 and fits with the top of the charging port 102 together for sealing. The opposite movement of the side sealing strip 301 moves away to create a circular rotation opening and closing space between the inner protection cover 3 and the charging port 102. The first support spring 302 supports the side sealing strip 301 to fit on the outside of the charging port 102, reducing the entry of external dust into the inner side of the charging port 102. The second connecting pull spring 304 pulls the outer sealing block 303 to press the two side sealing strips 301 to ensure the tight closure of the two side sealing strips 301. At the same time, the outer sealing block 303 fits and seals the gap between the two side sealing strips 301, improving the sealing performance of the gap between the two side sealing strips 301, further reducing the amount of dust entering the inner side of the charging port 102, and thus reducing the risk of electrical faults caused by dust entering the charging port 102, and further improving the reliability and stability of the charging system.
[0027] In this article, the following points need to be noted: 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.
[0028] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0029] The above are only specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.
Claims
1. A quickly detachable new energy charging port cover protection assembly, comprising: An outer protective box body (1), a middle baffle (2) and an inner protective cover (3); characterized in that a middle baffle (2) is provided in the middle of the outer protective box body (1), inner protective covers (3) are provided on both sides of the inner part of the outer protective box body (1), an outer cover plate (101) is provided on one side of the outer protective box body (1) for rotation through a hinge, charging ports (102) are provided on both sides of the inner part of the outer protective box body (1), the inner protective cover (3) is provided at the charging port (102), side clamping strips (103) for limiting the position of the inner protective cover (3) are slidably provided on both sides of the inner part of the outer protective box body (1), and a first connecting tension spring (104) is connected between the side clamping strip (103) and the outer protective box body (1).
2. A quickly detachable new energy charging port cover protection assembly according to claim 1, characterized in that: One side of the side clamping strip (103) is rotatably connected to a side control rotating rod (105); one end of the side clamping strip (103) is slidably connected to a middle sliding groove of the side control rotating rod (105); the side clamping strip (103) is located on one side of the charging port (102); and the first connecting tension spring (104) pulls the side clamping strip (103) to move in a direction close to the charging port (102).
3. A quickly detachable new energy charging port cover protection assembly according to claim 1, characterized in that: The middle baffle (2) is provided with a rotatable first side baffle (201) on both sides via a rotating shaft, and a side connecting slider (204) is provided at the rear end of the first side baffle (201) via a rotating shaft. A lower supporting elastic member (203) is fixed to the bottom of the middle baffle (2), and the lower end of the lower supporting elastic member (203) is fixedly connected to the middle connecting frame (202). The bottom end of the first side baffle (201) is rotatably connected to the side connecting slider (204), and the side connecting slider (204) is fixedly connected to the upper side of the side annular belt (205), and the second side baffles (206) are slidably connected to both sides of the middle connecting frame (202).
4. A quickly detachable new energy charging port cover protection assembly according to claim 3, characterized in that: The side connecting slider (204) is slidably connected to the middle connecting frame (202), the two sides of the side annular belt (205) are connected by the middle connecting frame (202) through the cooperation of the rotating shaft, and the lower side of the side annular belt (205) is fixedly connected to the second side baffle (206).
5. A quickly detachable new energy charging port cover protection assembly according to claim 4, characterized in that: The middle connecting frame (202) is rotatably arranged on the inner side of the outer protective box body (1) through the cooperation of a rotating shaft, and the middle connecting frame (202), the middle baffle plate (2) and the first side baffle plate (201) are located between the outer cover plate (101) and the inner protective cover (3).
6. A quickly detachable new energy charging port cover protection assembly according to claim 1, characterized in that: Side sealing strips (301) are slidably arranged on opposite sides of the inner protective cover (3), a first supporting spring (302) is arranged between the side sealing strip (301) and the inner protective cover (3), a front end of the inner protective cover (3) is slidably connected to an outer sealing block (303), a second connecting tension spring (304) is arranged between the inner protective cover (3) and the outer sealing block (303), and a rear clamping block (305) is protruding from the side surface of the rear end of the inner protective cover (3).
7. A quickly detachable new energy charging port cover protection assembly according to claim 6, characterized in that: The first support spring (302) pulls the side sealing strips (301) on both sides of the inner protective cover (3) to keep it closed, the side sealing strips (301) are attached to the outside of the charging port (102), and the inner protective cover (3) and the outer protective box body (1) are rotatably connected via a rotating shaft.
8. A quickly detachable new energy charging port cover protection assembly according to claim 7, characterized in that: The second connecting tension spring (304) pulls the outer sealing block (303) to fit the outer side of the splicing position of the first ends of the two side sealing strips (301), and the tail clamping block (305) and the first end of the side clamping strip (103) are slidably engaged and connected.