New energy automobile fast charging and slow charging detection device
By combining a reversible motor and a hydraulic telescopic rod with a slip ring and slide bar design, the problem of inconvenient charging port alignment is solved, enabling rapid alignment and charger protection, and improving the efficiency and reliability of fast and slow charging detection for new energy vehicles.
Patent Information
- Application Number
- CN202511100997.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-07
- Publication Date
- 2025-11-04
AI Technical Summary
Existing fast and slow charging testing devices for new energy vehicles are inconvenient to align with the charger when in use, requiring multiple adjustments, and the connection between the charger and the charging port is easily damaged.
The charging port height is adjusted by using a forward and reverse motor to drive the rotating rod and the pressing wheel. Combined with a hydraulic telescopic rod and a protective airbag to protect the charger connection, the charging port is precisely positioned and protected by slip rings and sliding rods.
It enables quick alignment of the charging port and the charger, reducing adjustment time, improving work efficiency, protecting the charger connection, preventing damage, and ensuring testing results.
Smart Images

Figure CN120891302A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to a detection device, in particular to a new energy vehicle fast charging and slow charging detection device, and belongs to the technical field of new energy vehicle fast charging and slow charging detection. BACKGROUND
[0002] The new energy vehicle refers to an automobile adopting unconventional vehicle fuel as a power source (or using conventional vehicle fuel, adopting a new vehicle power device), combining advanced technologies of vehicle power control and driving, and forming an automobile with advanced technical principles and new technologies and structures. The new energy vehicle includes a pure electric vehicle, a range-extender electric vehicle, a hybrid electric vehicle, a fuel cell electric vehicle, a hydrogen engine vehicle and the like.
[0003] However, in actual use, the existing new energy vehicle fast charging and slow charging detection device needs to be manually adjusted by the staff, and the charging socket position is adjusted. Due to the angle problem, the charging socket after each movement is in a different position, which is inconvenient for aligning the charging socket with the charger, and the charging socket position needs to be adjusted for several times to align the charging socket with the charger, so that the charger cannot be conveniently inserted into the charging socket, and the connection between the charger and the charging socket cannot be conveniently protected, and the connection between the charger and the charging socket is easily damaged by collision during charging. SUMMARY
[0004] The main purpose of the application is to solve the problem that the charging socket is not convenient to align with the charger, and the connection between the charger and the charging socket cannot be conveniently protected, and provide a new energy vehicle fast charging and slow charging detection device.
[0005] The purpose of the application can be achieved by adopting the following technical scheme: The utility model provides a kind of new energy vehicle fast charging and slow charging detection device, including bottom plate and the operator being installed on the bottom plate, first support bar is installed on the bottom plate, one end of the first support bar is installed with sliding ring, sliding ring is slidably installed with slide bar, one end of the slide bar is installed with first support plate, charging socket is installed on the first support plate, positive and negative rotation motor is installed on the bottom plate, the output of the positive and negative rotation motor is installed with rotary lever, extrusion wheel is installed on the rotary lever, moving assembly is installed on the operator, rotating assembly is installed on the moving assembly, charging assembly is installed on the rotating assembly, air bag is installed on the bottom plate, air inlet pipe is installed on the air bag, electromagnetic valve is installed on the air inlet pipe, air pipe is installed on the air bag, second support bar is installed on the charging assembly, one end of the second support bar is installed with protection frame, protection air bag is installed on the protection frame, air bag is connected with the protection air bag by air pipe, support assembly is installed on the bottom plate, second connecting rod is installed on the support assembly, one end of the second connecting rod is installed with extrusion block.
[0006] Preferably, a plurality of bottom feet are installed at the bottom of the bottom plate.
[0007] Preferably, the sliding ring is connected with the slide bar through a spring.
[0008] Preferably, a bottom column is installed on the bottom plate, a support frame is installed at one end of the bottom column, and a positive and negative rotation motor is installed on the support frame.
[0009] Preferably, a bottom block is installed on the bottom plate, a support column is installed on the bottom block, a support disc is installed at one end of the support column, and the rotary lever is rotationally connected with the support disc.
[0010] Preferably, an installation plate is installed on the charging socket, an installation frame is installed on the first support plate, an installation block is installed on the installation plate, the installation frame is connected with the installation block through bolts, a detector is installed on the bottom plate, and the charging socket is connected with the detector through a power line.
[0011] Preferably, the moving assembly includes a hydraulic telescopic rod, a side column, and a connecting frame, the side column is installed on the operator, the connecting frame is installed at one end of the side column, and the hydraulic telescopic rod is installed on the connecting frame.
[0012] Preferably, the rotating assembly includes a rotating motor, an outer frame, a side rod, and a second support plate, the output of the hydraulic telescopic rod is installed with the second support plate, the side rod is installed on the second support plate, the outer frame is installed at one end of the side rod, and the rotating motor is installed on the outer frame.
[0013] Preferably, the charging assembly comprises a fast charging charger, a charging wire, a first connecting rod, a rotating disc and a slow charging charger, the output end of the rotating motor is provided with the rotating disc, a plurality of first connecting rods are installed on the rotating disc, one end of a group of the first connecting rods is provided with the fast charging charger, and one end of another group of the first connecting rods is provided with the slow charging charger; the slow charging charger and the fast charging charger are connected with the operator through the charging wire.
[0014] Preferably, a supporting ring is rotatably installed on the rotating disc, a bottom rod is installed on the bottom plate, and the bottom rod is installed on the supporting ring and the second supporting plate; one end of the bottom rod is provided with a lifting ring.
[0015] The beneficial technical effects of the present application are as follows: 1. The new energy vehicle fast charging and slow charging detection device provided by the present application is provided with a forward and reverse motor, the forward and reverse motor can drive the rotating rod to rotate when started, the rotating rod can drive the extrusion wheel to rotate when rotating, the first supporting plate can be lifted when the extrusion wheel rotates, the sliding rod can slide in the sliding ring, and the spring can be shortened, thereby the height of the charging socket can be adjusted, the charging socket can be aligned with the fast charging charger and the slow charging charger, and since the size of the extrusion wheel is fixed, the position of the charging socket at the highest position each time is the same, thereby the charging socket can be aligned with the fast charging charger and the slow charging charger each time, the position of the charging socket does not need to be adjusted multiple times to be aligned with the fast charging charger and the slow charging charger, thereby the working time is reduced and the working efficiency is improved.
[0016] 2. The hydraulic telescopic rod is provided, the second connecting rod can be moved when the hydraulic telescopic rod is started, the extrusion block can be moved when the second connecting rod moves, the fast charging charger and the slow charging charger can be moved when the hydraulic telescopic rod is started, the fast charging charger or the slow charging charger can be inserted into the charging socket, the protection air bag can be inflated through the air pipe by the extrusion of the extrusion block on the air bag at this time, thereby the connection between the fast charging charger and the rotating disc can be protected, the connection between the fast charging charger and the rotating disc is not easy to be damaged, thereby the detection effect is not affected, the electromagnetic valve is closed when the protection air bag is inflated, the air in the protection air bag is not easy to flow back, thereby the protection air bag is not easy to deflate when used. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a whole structure schematic view of the present application; Figure 2 It is a forward and reverse motor structure schematic view of the present application; Figure 3 It is a power transmission wire structure schematic view of the present application; Figure 4 It is a rotating disc structure schematic view of the present application; Figure 5 It is a schematic diagram of the fast charger structure of the application; Figure 6 It is a schematic diagram of the rotating motor structure of the application; Figure 7 It is a schematic diagram of the charging socket structure of the application; Figure 8 It is a schematic diagram of the mounting block structure of the application; Figure 9 It is a schematic diagram of the spring structure of the application; Figure 10 It is a schematic diagram of the extrusion wheel structure of the application; Figure 11 It is a schematic diagram of the slip ring structure of the application.
[0018] In the figure: 1, bottom plate; 11, bottom foot; 12, operator; 2, first support rod; 21, slip ring; 22, slide rod; 23, spring; 24, first support plate; 25, extrusion wheel; 3, charging socket; 31, power transmission line; 32, detector; 33, mounting plate; 34, mounting frame; 35, bolt; 36, mounting block; 4, support column; 41, bottom block; 42, support disc; 5, forward and reverse motor; 51, support frame; 52, bottom column; 53, rotating rod; 6, fast charger; 61, charging line; 62, first connecting rod; 63, rotating disc; 64, slow charger; 7, rotating motor; 71, outer frame; 72, side rod; 73, second support plate; 74, hydraulic telescopic rod; 75, side column; 76, connecting frame; 8, protection frame; 81, air pipe; 82, inflatable air bag; 83, second support rod; 84, extrusion block; 85, second connecting rod; 86, protection air bag; 87, air inlet pipe; 88, electromagnetic valve; 9, bottom rod; 91, support ring; 92, lifting rod; 93, lifting ring. DETAILED DESCRIPTION
[0019] In order to make the technical solution of the application more clear and explicit for those skilled in the art, the application will be further described in detail below in combination with examples and drawings, but the implementation of the application is not limited thereto.
[0020] As Figures 1-11As shown, the new energy vehicle fast charging and slow charging detection device provided by the embodiment comprises a bottom plate 1, an operator 12 installed on the bottom plate 1, a first support rod 2 installed on the bottom plate 1, a slip ring 21 installed at one end of the first support rod 2, a sliding rod 22 slidably installed on the slip ring 21, a first support plate 24 installed at one end of the sliding rod 22, a charging socket 3 installed on the first support plate 24, a forward and reverse motor 5 installed on the bottom plate 1, an output end of the forward and reverse motor 5 being provided with a rotating rod 53, a pressing wheel 25 installed on the rotating rod 53, a moving assembly installed on the operator 12, a rotating assembly installed on the moving assembly, a charging assembly installed on the rotating assembly, an inflatable air bag 82 installed on the bottom plate 1, an air inlet pipe 87 installed on the inflatable air bag 82, an electromagnetic valve 88 installed on the air inlet pipe 87, an air pipe 81 installed on the inflatable air bag 82, a second support rod 83 installed on the charging assembly, a protective frame 8 installed at one end of the second support rod 83, a protective air bag 86 installed on the protective frame 8, the inflatable air bag 82 being connected to the protective air bag 86 through the air pipe 81, a supporting assembly installed on the bottom plate 1, a second connecting rod 85 installed on the supporting assembly, a pressing block 84 installed at one end of the second connecting rod 85, a plurality of bottom feet 11 installed at the bottom of the bottom plate 1, the slip ring 21 being connected to the sliding rod 22 through a spring 23, a bottom column 52 installed on the bottom plate 1, a support frame 51 installed at one end of the bottom column 52, the support frame 51 being provided with the forward and reverse motor 5, a bottom block 41 installed on the bottom plate 1, a support column 4 installed on the bottom block 41, a support disc 42 installed at one end of the support column 4, the rotating rod 53 being rotatably connected to the support disc 42, the forward and reverse motor 5 being capable of driving the rotating rod 53 to rotate when the forward and reverse motor 5 is started, the pressing wheel 25 being capable of rotating when the rotating rod 53 rotates, the first support plate 24 being capable of rising when the pressing wheel 25 rotates, the sliding rod 22 being capable of sliding in the slip ring 21, the spring 23 being capable of shortening, the height of the charging socket 3 being capable of being adjusted, the charging socket 3 being capable of being aligned with the fast charger 6 and the slow charger 64, the size of the pressing wheel 25 being fixed, the position of the charging socket 3 being capable of being the same every time, the charging socket 3 being capable of being aligned with the fast charger 6 and the slow charger 64 every time, the position of the charging socket 3 not needing to be adjusted multiple times to be aligned with the fast charger 6 and the slow charger 64, the working time being reduced, the working efficiency being improved, the second connecting rod 85 being capable of moving when the hydraulic telescopic rod 74 is started, the pressing block 84 being capable of moving when the second connecting rod 85 moves, the fast charger 6 and the slow charger 64 being capable of moving when the hydraulic telescopic rod 74 is started, the fast charger 6 or the slow charger 64 being capable of being inserted into the charging socket 3, the pressing block 84 being capable of pressing the inflatable air bag 82, the protective air bag 86 being capable of being inflated through the air pipe 81, the connection between the fast charger 6 and the rotating disc 63 being capable of being protected, the connection between the fast charger 6 and the rotating disc 63 being not easy to be damaged,Further, it is not easy to affect the detection effect, when the protection air bag 86 inflates and swells, the electromagnetic valve 88 is closed, the air in the protection air bag 86 is not easy to backflow, further, it is not easy to cause the protection air bag 86 to leak and collapse when in use, by setting the first support rod 2, the sliding ring 21 can be conveniently supported, by setting the sliding rod 22 and the sliding ring 21 slidingly connected, the first support plate 24 can be conveniently guided and limited, by setting the foot 11, the bottom plate 1 can be conveniently supported, by setting the bottom column 52 and the support frame 51, the forward and reverse motor 5 can be conveniently supported, by setting the bottom block 41, the support column 4 and the support disc 42, the rotating rod 53 can be conveniently supported, the rotating rod 53 is rotatably connected with the support disc 42 through the bearing.
[0021] In the embodiment, as shown in FIG. bottom plate 1, FIG. support column 4, FIG. positive and negative conversion motor 5, FIG. fast charger 6, FIG. rotating motor 7 and FIG. protection frame 8, the charging socket 3 is provided with a mounting plate 33, the first support plate 24 is provided with a mounting frame 34, the mounting plate 33 is provided with a mounting block 36, the mounting frame 34 is connected with the mounting block 36 through the bolt 35, the bottom plate 1 is provided with a detector 32, the charging socket 3 is connected with the detector 32 through the power line 31, the moving assembly includes a hydraulic telescopic rod 74, a side column 75 and a connecting frame 76, the manipulator 12 is provided with the side column 75, one end of the side column 75 is provided with the connecting frame 76, the connecting frame 76 is provided with the hydraulic telescopic rod 74, the rotating assembly includes the rotating motor 7, an outer frame 71, a side rod 72 and a second support plate 73, the output end of the hydraulic telescopic rod 74 is provided with the second support plate 73, the second support plate 73 is provided with the side rod 72, one end of the side rod 72 is provided with the outer frame 71, the outer frame 71 is provided with the rotating motor 7, the charging assembly includes the fast charger 6, a charging wire 61, a first connecting rod 62, a rotating disc 63 and a slow charger 64, the output end of the rotating motor 7 is provided with the rotating disc 63, the rotating disc 63 is provided with a plurality of first connecting rods 62, one end of one group of the first connecting rods 62 is provided with the fast charger 6, one end of another group of the first connecting rods 62 is provided with the slow charger 64, the slow charger 64 and the fast charger 6 are both connected with the manipulator 12 through the charging wire 61, the rotating disc 63 is rotatably provided with a support ring 91, the bottom plate 1 is provided with a bottom rod 9, the support ring 91 and the second support plate 73 are both provided with the bottom rod 9, one end of the bottom rod 9 is provided with a lifting ring 93, by setting the rotating motor 7, the rotating motor 7 rotates forward or reverses, which can conveniently drive the rotating disc 63 to rotate, thereby conveniently adjusting the positions of the fast charger 6 and the slow charger 64, the hydraulic telescopic rod 74 is started, thereby driving the rotating disc 63 to move, which can conveniently drive the positions of the fast charger 6 and the slow charger 64, the fast charger 6 or the slow charger 64 is inserted into the charging socket 3, the fast charger 6 or the slow charger 64 charges the charging socket 3, electricity is delivered into the detector 32 through the power line 31, the detector 32 detects the charging voltage and charging failure of the charging socket 3, by setting the mounting block 36, the mounting block 36 is inserted into the mounting frame 34 to install the charging socket 3, the bolt 35 is set to limit the installed charging socket 3, the rotating disc 63 is rotatably connected with the support ring 91 through the bearing, by setting the side column 75 and the connecting frame 76 to cooperate with each other, the hydraulic telescopic rod 74 can be conveniently supported, by setting the side rod 72 and the outer frame 71 to cooperate with each other, the rotating motor 7 can be conveniently supported, by setting the bottom rod 9, the lifting ring 93 and the support ring 91 to cooperate with each other, the rotating disc 63 can be conveniently supported.
[0022] In the embodiment, as shown in FIG. bottom plate 1-FIG. bottom foot 11, the working process of the new energy vehicle fast and slow charging detection device provided in the embodiment is as follows: Step 1: insert the mounting block 36 into the mounting frame 34, and install the charging socket 3 through the bolt 35; Step 2: the forward and reverse motor 5 starts to drive the rotating rod 53 to rotate, when the rotating rod 53 rotates, the extrusion wheel 25 rotates, the first support plate 24 rises, the slide rod 22 slides in the sliding ring 21, the spring 23 shortens, and the height of the charging socket 3 is adjusted; Step 3: the rotating motor 7 starts to adjust the positions of the fast charger 6 and the slow charger 64, the hydraulic telescopic rod 74 starts to drive the second connecting rod 85 to move, when the second connecting rod 85 moves, the extrusion block 84 moves, and when the hydraulic telescopic rod 74 starts, the fast charger 6 and the slow charger 64 move, the fast charger 6 or the slow charger 64 is inserted into the charging socket 3, and the extrusion block 84 at this time extrudes the air bag 82, the air pipe 81 inflates the protection air bag 86, and the connection between the fast charger 6 and the rotating disc 63 is protected; Step 4: the fast charger 6 or the slow charger 64 charges the charging socket 3, and the power is transmitted to the detector 32 through the power line 31, and the detector 32 detects the charging socket 3.
[0023] In summary, in the present embodiment, the new energy vehicle fast charging and slow charging detection device according to the present embodiment is provided with a forward and reverse motor 5, which can drive the rotating rod 53 to rotate when started, and the rotating rod 53 can drive the extrusion wheel 25 to rotate when rotating, and the extrusion wheel 25 can drive the first supporting plate 24 to rise when rotating, and the sliding rod 22 can slide in the sliding ring 21, and the spring 23 can shorten, thereby adjusting the height of the charging socket 3, and the charging socket 3 can be aligned with the fast charger 6 and the slow charger 64, and since the size of the extrusion wheel 25 is fixed, it can ensure that the position of the charging socket 3 moving to the highest position each time is the same, thereby enabling the charging socket 3 to be aligned with the fast charger 6 and the slow charger 64 each time, without the need to adjust the position of the charging socket 3 multiple times to align with the fast charger 6 and the slow charger 64, thereby reducing the working time and improving the working efficiency, and the hydraulic telescopic rod 74 is provided, which can facilitate the movement of the second connecting rod 85 when started, and the second connecting rod 85 can drive the extrusion block 84 to move when moving, and when the hydraulic telescopic rod 74 is started, it can drive the fast charger 6 and the slow charger 64 to move, and the fast charger 6 or the slow charger 64 can be inserted into the charging socket 3, and the extrusion block 84 at this time can extrude the air bag 82, and through the air pipe 81, the protective air bag 86 can be inflated, thereby protecting the connection between the fast charger 6 and the turntable 63, and the connection between the fast charger 6 and the turntable 63 is not easy to be damaged, thereby not easily affecting the detection effect, and when the protective air bag 86 is inflated, the electromagnetic valve 88 is closed, which can prevent the air in the protective air bag 86 from flowing backward, thereby preventing the protective air bag 86 from leaking and collapsing when in use, the first supporting rod 2 is provided, which can facilitate the support of the sliding ring 21, the sliding rod 22 and the sliding ring 21 are slidably connected, which can facilitate the guiding and limiting of the first supporting plate 24, the bottom foot 11 is provided, which can facilitate the support of the bottom plate 1, the bottom column 52 and the supporting frame 51 are cooperated with each other, which can facilitate the support of the forward and reverse motor 5, the bottom block 41, the supporting column 4 and the supporting disc 42 are cooperated with each other, which can facilitate the support of the rotating rod 53, the rotating rod 53 is rotatably connected to the supporting disc 42 through a bearing, the rotating motor 7 is provided, which can facilitate the rotation of the turntable 63 when rotating forward or reversing, thereby facilitating the adjustment of the position of the fast charger 6 and the slow charger 64, the hydraulic telescopic rod 74 is started, thereby driving the turntable 63 to move, which can facilitate the movement of the position of the fast charger 6 and the slow charger 64, and the fast charger 6 or the slow charger 64 is inserted into the charging socket 3, the fast charger 6 or the slow charger 64 charges the charging socket 3, the electricity is delivered to the detector 32 through the power line 31, the detector 32 detects the charging voltage and charging failure of the charging socket 3, the mounting block 36 is provided, which is inserted into the mounting frame 34 to install the charging socket 3,Through setting bolt 35, the charging socket 3 after installation is limited, the rotating disc 63 is rotatably connected with the support ring 91 through the bearing, through setting side column 75 and connecting frame 76, it can be convenient to support the hydraulic telescopic rod 74, through setting side rod 72 and outer frame 71, it can be convenient to support the rotating motor 7, through setting bottom rod 9, lifting ring 93 and support ring 91, it can be convenient to support the rotating disc 63.
[0024] As used in the specification and claims, certain terminology is used to designate certain components. One of skill in the art will understand that different names can be used by hardware manufacturers to refer to the same component. It is the function, not the name, that serves to identify a component. As used throughout the specification and claims, "comprising" is to be read as "comprising, without limitation." "Approximately" refers to a range of acceptable error, within which a skilled person would be able to solve the technical problem, substantially achieving the technical effect.
[0025] It should be noted that the terms "comprising," "including," and any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element preceded by "comprises... a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
[0026] The foregoing description illustrates and describes the only preferred embodiments of the present application. However, it is to be understood that the application is not limited to the above-described embodiments, and that numerous modifications can be made by those skilled in the art without departing from the true spirit and scope of the application. Accordingly, the application is not to be limited by the above-described embodiments, but is to be understood broadly by the scope of the claims appended hereto.
Claims
1. A detection device for fast charging and slow charging of new energy vehicles, characterized in that, The device includes a base plate (1) and an operator (12) mounted on the base plate (1). A first support rod (2) is mounted on the base plate (1). A slip ring (21) is mounted on one end of the first support rod (2). A slide rod (22) is slidably mounted on the slip ring (21). A first support plate (24) is mounted on one end of the slide rod (22). A charging port (3) is mounted on the first support plate (24). A forward and reverse motor (5) is mounted on the base plate (1). A rotating rod (53) is mounted on the output end of the forward and reverse motor (5). A pressing wheel (25) is mounted on the rotating rod (53). A moving component is mounted on the operator (12). A rotating component is mounted on the moving component. A rotating component is mounted on the rotating component. The device is equipped with a charging assembly. An inflatable airbag (82) is installed on the base plate (1). An air inlet pipe (87) is installed on the inflatable airbag (82). A solenoid valve (88) is installed on the air inlet pipe (87). An air pipe (81) is installed on the inflatable airbag (82). A second support rod (83) is installed on the charging assembly. A protective frame (8) is installed at one end of the second support rod (83). A protective airbag (86) is installed on the protective frame (8). The inflatable airbag (82) is connected to the protective airbag (86) through the air pipe (81). A support assembly is installed on the base plate (1). A second connecting rod (85) is installed on the support assembly. A compression block (84) is installed at one end of the second connecting rod (85).
2. The fast charging and slow charging detection device for new energy vehicles according to claim 1, characterized in that, The bottom of the base plate (1) is equipped with multiple feet (11).
3. The fast charging and slow charging detection device for new energy vehicles according to claim 2, characterized in that, The slip ring (21) is connected to the slide rod (22) by a spring (23).
4. The fast charging and slow charging detection device for new energy vehicles according to claim 3, characterized in that, A base column (52) is installed on the base plate (1), and a support frame (51) is installed at one end of the base column (52). A forward and reverse motor (5) is installed on the support frame (51).
5. The fast charging and slow charging detection device for new energy vehicles according to claim 4, characterized in that, A base block (41) is installed on the base plate (1), a support column (4) is installed on the base block (41), a support plate (42) is installed at one end of the support column (4), and the rotating rod (53) is rotatably connected to the support plate (42).
6. The fast charging and slow charging detection device for new energy vehicles according to claim 5, characterized in that, A mounting plate (33) is installed on the charging port (3), a mounting frame (34) is installed on the first support plate (24), a mounting block (36) is installed on the mounting plate (33), the mounting frame (34) is connected to the mounting block (36) by bolts (35), a detector (32) is installed on the base plate (1), and the charging port (3) is connected to the detector (32) by a power supply wire (31).
7. The fast charging and slow charging detection device for new energy vehicles according to claim 6, characterized in that, The moving component includes a hydraulic telescopic rod (74), a side column (75), and a connecting frame (76). The side column (75) is mounted on the operator (12), and the connecting frame (76) is mounted on one end of the side column (75). The hydraulic telescopic rod (74) is mounted on the connecting frame (76).
8. The fast charging and slow charging detection device for new energy vehicles according to claim 7, characterized in that, The rotating assembly includes a rotary motor (7), an outer frame (71), a side rod (72), and a second support plate (73). The output end of the hydraulic telescopic rod (74) is equipped with the second support plate (73). The side rod (72) is installed on the second support plate (73). The outer frame (71) is installed on one end of the side rod (72). The rotary motor (7) is installed on the outer frame (71).
9. A fast charging and slow charging detection device for new energy vehicles according to claim 8, characterized in that, The charging assembly includes a fast charger (6), a charging cable (61), a first connecting rod (62), a turntable (63), and a slow charger (64). The output end of the rotary motor (7) is equipped with a turntable (63), and multiple first connecting rods (62) are installed on the turntable (63). One end of one set of first connecting rods (62) is equipped with a fast charger (6), and one end of another set of first connecting rods (62) is equipped with a slow charger (64). The slow charger (64) and the fast charger (6) are both connected to the operator (12) through the charging cable (61).
10. A fast charging and slow charging detection device for new energy vehicles according to claim 9, characterized in that, A support ring (91) is rotatably mounted on the turntable (63), and a bottom rod (9) is mounted on the base plate (1). Both the support ring (91) and the second support plate (73) are equipped with bottom rods (9), and a lifting ring (93) is mounted on one end of the bottom rod (9).