Self-service equipment powered by solar energy
By designing support components in the self-service equipment, utilizing the angle between the second pipe and the vertical direction, and the drainage outlet structure, the problem of poor waterproof performance of the equipment in rainy and snowy weather was solved, achieving a good waterproof effect.
Patent Information
- Application Number
- CN202520069110.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-13
Smart Images

Figure CN223729674U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a self-service equipment technical field especially, it relates to a kind of self-service equipment powered by solar energy. BACKGROUND
[0002] Photovoltaic panel assembly is a kind of power generation mechanism that will generate direct current when exposed to sunlight, some self-service equipment such as express delivery cabinet, self-service vending machine used outdoors is installed with photovoltaic panel and battery, photovoltaic panel is installed on the outside of the cabinet of self-service equipment, battery is installed in the inside of cabinet, photovoltaic panel is electrically connected with battery through cable, photovoltaic panel converts the solar energy absorbed into electric energy and delivers to battery through cable, battery is electrically connected with the electrical components of self-service equipment, and is used to power electrical components. Due to the need of cable routing, a threading opening for power cable is needed to be set on the surface of the cabinet of self-service equipment, however, in rainy and snowy weather, rain and snow are easy to enter the inside of the cabinet of self-service equipment through the threading opening. Therefore, the waterproof performance of the existing self-service equipment powered by solar energy is poor. SUMMARY
[0003] The utility model aims at providing a kind of self-service equipment powered by solar energy to improve the waterproof performance of self-service equipment powered by solar energy.
[0004] The utility model provides a kind of self-service equipment powered by solar energy, the self-service equipment powered by solar energy includes:
[0005] Cabinet, the surface of the cabinet is equipped with threading opening;
[0006] Battery, installed in the cabinet;
[0007] Supporting assembly, including first pipe fitting, second pipe fitting and drain port, the first pipe fitting is connected with the cabinet and covers the threading opening, the second pipe fitting is connected at an angle with the first pipe fitting, and the second pipe fitting is arranged at an angle with vertical direction, the second pipe fitting is communicated with the inside of the first pipe fitting, the drain port is arranged on the side of the second pipe fitting towards downward;
[0008] Photovoltaic panel assembly, connected with the second pipe fitting;
[0009] Cable, the first end of the cable is connected with the photovoltaic panel assembly, the second end of the cable is sequentially connected with the battery after passing through the inside of the second pipe fitting, the inside of the first pipe fitting and the threading opening.
[0010] As preferred technical scheme of self-service equipment powered by solar energy, the second pipe fitting includes top end and bottom end, the top end is open setting, the bottom end is connected with first pipe fitting, and the bottom end is communicated with the inside of the first pipe fitting;
[0011] The support assembly further comprises a first sealing member, which is sealed to the top end, wherein the first sealing member extrudes the cable to the inner wall of the second pipe, or the cable is arranged through the first sealing member and closely adheres to the first sealing member.
[0012] As the preferred technical solution of the self-service device powered by solar energy, the second pipe comprises:
[0013] a pipe body, the pipe body is provided with an opening on the pipe wall facing downward;
[0014] a cover plate for closing the opening, the drain port is arranged on the cover plate;
[0015] a water baffle arranged in the pipe body, the lower end of the water baffle is connected with the pipe wall facing downward of the pipe body, and the water baffle extends upward in a direction away from the opening, the water baffle is used for guiding the water flowing into the second pipe to the drain port, and the cable passes around the water baffle in the pipe body.
[0016] As the preferred technical solution of the self-service device powered by solar energy, the pipe body comprises a first pipe wall and a second pipe wall arranged in parallel and spaced apart, the first pipe wall is located below the second pipe wall in the vertical direction, the opening is arranged on the first pipe wall, and the lower end of the water baffle is connected with the first pipe wall.
[0017] As the preferred technical solution of the self-service device powered by solar energy, the water baffle comprises a channel plate and a water guide plate connected at an angle, the lower end of the channel plate is connected with the lower edge of the opening, a water flow channel communicating with the drain port is formed between the channel plate and the cover plate, the lower end of the water guide plate is connected with the upper end of the channel plate, and the upper end of the water guide plate is arranged in the pipe body in a suspended manner.
[0018] As the preferred technical solution of the self-service device powered by solar energy, the support assembly further comprises a wire passing plate, the wire passing plate is located above the water baffle, the wire passing plate is connected with the inner wall of the second pipe, the wire passing plate, the water guide plate and the cover plate form a triangular accommodation space;
[0019] The support assembly further comprises a second sealing member, which is embedded in the accommodation space, the cable sequentially passes through the wire passing plate and the accommodation space, and the second sealing member is used for pressing the part of the cable passing through the accommodation space against the lower surface of the wire passing plate.
[0020] As the preferred technical scheme of the self-service equipment powered by solar energy, the wire passing plate is connected with the inner wall of the pipe body, the wire passing plate divides the pipe body into an upper pipe body and a lower pipe body, the wire passing plate is provided with a wire passing hole communicating the upper pipe body and the lower pipe body, the wire passing hole also communicates with the opening, and the cable wire enters the lower pipe body from the upper pipe body through the wire passing hole.
[0021] The support assembly further comprises a third sealing member embedded in the upper pipe body, and the third sealing member is supported by the wire passing plate, and when the cover plate blocks the opening, the cable wire is pressed between the third sealing member and the cover plate.
[0022] As the preferred technical scheme of the self-service equipment powered by solar energy, the wire passing hole is arranged on the top wall of the cabinet.
[0023] The support assembly further comprises a bottom disc, a sealing gasket and a fastener, the bottom disc is fixedly connected with the end of the first pipe away from the second pipe, the sealing gasket is located between the bottom disc and the cabinet, and the fastener is sequentially threaded through the bottom disc and the sealing gasket and is threadedly connected with the top wall of the cabinet.
[0024] As the preferred technical scheme of the self-service equipment powered by solar energy, the cabinet comprises a storage box, the storage box comprises a box body, a box door and an electric control lock, the box body has an open end, the box door is movably connected with the box body, the box door has an open position for opening the open end and a closed position for closing the open end, and the electric control lock is electrically connected with the storage battery, and the electric control lock is used for locking the box door in the closed position.
[0025] As the preferred technical scheme of the self-service equipment powered by solar energy, the self-service equipment powered by solar energy comprises a plurality of storage batteries, the cabinet further comprises an energy storage box, the plurality of storage batteries are placed in the energy storage box, the plurality of storage batteries are connected in parallel, and the plurality of storage batteries are electrically connected with the photovoltaic panel assembly.
[0026] The self-service equipment powered by solar energy provided by the utility model has at least the following beneficial effects:
[0027] The solar-powered self-service equipment includes a cabinet, a battery, a support assembly, a photovoltaic panel assembly, and cables. The surface of the cabinet has a cable entry port, and the battery is installed inside the cabinet. The support assembly includes a first pipe, a second pipe, and a drain outlet. The first pipe is connected to the cabinet and covers the cable entry port. The second pipe is connected to the first pipe at an angle and is also angled to the vertical direction. The second pipe is internally connected to the first pipe, and the drain outlet is located on the downward-facing side of the second pipe. The photovoltaic panel assembly is connected to the second pipe. The first end of the cable is connected to the photovoltaic panel assembly, and the second end of the cable passes through the interior of the second pipe, the interior of the first pipe, and the cable entry port before connecting to the battery. The self-service equipment powered by solar energy provided in this embodiment has a second pipe that is set at an angle to the vertical direction, so that the pipe wall facing upwards can block rainwater. By setting a drain outlet on the downward-facing side of the second pipe, rainwater entering the second pipe can be discharged in time, preventing rainwater from flowing into the cabinet in sequence through the second pipe, the first pipe, and the cable outlet. Therefore, the self-service equipment powered by solar energy provided in this embodiment has good waterproof performance. Attached Figure Description
[0028] Figure 1 This is a first structural schematic diagram of a self-service device using solar power in an embodiment of the present utility model;
[0029] Figure 2 This is a second structural schematic diagram of a self-service device using solar power in an embodiment of this utility model;
[0030] Figure 3 This is a partial structural diagram of a self-service device powered by solar energy in an embodiment of this utility model.
[0031] Figure 4 This is a cross-sectional view of a partial structure of a self-service device powered by solar energy in an embodiment of this utility model;
[0032] Figure 5 This is an exploded view of the support components of a solar-powered self-service device according to an embodiment of the present invention.
[0033] Figure 6 This is an enlarged view of a partial structure of a self-service device powered by solar energy in an embodiment of this utility model.
[0034] In the picture:
[0035] 100. Server rack; 101. Cable tray; 102. Top wall; 103. Storage box; 104. Cabinet body; 105. Cabinet door; 106. Energy storage box;
[0036] 200. Storage battery; 300. Supporting components; 400. Photovoltaic panel components; 500. Cables; 600. Touch screen;
[0037] 1. a first pipe fitting;
[0038] 2. a second pipe fitting; 21. a pipe body; 211. a first pipe wall; 212. a second pipe wall; 213. a third pipe wall; 214. a fourth pipe wall; 215. an opening; 216. an upper pipe body; 217. a lower pipe body; 22. a cover plate; 23. a water baffle; 231. a passage plate; 232. a water guide plate; 233. a first plate; 234. a second plate; 235. a wire avoiding groove; 24. a drain port; 25. a water flow passage;
[0039] 3. a base plate; 4. a gasket; 5. a fastener; 6. a first sealing member;
[0040] 7. a wire passing plate; 71. a wire passing hole;
[0041] 8. a containing space; 9. a second sealing member; 10. a third sealing member;
[0042] 11. a fourth sealing member; 111. a through hole. DETAILED DESCRIPTION
[0043] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0044] In the description of the present application, it should be noted that the orientations or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", etc. are only for the purpose of description, and cannot be understood as indicating or implying relative importance. Among them, the terms "first position" and "second position" are two different positions, and moreover, the "above", "upper" and "upper surface" of the first feature relative to the second feature include the vertical direction of the first feature above and obliquely above the second feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The "below", "below" and "below" of the first feature relative to the second feature include the vertical direction of the first feature below and obliquely below the second feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.
[0045] In the description of the utility model, it is necessary to explain that, unless there are explicit provisions and limitations, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or it can be detachable connection, or it can be integrally connected, it can be mechanical connection, or it can be electrical connection, it can be directly connected, or it can be indirectly connected through an intermediate medium, it can be the communication between two elements.
[0046] The embodiments of the utility model are described in detail below, examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the utility model, and cannot be understood as limiting the utility model.
[0047] Please refer to Figures 1 to 4 , the embodiment provides a kind of solar-powered self-service equipment, which includes cabinet 100, battery 200, support assembly 300, photovoltaic panel assembly 400 and cable 500. Wherein, the surface of cabinet 100 is provided with threading port 101, and battery 200 is installed in cabinet 100;Support assembly 300 includes first pipe 1, second pipe 2 and drain 24, first pipe 1 is connected with cabinet 100 and is covered on threading port 101, second pipe 2 is connected at an angle with first pipe 1, and second pipe 2 is arranged at an angle with vertical direction, second pipe 2 is communicated with the inside of first pipe 1, and drain 24 is arranged on the side of second pipe 2 towards downward;Photovoltaic panel assembly 400 is connected with second pipe 2;The first end of cable 500 is connected with photovoltaic panel assembly 400, and the second end of cable 500 is sequentially connected with battery 200 after passing through the inside of second pipe 2, the inside of first pipe 1 and threading port 101.The solar-powered self-service equipment provided by the embodiment, by second pipe 2 being arranged at an angle with vertical direction, so that the pipe wall of second pipe 2 towards upward can shield rainwater;By setting drain 24 on the side of second pipe 2 towards downward, rainwater entering second pipe 2 can be discharged in time, to avoid rainwater flowing into cabinet 100 through second pipe 2, first pipe 1 and threading port 101 in turn, therefore, the solar-powered self-service equipment provided by the embodiment has good waterproof performance.
[0048] Optionally, please refer to Figure 1 , the solar-powered self-service equipment further includes electrical devices electrically connected with battery 200, the electrical devices include at least one of touch screen 600, electric lock, sensor, control panel, battery 200 is used to power each electrical device.
[0049] Optionally, please refer to Figure 1 and Figure 2 , the cabinet 100 comprises a storage box 103, the storage box 103 comprises a box body 104 and a box door 105, the box body 104 has an opening, the box door 105 is movably connected with the box body 104, and the box door 105 has an open position for opening the opening and a closed position for closing the opening, and an electric lock (not shown in the figure) is electrically connected with the battery 200, and the electric lock is used to lock the box door 105 in the closed position. In this way, the self-service equipment powered by solar energy has a storage function. Preferably, the cabinet 100 comprises a plurality of storage boxes 103, the electric locks of the plurality of storage boxes 103 are electrically connected with the battery 200, and the plurality of storage boxes 103 are arranged in rows and / or columns for storing packages, take-out food, etc. Further preferably, the self-service equipment powered by solar energy comprises a plurality of cabinets arranged in rows.
[0050] Optionally, please refer to Figure 2 , the self-service equipment powered by solar energy comprises a plurality of batteries 200, and the cabinet 100 further comprises an energy storage box 106, the plurality of batteries 200 are placed in the energy storage box 106, the plurality of batteries 200 are connected in parallel, and the plurality of batteries 200 are electrically connected with the photovoltaic panel assembly 400. In this way, the batteries 200 can be stored in the energy storage box 106 to protect the batteries 200. Preferably, the energy storage box 106 is provided with a plurality of compartments arranged in columns, and the plurality of batteries 200 are placed one by one in the plurality of compartments. Specifically, when the light is sufficient, the photovoltaic panel assembly 400 absorbs solar energy and converts it into electrical energy and stores it in the plurality of batteries 200 in turn, part of the plurality of batteries 200 can power the electric locks of the plurality of storage boxes 103, and another part of the plurality of batteries 200 can power the electric locks of the plurality of storage boxes 103 in turn when the light is insufficient or there is no light, ensuring that the self-service equipment powered by solar energy can be reliably used without being affected by light.
[0051] Optionally, please refer to Figures 3 to 5 , the threading hole 101 is arranged on the top wall 102 of the cabinet 100; the support assembly 300 further comprises a base plate 3, a sealing gasket 4, and a fastener 5, the base plate 3 is fixedly connected with the end of the first pipe 1 away from the second pipe 2, the sealing gasket 4 is located between the base plate 3 and the cabinet 100, and the fastener 5 is threadedly connected with the top wall 102 of the cabinet 100 after passing through the base plate 3 and the sealing gasket 4 in turn. By arranging the base plate 3, the support area of the top wall 102 on the support assembly 300 can be increased, thereby ensuring the stability of the support of the photovoltaic panel assembly 400 by the support assembly 300; by arranging the sealing gasket 4 between the base plate 3 and the top wall 102, water can be prevented from entering the cabinet 100 through the threading hole 101 from the gap between the base plate 3 and the top wall 102. In other embodiments, the threading hole 101 is arranged on the side wall of the cabinet 100.
[0052] Optionally, please refer to Figure 3 and Figure 5 , the chassis 3 is rectangular, the fastener 5 includes four screws, the chassis 3 is provided with four through holes arranged in a square, and the top wall 102 is correspondingly provided with four threaded holes, the four screws, the four through holes and the four threaded holes are one-to-one correspondingly arranged, and each screw is threadedly connected with the corresponding through hole and the corresponding threaded hole. Since the four through holes and the four threaded holes correspondingly arranged with the four through holes are arranged in a square, when the photovoltaic panel assembly 400 is installed, the photovoltaic panel of the photovoltaic panel assembly 400 can face any one of the front, rear, left and right four directions of the solar-powered self-service equipment, so that the solar-powered self-service equipment can be placed in any position outdoors (for example, the east side of the street, the west side of the street, the south side of the street or the north side of the street), and the photovoltaic panel assembly 400 can be guaranteed to face the light direction (for example, south).
[0053] As one of the alternative solutions, the chassis 3 is circular, the fastener 5 is a screw, the support assembly 300 includes a plurality of screws, the chassis 3 is provided with a plurality of through holes arranged at equal intervals on the same circumference, the top wall 102 is correspondingly provided with a plurality of threaded holes, the plurality of screws, the plurality of through holes and the plurality of threaded holes are one-to-one correspondingly arranged, and each screw is threadedly connected with the corresponding through hole and the corresponding threaded hole.
[0054] Optionally, please refer to Figures 4 to 6 , the second pipe 2 includes a top end and a bottom end, the top end is open, the bottom end is connected with the first pipe 1, and the bottom end is in communication with the inside of the first pipe 1; the support assembly 300 further includes a first sealing member 6, the first sealing member 6 is sealed to the top end, and the first sealing member 6 extrudes the cable 500 to the inner wall of the second pipe 2. In this way, the inside of the first pipe 1 and the inside of the second pipe 2 are in communication, and the end of the second pipe 2 away from the first pipe 1 and the end of the first pipe 1 away from the second pipe 2 are both open, so that the cable 500 can pass through the inside of the second pipe 2 and the inside of the first pipe 1; in addition, by sealing the top end of the second pipe 2 with the first sealing member 6, rainwater can only enter the second pipe 2 along the cable 500, greatly reducing the space size of the top end of the second pipe 2 available for rainwater to enter. Preferably, the first sealing member 6 is made of silica gel, foam or other materials, so that the first sealing member 6 has a certain deformation amount and can not cause damage to the extruded cable 500 when sealing the top end of the second pipe 2.
[0055] As one of the alternative solutions, the cable 500 is arranged in the first sealing member 6 and tightly adheres to the first sealing member 6. In this way, the first sealing member 6 is tightly sealed with the top end of the second pipe 2 and the cable 500, which can further prevent rainwater from entering the second pipe 2.
[0056] Optionally, please continue to refer to Figures 4 to 6 The second pipe 2 comprises a pipe body 21, a cover plate 22 and a water baffle 23. The pipe body 21 is provided with an opening 215 on the pipe wall facing downward. The cover plate 22 is used to close the opening 215, and a drain 24 is arranged on the cover plate 22. The water baffle 23 is arranged in the pipe body 21, and the lower end of the water baffle 23 is connected to the pipe wall of the pipe body 21 facing downward. The water baffle 23 extends upward in a direction away from the opening 215, and is used to guide the water flowing into the second pipe 2 to the drain 24. The cable 500 passes around the water baffle 23 in the pipe body 21. In this way, the rainwater entering the second pipe 2 from the top end of the second pipe 2 flows along the inner wall of the pipe body 21. Part of the rainwater can directly flow to the drain 24 along the cover plate 22, and the other part of the rainwater flows to the water baffle 23 and is guided to the drain 24 by the water baffle 23. Finally, all the rainwater is drained out of the drain 24, so as to avoid the rainwater from flowing to the first pipe 1. The cable 500 passes around the water baffle 23, so that the cable 500 can be separated from the rainwater flowing along the inner wall of the pipe body 21.
[0057] Optionally, the pipe body 21 comprises a first pipe wall 211 and a second pipe wall 212 arranged in parallel and spaced apart. In the vertical direction, the first pipe wall 211 is located below the second pipe wall 212. The opening 215 is arranged on the first pipe wall 211, and the lower end of the water baffle 23 is connected to the first pipe wall 211. In this way, under the blockage of the water baffle 23, the rainwater can be completely collected into the opening 215, which is conducive to the rainwater being further drained out of the drain 24. The lower end of the water baffle 23 can also be flush with the lower edge of the drain 24. Alternatively, the lower end of the water baffle 23 can be higher than the lower edge of the drain 24 and lower than the upper edge of the drain 24.
[0058] In this embodiment, the second pipe 2 can be a round pipe or a square pipe, and the first pipe 1 can also be a round pipe or a square pipe. When the second pipe 2 is a round pipe, the first pipe wall 211 is a circular arc type pipe wall. When the second pipe 2 is a square pipe, the first pipe wall 211 is a planar pipe wall. In this embodiment, an example is given that the second pipe 2 is a square pipe and the first pipe 1 is a square pipe. Specifically, in this embodiment, the opening 215 arranged on the first pipe wall 211 is rectangular. The second pipe 2 further comprises a third pipe wall 213 and a fourth pipe wall 214 arranged in parallel and spaced apart. The third pipe wall 213 and the fourth pipe wall 214 are connected between the first pipe wall 211 and the second pipe wall 212, and the photovoltaic panel assembly 400 is connected to the third pipe wall 213 and the fourth pipe wall 214. Preferably, the first pipe 1 and the second pipe 2 are both made of profiled materials and are connected by welding.
[0059] Optionally, please continue to refer to Figures 4 to 6, the water baffle 23 comprises a channel plate 231 and a guide plate 232 connected at an angle, the lower end of the channel plate 231 is connected with the lower edge of the opening 215, the channel plate 231 and the cover plate 22 form a water flow channel 25 communicating with the drain 24, the lower end of the guide plate 232 is connected with the upper end of the channel plate 231, and the upper end of the guide plate 232 is suspended in the pipe body 21. In this way, rainwater can be guided to the water flow channel 25 between the channel plate 231 and the cover plate 22 through the guide plate 232, and then flow out through the drain 24. Preferably, the cover plate 22 and the channel plate 231 of the water baffle 23 are detachably connected. When assembled, the cable 500 enters the inside of the pipe body 21 from the top end of the pipe body 21, extends downward into the first pipe 1 after bypassing the upper end of the guide plate 232, and supports the cable 500 in the pipe body 21 through the guide plate 232, so that the cable 500 extends away from the cover plate 22, and then the cable 500 is away from the water flow channel 25. Optionally, the channel plate 231 comprises a first plate 233 and a second plate 234 connected at an angle, the first plate 233 is connected with the lower edge of the opening 215 and is flush with the lower edge of the drain 24, and the second plate 234 is connected with the guide plate 232, the second plate 234 is arranged in parallel with the cover plate 22, and the water flow channel 25 is formed between the two.
[0060] Optionally, please continue to refer to Figures 4 to 6 , the support assembly 300 further comprises a wire passing plate 7 located above the water baffle 23, the wire passing plate 7 is connected with the inner wall of the second pipe 2, the wire passing plate 7, the guide plate 232 and the cover plate 22 form a triangular accommodation space 8, and the support assembly 300 further comprises a second sealing member 9 embedded in the accommodation space 8, the cable 500 passes through the wire passing plate 7 and the accommodation space 8 in sequence, and the second sealing member 9 is used to press the part of the cable 500 passing through the accommodation space 8 against the lower surface of the wire passing plate 7. In this way, by locating the wire passing plate 7 above the water baffle 23, the rainwater entering the second pipe 2 can be reduced from directly falling on the guide plate 232, and by pressing the part of the cable 500 passing through the accommodation space 8 against the lower surface of the wire passing plate 7 through the second sealing member 9, the water droplets flowing into the second pipe 2 along the cable 500 can be made to fall into the accommodation space 8 as much as possible under the action of gravity, and then be discharged through the drain 24, thereby reducing the water droplets flowing along the cable 500. Preferably, the cover plate 22 is further detachably connected with the wire passing plate 7. Specifically, during assembly, the second sealing member 9 is first inserted into the accommodation space 8 through the opening 215, and then the cover plate 22 is connected with the channel plate 231 and the wire passing plate 7 respectively, the second sealing member 9 presses the cable 500 to make the cable 500 closely adhere to the wire passing plate 7.
[0061] Specifically, in the embodiment, a gap is provided between the upper end of the water guide plate 232 and the wire passing plate 7, the cable 500 passes through the wire passing plate 7 into the accommodating space 8, and under the extrusion of the second sealing member 9, the cable 500 exits the accommodating space 8 through the gap between the upper end of the water guide plate 232 and the wire passing plate 7, and also bypasses the water baffle 23.
[0062] Optionally, referring to Figure 5 , the water guide plate 232 is provided with a wire avoiding groove 235 adjacent to the upper end of the water guide plate 232, the wire avoiding groove 235 is in communication with the gap and the accommodating space 8, in the assembly process, the cable 500 is first passed through the wire avoiding groove 235 through the opening 215, then the second sealing member 9 is inserted into the accommodating space 8, and the second sealing member 9 pushes the cable 500 upwards along the water guide plate 232, so that the cable 500 is separated from the wire avoiding groove 235 and enters the gap between the upper end of the water guide plate 232 and the wire passing plate 7, and the part of the cable 500 passing through the accommodating space 8 is pressed against the lower surface of the wire passing plate 7 by the second sealing member 9. Therefore, by providing the wire avoiding groove 235 on the water guide plate 232, the cable 500 can be conveniently bypassed around the upper end of the water guide plate 232 in the assembly process.
[0063] Optionally, referring to Figure 4 and Figure 6 , in the embodiment, the cable 500 passes through the wire passing plate 7 in the direction of downward inclination, and then bends in the accommodating space 8 and passes through the gap between the upper end of the water guide plate 232 and the wire passing plate 7 in the direction of upward inclination. In this way, the bending position of the cable 500 in the accommodating space 8 is the lowest point of the cable 500 in the accommodating space 8, so that when the rainwater flows along the cable 500 to the bending position, the rainwater will be collected and drip under the action of gravity onto the cover plate 22, avoiding the rainwater from continuing to flow along the cable 500.
[0064] Optionally, the wire passing plate 7 is connected with the inner wall of the pipe body 21, the wire passing plate 7 divides the pipe body 21 into an upper pipe body 216 and a lower pipe body 217, the wire passing plate 7 is provided with a wire passing hole 71 which communicates the upper pipe body 216 and the lower pipe body 217, the wire passing hole 71 also communicates with the opening 215, the cable 500 passes through the wire passing hole 71 from the upper pipe body 216 into the lower pipe body 217; the support assembly 300 further comprises a third sealing member 10, the third sealing member 10 is embedded in the upper pipe body 216, and the third sealing member 10 is supported by the wire passing plate 7, when the cover plate 22 blocks the opening 215, the cable 500 is pressed between the third sealing member 10 and the cover plate 22. In this way, when the cable 500 passes between the third sealing member 10 and the cover plate 22, the water drops brought by the cable 500 are blocked by the third sealing member 10, further reducing the water drops flowing down with the cable 500. During assembly, the third sealing member 10 is first inserted into the second pipe 2 through the opening 215 and supported by the wire passing plate 7, then the cable 500 passes through the wire passing hole 71 on the wire passing plate 7, the wire avoiding groove 235 on the water guide plate 232, and then the second sealing member 9 is inserted into the accommodating space 8, finally the cover plate 22 is screwed with the wire passing plate 7 and the passage plate 231 of the water blocking plate 23 respectively.
[0065] Optionally, referring to Figure 4 , the support assembly 300 further comprises a fourth sealing member 11, the fourth sealing member 11 is embedded in the first pipe 1 adjacent to one end of the cabinet 100, and the fourth sealing member 11 is provided with a through hole 111 opposite to the wire passing hole 101, and the size of the through hole 111 is smaller than the size of the wire passing hole 101, in the first pipe 1, the cable 500 passes through the through hole 111 and enters the wire passing hole 101, and then enters the cabinet 100, by arranging the fourth sealing member 11, water drops entering the cabinet 100 through the wire passing hole 101 can be further prevented. Preferably, the fourth sealing member 11 is closely attached to the surface of the cable 500.
[0066] Obviously, the above embodiments of the utility model are only examples for clearly explaining the utility model, and are not the limitation to the embodiments of the utility model. For ordinary skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, all the embodiments are not required to be exhausted. Any modification, equivalent replacement and improvement made within the spirit and principle of the utility model should be included in the protection scope of the utility model claims.
Claims
1. A self-service apparatus powered by solar energy, characterized by, The utility model relates to a kind of photovoltaic power generation device, including: Cabinet (100), the surface of the cabinet (100) is provided with threading opening (101); Battery (200) is installed in the cabinet (100); Supporting assembly (300), including first pipe (1), second pipe (2) and drain (24), the first pipe (1) is connected with the cabinet (100) and covers and is set on the threading opening (101), the second pipe (2) is connected with the first pipe (1) at an angle, and the second pipe (2) is arranged at an angle with vertical direction, the second pipe (2) is communicated with the inside of the first pipe (1), the drain (24) is arranged on the side of the second pipe (2) towards below; Photovoltaic panel assembly (400) is connected with the second pipe (2); Cable (500), the first end of the cable (500) is connected with the photovoltaic panel assembly (400), the second end of the cable (500) is sequentially passed through the inside of the second pipe (2), the inside of the first pipe (1) and the threading opening (101) and is connected with the battery (200).
2. The self-service apparatus powered by solar energy for use according to claim 1, characterized in that, The second pipe (2) includes top end and bottom end, the top end is open, the bottom end is connected with first pipe (1), and the bottom end is communicated with the inside of the first pipe (1); The supporting assembly (300) further includes first sealing member (6), and the first sealing member (6) is blocked in the top end, wherein the first sealing member (6) extrudes the cable (500) on the inner wall of the second pipe (2), or the cable (500) is arranged in the first sealing member (6) and is tightly attached with the first sealing member (6).
3. The self-service apparatus powered by solar energy for use according to claim 2, characterized in that, The second pipe (2) includes: Pipe body (21), the pipe wall of the pipe body (21) towards below is provided with opening (215); Cover plate (22) is used for closing the opening (215), and the drain (24) is arranged on the cover plate (22); Water baffle (23) is arranged in the pipe body (21), the lower end of the water baffle (23) is connected with the pipe wall of the pipe body (21) towards below, and the water baffle (23) extends upwards along the direction away from the opening (215), the water baffle (23) is used for guiding water flowing into the second pipe (2) to the drain (24), and the cable (500) bypasses the water baffle (23) in the pipe body (21).
4. The self-service apparatus powered by solar energy according to claim 3, characterized in that, The pipe body (21) includes first pipe wall (211) and second pipe wall (212) that are relatively parallel and are arranged at intervals, in vertical direction, the first pipe wall (211) is below the second pipe wall (212), the opening (215) is arranged on the first pipe wall (211), and the lower end of the water baffle (23) is connected with the first pipe wall (211).
5. The self-service apparatus powered by solar energy according to claim 3, wherein, The water baffle (23) comprises a channel plate (231) and a water guide plate (232) connected at an angle, the lower end of the channel plate (231) is connected with the lower edge of the opening (215), a water flow channel (25) communicating with the drain port (24) is formed between the channel plate (231) and the cover plate (22), the lower end of the water guide plate (232) is connected with the upper end of the channel plate (231), and the upper end of the water guide plate (232) is suspended in the pipe body (21).
6. The self-service apparatus powered by solar energy for use according to claim 5, characterized in that, The support assembly (300) further comprises a wire passing plate (7) located above the water baffle (23), the wire passing plate (7) is connected with the inner wall of the second pipe (2), and the wire passing plate (7), the water guide plate (232) and the cover plate (22) form a triangular accommodation space (8). The support assembly (300) further comprises a second sealing member (9) embedded in the accommodation space (8), the cable (500) sequentially passes through the wire passing plate (7) and the accommodation space (8), and the second sealing member (9) is used to compress the part of the cable (500) passing through the accommodation space (8) on the lower surface of the wire passing plate (7).
7. The self-service apparatus powered by solar energy for use according to claim 6, characterized in that, The wire passing plate (7) is connected with the inner wall of the pipe body (21), the wire passing plate (7) divides the pipe body (21) into an upper pipe body (216) and a lower pipe body (217), the wire passing plate (7) is provided with a wire passing hole (71) communicating the upper pipe body (216) and the lower pipe body (217), the wire passing hole (71) also communicates with the opening (215), and the cable (500) enters the lower pipe body (217) from the upper pipe body (216) through the wire passing hole (71). The support assembly (300) further comprises a third sealing member (10) embedded in the upper pipe body (216) and supported by the wire passing plate (7), and when the cover plate (22) blocks the opening (215), the cable (500) is pressed between the third sealing member (10) and the cover plate (22).
8. The self-service kiosk powered using solar energy of claim 1, wherein, The wire passing hole (101) is arranged on the top wall (102) of the cabinet (100). The support assembly (300) further comprises a bottom disc (3), a sealing gasket (4) and a fastener (5), the bottom disc (3) is fixedly connected with the end of the first pipe (1) away from the second pipe (2), the sealing gasket (4) is located between the bottom disc (3) and the cabinet (100), and the fastener (5) is sequentially threaded through the bottom disc (3) and the sealing gasket (4) and is screwed with the top wall (102) of the cabinet (100).
9. A self-service apparatus powered by solar energy according to any one of claims 1-8, characterized in that, The cabinet (100) comprises a storage box (103), the storage box (103) comprises a box body (104) having an opening, a box door (105) movably connected with the box body (104) and having an open position to open the opening and a closed position to close the opening, and an electric lock electrically connected with the battery (200) and used to lock the box door (105) in the closed position.
10. The self-service apparatus powered by solar energy for use according to claim 9, characterized in that, The self-service equipment powered by solar energy comprises a plurality of the batteries (200), and the cabinet (100) further comprises an energy storage box (106) in which the plurality of batteries (200) are placed, the plurality of batteries (200) are connected in parallel, and the plurality of batteries (200) are electrically connected with the photovoltaic panel assembly (400).