A waterproof protection device for vertically mounted smart terminals

CN122579515APending Publication Date: 2026-08-14STATE GRID ZHEJIANG ELECTRIC POWER CO LTD JIAXING POWER SUPPLY CO +1
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Patent Information

Application Number
CN202610915801.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-24
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]然而,电网线路中需要成段配套智能终端,在电网管理处需设置多个智能终端以检测电网的运行,因此智能终端需安装在室外以满足智能终端的安装环境,但智能终端安装在户外时,遇到暴雨、洪水等恶劣天气时,水容易经过智能终端的固定螺栓、接缝处进入智能终端内部,导致电路短路、元件损坏等问题,从而影响智能终端的正常使用,甚至可能引发电网事故

Benefits of technology

智能终端安装时,将安装架从透明罩底部的安装口移出,再将智能终端固定在安装架上,随后安装架携带智能终端进入透明罩内,在透明罩的作用下,对智能终端进行防护,而防止暴雨、洪水等恶劣天气下的水进入智能终端,避免电路短路和元件损坏,而提高了智能终端的稳定性;同时,在透明罩的作用下,便于观察和判定智能终端的运行状态;安装架沿竖直方向滑动,而带动智能终端从透明罩内移出进行检修,方便对智能终端进行维护;

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a waterproof protection device for vertically mounted smart terminals, relating to the field of circuit-based smart terminal protection technology. It includes a transparent cover, a mounting bracket, and an emergency protection component. The transparent cover comprises two transparent plates and an arc-shaped ring, the arc-shaped ring being located between the two transparent plates and sealed to them. The mounting bracket is disposed within the transparent cover, and the smart terminal is disposed within the mounting bracket. An installation opening is provided at the bottom of the arc-shaped ring, through which the mounting bracket enters the transparent cover. The mounting bracket is slidably disposed within the transparent cover, sliding vertically, and the mounting bracket carries the smart terminal out of the transparent cover through the installation opening for maintenance. The emergency protection component is disposed within the transparent cover. When the transparent cover is damaged by impact, causing a decrease in its waterproof performance, the emergency protection component provides secondary protection within the transparent cover to maintain its waterproof effect. This invention has the advantage of improving the operational stability of smart terminals.
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Description

Technical Field

[0001] This invention relates to the field of circuit intelligent terminal protection technology, and more specifically, to a waterproof protection device for a vertically mounted intelligent terminal. Background Technology

[0002] Intelligent terminals are an indispensable part of power grid infrastructure. They are key devices for remotely closing and closing circuits for emergency maintenance and troubleshooting, and their stability is crucial to the safe operation of the power grid.

[0003] However, power grid lines require a series of smart terminals, and multiple smart terminals need to be installed at the power grid management office to monitor the operation of the power grid. Therefore, smart terminals need to be installed outdoors to meet the installation environment requirements. However, when smart terminals are installed outdoors, water can easily enter the smart terminals through the fixing bolts and joints during severe weather such as rainstorms and floods, causing problems such as short circuits and component damage, which can affect the normal use of smart terminals and may even cause power grid accidents. Summary of the Invention

[0004] The purpose of this invention is to provide a waterproof protection device for vertically mounted smart terminals, which can improve the operational stability of smart terminals.

[0005] This invention is achieved through the following technical solution: A waterproof protective device for a vertically mounted smart terminal includes a transparent cover, a mounting bracket, and an emergency protection component; The transparent cover includes two transparent plates and an arc-shaped ring, the arc-shaped ring being located between the two transparent plates and being sealed to the transparent plates; The mounting frame is placed inside the transparent cover, the smart terminal is placed inside the mounting frame, and the bottom of the arc-shaped ring has a mounting opening through which the mounting frame enters the transparent cover; The mounting bracket is slidably disposed inside the transparent cover. The mounting bracket slides vertically and drives the smart terminal to be moved out of the transparent cover through the mounting port for maintenance. The emergency protection component is installed inside the transparent cover. When the transparent cover is damaged by an impact and its waterproof performance is reduced, the emergency protection component forms a secondary protection inside the transparent cover to maintain the waterproof effect of the transparent cover.

[0006] Optionally, the mounting frame includes a guide rod, a top plate, a bottom plate, and a connecting rod. The bottom of the guide rod is fixedly disposed inside the arc-shaped ring and located on one side of the mounting opening. The top plate is slidably disposed on the guide rod. The connecting rod is fixedly disposed at the bottom of the top plate, and the length direction of the connecting rod is perpendicular to the top plate. The bottom plate is fixedly disposed at the bottom of the connecting rod. The smart terminal is fixedly disposed on the bottom plate. The mounting frame also includes a first driving member, which is used to drive the top plate to slide along the guide rod and move the bottom plate out of the mounting opening.

[0007] Optionally, the area of ​​the top plate is larger than that of the bottom plate. A stepped groove is formed inside the arc-shaped ring. The stepped groove is formed along the side wall of the mounting opening towards the inside of the arc-shaped ring. After the top plate moves the bottom plate out of the transparent cover, the two sides of the top plate are supported in the stepped groove. The bottom end of the guide rod is fixedly set in the bottom wall of the stepped groove. When the top plate moves the bottom plate into the transparent cover, the bottom plate is located in the mounting opening and seals the mounting opening. Sealing platforms are provided on both sides of the bottom plate. A sealing groove is formed on the outer side of the arc-shaped ring, directly opposite the stepped groove, for the sealing platforms to engage.

[0008] Optionally, the top surface of the base plate is provided with a mounting groove, and the smart terminal is placed in the mounting groove. A first fixing member is provided on the base plate and located in the mounting groove. The first fixing member is used to fix the smart terminal in the mounting groove. The connecting rod is a telescopic structure. The mounting frame also includes an adjusting member. The adjusting member is used to adjust the length of the connecting rod to adjust the distance between the top plate and the base plate and to fix the connecting rod after the length is adjusted.

[0009] Optionally, the emergency protection assembly includes a side protection device, a ring protection device, and an impact detection device. The side protection device is used to form secondary protection on the inside of the transparent panel facing the operator. The ring protection device is used to form secondary protection on the inside of the arc-shaped ring. The impact detection device is used to detect the instantaneous force on the transparent panel and the arc-shaped ring, and then feed it back to the side protection device and the ring protection device to form secondary protection on the transparent panel and the arc-shaped ring.

[0010] Optionally, the annular protective device includes an annular guide rail, a first unwinding roller, a first pressing roller, a first transparent film, and a traveling component. Two annular guide rails are provided and fixedly mounted on the transparent plate. Mounting plates are provided on both annular guide rails. The first unwinding roller and the first pressing roller are parallel to each other and are disposed between the two mounting plates. The first transparent film is wound onto the first unwinding roller. An adhesive component is provided on the first transparent film. The adhesive component is used to fix the first transparent film onto the arc-shaped ring. The traveling component is used to drive the mounting plate to move along the annular guide rail, thereby driving the first unwinding roller to lay the first transparent film onto the arc-shaped ring. The first pressing roller is used to press the laid first transparent film onto the arc-shaped ring.

[0011] Optionally, the side protection device includes a second unwinding roller, a second pressing roller, a second transparent film, and a rotating plate. The rotating plate is mounted on a mounting plate near the outside of the transparent cover. The second unwinding roller and the second pressing roller are parallel to each other and are both rotatably mounted on the rotating plate. The second transparent film is wound onto the second unwinding roller. An adhesive is provided on the second unwinding roller. The adhesive is used to fix the second transparent film to the transparent plate. The traveling component drives the mounting plate to run along the annular guide rail, thereby driving the rotating plate to move inside the transparent cover and lay the second transparent film on the transparent plate.

[0012] Optionally, the rotating plate is hinged to the mounting plate, with the hinged end of the rotating plate facing away from the arc-shaped ring. The mounting plate is provided with a first rotating component for driving the rotating plate to rotate. The initial state of the rotating plate is parallel to the mounting plate, and when the second transparent film is pasted, the rotating plate is in a state perpendicular to the mounting plate.

[0013] Optionally, the second transparent film includes a fan-shaped film and a strip-shaped film. Two fan-shaped films are provided and located at both ends of the strip-shaped film. Both the fan-shaped film and the strip-shaped film are wound onto the second unwinding roller. The mounting plate includes a traveling plate and a disc. The traveling plate is slidably mounted on an annular guide rail. The first unwinding roller and the first pressing roller are both mounted on the traveling plate. The disc is rotatably mounted on the traveling plate. The disc is parallel to the traveling plate and its rotation axis is perpendicular to the traveling plate. The rotating plate is hinged to the disc. A swing motor is provided on the traveling plate. The disc is coaxially mounted on the swing motor. The rotation of the rotating plate drives the second unwinding roller and the second pressing roller to adhere to the transparent plate. After the traveling plate is driven to approach the guide rod by the traveling component, the swing motor drives the disc to rotate, which in turn drives the second unwinding roller and the second pressing roller to swing around the center of the disc, thereby mounting the fan-shaped film onto the transparent plate between the guide rod and the mounting opening.

[0014] Optionally, the cross-section of the annular guide rail is T-shaped, the traveling plate is slidably engaged on the annular guide rail, and the traveling component includes a rack on the annular guide rail, a gear on the traveling plate, and a traveling motor on the traveling plate. The gear meshes with the rack, the gear is mounted on the output shaft of the traveling motor, and the traveling motor drives the gear to rotate, thereby driving the traveling plate to run along the annular guide rail.

[0015] The technical solution of the present invention has at least the following advantages and beneficial effects: During installation, the mounting bracket is removed from the mounting opening at the bottom of the transparent cover, and the smart terminal is then fixed onto the mounting bracket. The mounting bracket then carries the smart terminal into the transparent cover, where it protects the terminal from water intrusion during severe weather such as rainstorms and floods, preventing short circuits and component damage, thus improving the terminal's stability. Simultaneously, the transparent cover facilitates observation and assessment of the smart terminal's operating status. The mounting bracket slides vertically, allowing the smart terminal to be removed from the transparent cover for inspection and maintenance. The emergency protection component can form a secondary protection inside the transparent cover when the waterproof performance is reduced due to impact and breakage, maintaining the waterproof effect of the transparent cover and ensuring the stability and security of the smart terminal in harsh environments; Compared to pre-installing the first and second transparent films inside the transparent cover, when the transparent cover is impacted and cracks occur, the first and second transparent films can be laid inside the transparent cover for emergency repair, reducing the possibility of external rainwater entering the transparent cover through cracks and maintaining the waterproof effect of the transparent cover. If the first and second transparent films are pre-installed inside the transparent cover, on the one hand, it will affect the light transmittance of the transparent cover, thus affecting the operator's observation of the smart terminal from the outside, and consequently affecting the judgment of the smart terminal's operational stability; on the other hand, when the transparent cover is impacted or damaged, causing cracks or damage, the first and second transparent films are likely to be damaged along with the transparent cover, thus failing to maintain the waterproof performance of the transparent cover. The emergency protection components are housed inside the transparent enclosure, which reduces the possibility of damage to the emergency protection components due to external factors, and facilitates the timely formation of secondary protection inside the transparent enclosure in the event of damage. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the installation of a vertically mounted smart terminal waterproof protection device according to the present invention; Figure 2 This is a schematic diagram of the removal of a smart terminal in a vertically mounted smart terminal waterproof protection device according to the present invention; Figure 3 This is a cross-sectional view of the transparent cover in a vertically mounted smart terminal waterproof protection device according to the present invention; Figure 4 This is a schematic diagram of the structure of the base plate in a vertically mounted smart terminal waterproof protection device of the present invention; Figure 5 This is a schematic diagram illustrating the use of the side protection device in a vertically mounted smart terminal waterproof protection device according to the present invention; Figure 6 This is a schematic diagram of the first and second unwinding rollers in a vertically mounted smart terminal waterproof protection device of the present invention. Figure 7 This is a cross-sectional view of the mounting plate in a vertically mounted smart terminal waterproof protection device according to the present invention. Figure 8 This is a schematic diagram of the disc structure in a vertically mounted smart terminal waterproof protection device of the present invention; Figure 9 This is a schematic diagram of the structure of the second transparent film in a vertically mounted smart terminal waterproof protection device of the present invention; Figure 10 for Figure 7 An enlarged schematic diagram of part A in the middle; Figure 11 for Figure 8 Enlarged diagram of part B.

[0017] Figure label: 1. Transparent cover; 111. Transparent plate; 112. Arc-shaped ring; 2. Mounting bracket; 21. Guide rod; 22. Top plate; 23. Bottom plate; 24. Connecting rod; 241. Sleeve rod; 242. Slide rod; 243. Threaded section; 25. First motor; 26. Connecting rope; 3. Emergency protection components; 31. Side protection device; 311. Second unwinding roller; 312. Second pressing roller; 313. Second transparent film; 3131. Fan-shaped film; 3132. Strip-shaped film; 314. Rotating plate; 32. Annular protective device; 321. Annular guide rail; 322. First unwinding roller; 323. First pressing roller; 324. First transparent film; 325. Traveling component; 3251. Rack; 3252. Gear; 3253. Traveling motor; 326. Mounting plate; 3261. Traveling plate; 3262. Disc; 33. Impact detection device; 331. Collision sensor; 332. Controller; 4. Smart terminals; 5. Mounting port; 6. Stepped groove; 7. Sealing platform; 8. Sealing groove; 9. Mounting groove; 10. Fixing plate; 11. Miniature push rod; 12. Annular groove; 13. Unwinding motor; 14. Rotating motor; 15. Swinging motor. Detailed Implementation

[0018] 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. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.

[0019] Therefore, the following detailed description of the embodiments of the invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the invention without inventive effort are within the scope of protection of the invention.

[0020] The following is for reference Figures 1-11 As shown in the illustration, and further explained with reference to specific embodiments, this embodiment provides a waterproof protection device for a vertically mounted smart terminal. Figure 1 and Figure 2 It includes a transparent cover 1, a mounting bracket 2, and an emergency protection component 3; Reference Figure 1 and Figure 2 The transparent cover 1 is used to fix it to a column, wall or frame. The transparent cover 1 includes two transparent plates 111 and an arc-shaped ring 112. The transparent plates 111 are circular and the arc-shaped ring 112 is located between the two transparent plates 111 and is sealed to the transparent plates 111. Reference Figure 1 and Figure 2 The mounting bracket 2 is set inside the transparent cover 1, the smart terminal 4 is set inside the mounting bracket 2, and the bottom of the arc ring 112 has a mounting port 5, through which the mounting bracket 2 enters the transparent cover 1; Reference Figure 1 and Figure 2 The mounting bracket 2 is slidably set inside the transparent cover 1. The mounting bracket 2 slides in the vertical direction, and the mounting bracket 2 drives the smart terminal 4 to be moved out of the transparent cover 1 through the mounting port 5 for maintenance. Reference Figure 1 and Figure 3 Emergency protection component 3 is installed inside the transparent cover 1. When the transparent cover 1 is damaged by impact and its waterproof performance is reduced, the emergency protection component 3 forms a secondary protection inside the transparent cover 1 to maintain the waterproof effect of the transparent cover 1.

[0021] When installing the smart terminal 4, the mounting bracket 2 is removed from the mounting port 5 at the bottom of the transparent cover 1, and then the smart terminal 4 is fixed on the mounting bracket 2. Subsequently, the mounting bracket 2 carries the smart terminal 4 into the transparent cover 1. Under the action of the transparent cover 1, the smart terminal 4 is protected, preventing water from entering the smart terminal 4 under severe weather conditions such as rainstorms and floods, avoiding short circuits and component damage, and thus improving the stability of the smart terminal 4.

[0022] Furthermore, both the transparent plate 111 and the arc ring 112 can be made of high-strength glass or transparent plastic, such as polycarbonate. These materials have good transparency and a certain strength, while plastic materials such as ABS plastic are lightweight and have a low cost.

[0023] Reference Figure 3 In this embodiment, the mounting frame 2 includes a guide rod 21, a top plate 22, a bottom plate 23, and a connecting rod 24. The bottom of the guide rod 21 is fixedly disposed inside the arc-shaped ring 112 and located on one side of the mounting opening 5. The guide rod 21 is generally made of metal, such as stainless steel, which has high strength and corrosion resistance. The top plate 22 is slidably disposed on the guide rod 21. Furthermore, there are two guide rods 21, which are respectively located on both sides of the mounting opening 5. The top plate 22 has a connecting hole for the guide rod 21 to pass through. The connecting rod 24 is fixedly disposed at the bottom of the top plate 22 and the length direction of the connecting rod 24 is perpendicular to the top plate 22. The bottom plate 23 is fixedly disposed at the bottom of the connecting rod 24. The smart terminal 4 is fixedly disposed on the bottom plate 23. The mounting frame 2 also includes a first driving member, which is used to drive the top plate 22 to slide along the guide rod 21 and drive the bottom plate 23 to move out of the mounting opening 5. Reference Figure 3 The first driving component includes a first motor 25 and a connecting rope 26. The first motor 25 is fixedly mounted on the top of the guide rod 21. The length direction of the output shaft of the first motor 25 is perpendicular to the length direction of the guide rod 21. The connecting rope 26 is wound on the output shaft of the first motor 25. The free end of the connecting rope 26 is fixedly connected to the top surface of the top plate 22. The connecting rope 26 is made of steel wire rope and is located on the back of the guide rod 21.

[0024] When installing the smart terminal 4 into the transparent cover 1, or when inspecting or replacing the smart terminal 4, the first motor 25 is started. The first motor 25 winds up or releases the connecting rope 26, causing the top plate 22 to slide along the guide rod 21, thereby driving the bottom plate 23 to move in the vertical direction. The operation is simple and convenient. In addition, the guide rod 21 limits the top plate 22, which facilitates the lifting and lowering of the smart terminal 4 inside the transparent cover 1 and the precise installation of the smart terminal 4 in the required position. Furthermore, the first motor 25 has a self-locking function, which makes it easy to fix the smart terminal 4 inside the transparent cover 1.

[0025] Reference Figure 3 and Figure 4 In this embodiment, to improve the stability of the smart terminal 4, the area of ​​the top plate 22 is larger than that of the bottom plate 23. A stepped groove 6 is provided in the arc ring 112. The stepped groove 6 is opened along the side wall of the mounting opening 5 towards the inside of the arc ring 112. After the top plate 22 drives the bottom plate 23 out of the transparent cover 1, the two sides of the top plate 22 are supported in the stepped groove 6. The bottom end of the guide rod 21 is fixedly set in the bottom wall of the stepped groove 6. When the smart terminal 4 is repaired or replaced, the top plate 22 drives the bottom plate 23 out of the mounting opening 5. When the top plate 22 moves to the lowest position, the two sides of the top plate 22 are engaged in the stepped groove 6, and the top plate 22 is fixed on the arc ring 112, thereby fixing the bottom plate 23 at the above position, which facilitates the repair or replacement of the smart terminal 4. Reference Figure 3 and Figure 4 Furthermore, when the top plate 22 drives the bottom plate 23 into the transparent cover 1, the bottom plate 23 is located inside the mounting opening 5 and seals the mounting opening 5. Sealing platforms 7 are provided on both sides of the bottom plate 23, and a sealing groove 8 is provided on the outer side of the arc ring 112 and directly opposite the stepped groove 6 for the sealing platform 7 to engage. After the top plate 22 drives the smart terminal 4 into the transparent cover 1, the bottom plate 23 is engaged in the mounting opening 5 by the sealing platform 7 to close the mounting opening 5. In addition, a rubber sealing ring can be provided on the contact surface of the sealing platform 7 and the sealing groove 8 to improve the sealing effect of the bottom plate 23 and the arc ring 112, thereby improving the sealing effect of the transparent cover 1 and thus improving the protection effect of the smart terminal 4.

[0026] Reference Figure 3 and Figure 4 In this embodiment, the top surface of the base plate 23 is provided with a mounting groove 9, which is a rectangular groove. The smart terminal 4 is disposed in the mounting groove 9. A first fixing member is provided on the base plate 23 and located in the mounting groove 9. The first fixing member is used to fix the smart terminal 4 in the mounting groove 9. The first fixing member includes a fixing plate 10 and a micro push rod 11. Four fixing plates 10 are provided and are respectively facing the inner wall of the mounting groove 9. The micro push rod 11 is embedded in the base plate 23. The fixing plate 10 is fixedly disposed on the output shaft of the micro push rod 11. When the smart terminal 4 is installed into the mounting groove 9, the micro push rod 11 is activated to push the fixing plate 10 to move and abut against the smart terminal 4, thereby fixing the smart terminal 4 on the base plate 23. This also facilitates fixing smart terminals 4 of different specifications on the base plate 23.

[0027] Reference Figure 5 In this embodiment, the connecting rod 24 is a telescopic structure. The connecting rod 24 includes a sleeve rod 241 and a sliding rod 242 slidably sleeved within the sleeve rod 241. The bottom end of the sleeve rod 241 is fixedly mounted on the base plate 23, and the top end of the sliding rod 242 is mounted on the top plate 22. The mounting bracket 2 also includes an adjusting component, which is used to adjust the length of the connecting rod 24 to adjust the distance between the top plate 22 and the base plate 23 and to fix the connecting rod 24 after the length adjustment. The adjusting component includes a threaded section 243 disposed around the sliding rod 242 and a threaded groove formed on the inner wall of the sleeve rod 241. Furthermore, the top end of the sliding rod 242 is rotatably connected to the top plate 22. The overall length of the connecting rod 24 is adjusted to adapt to different specifications of smart terminals 4. In addition, when the top plate 22 is engaged in the stepped groove 6, the height of the base plate 23 is further reduced by adjusting the length of the connecting rod 24, thereby facilitating the maintenance and replacement of the smart terminal 4.

[0028] Reference Figure 3In this embodiment, the emergency protection component 3 includes a side protection device 31, a ring protection device 32, and an impact detection device 33. The side protection device 31 forms secondary protection on the inner side of the transparent panel 111 facing the operator. The ring protection device 32 forms secondary protection on the inner side of the arc-shaped ring 112. The impact detection device 33 detects the instantaneous force on the transparent panel 111 and the arc-shaped ring 112, and then feeds the feedback to the side protection device 31 and the ring protection device 32 to form secondary protection on the transparent panel 111 and the arc-shaped ring 112. When the transparent cover 1 is impacted by an external force, the impact detection device 33 detects the instantaneous force on the transparent panel 111 and the arc-shaped ring 112, and transmits the feedback information to the side protection device 31 and the ring protection device 32, thus forming secondary protection on the inner side of the transparent panel 111 and the arc-shaped ring 112.

[0029] Reference Figure 4 , Figure 5 and Figure 6 In this embodiment of the application, the annular protective device 32 includes an annular guide rail 321, a first unwinding roller 322, a first pressing roller 323, a first transparent film 324, and a traveling member 325. Two annular guide rails 321 are provided and fixedly mounted on the transparent plate 111. Further, an annular groove 12 is formed on the inner side of the transparent plate 111, and the annular guide rails 321 are disposed within the annular groove 12. Mounting plates 326 are provided on both annular guide rails 321. The first unwinding roller 322 and the first pressing roller 323 are parallel to each other and are disposed between the two mounting plates 326, spanning the arc-shaped ring 112. All pressure rollers 323 are rotatably mounted on the mounting plate 326. The first transparent film 324 is wound onto the first unwinding roller 322. An adhesive is provided on the first transparent film 324 to fix the first transparent film 324 to the arc ring 112. The adhesive includes transparent glue pre-coated on both sides of the transparent film or double-sided adhesive pasted on the transparent film. The traveling member 325 is used to drive the mounting plate 326 to move along the annular guide rail 321, thereby driving the first unwinding roller 322 to lay the first transparent film 324 onto the arc ring 112. The first pressing roller 323 is used to press the laid first transparent film 324 onto the arc ring 112.

[0030] When the arc ring 112 is damaged, the traveling component 325 drives the mounting plate 326 to run along the annular guide rail 321. When the mounting plate 326 starts running, it drives the first unwinding roller 322 to rotate. When the free end of the first transparent film 324 is passively rotated to fit the arc ring 112, the free end of the first transparent film 324 is fixed on the arc ring 112 under the action of the adhesive component. The first pressing roller 323 at the rear presses the first transparent film 324 firmly onto the arc ring 112, thereby laying the first transparent film 324 on the inner side of the arc ring 112. The operation is simple and convenient.

[0031] Combination Figure 7 and Figure 10 Furthermore, the mounting plate 326 is embedded with an unwinding motor 13, and the first unwinding roller 322 is coaxially mounted on the output shaft of the unwinding motor 13. The unwinding motor 13 drives the first unwinding roller 322 to rotate, so that the free end of the first transparent film 324 is adhered to the inner side of the arc ring 112, which facilitates the formation of protection on the inner side of the arc ring 112.

[0032] Reference Figure 4 , Figure 5 and Figure 6 In this embodiment, the side protection device 31 includes a second unwinding roller 311, a second pressing roller 312, a second transparent film 313, and a rotating plate 314. The rotating plate 314 is mounted on a mounting plate 326 near the outer side of the transparent cover 1. The second unwinding roller 311 and the second pressing roller 312 are parallel to each other and rotatably mounted on the rotating plate 314. The second transparent film 313 is wound onto the second unwinding roller 311. An adhesive is provided on the second unwinding roller 311 to fix the second transparent film 313 to the transparent plate 111. The adhesive includes transparent adhesive pre-coated on both sides of the transparent film or double-sided adhesive pasted on the transparent film. The traveling member 325 drives the mounting plate 311. The mounting plate 326 runs along the annular guide rail 321, which drives the rotating plate 314 to move inside the transparent cover 1 and lay the second transparent film 313 on the transparent plate 111. When the transparent plate 111 is damaged, the traveling member 325 drives the mounting plate 326 to run along the annular guide rail 321. When the mounting plate 326 starts to run, it drives the first unwinding roller 322 to rotate and lay the first transparent film 324 on the inner side of the arc ring 112. At the same time, the mounting plate 326 drives the rotating plate 314 to move. The rotating plate 314 drives the second unwinding roller 311 and the second pressing roller 312 to rotate and unwind and press the second transparent film 313, thereby sticking the second transparent film 313 on the transparent plate 111.

[0033] Reference Figure 4 and Figure 6To reduce the obstruction of the second unwinding roller 311 and the second pressing roller 312 to the smart terminal 4, a rotating plate 314 is hinged to the mounting plate 326. The hinged end of the rotating plate 314 is away from the arc-shaped ring 112. A first rotating component for driving the rotating plate 314 to rotate is provided on the mounting plate 326. The first rotating component includes a rotating motor 14 provided on the mounting plate 326. The rotating plate 314 is located on the output shaft of the rotating motor 14. The initial state of the rotating plate 314 is parallel to the mounting plate 326. When the second transparent film 313 is pasted, the rotating plate 314 is in a state perpendicular to the mounting plate 326. The transparent cover 1 is in normal use. During use, the rotating motor 14 drives the rotating plate 314 to rotate, causing the second unwinding roller 311 and the second pressing roller 312 to rotate to a state parallel to the first unwinding roller 322, thereby reducing the obstruction of the second unwinding roller 311 and the second pressing roller 312 to the smart terminal 4; when the transparent cover 1 is damaged, the rotating motor 14 drives the rotating plate 314 to rotate to a state perpendicular to the mounting plate 326, thereby causing the second unwinding roller 311 and the second pressing roller to be in a state perpendicular to the first unwinding roller 322, and causing the second transparent film 313 to adhere to the transparent plate 111, thereby facilitating the adhesion of the second transparent film 313 to the transparent plate 111.

[0034] Reference Figure 7 , Figure 8 and Figure 9 In this embodiment, due to the obstruction of the guide rod 21, the mounting plate 326 cannot move 360° inside the transparent cover 1, which causes the second transparent film 313 to be unable to be pasted in the fan-shaped area between the two guide rods 21 and the base plate 23. Therefore, the second transparent film 313 includes a fan-shaped film 3131 and a strip film 3132. Two fan-shaped films 3131 are provided and are located at both ends of the strip film 3132. Both the fan-shaped film 3131 and the strip film 3132 are wound on the second unwinding roller 311. Reference Figure 7 , Figure 8 and Figure 9Furthermore, the mounting plate 326 includes a traveling plate 3261 and a disc 3262. The traveling plate 3261 is slidably mounted on the annular guide rail 321. The first unwinding roller 322 and the first pressing roller 323 are both mounted on the traveling plate 3261. The disc 3262 is rotatably mounted on the traveling plate 3261. The disc 3262 is parallel to the traveling plate 3261, and the axis of rotation of the disc 3262 is perpendicular to the traveling plate 3261. A rotating plate 314 is hinged to the disc 3262. The traveling plate 3261 is equipped with a swing motor. Machine 15, with disc 3262 coaxially mounted on swing motor 15. Rotating plate 314 drives second unwinding roller 311 and second pressing roller 312 to adhere to transparent plate 111. After traveling plate 3261 approaches guide rod 21 via traveling component 325, swing motor 15 drives disc 3262 to rotate, which in turn drives second unwinding roller 311 and second pressing roller 312 to swing around the center of disc 3262, thus attaching fan-shaped film 3131 to transparent plate 111 between guide rod 21 and mounting port 5.

[0035] After the traveling plate 3261 carries the first unwinding roller 322 and the second unwinding roller 311 to the guide rod 21 on one side, the rotating plate 314 drives the second unwinding roller 311 and the second pressing roller 312 to abut against the outer transparent plate 111. Then, the swing motor 15 is started, and the swing motor 15 drives the disc 3262 to rotate. The rotation of the disc 3262 drives the rotating plate 314 to swing. The rotating plate 314 drives the second unwinding roller 311 and the second pressing roller 312 to swing. At this time, the second unwinding roller 311 and the second pressing roller 312 rotate around the output shaft of the swing motor 15, thereby pasting the fan-shaped film 3131 onto the transparent plate 111, thereby achieving the maximum area of ​​the second transparent film 313 and improving the waterproof performance of the transparent plate 111.

[0036] Reference Figure 7 and Figure 10 In this embodiment, the cross-section of the annular guide rail 321 is T-shaped. The traveling plate 3261 is slidably engaged on the annular guide rail 321. The traveling component 325 includes a rack 3251 mounted on the annular guide rail 321, a gear 3252 mounted on the traveling plate 3261, and a traveling motor 3253 mounted on the traveling plate 3261. The gear 3252 meshes with the rack 3251. The gear 3252 is mounted on the output shaft of the traveling motor 3253. The traveling motor 3253 drives the gear 3252 to rotate, thereby driving the traveling plate 3261 to move along the annular guide rail 321. When the first transparent film 324 and the second transparent film 313 are laid, the traveling motor 3253 is started. The traveling motor 3253 drives the gear 3252 to rotate. The rotation of the gear 3252 drives the traveling plate 3261 to move along the annular guide rail 321, thereby driving the first unwinding roller 322 and the second unwinding roller 311 to run inside the transparent cover 1. The operation is simple and convenient.

[0037] In this embodiment, the impact detection device 33 includes a collision sensor 331 and a controller 332. Multiple collision sensors 331 are provided and are respectively located on the arc ring 112 and the transparent plate 111. The controller 332 is provided on the transparent plate 111 on the rear side. The collision sensor 331 is communicatively connected to the controller 332. The controller 332 is communicatively connected to the walking motor 3253, the unwinding motor 13, the rotating motor 14, and the swing motor 15.

[0038] Reference Figure 1 , Figure 2 and Figure 3 When the transparent cover 1 is impacted, the collision sensor 331 receives the collision signal and transmits it to the controller 332. The controller 332 receives the collision signal and converts it into a control signal, which is then sent sequentially to the rotary motor 14, the travel motor 3253, the swing motor 15, and the unwinding motor 13. After receiving the signal, the rotary motor 14 drives the rotating plate 314 to rotate, thereby causing the second unwinding roller 311 and the second pressing roller 312 to rotate and fit against the outer transparent plate 111. Subsequently, the travel motor 3253 receives the signal and drives the travel plate 3261 from the top of the transparent cover 1 to close to the guide rod 21. The swing motor 15 receives the signal and drives the disc 3262 to rotate, thereby causing the second unwinding roller 311 and the second pressing roller 312 to swing close to the mounting opening 5. The winding motor 13 receives a signal, and the unwinding motor 13 drives the second unwinding roller 311 to rotate, causing the second unwinding roller 311 to drive the second transparent film 313 to rotate. When the free end of the transparent film is bonded to the transparent plate 111, the output shaft of the oscillating motor 15 rotates in the opposite direction to bond the fan-shaped film 3131 to the transparent plate 111. After the oscillating motor 15 has finished laying the fan-shaped film 3131, the walking motor 3253 starts to drive the walking plate 3261 to run, laying the first transparent film 324 and the long strip film 3132 on the transparent plate 111. When the walking plate 3261 runs to the guide rod 21 on the other side, the oscillating motor 15 drives the second unwinding roller 311 to rotate again to lay the fan-shaped film 3131 at the end of the long strip film 3132 on the transparent cover 1, thus completing the secondary protection of the transparent plate 111 and the arc ring 112. The operation is simple and convenient.

[0039] In other embodiments, the collision sensor 331 may be replaced by a pressure sensor or strain gauge and communicate with a corresponding controller 332.

[0040] The implementation principle of the vertically mounted smart terminal waterproof protection device of this application is as follows: When installing the smart terminal 4, the mounting bracket 2 is removed from the mounting port 5 at the bottom of the transparent cover 1, and then the smart terminal 4 is fixed on the mounting bracket 2. Subsequently, the mounting bracket 2 carries the smart terminal 4 into the transparent cover 1. Under the action of the transparent cover 1, the smart terminal 4 is protected, preventing water from entering the smart terminal 4 under severe weather conditions such as rainstorms and floods, avoiding short circuits and component damage, and thus improving the stability of the smart terminal 4. When the transparent cover 1 receives an impact, the collision sensor 331 receives the collision signal and transmits it to the controller 332. The controller 332 receives the collision signal and converts it into a control signal, which is then sent sequentially to the rotary motor 14, the travel motor 3253, the swing motor 15, and the unwinding motor 13. After receiving the signal, the rotary motor 14 drives the rotating plate 314 to rotate, thereby causing the second unwinding roller 311 and the second pressing roller 312 to rotate and fit against the outer transparent plate 111. Subsequently, the travel motor 3253 receives the signal and drives the travel plate 3261 from the top of the transparent cover 1 to close to the guide rod 21. The swing motor 15 receives the signal and drives the disc 3262 to rotate, causing the second unwinding roller 311 and the second pressing roller 312 to swing towards the mounting opening 5. The winding motor 13 receives a signal, and the unwinding motor 13 drives the second unwinding roller 311 to rotate, causing the second unwinding roller 311 to drive the second transparent film 313 to rotate. When the free end of the transparent film is bonded to the transparent plate 111, the output shaft of the oscillating motor 15 rotates in the opposite direction to bond the fan-shaped film 3131 to the transparent plate 111. After the oscillating motor 15 has finished laying the fan-shaped film 3131, the walking motor 3253 starts to drive the walking plate 3261 to run, laying the first transparent film 324 and the long strip film 3132 on the transparent plate 111. When the walking plate 3261 runs to the guide rod 21 on the other side, the oscillating motor 15 drives the second unwinding roller 311 to rotate again to lay the fan-shaped film 3131 at the end of the long strip film 3132 on the transparent cover 1, thus completing the secondary protection of the transparent plate 111 and the arc ring 112. The operation is simple and convenient.

Claims

1. A waterproof protection device for a vertically mounted smart terminal, characterized in that, Includes a transparent cover (1), a mounting bracket (2), and an emergency protection component (3); The transparent cover (1) includes two transparent plates (111) and an arc-shaped ring (112), the arc-shaped ring (112) being located between the two transparent plates (111) and sealed to the transparent plates (111); The mounting bracket (2) is set inside the transparent cover (1), the smart terminal (4) is set inside the mounting bracket (2), and the bottom of the arc ring (112) is provided with a mounting port (5). The mounting bracket (2) enters the transparent cover (1) through the mounting port (5). The mounting bracket (2) is slidably disposed inside the transparent cover (1). The mounting bracket (2) slides vertically and drives the smart terminal (4) to move out of the transparent cover (1) through the mounting port (5) for maintenance. The emergency protection component (3) is installed inside the transparent cover (1). The emergency protection component (3) is used to form secondary protection inside the transparent cover (1) to maintain the waterproof effect of the transparent cover (1) when the transparent cover (1) is damaged by impact and the waterproof performance of the transparent cover (1) decreases.

2. The waterproof protection device for a vertically mounted smart terminal according to claim 1, characterized in that, The mounting frame (2) includes a guide rod (21), a top plate (22), a bottom plate (23), and a connecting rod (24). The bottom of the guide rod (21) is fixedly disposed inside the arc ring (112) and located on one side of the mounting opening (5). The top plate (22) is slidably disposed on the guide rod (21). The connecting rod (24) is fixedly disposed at the bottom of the top plate (22) and the length direction of the connecting rod (24) is perpendicular to the top plate (22). The bottom plate (23) is fixedly disposed at the bottom of the connecting rod (24). The smart terminal (4) is fixedly disposed on the bottom plate (23). The mounting frame (2) also includes a first driving member, which is used to drive the top plate (22) to slide along the guide rod (21) and drive the bottom plate (23) to move out of the mounting opening (5).

3. The waterproof protection device for a vertically mounted smart terminal according to claim 2, characterized in that, The area of ​​the top plate (22) is larger than that of the bottom plate (23). A stepped groove (6) is provided in the arc ring (112). The stepped groove (6) is opened along the side wall of the mounting opening (5) towards the inside of the arc ring (112). After the top plate (22) drives the bottom plate (23) out of the transparent cover (1), the two sides of the top plate (22) are supported in the stepped groove (6). The bottom end of the guide rod (21) is fixedly set in the bottom wall of the stepped groove (6). When the top plate (22) drives the bottom plate (23) into the transparent cover (1), the bottom plate (23) is located in the mounting opening (5) and seals the mounting opening (5). Sealing platforms (7) are provided on both sides of the bottom plate (23). A sealing groove (8) for the sealing platform (7) to be engaged is provided on the outer side of the arc ring (112) and directly opposite the stepped groove (6).

4. A waterproof protection device for a vertically mounted smart terminal according to claim 2, characterized in that, The top surface of the base plate (23) is provided with a mounting groove (9), and the smart terminal (4) is set in the mounting groove (9). A first fixing member is provided on the base plate (23) and located in the mounting groove (9). The first fixing member is used to fix the smart terminal (4) in the mounting groove (9). The connecting rod (24) is a telescopic structure. The mounting frame (2) also includes an adjusting member. The adjusting member is used to adjust the length of the connecting rod (24) to adjust the distance between the top plate (22) and the base plate (23) and to fix the connecting rod (24) after the length is adjusted.

5. A waterproof protection device for a vertically mounted smart terminal according to claim 2, characterized in that, The emergency protection component (3) includes a side protection device (31), a ring protection device (32), and an impact detection device (33). The side protection device (31) is used to form secondary protection on the inside of the transparent plate (111) facing the operator. The ring protection device (32) is used to form secondary protection on the inside of the arc ring (112). The impact detection device (33) is used to detect the instantaneous force on the transparent plate (111) and the arc ring (112), and then feed it back to the side protection device (31) and the ring protection device (32) to form secondary protection on the transparent plate (111) and the arc ring (112).

6. A waterproof protection device for a vertically mounted smart terminal according to claim 5, characterized in that, The annular protective device (32) includes an annular guide rail (321), a first unwinding roller (322), a first pressing roller (323), a first transparent film (324), and a traveling member (325). Two annular guide rails (321) are provided and fixedly mounted on a transparent plate (111). Each of the two annular guide rails (321) is provided with a mounting plate (326). The first unwinding roller (322) and the first pressing roller (323) are parallel to each other and positioned between the two mounting plates (326). The first transparent film (324)... The first transparent film (324) is wound onto the first unwinding roller (322). An adhesive is provided on the first transparent film (324) to fix the first transparent film (324) onto the arc ring (112). The traveling member (325) is used to drive the mounting plate (326) to move along the annular guide rail (321) and drive the first unwinding roller (322) to lay the first transparent film (324) onto the arc ring (112). The first pressing roller (323) is used to press the laid first transparent film (324) onto the arc ring (112).

7. A waterproof protection device for a vertically mounted smart terminal according to claim 6, characterized in that, The side protection device (31) includes a second unwinding roller (311), a second pressing roller (312), a second transparent film (313), and a rotating plate (314). The rotating plate (314) is mounted on a mounting plate (326) near the outside of the transparent cover (1). The second unwinding roller (311) and the second pressing roller (312) are parallel to each other and are both rotatably mounted on the rotating plate (314). The second transparent film (313) is wound onto the second unwinding roller (311). An adhesive is provided on the second unwinding roller (311). The adhesive is used to fix the second transparent film (313) onto the transparent plate (111). The traveling member (325) drives the mounting plate (326) to run along the annular guide rail (321), thereby driving the rotating plate (314) to move inside the transparent cover (1) and lay the second transparent film (313) onto the transparent plate (111).

8. A waterproof protection device for a vertically mounted smart terminal according to claim 7, characterized in that, The rotating plate (314) is hinged on the mounting plate (326). The hinged end of the rotating plate (314) is away from the arc ring (112). The mounting plate (326) is provided with a first rotating member for driving the rotating plate (314) to rotate. The initial state of the rotating plate (314) is parallel to the mounting plate (326). When the second transparent film (313) is pasted, the rotating plate (314) is in a state perpendicular to the mounting plate (326).

9. A waterproof protection device for a vertically mounted smart terminal according to claim 8, characterized in that, The second transparent film (313) includes a fan-shaped film (3131) and a strip-shaped film (3132). Two fan-shaped films (3131) are provided and are located at both ends of the strip-shaped film (3132). Both the fan-shaped film (3131) and the strip-shaped film (3132) are wound onto the second unwinding roller (311). The mounting plate (326) includes a traveling plate (3261) and a disc (3262). The traveling plate (3261) is slidably mounted on the annular guide rail (321). The first unwinding roller (322) and the first pressing roller (323) are both mounted on the traveling plate (3261). The disc (3262) is rotatably mounted on the traveling plate (3261). The disc (3262) is parallel to the traveling plate (3261), and the axis of rotation of the disc (3262) is... Perpendicular to the walking plate (3261), the rotating plate (314) is hinged on the disc (3262). The walking plate (3261) is equipped with a swing motor (15). The disc (3262) is coaxially mounted on the swing motor (15). The rotating plate (314) rotates to drive the second unwinding roller (311) and the second pressing roller (312) to adhere to the transparent plate (111). After the walking plate (3261) is driven to approach the guide rod (21) by the walking component (325), the swing motor (15) drives the disc (3262) to rotate, thereby driving the second unwinding roller (311) and the second pressing roller (312) to swing around the center of the disc (3262) to install the fan-shaped film (3131) on the transparent plate (111) between the guide rod (21) and the mounting port (5).

10. A waterproof protection device for a vertically mounted smart terminal according to claim 9, characterized in that, The cross-section of the annular guide rail (321) is T-shaped. The walking plate (3261) is slidably engaged on the annular guide rail (321). The walking component (325) includes a rack (3251) on the annular guide rail (321), a gear (3252) on the walking plate (3261), and a walking motor (3253) on the walking plate (3261). The gear (3252) meshes with the rack (3251). The gear (3252) is mounted on the output shaft of the walking motor (3253). The walking motor (3253) drives the gear (3252) to rotate, thereby driving the walking plate (3261) to run along the annular guide rail (321).