Multi-screen display electric power big data processing platform
By introducing components such as operating table, support box, rotating shaft into the power big data processing platform, and using motor-driven threaded rod and worm mechanism to achieve height and angle adjustment of the display screen, the flexibility of the power big data processing platform is solved, adapted to the operation of staff of different heights, and improved the convenience and flexibility of the platform.
Patent Information
- Application Number
- CN202422606445.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-28
AI Technical Summary
The existing power big data processing platform is not convenient for convenient height control and adjustment to adapt to the operation of staff of different heights, and is not convenient for circumferential rotation display and the rotation of a single display screen, which affects the flexibility of the power big data processing platform.
The design of components including operating table, support box, rotating shaft, electric wheel, walking wheel, first motor, threaded rod, worm and worm gear is adopted. The height and angle adjustment of the display screen is achieved through the motor driving the threaded rod and worm mechanism, and combined with the fixation of bolts and mounting frames, the flexible movement and rotation of multiple screens are achieved.
It realizes convenient height control adjustment and circumferential rotation display, adapts to the operation of staff of different heights, and improves the flexibility and convenience of the power big data processing platform.
Smart Images

Figure CN223178536U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of power big data processing platforms, and particularly relates to a power big data processing platform with multi-screen display. Background Technique
[0002] The power system is one of the infrastructure of modern society, which provides basic energy support for various economic activities and life. With the development of society and the growth of economy, the power demand is also increasing continuously. Big data technology plays an important role in the power system. The big data analysis platform can help power companies manage and control renewable energy more effectively and improve its utilization rate. The big data processing platform in the power system is a system based on big data technology, which is used to process and analyze a large amount of data in the power system. The big data processing platform in the power system can be used for real-time monitoring and prediction of the state of the power system, optimizing the operation of the power system, and improving the safety and reliability of the power system.
[0003] As disclosed in a power big data processing platform with multi-screen display with the authorization announcement number of CN220631425U, it includes a fixing plate, a connecting rod and a connecting plate. The connecting rod penetrates through the inside of the fixing plate, and the top end of the connecting rod is welded with the connecting plate. A lifting mechanism is arranged between the fixing plate and the connecting plate, and a supporting mechanism is arranged at the bottom end of the connecting plate;
[0004] Although it realizes that by rotating the rotating block and the threaded rod, the connecting block drives the second support rod to move, and the two groups of second support rods push the shaft seat and the connecting plate to rise, and the connecting plate drives the connecting rod to slide and rise on the inner wall of the support column, so that the height of the power big data processing platform is convenient to adjust, and the height of the power data processing platform can be freely adjusted according to the height and sitting posture of the user himself, which is convenient for the user to watch the display content of the multi-screen display, and at the same time prevents the situation of the back cone bending caused by the long-term use of the user. However, it does not solve the problem that the existing power big data processing platform is not convenient for convenient height control and adjustment to adapt to the operation of staff with different heights, not convenient for circumferential rotation display to facilitate the operation and processing of staff in different positions, not convenient for rotating a single display screen, which greatly affects the rotation flexibility of the power big data processing platform. Content of the Utility Model
[0005] The purpose of the utility model is to provide a power big data processing platform with multi-screen display, so as to solve the problems put forward in the above background technique that the power big data processing platform is not convenient for convenient height control and adjustment to adapt to the operation of staff with different heights, not convenient for circumferential rotation display to facilitate the operation and processing of staff in different positions, not convenient for rotating a single display screen, and affecting the rotation flexibility of the power big data processing platform.
[0006] To achieve the above object, the present utility model provides the following technical solutions: A power big data processing platform with multi-screen display, including an operating table and a support box. The support box is installed at the top end of the operating table. A rotating shaft is movably installed inside the support box, and the rotating shaft extends to the outside of the support box. Electric wheels are symmetrically arranged at the bottom end of the operating table, and walking wheels are symmetrically arranged at the bottom end of the operating table on one side of the electric wheels. Connection boxes are installed at the bottom end of the operating table above the electric wheels and the walking wheels. Hollow arms are installed at the bottom end of each connection box. First motors are installed inside each connection box. Threaded rods are movably installed on the outer wall of each hollow arm, and the output ends of the first motors are connected to the threaded rods. Chutes are arranged on the outer wall of each hollow arm on one side of the threaded rod. Threaded blocks are sleeved on the surface of the threaded rod on one side of the chute. The threaded blocks extend into the hollow arm and are threadedly connected to the threaded rods, and the threaded blocks are slidably connected to the chutes. Moving rods are installed at the top ends of the electric wheels and the walking wheels, and the moving rods extend into the hollow arm and are connected to the threaded blocks.
[0007] Preferably, a connection frame is sleeved on the surface of the rotating shaft. A first mounting frame is installed on the outer wall of the connection frame. First bolts are arranged on the outer wall of the connection frame on one side of the first mounting frame, and the first bolts extend through the connection frame to the surface of the rotating shaft.
[0008] Preferably, movable frames are arranged at both ends of the connection frame. First shaft sleeves are installed at one end of each movable frame close to the connection frame. Connection shafts are installed on the outer wall of the connection frame on one side of the first shaft sleeve, and the connection shafts are movably connected to the first shaft sleeves.
[0009] Preferably, support disks are installed at the bottom ends of the connection shafts. Second bolts are arranged at the top ends of the movable frames on one side of the connection shafts, and the second bolts extend through the movable frames to the inside of the support disks.
[0010] Preferably, support shafts are installed at one end of each movable frame away from the first shaft sleeve. Second mounting frames are arranged outside each support shaft. Second shaft sleeves are installed at one end of each second mounting frame close to the support shaft, and the second shaft sleeves are movably connected to the support shafts.
[0011] Preferably, third bolts are arranged on the outer wall of each second shaft sleeve, and the third bolts extend through the second shaft sleeves to the surface of the support shafts.
[0012] Preferably, a second motor is installed inside the support box on one side of the rotating shaft. A worm is installed at the output end of the second motor. A worm gear is installed on the surface of the rotating shaft on one side of the worm, and the worm is meshed with the worm gear.
[0013] Preferably, a control panel is installed at the top of the operating table on one side of the support box, and the output end of the control panel is electrically connected to the input ends of the first motor, the electric wheel, and the second motor.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: This power big data processing platform not only realizes convenient height control and adjustment, facilitates operation by staff of different heights, facilitates circumferential rotation display, facilitates operation and processing by staff at different positions, but also facilitates rotation of a single display screen, improving the flexibility of rotation of the power big data processing platform.
[0015] (1) By installing multiple groups of display screens on the outer walls of the first mounting frame and the second mounting frame, it is convenient for the multiple groups of display screens to display power-related data, facilitating staff to process and analyze a large amount of power data. The first motor drives the threaded rod to rotate, the threaded block moves on the surface of the threaded rod, the threaded block drives the movable rod to move inside the hollow arm, the movable rod drives the electric wheel and the walking wheel to adjust the height, so as to adjust the overall height of the operating table, facilitating operation by staff of different heights. The electric wheel and the walking wheel drive the entire operating table to move forward, and the operating table drives the multiple groups of display screens to move, facilitating movement to different positions for display. The second motor drives the worm to rotate, the worm drives the worm wheel to rotate, the worm wheel drives the rotating shaft to rotate, the rotating shaft drives the connecting frame and the movable frame to rotate, and the connecting frame and the movable frame drive the multiple groups of display screens to perform circumferential rotation display, realizing convenient height control and adjustment of the power big data processing platform, facilitating operation by staff of different heights, facilitating circumferential rotation display, facilitating operation and processing by staff at different positions, and improving the convenience of adjustment of the power big data processing platform.
[0016] (2) By operating the connecting frame to slide on the surface of the rotating shaft, the connecting frame drives the movable frame to adjust the height, and the connecting frame and the movable frame drive the multiple groups of display screens to adjust through the first mounting frame and the second mounting frame. After the adjustment is completed, the connecting frame is fixed on the surface of the rotating shaft by the first bolt. The first shaft sleeve drives the movable frame to rotate, and the movable frame drives the display screen to rotate through the second mounting frame, so that the multiple groups of display screens perform centralized display. The second bolt extends through the movable frame to the surface of the support disk to fix the movable frame and the connecting frame. The second shaft sleeve drives the second mounting frame to rotate, and the second mounting frame drives the display screen to rotate, facilitating rotational multi-position display. The third bolt extends through the second shaft sleeve to the surface of the support shaft to fix the support shaft to prevent the display screen from rotating, realizing convenient rotational operation of the display screen on the power big data processing platform, facilitating rotation of a single display screen, facilitating display in different directions, and improving the flexibility of rotation of the power big data processing platform. Description of the Drawings
[0017] Figure 1 is a three-dimensional structure schematic diagram of the present utility model;
[0018] Figure 2 is a three-dimensional structure schematic diagram of the rotating shaft of the present utility model;
[0019] Figure 3 is a front view structure schematic diagram of the present utility model;
[0020] Figure 4 is a rear view structure schematic diagram of the present utility model;
[0021] Figure 5 is an enlarged rear view sectional structure schematic diagram of the support box of the present utility model;
[0022] Figure 6 is an enlarged three-dimensional structure schematic diagram of the hollow arm of the present utility model;
[0023] Figure 7 is a three-dimensional structure schematic diagram of the movable frame of the present utility model;
[0024] Figure 8 is a rear view structure schematic diagram of the second bushing of the present utility model.
[0025] In the figure: 1, operating table; 2, support box; 3, rotating shaft; 4, connection box; 5, first motor; 6, threaded rod; 7, threaded block; 8, hollow arm; 9, chute; 10, movable rod; 11, electric wheel; 12, traveling wheel; 13, second motor; 14, worm; 15, worm gear; 16, connecting frame; 17, first bolt; 18, first mounting bracket; 19, movable frame; 20, first bushing; 21, connecting shaft; 22, support disc; 23, second bolt; 24, second bushing; 25, second mounting bracket; 26, support shaft; 27, third bolt; 28, control panel. Specific embodiments
[0026] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0027] Please refer to Figure 1-8, an embodiment provided by the present utility model: a power big data processing platform for multi-screen display, including an operating table 1 and a support box 2. The support box 2 is installed at the top of the operating table 1. A rotating shaft 3 is movably installed inside the support box 2, and the rotating shaft 3 extends to the outside of the support box 2. Electric wheels 11 are symmetrically arranged at the bottom end of the operating table 1. Walking wheels 12 are symmetrically arranged at the bottom end of the operating table 1 on one side of the electric wheels 11. Connection boxes 4 are installed at the bottom end of the operating table 1 above the electric wheels 11 and the walking wheels 12. Hollow arms 8 are installed at the bottom end of the connection boxes 4. First motors 5 are installed inside the connection boxes 4, and the first motors 5 play a role in power output. Threaded rods 6 are movably installed on the outer walls of the hollow arms 8, and the output ends of the first motors 5 are connected to the threaded rods 6. Chutes 9 are arranged on the outer walls of the hollow arms 8 on one side of the threaded rods 6. Threaded blocks 7 are sleeved on the surfaces of the threaded rods 6 on one side of the chutes 9. The threaded blocks 7 extend into the hollow arms 8, and the threaded blocks 7 are threadedly connected to the threaded rods 6, and the threaded blocks 7 are slidably connected to the chutes 9. Moving rods 10 are installed at the top ends of the electric wheels 11 and the walking wheels 12, and the moving rods 10 extend into the hollow arms 8 and are connected to the threaded blocks 7. A second motor 13 is installed inside the support box 2 on one side of the rotating shaft 3, and the second motor 13 plays a role in power output. A worm 14 is installed at the output end of the second motor 13. A worm gear 15 is installed on the surface of the rotating shaft 3 on one side of the worm 14, and the worm 14 meshes with the worm gear 15;
[0028] During use, multiple display screens are installed on the outer walls of the first mounting bracket 18 and the second mounting bracket 25 to facilitate the display of power-related data by the multiple display screens, so as to facilitate the staff to process and analyze a large amount of power data. The processing of power big data is calculated and processed by an external computer, and the corresponding power big data processing software is installed on the computer. The external computer is connected to the display screen through a cable. By operating the control panel 28, the first motor 5 is turned on. Supported by the connection box 4, the first motor 5 drives the threaded rod 6 to rotate. Under the threaded support of the threaded rod 6 and the threaded block 7, the threaded block 7 moves on the surface of the threaded rod 6. Under the sliding support of the threaded block 7 and the chute 9, the threaded block 7 drives the movable rod 10 to move inside the hollow arm 8. The movable rod 10 drives the electric wheel 11 and the walking wheel 12 to adjust the height, so as to adjust the overall height of the operating table 1, which is convenient for staff of different heights to operate. By operating the control panel 28, the electric wheel 11 is turned on. Supported by the walking wheel 12, the electric wheel 11 and the walking wheel 12 drive the entire operating table 1 to move forward. The operating table 1 drives the multiple display screens to move, so as to facilitate moving to different positions for display. By operating the control panel 28, the second motor 13 is turned on. The second motor 13 drives the worm 14 to rotate. Under the meshing action of the worm 14 and the worm wheel 15, the worm 14 drives the worm wheel 15 to rotate. The worm wheel 15 drives the rotating shaft 3 to rotate. The rotating shaft 3 drives the connecting frame 16 and the movable frame 19 to rotate. The connecting frame 16 and the movable frame 19 drive the multiple display screens to perform circular rotation display, realizing the convenient height control and adjustment of the power big data processing platform, facilitating the operation of staff of different heights, facilitating circular rotation display, facilitating the operation and processing of staff at different positions, and improving the convenience of adjustment of the power big data processing platform;<The original text of is not provided, so it cannot be translated. Please check and provide the correct content.><The original text of
[0029] is not provided, so it cannot be translated. Please check and provide the correct content.>A connecting frame 16 is sleeved on the surface of the rotating shaft 3. A first mounting frame 18 is installed on the outer wall of the connecting frame 16. First bolts 17 are arranged on the outer wall of the connecting frame 16 on one side of the first mounting frame 18, and the first bolts 17 extend through the connecting frame 16 to the surface of the rotating shaft 3. Moving frames 19 are arranged at both ends of the connecting frame 16. First shaft sleeves 20 are installed at the ends of the moving frames 19 close to the connecting frame 16. Connecting shafts 21 are installed on the outer walls of the connecting frame 16 on one side of the first shaft sleeves 20, and the connecting shafts 21 are movably connected to the first shaft sleeves 20. Support disks 22 are installed at the bottom ends of the connecting shafts 21. Second bolts 23 are arranged at the tops of the moving frames 19 on one side of the connecting shafts 21, and the second bolts 23 extend through the moving frames 19 to the inside of the support disks 22. Support shafts 26 are installed at the ends of the moving frames 19 away from the first shaft sleeves 20. Second mounting frames 25 are arranged outside the support shafts 26. Second shaft sleeves 24 are installed at the ends of the second mounting frames 25 close to the support shafts 26, and the second shaft sleeves 24 are movably connected to the support shafts 26. Third bolts 27 are arranged on the outer walls of the second shaft sleeves 24, and the third bolts 27 extend through the second shaft sleeves 24 to the surface of the support shafts 26. A control panel 28 is installed at the top of the operating table 1 on one side of the support box 2, and the output end of the control panel 28 is electrically connected to the input ends of the first motor 5, the electric wheel 11, and the second motor 13;
[0030] During use, by operating the connecting frame 16 to slide on the surface of the rotating shaft 3, the moving frame 19 is driven by the connecting frame 16 to adjust the height. The connecting frame 16 and the moving frame 19 drive multiple display screens to adjust through the first mounting frame 18 and the second mounting frame 25. After the adjustment is completed, by rotating the first bolt 17, the first bolt 17 extends through the connecting frame 16 to the surface of the rotating shaft 3, and the connecting frame 16 is fixed on the surface of the rotating shaft 3 by the first bolt 17. By operating the moving frame 19 to rotate, under the movable support of the first shaft sleeve 20 and the connecting shaft 21, the moving frame 19 is driven to rotate by the first shaft sleeve 20, and the display screen is driven to rotate by the moving frame 19 through the second mounting frame 25 to enable multiple display screens to perform centralized display. By operating the second bolt 23 to rotate, the second bolt 23 extends through the moving frame 19 to the surface of the support disk 22 to fix the moving frame 19 to the connecting frame 16. Under the movable support of the second shaft sleeve 24 and the support shaft 26, the second mounting frame 25 is driven to rotate by the second shaft sleeve 24, and the display screen is driven to rotate by the second mounting frame 25 to facilitate rotational multi-position display. By operating the third bolt 27 to rotate, the third bolt 27 extends through the second shaft sleeve 24 to the surface of the support shaft 26, and the support shaft 26 is fixed by the third bolt 27 to prevent the display screen from rotating, realizing a convenient rotational operation of the display screen on the power big data processing platform, facilitating the rotation of a single display screen, facilitating display in different directions, and improving the rotational flexibility of the power big data processing platform.
[0031] Working principle: When in use, connect to an external power supply and install multiple display screens on the outer walls of the first mounting bracket 18 and the second mounting bracket 25 to facilitate the display of power-related data by the multiple display screens, which is convenient for staff to process and analyze a large amount of power data. The first motor 5 drives the threaded rod 6 to rotate, and the threaded block 7 moves on the surface of the threaded rod 6. The threaded block 7 drives the movable rod 10 to move inside the hollow arm 8. The movable rod 10 drives the electric wheel 11 and the walking wheel 12 to adjust the height, so as to adjust the overall height of the operating table 1, which is convenient for staff of different heights to operate. The electric wheel 11 and the walking wheel 12 drive the entire operating table 1 to move forward, and the operating table 1 drives the multiple display screens to move, so as to facilitate moving to different positions for display. The second motor 13 drives the worm 14 to rotate, the worm 14 drives the worm wheel 15 to rotate, the worm wheel 15 drives the rotating shaft 3 to rotate, the rotating shaft 3 drives the connecting frame 16 and the movable frame 19 to rotate, and the connecting frame 16 and the movable frame 19 drive the multiple display screens to rotate circumferentially for display. Then, by operating the connecting frame 16 to slide on the surface of the rotating shaft 3, the connecting frame 16 drives the movable frame 19 to adjust the height. The connecting frame 16 and the movable frame 19 drive the multiple display screens to adjust through the first mounting bracket 18 and the second mounting bracket 25. After the adjustment is completed, the first bolt 17 extends to the surface of the rotating shaft 3 through the connecting frame 16, and the first bolt 17 fixes the connecting frame 16 on the surface of the rotating shaft 3. The first shaft sleeve 20 drives the movable frame 19 to rotate, and the movable frame 19 drives the display screen to rotate through the second mounting bracket 25, so that the multiple display screens perform centralized display. The second bolt 23 extends to the surface of the support disk 22 through the movable frame 19 to fix the movable frame 19 and the connecting frame 16. The second shaft sleeve 24 drives the second mounting bracket 25 to rotate, and the second mounting bracket 25 drives the display screen to rotate, which is convenient for rotational multi-position display. By operating the third bolt 27 to rotate, the third bolt 27 extends to the surface of the support shaft 26 through the second shaft sleeve 24, and the third bolt 27 fixes the support shaft 26 to prevent the display screen from rotating, thus completing the use of the power big data processing platform.
Claims
1. A power big data processing platform for multi-screen display, comprising an operation console (1) and a support box (2), characterized in that: A support box (2) is installed at the top of the operation table (1). A rotating shaft (3) is movably installed inside the support box (2), and the rotating shaft (3) extends outside the support box (2). Electric wheels (11) are symmetrically arranged at the bottom end of the operation table (1). Walking wheels (12) are symmetrically arranged at the bottom end of the operation table (1) on one side of the electric wheels (11). Connection boxes (4) are installed at the bottom end of the operation table (1) above the electric wheels (11) and the walking wheels (12). Hollow arms (8) are installed at the bottom ends of the connection boxes (4). First motors (5) are installed inside the connection boxes (4). Threaded rods (6) are movably installed on the outer walls of the hollow arms (8), and the output ends of the first motors (5) are connected to the threaded rods (6). Chutes (9) are arranged on the outer walls of the hollow arms (8) on one side of the threaded rods (6). Threaded blocks (7) are sleeved on the surfaces of the threaded rods (6) on one side of the chutes (9). The threaded blocks (7) extend into the hollow arms (8), and the threaded blocks (7) are threadedly connected to the threaded rods (6), and the threaded blocks (7) are slidably connected to the chutes (9). Moving rods (10) are installed at the top ends of the electric wheels (11) and the walking wheels (12), and the moving rods (10) extend into the hollow arms (8) and are connected to the threaded blocks (7).
2. The power big data processing platform with multi-screen display according to claim 1, wherein: A connection frame (16) is sleeved on the surface of the rotating shaft (3). A first mounting frame (18) is installed on the outer wall of the connection frame (16). First bolts (17) are arranged on the outer wall of the connection frame (16) on one side of the first mounting frame (18), and the first bolts (17) extend through the connection frame (16) to the surface of the rotating shaft (3).
3. The power big data processing platform with multi-screen display according to claim 2, characterized in that: Moving frames (19) are arranged at both ends of the connection frame (16). First bushings (20) are installed at the ends of the moving frames (19) close to the connection frame (16). Connection shafts (21) are installed on the outer walls of the connection frame (16) on one side of the first bushings (20), and the connection shafts (21) are movably connected to the first bushings (20).
4. A power big data processing platform with multi-screen display according to claim 3, characterized in that: Support disks (22) are installed at the bottom ends of the connection shafts (21). Second bolts (23) are arranged at the top ends of the moving frames (19) on one side of the connection shafts (21), and the second bolts (23) extend through the moving frames (19) to the inside of the support disks (22).
5. A power big data processing platform with multi-screen display according to claim 4, characterized in that: Support shafts (26) are installed at the ends of the moving frames (19) away from the first bushings (20). Second mounting frames (25) are arranged outside the support shafts (26). Second bushings (24) are installed at the ends of the second mounting frames (25) close to the support shafts (26), and the second bushings (24) are movably connected to the support shafts (26).
6. The power big data processing platform with multi-screen display according to claim 5, characterized in that: Third bolts (27) are arranged on the outer walls of the second bushings (24), and the third bolts (27) extend through the second bushings (24) to the surface of the support shafts (26).
7. A power big data processing platform with multi-screen display according to claim 1, characterized in that: Inside the support box (2) on one side of the rotating shaft (3), a second motor (13) is installed. The output end of the second motor (13) is equipped with a worm (14). On the surface of the rotating shaft (3) on one side of the worm (14), a worm wheel (15) is installed, and the worm (14) meshes with the worm wheel (15).
8. A power big data processing platform with multi-screen display according to claim 1, characterized in that: On the top of the operating table (1) on one side of the support box (2), a control panel (28) is installed, and the output end of the control panel (28) is electrically connected to the input ends of the first motor (5), the electric wheel (11), and the second motor (13).