Multivariate data intelligent system for sports building space scene display
By designing a multi-data intelligent system for displaying space scenes in sports buildings, the problem of single functions and limited applicable scenarios in existing devices is solved, and the miniaturized and multi-functional scene display effect is achieved, and the diverse display needs in sports buildings are met.
Patent Information
- Application Number
- CN202510304313.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-06-13
AI Technical Summary
The existing sports building space scene display device has a single function and limited applicable scenarios, which cannot meet the diverse display needs of outdoor and sports buildings.
A multi-variable data intelligent system is designed, including a guardrail rack, a moving assembly and a driving mechanism. Through multiple connections, it can be assembled into a guardrail system with display effects, which can adjust the level according to the ground conditions of the scene and display various information through split-screen playback.
It realizes a multi-functional scene display that is miniaturized and lightweight, which can meet the diverse display needs in sports buildings, including scene display, advertising placement and event broadcasting, and the device is small in size and easy to assemble and adjust.
Smart Images

Figure CN120140577A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of sports building scene display, and more specifically to a multi-data intelligent system for sports building space scene display. Background Art
[0002] With the rapid development of modern industry, many applications have been implemented in the direction of internal scene display of sports building spaces in combination with existing scientific and technological technologies.
[0003] For example: CN221824920U, a digital twin technology AI scene display device that is convenient for adjusting the angle. The present utility model discloses a digital twin technology AI scene display device that is convenient for adjusting the angle, including a support base and a support plate. Electric telescopic rods are installed at the four corner positions inside the support base. A shock-absorbing wheel is installed at the bottom end of the electric telescopic rod. A mounting base is placed inside the limit groove. First threaded rods are installed on both the left and right sides of the support base. A fixing block is installed at the end of the first threaded rod. A telescopic plate is slidably installed inside the support plate. Protruding plates are installed on both the left and right sides of the telescopic plate. An adjusting mechanism is installed inside the support plate. This digital twin technology AI scene display device that is convenient for adjusting the angle is provided with a rotating mechanism to facilitate adjusting the angle of the display device and to facilitate all-round scene display, a fixing mechanism to facilitate quick disassembly and assembly of the display device for easy maintenance, an adjusting mechanism to facilitate adjusting the height of the display device, and a telescopic mobile component to facilitate moving and stabilizing the device. The function of the quick-disassembly and assembly display device of this utility model is relatively single, the applicable scenarios are scarce, and there are no other functions that can meet the scene display outdoors and inside sports buildings. Its structural type is relatively common in the market and is also a common structure that those skilled in the art can flexibly adjust according to the actual situation.
[0004] For example: CN221668488U, an urban design scenario display mechanism. The present utility model relates to an urban design scenario display mechanism, including a bottom plate. A support plate is fixedly connected to the top of the bottom plate, and an adjustment component is fixedly connected to the top of the bottom plate. The adjustment component includes a motor, and the bottom of the motor is fixedly connected to the top of the bottom plate. For this urban design scenario display mechanism, first slide the sliding plate connected to the display board into the interior of the mounting seat, then pull the two latch rods. Under the action of the spring, release the latch rods so that they are snapped into the interior of the sliding plate, fix and limit the sliding plate within the mounting seat, and connect the display board to an external control device. Start the motor to drive the worm to engage and drive with the worm gear, so that the transmission shaft rotates within the fixed block. The adjusting plate is threadedly connected to the transmission shaft. In the case that the adjusting plate is slidably connected to the support plate, the adjusting plate changes from a rotational motion to an upward movement, so as to achieve that the display board can be adjusted in height according to the user's height during display, facilitating the user to better observe the display content. The display device of this utility model has a relatively single function and lacks applicable scenarios, and there is no other function to meet the scenario display in outdoor and sports buildings. Its structural type is relatively common in the market and is also a common structure that those skilled in the art can flexibly adjust according to the actual situation. Summary of the Invention
[0005] The purpose of the present invention is to provide a multi - data intelligent system for sports building space scenario display. The device is small in volume, and multiple groups of connections can be assembled into a guardrail system with a display effect. It can adjust the levelness of the device according to the ground conditions of the scenario, facilitating neat arrangement, and display various types of information through split - screen playback on the display screen.
[0006] The purpose of the present invention is achieved through the following technical solutions:
[0007] A multi - data intelligent system for sports building space scenario display, characterized in that it includes a guardrail frame, a first guardrail moving assembly, a second guardrail moving assembly, and a second guardrail moving assembly. The first guardrail moving assembly, the second guardrail moving assembly, and the driving mechanism are all connected to the guardrail frame.
[0008] As a further optimization of this technical solution, a multi-data intelligent system for sports building space scene display according to the present invention, the guardrail frame includes a support plate A, positioning columns A, B, C, D, a support plate B, C, D, a lead screw shaft A, a lead screw shaft B, a lead screw nut A, a slide plate A, a display screen A, a lead screw nut B, a slide plate B, a perforated plate, a display screen B, a baffle A, a baffle B, a bracket A, a display screen C, and a display screen D. Among them, the support plate A is fixedly connected to the support plate B through the positioning columns A, B, C, D, the support plates C, D, the baffle A, and the baffle B. The lead screw shafts A and B are rotatably connected to the support plates A and B. The lead screw shaft B is meshed with the lead screw nut A. The lead screw nut A and the display screen A are fixedly connected to the slide plate A. The slide plate A is connected to the positioning columns B and D. The lead screw nut B and the perforated plate are fixedly connected to the slide plate B. The slide plate B is connected to the positioning columns A and C. The perforated plate is fixedly connected to the display screen B. The bracket A is fixedly connected to the display screens C and D.
[0009] As a further optimization of this technical solution, a multi-data intelligent system for sports building space scene display according to the present invention, the first guardrail moving assembly includes a push rod bracket, an electric push rod A, a fixed seat A, an electric push rod B, a connecting rod A, an electric push rod C, a connecting rod B, a Y-shaped connecting rod, a fixing bolt A, a triangular connecting plate, a fixing bolt B, a connecting arm, a fixing bolt C, an X-shaped connecting rod, a fixing bolt D, a wheel hub fixing plate, a wheel hub positioning shaft, and a wheel set. Among them, the push rod bracket is fixedly connected to the electric push rod A. The electric push rod B, the fixed seat A, and the electric push rod C are all fixedly connected to the electric push rod A. The output rod of the electric push rod B is rotatably connected to the connecting rod A. The output rod of the electric push rod C is rotatably connected to the connecting rod B. The connecting rods A and B are both rotatably connected to the Y-shaped connecting rod. The fixing bolt A is fixedly connected to the fixed seat A. The fixing bolt A is rotatably connected to the triangular connecting plate. The triangular connecting plate is rotatably connected to the fixing bolt B. The fixing bolts B and C are both fixedly connected to the connecting arm. The output shaft of the electric push rod A and the X-shaped connecting rod are both rotatably connected to the fixing bolt C. The Y-shaped connecting rod and the X-shaped connecting rod are both rotatably connected to the fixing bolt D. The wheel hub fixing plate is fixedly connected to the wheel hub positioning shaft. The wheel hub positioning shaft is rotatably connected to the connecting arm. The wheel hub positioning shaft is fixedly connected to the wheel set.
[0010] As a further optimization of this technical solution, a multi-data intelligent system for sports building space scene display according to the present invention, all components included in the second guardrail moving assembly are the same as those of the first guardrail moving assembly. Its assembly method and sequence are the same as those of the first guardrail moving assembly. Its operation sequence and realized functions are the same as those of the first guardrail moving assembly.
[0011] As a further optimization of the technical solution, a multi - data intelligent system for sports building space scene display according to the present invention, the driving mechanism includes a bracket B, a support plate E, an electric push rod D, a connecting block, a connecting - block fixing member, a bearing fixing seat, a gear, a shaft A, a positioning block, a gear A, a gear shaft, a pulley A, a belt A, a pulley B, a pulley C, a belt B, a pulley D, a transmission, a motor, a gear B, a gear C, and a shaft B. Among them, the bracket B is fixedly connected to the support plate E, the support plate E is fixedly connected to the electric push rod D, the output shaft of the electric push rod D is fixedly connected to the connecting block, the connecting block is fixedly connected to the shaft A through the connecting - block fixing member, the connecting block is fixedly connected to the bearing fixing seat, the gear, the positioning block, and the gear A are all fixedly connected to the shaft A, the gear A is meshed with the gear shaft, the pulley A and the pulley C are both fixedly connected to the gear shaft, the gear shaft and the shaft B are both rotatably connected to the bracket B, the pulley A is rotatably connected to the pulley B through the belt A, the pulley C is rotatably connected to the pulley D through the belt B, the transmission is fixedly connected to the motor, the output shaft of the motor is fixedly connected to the input end of the transmission, the output shaft of the transmission is fixedly connected to the gear B, the gear B is meshed with the gear, the gear is meshed with the gear C, and the gear C is fixedly connected to the shaft B.
[0012] The beneficial effects of a multi - data intelligent system for sports building space scene display according to the present invention are as follows: 1. The device is small in volume, and multiple groups of connections can be assembled into a guardrail system with a display effect; 2. The levelness of the device can be adjusted according to the ground conditions of the scene, which is convenient for arranging neatly; 3. Various types of information are played and displayed through the split - screen display of the display screen. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The following further elaborates on the present invention in detail in conjunction with the drawings and specific implementation methods.
[0014] Figure 1 is the schematic diagram of the overall structure of the present invention Figure 1 ;
[0015] Figure 2 is the schematic diagram of the overall structure of the present invention Figure 2 ;
[0016] Figure 3 is the schematic diagram of the guardrail frame structure of the present invention Figure 1 ;
[0017] Figure 4 is the schematic diagram of the guardrail frame structure of the present invention Figure 2 ;
[0018] Figure 5 is the schematic diagram of the guardrail frame structure of the present invention Figure 3 ;
[0019] Figure 6 is the schematic diagram of the first guardrail moving assembly structure of the present invention Figure 1 ;
[0020] Figure 7 is a schematic diagram of the structure of the first guardrail moving assembly of the present invention Figure 2 ;
[0021] Figure 8 is a schematic diagram of the structure of the driving mechanism of the present invention Figure 1 ;
[0022] Figure 9 is a schematic diagram of the structure of the driving mechanism of the present invention Figure 2 ;
[0023] Figure 10 is a schematic diagram of the structure of the driving mechanism of the present invention Figure 3 ;
[0024] Figure 11 is a schematic diagram of the structure of the driving mechanism of the present invention Figure 4 ;
[0025] In the figure: guardrail frame 1; support plate A 101; positioning column A 102; positioning column B 103; positioning column C 104; positioning column D 105; support plate B 106; support plate C 107; support plate D 108; lead screw shaft A 109; lead screw shaft B 110; lead screw block A 111; slide plate A 112; display screen A 113; lead screw block B 114; slide plate B 115; perforated plate 116; display screen B 117; baffle A 118; baffle B 119; support A 120; display screen C 121; display screen D 122; first guardrail moving assembly 2; push rod support 201; electric push rod A 202; fixed seat A 203; electric push rod B 204; connecting rod A 205; electric push rod C 206; connecting rod B 207; Y-shaped connecting rod 208; fixing bolt A 209; triangular connecting plate 210; fixing bolt B 211; connecting arm 212; fixing bolt C 213; X-shaped connecting rod 214; fixing bolt D 215; wheel hub fixing plate 216; wheel hub positioning shaft 217; wheel set 218; second guardrail moving assembly 3; driving mechanism 4; support B 401; support plate E 402; electric push rod D 403; connecting block 404; connecting block fixing part 405; bearing fixing seat 406; gear 407; shaft A 408; positioning block 409; gear A 410; gear shaft 411; pulley A 412; belt A 413; pulley B 414; pulley C 415; belt B 416; pulley D 417; transmission 418; motor 419; gear B 420; gear C 421; shaft B 422. Specific embodiments
[0026] The present invention will be further described in detail below with reference to the accompanying drawings. Specific embodiment 1:
[0028] Below in conjunction withFigure 1-11 In this embodiment, a multi - data intelligent system for the display of sports building space scenes includes a guardrail frame 1, a first guardrail moving assembly 2, a second guardrail moving assembly 3, and a second guardrail moving assembly 4. The first guardrail moving assembly 2, the second guardrail moving assembly 3, and the driving mechanism 4 are all connected to the guardrail frame 1. Specific Embodiment 2:
[0030] The following is combined with Figure 1-11 In this embodiment, this embodiment further describes Embodiment 1. The guardrail frame 1 includes a support plate A101, positioning columns A102, positioning columns B103, positioning columns C104, positioning columns D105, a support plate B106, a support plate C107, a support plate D108, a lead screw shaft A109, a lead screw shaft B110, a lead screw block A111, a slide plate A112, a display screen A113, a lead screw block B114, a slide plate B115, a perforated plate 116, a display screen B117, a baffle A118, a baffle B119, a bracket A120, a display screen C121, and a display screen D122. Among them, the support plate A101 is fixedly connected to the support plate B106 through the positioning columns A102, positioning columns B103, positioning columns C104, positioning columns D105, the support plate C107, the support plate D108, the baffle A118, and the baffle B119. The lead screw shaft A109 and the lead screw shaft B110 are both rotatably connected to the support plate A101 and the support plate B106. The lead screw shaft B110 is meshed with the lead screw block A111. The lead screw block A111 and the display screen A113 are both fixedly connected to the slide plate A112. The slide plate A112 is connected to the positioning columns B103 and D105. The lead screw block B114 and the perforated plate 116 are both fixedly connected to the slide plate B115. The slide plate B115 is connected to the positioning columns A102 and C104. The perforated plate 116 is fixedly connected to the display screen B117. The bracket A120 is fixedly connected to the display screens C121 and D122. Specific Embodiment 3:
[0032] The following is combined with Figure 1-11Description of this embodiment: This embodiment further describes the first embodiment. The first guardrail moving assembly 2 includes a push rod bracket 201, an electric push rod A 202, a fixed seat A 203, an electric push rod B 204, a connecting rod A 205, an electric push rod C 206, a connecting rod B 207, a Y-shaped connecting rod 208, a fixing bolt A 209, a triangular connecting plate 210, a fixing bolt B 211, a connecting arm 212, a fixing bolt C 213, an X-shaped connecting rod 214, a fixing bolt D 215, a wheel hub fixing plate 216, a wheel hub positioning shaft 217, and a wheel set 218. Among them, the push rod bracket 201 is fixedly connected to the electric push rod A 202. The electric push rod B 204, the fixed seat A 203, and the electric push rod C 206 are all fixedly connected to the electric push rod A 202. The output rod of the electric push rod B 204 is rotatably connected to the connecting rod A 205. The output rod of the electric push rod C 206 is rotatably connected to the connecting rod B 207. Both the connecting rod A 205 and the connecting rod B 207 are rotatably connected to the Y-shaped connecting rod 208. The fixing bolt A 209 is fixedly connected to the fixed seat A 203. The fixing bolt A 209 is rotatably connected to the triangular connecting plate 210. The triangular connecting plate 210 is rotatably connected to the fixing bolt B 211. Both the fixing bolt B 211 and the fixing bolt C 213 are fixedly connected to the connecting arm 212. The output shaft of the electric push rod A 202 and the X-shaped connecting rod 214 are both rotatably connected to the fixing bolt C 213. Both the Y-shaped connecting rod 208 and the X-shaped connecting rod 214 are rotatably connected to the fixing bolt D 215. The wheel hub fixing plate 216 is fixedly connected to the wheel hub positioning shaft 217. The wheel hub positioning shaft 217 is rotatably connected to the connecting arm 212. The wheel hub positioning shaft 217 is fixedly connected to the wheel set 218. Specific Embodiment Four:
[0034] The following combines with Figure 1-11 Description of this embodiment: This embodiment further describes the first embodiment. All components included in the second guardrail moving assembly 3 are the same as those of the first guardrail moving assembly 2. Its assembly method and sequence are the same as those of the first guardrail moving assembly 2. Its operation sequence and realized functions are the same as those of the first guardrail moving assembly 2. Specific Embodiment Five:
[0036] The following combines with Figure 1-11Regarding this embodiment, this embodiment further elaborates on the first embodiment. The drive mechanism 4 includes a bracket B401, a support plate E402, an electric push rod D403, a connecting block 404, a connecting block fixing member 405, a bearing fixing seat 406, a gear 407, a shaft A408, a positioning block 409, a gear A410, a gear shaft 411, a pulley A412, a belt A413, a pulley B414, a pulley C415, a belt B416, a pulley D417, a transmission 418, a motor 419, a gear B420, a gear C421, and a shaft B422. Among them, the bracket B401 is fixedly connected to the support plate E402, the support plate E402 is fixedly connected to the electric push rod D403, the output shaft of the electric push rod D403 is fixedly connected to the connecting block 404, the connecting block 404 is fixedly connected to the shaft A408 through the connecting block fixing member 405, the connecting block 404 is fixedly connected to the bearing fixing seat 406, the gear 407, the positioning block 409, and the gear A410 are all fixedly connected to the shaft A408, the gear A410 is meshed and connected to the gear shaft 411, the pulley A412 and the pulley C415 are both fixedly connected to the gear shaft 411, the gear shaft 411 and the shaft B422 are both rotatably connected to the bracket B401, the pulley A412 is rotatably connected to the pulley B414 through the belt A413, the pulley C415 is rotatably connected to the pulley D417 through the belt B416, the transmission 418 is fixedly connected to the motor 419, the output shaft of the motor 419 is fixedly connected to the input end of the transmission 418, the output shaft of the transmission 418 is fixedly connected to the gear B420, the gear B420 is meshed and connected to the gear 407, the gear 407 is meshed and connected to the gear C421, and the gear C421 is fixedly connected to the shaft B422.
[0037] A multi - data intelligent system for the display of sports building space scenes of the present invention has the following working principle: With the development of technology, traditional internal publicity and display devices in sports buildings no longer meet the requirements. Traditional display methods such as large - screen scene display, event transmission, and advertising placement in multi - functional sports buildings have drawbacks such as high equipment costs, large occupied areas, and a single target audience. Therefore, this device combines the characteristics of sports buildings and proposes a miniaturized and lightweight multi - functional scene display device inside the public sports building space. Since various sports events in sports buildings are divided into separate areas, and traditional large - screen displays are only suitable for large - scale event competitions, which require more comprehensive conditions and are not suitable for small - scale events and small community activities. This device provides a small - scale scene display device in the form of a guardrail for scene display, advertising placement, and event live broadcast. Specifically, it is displayed and played through display screen A113, display screen B117, display screen C121, and display screen D122. The positions of display screen A113 and display screen B117 are at the bottom, facilitating viewing by the front row of the auditorium. Display screen C121 and display screen D122 are at the top, facilitating viewing by the middle and rear rows of the auditorium. This device can also be spliced and placed in the form of combining multiple groups to form a guardrail. This is for the purpose of scene display, isolation, and crowd guidance for small - scale sports. If there is no need for so many display screens according to the on - site situation, display screen B117 can be removed, and display props or public service advertisements such as promotional posters, event props, sports equipment, etc. can be pasted, mounted, and placed through the mesh plate 116, giving the device a certain expansion space. The device moves through the first guardrail moving assembly 2 and the second guardrail moving assembly 3. If the ground is uneven, the height can also be adjusted to make the device body level, avoiding the display screen tilting due to side - slant. Since the first guardrail moving assembly 2 and the second guardrail moving assembly 3 have the same structure, the first guardrail moving assembly 2 is specifically used as an example here. Start the first guardrail moving assembly 2, start the electric push rod A202, and its output push rod pushes downward to drive the connecting arm 212 to rotate along the fixed bolt B211 through the fixed bolt C213. The connecting arm 212 drives the triangular connecting plate 210 to rotate along the fixed seat A203 through the fixed bolt B211. When the connecting arm 212 rotates, it also drives the X - shaped connecting rod 214 to rotate through the fixed bolt C213. When the X - shaped connecting rod 214 rotates, it drives the Y - shaped connecting rod 208 to rotate through the fixed bolt D215. At this time, start the electric push rod B204 and the electric push rod C206. When the output shafts of the electric push rod B204 and the electric push rod C206 both retract, at this time, with the cooperation of the electric push rod A202, the connecting arm 212 is swung downward. The connecting arm 212 drives the wheel set 218 to swing downward through the wheel hub fixing plate 216 and the wheel hub positioning shaft 217 to form a support with the ground, raising one side of the entire device. At this time, start the second guardrail moving assembly 3 to raise or lower the other side until the display screen is level. Of course,Devices and methods for measuring the level of a device and controlling electronic components are already mature technologies on the market. In this device, relevant controllers and sensors can be added to complete the above-mentioned functions. When the device is in a lower position and only one set of display screens is required, the motor 419 in the drive mechanism 4 is started. The output shaft of the motor drives the transmission 418 to work. The output end of the transmission 418 drives the gear B420 to rotate. The gear B420 drives the shaft A408 to rotate through the gear C421. The shaft A408 drives the gear A410 to rotate through the positioning block 409. The gear A410 drives the pulley A412 and the pulley C415 to rotate through the gear shaft 411. The pulley A412 drives the pulley B414 to rotate through the belt A413. The pulley B414 drives the lead screw shaft B110 to rotate. When the lead screw shaft B110 rotates, it drives the lead screw block A111 to move linearly upward. The lead screw block A111 drives the slide plate A112 and the display screen A113 to move upward accordingly. During this process, at the same time, the pulley C415 drives the pulley D417 to rotate through the belt B416. The pulley D417 drives the lead screw shaft A109 to rotate. The lead screw shaft A109 drives the lead screw block B114 to move linearly upward along the axis of the lead screw shaft A109. The lead screw block B114 drives the mesh plate 116 and the display screen B117 to move upward synchronously through the slide plate B115. When the slide plate A112 and the slide plate B115 move upward synchronously, the slide plate A112 slides along the positioning columns B103 and D105, and the slide plate B115 slides along the positioning columns A102 and C104, which enhances the stability of the movement of the slide plate A112 and the slide plate B115. If it is necessary to rotate the display screens C121 and D122 to show in other directions, the electric push rod D403 in the drive mechanism 4 is started. When its push rod retracts upward, it drives the shaft A408 to move upward through the connecting block 404 and the connecting block fixing part 405. The shaft A408 drives the gear 407 to move upward until it meshes with the gear C421, and then the electric push rod D403 stops running. Then the motor 419 is started continuously. The gear B420 is driven to rotate through the transmission 418. The gear 407 drives the gear C421 to rotate. The gear C421 drives the bracket A120 to rotate through the shaft B422. The bracket A120 drives the display screens C121 and D122 to rotate, achieving the function of showing content at a specific angle.,
[0038] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by those of ordinary skill in the art within the scope of the essence of the present invention also fall within the protection scope of the present invention.
Claims
1. A multi-data intelligent system for displaying sports building space scenes, characterized by: The invention comprises a guardrail frame (1), a first guardrail moving assembly (2), a second guardrail moving assembly (3), and a second guardrail moving assembly (4); the first guardrail moving assembly (2), the second guardrail moving assembly (3), and a driving mechanism (4) are all connected to the guardrail frame (1).
2. The multi-data intelligent system for displaying sports building space scenes according to claim 1, characterized in that: The guardrail frame (1) comprises a support plate A (101), a positioning column A (102), a positioning column B (103), a positioning column C (104), a positioning column D (105), a support plate B (106), a support plate C (107), a support plate D (108), a lead screw shaft A (109), a lead screw shaft B (110), a lead screw block A (111), a slide plate A (112), a display screen A (113), a lead screw block B (114), a slide plate B (115), a mesh plate (116), a display screen B (117), a baffle A (118), a baffle B (119), a bracket A (120), a display screen C (121), and a display screen D (122), wherein the support plate A (101) is connected to the support plate A (101) by the positioning column A (102), the positioning column B (103), the positioning column C (104), the positioning column D (105), the support plate C (107), the support plate The plate D (108), the baffle A (118), and the baffle B (119) are fixedly connected to the support plate B (106); the lead screw shaft A (109) and the lead screw shaft B (110) are rotatably connected to the support plate A (101) and the support plate B (106); the lead screw shaft B (110) is meshedly connected to the lead screw block A (111); the lead screw block A (111) and the display screen A (113) are fixedly connected to the slide plate A (112); the slide plate A (112) is 12) is connected to the positioning column B (103) and the positioning column D (105), the lead screw block B (114) and the mesh plate (116) are fixedly connected to the slide plate B (115), the slide plate B (115) is connected to the positioning column A (102) and the positioning column C (104), the mesh plate (116) is fixedly connected to the display screen B (117), and the bracket A (120) is fixedly connected to the display screen C (121) and the display screen D (122).
3. The multi-data intelligent system for displaying sports building space scenes according to claim 1 is characterized by: The first guardrail moving assembly (2) comprises a push rod bracket (201), an electric push rod A (202), a fixing seat A (203), an electric push rod B (204), a connecting rod A (205), an electric push rod C (206), a connecting rod B (207), a Y-shaped connecting rod (208), a fixing bolt A (209), a triangular connecting plate (210), a fixing bolt B (211), a connecting arm (212), a fixing bolt C (213), an X-shaped connecting rod (21 4), fixing bolt D (215), wheel hub fixing plate (216), wheel hub positioning shaft (217), wheel assembly (218), wherein the push rod bracket (201) is fixedly connected to the electric push rod A (202), the electric push rod B (204), the fixing seat A (203), and the electric push rod C (206) are all fixedly connected to the electric push rod A (202), the output rod of the electric push rod B (204) is rotatably connected to the connecting rod A (205), and the electric push rod C (206) The output rod is rotatably connected to the connecting rod B (207), the connecting rod A (205) and the connecting rod B (207) are both rotatably connected to the Y-shaped connecting rod (208), the fixing bolt A (209) is fixedly connected to the fixing seat A (203), the fixing bolt A (209) is rotatably connected to the triangular connecting plate (210), the triangular connecting plate (210) is rotatably connected to the fixing bolt B (211), the fixing bolt B (211) and the fixing bolt C (213) are both connected to the connecting arm ( The wheel hub fixing plate (216) is fixedly connected to the wheel hub positioning shaft (217), the wheel hub positioning shaft (217) is rotationally connected to the connecting arm (212), the output shaft of the electric push rod A (202) and the X-type connecting rod (214) are both rotationally connected to the fixing bolt C (213), the Y-type connecting rod (208) and the X-type connecting rod (214) are both rotationally connected to the fixing bolt D (215), the wheel hub fixing plate (216) is fixedly connected to the wheel hub positioning shaft (217), the wheel hub positioning shaft (217) is rotationally connected to the connecting arm (212), and the wheel hub positioning shaft (217) is fixedly connected to the wheel assembly (218).
4. The multi-data intelligent system for displaying sports building space scenes according to claim 1 is characterized by: The components contained in the second guardrail moving assembly (3) are the same as those of the first guardrail moving assembly (2), its assembly method and sequence are the same as those of the first guardrail moving assembly (2), and its operating sequence and realized functions are the same as those of the first guardrail moving assembly (2).
5. The multi-data intelligent system for displaying sports building space scenes according to claim 1 is characterized by: The driving mechanism (4) comprises a bracket B (401), a support plate E (402), an electric push rod D (403), a connecting block (404), a connecting block fixing member (405), a bearing fixing seat (406), a gear (407), a shaft A (408), a positioning block (409), a gear A (410), a gear shaft (411), a pulley A (412), a belt A (413), a pulley B (414), a pulley C (415), a belt B (416), a pulley D (417 ), a transmission (418), a motor (419), a gear B (420), a gear C (421), and a shaft B (422), wherein the bracket B (401) is fixedly connected to the support plate E (402), the support plate E (402) is fixedly connected to the electric push rod D (403), the output shaft of the electric push rod D (403) is fixedly connected to the connecting block (404), the connecting block (404) is fixedly connected to the shaft A (408) through the connecting block fixing member (405), and the connecting block (404) is fixedly connected to the bearing The fixing seat (406) is fixedly connected, the gear (407), the positioning block (409), and the gear A (410) are all fixedly connected to the shaft A (408), the gear A (410) is meshedly connected to the gear shaft (411), the pulley A (412) and the pulley C (415) are all fixedly connected to the gear shaft (411), the gear shaft (411) and the shaft B (422) are all rotationally connected to the bracket B (401), and the pulley A (412) is rotationally connected to the pulley B (414) through the belt A (413). The pulley C (415) is rotationally connected to the pulley D (417) through the belt B (416), the transmission (418) is fixedly connected to the motor (419), the output shaft of the motor (419) is fixedly connected to the input end of the transmission (418), the output shaft of the transmission (418) is fixedly connected to the gear B (420), the gear B (420) is meshedly connected to the gear (407), the gear (407) is meshedly connected to the gear C (421), and the gear C (421) is fixedly connected to the shaft B (422).
Citation Information
Patent Citations
Urban design scene display mechanism
CN221668488U
Digital twinning technology AI scene display device convenient for angle adjustment
CN221824920U