Bionic animal model display platform

By using a driving magnet frame and a driven magnet frame to automatically clean the glass cover with a cleaning roller, combined with a rotating display stand and lighting mechanism, the problems of touch marks and temperature difference water mist on the glass cover are solved, enabling clear observation and protection of the bionic animal model.

CN121926460APending Publication Date: 2026-04-28NAT MUSEUM OF NATURE & SCI TOKYO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
NAT MUSEUM OF NATURE & SCI TOKYO
Filing Date
2024-02-05
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The glass covers of existing bionic animal model display platforms are easily touched and leave marks, and water vapor is generated due to temperature differences, which affects the observation effect and makes it inconvenient to observe the exhibits.

Method used

A cleaning mechanism comprising a driving magnet frame and a driven magnet frame was designed to automatically clean the glass cover using cleaning rollers and sprayed cleaning fluid, and combined with a rotating and lighting mechanism of the display stand to provide multi-angle observation.

Benefits of technology

The glass cover achieves self-cleaning, reduces touch marks and water mist, and improves the convenience of observation and the protection of exhibits.

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Abstract

A bionic animal model display platform disclosed by the present invention comprises an exhibition stand and a glass cover, and further comprises a base, a mounting seat, a top frame, a top cover and a cleaning mechanism, the exhibition stand is rotatably arranged at the top of the base, the mounting seat is arranged at the top end of the base, the glass cover is slidably arranged in the mounting seat, the top frame is arranged at the top end of the glass cover, and the top cover is arranged in the top frame. The top cover is rotatably arranged in the top frame, the cleaning mechanism is used for cleaning the surface of the glass cover and comprises a driving magnet frame, a driven magnet frame and two cleaning rollers, the driving magnet frame is rotatably arranged in the glass cover, and the two cleaning rollers are arranged in the driving magnet frame and the driven magnet frame correspondingly; the cleaning roller is in contact with the glass cover. According to the invention, the problem that the observation of the bionic animal model is affected by traces generated by touching the glass cover of the display platform and water mist generated by the temperature difference between the inside and the outside of the glass cover in the prior art is solved.
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Description

Technical Field

[0001] This invention relates to the field of display platform technology, and specifically to a biomimetic animal model display platform. Background Technology

[0002] To aid in the discovery of the properties and laws of nature and to enhance people's interest and literacy in natural sciences, natural history museums often display animal specimens or biomimetic animal models. Existing biomimetic animal model display platforms are typically fixed supports, placing the models in a fixed position for exhibition. Visitors standing in one location can only observe a limited area. For example, biomimetic animal models are usually placed facing the visitor; if the display platform is placed near a wall, it is difficult to observe the back of the model. Even if the display platform is in the center of the space with no obstructions, visitors still need to move to observe the model from multiple angles, which is quite inconvenient.

[0003] Patent CN210039228U discloses a specimen display rack for a biological laboratory, and patent CN218127854U discloses a human specimen display stand. Both use rotatable stands, allowing the exhibits to rotate for omnidirectional display. To prevent direct contact between visitors and biomimetic animal models during exhibitions, reduce the risk of tipping over and damage, and minimize oxidation and dust accumulation, glass covers are typically used. While these covers effectively separate the models from the exhibition environment and protect them, visitors, especially children, sometimes touch the glass covers, leaving fingerprints or other marks that affect light transmission. Although dedicated cleaning staff regularly wipe the covers, this cleaning is only done when there are fewer visitors. Even after wiping, fingerprints remain during visits. Furthermore, some visitors press their faces close to the glass surface for a better view, and some children even touch it with their mouths. This not only poses a risk of bacterial infection for children but also leaves bacteria-laden saliva on the glass surface, leading to cross-infection and negatively impacting visitor observation. There is also a risk of disease transmission. Additionally, due to the need for preservation of the bionic animal models, the temperature inside the display platform sometimes differs from the temperature inside the exhibition hall. This temperature difference can cause fogging on the glass surface, also affecting observation. Therefore, to better display the bionic animal models and improve their protection while also protecting visitors, a self-cleaning bionic animal model display platform with a glass cover is proposed. Summary of the Invention

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this invention provides a biomimetic animal model display platform, which solves the problems mentioned in the background art, such as the marks left by touching the glass cover of the display platform and the water mist caused by the temperature difference between the inside and outside of the glass cover, which affect the observation of the biomimetic animal model.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, the present invention provides the following technical solution: a biomimetic animal model display platform, including a display stand and a glass cover, and further comprising:

[0008] The base, wherein the display stand is rotatably mounted on top of the base;

[0009] Mounting base, wherein the mounting base is disposed at the top of the base, and the glass cover is slidably disposed inside the mounting base;

[0010] A top frame, wherein the top frame is disposed at the top of the glass cover;

[0011] Top cover, which is rotatably disposed inside the top frame;

[0012] A cleaning mechanism is used to clean the surface of the glass cover, and the cleaning mechanism includes:

[0013] A drive magnet frame, which is rotatably disposed inside the glass cover;

[0014] The driven magnet frame is located outside the glass cover and corresponds to the position of the driving magnet frame. The driving magnet frame and the driven magnet frame have opposite magnetic properties at their respective ends that are close to each other, and the driving magnet frame and the driven magnet frame have an open structure at their respective ends that are close to the glass cover.

[0015] The cleaning rollers are provided in two, and the two cleaning rollers are respectively disposed inside the drive magnet frame and the driven magnet frame. The cleaning rollers are in contact with the glass cover.

[0016] To further improve the cleaning effect on the glass cover, a cleaning liquid spraying mechanism is also included, which includes:

[0017] A liquid storage chamber is disposed on the top of the top cover;

[0018] Two liquid separators are provided, and each liquid separator is connected to the liquid storage chamber. A valve is provided on each liquid separator.

[0019] The nozzle is connected to the liquid distribution pipe and faces the glass cover.

[0020] To further ensure the cleaning effect of the cleaning roller, the cleaning roller is rotatably disposed inside the driving magnet frame and the driven magnet frame via a rotating assembly, the rotating assembly comprising:

[0021] A rotating plate is rotatably disposed inside the driving magnet frame or the driven magnet frame via a driving rod, and a cleaning roller is disposed outside the rotating plate;

[0022] A drive gear, which is disposed at the top of the drive rod;

[0023] Fixed gear ring one and fixed gear ring two are both located on the top of the top frame, and the two drive gears mesh with fixed gear ring one and fixed gear ring two respectively.

[0024] To further ensure the cleaning effect of the cleaning roller, in addition to the above solution, a rinsing mechanism is also included. The rinsing mechanism is used to rinse the cleaning roller and includes:

[0025] Mounting plates are provided in two forms, with each mounting plate being disposed inside the drive magnet frame or the driven magnet frame, respectively.

[0026] A flushing pipe, wherein multiple flushing pipes are provided, and the multiple flushing pipes are connected by a connecting pipe, the connecting pipe being connected to the liquid storage chamber, and a valve is provided on the flushing pipe;

[0027] The punch is connected to the flushing pipe. The mounting plate has multiple flushing ports, and the punch and the flushing port correspond one-to-one. The punch is rotatably disposed inside the flushing port.

[0028] To expel the cleaning liquid from the cleaning roller, a squeezing assembly is also included. Two sets of squeezing assemblies are provided, respectively disposed on the driving magnet frame and the driven magnet frame. Each squeezing assembly includes:

[0029] A rotating rod, which is rotatably mounted on the driving magnet frame and the driven magnet frame;

[0030] A driven gear is disposed at the top of the rotating rod, and the driven gear is connected to the driving gear in a transmission manner;

[0031] An eccentric block is disposed outside the rotating rod. The eccentric block and the mounting plate are in contact on the side away from the cleaning roller. The mounting plate is disposed inside the driving magnet frame or the driven magnet frame by a plurality of return springs.

[0032] To provide sufficient illumination for the biomimetic animal model, an illumination mechanism is also included, which includes:

[0033] The lighting fixture includes multiple lighting fixtures arranged at equal angles on the top frame. The top frame has multiple lighting cavities, with each lighting fixture corresponding to one of the lighting cavities. The lighting fixture is rotatably disposed inside the lighting cavity.

[0034] An angle adjustment structure is provided, and multiple angle adjustment structures are rotatably mounted on the top frame. Each angle adjustment structure corresponds to a lighting lamp, and the output end of the angle adjustment structure is rotatably connected to the end of the lighting lamp away from the center of the glass cover.

[0035] To collect wastewater generated during cleaning, the above solution also includes a wastewater collection component, which comprises:

[0036] A wastewater tank, wherein the wastewater tank is connected to the mounting base;

[0037] A limiting block is provided, and multiple limiting blocks are provided. The limiting blocks are disposed inside the mounting base, and the glass cover and the limiting blocks are in sliding engagement.

[0038] A sewage pipe is connected to the sewage tank, and a valve is installed on the sewage pipe.

[0039] To improve the stability of the booth, a support plate is provided on the top of the base, and multiple ball bearings are rotatably arranged on the bottom of the booth, with the ball bearings in contact with the support plate.

[0040] (III) Beneficial Effects

[0041] Compared with the prior art, the present invention provides a biomimetic animal model display platform, which has the following beneficial effects:

[0042] 1. In this invention, the driving magnet frame drives the cleaning roller to rotate around the inside of the glass cover. The driving magnet frame and the driven magnet frame attract each other, which also drives the driven magnet frame and the cleaning roller to rotate around the outside of the glass cover. The cleaning rollers inside and outside the glass cover work together to clean the glass cover, removing the fog and stains on the surface of the glass cover, ensuring the cleanliness of the glass cover, thus making it easier for visitors to observe the bionic animal model.

[0043] 2. In this invention, the liquid distribution pipe is opened and closed by a valve, so that the cleaning liquid in the storage tank is sprayed onto the outer surface of the glass cover through a nozzle. The cleaning roller is used to clean the surface of the glass cover better. The wastewater generated during cleaning falls down the cleaning roller into the interior of the mounting base and is discharged through the wastewater tank and drain pipe.

[0044] 3. In this invention, the bionic animal model is placed on the top of the exhibition stand. The rotation of the exhibition stand can drive the bionic animal model to rotate, allowing visitors to observe the bionic animal model more comprehensively from one position. The angle adjustment structure can drive the lighting to rotate, and the angle of the lighting can be adjusted to provide multi-angle lighting for the bionic animal model, making it easier for visitors to observe the details of the bionic animal model more clearly.

[0045] 4. In this invention, the driving magnet frame and the driven magnet frame can drive the driving gear to rotate around the glass cover. Under the action of the fixed gear ring one and the fixed gear ring two, the driving gear can rotate on its own axis while revolving around the center, driving the driving rod and the rotating plate to rotate, changing the contact area between the cleaning roller and the glass cover. The rinsing pipe and the punch spray the cleaning liquid onto the surface of the cleaning roller to rinse it. At the same time, the driving gear drives the driven gear and the rotating rod to rotate, driving the eccentric block to rotate, pushing the mounting plate to squeeze the cleaning roller, thus cleaning and squeezing the cleaning roller. This solution facilitates rinsing of the cleaning roller and maintains the cleaning effect of the cleaning roller.

[0046] 5. Therefore, compared with the existing exhibition method that uses a rotating platform to place exhibits and a glass cover to protect them, this solution uses a driving magnet frame to drive a driven magnet frame to rotate around the glass cover, which in turn drives two cleaning rollers to clean the inner and outer surfaces of the glass cover. At the same time, cleaning liquid can be sprayed onto the surface of the glass cover to improve the cleaning effect. Furthermore, the cleaning rollers rotate on their own axis while revolving around the glass cover, and the cleaning liquid sprayed onto the surface of the cleaning rollers can rinse them and squeeze them to ensure the cleaning effect of the cleaning rollers on the glass cover. Attached Figure Description

[0047] Figure 1 This is a three-dimensional structural schematic diagram showing a partial cross-section in Embodiment 1 of this application;

[0048] Figure 2 This is a three-dimensional structural diagram of the cleaning mechanism in Embodiment 1 of this application;

[0049] Figure 3 This is a three-dimensional structural diagram of the top cover and the cleaning liquid spraying mechanism in Embodiment 1 of this application;

[0050] Figure 4 As in Embodiment 1 of this application Figure 1 A magnified schematic diagram of the partial structure at point A in the middle;

[0051] Figure 5 This is a three-dimensional structural diagram of the rotating component and the extruding component in Embodiment 1 of this application;

[0052] Figure 6 This is a three-dimensional structural diagram of the mounting base and sewage collection assembly in Embodiment 1 of this application;

[0053] Figure 7 This is a three-dimensional structural diagram of the rotating shaft, motor one, driving gear and driven gear ring in Embodiment 1 of this application;

[0054] Figure 8 This is a three-dimensional structural diagram of the base, driven gear ring, transmission gear and internal gear ring in Embodiment 1 of this application;

[0055] Figure 9 This is a schematic diagram of the overall three-dimensional structure in Embodiment 1 of this application;

[0056] Figure 10 As in Embodiment 1 of this application Figure 2 A magnified schematic diagram of the local structure at point B;

[0057] Figure 11 As in Embodiment 1 of this application Figure 5 A magnified schematic diagram of the structure at point C in the middle;

[0058] Figure 12 This is a three-dimensional structural diagram of the glass cover, base, and lighting mechanism in Embodiment 2 of this application;

[0059] Figure 13 As in Embodiment 1 of this application Figure 12 A magnified schematic diagram of the local structure at point D;

[0060] Figure 14 This is a schematic diagram of the structure of the lighting mechanism in Embodiment 1 and Embodiment 2 of this application, which is used to illuminate the bionic animal model.

[0061] In the picture:

[0062] 1. Display stand; 2. Glass cover; 3. Base; 4. Mounting seat; 5. Top frame; 6. Top cover; 7. Rotating shaft; 8. Motor 1; 9. Drive gear; 10. Driven gear ring; 11. Limiting ring; 12. Rotating rod; 13. Transmission gear; 14. Internal gear ring; 15. Connecting plate; 16. Connecting seat; 17. Support plate; 18. Ball bearing; 19. Push block; 20. Support rod;

[0063] 101. Driven magnet frame; 102. Driven magnet frame; 103. Cleaning roller;

[0064] 201. Liquid storage chamber; 202. Dispensing pipe; 203. Nozzle;

[0065] 301. Rotating plate; 302. Drive gear; 303. Fixed gear ring one; 304. Fixed gear ring two; 305. Drive rod;

[0066] 401. Mounting plate; 402. Flushing pipe; 403. Punch; 404. Connecting pipe;

[0067] 501. Rotating rod; 502. Driven gear; 503. Eccentric block;

[0068] 601. Lighting lamp; 602. Angle adjustment structure;

[0069] 701. Sewage tank; 702. Limiting block; 703. Sewage pipe. Detailed Implementation

[0070] 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. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0071] Example 1, please refer to Figures 1 to 11 The biomimetic animal model display platform includes a display stand 1 and a glass cover 2. The biomimetic animal model is installed on the top of the display stand 1. It also includes a base 3, a mounting seat 4, a top frame 5, a top cover 6, and a cleaning mechanism. Compared with the existing technology that uses a rotating platform to place exhibits and a glass cover 2 to protect them, this solution uses a driving magnet frame 101 to drive a driven magnet frame 102 to rotate around the glass cover 2, which in turn drives two cleaning rollers 103 to clean the inner and outer surfaces of the glass cover 2. At the same time, cleaning liquid can be sprayed onto the surface of the glass cover 2 to improve the cleaning effect. The cleaning rollers 103 rotate on their own axis while revolving around the center, and the cleaning liquid sprayed onto the surface of the cleaning rollers 103 can rinse the cleaning rollers 103. At the same time, the cleaning rollers 103 can be squeezed to ensure the cleaning effect of the cleaning rollers 103 on the glass cover 2.

[0072] The display stand 1 is rotatably mounted on top of the base 3. Specifically, the display stand 1 is rotatably mounted on top of the base 3 via a rotating shaft 7. The base 3 contains a motor 8, and the output end of the motor 8 is equipped with a drive gear 9. A driven gear ring 10 is fixedly mounted on the outside of the rotating shaft 7. The driven gear ring 10 meshes with the drive gear 9. The motor 8 can drive the drive gear 9 to rotate, thereby driving the driven gear ring 10 and the rotating shaft 7 to rotate, which in turn drives the display stand 1 and the bionic animal model to rotate. This allows visitors at different positions on the bionic animal model display platform to observe the bionic animal model more comprehensively from one location.

[0073] Mounting base 4 is located at the top of base 3, and glass cover 2 is slidably located inside mounting base 4. Mounting base 4 can limit the glass cover 2 to ensure its stability, and can also be disassembled and assembled. Glass cover 2 can protect the bionic animal model on booth 1, preventing direct contact between the bionic animal model and visitors and causing damage. At the same time, it can separate booth 1 from the external exhibition hall, reducing oxidation and dust accumulation on the bionic animal model.

[0074] The top frame 5 is located at the top of the glass cover 2, and the top cover 6 is rotatably located inside the top frame 5. Specifically, the top cover 6 is provided with a limiting ring 11 on the outside, and a limiting groove matching the limiting ring 11 is opened on the top frame 5. The limiting ring 11 is located inside the limiting groove. The rotation of the top cover 6 can be realized through the cooperation of the limiting ring 11 and the limiting groove, while ensuring the stability of the top cover 6.

[0075] The cleaning mechanism is used to clean the surface of the glass cover 2. The cleaning mechanism includes a drive magnet frame 101, a driven magnet frame 102, and a cleaning roller 103. The drive magnet frame 101 is rotatably disposed inside the glass cover 2. Specifically, the base 3 has multiple rotating rods 12 inside, and transmission gears 13 are rotatably disposed on the outside of the rotating rods 12. Adjacent transmission gears 13 mesh with each other. An internal gear ring 14 is rotatably disposed inside the base 3, and a connecting plate 15 is disposed on the top of the internal gear ring 14. The drive magnet frame 101... A connecting seat 16 is provided at the bottom, and a connecting groove matching the connecting plate 15 is opened on the connecting seat 16. The transmission gear 13 located on the inner side meshes with the driven gear ring 10, and the transmission gear 13 located on the outer side meshes with the internal gear ring 14. The motor 8 drives the driving gear 9 and the driven gear ring 10 to rotate. When the display stand 1 rotates, the driven gear ring 10 drives the internal gear ring 14 to rotate through the transmission gear 13, thereby driving the drive magnet frame 101 to rotate around the rotating shaft 7 through the connecting plate 15 and the connecting seat 16. At the same time, the connecting plate 15 and the connecting seat 16... The seat 16 is in a sliding fit, which allows the drive magnet frame 101, connecting plate 15, and internal gear ring 14 to separate when the glass cover 2 is removed. The driven magnet frame 102 is located outside the glass cover 2 and corresponds to the position of the drive magnet frame 101. The ends of the drive magnet frame 101 and the driven magnet frame 102 that are close to each other have opposite magnetism, and the ends of the drive magnet frame 101 and the driven magnet frame 102 that are close to the glass cover 2 are open. Two cleaning rollers 103 are provided, and the two cleaning rollers 103 are respectively located on the drive magnet. Inside frame 101 and driven magnet frame 102, cleaning roller 103 contacts glass cover 2. Drive magnet frame 101 and driven magnet frame 102 attract each other. When drive magnet frame 101 rotates, it can drive driven magnet frame 102 to move along with it through magnetic force, thereby driving cleaning roller 103 to rotate around glass cover 2 to clean the inner and outer surfaces of glass cover 2. Drive magnet frame 102 and drive magnet frame 101 drive cleaning roller 103 to press against the surface of glass cover 2, which can ensure the cleaning effect of cleaning roller 103.

[0076] It should be further explained that multiple rotating beads are rotatably provided at the ends of the driven magnet frame 102 and the driving magnet frame 101 that are close to each other. The rotating beads contact the glass cover 2, so that there is a certain gap between the driven magnet frame 102 and the driving magnet frame 101 and the glass cover 2. This prevents the driving magnet frame 101 and the driven magnet frame 102 from scratching the glass cover 2 during rotation, and also reduces the resistance when the driving magnet frame 101 and the driven magnet frame 102 rotate.

[0077] It should also be noted that the gear ratio between the driving gear 9 and the driven gear ring 10 is different from the gear ratio between the driven gear ring 10 and the internal gear ring 14. This causes the rotational angular velocities of the display stand 1 and the driving magnet frame 101 to be different. This prevents the display stand 1 and the driving magnet frame 101 from rotating synchronously and remaining relatively stationary, which would obstruct a specific area of ​​the bionic animal model and affect visitors' viewing experience. The difference in rotation between the two allows the driving magnet frame 101 and the display stand 1 to maintain relative rotation, avoiding obstruction of the same position of the bionic animal model. It also controls the rotational speed of the motor 8 to prevent the display stand 1 from rotating too fast, which would cause instability in the bionic animal model. At the same time, rapid rotation of the display stand 1 is not conducive to detailed observation of the bionic animal model.

[0078] To improve the stability of the display stand 1, a support plate 17 is provided on the top of the base 3, and multiple ball bearings 18 are rotatably arranged on the bottom of the display stand 1. The ball bearings 18 contact the support plate 17, which is located on the top of the rotating rod 12. The rotating shaft 7 and the support plate 17 are rotatably engaged. The rotating rod 12 supports the support plate 17, and the ball bearings 18 and the rotating shaft 7 support the display stand 1. The rotation of the ball bearings 18 can reduce the resistance to the rotation of the display stand 1. There is a certain gap between the support plate 17 and the base 3, which allows the connecting plate 15 to pass through, so that the internal gear ring 14 can drive the drive magnet frame 101 to rotate.

[0079] To improve the cleaning effect on the glass cover 2, a cleaning liquid spraying mechanism is also included. This mechanism includes a liquid storage chamber 201, a dispensing pipe 202, and a nozzle 203. The liquid storage chamber 201 is located on the top of the top cover 6. Two dispensing pipes 202 are provided, connected to the liquid storage chamber 201 and equipped with valves. The nozzle 203 is connected to the dispensing pipe 202 and faces the glass cover 2. The liquid storage chamber 201 contains cleaning liquid. The opening and closing of the dispensing pipe 202 is controlled by the valves, causing the drive magnet frame 101 to rotate. When the liquid distribution pipe 202 in the direction of movement is opened, the cleaning liquid is sprayed onto the surface of the glass cover 2 through the nozzle 203 under the combined action of gravity and external conveying equipment. The axis of the liquid storage chamber 201, the axis of the top cover 6 and the axis of the glass cover 2 are coincident. The top of the liquid storage chamber 201 is rotated to connect with the liquid delivery pipe, which can connect the liquid delivery pipe and the external conveying equipment. The external conveying equipment can deliver the cleaning liquid into the interior of the liquid storage chamber 201. The cleaning liquid falls along the glass cover 2, and the cleaning roller 103 then wipes the sprayed area of ​​the cleaning liquid, thereby ensuring the cleaning effect on the glass cover 2.

[0080] It should be noted that the connecting pipe 404 connected to the driven magnet frame 102 and the connecting pipe 404 connected to the driving magnet frame 101 are connected by a quick connector via a telescopic hose. The quick connector allows for quick connection and disconnection between the two connecting pipes 404, thereby allowing the driven magnet frame 102 to be removed from the surface of the glass cover 2.

[0081] To ensure the cleaning effect of the cleaning roller 103, the cleaning roller 103 is rotatably mounted inside the drive magnet frame 101 and the driven magnet frame 102 via a rotating assembly. The rotating assembly includes a rotating plate 301, a drive gear 302, a first fixed gear ring 303, and a second fixed gear ring 304. The rotating plate 301 is rotatably mounted inside the drive magnet frame 101 or the driven magnet frame 102 via a drive rod 305. The cleaning roller 103 is mounted outside the rotating plate 301. The drive gear 302 is mounted on top of the drive rod 305. The first fixed gear ring 303 and the second fixed gear ring 304 are both mounted on top of the top frame 5. The two drive gears 302 mesh with the first fixed gear ring 303 and the second fixed gear ring 304 respectively. When the moving magnet frame 101 and the driven magnet frame 102 rotate around the glass cover 2, the driving magnet frame 101 and the driven magnet frame 102 drive the driving gear 302 to rotate around the glass cover 2. The fixed gear ring 1 303 and the fixed gear ring 2 304 are kept stable under the action of the top frame 5. When the driving gear 302 rotates around the fixed gear ring 1 303 and the fixed gear ring 2 304, the driving gear 302 will rotate on its own, thereby driving the driving rod 305 and the rotating plate 301 to rotate, driving the cleaning roller 103 to rotate, so that the cleaning roller 103 contacts the glass cover 2 at different positions to clean it, avoiding the cleaning roller 103 from contacting the glass cover 2 at the same position for a long time, which would cause a decrease in cleaning ability, and making full use of the cleaning roller 103.

[0082] To further ensure the cleaning effect of the cleaning roller 103, a rinsing mechanism is also included. This rinsing mechanism rinses the cleaning roller 103 and includes a mounting plate 401, rinsing pipes 402, and a punch 403. Two mounting plates 401 are provided, each located inside either the driving magnet frame 101 or the driven magnet frame 102. Multiple rinsing pipes 402 are provided and connected via a connecting pipe 404, which is connected to the liquid storage chamber 201. The rinsing pipes 402 are equipped with… The valve, punch 403 and flushing pipe 402 are connected. Multiple flushing ports are provided on the mounting plate 401. The punch 403 and the flushing port correspond one to one. The punch 403 is rotatably set inside the flushing port. The outlet of the punch 403 is tilted downwards. The cleaning liquid in the liquid storage chamber 201 is sent into the interior of the connecting pipe 404. The opening and closing of multiple valves are controlled, so that multiple flushing pipes 402 are opened sequentially from top to bottom, thereby flushing the dirt and impurities on the outside of the cleaning roller 103 from top to bottom, ensuring the cleaning effect of the cleaning roller 103.

[0083] To expel the cleaning liquid from the cleaning roller 103, a squeezing assembly is also included. Two sets of squeezing assemblies are provided, respectively mounted on the driving magnet frame 101 and the driven magnet frame 102. Each squeezing assembly includes a rotating rod 501, a driven gear 502, and an eccentric block 503. The rotating rod 501 is rotatably mounted on both the driving magnet frame 101 and the driven magnet frame 102. The driven gear 502 is located at the top of the rotating rod 501 and is connected to the driving gear 302. The eccentric block 503 is located outside the rotating rod 501 and contacts the side of the mounting plate 401 away from the cleaning roller 103. The mounting plate 401 is located inside the driving magnet frame 101 or the driven magnet frame 102 via multiple return springs. When the driving gear 302 rotates around the fixed gear ring 303 and the fixed gear ring 304, the driving gear 302 rotates on its own axis while simultaneously revolving around the ring. The driven gear 502 and the rotating rod 501 rotate, thereby driving the eccentric block 503 to rotate. Under the action of the return spring, the mounting plate 401 is pressed against the surface of the eccentric block 503. When the end of the eccentric block 503 closer to the rotating rod 501 contacts the mounting plate 401, the mounting plate 401 is in a position away from the cleaning roller 103. As the eccentric block 503 rotates, the side of the eccentric block 503 away from the rotating rod 501 contacts the mounting plate 401, which can push the mounting plate 401 towards the cleaning roller 103. Together with the rotating plate 301, the mounting plate 401 squeezes the cleaning roller 103, squeezing out the cleaning liquid inside the cleaning roller 103. The eccentric block 503 continues to rotate, and under the action of the return spring, the mounting plate 401 returns to its original position with the eccentric block 503, that is, the position away from the cleaning roller 103. This achieves automatic cleaning and squeezing of the cleaning roller 103, ensuring the cleaning effect of the cleaning roller 103.

[0084] It should be further explained that multiple pushing blocks 19 are provided on the outside of the connecting pipe 404. The pushing blocks 19 are in contact with the eccentric block 503. During the rotation of the eccentric block 503, there are two rotating rods 501, located on both sides of the pushing block 19. When one eccentric block 503 rotates to a certain angle, it pushes the pushing block 19, causing the connecting pipe 404 and the flushing pipe 402 to rotate at a certain angle. When the other eccentric block 503 rotates to contact the pushing block 19, it pushes the eccentric block 503 back to its original position. The installation angle and rotation angle of the two eccentric blocks 503 are the same, realizing the synchronous pushing of the mounting plate 401. At the same time, it reciprocates by pushing the pushing block 19 and the connecting pipe 404, changing the flushing angle of the punch 403, and improving the cleaning range and cleaning effect of the cleaning roller 103. Please also refer to [the relevant documentation]. Figure 11 The top section of the connecting pipe 404 located inside the drive magnet frame 101 and the driven magnet frame 102 is configured as a retractable hose structure, which can cooperate with the movement of the mounting plate 401 and the rotation of the flushing pipe 402.

[0085] To provide sufficient illumination for the bionic animal model, an illumination mechanism is also included. This mechanism comprises lighting lamps 601 and angle adjustment structures 602. Multiple lighting lamps 601 are arranged at equal angles on the top frame 5. Multiple illumination cavities are formed on the top frame 5, with each lighting lamp 601 corresponding to one of the cavities. Each lighting lamp 601 is rotatably mounted inside one of the cavities and can rotate vertically within the cavity. Multiple angle adjustment structures 602 are also arranged, rotatably mounted on the top frame 5, and correspond one-to-one with each lighting lamp 601. The output end of each angle adjustment structure 602 is rotatably connected to the side of each lighting lamp 601 furthest from the center of the glass cover 2. The extension and retraction of the angle adjustment structure 602 allows the lighting lamps 601 to rotate vertically, adjusting their illumination angle to facilitate observation of details of the bionic animal model from different angles.

[0086] To collect wastewater generated during cleaning, in addition to the above-mentioned solution, a wastewater collection component is also included. This component includes a wastewater tank 701, a limiting block 702, and a drain pipe 703. The wastewater tank 701 is connected to the mounting base 4. Multiple limiting blocks 702 are provided and are located inside the mounting base 4. The glass cover 2 and the limiting blocks 702 are in sliding engagement. The drain pipe 703 is connected to the wastewater tank 701 and is equipped with a valve. The driving magnet frame 101 and the driven magnet frame 102 drive the cleaning roller 103 to rotate around the glass cover 2. The cleaning liquid sprayed by the nozzle 203 is wiped away by the cleaning roller 103, cleaning the glass cover 2. A certain gap exists between the limiting block 702 and the inner wall of the mounting base 4, allowing the wastewater generated during cleaning to fall through this gap along the cleaning roller 103 into the interior of the mounting base 4 and flow into the wastewater collection component. The bottom of both the driving magnet frame 101 and the driven magnet frame 102 in the water tank 701 is inclined, with the end near the glass cover 2 being lower in height and located above the sewage tank 701. Sewage from the flushing of the cleaning roller 103 by the punch 403 and from the squeezing of the cleaning roller 103 by the mounting plate 401 can fall into the sewage tank 701. The sewage can be discharged from the sewage tank 701 by opening and closing the drain pipe 703 through the valve. Multiple support rods 20 are provided on the inner bottom wall of the mounting base 4. The bottom end of the glass cover 2 contacts the support rods 20. A certain gap is created between the glass cover 2 and the inner bottom wall of the mounting base 4 through the support rods 20, so that the water generated by the mist cleaning inside the glass cover 2 can flow into the sewage tank 701 for collection and discharge. The top of the limiting block 702 is chamfered to facilitate the installation of the glass cover 2.

[0087] The working principle or usage process of the bionic animal model display platform is as follows: the bionic animal model is installed on the display stand 1, the glass cover 2 is installed between multiple limiting blocks 702, the two connecting pipes 404 are connected by quick connectors, the driven magnet frame 102 is attracted to the outside of the glass cover 2 and the corresponding position of the driving magnet frame 101, the motor 8 drives the drive gear 9 to rotate, thereby driving the driven gear ring 10 and the rotating shaft 7 to rotate, driving the display stand 1 to rotate and display the bionic animal model.

[0088] During this process, the driven gear ring 10 drives the inner gear ring 14 and the drive magnet frame 101 to rotate around the rotating shaft 7 through the transmission gear 13. That is, the drive magnet frame 101 rotates along the inner wall of the glass cover 2. The drive magnet frame 101 causes the driven magnet frame 102 to be attracted to the outer surface of the glass cover 2 and move with the drive magnet frame 101, thereby driving the cleaning roller 103 to clean the inner and outer surfaces of the glass cover 2. At the same time, under the action of the drive rod 305 and the rotating rod 501, the top cover 6 is driven to rotate with the drive magnet frame 101. The liquid distribution pipe 202 located in the rotation direction of the drive magnet frame 101 is opened periodically through the valve, so that the cleaning liquid is sprayed on the surface of the glass cover 2. Then the cleaning roller 103 moves to the spraying position to clean the glass cover 2. The wastewater generated by cleaning falls down the cleaning roller 103 into the interior of the mounting base 4 and then enters the interior of the wastewater tank 701.

[0089] During this process, the driving magnet frame 101 and the driven magnet frame 102 drive the driving gear 302 to rotate around the fixed gear ring 1 303 and the fixed gear ring 2 304, causing the driving gear 302 to rotate on its own axis while revolving around the center, driving the driving rod 305 and the rotating plate 301 to rotate, thereby driving the cleaning roller 103 to rotate, so that different areas of the cleaning roller 103 come into contact with the glass cover 2 to clean it. At the same time, the driving gear 302 drives the driven gear 502 and the rotating rod 501 to rotate, driving the eccentric block 503 to rotate, pushing the mounting plate 401 to squeeze the cleaning roller 103. Meanwhile, the valves on the rinsing pipe 402 are opened in sequence, allowing the cleaning liquid to rinse the surface of the cleaning roller 103 from top to bottom. The eccentric block 503 pushes the pushing block 19 to adjust the water outlet direction of the punch 403. The wastewater generated by rinsing also falls into the interior of the wastewater tank 701. The wastewater can be discharged periodically by opening the drain pipe 703 through the valve.

[0090] Example 2, please refer to Figures 12 to 14 Based on Embodiment 1, this embodiment further improves the lighting effect on the biomimetic animal model by adding a lighting mechanism identical to that in Embodiment 1 to the outside of the mounting base 4. The upper lighting mechanism is vertically aligned with the lower lighting mechanism. Please refer to [link / reference]. Figure 12Specifically, multiple rotating seats are provided on the outside of the mounting base 4. An angle adjustment structure 602 and a lighting lamp 601 are rotatably mounted on the rotating seats. The output end of the angle adjustment structure 602 is rotatably connected to the side of the lighting lamp 601 away from the center of the glass cover 2. The angle adjustment structure 602 can drive the lighting lamp 601 to swing up and down, adjusting the lighting angle of the lighting lamp 601. The lighting mechanism on the top frame 5 provides top lighting for the bionic animal model, and the lighting mechanism on the mounting base 4 provides bottom lighting for the bionic animal model. The extension and retraction length of the angle adjustment structure 602 is controlled. In this embodiment, the angle adjustment structure 602 is preferably an electric cylinder. Since the shape of the bionic animal model is not a regular structure, there will be many blind spots in the bionic animal model under light. This embodiment two The bionic animal model is illuminated by two sets of lighting mechanisms positioned vertically. During operation, the angle adjustment of the upper and lower lighting mechanisms is asymmetrical. That is, when the upper lighting mechanism reduces the illumination range of the lamp 601 on the bionic animal model's surface, the lower lighting mechanism gradually increases the illumination range of the lamp 601. In other words, when the upper electric cylinder extends, the lower electric cylinder retracts. This implementation only requires adjusting the initial position of the electric cylinders before starting operation, a well-known adjustment method that can be operated by those skilled in the art. Simultaneously, the two lamps 601 located in the same longitudinal position always ensure comprehensive illumination of the longitudinal surface of the bionic animal model. Please refer to [link to relevant documentation]. Figure 14 This system ensures that there are no blind spots on the longitudinal viewing surface of the bionic animal model. Simultaneously, the continuous angle changes of the lighting lamp 601 provide comprehensive illumination to all areas of the model's surface. As the angle changes, the blind spots also change. When a blind spot appears due to the upper lighting lamp 601, the lower lighting lamp 601, by changing its angle and illuminating that spot, allows the observer to clearly see the details of the bionic animal model in that blind spot. Similarly, a blind spot appearing due to the lower lighting lamp 601 will be eliminated by the upper lighting lamp 601. Therefore, by continuously changing the light from the lighting lamp 601, each changing blind spot is illuminated. Combined with the slow rotation of the bionic animal model, this allows the observer to observe every detail of the model more comprehensively. Details previously unobserved in blind spots will be clearly observed again due to the changing illumination from the lighting lamp 601. Of course, in actual observation, since there are many observers, they do not necessarily stand in one position. They can also move around, coordinating with the rotation of the bionic animal model and the angle changes of the lighting lamp 601, to achieve a more comprehensive observation.

[0091] Additionally, it should be noted that staff can also control the electric cylinder to simultaneously illuminate the bionic animal model with both the upper and lower lights 601, focusing the light on the same point to fully illuminate the details of the model. This, combined with the staff's explanation, facilitates a better understanding of the bionic animal model.

[0092] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A biomimetic animal model display platform, comprising a display stand (1) and a glass cover (2), characterized in that, Also includes: The base (3) and the display stand (1) are rotatably mounted on the top of the base (3); Mounting base (4), the mounting base (4) is disposed at the top of the base (3), and the glass cover (2) is slidably disposed inside the mounting base (4); Top frame (5), the top frame (5) is disposed at the top of the glass cover (2); Top cover (6), which is rotatably disposed inside the top frame (5); A cleaning mechanism is used to clean the surface of the glass cover (2), and the cleaning mechanism includes: A drive magnet frame (101) is rotatably disposed inside the glass cover (2); The driven magnet frame (102) is located outside the glass cover (2) and corresponds to the position of the driving magnet frame (101). The driving magnet frame (101) and the driven magnet frame (102) have opposite magnetic properties at their respective ends, and the ends of the driving magnet frame (101) and the driven magnet frame (102) near the glass cover (2) are open structures. Cleaning roller (103), two cleaning rollers (103) are provided, and the two cleaning rollers (103) are respectively disposed inside the driving magnet frame (101) and the driven magnet frame (102). The cleaning roller (103) is in contact with the glass cover (2).

2. The biomimetic animal model display platform according to claim 1, characterized in that, It also includes a cleaning fluid spraying mechanism, which includes: A liquid storage chamber (201) is disposed on the top of the top cover (6); Two liquid distribution pipes (202) are provided. The liquid distribution pipes (202) are connected to the liquid storage chamber (201). A valve is provided on the liquid distribution pipe (202). The nozzle (203) is connected to the liquid distribution pipe (202) and faces the glass cover (2).

3. The biomimetic animal model display platform according to claim 2, characterized in that, The cleaning roller (103) is rotatably disposed inside the driving magnet frame (101) and the driven magnet frame (102) via a rotating assembly, the rotating assembly comprising: A rotating plate (301) is rotatably disposed inside the driving magnet frame (101) or the driven magnet frame (102) via a driving rod (305), and a cleaning roller (103) is disposed outside the rotating plate (301). A drive gear (302) is disposed on the top of the drive rod (305); Fixed gear ring one (303) and fixed gear ring two (304) are provided on the top of the top frame (5). The two drive gears (302) mesh with the fixed gear ring one (303) and the fixed gear ring two (304) respectively.

4. The biomimetic animal model display platform according to claim 3, characterized in that, It also includes a rinsing mechanism for rinsing the cleaning roller (103), the rinsing mechanism comprising: Mounting plate (401), two mounting plates (401) are provided, and the two mounting plates (401) are respectively disposed inside the driving magnet frame (101) or the driven magnet frame (102); A flushing pipe (402) is provided, and multiple flushing pipes (402) are connected by a connecting pipe (404). The connecting pipe (404) is connected to the liquid storage chamber (201), and a valve is provided on the flushing pipe (402). A punch (403) is connected to the flushing pipe (402). The mounting plate (401) has multiple flushing ports. The punch (403) and the flushing ports correspond one-to-one. The punch (403) is rotatably disposed inside the flushing port.

5. The biomimetic animal model display platform according to claim 4, characterized in that, It also includes a pressing assembly, of which two sets are provided, the two sets of pressing assemblies being respectively disposed on the driving magnet frame (101) and the driven magnet frame (102), the pressing assembly comprising: A rotating rod (501) is rotatably mounted on the driving magnet frame (101) and the driven magnet frame (102); Driven gear (502) is disposed at the top of the rotating rod (501) and is connected to the driving gear (302) in a transmission manner; An eccentric block (503) is disposed outside the rotating rod (501). The eccentric block (503) and the mounting plate (401) are in contact on the side away from the cleaning roller (103). The mounting plate (401) is disposed inside the driving magnet frame (101) or the driven magnet frame (102) by a plurality of return springs.

6. The biomimetic animal model display platform according to claim 5, characterized in that, It also includes a lighting mechanism, which comprises: The lighting lamp (601) is provided in multiple ways. The multiple lighting lamps (601) are arranged at equal angles on the top frame (5). The top frame (5) has multiple lighting cavities. The lighting lamp (601) and the lighting cavity correspond one-to-one. The lighting lamp (601) is rotatably arranged inside the lighting cavity. Angle adjustment structure (602) is provided in multiple ways. The angle adjustment structure (602) is rotatably mounted on the top frame (5). The angle adjustment structure (602) and the lighting lamp (601) correspond one-to-one. The output end of the angle adjustment structure (602) is rotatably connected to the lighting lamp (601).

7. The biomimetic animal model display platform according to claim 6, characterized in that, It also includes a wastewater collection assembly, which comprises: Wastewater tank (701), the wastewater tank (701) and the mounting base (4) are connected; A limiting block (702) is provided in multiple ways. The limiting block (702) is disposed inside the mounting base (4). The glass cover (2) and the limiting block (702) are in sliding fit. A sewage pipe (703) is connected to the sewage tank (701), and a valve is provided on the sewage pipe (703).

8. The biomimetic animal model display platform according to claim 7, characterized in that, The base (3) is provided with a support plate (17) on top, and the bottom of the display stand (1) is provided with a plurality of ball bearings (18) that rotate and contact the support plate (17).

Citation Information

Patent Citations

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