Highly-realistic visual-scene platform device for flight simulator

By using electric guide rails and connecting shock-absorbing structures in conjunction with a lubrication and guiding mechanism, the problems of inconvenient movement and heat dissipation of the flight simulator visual platform have been solved, achieving stable movement and efficient heat dissipation.

WO2025223122A1PCT designated stage Publication Date: 2025-10-30SHANGHAI ZHONGFANG COMP TECH
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Patent Information

Application Number
PCT/CN2025/084244
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-25
Filing Date
2025-03-21
Publication Date
2025-10-30

AI Technical Summary

Technical Problem

Existing flight simulator visual platforms cannot adapt to the movement of the display screen, resulting in unrealistic visual effects and bulky size that makes them inconvenient to clean and dissipate heat.

Method used

The display screen is moved by an electric guide rail and a shock-absorbing structure. The smoothness of movement is improved by a lubrication guide mechanism, the shock absorption of the moving components is provided, and a heat dissipation cleaning mechanism is provided for cleaning and heat dissipation.

Benefits of technology

It enables stable switching of the display screen, improves visual effects, and ensures the cleaning and heat dissipation of the device, thus extending its service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

A highly-realistic visual-scene platform device for a flight simulator, the highly-realistic visual-scene platform device comprising a display screen mounting base (1), a display screen (3) and an electric guide rail (4), wherein the electric guide rail (4) is provided with a connection damping structure for driving the display screen mounting base (1) to move and performing buffering and damping; the display screen mounting base (1) is provided with a lubricating guide mechanism for ensuring that the display screen mounting base (1) moves stably and preventing vibration; and the connection damping structure is provided with a movement buffering assembly for realizing movement resistance increasing, buffering and damping. In the highly-realistic visual-scene platform device for a flight simulator, by means of the provided electric guide rail (4) cooperating with the connection damping structure, the display screen mounting base (1) is fixed, and the display screen (3) is driven to move so as to realize movement damping; moreover, by means of the electric guide rail cooperating with the lubricating guide mechanism, the smoothness of movement is improved, and the movement buffering assembly buffers and damps movement, thereby ensuring that the display screen (3) can be moved and switched in accordance with distant and near views, improving visual perception and also ensuring the stability of movement adjustment, and avoiding shaking.
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Description

A high-fidelity visual platform device for flight simulators Technical Field

[0001] This invention relates to the field of flight simulator technology, specifically to a high-fidelity visual platform device for flight simulators. Background Technology

[0002] A flight simulator is software or device that simulates the flight experience, allowing users to experience the feeling of flying, including the processes of takeoff, flight, and landing. Flight simulators typically feature highly realistic graphics and physical simulations, allowing users to experience the fun and challenge of real flight. Flight simulators can be used for various purposes such as pilot training, entertainment games, and practice for flight enthusiasts.

[0003] A high-fidelity flight simulator platform is a professional-grade flight simulator device with a highly realistic visual system that can provide a more authentic flight experience. This type of simulator typically includes multiple high-definition displays or projectors, as well as specially designed landscape generation software that can simulate various flight environments, such as cities, mountains, and oceans.

[0004] As can be seen from the existing technology, current flight simulators automatically generate scenes through system control software and display them on a high-definition screen. Since the flight simulator demonstrates the perspective of flight experience, and the viewing platform is a fixed screen, it can only switch between near and far views and cannot be moved to match the screen. This makes it impossible for the user to meet their visual needs in a fixed position, greatly reducing the realism. In addition, the viewing platform is a curved screen, which is bulky and inconvenient for cleaning and heat dissipation. Therefore, this invention designs a high-fidelity viewing platform device for flight simulators that is easy to move and adjust to match near and far views to ensure visual effects and facilitates cleaning and heat dissipation, thus solving this defect of the existing technology. Summary of the Invention

[0005] Technical problems to be solved

[0006] To address the shortcomings of existing technologies, this invention provides a high-fidelity visual platform device for flight simulators, which has advantages such as easy adjustment of near and far views to ensure visual effects and efficient heat dissipation.

[0007] Technical Solution

[0008] To achieve the above objectives, the present invention provides the following technical solution: a high-fidelity visual platform device for a flight simulator, comprising a display screen mounting base, a display screen, and an electric guide rail, wherein the electric guide rail is provided with a connecting shock-absorbing structure that drives the display screen mounting base to move and provides buffering and shock absorption;

[0009] The display screen mounting base is equipped with a lubricating guide mechanism to ensure stable movement of the display screen mounting base and prevent vibration;

[0010] The display screen mounting base is also equipped with a heat dissipation and dust removal mechanism for the display screen.

[0011] The connecting shock-absorbing structure is equipped with a buffer moving component to achieve moving drag increase buffer shock absorption;

[0012] The electric guide rail, in conjunction with the connecting shock-absorbing structure, fixes the display screen mounting base and drives the display screen to move with shock absorption. At the same time, it works with the lubrication and guiding mechanism to improve the smoothness of movement, and the buffer movement component provides cushioning and shock absorption for the movement.

[0013] Preferably, the connecting shock absorption structure includes a movable seat installed at the electric guide rail slide block, a plurality of shock absorbers are installed on the top of the movable seat, a fixed frame is installed between the tops of the shock absorbers, and a plurality of shock-absorbing rubber columns that are in contact with and fit against the display screen mounting base are installed on the right side of the fixed frame.

[0014] The fixing frame is equipped with a clamping and fixing component for clamping and fixing the display screen mounting base.

[0015] Preferably, the clamping and fixing component includes a loading plate installed on the top and bottom of the fixing frame, an electric push rod is installed on the outside of the loading plate, and a rubber clamping seat for clamping and fixing the display screen mounting base is installed at the push rod of the electric push rod.

[0016] Preferably, the lubrication guiding mechanism includes two movable lubrication seats, a lubricating oil storage seat, and movable rods installed on the left and right sides of the bottom of the display screen mounting base;

[0017] The movable lubrication seat has a lubricating oil storage tank at its top. Inside the movable lubrication seat, a guide rod passes through a moving rod. At the bottom of the moving rod, an oil-absorbing cotton strip is installed, located inside the lubricating oil storage tank, passing through the moving rod and contacting the guide rod. A connecting pipe connects the bottoms of the two movable lubrication seats. An oil pump is connected to the outside of the lubricating oil storage seat. An oil suction hose connects the oil suction port of the oil pump to one of the movable lubrication seats. An oil inlet hose connects the lubricating oil storage seat to one of the movable lubrication seats. An oil discharge pipe located above the opening of the lubricating oil storage seat is connected to the oil discharge port of the oil pump.

[0018] Preferably, the interior of the lubricating oil reservoir is equipped with an oil and debris filter screen of the same length and width as the interior of the lubricating oil reservoir, and the exterior of the lubricating oil reservoir is connected to a transparent measuring tube.

[0019] Preferably, the heat dissipation cleaning mechanism includes a mounting slot on the right side of the display screen mounting base and a blower installed on the rear side of the display screen mounting base. A mesh plate in the shape of a mesh is installed and connected in the mounting slot. The display screen is installed on the right side of the mesh plate. Several blowpipes are provided on the top and bottom walls of the inner cavity of the display screen mounting base. An air pipe is connected between the air outlet of the blower and the display screen mounting base.

[0020] Preferably, the blowpipes are closely fitted and evenly distributed on the upper and lower surfaces of the display screen along the curved surface. The display screen is installed and fixed to the partition plate by fastening screws with a gap between them.

[0021] Preferably, the buffer moving assembly includes two fixed columns, and a support plate is installed between the right side surfaces of the fixed columns;

[0022] The fixed frame has several resistance-increasing moving rods installed on the left side, which pass through the support plate. The support plate has several rubber resistance-increasing sleeves that correspond one-to-one with the resistance-increasing moving rods and are passed through by the resistance-increasing moving rods. Several connecting rods are installed on the upper and lower sides of the rear surface of the support plate. A rubber band rope that is passed through the resistance-increasing moving rod is installed between two adjacent connecting rods.

[0023] Preferably, when the movable rod is located at the leftmost and rightmost positions within the lubricating oil storage tank, the rubber band is in its maximum extended state.

[0024] Beneficial effects

[0025] Compared with the prior art, the present invention provides a high-fidelity visual platform device for flight simulators, which has the following beneficial effects:

[0026] 1. The flight simulator high-fidelity visual platform device uses an electric guide rail in conjunction with the connecting shock-absorbing structure to fix the display screen mounting base and drive the display screen to move, achieving movement shock absorption. At the same time, the lubrication guide mechanism improves the smoothness of movement, and the buffer movement component buffers and absorbs the movement, ensuring that the display screen can switch between near and far views, improving the visual experience while ensuring the stability of movement adjustment and avoiding shaking.

[0027] 2. The high-fidelity visual platform device of this flight simulator achieves dust removal and heat dissipation by setting up a heat dissipation and cleaning mechanism, thereby improving the service life of the overall equipment. Attached Figure Description

[0028] Figure 1 is a perspective view of a high-fidelity visual platform device for a flight simulator proposed in this invention;

[0029] Figure 2 is a cross-sectional view of a display screen mounting base for a high-fidelity visual platform device for a flight simulator proposed in this invention;

[0030] Figure 3 is a partial structural schematic diagram of a high-fidelity visual platform device for a flight simulator proposed in this invention.

[0031] Figure 4 is a side-view perspective of a high-fidelity visual platform device for a flight simulator proposed in this invention.

[0032] Figure 5 is a bottom view of a high-fidelity visual platform device for a flight simulator proposed in this invention.

[0033] Figure 6 is a side view of a high-fidelity visual platform device for a flight simulator proposed in this invention;

[0034] Figure 7 is a rear-view stereoscopic view of a flight simulator high-fidelity visual platform device proposed in this invention.

[0035] In the diagram: 1. Display screen mounting base; 2. Mounting slot; 3. Display screen; 4. Electric guide rail; 5. Blowpipe; 6. Partition plate; 7. Blower; 8. Air pipe; 9. Movable lubrication seat; 10. Lubricating oil storage tank; 11. Moving rod; 12. Guide rod; 13. Oil-absorbing cotton strip; 14. Lubricating oil storage seat; 15. Oil and debris filter screen; 16. Transparent measuring tube; 17. Oil pump; 18. Oil suction hose; 19. Oil inlet hose; 20. Oil drain pipe; 21. Moving seat; 22. Shock absorber; 23. Fixing frame; 24. Shock-absorbing rubber column; 25. Loading plate; 26. Electric push rod; 27. Rubber clamp seat; 28. Fixed column; 29. ​​Support plate; 30. Rubber resistance-increasing sleeve; 31. Resistance-increasing moving rod; 32. Connecting rod; 33. Rubber band rope. Detailed Implementation

[0036] 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.

[0037] Please refer to Figures 1-7. A high-fidelity visual platform device for a flight simulator includes a display screen mounting base 1, a display screen 3, and an electric guide rail 4. The electric guide rail 4 is provided with a connecting shock-absorbing structure that drives the display screen mounting base 1 to move and provides buffering and shock absorption.

[0038] The shock absorption structure includes a movable seat 21 installed on the guide rail slide of the electric guide rail 4. Several shock absorbers 22 are installed on the top of the movable seat 21. A fixed frame 23 is installed between the tops of the shock absorbers 22. Several shock-absorbing rubber columns 24 that are in contact with and fit against the display screen mounting seat 1 are installed on the right side of the fixed frame 23.

[0039] The damping rubber column 24 is made of damping rubber material.

[0040] The shock absorber 22 is prior art and therefore will not be further disclosed in this application. The structural principle of the shock absorber is mainly to reduce the transmission and impact of vibration through components such as dampers and springs. Through the synergistic effect of dampers, springs and components such as liquids or gases, the shock absorber can effectively reduce the transmission of vibration and impact, and protect the stability and durability of equipment or structures.

[0041] The fixing frame 23 is equipped with a clamping and fixing component for clamping and fixing the display screen mounting base 1.

[0042] The clamping and fixing components include a loading plate 25 installed on the top and bottom of the fixing frame 23, an electric push rod 26 installed on the outside of the loading plate 25, and a rubber clamping seat 27 for clamping and fixing the display screen mounting base 1 installed at the push rod of the electric push rod 26.

[0043] The rubber clamp 27 is a U-shaped rubber base that fits tightly against the display screen mounting base 1.

[0044] The display screen mounting base 1 is equipped with a lubricated guide mechanism to ensure stable movement of the display screen mounting base 1 and prevent vibration.

[0045] The lubrication guiding mechanism includes two movable lubrication seats 9, a lubricating oil storage seat 14, and movable rods 11 installed on the left and right sides of the bottom of the display screen mounting base 1.

[0046] The movable rod 11 is a hollow cylinder.

[0047] The movable lubrication seat 9 has a lubricating oil storage tank 10 on its top. Inside the movable lubrication seat 9, a guide rod 12 passes through a movable rod 11. At the bottom of the movable rod 11, an oil-absorbing cotton strip 13 is installed, which passes through the movable rod 11 and contacts the guide rod 12 inside the lubricating oil storage tank 10. A connecting pipe connects the bottoms of the two movable lubrication seats 9. An oil pump 17 is connected to the outside of the lubricating oil storage seat 14. An oil suction hose 18 connects the oil suction port of the oil pump 17 to one of the movable lubrication seats 9. An oil inlet hose 19 connects the lubricating oil storage seat 14 to one of the movable lubrication seats 9. An oil discharge pipe 20 located above the opening of the lubricating oil storage seat 14 is connected to the oil discharge port of the oil pump 17.

[0048] The interior of the lubricating oil reservoir 14 is equipped with an oil and debris filter screen 15 of the same length and width as the interior of the lubricating oil reservoir 14, and the exterior of the lubricating oil reservoir 14 is connected to a transparent measuring tube 16.

[0049] The oil and debris filter screen 15 is a filter cloth, and the transparent measuring tube 16 is equipped with maximum and minimum warning indicators to ensure that the amount of oil stored in the lubricating oil storage seat 14 meets the requirements and will not flow into the movable lubrication seat 9, causing the lubricating oil to overflow or be insufficient.

[0050] The display mounting base 1 is also equipped with a heat dissipation and cleaning mechanism for dissipating heat from the display screen 3 and cleaning dust.

[0051] The heat dissipation cleaning mechanism includes a mounting slot 2 on the right side of the display mounting base 1 and a blower 7 installed on the rear side of the display mounting base 1. A mesh plate 6 in the shape of a mesh is installed and connected in the mounting slot 2. The display screen 3 is installed on the right side of the mesh plate 6. Several blow pipes 5 are evenly distributed on the top and bottom walls of the inner cavity of the display mounting base 1. An air pipe 8 is connected between the air outlet of the blower 7 and the display mounting base 1.

[0052] The blowpipes 5 are closely fitted and evenly distributed on the upper and lower surfaces of the display screen 3 along the curved surface. The display screen 3 is installed and fixed to the partition plate 6 by fastening screws, with a gap between them.

[0053] The blower 7 is a blower, which is a known technology and equipment.

[0054] The connecting shock-absorbing structure is equipped with a buffer moving component to achieve moving drag increase buffering and shock absorption.

[0055] The buffer moving assembly includes two fixed columns 28, with a support plate 29 installed between the right side surfaces of the fixed columns 28.

[0056] The left side of the fixed frame 23 is equipped with several resistance-increasing moving rods 31 that pass through the support plate 29. The right side of the support plate 29 is equipped with several rubber resistance-increasing sleeves 30 that correspond one-to-one with the resistance-increasing moving rods 31 and are passed through by the resistance-increasing moving rods 31. Several connecting rods 32 are installed on the upper and lower sides of the rear surface of the support plate 29. A rubber band rope 33 that is passed through by the resistance-increasing moving rods 31 is installed between two adjacent connecting rods 32.

[0057] The elastic band 33 is detachable to ensure its elastic contraction effect.

[0058] When the moving rod 11 is located at the leftmost and rightmost positions within the lubricating oil storage tank 10, the rubber band rope 33 is in its maximum extended state.

[0059] The electric guide rail 4, together with the shock-absorbing structure, fixes the display screen mounting base 1 and drives the display screen 3 to move with shock absorption. At the same time, it works with the lubrication guide mechanism to improve the smoothness of movement, and the buffer movement component to buffer and absorb the movement.

[0060] During use, the electric guide rail 4, the movable lubrication seat 9, and the fixed column 28 are installed and fixed to the ground to ensure the required movement distance of the electric guide rail 4, the required movement distance of the movable rod 11 and the drag-increasing movable rod 31, and the position of the flight simulator cockpit is located in front of the display screen 3.

[0061] In summary, this flight simulator high-fidelity visual platform device, by setting fastening screws to install and fix the electric guide rail 4, the movable lubrication seat 9 and the fixed column 28 to the ground, and by placing the display screen 3 in the mounting groove 2 on the display screen mounting base 1, while the electric push rod 26 pushes the rubber clamping seat 27 to move, it achieves clamping and fixing stability of the display screen mounting base 1.

[0062] When the display screen 3 and the display screen mounting base 1 are in a fixed installation state, during the simulation process, in conjunction with the switching of the scene for near and far views of the display screen 3, the electric guide rail 4 is activated to work, and at the same time, the moving base 21 moves synchronously left and right in conjunction with the switching of the scene for near and far views. Meanwhile, the shock absorber 22 provides movement shock absorption for the fixed frame 23, thereby realizing movement shock absorption for the clamped display screen mounting base 1. In addition, the multiple shock-absorbing rubber columns 24 provide multi-point support and shock absorption for the display screen mounting base 1, improving the movement shock absorption effect of the display screen 3 inside the display screen mounting base 1 and preventing movement and shaking.

[0063] In addition, during the movement of the display mounting base 1 and the display screen 3, the friction-increasing moving rod 31 on the fixed frame 23 moves synchronously and rubs against the rubber friction-increasing sleeve 30 on the support plate 29 to increase resistance. At the same time, during the back-and-forth movement of the friction-increasing moving rod 31, the rubber band rope 33 on the connecting rod 32 will undergo elastic deformation, further reducing vibration and improving the stability of the movement of the display screen 3.

[0064] Similarly, during the movement of the display screen mounting base 1 and the display screen 3, the bottom ends of the display screen mounting base 1 are stably supported and slid on the guide rods 12 within the movable lubrication seats 9. This ensures the stability of the movement of the display screen 3 on the display screen mounting base 1. At the same time, the lubricating oil is stored in the lubricating oil storage seat 14. The interconnection between the lubricating oil storage seat 14, the oil filter screen 15, the oil inlet hose 19, the oil pump 17, the oil inlet hose 18, the oil outlet pipe 20, and the two movable lubrication seats 9 allows the lubricating oil stored in the lubricating oil storage seat 14 to be discharged into the movable lubrication seats 9 through the oil inlet hose 19. As the moving rod 11 moves, the oil-absorbing cotton strip 13 draws in the lubricating oil for lubrication, reducing the frictional resistance of the moving rod 11 and making the movement smoother.

[0065] Meanwhile, the wear debris falls into the lubricating oil storage tank 10. The oil pump 17 works to extract the impurities in the lubricating oil storage tank 10 through the oil extraction hose 18 and discharge it through the oil drain pipe 20 to the oil and impurity filter screen 15 to filter the impurities. At the same time, the filtered impurities re-enter the lubricating oil storage seat 14, realizing the circulation lubrication effect of clean lubricating oil. This ensures the smooth movement of the moving rod 11 supporting the display screen mounting seat 1, thereby ensuring the stability and shock absorption effect of the movement of the display screen 3 while switching between near and far views, improving the viewing effect and the stability of the picture.

[0066] While the blower 7 is blowing air, the interconnection between the blower 7, air pipe 8, display screen mounting base 1, partition plate 6 and blow pipe 5 allows air to be blown out from the partition plate 6 to dissipate heat from the rear surface of the display screen 3, while air is blown out from the blow pipe 5, thus cleaning the dust from the surface of the display screen 3 and reducing the difficulty of cleaning.

[0067] The electrical components appearing in this article are all electrically connected to the main controller and the power supply. The main controller can be a conventional known device that controls a computer, etc., and the existing public power connection technology is not described in detail in this article.

Claims

1. A high-fidelity visual platform device for a flight simulator, comprising a display screen mounting base (1), a display screen (3), and an electric guide rail (4), characterized in that: The electric guide rail (4) is provided with a connecting shock-absorbing structure that drives the display screen mounting base (1) to move and buffer and reduce shock. The display screen mounting base (1) is provided with a lubrication guide mechanism to ensure stable movement of the display screen mounting base (1) and prevent vibration; The display screen mounting base (1) is also provided with a heat dissipation and dust cleaning mechanism for the display screen (3); The connecting shock-absorbing structure is equipped with a buffer moving component to achieve moving drag increase buffer shock absorption; The electric guide rail (4) works with the connecting shock-absorbing structure to fix the display screen mounting base (1) and drive the display screen (3) to move with shock absorption. At the same time, it works with the lubrication guide mechanism to improve the smoothness of movement. The buffer movement component buffers and absorbs the movement.

2. The high-fidelity visual platform device for a flight simulator according to claim 1, characterized in that: The connecting shock absorption structure includes a movable seat (21) installed at the guide rail slide of the electric guide rail (4), a number of shock absorbers (22) are installed on the top of the movable seat (21), a fixed frame (23) is installed between the tops of the shock absorbers (22), and a number of shock-absorbing rubber columns (24) that are in contact with and fit against the display screen mounting base (1) are installed on the right side of the fixed frame (23). The fixing frame (23) is provided with a clamping and fixing component for clamping and fixing the display screen mounting base (1).

3. The high-fidelity visual platform device for a flight simulator according to claim 2, characterized in that: The clamping and fixing components include loading plates (25) installed on the top and bottom of the fixing frame (23), an electric push rod (26) is installed on the outside of the loading plate (25), and a rubber clamping seat (27) for clamping and fixing the display screen mounting base (1) is installed at the push rod of the electric push rod (26).

4. The high-fidelity visual platform device for a flight simulator according to claim 1, characterized in that: The lubrication guiding mechanism includes two movable lubrication seats (9), a lubricating oil storage seat (14), and movable rods (11) installed on the left and right sides of the bottom of the display screen mounting base (1). The top of the movable lubrication seat (9) is provided with a lubricating oil storage tank (10). Inside the movable lubrication seat (9) is a guide rod (12) that passes through the movable rod (11). At the bottom of the movable rod (11) is an oil-absorbing cotton strip (13) that passes through the movable rod (11) and contacts the guide rod (12) inside the lubricating oil storage tank (10). A connecting pipe connects the bottoms of the two movable lubrication seats (9). An oil pump (17) connects to the outside of the lubricating oil storage seat (14). An oil suction hose (18) connects the oil suction port of the oil pump (17) to one of the movable lubrication seats (9). An oil inlet hose (19) connects the lubricating oil storage seat (14) to one of the movable lubrication seats (9). An oil drain pipe (20) located above the opening of the lubricating oil storage seat (14) connects to the oil drain port of the oil pump (17).

5. The high-fidelity visual platform device for a flight simulator according to claim 4, characterized in that: The inside of the lubricating oil storage seat (14) is equipped with an oil and debris filter screen (15) of the same length and width as the inside of the lubricating oil storage seat (14), and a transparent measuring tube (16) is connected to the outside of the lubricating oil storage seat (14).

6. The high-fidelity visual platform device for a flight simulator according to claim 1, characterized in that: The heat dissipation cleaning mechanism includes a mounting groove (2) on the right side of the display screen mounting base (1) and a blower (7) installed on the rear side of the display screen mounting base (1). A mesh plate (6) in the shape of a mesh is installed and connected in the mounting groove (2). The display screen (3) is installed on the right side of the mesh plate (6). Several blow pipes (5) are provided on the top and bottom walls of the inner cavity of the display screen mounting base (1). An air pipe (8) is connected between the air outlet of the blower (7) and the display screen mounting base (1).

7. The high-fidelity visual platform device for a flight simulator according to claim 6, characterized in that: The blowpipes (5) are closely fitted and evenly distributed on the upper and lower surfaces of the display screen (3) along the curved surface. The display screen (3) is installed and fixed to the partition plate (6) by fastening screws with a gap between them.

8. The high-fidelity visual platform device for a flight simulator according to claim 2, characterized in that: The buffer moving assembly includes two fixed columns (28), and a support plate (29) is installed between the right side surfaces of the fixed columns (28). Among them, a number of resistance-increasing moving rods (31) passing through the support plate (29) are installed on the left side of the fixed frame (23), and a number of rubber resistance-increasing sleeves (30) corresponding to the resistance-increasing moving rods (31) and passing through the resistance-increasing moving rods (31) are installed on the right side of the support plate (29). A number of connecting rods (32) are installed on the upper and lower sides of the rear surface of the support plate (29), and a rubber band rope (33) passing through the resistance-increasing moving rods (31) is installed between two adjacent connecting rods (32).

9. A high-fidelity visual platform device for a flight simulator according to claim 4 or 8, characterized in that: When the movable rod (11) is located at the leftmost and rightmost positions in the lubricating oil storage tank (10), the rubber band rope (33) is in its maximum extended state.

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