Simulation floating game platform

By setting up multiple sets of lifting and swing drive components in the game platform, combined with airbags or cylinders to achieve multi-angle motion simulation, the problem of low freedom of traditional platforms is solved, and the sense of immersion and stability are improved.

CN223732087UActive Publication Date: 2025-12-30GUANGZHOU FEIMANSI DIGITAL TECH CO LTD
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Patent Information

Application Number
CN202423301804.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional game platforms have a simple structure and low degree of freedom, resulting in a low degree of matching between dynamic and visual information, which reduces immersion and player experience.

Method used

Multiple sets of lifting and swinging drive components are set between the base and the shelf of the gaming platform. Complex movements are achieved by combining airbags or cylinders. Multi-angle movements are simulated by the drive components with an isosceles triangle layout and symmetrical arrangement, and the range of motion is limited by the guide components.

Benefits of technology

The system improves the matching degree of dynamic and visual information, enhances the sense of immersion, and the airbags provide flexible cushioning for movement impacts. The support rods and casters ensure the stability and comfort of the platform.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223732087U_ABST
    Figure CN223732087U_ABST
Patent Text Reader

Abstract

The utility model provides a simulation floating game platform, which belongs to the technical field of game platforms and comprises a base, a shelf is arranged above the base, and a plurality of groups of lifting driving components and a plurality of groups of swing driving components are clamped between the base and the shelf; or a plurality of groups of lifting driving components are clamped between the base and the shelf, a plurality of groups of swinging driving components are arranged on the shelf, a bearing plate is arranged above the shelf, the bearing plate is mounted on the plurality of groups of swinging driving components, and a guide component is further arranged between the bearing plate and the shelf. According to the device, a plurality of groups of lifting driving assemblies and a plurality of groups of swing driving assemblies are arranged between a base and a shelf; the lifting driving assemblies can control the lifting action of a platform in different directions and can simulate forward leaning and backward leaning; meanwhile, the swing driving assemblies can achieve multi-angle swing, left-right swing in the game is simulated, the matching degree of dynamic information and visual information is improved through cooperation of the two sets of driving assemblies, and the immersion feeling is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to game platform technical field, more specifically, it is especially related to a simulation floating game platform. BACKGROUND

[0002] In the current game application scene, the game platform is usually integrated in the electric game seat system of the riding type, which can make the seat produce corresponding movement according to the real-time dynamic change of the game scene in the game process, so as to achieve the effect that the game information obtained by the player's body perception and vision is matched, and then the immersive game feeling is created for the player. However, the traditional game platform structure is relatively simple, and can only move forward, backward, left and right simply, cannot change the posture at multiple angles, resulting in that the matching degree of the information accepted by the motion and vision is low in the complex simulation scene, and the immersion and experience of the game are reduced. UTILITARY MODEL

[0003] In order to solve the above technical problems, the utility model provides a simulation floating game platform to solve the technical problems that the traditional game platform structure is simple, the degree of freedom is low, the matching degree of the information accepted by the motion and vision is low, and the stillness and experience are reduced in the prior art.

[0004] The purpose and effect of the simulation floating game platform of the utility model are achieved by the following specific technical means:

[0005] A simulation floating game platform, comprising a base, a shelf is arranged above the base, a plurality of lifting drive assemblies and a plurality of swing drive assemblies are arranged between the base and the shelf, one of the lifting drive assemblies is arranged between the two swing drive assemblies.

[0006] Alternatively, a plurality of lifting drive assemblies are arranged between the base and the shelf, a plurality of swing drive assemblies are arranged on the shelf, a receiving plate is arranged above the shelf, the receiving plate is installed on the swing drive assemblies, and a guide assembly is arranged between the receiving plate and the shelf.

[0007] According to a preferred embodiment, one of the lifting drive assemblies is arranged on one side of the other two lifting drive assemblies and between the two lifting drive assemblies, forming an isosceles triangle arrangement.

[0008] According to a preferred embodiment, the lifting driving assembly comprises a mounting seat and a lifting air bag, a plurality of sets of connecting holes are formed in the mounting seat and the base, connecting bolts are arranged in the connecting holes, and the mounting seat and the base are detachably connected; the lifting air bag is located above the mounting seat, the bottom of the lifting air bag is connected with the mounting seat, and the top of the lifting air bag is connected with the shelf.

[0009] According to a preferred embodiment, a through hole is formed in the mounting seat, and a ventilation pipe is arranged at the bottom of the lifting air bag and arranged in the through hole.

[0010] According to a preferred embodiment, a plurality of sets of the swing driving assemblies are symmetrically arranged, the swing driving assembly comprises a first support and a swing air bag, a plurality of sets of fixing grooves are formed in the first support, the fixing grooves are in the form of straight slots, the base or the shelf is provided with fixing holes corresponding to the fixing grooves, and fixing bolts are arranged in the fixing grooves and the fixing holes; the swing air bag is located on one side of the first support and connected with the first support.

[0011] According to a preferred embodiment, the swing driving assembly further comprises a second support, the second support is located on one side of the swing air bag, the first support, the swing air bag and the second support are arranged in sequence, one side of the second support is connected with the swing air bag, and the top of the second support is connected with the shelf or the receiving plate.

[0012] According to a preferred embodiment, the guide assembly comprises a swing shaft and a swing seat, the receiving plate is provided with a connecting sleeve, the swing shaft is arranged in the connecting sleeve, and the swing seat is mounted on the shelf; one end of the swing shaft is provided with a spherical clamping block, a spherical clamping groove is formed in the swing seat, the opening end of the spherical clamping groove is smaller in diameter than the spherical clamping block, and the spherical clamping block is arranged in the spherical clamping groove.

[0013] According to a preferred embodiment, the base is provided with a plurality of sets of supporting rods and a plurality of sets of universal wheels, and one end of the supporting rod is provided with a rubber block.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] 1. The device is provided with a shelf above the base, and the base and the shelf are connected through multiple groups of lifting driving assemblies and multiple groups of swinging driving assemblies. Through the layout of the multiple groups of lifting driving assemblies and swinging driving assemblies, relatively complex movements can be realized. The lifting driving assemblies arranged in an isosceles triangle can control the lifting action of the platform in different directions, and can simulate the forward inclination and backward inclination of the vehicle when climbing. The multiple groups of symmetrically arranged swinging driving assemblies, in combination with the synergistic effect of the first support, the swinging air bag and the second support, can realize multi-angle swinging, such as simulating the left and right swinging of the ship on the turbulent sea surface, the turning and rolling of the airplane in flight, etc. Not only the matching degree of dynamic and visual information is improved, but also the player can more intuitively feel the various dynamic changes in the game or simulation scene, and the immersion is enhanced. At the same time, the air bag has good flexibility, so that it can naturally deform when subjected to pressure change, whether it is inflation and extension or deflation and recovery, it is smooth and smooth. In the operation of the game platform, the flexibility of the air bag can effectively buffer the motion impact, adjust the motion amplitude and intensity, and improve the stability and comfort of the platform motion.

[0016] 2. The multiple groups of support rods and universal wheels arranged on the base not only ensure the stable support of the platform when it is stationary, prevent shaking and displacement caused by accidental collision or violent motion, but also facilitate the adjustment of the position when the equipment needs to be moved. In the motion process, the guide assembly plays a key role. The cooperation of the swinging shaft and the swinging seat effectively limits the movement range of the receiving plate through the arrangement of the spherical clamping block and the spherical clamping groove, so that it can maintain a stable trajectory when performing multi-angle offset motion, avoiding out-of-control or abnormal swinging. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structure schematic diagram of the single-layer structure of the embodiment one of the utility model after assembly.

[0018] Figure 2 is a structure schematic diagram of the single-layer structure of the embodiment one of the utility model after disassembly.

[0019] Figure 3 is a structure schematic diagram of the double-layer structure of the embodiment two of the utility model after assembly.

[0020] Figure 4 is a structure schematic diagram of the guide assembly of the embodiment two of the utility model after disassembly.

[0021] Figure 5 is Figure 4 the local enlarged view of area a in figure.

[0022] In the figure, the correspondence between the component name and the reference sign is as follows:

[0023] 11. Base; 21. Shelf; 31. Support plate; 32. Swing shaft; 33. Swing seat; 34. Connecting sleeve; 35. Spherical block; 36. Spherical groove; 41. Mounting seat; 42. Lifting airbag; 43. Connecting hole; 44. Through hole; 45. Air pipe; 51. First bracket; 52. Swinging airbag; 53. Fixing groove; 54. Second bracket. Detailed Implementation

[0024] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the technical solution of this utility model, but should not be used to limit the scope of protection of this utility model.

[0025] Example:

[0026] like Figures 1 to 5 As shown, this utility model provides a simulated floating game platform, including a stable base 11. The base 11 serves as the basic support structure of the entire platform, bearing important loads. A matching shelf 21 is arranged directly above the base 11. Multiple sets of lifting drive components and multiple sets of swing drive components are arranged in the space formed between the base 11 and the shelf 21. These components cooperate with each other and are rationally arranged to jointly construct a single-layer structural system. This structure is the key to achieving the simulated floating experience of the entire device.

[0027] One of the groups of lifting driving assemblies is located between the groups of swinging driving assemblies, and the lifting driving assemblies and the swinging driving assemblies cooperate with each other and work together. The lifting driving assemblies can realize the lifting action of the platform in the vertical direction by using the mechanical structure and the power transmission mode thereof. The swinging driving assemblies control the movement in the horizontal and inclined directions, and through linkage, the platform can simulate various lateral swinging and inclined postures. Meanwhile, under another design idea, a plurality of groups of lifting driving assemblies are arranged between the base 11 and the shelf 21, and a plurality of groups of swinging driving assemblies are arranged on the shelf 21, and a receiving plate 31 is arranged above the shelf 21, the receiving plate 31 is installed on the plurality of groups of swinging driving assemblies, thereby forming a double-layer structure; meanwhile, a guiding assembly is additionally arranged between the receiving plate 31 and the shelf 21, and the guiding assembly guides the movement of the receiving plate 31. The positions of the lifting driving assemblies and the swinging driving assemblies can be exchanged, and the entire platform can still achieve excellent simulation of a variety of actions; meanwhile, the entire device can replace the air bag with a pneumatic cylinder, and realize the lifting and swinging functions through the pneumatic cylinder, when the pneumatic cylinder is used to replace the air bag, the lifting function of the platform can be realized by controlling the extension and retraction action of the pneumatic cylinder through the control system. In the lifting process, the piston rod of the pneumatic cylinder extends outward, pushes the connected part, and drives the shelf 21 or the receiving plate 31 to move upward; when descending, the opposite is true. For the swinging function, the position and angle of the pneumatic cylinder can be arranged, and the linear motion of the pneumatic cylinder can be converted into the swinging motion of the platform in the horizontal and inclined directions through the linkage mechanism or the steering joint, which can improve the overall performance of the device and bring users a more powerful, stable and diversified dynamic experience.

[0028] As Figure 1 , Figure 2As shown, in the structure of the entire game platform, one set of lifting driving assemblies is located on one side of the other two sets of lifting driving assemblies and at the center position between the two sets of lifting driving assemblies. The three sets of lifting driving assemblies are combined with each other to form an isosceles triangular layout form with stability and mechanical advantages. This layout form can evenly and stably disperse the force when the platform performs lifting action, ensures the accurate, stable and efficient movement of the platform in the vertical direction, and effectively improves the overall movement performance and control accuracy. The lifting driving assembly comprises a mounting seat 41 and a lifting air bag 42. A plurality of connecting holes 43 are formed in the mounting seat 41 and the base 11, and the connecting bolt is stably inserted therein, thereby realizing the detachable connection of the mounting seat 41 and the base 11. Both the convenience and firmness during installation are ensured, and the subsequent maintenance, repair and possible structural adjustment are facilitated. The lifting air bag 42 is located above the mounting seat 41, the bottom of which is connected with the mounting seat 41, and the top is firmly connected with the shelf 21. A through hole 44 is formed in the mounting seat 41, and a gas pipe 45 is arranged at the bottom of the lifting air bag 42, which is inserted in the through hole 44. The gas can orderly flow in the specific channel, thereby controlling the inflation and deflation process of the lifting air bag 42, and realizing the stable, accurate and continuous lifting movement of the shelf 21 in the vertical direction, thereby providing reliable vertical direction power support and movement basis for the multi-degree-of-freedom movement of the entire game platform.

[0029] The plurality of swing driving assemblies are arranged in a symmetrical arrangement form to realize stable and balanced swing movement of the platform. The swing driving assembly comprises a first support 51 and a swing air bag 52. The first support 51 serves as a support and connection, and a plurality of fixing grooves 53 are formed therein. When the fixing bolt is inserted in the fixing groove 53, the first support 51 can be adjusted in position. The base 11 or the shelf 21 is provided with a fixing hole corresponding to the position of the fixing groove 53, and the fixing bolt is inserted in the fixing groove 53 and the fixing hole to stably mount the first support 51 on the base 11 or the shelf 21, thereby providing a reliable foundation support structure for subsequent swing action. The swing air bag 52 is located on one side of the first support 51, and the swing air bag 52 is connected with the first support 51 and can move within a certain range on the first support 51, so as to cooperate with the operation of the lifting driving assembly.

[0030] The swing driving assembly further comprises a second support 54 located at one side of the swing air bag 52, and the first support 51, the swing air bag 52 and the second support 54 are arranged in sequence. The second support 54 is connected with the swing air bag 52 at one side and connected with the layer frame 21 or the receiving plate 31 at the top. When the swing air bag 52 is inflated or deflated, under the action of the change of air pressure, the force can be effectively transmitted and converted into the swing movement of the layer frame 21 or the receiving plate 31 by the connection and support of the first support 51 and the second support 54, so as to realize the multi-angle, flexible and accurate swing movement of the platform in the horizontal direction or the inclined direction, and enrich the motion simulation capability of the game platform.

[0031] As shown in Figure 4 , Figure 5 , the guide assembly comprises a swing shaft 32 and a swing seat 33. The bottom of the receiving plate 31 is specially provided with a connecting sleeve 34, and the swing shaft 32 is arranged in the connecting sleeve 34, so that the receiving plate 31 and the swing shaft 32 are connected. The swing seat 33 is installed on the layer frame 21 to provide a stable support point for the movement of the swing shaft 32. One end of the swing shaft 32 is provided with a spherical clamping block 35, and the swing seat 33 is provided with a spherical clamping groove 36, and the diameter of the opening end of the spherical clamping groove 36 is smaller than the diameter of the spherical clamping block 35, so that the spherical clamping block 35 can be stably arranged in the spherical clamping groove 36. The movement range of the receiving plate 31 is effectively limited, so that it can stably run along the predetermined track during multi-angle offset movement, avoiding the occurrence of out-of-control or abnormal swing.

[0032] The bottom of the base 11 is provided with a plurality of support rods and a plurality of universal wheels. One end of the support rod is specially provided with a rubber block, which can significantly increase the friction between the platform and the ground, effectively preventing the platform from slipping accidentally. At the same time, when encountering slight collision or vibration from the outside, the rubber block can also play a good buffering effect. When the platform is in a stationary state, the support rod becomes a guarantee for the stability of the whole platform. It can fix the platform at the predetermined position with strong supporting force, and even in the face of accidental collision or impact of various interference factors from the outside, it can ensure that the platform does not move, and prevent any shaking and displacement phenomenon from occurring. When the device needs to be moved, the flexible steering function and smooth rolling characteristics of the universal wheel make the platform can be easily transferred between different positions.

[0033] The specific use mode and effect of the embodiment are as follows:

[0034] In use, when the platform is running a game or simulating a scene, the control system will inflate and deflate the lifting air bags 42 and the swinging air bags 52 according to a preset program or real-time received scene data. For example, in a simulated acceleration scene, the lifting air bags 42 in the lifting drive assembly in the isosceles triangle layout will be inflated in a specific order and air pressure change to make the layer shelf 21 produce a backward tilting action to simulate the pushback feeling of a racing car. At this time, the gas flows through the vent pipe 45 in the through hole 44 of the mounting seat 41 in an orderly manner to control the state of the lifting air bag 42.

[0035] When a situation such as simulating vehicle steering or airplane tilting posture is encountered, the corresponding swinging air bag 52 will be inflated or deflated. For example, when simulating a left tilting turn of an airplane, the left swinging air bag 52 will be inflated to expand, and with the help of the connection and support structure of the first support 51 and the second support 54, the layer shelf 21 or the receiving plate 31 is pushed to tilt left. The design of the fixed groove 53 on the first support 51 can adapt to this dynamic change to a certain extent and keep the structure stable.

[0036] During the entire movement process, the swinging shaft 32 at the bottom of the receiving plate 31 rotates in the connecting sleeve 34, and since the spherical clamping block 35 at one end of the swinging shaft 32 is embedded in the spherical clamping groove 36 of the swinging seat 33, the movement range of the receiving plate 31 is effectively limited, ensuring that it runs along a stable trajectory during multi-angle deviation movement, avoiding out-of-control.

[0037] The basic principles and main features of the present application and the advantages of the present application are shown and described above. It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments.

Claims

1. An artificial floating gaming platform comprising a base (11) characterised in that: A shelf (21) is arranged above the base (11), and a plurality of lifting driving assemblies and a plurality of swinging driving assemblies are arranged between the base (11) and the shelf (21), and one of the lifting driving assemblies is arranged between two of the swinging driving assemblies. Alternatively, a plurality of lifting driving assemblies are arranged between the base (11) and the shelf (21), a plurality of swinging driving assemblies are arranged on the shelf (21), and a receiving plate (31) is arranged above the shelf (21), the receiving plate (31) is installed on the plurality of swinging driving assemblies, and a guide assembly is further arranged between the receiving plate (31) and the shelf (21).

2. The simulated floating gaming platform of claim 1, wherein: One of the lifting driving assemblies is arranged on one side of the other two lifting driving assemblies and between the two lifting driving assemblies, forming an isosceles triangle arrangement.

3. The simulated floating gaming platform of claim 2, wherein: The lifting driving assembly comprises a mounting seat (41) and a lifting air bag (42), a plurality of connecting holes (43) are formed in the mounting seat (41) and the base (11), connecting pins are arranged in the connecting holes (43), and the mounting seat (41) and the base (11) are detachably connected; the lifting air bag (42) is arranged above the mounting seat (41), the bottom of the lifting air bag (42) is connected with the mounting seat (41), and the top of the lifting air bag (42) is connected with the shelf (21).

4. The simulated floating gaming platform of claim 3, wherein: A through hole (44) is formed in the mounting seat (41), and a ventilation pipe (45) is arranged at the bottom of the lifting air bag (42) and arranged in the through hole (44).

5. The simulated floating gaming platform of claim 1, wherein: The plurality of swinging driving assemblies are arranged symmetrically, and the swinging driving assembly comprises a first support (51) and a swinging air bag (52), a plurality of fixing grooves (53) are formed in the first support (51), the fixing grooves (53) are in the shape of straight slots, fixing holes are formed in the base (11) or the shelf (21) corresponding to the fixing grooves (53), and fixing pins are arranged in the fixing grooves (53) and the fixing holes; the swinging air bag (52) is arranged on one side of the first support (51) and connected with the first support (51).

6. The simulated floating gaming platform of claim 5, wherein: The swinging driving assembly further comprises a second support (54), the second support (54) is arranged on one side of the swinging air bag (52), the first support (51), the swinging air bag (52) and the second support (54) are arranged in sequence, one side of the second support (54) is connected with the swinging air bag (52), and the top of the second support (54) is connected with the shelf (21) or the receiving plate (31).

7. The simulated floating gaming platform of claim 1, wherein: The guiding assembly comprises a swing shaft (32) and a swing base (33), the bottom of the receiving plate (31) is provided with a connecting sleeve (34), the swing shaft (32) is arranged in the connecting sleeve (34), and the swing base (33) is installed on the shelf (21); one end of the swing shaft (32) is provided with a spherical clamping block (35), the swing base (33) is provided with a spherical clamping groove (36), the opening diameter of the spherical clamping groove (36) is smaller than the diameter of the spherical clamping block (35), and the spherical clamping block (35) is arranged in the spherical clamping groove (36).

8. The simulated floating gaming platform of claim 1, wherein: The base (11) is provided with a plurality of groups of supporting rods and a plurality of groups of universal wheels, and one end of the supporting rod is provided with a rubber block.