Three-cylinder dynamic experience equipment with horizontal rotation
By combining the three-cylinder lifting mechanism and the rotation mechanism, the problem of single and insufficient stability of the dynamic experience equipment is solved, and multi-dimensional dynamic changes and safe and stable dynamic experience effects are achieved.
Patent Information
- Application Number
- CN202422409747.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing dynamic experience equipment has a single movement mode, insufficient stability, and safety risks.
The combination of a three-cylinder lifting mechanism and a rotating mechanism is adopted to achieve multi-dimensional dynamic changes of the dynamic seat through three sets of lifting cylinders, and the stability and safety of the equipment are ensured through the platform fixing mechanism and the telescopic safety mechanism.
It realizes multi-dimensional dynamic changes of dynamic seats, enhances the user's immersive experience, and ensures the safety performance and stability of the equipment.
Smart Images

Figure CN223054120U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a dynamic experience device, in particular to a three-cylinder dynamic experience device with horizontal rotation. Background Art
[0002] In the current field of entertainment and experience devices, dynamic experience devices are very popular for their unique motion modes and the immersive feelings they bring. However, traditional dynamic experience devices have some limitations and deficiencies in design and functions, which are mainly reflected in the following aspects: single motion mode: most dynamic experience devices mainly focus on motion or swaying in a single direction, lacking the combination of compound motions, thus restricting the diversity and richness of the experience effect. Insufficient stability: when some devices attempt to achieve complex motions, due to the limitations of the structural design, it is often difficult to ensure the smoothness and stability of the motion, resulting in poor user experience and even potential safety hazards.
[0003] Therefore, in order to overcome the deficiencies of the prior art, it is necessary to develop a new type of dynamic experience device, which can provide a more rich, safe and comfortable dynamic experience for users through innovative structural design and function realization. Summary of the Utility Model
[0004] In view of the above problems, the utility model aims to provide a three-cylinder dynamic experience device with horizontal rotation.
[0005] To achieve the technical purpose, the solution of the utility model is: a three-cylinder dynamic experience device with horizontal rotation, including a platform fixing mechanism that can be fixedly installed on a horizontal ground and a dynamic seat assembly, and further including a three-cylinder lifting mechanism and a rotating mechanism arranged between the platform fixing mechanism and the dynamic seat assembly. The bottom of the three-cylinder lifting mechanism is hinged to the platform fixing mechanism, the top of the three-cylinder lifting mechanism is hinged below the rotating mechanism, and the top of the rotating mechanism is fixedly connected to the lower part of the dynamic seat assembly;
[0006] The three-cylinder lifting mechanism is composed of three groups of lifting electric cylinders. A first hinge frame is installed on the platform fixing mechanism, and the bottom of the lifting electric cylinder is hinged to the first hinge frame; a second hinge frame is installed below the rotating mechanism, and a hinge block is also installed on the second hinge frame. The top of the lifting electric cylinder is hinged to the hinge block.
[0007] Preferably, the rotating mechanism is composed of a rotating bottom frame, a driving motor, a driving gear and a driving disk. The driving motor is fixedly installed on the rotating bottom frame, the driving motor is drivingly connected to the driving gear, the driving disk is fixedly installed below the dynamic seat assembly, a circle of internal teeth is arranged on the inner side wall of the driving disk, and the driving gear can be meshed with the internal teeth.
[0008] Preferably, the platform fixing mechanism is composed of a fixing frame, a fixing base plate and a mounting plate. A plurality of triangular plates with screw holes are arranged on the fixing frame. The fixing base plate is welded above the middle of the fixing frame. Three mounting plates distributed in an equilateral triangle are welded on the fixing base plate, and the first hinge frame is fixed on the mounting plate.
[0009] Preferably, a telescopic safety mechanism is also welded in the middle of the fixing base plate, and the top of the telescopic safety mechanism can abut against the bottom of the rotating base frame.
[0010] Preferably, the telescopic safety mechanism is one of a cylinder, an oil cylinder or an electric cylinder.
[0011] Preferably, the dynamic seat assembly includes a support assembly at the bottom, and a seat and armrests on the support assembly. A self-locking device is provided on the armrests.
[0012] Preferably, the support assembly includes a support plate with a frame structure and a base plate welded on the support plate, and the seat is installed on the base plate.
[0013] The beneficial effects of the present utility model are as follows: Through the ingenious combination of the three-cylinder lifting mechanism and the rotating mechanism, the multi-dimensional dynamic change of the dynamic seat assembly is realized, enhancing the immersive experience of users. The stable platform fixing mechanism and the flexible hinge design ensure safety performance while making the experience more exciting and real. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is the front view of the present utility model;
[0015] Figure 2 is the side view of the present utility model;
[0016] Figure 3 is the structural schematic diagram of the present utility model with the dynamic seat assembly omitted;
[0017] Figure 4 is the partial exploded view of the present utility model.
[0018] In the figure: 1. Platform fixing mechanism; 101. Fixing frame; 102. Fixing base plate; 103. Mounting plate; 104. Triangular plate; 2. Dynamic seat assembly; 201. Support plate; 202. Seat; 203. Armrest; 3. Three-cylinder lifting mechanism; 301. First hinge frame; 302. Second hinge frame; 303. Lifting electric cylinder; 304. Hinge block; 4. Rotating mechanism; 401. Rotating base frame; 402. Driving disc; 403. Driving gear; 5. Rotating speed reducer; 6. Driving motor; 7. Telescopic safety mechanism. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] The utility model is further described in detail below in conjunction with the accompanying drawings and specific embodiments. In order to clearly and completely describe the technical solution, the following embodiments are selected for illustration; the following embodiments are part of the embodiments of the utility model; based on this application, other embodiments obtained without creative work are all within the scope of protection of the utility model.
[0020] In the following embodiments, it should be noted that the terms "upper", "lower", "left", "right", "inner", "outer", "top / bottom" and other directions or positional relationships are based on the directions or positional relationships shown in the drawings, and are only for the convenience of clearly describing the present embodiment, rather than indicating or implying that the device or element referred to must have a specific direction, and therefore cannot be understood as a limitation on the present application. At the same time, "first" and "second" in the embodiments are only used for distinguishing description purposes, and do not represent or imply relative importance.
[0021] like Figures 1-4 As shown, the specific embodiment described in the utility model is a three-cylinder dynamic experience device with horizontal rotation, including a platform fixing mechanism 1 that can be fixedly installed on a horizontal ground and a dynamic seat assembly 2, and also including a three-cylinder lifting mechanism 3 and a rotating mechanism 4 arranged between the platform fixing mechanism 1 and the dynamic seat assembly 2. The bottom of the three-cylinder lifting mechanism 3 is hinged on the platform fixing mechanism 1, and the top of the three-cylinder lifting mechanism 3 is hinged under the rotating mechanism 4. The top of the rotating mechanism 4 is fixedly connected to the bottom of the dynamic seat assembly 2; a dynamic experience is provided to the user through a rotating action. The rotating mechanism 4 is combined with the three-cylinder lifting mechanism 3, so that the dynamic seat assembly 2 can not only move in the vertical direction, but also rotate on the horizontal plane, which greatly enriches the experience effect.
[0022] The three-cylinder lifting mechanism 3 is composed of three groups of lifting electric cylinders 303. Through the coordinated work of the three groups of lifting electric cylinders 303, the dynamic seat assembly 2 can be lifted and lowered smoothly in the vertical direction. In order to enable the dynamic seat assembly 2 to have the freedom of tilting, a first articulated frame 301 is installed on the platform fixing mechanism 1, and the bottom of the lifting electric cylinder 303 is hinged to the first articulated frame 301; a second articulated frame 302 is installed below the rotating mechanism 4, and an articulated block 304 is also installed on the second articulated frame 302. The top of the lifting electric cylinder 303 is hinged to the articulated block 304. The rotation characteristics of the hinge are used to realize the flexible connection between the lifting mechanism and the fixed platform, which not only ensures the freedom of lifting, but also prevents unnecessary shaking and deviation. The lifting electric cylinder 303 can operate the lifting and tilting of the rotating mechanism 4 through two-stage articulation, realizing a flexible connection between the lifting mechanism and the rotating mechanism 4. This connection method allows the rotating mechanism 4 to rotate horizontally on the lifting mechanism without affecting the execution of the lifting action.
[0023] The rotating mechanism 4 is composed of a rotating chassis 401, a driving motor 6, a driving gear 403 and a driving disc 402. The driving motor 6 is fixedly installed on the rotating chassis 401. The driving motor 6 is drivingly connected to the driving gear 403. The driving motor 6 is also electrically connected to a rotating speed reducer 5. The driving disc 402 is fixedly installed below the dynamic seat assembly 2. In this application, preferably, a rotatable connection is adopted between the driving disc 402 and the rotating chassis 401, allowing the driving disc 402 to freely rotate on the rotating chassis 401. This connection is usually achieved through bearings, bushings or other rotating support devices. For example, the driving disc 402 is installed on the rotating chassis 401 through a central shaft and is rotationally abutted to the rotating chassis 401 through devices such as bearings. In this way, when the driving motor 6 drives the driving disc 402 to rotate through the driving gear 403, the driving disc 402 can freely rotate around the central shaft on the rotating chassis 401, thereby driving the dynamic seat assembly 2 to perform horizontal rotation. An inner tooth ring is provided on the inner side wall of the driving disc 402, and the driving gear 403 can be meshed with the inner teeth. The rotating chassis 401 provides stable support, the driving motor 6 provides a power source, the driving gear 403 realizes power transmission, and the driving disc 402 serves as the final executing component of the rotational movement, enabling the dynamic seat assembly 2 to rotate at different speeds and in different directions.
[0024] To ensure the stability and safety of the entire device, the platform fixing mechanism 1 is composed of a fixing frame 101, a fixing bottom plate 102 and a mounting plate 103. The fixing frame 101 is the main structure of the entire platform fixing mechanism 1, made of strong steel, having sufficient strength and stiffness to withstand various forces and torques generated during the operation of the device. A plurality of triangular plates 104 with screw holes are provided on the fixing frame 101 to provide additional fixing points. The fixing bottom plate 102 is welded above the middle of the fixing frame 101. Three mounting plates 103 distributed in an equilateral triangle are welded on the fixing bottom plate 102, and the first hinge frame 301 is fixed on the mounting plate 103. This design utilizes the stability of the triangle to enhance the stability and anti-overturning ability of the entire platform fixing mechanism 1 in the horizontal direction, making the lifting process smoother and the force more evenly distributed, improving the comfort and safety of the user.
[0025] Preferably, a telescopic safety mechanism 7 is also welded to the middle of the fixed base plate 102, and the top of the telescopic safety mechanism 7 can abut against the bottom of the rotating base frame 401. During the operation of the equipment, if sudden failures, overloads, etc. cause the rotating base frame 401 to have excessive displacement or tilting tendency, the telescopic safety mechanism 7 can respond quickly and extend to abut against the bottom of the rotating base frame 401, thereby providing additional supporting force to prevent the rotating base frame 401 from tilting or falling off further and ensuring the safe operation of the equipment. The telescopic safety mechanism 7 can also play a role in limit protection. By setting reasonable elongation and abutting position, the movement of the rotating base frame 401 within a certain range can be restricted to avoid exceeding the range allowed by the design, thereby protecting the equipment from damage. Preferably, the telescopic safety mechanism 7 is one of a cylinder, an oil cylinder, or an electric cylinder.
[0026] The dynamic seat assembly 2 is the part where users directly experience the dynamic effect. The dynamic seat assembly 2 includes a support assembly at the bottom and a seat 202 and armrests 203 on the support assembly. A self-locking device is provided on the armrests 203. The support assembly includes a support plate 201 with a frame structure and a base plate welded to the support plate 201. The seat 202 is installed on the base plate. The seat 202 has armrests 203, and the self-locking device on the armrests 203 can lock the position of the armrests 203 when needed, improving the safety of users in specific motion states. The support plate 201 adopts a frame structure, which not only reduces the overall weight but also ensures sufficient strength and stiffness to support the weight of the seat 202 and the user. The design of the seat 202 and armrests 203 pays attention to the ergonomic principle to ensure the comfort and safety of users during the experience process, and the setting of the self-locking device further improves the safety performance of the equipment.
[0027] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any minor modifications, equivalent replacements, and improvements made to the above embodiments based on the technical essence of the present invention shall be included in the protection scope of the technical solution of the present invention.
Claims
1. A three-cylinder dynamic experience device with horizontal rotation, comprising a platform fixing mechanism that can be fixedly installed on a horizontal ground and a dynamic seat assembly, characterized in that: It also includes a three-cylinder lifting mechanism and a rotating mechanism arranged between the platform fixing mechanism and the dynamic seat assembly. The bottom of the three-cylinder lifting mechanism is hinged to the platform fixing mechanism, the top of the three-cylinder lifting mechanism is hinged below the rotating mechanism, and the top of the rotating mechanism is fixedly connected to the bottom of the dynamic seat assembly; The three-cylinder lifting mechanism is composed of three groups of lifting electric cylinders. A first hinge bracket is installed on the platform fixing mechanism, and the bottom of the lifting electric cylinder is hinged to the first hinge bracket; a second hinge bracket is installed below the rotating mechanism, and a hinge block is also installed on the second hinge bracket. The top of the lifting electric cylinder is hinged to the hinge block.
2. The three-cylinder dynamic experience device with horizontal rotation according to claim 1, wherein: The rotating mechanism is composed of a rotating bottom frame, a driving motor, a driving gear and a driving disc. The driving motor is fixedly installed on the rotating bottom frame, the driving motor is drivingly connected to the driving gear, the driving disc is fixedly installed below the dynamic seat assembly, a circle of internal teeth is arranged on the inner side wall of the driving disc, and the driving gear can be meshed with the internal teeth.
3. The three-cylinder dynamic experience device with horizontal rotation according to claim 2, characterized in that: The platform fixing mechanism is composed of a fixing frame, a fixing bottom plate and a mounting plate. A plurality of triangular plates with screw holes are arranged on the fixing frame. The fixing bottom plate is welded above the middle of the fixing frame. Three mounting plates distributed in an equilateral triangle are welded on the fixing bottom plate, and the first hinge bracket is fixed on the mounting plate.
4. The three-cylinder dynamic experience device with horizontal rotation according to claim 3, characterized in that: A telescopic safety mechanism is also welded in the middle of the fixing bottom plate, and the top of the telescopic safety mechanism can abut against the bottom of the rotating bottom frame.
5. The three-cylinder dynamic experience device with horizontal rotation according to claim 4, characterized in that: The telescopic safety mechanism is one of a cylinder, an oil cylinder or an electric cylinder.
6. The three-cylinder dynamic experience device with horizontal rotation according to claim 1, characterized in that: The dynamic seat assembly includes a support assembly at the bottom and a seat and armrests on the support assembly. A self-locking device is provided on the armrests.
7. The three-cylinder dynamic experience device with horizontal rotation according to claim 6, characterized in that: The support assembly includes a support plate with a frame structure and a base plate welded on the support plate, and the seat is installed on the base plate.