Rotary recreation facility
By incorporating curved tracks, central support devices, and eccentric swivel chairs into rotating amusement rides, and combining multiple forms of motion, the problem of single motion in traditional rotating equipment has been solved, resulting in a more complex dynamic experience and enhanced fun.
Patent Information
- Application Number
- CN202520264418.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Traditional rotating amusement rides have a monotonous movement pattern, lacking variety and excitement, leading to visitor fatigue. Existing rotating platforms cannot achieve up-and-down floating motion, reducing the fun of the ride.
A rotating amusement ride was designed, which uses a curved track, a central support device, rotating components and a drive device. By combining the up-and-down movement of the curved track and the rotation of the eccentric swivel chair with various motion forms such as circular rotation and vertical swing, the multi-dimensional stimulation of the amusement experience is enhanced.
It enriches the layers and fun of the amusement process, and through the combination of various sports, it increases the dynamic experience and novelty of tourists, and improves the fun and safety of amusement facilities.
Smart Images

Figure CN223887396U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of amusement park equipment technology, and more particularly to a rotating amusement park equipment. Background Technology
[0002] In the field of amusement rides, rotating amusement equipment has always been one of the most popular attractions. Traditional rotating amusement equipment is usually just a simple flat platform rotating horizontally around a supporting column. This single mode of movement is rather monotonous, lacking variation and excitement, and easily leads to aesthetic fatigue for tourists. Existing amusement equipment can be found in publication number CN206081601U, which describes a children's amusement equipment including a chassis, a revolution disc, and several planetary swivel chairs. The revolution disc is set on the chassis and can revolve around a central point. A sun sphere is located at the center of the revolution disc. The planetary swivel chairs are mounted on the revolution disc and can rotate on their own axis. However, the existing revolution disc cannot achieve a floating motion of up and down when rotating, which reduces the fun of the ride. Summary of the Invention
[0003] In view of this, this application proposes a rotating amusement ride, comprising: a curved track, a central support device, two or more rotating components, and a drive device;
[0004] The main body of the curved track is circular and undulating to form peaks and troughs. The central support device is located at the center of the curved track. Two or more rotating components are movably mounted on the central support device and the curved track, and the two or more rotating components are equidistantly distributed along the circumference of the central support device.
[0005] Two or more rotating components all include: a support frame and an eccentric swivel chair;
[0006] The main body of the support frame is fan-shaped. The central end of the support frame is hinged to the central support device. The arc end of the support frame away from the central support device is connected to the curved rail through the first moving wheel. The eccentric swivel chair is rotatably mounted on the support frame.
[0007] A driven frame is provided between each pair of adjacent support frames, and the support frame is hinged to the driven frame via a hinge joint;
[0008] The drive unit is located at the bottom of the support frame and is adjacent to the first moving wheel. The output end of the drive unit is connected to the first moving wheel through the transmission device, and is suitable for driving the first moving wheel to move on the curved track.
[0009] In one possible implementation, there are two or more hinges; the two or more hinges are equidistantly distributed along the sides of the support frame.
[0010] In one possible implementation, the hinge includes a first hinge plate, a second hinge plate, a third hinge plate, and a hinge shaft;
[0011] The first hinge plate and the second hinge plate are installed opposite each other on the side of the support frame, and the surfaces of the first hinge plate and the second hinge plate are set parallel to each other. The hinge shaft is fixedly installed on the first hinge plate and the second hinge plate.
[0012] One end of the third hinge plate is fixedly mounted on the driven frame, and the other end of the third hinge plate is hinged to the hinge shaft. The third hinge plate is located between the first hinge plate and the second hinge plate.
[0013] In one possible implementation, the transmission device includes: a timing belt, a timing chain, a first timing pulley, a second timing pulley, and a transmission mounting base.
[0014] The first and second synchronous pulleys are mounted on the transmission mounting base and can rotate synchronously. The output end of the drive device is provided with a driving pulley, and a synchronous belt is sleeved on the driving pulley and the first synchronous pulley. The first moving pulley is provided with a driven pulley, and a synchronous chain is sleeved on the driven pulley and the second synchronous pulley and meshes with the driven pulley and the second synchronous pulley for transmission connection.
[0015] In one possible implementation, the transmission mounting base includes: a first mounting bracket, a second mounting bracket, and a transmission shaft;
[0016] The first mounting bracket and the second mounting bracket are arranged opposite to each other. The drive shaft is rotatably mounted on the first mounting bracket and the second mounting bracket. The first synchronous pulley and the second synchronous pulley are both sleeved on the drive shaft, and the second synchronous pulley is located between the first mounting bracket and the second mounting bracket.
[0017] In one possible implementation, there are two or more drive units; the two or more drive units are spaced apart on two or more support frames.
[0018] In one possible implementation, the eccentric swivel chair includes: a seat, a swivel base, a swivel support, two second casters, and a self-rotating track;
[0019] The rotating track and the rotating seat are both fixedly installed on the support frame, and the rotating seat is located at the center of the rotating track. The rotating bracket is rotatably mounted on the rotating seat. Two second moving wheels are located at the ends of the rotating bracket away from the rotating seat, and the rotating bracket is connected to the rotating track through the two second moving wheels in rolling contact. The seat is fixedly installed on the rotating bracket.
[0020] In one possible implementation, the main body of the rotating bracket has an A-shaped structure, the tip of the rotating bracket is fixedly mounted on the rotating seat, and the opening of the rotating bracket faces the side away from the rotating seat.
[0021] In one possible implementation, the rotating base includes: a fixed base, a rotating shaft, and a connecting part; the fixed base is fixedly mounted on a support frame, one end of the rotating shaft is rotatably mounted on the fixed base, and the other end of the rotating shaft is fixedly connected to the rotating bracket through the connecting part.
[0022] In one possible implementation, the central support device includes a mounting base, a support column, and a rotatable joint; the support column is fixedly mounted on the mounting base, the rotatable joint is sleeved on the support column, and the central end of the support frame is hinged to the rotatable joint.
[0023] Beneficial effects of this application
[0024] When the amusement ride starts, the power output from the drive unit is transmitted to the first moving wheel through the transmission device, causing the first moving wheel to roll on the curved track, which in turn causes the support frame to move in a circular motion around the central support device. During this process, the driven frame transmits the motion to the adjacent support frames, achieving synchronous operation of all support frames. As the support frame moves along the curved track, due to the undulating peaks and troughs of the track, the arc end of the support frame is forced to rise and fall accordingly, causing the support frame to swing at a certain angle in the vertical direction. At the same time, the eccentric seat is mounted on the support frame that is moving in a circular motion and swinging up and down, at a distance of... Under the combined action of centripetal force and gravity, the eccentric seat begins to rotate around its own eccentric axis. Through the coordinated work of the curved track, rotating components, central support device and driven frame, the amusement facility of this application cleverly integrates multiple forms of motion such as circular rotation, vertical swing and eccentric rotation, bringing tourists an unprecedented multi-dimensional dynamic experience. This composite motion design allows tourists to enjoy the thrill of rapid rotation while also feeling the undulations in the vertical direction and the unique perspective changes brought about by the rotation of the eccentric seat, greatly enriching the sense of layering and fun of the amusement process.
[0025] Compared with existing technologies, the amusement facility of this application adds vertical movement in addition to the rotation and eccentric swivel chair rotation. When the rotating component moves along the curved track, it moves up and down with the undulation of the curved track. The combination of multiple movement forms allows tourists to experience more complex movement states during a single ride, increasing the fun and novelty of the amusement facility.
[0026] Other features and aspects of this application will become clear from the following detailed description of exemplary embodiments with reference to the accompanying drawings. Attached Figure Description
[0027] The accompanying drawings, which are included in and form part of this specification, illustrate exemplary embodiments, features, and aspects of this application together with the specification and serve to explain the principles of this application.
[0028] Figure 1A schematic diagram of the main structure of the rotating amusement ride of this application is shown;
[0029] Figure 2 This application shows a front view of the rotating amusement ride.
[0030] Figure 3 This application shows a bottom view of the rotating amusement ride.
[0031] Figure 4 A schematic diagram of the main structure of the rotating component of this application is shown;
[0032] Figure 5 A partial enlarged view of the hinge component of this application is shown;
[0033] Figure 6 Show Figure 3 A magnified view of a portion of the image;
[0034] Figure 7 Show Figure 3 A magnified view of a portion of the image;
[0035] Figure 8 Show Figure 1 Schematic diagram of the eccentric seat;
[0036] Figure 9 A schematic diagram of the main structure of the rotating support is shown;
[0037] Figure 10 Show Figure 1 A magnified view of a portion of the image;
[0038] Figure 11 A schematic diagram of the main structure connecting the bearing is shown. Detailed Implementation
[0039] Various exemplary embodiments, features, and aspects of this application will now be described in detail with reference to the accompanying drawings. The same reference numerals in the drawings denote elements that have the same or similar functions. Although various aspects of the embodiments are shown in the drawings, they are not necessarily drawn to scale unless specifically indicated otherwise.
[0040] It should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model or simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0041] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.
[0042] The term “exemplary” as used herein means “serving as an example, embodiment, or illustration.” Any embodiment illustrated herein as “exemplary” is not necessarily to be construed as superior to or better than other embodiments.
[0043] Furthermore, to better illustrate this application, numerous specific details are provided in the following detailed embodiments. Those skilled in the art should understand that this application can be implemented without certain specific details. In some instances, methods, means, components, and circuits well-known to those skilled in the art have not been described in detail in order to highlight the main points of this application.
[0044] This application proposes a rotating amusement ride, such as Figures 1 to 11 As shown, it includes: a curved track 510, a central support device 100, two or more rotating components, and a drive device 520; the main body of the curved track 510 is circular and undulates to form peaks and troughs; the central support device 100 is located at the center of the curved track 510; the two or more rotating components are movably mounted on the central support device 100 and the curved track 510, and the two or more rotating components are equidistantly distributed along the circumference of the central support device 100; each of the two or more rotating components includes: a support frame 210 and an eccentric swivel chair 300; the main body of the support frame 210 is fan-shaped, and the central end of the support frame 210 is connected to the central support device 520. The device 100 is hinged, and the arc end of the support frame 210 away from the central support device 100 is connected to the curved rail 510 through the first moving wheel 240 in rolling contact. The eccentric swivel chair 300 is rotatably mounted on the support frame 210. A driven frame 220 is provided between each two adjacent support frames 210, and the support frame 210 is hinged to the driven frame 220 through the hinge 230. The drive device 520 is located at the bottom of the support frame 210 and is arranged adjacent to the first moving wheel 240. The output end of the drive device 520 is connected to the first moving wheel 240 through the transmission device 400, and is suitable for driving the first moving wheel 240 to move on the curved rail 510.
[0045] It should be noted here that, as Figures 1 to 3As shown, the curved track 510 provides a stable motion trajectory for the rotating components, enabling them to move in a circle along the curved track 510. Simultaneously, the undulating curves of the curved track 510 create peaks and troughs, causing the rotating components to bounce up and down as they move along it (where the peak is the highest point of the curved track 510, and the trough is the lowest point), increasing the excitement and fun of the amusement ride. The central support device 100 provides stable rotational support for the rotating components. During operation, the rotating components move in a circle around the central support device 100. Multiple rotating components equidistantly distributed circumferentially can evenly transmit the centrifugal force, stress, and other forces generated during rotation to the central support device 100. The central support device 100 then evenly distributes these forces onto the ground, preventing the amusement ride from tipping over due to a shift in the center of gravity during operation.
[0046] like Figures 1 to 4 As shown, the fan-shaped structure design allows the support frame 210 to maintain good balance during rotation, reducing swaying or instability caused by center of gravity shift. When the support frame 210 moves along the crests and troughs of the curved track 510, the hinged design between the central end of the support frame 210 and the central support device 100 allows the support frame 210 to have a certain swing angle in the vertical direction, thus flexibly adapting to the up-and-down changes of the curved track 510. This ensures that the arc end of the support frame 210 is tightly attached to the curved track 510 via the first moving wheel 240, thereby enabling the entire rotating assembly to accurately follow the movement trajectory of the curved track 510. Shape change; the rolling connection between the first moving wheel 240 and the curved rail 510 reduces the friction when the support frame 210 moves on the curved rail 510. The eccentric swivel chair 300 is rotatably mounted on the support frame 210. When the support frame 210 moves in a circular motion about the central support device 100 as an axis and the arc end of the support frame 210 moves along the curved rail 510, the support frame 210 drives the eccentric swivel chair 300 to move in a circular motion. The eccentric swivel chair 300 achieves rotation under the action of centrifugal force and its own gravity. The drive device 520 is suitable for providing driving force to the first moving wheel 240, thereby driving the first moving wheel 240 to rotate and move forward on the curved rail 510.
[0047] The driven frame 220 hinges the adjacent support frames 210 together, thus ensuring the synchronicity of movement between the adjacent support frames 210. When the drive device 520 drives one support frame 210 to move, the adjacent support frames 210 can also move synchronously through the transmission action of the driven frame 220. This allows all rotating components of the amusement facility to rotate along the curved track 510 at the same rhythm and speed, ensuring the comfort and safety of the amusement process. At the same time, the driven frame 220 and the support frame 210 together form an integral rotating platform, through which tourists sit on the eccentric swivel chair 300 on the support frame 210.
[0048] When the amusement ride is started, the power output by the drive unit 520 is transmitted to the first moving wheel 240 through the transmission device 400, causing the first moving wheel 240 to roll on the curved track 510, thereby causing the support frame 210 to perform circular motion around the central support device 100. During this process, the driven frame 220 transmits the motion to the adjacent support frames 210, realizing the synchronous operation of each support frame 210. As the support frame 210 moves along the curved track 510, due to the undulating peaks and troughs of the curved track 510, the arc end of the support frame 210 is forced to rise and fall accordingly, causing the support frame 210 to swing at a certain angle in the vertical direction. At the same time, the eccentric swivel chair 300 is installed on the circumferentially moving part. On the moving and swinging support frame 210, under the combined action of centrifugal force and gravity, the eccentric swivel chair 300 begins to rotate around its own eccentric axis. Through the coordinated work of the curved track 510, rotating components, central support device 100 and driven frame 220, the amusement facility of this application cleverly integrates multiple forms of motion such as circular rotation, vertical swing and eccentric rotation, bringing tourists an unprecedented multi-dimensional dynamic experience. This composite motion design allows tourists to enjoy the thrill of rapid rotation while also feeling the vertical undulations and the unique perspective changes brought about by the rotation of the eccentric swivel chair 300, greatly enriching the sense of layering and fun of the amusement process.
[0049] Compared with existing technologies, the amusement facility of this application adds vertical movement in addition to the rotation and eccentric swivel chair 300. When the rotating component moves along the curved track 510, it moves up and down with the undulation of the curved track 510. The combination of multiple movement forms allows tourists to experience more complex movement states during a ride, increasing the fun and novelty of the amusement facility.
[0050] Furthermore, such as Figure 1 As shown, there are eight rotating components.
[0051] In one possible implementation, there are two or more hinges 230; the two or more hinges 230 are equidistantly distributed along the side of the support frame 210. It should be noted that the equidistantly distributed multiple hinges 230 enable a more uniform and balanced connection between the support frame 210 and the driven frame 220, preventing misalignment between the support frame 210 and the driven frame 220, ensuring that the multiple support frames 210 and the driven frame 220 remain synchronized during movement, thereby ensuring the smooth operation of the amusement ride and enhancing the stability of the entire structure.
[0052] In one possible implementation, such as Figure 5As shown, the hinge 230 includes a first hinge plate 231, a second hinge plate 232, a third hinge plate 233, and a hinge shaft 234. The first hinge plate 231 and the second hinge plate 232 are mounted opposite each other on the side of the support frame 210, and the surfaces of the first hinge plate 231 and the second hinge plate 232 are arranged parallel to each other. The hinge shaft 234 is fixedly mounted on the first hinge plate 231 and the second hinge plate 232. One end of the third hinge plate 233 is fixedly mounted on the driven frame 220, and the other end of the third hinge plate 233 is hinged to the hinge shaft 234. The third hinge plate 233 is located between the first hinge plate 231 and the second hinge plate 232.
[0053] It should be noted that the first hinge plate 231 and the second hinge plate 232 are fixedly installed on the side of the support frame 210, and there is a preset distance between the first hinge plate 231 and the second hinge plate 232. The preset distance matches the thickness of the third hinge plate 233. The plate surface of the third hinge plate 233 is parallel to the plate surface of the first hinge plate 231. One end of the third hinge plate 233 is fixed on the driven frame 220, and the other end is hinged to the hinge shaft 234, thereby realizing the transmission of the movement of the support frame 210 to the driven frame 220, so that the driven frame 220 moves with the movement of the support frame 210. The third hinge plate 233 can rotate freely around the hinge shaft 234, thereby adapting to the changes in position and angle of the support frame 210 when it makes complex movements such as circular motion and vertical swing.
[0054] In one possible implementation, such as Figure 6 As shown, two hinges 230 are provided between the support frame 210 and the driven frame 220.
[0055] In one possible implementation, such as Figure 7 As shown, the transmission device 400 includes: a synchronous belt 410, a synchronous chain 420, a first synchronous pulley 430, a second synchronous pulley 440, and a transmission mounting base. The first synchronous pulley 430 and the second synchronous pulley 440 are synchronously rotatable on the transmission mounting base. The output end of the drive device 520 is provided with a drive pulley 521, and the synchronous belt 410 is sleeved on the drive pulley 521 and the first synchronous pulley 430. The first moving pulley 240 is provided with a driven pulley 461, and the synchronous chain 420 is sleeved on the driven pulley 461 and the second synchronous pulley 440 and is meshed with the driven pulley 461 and the second synchronous pulley 440 for transmission connection.
[0056] It should be noted that the transmission mounting base is fixedly installed on the side of the support frame 210 away from the eccentric swivel chair 300. The transmission mounting base is suitable for providing stable support for the first synchronous pulley 430 and the second synchronous pulley 440. The driving pulley 521 is fixedly installed on the output end of the drive device 520, and the driving pulley 521 and the first synchronous pulley 430 are located on the same plane. A third mounting bracket 454 is provided on the side of the transmission mounting base away from the drive device 520, and the third mounting bracket 454 is arranged adjacent to the transmission mounting base. The drive shaft 460 is hinged to the third mounting bracket 454 and the transmission mounting base. The first moving wheel 240 is sleeved on the drive shaft 460 and is located between the third mounting bracket 454 and the transmission mounting base. The driven wheel 461 is sleeved on the drive shaft 460 to achieve coaxial connection with the first moving wheel 240. The first synchronous wheel 430 and the second synchronous wheel 440 are located on the same plane. The drive device 520 drives the drive wheel 521 to rotate. The synchronous belt 410 transmits the rotational power of the drive wheel 521 to the first synchronous wheel 430. The first synchronous wheel 430 and the second synchronous wheel 440 rotate synchronously. The second synchronous wheel 440 transmits the power to the driven wheel 461 through the synchronous chain 420. The first moving wheel 240 receives the power from the driven wheel 461, thereby driving the first moving wheel 240 to rotate forward on the curved track 510. In actual operation, through the two-stage reduction of the transmission device 400, the transmission ratio output by the drive device 520 to the first moving wheel 240 can be flexibly adjusted, thereby achieving precise control of the speed and acceleration of the amusement facility, meeting various complex motion requirements, and bringing a diverse amusement experience to tourists.
[0057] In one possible implementation, the drive unit 520 is a variable frequency motor as in the prior art.
[0058] In one possible implementation, such as Figure 7 As shown, the transmission mounting base includes: a first mounting bracket 451, a second mounting bracket 452, and a transmission shaft 453; the first mounting bracket 451 and the second mounting bracket 452 are arranged opposite to each other, and the transmission shaft 453 is rotatably mounted on the first mounting bracket 451 and the second mounting bracket 452. The first synchronous pulley 430 and the second synchronous pulley 440 are both fixedly sleeved on the transmission shaft 453, and the second synchronous pulley 440 is located between the first mounting bracket 451 and the second mounting bracket 452.
[0059] In one possible implementation, such as Figure 3 As shown, there are two or more drive devices 520; the two or more drive devices 520 are spaced apart on two or more support frames 210; correspondingly, there are two or more transmission devices 400, the two or more transmission devices 400 are spaced apart on two or more support frames 210, and the drive devices 520 and transmission devices 400 are arranged correspondingly.
[0060] In one possible implementation, such as Figure 8 , Figure 9 As shown, the eccentric swivel chair 300 includes: a seat 310, a swivel base 320, a swivel support 330, two second moving wheels 340, and a rotation track 350; the rotation track 350 and the swivel base 320 are both fixedly mounted on the support frame 210, and the swivel base 320 is located at the center of the rotation track 350. The swivel support 330 is rotatably mounted on the swivel base 320. The two second moving wheels 340 are located at the ends of the swivel support 330 away from the swivel base 320, and the swivel support 330 is in rolling contact with the rotation track 350 through the two second moving wheels 340. The seat 310 is fixedly mounted on the swivel support 330.
[0061] It should be noted that the main body of the rotating track 350 is circular. The rotating track 350 and the rotating seat 320 are both fixedly installed on the support frame 210, and the rotating seat 320 is located at the center of the rotating track 350. The rotating seat 320 is suitable for providing a fixed central axis point for the rotation of the swivel chair. When the support frame 210 moves in a circle around a certain fixed point, the seat 310 installed on the support frame 210 will also move in a circle, thereby generating centrifugal force. Under the action of gravity and centrifugal force, the seat 310 and the rotating support 330 rotate around the rotating seat 320, thereby realizing the rotation of the eccentric swivel chair 300.
[0062] In one possible implementation, such as Figure 9 As shown, the main body of the rotating bracket 330 has an A-shaped structure. The tip of the rotating bracket 330 is fixedly installed on the rotating seat 320, and the opening of the rotating bracket 330 faces away from the rotating seat 320. Two second moving wheels 340 are respectively located at the opening end of the rotating bracket 330. The A-shaped rotating bracket 330 can evenly distribute the weight borne by the seat 310 and the external forces such as centrifugal force generated during rotation to the rotating seat 320 and the support frame 210. This effectively avoids stress concentration, making the structure of the entire eccentric swivel chair 300 more stable and reducing the risk of damage or deformation due to excessive local stress.
[0063] In one possible implementation, such as Figure 9 As shown, the rotating base 320 includes: a fixed base 321, a rotating shaft 322, and a connecting part 323; the fixed base 321 is fixedly mounted on the support frame 210, one end of the rotating shaft 322 is rotatably mounted on the fixed base 321, and the other end of the rotating shaft 322 is fixedly connected to the rotating bracket 330 through the connecting part 323.
[0064] In one possible implementation, such as Figure 1 , Figure 10As shown, the central support device 100 includes a mounting base 110, a support column 120, and a rotatable joint 130; the support column 120 is fixedly mounted on the mounting base 110, the rotatable joint 130 is sleeved on the support column 120, and the central end of the support frame 210 is hinged to the rotatable joint 130.
[0065] It should be noted that the mounting base 110 is suitable for securely installing the support column 120 in the installation position. The rotatable joint 130 is mounted on the support column 120 and rotates about the support column 120 as its axis of rotation. The central end of the support frame 210 is provided with a connecting bearing 140, and the support frame 210 is hinged to the rotatable joint 130 through the connecting bearing 140. Further, such as... Figure 11 As shown, the main body of the connecting bearing 140 has a columnar structure, and the end of the connecting bearing 140 away from the support frame 210 is provided with a hemispherical hinge part 141. One end of the connecting bearing 140 is fixedly connected to the center end of the support frame 210, and the other end of the connecting bearing 140 is hinged to the rotatable joint 130 through the hinge part 141. The hemispherical design of the hinge part 141 allows the support frame 210 to rotate freely within a certain angle range, increasing the flexibility and adjustability of the movement of the support frame 210.
[0066] The various embodiments of this application have been described above. These descriptions are exemplary and not exhaustive, nor are they limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or improvement of the technology in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.
Claims
1. A rotating amusement ride, characterized in that, include: Curved track, central support device, two or more rotating components and drive device; The main body of the curved track is circular and undulates to form peaks and troughs. The central support device is located at the center of the curved track. Two or more rotating components are movably arranged on the central support device and the curved track, and the two or more rotating components are equidistantly distributed along the circumference of the central support device. Each of the two or more of the aforementioned rotating components includes: a support frame and an eccentric swivel chair; The main body of the support frame has a fan-shaped structure. The central end of the support frame is hinged to the central support device. The arc end of the support frame away from the central support device is connected to the curved track through a first moving wheel. The eccentric swivel chair is rotatably mounted on the support frame. A driven frame is provided between each pair of adjacent support frames, and the support frame is hinged to the driven frame via a hinge member; The drive device is located at the bottom of the support frame and is adjacent to the first movable wheel. The output end of the drive device is connected to the first movable wheel through a transmission device, and is suitable for driving the first movable wheel to move on the curved track.
2. The rotating amusement ride according to claim 1, characterized in that, The hinge component is provided in two or more; Two or more of the hinges are equidistantly distributed along the side of the support frame.
3. The rotating amusement ride according to claim 2, characterized in that, The hinge includes a first hinge plate, a second hinge plate, a third hinge plate, and a hinge shaft; The first hinge plate and the second hinge plate are mounted opposite each other on the side of the support frame, and the surfaces of the first hinge plate and the second hinge plate are arranged parallel to each other. The hinge shaft is fixedly mounted on the first hinge plate and the second hinge plate. One end of the third hinge plate is fixedly mounted on the driven frame, and the other end of the third hinge plate is hinged to the hinge shaft. The third hinge plate is located between the first hinge plate and the second hinge plate.
4. The rotating amusement ride according to claim 1, characterized in that, The transmission device includes: a synchronous belt, a synchronous chain, a first synchronous pulley, a second synchronous pulley, and a transmission mounting base. The first and second synchronous pulleys are mounted on the transmission mounting base and can rotate synchronously. The output end of the drive device is provided with a drive pulley, and the synchronous belt is sleeved on the drive pulley and the first synchronous pulley; The first moving wheel is provided with a driven wheel, and the synchronous chain is sleeved on the driven wheel and the second synchronous wheel and is meshed with the driven wheel and the second synchronous wheel for transmission.
5. The rotating amusement ride according to claim 4, characterized in that, The transmission mounting base includes: a first mounting bracket, a second mounting bracket, and a transmission shaft; The first mounting bracket and the second mounting bracket are arranged opposite to each other. The drive shaft is rotatably mounted on the first mounting bracket and the second mounting bracket. The first synchronous pulley and the second synchronous pulley are both sleeved on the drive shaft, and the second synchronous pulley is located between the first mounting bracket and the second mounting bracket.
6. The rotating amusement ride according to claim 1, characterized in that, The drive device is provided in two or more; Two or more of the drive units are spaced apart on two or more of the support frames.
7. The rotating amusement ride according to claim 1, characterized in that, The eccentric swivel chair includes: a seat, a swivel base, a swivel support, two second moving wheels, and a self-rotating track; The rotating track and the rotating seat are both fixedly installed on the support frame, and the rotating seat is located at the center of the rotating track. The rotating bracket is rotatably mounted on the rotating seat. Two second movable wheels are located at the ends of the rotating bracket away from the rotating seat, and the rotating bracket is connected to the rotating track in rolling contact through the two second movable wheels. The seat is fixedly installed on the rotating bracket.
8. The rotating amusement ride according to claim 7, characterized in that, The main body of the rotating bracket has an A-shaped structure, the tip of the rotating bracket is fixedly installed on the rotating seat, and the opening of the rotating bracket faces the side away from the rotating seat.
9. The rotating amusement ride according to claim 7, characterized in that, The rotating base includes: a fixed base, a rotating shaft, and a connecting part; The fixed base is fixedly installed on the support frame, one end of the rotating shaft is rotatably mounted on the fixed base, and the other end of the rotating shaft is fixedly connected to the rotating bracket through the connecting part.
10. The rotating amusement ride according to claim 1, characterized in that, The central support device includes a mounting base, a support column, and a rotatable joint; The support column is fixedly mounted on the mounting base, the rotatable joint is sleeved on the support column, and the central end of the support frame is hinged to the rotatable joint.
Citation Information
Patent Citations
Children amusement equipment
CN206081601U