Rotating device for rotating equipment in amusement park
By installing drive components and control mechanisms on the carousel, diverse movements of the moving columns are achieved, solving the problem of monotonous rotation of existing carousels and improving the fun and safety of the ride.
Patent Information
- Application Number
- CN202511690317.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-18
- Publication Date
- 2026-01-30
AI Technical Summary
The existing carousel's rotating mechanism lacks variation during rotation, resulting in a dull experience and failing to meet users' needs for diverse experiences.
By setting up drive components, control mechanisms, and switching components, the movable column can switch between smooth rotation, partial undulation, and high-frequency undulation motion. Combined with support components and braking devices, stability and safety are improved.
This enhances the fun of the carousel, meets the different needs of tourists for varying levels of excitement, and improves the stability and safety of the equipment.
Smart Images

Figure CN121422490A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of amusement park equipment technology, specifically a rotating device for rotating equipment in amusement parks. Background Technology
[0002] The amusement park is a happy planet filled with laughter and fantasy. The colorful archway at the entrance opens to welcome the crowd. The roller coaster roars through the tracks, leaving behind screams and cheers. The carousel turns slowly to the accompaniment of melodious music, and the wooden horses carry children's dreams up and down. The Ferris wheel slowly rises into the sky, taking in the colorful scenery of the entire park.
[0003] The carousel is a classic rotating ride in amusement parks. It usually consists of a circular platform on which multiple beautifully decorated wooden horses or other animal models (such as the Larva model) are fixed. These seats rotate slowly around the central axis along with the platform, while the horses also move up and down, as if galloping horses. Under the gorgeous canopy, colorful lights flash, and accompanied by cheerful music, creating a romantic and dreamy atmosphere. Whether it is children or adults, everyone can find their own happiness on the carousel and feel as if they are in a fairy tale world.
[0004] Existing carousels use a rotating mechanism that, through a linkage, causes the model to undulate up and down during rotation. The carousel slowly rotates to a repetitive, light melody, with the model simply moving in circles and undulating along a fixed trajectory. There is no change in speed or rhythm, and the entire process is just a mechanical repetition of the same action. After playing for a long time, it inevitably becomes boring, failing to enhance the fun and immersion of the game, and not meeting users' needs for diverse experiences.
[0005] Therefore, we propose a rotating device for rotating equipment in amusement parks. Summary of the Invention
[0006] (a) Technical problems to be solved To address the shortcomings of existing technologies, this invention provides a rotating device for amusement park rotating equipment. This solves the problem that existing models only move along a fixed trajectory in undulating and circular motions without changing speed or rhythm. The entire process is just a mechanical repetition of the same action, which inevitably becomes boring after a while, making it difficult to enhance the fun and immersion of the game and failing to meet users' needs for diverse experiences.
[0007] (II) Technical Solution To achieve the above objectives, the present invention provides the following technical solution: a rotating device for amusement park rotating equipment, comprising a base, a support column fixedly connected to the base, an upper rotating frame and a lower rotating frame rotatably connected to the surface of the support column, a plurality of movable columns for mounting models slidably connected to the inner walls of the upper rotating frame and the lower rotating frame, a movable wheel installed at the lower end of the movable column, a drive assembly provided on the support column for controlling the rotation of the upper rotating frame and the lower rotating frame, and a control mechanism provided on the support column; The control mechanism includes a fixed plate fixed to the surface of the support column. Multiple sets of switching components are slidably connected to the inner wall of the fixed plate for switching between smooth movement and undulating movement of the movable column. A pushing component is provided on the surface of the fixed plate for pushing the switching components to switch and controlling the number of switching components to switch. A support part is provided between the switching components and the base for support assistance. The switching component includes a sliding plate that is slidably connected to the inner wall of the fixed disk. Two sets of protrusions are fixedly connected to the surface of the sliding plate, and a reset component is provided between the sliding plate and the inner wall of the fixed disk.
[0008] Preferably, the control component includes multiple sets of hydraulic cylinders fixed to the surface of the fixed plate. The output ends of the multiple sets of hydraulic cylinders are fixedly connected to a moving ring. Multiple pressing blocks I and multiple pressing blocks II are fixedly connected to the surface of the moving ring. The lower surface of the slide plate is also fixedly connected to a pressing part. Through the above components, during use, when the moving wheel contacts the slide plate, the movable column does not move up and down. When up and down movement is required, the multiple sets of hydraulic cylinders can be controlled to move simultaneously. The hydraulic cylinders control the moving ring to move upward. The multiple pressing blocks I can contact the pressing part on part of the lower surface of the slide plate, controlling part of the slide plate to move. When the moving wheel moves to the corresponding position again, it can contact the protrusion on the slide plate, and the movable column realizes up and down movement. When the moving ring moves upward again, the pressing blocks II can squeeze the pressing part on the remaining slide plate. At this time, the movable column moves more frequently in a circular motion.
[0009] Preferably, the lower surface of the fixed plate is fixedly connected to multiple sets of guide rods, and the multiple sets of guide rods are slidably connected to the inner wall of the moving ring. Through the above-mentioned components, when the hydraulic cylinder drives the moving ring to move up and down, the multiple sets of guide rods can ensure the stability of the moving ring during movement.
[0010] Preferably, the extrusion section includes an extrusion rod fixed to the lower surface of the slide plate. An auxiliary wheel is rotatably connected to the inner wall of the extrusion rod. Through the above components, when extrusion block one and extrusion block two come into contact with the auxiliary wheel on the extrusion rod, the friction between them can be reduced, making their operation more stable.
[0011] Preferably, the reset assembly includes two stabilizing rods fixed in the inner wall of the fixed plate. The stabilizing rods are slidably connected to the inner wall of the slide plate. A reset spring is sleeved on the surface of the stabilizing rod. The two ends of the reset spring are fixedly connected to the inner wall of the slide plate and the fixed plate, respectively. Through the above components, when the pushing assembly loses its pressure on the slide plate, the reset spring can release its elastic force, drive the slide plate and the protrusion to reset, and ensure the stability of the slide plate after reset.
[0012] Preferably, the driving assembly includes a driving motor fixed to the surface of the support column, a driving gear fixedly connected to the output end of the driving motor, and a gear ring fixedly connected to the surface of the upper rotating frame. The driving gear meshes with the gear ring. Through the above components, when rotating, the driving motor drives the driving gear to rotate, and the driving gear, in conjunction with the gear ring, drives the upper rotating frame to rotate. The upper rotating frame, in conjunction with the movable column, drives the lower rotating frame to rotate, thereby driving the movable column to perform circumferential motion.
[0013] Preferably, the support includes two support legs fixed to the lower surface of the skateboard, and support wheels are rotatably connected to the inner walls of the two support legs. A guide rail is fixedly connected to the surface of the base, and the support wheels contact the inner wall of the guide rail. Through the above components, when the skateboard moves, it can drive the support legs and support wheels to move, and the support wheels can roll in the guide rail, thereby achieving the support function.
[0014] Preferably, a braking device is provided between the gear rings of the support column. The braking rotation includes a fixed seat fixed to the surface of the support column. A shaft is rotatably connected to the inner wall of the fixed seat. A residual gear is fixedly connected to the lower end of the shaft. An auxiliary spring is sleeved on the surface of the shaft. The two ends of the auxiliary spring are fixedly connected to the residual gear and the surface of the fixed seat, respectively. A brake block is also fixedly connected to the surface of the shaft. The surface of the brake block is provided with a contact end for contacting the fixed block fixed to the surface of the support column. A reset limiting part is also provided on the support column for limiting the brake block and controlling the reset of the brake block. A gear ring is fixedly connected to the surface of the gear ring. Through the above components, when the equipment malfunctions and emergency braking is required, the reset limiting part loses its restraint on the brake block. The auxiliary spring drives the shaft and the residual gear to rotate. When the residual gear meshes with the gear ring, it drives the residual gear to rotate a certain angle. The contact end of the brake block contacts the fixed block, limiting the rotation of the residual gear and the gear ring, thus achieving the braking effect.
[0015] Preferably, the reset limiting part includes a cylinder fixed in the inner wall of the support column. The output end of the cylinder is fixedly connected to a fixing member. A roller is rotatably connected to the surface of the fixing member. A groove for the roller to be inserted is opened on the surface of the fixing block. Through the above components, the cylinder can drive the fixing member and the roller to move. The roller can squeeze the brake block and drive the brake block and shaft to rotate and reset. The auxiliary spring is subjected to force. After reset, the roller and the cylinder can limit the brake block and shaft.
[0016] Preferably, the bonding end is planar.
[0017] In summary, the technical effects and advantages of this invention are as follows: 1. In this invention, by setting a driving component, the upper rotating frame, the movable column, the moving wheel, and the lower rotating frame can be driven to rotate. The moving wheel can contact the fixed plate and the sliding plate in the switching component, at which time it is a smooth rotation without undulation. When the pushing component squeezes part of the switching component, the position of part of the sliding plate and the protrusion is switched, realizing the undulating motion when the movable column rotates. When the pushing component moves again, it can squeeze the remaining switching component, and the movable column can perform high-frequency undulating motion when rotating. It realizes the switching of three modes of the movable column: smooth rotation without undulation, partial undulation, and high-frequency undulation, to meet the needs of different tourists for the degree of stimulation and enrich the fun of playing with the equipment.
[0018] 2. In this invention, by setting up a support part, the skateboard can drive the support legs and support wheels to move on the guide rail during the movement of the skateboard, thereby supporting and reinforcing the skateboard and the fixed plate and improving stability.
[0019] 3. In this invention, by setting a braking device, the brake block is freed from restraint by the reset limiting part, and the reset spring can drive the shaft and the residual gear to rotate. After the residual gear meshes with the gear ring and rotates a certain angle, the contact end of the brake block can contact the fixed block, thereby achieving overall braking and improving safety. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of a rotating device for amusement park rotating equipment according to the present invention; Figure 2 This invention relates to a rotating device for amusement park rotating equipment. Figure 1 Schematic diagram of the structure at point A in the middle; Figure 3 This is a partial structural schematic diagram of a rotating device for amusement park rotating equipment according to the present invention; Figure 4 This is a partial structural schematic diagram of a rotating device for amusement park rotating equipment according to the present invention; Figure 5 This is a schematic diagram of the control mechanism structure of a rotating device for amusement park rotating equipment according to the present invention; Figure 6 This is a bottom view schematic diagram of the control mechanism of a rotating device for amusement park rotating equipment according to the present invention; Figure 7 This invention relates to a rotating device for amusement park rotating equipment. Figure 6 Schematic diagram of the structure at point B; Figure 8 This is a schematic diagram of the pushing component of a rotating device for amusement park rotating equipment according to the present invention; Figure 9 This is a schematic diagram of the switching component structure of a rotating device for amusement park rotating equipment according to the present invention; Figure 10 This is a bottom view of the switching component of a rotating device for amusement park rotating equipment according to the present invention.
[0021] In the diagram: 1. Base; 2. Support column; 3. Upper rotating frame; 4. Lower rotating frame; 5. Movable column; 6. Caster wheel; 7. Drive assembly; 71. Drive motor; 72. Drive gear; 73. Gear ring one; 8. Braking device; 81. Fixing block; 82. Cylinder; 83. Fixing component; 84. Roller; 85. Brake block; 86. Fixing seat; 87. Residual gear; 88. Auxiliary spring; 89. Gear ring two; 810. Shaft; 811. Adhesive. 9. Closing end; 91. Control mechanism; 92. Fixed plate; 93. Pushing assembly; 94. Hydraulic cylinder; 95. Moving ring; 96. Extrusion block one; 97. Extrusion block two; 98. Guide rod; 99. Extrusion rod; 90. Auxiliary wheel; 91. Switching assembly; 92. Slide plate; 93. Protrusion; 94. Stabilizing rod; 95. Return spring; 96. Support part; 97. Support leg; 98. Support wheel; 99. Guide rail. Detailed Implementation
[0022] 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.
[0023] refer to Figure 1 - Figure 10 The rotating device shown includes a base 1, a support column 2 fixedly connected to the base 1, an upper rotating frame 3 and a lower rotating frame 4 rotatably connected to the surface of the support column 2, a plurality of movable columns 5 for mounting models slidably connected to the inner walls of the upper rotating frame 3 and the lower rotating frame 4, a movable wheel 6 installed at the lower end of the movable column 5, a drive component 7 provided on the support column 2 for controlling the rotation of the upper rotating frame 3 and the lower rotating frame 4, and a control mechanism 9 provided on the support column 2.
[0024] The control mechanism 9 includes a fixed disk 91 fixed to the surface of the support column 2. The inner wall of the fixed disk 91 is slidably connected to multiple sets of switching components 93 for switching between smooth and undulating movements of the movable column 5. The surface of the fixed disk 91 is provided with a pushing component 92 for pushing the switching components 93 to switch and controlling the number of switching components 93. A support part 96 is provided between the switching component 93 and the base 1 for support assistance. The switching component 93 includes a sliding plate 931 slidably connected to the inner wall of the fixed disk 91. Two sets of protrusions 932 are fixedly connected to the surface of the sliding plate 931. A reset component is provided between the sliding plate 931 and the inner wall of the fixed disk 91.
[0025] The control component includes multiple hydraulic cylinders 921 fixed on the surface of the fixed disk 91. The output ends of the multiple hydraulic cylinders 921 are fixedly connected to a moving ring 922. Multiple extrusion blocks 923 and multiple extrusion blocks 924 are fixedly connected to the surface of the moving ring 922. An extrusion part is also fixedly connected to the lower surface of the slide plate 931. The extrusion part includes an extrusion rod 926 fixed on the lower surface of the slide plate 931. An auxiliary wheel 927 is rotatably connected to the inner wall of the extrusion rod 926. Multiple guide rods 925 are fixedly connected to the lower surface of the fixed disk 91. The multiple guide rods 925 are slidably connected to the inner wall of the moving ring 922.
[0026] In this implementation scheme: During use, when the moving wheel 6 contacts the slide plate 931, the moving column 5 does not move up and down. When up and down movement is required, multiple sets of hydraulic cylinders 921 can be controlled to move simultaneously. The hydraulic cylinders 921 control the moving ring 922 to move upward. Multiple sets of guide rods 925 can ensure the stability of the moving ring 922 during movement. Multiple sets of extrusion blocks 923 can contact the extrusion part on the lower surface of part of the slide plate 931 to control part of the slide plate 931 to move. When the moving wheel 6 moves to the corresponding position again, it can contact the protrusion 932 on the slide plate 931, and the moving column 5 realizes up and down movement. When the moving ring 922 moves upward again, the extrusion block 924 can extrude the extrusion part on the remaining slide plate 931. At this time, the moving column 5 moves up and down more frequently during circumferential motion. When the extrusion blocks 923 and 924 contact the auxiliary wheel 927 on the extrusion rod 926, the friction between them can be reduced, making its operation more stable.
[0027] The reset assembly includes two stabilizing rods 94 fixed in the inner wall of the fixed plate 91. The stabilizing rods 94 are slidably connected to the inner wall of the slide plate 931. A reset spring 95 is sleeved on the surface of the stabilizing rods 94. The two ends of the reset spring 95 are fixedly connected to the inner walls of the slide plate 931 and the fixed plate 91, respectively.
[0028] In this implementation scheme: when the pushing component 92 loses its pressure on the slide plate 931, the return spring 95 can release its elastic force, causing the slide plate 931 and the protrusion 932 to reset, and ensuring the stability of the slide plate 931 after reset.
[0029] The drive assembly 7 includes a drive motor 71 fixed on the surface of the support column 2. The output end of the drive motor 71 is fixedly connected to a drive gear 72. A gear ring 73 is fixedly connected to the surface of the upper rotating frame 3. The drive gear 72 and the gear ring 73 are meshed together.
[0030] In this embodiment: during rotation, the drive motor 71 drives the drive gear 72 to rotate. The drive gear 72, in conjunction with the gear ring 73, drives the upper rotating frame 3 to rotate. The upper rotating frame 3, in conjunction with the movable column 5, drives the lower rotating frame 4 to rotate, thereby driving the movable column 5 to perform circular motion.
[0031] The support part 96 includes two support legs 961 fixed on the lower surface of the slide plate 931. The inner walls of the two support legs 961 are rotatably connected to support wheels 962. The surface of the base 1 is fixedly connected to a guide rail 963. The support wheels 962 are in contact with the inner wall of the guide rail 963.
[0032] In this implementation scheme: when the skateboard 931 moves, it can drive the support leg 961 and the support wheel 962 to move. The support wheel 962 can roll in the guide rail 963, thereby achieving the support function.
[0033] A braking device 8 is provided between the gear ring 73 and the support column 2. The braking rotation includes a fixed seat 86 fixed to the surface of the support column 2. A shaft 810 is rotatably connected to the inner wall of the fixed seat 86. A residual gear 87 is fixedly connected to the lower end of the shaft 810. An auxiliary spring 88 is sleeved on the surface of the shaft 810. The two ends of the auxiliary spring 88 are fixedly connected to the residual gear 87 and the surface of the fixed seat 86, respectively. A brake block 85 is also fixedly connected to the surface of the shaft 810. The surface of the brake block 85 is provided with a contact end 811. It is used to contact the fixing block 81 fixed on the surface of the support column 2. The contact end 811 is set in a plane. The support column 2 is also provided with a reset limiting part for limiting the brake block 85 and controlling the brake block 85 to reset. The surface of the gear ring 1 73 is fixedly connected to the gear ring 2 89. The reset limiting part includes a cylinder 82 fixed in the inner wall of the support column 2. The output end of the cylinder 82 is fixedly connected to a fixing member 83. The surface of the fixing member 83 is rotatably connected to a roller 84. The surface of the fixing block 81 is provided with a groove for the roller 84 to be inserted.
[0034] In this implementation scheme: when the equipment malfunctions and requires emergency braking, the cylinder 82 drives the fixing part 83 and the roller 84 to reset. The roller 84 is inserted into the groove on the surface of the fixing block 81. At this time, the roller 84 loses its restraint on the brake block 85. The auxiliary spring 88 drives the shaft 810 and the residual gear 87 to rotate. When the residual gear 87 meshes with the gear ring 2 89, it drives the residual gear 87 to rotate at a certain angle. The contact end 811 of the brake block 85 is in contact with the fixing block 81, restricting the rotation of the residual gear 87 and the gear ring 2 89, thus achieving the braking effect. During reset, the cylinder 82 can drive the fixing part 83 and the roller 84 to move. The roller 84 can squeeze the brake block 85 and drive the brake block 85 and the shaft 810 to rotate and reset. The auxiliary spring 88 is under force. After reset, the roller 84, in conjunction with the cylinder 82, can restrict the brake block 85 and the shaft 810.
[0035] Working principle of the invention: During use, when the rotating column 5 does not need to move up and down, the pushing component 92 in the control mechanism 9 does not work. At this time, the drive motor 71 is turned on, and the drive motor 71 drives the drive gear 72 to rotate. The drive gear 72, in conjunction with the gear ring 73, can drive the upper rotating frame 3 to rotate. The upper rotating frame 3, in conjunction with the moving column 5, drives the lower rotating frame 4 to rotate. The moving column 5, in conjunction with the moving wheel 6, moves on the surface of the fixed plate 91 and the sliding plate 931 in the switching component 93, thereby driving the moving column 5 to perform circumferential motion without the moving column 5 moving up and down. When the movable column 5 needs to move up and down, the multiple sets of hydraulic cylinders 921 in the push assembly 92 are opened. The multiple sets of hydraulic cylinders 921 can drive the moving ring 922 to move upward. The multiple sets of guide rods 925 can ensure the stability of the moving ring 922 when it moves upward. When the moving ring 922 moves upward, the extrusion block 923 can contact the auxiliary wheel 927 on the extrusion rod 926 below part of the slide plate 931, and push the slide plate 931 and the protrusion 932 to move in the stabilizer 94. The return spring 95 is stressed. At this time, the position of the protrusion 932 in the slide plate 931 is switched. When the movable column 5 and the moving wheel 6 move to this position, the moving wheel 6 can contact the protrusion 932, so that the movable column 5 can move up and down. When it is necessary to increase the undulation frequency of the movable column 5, the control of multiple hydraulic cylinders 921 drives the moving ring 922 to move upward again. The second extrusion block 924 on the moving ring 922 can contact the auxiliary wheel 927 on the extrusion rod 926 below the remaining slide plate 931. The movable slide plate 931 and the protrusion 932 move in the stabilizer 94, and the return spring 95 is stressed. At this time, the position of the protrusion 932 in the remaining slide plate 931 is switched, increasing the number of contacts between the moving wheel 6 and the protrusion 932. At this time, the undulation frequency of the movable column 5 is more frequent. When it is necessary to return to no undulation, the hydraulic cylinder 921 drives the moving ring 922 to reset. The second extrusion block 924 and the first extrusion block 923 slowly lose their extrusion on the extrusion part on the slide plate 931. The return spring 95 can drive the slide plate 931 and the protrusion 932 to reset. When a malfunction occurs during equipment rotation and braking is required, cylinder 82 is opened. Cylinder 82 drives the fixing part 83 and roller 84 to reset. Roller 84 inserts into the groove on the surface of fixing block 81. At this time, roller 84 loses its restraint on brake block 85. Auxiliary spring 88 drives shaft 810 and residual gear 87 to rotate. When residual gear 87 meshes with gear ring 2 89, it drives residual gear 87 to rotate a certain angle. The flat contact end 811 of brake block 85 contacts fixing block 81, restricting the rotation of residual gear 87 and gear ring 2 89, thus achieving the braking effect. During reset, cylinder 82 can drive fixing part 83 and roller 84 to move. Roller 84 can squeeze brake block 85 and drive brake block 85 and shaft 810 to rotate and reset. Auxiliary spring 88 is stressed. After reset, roller 84, in conjunction with cylinder 82, can restrict brake block 85 and shaft 810.
[0036] All electrical components mentioned in this article are connected to an external main controller and 220V AC mains power, and the main controller can be a conventional known device such as a computer that can control it.
[0037] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A rotating device for a rotating amusement park device, comprising a base (1), characterized in that: The base (1) is fixedly connected with a support column (2), the surface of the support column (2) is rotatably connected with an upper rotating frame (3) and a lower rotating frame (4), respectively, the inner wall of the upper rotating frame (3) and the lower rotating frame (4) is slidably connected with a plurality of movable columns (5) for mounting models, the lower end of the movable column (5) is provided with a moving wheel (6), the support column (2) is provided with a driving assembly (7) for controlling the rotation of the upper rotating frame (3) and the lower rotating frame (4), and the support column (2) is further provided with a control mechanism (9). The control mechanism (9) comprises a fixed disc (91) fixed on the surface of the support column (2), a plurality of switching assemblies (93) are slidably connected to the inner wall of the fixed disc (91), which are used for switching the smooth movement and undulating movement of the movable column (5), a pushing assembly (92) is arranged on the surface of the fixed disc (91), which is used for pushing the switching assembly (93) to switch and controlling the number of switching assemblies (93) to switch, and a support part (96) is arranged between the switching assembly (93) and the base (1) for supporting and assisting. The switching assembly (93) comprises a sliding plate (931) slidably connected to the inner wall of the fixed disc (91), the surface of the sliding plate (931) is fixedly connected with two groups of protruding parts (932), and the sliding plate (931) and the inner wall of the fixed disc (91) are provided with a reset assembly.
2. A rotating device for a rotating amusement park device according to claim 1, characterized in that: The control assembly comprises a plurality of hydraulic cylinders (921) fixed on the surface of the fixed disc (91), the output end of each hydraulic cylinder (921) is fixedly connected with a moving ring (922), the surface of the moving ring (922) is fixedly connected with a plurality of extrusion blocks one (923) and a plurality of extrusion blocks two (924), and the lower surface of the sliding plate (931) is also fixedly connected with an extrusion part.
3. A rotating device for a rotating amusement park device according to claim 2, characterized in that: The lower surface of the fixed disc (91) is fixedly connected with a plurality of guide rods (925), and the inner wall of the moving ring (922) is slidably connected with the plurality of guide rods (925).
4. A rotating device for a rotating amusement park device according to claim 2, characterized in that: The extrusion part comprises an extrusion rod (926) fixed on the lower surface of the sliding plate (931), and the inner wall of the extrusion rod (926) is rotatably connected with an auxiliary wheel (927).
5. A rotating device for a rotating amusement park device according to claim 1, characterized in that: The reset assembly comprises two stable rods (94) fixed in the inner wall of the fixed disc (91), the inner wall of the stable rod (94) is slidably connected with the sliding plate (931), and the surface of the stable rod (94) is sleeved with a reset spring (95), and the two ends of the reset spring (95) are fixedly connected with the inner wall of the sliding plate (931) and the fixed disc (91), respectively.
6. A rotating device for a rotating amusement park ride according to claim 1, characterized in that: The driving assembly (7) comprises a driving motor (71) fixed on the surface of the support column (2), the output end of the driving motor (71) is fixedly connected with a driving gear (72), the surface of the upper rotating frame (3) is fixedly connected with a gear ring one (73), and the driving gear (72) is meshedly connected with the gear ring one (73).
7. A rotating device for a rotating amusement park ride according to claim 1, characterized in that: The support part (96) includes two support legs (961) fixed on the lower surface of the sliding plate (931), the inner walls of the two support legs (961) are rotationally connected with support wheels (962), the surface of the base (1) is fixedly connected with guide rails (963), and the support wheels (962) are in contact with the inner walls of the guide rails (963).
8. A rotating device for a rotating amusement park device according to claim 6, characterized in that: The support column (2) is provided with a brake device (8) between the gear ring one (73), the brake rotation includes a fixed seat (86) fixed on the surface of the support column (2), the inner wall of the fixed seat (86) is rotationally connected with a shaft rod (810), the lower end of the shaft rod (810) is fixedly connected with a gear wheel (87), the surface of the shaft rod (810) is sleeved with an auxiliary spring (88), the two ends of the auxiliary spring (88) are fixedly connected with the surface of the gear wheel (87) and the fixed seat (86) respectively, the surface of the shaft rod (810) is further fixedly connected with a brake block (85), the surface of the brake block (85) is provided with a fitting end (811) for being in contact with a fixed block (81) fixed on the surface of the support column (2), the support column (2) is further provided with a reset limiting part for limiting the brake block (85) and controlling the reset of the brake block (85), and the surface of the gear ring one (73) is fixedly connected with a gear ring two (89).
9. A rotating device for a rotating amusement park device according to claim 8, characterized in that: The reset limiting part includes a gas cylinder (82) fixed in the inner wall of the support column (2), the output end of the gas cylinder (82) is fixedly connected with a fixed piece (83), the surface of the fixed piece (83) is rotationally connected with a roller (84), and the surface of the fixed block (81) is provided with a groove for inserting the roller (84).
10. A rotating device for a rotating amusement park device according to claim 8, characterized in that: The fitting end (811) is arranged in a plane.