Reset device for rotary roller coaster

Through the cooperation of the design support frame, swing rod and drive device, the automatic reset of the rotary roller coaster is achieved, solving the problem of difficulty in resetting the rotary roller coaster, and improving the reset efficiency and safety.

CN120324916APending Publication Date: 2025-07-18BEIJING SHIBAOLAI AMUSEMENT EQUIP
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Patent Information

Application Number
CN202510573829.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

At this stage, the rotary roller coaster is difficult to automatically reset to the initial state after the trip, which makes it inconvenient for tourists to get off the bus and the labor force for manual reset operation.

Method used

A reset device including a support frame, a swing rod, a rotating wheel, a first drive device and a second drive device is designed. By automatically driving the coordinated movement of the swing rod and the rotating wheel, an automatic reset of a rotating roller coaster is realized.

Benefits of technology

It realizes efficient and accurate automatic reset of rotary roller coasters, reduces manual operation, improves reset efficiency, and does not affect tourists' interest in playing and equipment operation safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a reset device for a rotary roller coaster, which is characterized by comprising a support frame, a swing rod, a rotating wheel, a first driving device and a second driving device, the supporting frame is suitable for being placed beside the initial position of the rotary roller coaster. A rotating wheel is mounted at one end of the oscillating rod, and the other end of the oscillating rod is rotatably connected with the support frame to drive the rotating wheel to approach or leave the rotary roller coaster; a first driving device is arranged between the swing rod and the supporting frame and is suitable for driving the swing rod to rotate in the horizontal plane. The driving end of the second driving device is connected with the center of the rotating wheel to drive the rotating wheel to rotate; the rotating wheel is suitable for being in contact with a base of the rotary roller coaster so as to drive the rotary roller coaster to rotate when the rotating wheel rotates. The reset operation of the rotary roller coaster does not need manual operation, the rotary reset function is automatically achieved, the reset work efficiency is high, the accuracy is high, and the playing interest of tourists cannot be affected.
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Description

Technical Field

[0001] The present application relates to the technical field of amusement equipment, and in particular, to a reset device for a rotating roller coaster. Background Art

[0002] A roller coaster is a motorized amusement facility commonly found in amusement parks and theme parks. At present, to enhance the amusement fun of the roller coaster, it is designed as a rotatable structure, thus bringing fresh and exciting experiences to tourists. However, after the journey of the rotating roller coaster ends and it stops at the platform, it is very difficult to ensure that it rotates back to the initial state, making it difficult for tourists to get off. To facilitate tourists getting off, the rotating roller coaster must be rotated back to the initial angle. If manual operation is used to rotate and reset the rotating roller coaster, it will greatly increase the labor force.

[0003] The present application proposes a reset device for a rotating roller coaster, which is used to rotate the rotating roller coaster after it stops. Summary of the Invention

[0004] In view of this, the present application proposes a reset device for a rotating roller coaster.

[0005] According to one aspect of the present application, there is provided a reset device for a rotating roller coaster, characterized by comprising: a support frame, a swing rod, a rotating wheel, a first driving device, and a second driving device;

[0006] The support frame is adapted to be placed beside the initial position of the rotating roller coaster; one end of the swing rod is provided with a rotating wheel, and the other end of the swing rod is rotatably connected to the support frame to drive the rotating wheel to approach or move away from the rotating roller coaster;

[0007] A first driving device is provided between the swing rod and the support frame, and the first driving device is adapted to drive the swing rod to rotate in a horizontal plane;

[0008] The driving end of the second driving device is connected to the center of the rotating wheel to drive the rotating wheel to rotate self - sufficiently; the rotating wheel is adapted to contact the base of the rotating roller coaster so as to drive the rotating roller coaster to rotate when the rotating wheel rotates.

[0009] In a possible implementation, a first hinge assembly is provided between the swing rod and the support frame; one end of the swing rod is hinged to the support frame through the first hinge assembly.

[0010] In a possible implementation, an installation frame is provided at one end of the swing rod connected to the rotating wheel, and the rotating wheel is connected to the swing rod through the installation frame.

[0011] In a possible implementation, mounting flange plates are provided at both ends of the bottom of the support frame.

[0012] In a possible implementation, the main body of the support frame is in a "Π" shape structure, and the two mounting flange plates are respectively located at both ends of the opening of the "Π" shape structure.

[0013] In a possible implementation, reinforcing ribs are provided between the mounting flange plate and the support frame.

[0014] In a possible implementation, the support frame is provided with a reinforcing beam, and the reinforcing beam is horizontally arranged inside the support frame.

[0015] In a possible implementation, the first driving device is a cylinder.

[0016] In a possible implementation, the second driving device is a motor.

[0017] Beneficial effects: The support frame is suitable for placing the swing rod and the rotating wheel beside the initial position of the rotating roller coaster, facilitating the rotating wheel to contact the base of the rotating roller coaster that has stopped; the swing rod is rotatably connected to the support frame so that the swing rod makes a circular motion around its connection point with the support frame and drives the rotating wheel to perform a pendulum activity to approach or move away from the base of the rotating roller coaster; when the rotating roller coaster finishes its journey and enters the platform and completely stops, the first driving device drives the swing rod to rotate and drives the rotating wheel to move towards the rotating roller coaster, and finally makes the rotating wheel closely contact the base of the rotating roller coaster, and then the second driving device drives the rotating wheel to rotate, and the rotation of the rotating wheel drives the base of the rotating roller coaster to rotate until the rotating roller coaster rotates to the initial angular position and the rotating wheel stops rotating, and the rotating roller coaster also stops rotating; the overall structure of the present application is compact, the construction process is simple, the reset operation of the rotating roller coaster does not require manual operation, reduces labor force, automatically realizes the rotation reset function, and has high reset work efficiency and high accuracy, and does not affect the tourists' playing interest.

[0018] According to the following detailed description of the exemplary embodiments with reference to the accompanying drawings, other features and aspects of the present application will become clear. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The drawings included in the specification and constituting a part of the specification show the exemplary embodiments, features and aspects of the present application together with the specification, and are used to explain the principles of the present application.

[0020] Figure 1 The front view of the reset device for a rotating roller coaster showing an embodiment of the present application;

[0021] Figure 2 The side view of the reset device for a rotating roller coaster showing an embodiment of the present application;

[0022] Figure 3 The top view of the reset device for a rotating roller coaster showing an embodiment of the present application;

[0023] Figure 4 Shows the main structure diagram of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0024] Figure 5 Shows the main structure diagram of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0025] Figure 6 Shows the partial enlarged view of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0026] Figure 7 Shows the partial structure diagram of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0027] Figure 8 Shows the partial enlarged view of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0028] Figure 9 Shows the partial enlarged view of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0029] Figure 10 Shows the sectional view of the support member according to an embodiment of the present application;

[0030] Figure 11 Shows the working schematic diagram of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0031] Figure 12 Shows the working schematic diagram of the reset device for a rotary roller coaster according to an embodiment of the present application;

[0032] Figure 13 Shows the structure diagram of a rotary roller coaster.

[0033] Support frame 100, reinforcement beam 110, swing rod 200, rotating wheel 500, first driving device 300, second driving device 400, first connecting plate 220, first hinge plate 210, first pin shaft 211, second hinge plate 310, second pin shaft 311, third hinge plate 320, third pin shaft 321, transmission shaft 610, hub 510, wheel sleeve 520, limit sleeve 640, limit end cover 620, mounting vertical plate 230, reinforcement plate 232, support member 700, auxiliary flange plate 800, rotary roller coaster 900, base 910. Detailed implementation manners

[0034] The following will describe in detail various exemplary embodiments, features, and aspects of the present application with reference to the accompanying drawings. The same reference numerals in the drawings denote elements having the same or similar functions. Although various aspects of the embodiments are shown in the drawings, the drawings are not necessarily drawn to scale unless otherwise specified.

[0035] Among them, it should be understood that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "lateral", "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application or simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.

[0036] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, "a plurality of" means two or more, unless otherwise specifically defined.

[0037] The special term "exemplary" here means "serving as an example, embodiment or illustration". Any embodiment described as "exemplary" here does not have to be construed as superior to or better than other embodiments.

[0038] In addition, for a better illustration of the present application, numerous specific details are given in the following specific implementation manners. Those skilled in the art should understand that the present application can be implemented without some specific details. In some instances, methods, means, elements and circuits well-known to those skilled in the art are not described in detail so as to highlight the gist of the present application.

[0039] Figure 1 The front view of the reset device for a rotary roller coaster showing an embodiment of the present application; Figure 2 The side view of the reset device for a rotary roller coaster showing an embodiment of the present application; Figure 3 The top view of the reset device for a rotary roller coaster showing an embodiment of the present application; Figure 4 The main body structure diagram of the reset device for a rotary roller coaster showing an embodiment of the present application; Figure 5 The main body structure diagram of the reset device for a rotary roller coaster showing an embodiment of the present application. As Figure 1 And Figure 3As shown in the figure, a reset device for a rotary roller coaster includes: a support frame 100, a swing rod 200, a rotary wheel 500, a first driving device 300, and a second driving device 400; the support frame 100 is adapted to be placed beside the passenger loading and unloading position of the rotary roller coaster 900; one end of the swing rod 200 is equipped with a rotary wheel 500, and the other end of the swing rod 200 is rotatably connected to the support frame 100 to drive the rotary wheel 500 to approach or move away from the rotary roller coaster 900; a first driving device 300 is provided between the swing rod 200 and the support frame 100, and the first driving device 300 is adapted to drive the swing rod 200 to rotate in a horizontal plane; the output shaft 610 of the second driving device 400 is fixedly connected to the rotary wheel 500 and is adapted to drive the rotary wheel 500 to rotate itself; the rotary wheel 500 is adapted to contact the base 910 of the rotary roller coaster 900, so as to drive the rotary roller coaster 900 to rotate when the rotary wheel 500 rotates.

[0040] Here, it should be noted that the support frame 100 is adapted to provide an installation basis for the swing rod 200 and the rotary wheel 500, and place the swing rod 200 and the rotary wheel 500 beside the passenger loading and unloading position of the rotary roller coaster 900, facilitating the rotary wheel 500 to contact the base 910 of the rotary roller coaster 900 that has stopped; the swing rod 200 is rotatably connected to the support frame 100 so that the swing rod 200 makes a circular motion centered on its connection point with the support frame 100 and drives the rotary wheel 500 to perform a pendulum activity to approach or move away from the base 910 of the rotary roller coaster 900; the first driving device 300 is adapted to automatically drive the swing rod 200 to rotate, and the second driving device 400 is adapted to automatically drive the rotary wheel 500 to rotate. Further, when the rotary roller coaster 900 finishes its journey and enters the passenger loading and unloading platform and stops completely, the first driving device 300 drives the swing rod 200 to rotate, driving the rotary wheel 500 to move towards the rotary roller coaster 900, and finally making the rotary wheel 500 closely contact the base 910 of the rotary roller coaster 900. Then, the output shaft 610 of the second driving device 400 drives the rotary wheel 500 to rotate, and the rotation of the rotary wheel 500 drives the base 910 of the rotary roller coaster 900 to rotate until the rotary roller coaster 900 rotates to the initial angle and the rotary wheel 500 stops rotating. Then, the first driving device 300 drives the swing rod 200 to rotate reversely, driving the rotary wheel 500 to move away from the rotary roller coaster 900, avoiding interference and blockage to the next normal departure of the rotary roller coaster 900, and ensuring the safe operation of the amusement equipment. The overall structure of this application is compact, the construction process is simple, the reset operation of the rotary roller coaster 900 does not require manual operation, reducing labor, automatically realizing the rotary reset function, and having high reset work efficiency, high speed, and high accuracy, without affecting the tourists' interest in playing and the normal getting off of tourists, and having a positive impact on the interest and safety of the entire equipment.

[0041] In a possible implementation, a first hinge assembly is provided between the swing rod 200 and the support frame 100; one end of the swing rod 200 is hinged to the support frame 100 through the first hinge assembly. Further, as Figure 4 shown, the first hinge assembly includes: a first connecting plate 220, two relatively arranged first hinge plates 210 and a first pin shaft 211; the main body of the first connecting plate 220 is in a rectangular plate-like structure, one side of the first connecting plate 220 is fixedly connected to the support frame 100, the main bodies of the two first hinge plates 210 are in triangular plate-like structures, the two first hinge plates 210 are relatively and fixedly arranged on the other side of the first connecting plate 220, and the planes where the two first hinge plates 210 are located are parallel to the horizontal plane; the first pin shaft 211 vertically penetrates through the two first hinge plates 210; one end of the swing rod 200 extends between the two first hinge plates 210 and is sleeved on the first pin shaft 211, and the swing rod 200 is limited between the two first hinge plates 210 so that the swing rod 200 rotates in the horizontal plane with the first pin shaft 211 as the axis.

[0042] Further, the main body of the swing rod 200 is in a rectangular parallelepiped tubular structure.

[0043] In a possible implementation, the first driving device 300 is a cylinder. One end of the first driving device 300 is hinged to the support frame 100 through a second hinge assembly, and the output end of the first driving device 300 is hinged to the side wall of the swing rod 200 through a third hinge assembly. Further, one end of the first driving device 300 is hinged to one of the apex angles of the support frame 100 through the second hinge assembly. Thus, when the cylinder extends, it can smoothly push the swing rod 200 outwards to approach the rotating roller coaster 900, and when the cylinder contracts, it can smoothly retract the swing rod 200 inwards to move it away from the rotating roller coaster 900.

[0044] Further, as Figure 4 shown, the second hinge assembly includes: two second hinge plates 310 and a second pin shaft 311; the two second hinge plates 310 are relatively arranged at a corner of the mounting frame, and the planes where the two second hinge plates 310 are located are parallel to the horizontal plane; the second pin shaft 311 vertically penetrates through the two second hinge plates 310, and one end of the first driving device 300 is sleeved on the second pin shaft 311.

[0045] Further, as Figure 6 shown, the third hinge assembly includes: two third hinge plates 320 and a third pin shaft 321; the two third hinge plates 320 are relatively arranged on the side wall of the swing rod 200, and the planes where the two third hinge plates 320 are located are parallel to the horizontal plane; the third pin shaft 321 vertically penetrates through the two third hinge plates 320, and the other end of the first driving device 300 is sleeved on the third pin shaft 321.

[0046] In a possible implementation, the second driving device 400 is a reduction motor.

[0047] In a possible implementation, as Figure 7 shown in Figure 9 Figure, one end of the output shaft 610 of the second driving device 400 is fixedly connected to the rotating wheel 500 and is coaxial with the rotating wheel 500; thus, when the second driving device 400 operates, it can drive the rotating wheel 500 to rotate.

[0048] In a possible implementation, as Figure 7 shown in Figure 8 and Figure 9 Figure, the rotating wheel 500 includes: a hub 510 and a wheel sleeve 520; a through hole is formed in the middle of the hub 510, the through hole is matched with the output shaft 610 of the second driving device 400, and the hub 510 is sleeved on the output shaft 610 of the second driving device 400 through the through hole; the wheel sleeve 520 is sleeved on the outside of the hub 510.

[0049] Furthermore, as Figure 9 shown in

[0050] Figure, a flat key 611 is provided on the outer side wall of the output shaft 610 of the second driving device 400; a key groove matched with the flat key 611 is formed on the inner side of the hub 510; the flat key 611 is embedded in the key groove on the inner side of the hub 510, so that when the output shaft 610 of the second driving device 400 rotates, it drives the rotating wheel 500 to rotate synchronously.

[0051] Preferably, the material of the wheel sleeve 520 of the rotating wheel 500 is rubber; the wear resistance coefficient of rubber is relatively high.

[0052] In a possible implementation, it further includes: a limit sleeve 640 and a limit end cover 620; the limit sleeve 640 is sleeved on the output shaft 610 of the second driving device 400, and the limit end cover 620 is buckled on the top end of the output shaft 610 of the second driving device 400; the limit sleeve 640 and the limit end cover 620 respectively contact the opposite sides of the rotating wheel 500; the rotating wheel 500 is limited between the limit sleeve 640 and the limit end cover 620, so that the rotating wheel 500 is continuously maintained at the same height, facilitating accurate contact with the base 910 of the rotating roller coaster 900 and avoiding vertical movement of the rotating wheel 500 on the output shaft 610 of the second driving device 400, resulting in a change in the height of the rotating wheel 500.

[0053] Further, the limiting end cap 620 and the output shaft 610 of the second driving device 400 are fixedly connected by screws 630.

[0054] In a possible implementation, one end of the swing rod 200 connected to the rotating wheel 500 is provided with a mounting bracket, and the mounting bracket and the first driving device 300 are respectively located on opposite sides of the swing rod 200; the rotating wheel 500 is connected to the swing rod 200 through the mounting bracket. As Figure 6 shown, the mounting bracket includes: a mounting vertical plate 230 and more than two reinforcing plates 232. One side of the mounting vertical plate 230 is fixedly connected to the side wall of the swing rod 200, and the other side of the mounting vertical plate 230 is fixedly connected to the housing of the second driving device 400. More than two reinforcing plates 232 are arranged between the mounting vertical plate 230 and the swing rod 200; it should be noted that since the second driving device 400 is connected to the rotating wheel 500, the position of the rotating wheel 500 can be fixed simultaneously under the fixing action of the mounting vertical plate 230 on the second driving device 400; more than two reinforcing plates 232 improve the connection stability between the swing rod 200 and the mounting vertical plate 230.

[0055] Further, the main body of the mounting vertical plate 230 is in a rectangular plate-like structure, and bolt holes 231 suitable for passing through bolts are opened at the four corners of the mounting vertical plate 230. One side of the housing of the second driving device 400 is in close contact with the mounting vertical plate 230, and the two are connected by a bolt connection method to lock the second driving device 400 on the mounting vertical plate 230.

[0056] Further, a total of four reinforcing plates 232 are provided, and each reinforcing plate 323 is in a small triangular plate-like structure, and its two right-angled sides are respectively connected to the mounting vertical plate 230 and the swing rod 200; two of the reinforcing plates 232 are located on the top surface of the swing rod 200, and the other two reinforcing plates 232 are located on the bottom surface of the swing rod 200.

[0057] Preferably, the side surfaces of the mounting vertical plate 230 and the swing rod 200 are fixed by welding, and the reinforcing plates 232 are fixed to the mounting vertical plate 230 and the swing rod 200 by welding.

[0058] In a possible implementation, mounting flange plates 120 are provided at both ends of the bottom of the support frame 100. As Figure 3 shown, the main body of the mounting flange plate 120 is in a rectangular plate-like structure, and first mounting holes 122 are opened at the four corners of the mounting flange plate 120. The first mounting holes 122 are suitable for passing through bolts 121, and the bolts 121 fix the four corners of the mounting flange plate 120 to the platform ground or other positions to be installed, so that the support frame 100 is firmly grounded, avoiding the situation of the support frame 100 shaking and affecting the normal contact of the rotating wheel 500 with the rotating roller coaster 900.

[0059] Furthermore, the main body of the first mounting hole 122 is in the shape of an elongated hole, and the length directions of each first mounting hole 122 on the mounting flange plate 120 are parallel to each other, which is suitable for leaving a certain space for the bolt 121 to move and adjust.

[0060] In a possible implementation, as Figure 5 shown, the main body of the support frame 100 is in a "Π" shape, and the two mounting flange plates 120 are respectively arranged at both ends of the opening of the "Π" shape. Preferably, the support frame 100 and the mounting flange plate 120 are fixed by welding. The swing rod 200 is hinged at the top corner of the support frame 100.

[0061] In a possible implementation, as Figure 5 shown, reinforcing ribs 130 are provided between the two mounting flange plates 120 and the support frame 100. The main body of the reinforcing rib 130 is in the shape of a right triangular prism. One right side of the reinforcing rib 130 is fixed to the top surface of the mounting flange plate 120, and the other right side of the reinforcing rib 130 is fixed to the side wall of the support frame 100; preferably, the reinforcing rib 130 and the mounting flange plate 120, the support frame 100 are fixed by welding.

[0062] Furthermore, a second connecting plate 140 is fixedly provided on the side of the support frame 100 connecting the swing rod 200. The second connecting plate 140 is fixedly connected to the first connecting plate 220 of the first hinge assembly, so as to realize the connection between the support frame 100 and the swing rod 200; furthermore, bolt holes are provided at the four corners of the second connecting plate 140, and bolt holes 221 are also provided at the four corners of the first connecting plate 220. The second connecting plate 140 and the first connecting plate 220 are fixedly connected by bolts.

[0063] In a possible implementation, as Figure 4 shown, the support frame 100 is provided with a reinforcing beam 110, and the reinforcing beam 110 is horizontally arranged inside the support frame 100. The two ends of the reinforcing beam 110 and the support frame 100 are preferably fixed together by welding. The setting of the reinforcing beam 110 is suitable for improving the structural strength of the support frame 100 and ensuring that the support frame 100 will not be deformed during the working process.

[0064] In a possible implementation, two auxiliary support devices are provided on one side of the support frame 100 facing the rotating roller coaster 900. It should be noted that since the first driving device 300, the second driving device 400, the rotating wheel 500, and the swing rod 200 all have a certain weight and are all located on the same side of the support frame 100, the support frame 100 is prone to the phenomenon of center of gravity deviation. As the service time increases, it is inevitable that the support frame 100 will tilt, resulting in a decrease in the height of the rotating wheel 500. Once the inclination angle of the support frame 100 is relatively large, it is very easy for the rotating wheel 500 to fail to effectively contact the base 910 of the rotating roller coaster 900 or even not be able to contact it at all. Therefore, two auxiliary support devices are provided to support the side of the support frame 100 where the swing rod 200 is provided, to prevent the support frame 100 from tipping over, and to ensure the reset efficiency of the present application for the rotating roller coaster 900.

[0065] In a possible implementation, the auxiliary support device includes: a support member 700 and an auxiliary flange plate 800. One end of the support member 700 is hinged to the side wall of the support frame 100, and the other end of the support member 700 is hinged to the top surface of the auxiliary flange plate 800. The auxiliary flange plate 800 is suitable for connecting to the platform ground or other positions to be installed.

[0066] In a possible implementation, as Figure 3 shown, the main body of the auxiliary flange plate 800 is in a rectangular plate-like structure. Second mounting holes 820 are provided at all four corners of the auxiliary flange plate 800. The second mounting holes 820 are suitable for passing through bolts 810, and the bolts 810 fix the four corners of the auxiliary flange plate 800 to the platform ground or other positions to be installed.

[0067] Furthermore, the main body of the second mounting hole 820 is in an elongated hole structure. The length directions of each second mounting hole 820 of the auxiliary flange plate 800 are parallel to each other, which is suitable for leaving a certain space for the bolts 810 to move and adjust. It should also be noted that the length direction of the second mounting hole 820 is parallel to the length direction of the first mounting hole 122, and their length directions are both perpendicular to the plane where the support frame 100 is located.

[0068] Furthermore, it further includes: a fourth hinge assembly and a fifth hinge assembly; one end of the support member 700 is hinged to the side wall of the support frame 100 through the fourth hinge assembly, and the other end of the support member 700 is hinged to the top surface of the auxiliary flange plate 800 through the fifth hinge assembly.

[0069] Furthermore, as Figure 4 and Figure 5As shown in the figure, the fourth hinge assembly includes: two fourth hinge plates 720 and a fourth pin shaft 721; the two fourth hinge plates 720 are oppositely arranged on the side wall of the support frame 100, and the planes where the two fourth hinge plates 720 are located are perpendicular to the horizontal plane; the fourth pin shaft 721 vertically penetrates through the two fourth hinge plates 720, and the connecting member 770 at one end of the support member 700 is located between the two fourth hinge plates 720 and sleeved on the fourth pin shaft 721.

[0070] Further, as Figure 5 shown in the figure, the fifth hinge assembly includes: two fifth hinge plates 710 and a fifth pin shaft 711; the two fifth hinge plates 710 are oppositely arranged on the top surface of the auxiliary flange plate 800; the fifth pin shaft 711 vertically penetrates through the two fifth hinge plates 710, and the connecting member 770 at the other end of the support member 700 is located between the two fifth hinge plates 710 and sleeved on the fifth pin shaft 711.

[0071] Preferably, the support member 700 is a mechanical tie rod. It should be noted that the distance and angle between the auxiliary flange plate 800 and the mounting flange plate 120 can be adjusted through the tie rod threads, and the installation angle error caused by uneven ground or parking spaces can be compensated. After the position of the auxiliary flange plate 800 is adjusted, the auxiliary flange plate 800 is then installed on the platform ground.

[0072] Further, the support member 700 includes: two holding parts and a sleeve 730. The main body of the sleeve 730 is in a circular tube structure, and the two holding parts are respectively arranged at both ends of the sleeve 730. Further, each holding part includes: a connecting member 770, a screw rod 740, a connecting cylinder 760 and a nut 750; the connecting cylinder 760 penetrates into the end of the sleeve 730 and is fixedly connected to the sleeve 730. One end of the screw rod 740 is fixedly connected to the connecting member 770, and the other end of the screw rod 740 is inserted into the connecting cylinder 760 at the end of the sleeve 730. The nut is fixedly connected to the end face of the connecting cylinder 760 and sleeved on the screw rod 740. The screw rod 740 is threadedly connected to the nut 750. When the length of the support member 700 needs to be adjusted, the screw rod 740 can be rotated to adjust the length of the screw rod 740 protruding from the sleeve 730 so as to adjust the overall length of the support member 700.

[0073] As Figures 11-13 shown in the figure, place the present application beside the rotating roller coaster 900. The rotating wheel 500 of the present application is attached to the outer side wall of the base 910 of the rotating roller coaster 900. When the rotating wheel 500 rotates, it drives the rotating roller coaster 900 to rotate under the action of friction; when the rotating roller coaster 900 rotates to the initial angle, the locking block 911 installed on the roller coaster frame extends upward into the locking groove of the base 910 to ensure that the base 910 will not rotate by itself after parking.

[0074] The embodiments of the present application have been described above. The above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and variations are obvious to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, practical applications, or improvements to technologies in the market, or to enable other ordinary skill in the art to understand the embodiments disclosed herein.

Claims

1. A reset device for a rotating roller coaster, characterized in that, Comprising: A support frame, a swing rod, a rotating wheel, a first driving device and a second driving device; The support frame is adapted to be placed beside the initial position of a rotating roller coaster; One end of the swing rod is provided with the rotating wheel, and the other end of the swing rod is rotatably connected to the support frame to drive the rotating wheel to approach or move away from the rotating roller coaster; A first driving device is provided between the swing rod and the support frame, and the first driving device is adapted to drive the swing rod to rotate in a horizontal plane: The driving end of the second driving device is connected to the rotating wheel to drive the rotating wheel to rotate self; the rotating wheel is adapted to contact the base of the rotating roller coaster so as to drive the rotating roller coaster to rotate when the rotating wheel rotates.

2. The reset device for a rotating roller coaster according to claim 1, characterized in that, A first hinge assembly is provided between the swing rod and the support frame; one end of the swing rod is hinged to the support frame through the first hinge assembly.

3. The reset device for a rotary roller coaster according to claim 1, characterized in that, An installation frame is provided at one end of the swing rod connecting the rotating wheel, and the rotating wheel and the second driving device are connected to the swing rod through the installation frame.

4. The reset device for a rotary roller coaster according to claim 1, characterized in that, Mounting flange plates are provided at both ends of the bottom of the support frame.

5. The reset device for a rotary roller coaster according to claim 4, characterized in that, The main body of the support frame has a "Π" - shaped structure, and the two mounting flange plates are respectively located at the two ends of the opening of the "Π" - shaped structure.

6. The reset device for a rotary roller coaster according to claim 5, characterized in that, Reinforcing ribs are provided between the mounting flange plate and the support frame.

7. The reset device for a rotary roller coaster according to claim 5, characterized in that, The support frame is provided with a reinforcing beam, and the reinforcing beam is horizontally arranged inside the support frame.

8. The reset device for a rotating roller coaster according to claim 1, wherein The first driving device is a cylinder.

9. The reset device for a rotating roller coaster according to claim 1, characterized in that, The second driving device is a motor.