Ejection type bungee jumping amusement equipment

By replacing rubber elastic ropes with steel wire ropes and accumulators, and combining electromagnets and locking pin protection mechanisms, the safety hazards of catapult bungee jumping amusement equipment have been solved, achieving higher safety and reliability and improving the user experience.

CN223846228UActive Publication Date: 2026-01-30滕桂龙
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Patent Information

Application Number
CN202520177438.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-27
Publication Date
2026-01-30
Estimated Expiration
2035-01-27

AI Technical Summary

Technical Problem

Existing catapult bungee jumping amusement equipment relies on rubber elastic ropes for propulsion, which poses safety hazards due to aging and breakage, and the operation is not reliable enough.

Method used

Steel wire ropes and accumulators are used instead of elastic ropes. The accumulators provide elastic potential energy, and combined with a dual protection mechanism of electromagnets and locking pins, the safe and reliable fixation and movement of cockpit components are ensured.

Benefits of technology

It improves the safety and reliability of the equipment, reduces the risk of rope aging or breakage, and enhances the intelligent management of the equipment and the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of amusement equipment, and particularly relates to ejection type bungee jumping amusement equipment which comprises tower rods on the two sides, supporting pulleys arranged at the upper ends and the lower ends of the tower rods, a cabin assembly arranged between the tower rods on the two sides, two ends of the cabin assembly connected with two ends of the same steel wire rope, and the steel wire rope bypasses the supporting pulleys on the tower rods to form a closed loop. And one part of the steel wire rope is positioned in the energy accumulator. A traditional rubber elastic rope is replaced by the steel wire rope and the energy accumulator, so that potential safety hazards caused by aging or breakage of the elastic rope are greatly reduced. The steel wire rope has higher strength and durability, and the energy accumulator can provide elastic potential energy more stably and controllably, so that safe operation of amusement equipment is ensured. A movable pulley block and a fixed pulley block are designed in the energy accumulator, and an elastic energy storage part is introduced, so that the accumulation and release process of elastic potential energy is more stable and efficient. Meanwhile, by means of the design, uncertainty caused by telescopic changes of the elastic rope is reduced, and the overall reliability of the device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a bounce type bungee jumping amusement equipment belongs to the technical field of amusement equipment. BACKGROUND

[0002] The existing bounce type bungee jumping amusement facility operating mechanism is that: first, the elastic potential energy is accumulated by stretching the elastic rope to the preset length. In this process, the cabin remains stable and does not move until the passenger is safely seated and correctly wears the safety equipment, and then the cabin is released. Subsequently, the cabin is bounced up under the rebound force of the elastic rope, and then starts to fall under the influence of gravity, which will stretch the elastic rope again to accumulate elastic potential energy. Once the rebound force of the elastic rope exceeds the total weight of the cabin and the passengers inside, it will bounce the cabin upward again. This process is repeated several times until the elastic potential energy in the elastic rope is completely consumed, and the cabin stops reciprocating up and down. During the whole process, the cabin also rotates freely to increase the stimulation and interest of the amusement. However, this technology also has some defects: it mainly relies on the stretching of the rubber elastic rope to drive the various actions of the cabin, but the elastic rope is prone to aging and has the risk of breaking, which may cause safety hazards. SUMMARY

[0003] According to the deficiencies in the above prior art, the technical problem to be solved by the utility model is to provide a safe and reliable bounce type bungee jumping amusement equipment.

[0004] The bounce type bungee jumping amusement equipment, comprising two tower poles on both sides, support pulleys are arranged on the upper and lower ends of the tower poles, a cabin assembly is arranged between the two tower poles on both sides, both ends of the cabin assembly are connected to both ends of the same steel wire rope, the steel wire rope forms a closed loop by passing through the support pulleys on the tower poles, and part of the steel wire rope is located in an energy accumulator.

[0005] The utility model uses a steel wire rope instead of an elastic rope, and the elastic potential energy is derived from the energy accumulator. The bounce and reciprocating motion of the cabin assembly are realized by the elastic potential energy provided by the energy accumulator.

[0006] The energy accumulator comprises a frame, a movable pulley set and a fixed pulley set are arranged on the frame, the steel wire rope passes through multiple pulleys between the movable pulley set and the fixed pulley set, the movable pulley set is connected to an elastic energy storage member, and the movable pulley set can reciprocate towards and away from the fixed pulley set under the action of the elastic potential energy of the elastic energy storage member.

[0007] Preferably, the elastic energy storage member is a tension spring, the fixed pulley set is fixed to the lower end of the frame, the movable pulley set is located above the fixed pulley set and is installed on the bottom surface of a pulley lifting plate, the top surface of the pulley lifting plate is connected to the lower end of the tension spring, the upper end of the tension spring is connected to a spring hanging plate, and the spring hanging plate can be lifted and lowered under the action of a pushing device.

[0008] Preferably, the pushing device is a hydraulic cylinder.

[0009] The cockpit assembly bottom is provided with a power taking electrode, and the cockpit support fixing assembly is provided with a power sending electrode corresponding to the power taking electrode.

[0010] The cockpit assembly bottom is provided with a power taking electrode, and the cockpit support fixing assembly is provided with a power sending electrode corresponding to the power taking electrode.

[0011] The cockpit assembly bottom is provided with a power taking electrode, and the cockpit support fixing assembly is provided with a power sending electrode corresponding to the power taking electrode.

[0012] Preferably, the cockpit assembly bottom is provided with a horizontal positioning pin, and the cockpit support fixing assembly is provided with a guide frame with an opening at the top end corresponding to the positioning pin.

[0013] Compared with the prior art, the cockpit assembly has the beneficial effects that:

[0014] 1. Improved safety: By using steel wire ropes and accumulators instead of traditional rubber elastic ropes, the safety hazards caused by aging or breaking of elastic ropes are greatly reduced.

[0015] 2. Enhanced reliability: The design of the dynamic and fixed pulley blocks inside the accumulator and the introduction of elastic energy storage components such as tension springs make the accumulation and release of elastic potential energy more stable and efficient.

[0016] 3. Multiple protection: The cockpit assembly uses an electromagnetic iron attraction and a lock pin hooking double protection mechanism.

[0017] 4. Intelligent management: The power receiving electrode and the power sending electrode arranged between the cockpit assembly and the cockpit support and fixing assembly enable automatic power-on after the cockpit assembly is in place, control the locking and unlocking of the safety device, and improve the intelligent level of the equipment, facilitating management and maintenance.

[0018] 5. Improved user experience: The accurate design of the guide frame and the positioning pin ensures the accurate docking of the cockpit assembly and the cockpit support and fixing assembly, thereby reducing the possible shaking or deviation during the operation of the equipment and improving the comfort and experience of passengers. BRIEF DESCRIPTION OF DRAWINGS

[0019] Fig. 1 is a schematic diagram of the three-dimensional structure of the utility model;

[0020] Fig. 2 is a schematic diagram of the front structure of the utility model;

[0021] Fig. 3 is a schematic diagram of the three-dimensional structure of the energy accumulator;

[0022] Fig. 4 is a schematic diagram of the front structure of the energy accumulator;

[0023] Fig. 5 is a schematic diagram of the three-dimensional structure of the energy accumulator;

[0024] Fig. 6 is a schematic diagram of the three-dimensional structure of the cockpit assembly;

[0025] Fig. 7 is a schematic diagram of the three-dimensional structure of the cockpit assembly;

[0026] Fig. 8 is a schematic diagram of the three-dimensional structure of the cockpit support and fixing assembly;

[0027] Fig. 9 is a schematic diagram of the docking of the cockpit assembly and the cockpit support and fixing assembly;

[0028] Fig. 10 is a schematic diagram of the motion principle of the utility model (the cockpit assembly is at a low position);

[0029] Fig. 11 is a schematic diagram of the motion principle of the utility model (the cockpit assembly is at a high position).

[0030] In the diagram: 1. Tower; 2. Support pulley; 3. Wire rope; 4. Accumulator; 41. Frame; 42. Hanging spring plate; 43. Tension spring; 44. Pulley lifting plate; 45. Moving pulley block; 46. Fixed pulley block; 47. Guide column; 48. Hydraulic cylinder; 49. Limit switch; 5. Cockpit assembly; 51. Cockpit frame; 52. Seat; 53. Pressure bar; 54. Locking plate; 55. Lock hole; 56. Armature; 57. Electrode take-up; 58. Positioning pin; 6. Cockpit support and fixing assembly; 61. Auxiliary support frame; 62. Buffer; 63. Electromagnet; 64. Locking pin; 65. Motor; 66. Electrode feeder; 67. Guide frame; 7. Platform. Detailed Implementation

[0031] The present invention will be further described below with reference to specific embodiments.

[0032] However, the description of this utility model is only a structural or even functional description of the embodiments, and the scope of the present utility model is not limited by the embodiments described herein.

[0033] For example, multiple embodiments may have various modifications and forms, and it should be understood that the scope of this utility model includes equivalents that can realize the technical concept.

[0034] like Figs. 1-11 As shown, this embodiment is achieved through the following technical solution: it includes two towers 1 on both sides, with support pulleys 2 at the upper and lower ends of the towers 1, and a cabin assembly 5 between the two towers 1 on both sides. The two ends of the cabin assembly 5 are connected to the two ends of the same steel wire rope 3. The steel wire rope 3 passes around the support pulleys 2 on the towers 1 to form a closed loop, and a part of the steel wire rope 3 is located in the accumulator 4.

[0035] The accumulator 4 includes a frame 41, on which a movable pulley block 45 and a fixed pulley block 46 are mounted. The fixed pulley block 46 is fixed to the lower end of the frame 41, and the movable pulley block 45 is located above the fixed pulley block 46 and installed on the bottom surface of the pulley lifting plate 44. The top surface of the pulley lifting plate 44 is connected to the lower end of a tension spring 43, and the upper end of the tension spring 43 is connected to a hanging spring plate 42. The hanging spring plate 42 can be raised and lowered along the guide column 47 under the action of a hydraulic cylinder 48. The hydraulic cylinder 48 is equipped with a limit switch 49 for upper and lower travel limits. The wire rope 3 passes through multiple pulleys between the movable pulley block 45 and the fixed pulley block 46. Under the action of the elastic potential energy of the tension spring 43, the movable pulley block 45 reciprocates towards and away from the fixed pulley block 46.

[0036] The cabin assembly 5 comprises a plurality of seats 52 fixed on a cabin framework 51, and the bottom of the cabin framework 51 is provided with an armature 56; a fixed cabin support fixing assembly 6 is arranged below the cabin assembly 5, the cabin support fixing assembly 6 is arranged on a platform 7, and an electromagnet 63 is arranged on the cabin support fixing assembly 6; the armature 56 is attracted by the electromagnet 63 through electrification, so that the cabin assembly 5 is fixed.

[0037] In addition, the bottom of the cabin framework 51 is further provided with a lock plate 54, and a lock hole 55 is formed in the lock plate 54; correspondingly, the cabin support fixing assembly 6 is provided with a lock pin 64, which can be inserted into the lock hole 55 under the driving of a motor 65, so as to realize hooking.

[0038] In addition, the bottom of the cabin assembly 5 is provided with a power taking electrode 57, and correspondingly, the cabin support fixing assembly 6 is provided with a power sending electrode 66; after the cabin assembly 5 falls to the cabin support fixing assembly 6, the power taking electrode 57 can be connected with the power sending electrode 66 to realize electrification, so as to realize the locking and unlocking of a safety device (such as a pressure lever 53) in the cabin assembly 5.

[0039] In addition, the bottom of the cabin assembly 5 is provided with a transverse positioning pin 58, and correspondingly, the cabin support fixing assembly 6 is provided with a guide frame 67 with an opening at the top end; the positioning pin 58 can be inserted into the opening at the top end of the guide frame 67, so as to realize the accurate butt joint of the cabin assembly 5 and the cabin support fixing assembly 6.

[0040] The working principle of the utility model is as follows:

[0041] At the beginning, the accumulator 4 does not store elastic potential energy, the cabin assembly 5 is attracted and fixed on the cabin support and fixing assembly 6 by the electromagnet 63, and the secondary protection lock pin 64 is also inserted into the lock hole 55. The visitor goes up to the cabin assembly 5, the pressure lever 53 is pressed and kept, and the visitor is fixed on the seat 52. The accumulator 4 starts to store energy, the hanger spring plate 42 is lifted under the action of the hydraulic cylinder 48, the tension spring 43 is pulled away to store elastic potential energy, after the hanger spring plate 42 is lifted to the position, the lock pin 64 for secondary protection is unlocked, the electromagnet 63 loses power, under the action of a plurality of tension springs 43, the hanger spring plate 42 is pulled up instantaneously, because a plurality of steel wire ropes are bypassed between the movable pulley set 45 and the fixed pulley set 46, the lifting distance of the hanger spring plate 42 will be multiplied between the pulley sets, the cabin assembly 5 is instantaneously ejected. The elastic potential energy in the accumulator 4 is converted into the gravitational potential energy of the cabin assembly 5. After the cabin assembly 5 reaches the high position, it falls immediately, and the gravitational potential energy of the cabin assembly 5 is converted into the elastic potential energy of the accumulator 4. In this way, the elastic potential energy of the accumulator 4 is consumed in the reciprocating process (after about 5.6 rounds), the hanger spring plate 42 is lowered under the action of the hydraulic cylinder 48, and the cabin assembly 5 also slowly falls onto the cabin support and fixing assembly 6, the electromagnet 63 is electrified to attract and fix the cabin assembly 5, the lock pin 64 for secondary protection is unlocked, the pressure lever 53 of the seat 52 is unlocked, and the visitor orderly leaves the cabin assembly 5.

[0042] Of course, the above content is only the preferred embodiment of the present application, and cannot be considered as limiting the scope of the embodiments of the present application. The present application is also not limited to the above examples, and the equivalent changes and improvements made by ordinary skilled in the art within the essential scope of the present application should be attributed to the patent coverage range of the present application.

Claims

1. A catapult-style bungee jumping amusement apparatus characterized by, The utility model provides a kind of energy storage device, including two sides tower pole (1), support pulley (2) is provided on the upper and lower ends of tower pole (1), cabin assembly (5) is equipped between the two sides tower pole (1), the two ends of cabin assembly (5) are connected with the two ends of same steel wire rope (3), steel wire rope (3) is formed closed loop by passing through support pulley (2) on tower pole (1), part of steel wire rope (3) is located in energy accumulator (4).

2. The catapult amusement ride of claim 1, wherein, The energy accumulator (4) includes a frame (41), the frame (41) is provided with a movable pulley set (45) and a fixed pulley set (46), the steel wire rope (3) passes through multiple pulleys between the movable pulley set (45) and the fixed pulley set (46), the movable pulley set (45) is connected to an elastic energy storage member, and under the elastic potential energy of the elastic energy storage member, the movable pulley set (45) can reciprocate towards and away from the fixed pulley set (46).

3. The catapult amusement ride of claim 2, wherein, The elastic energy storage member is a tension spring (43); the fixed pulley set (46) is fixed at the lower end of the frame (41), the movable pulley set (45) is located above the fixed pulley set (46) and is installed on the bottom surface of a pulley lifting plate (44), the top surface of the pulley lifting plate (44) is connected to the lower end of the tension spring (43), the upper end of the tension spring (43) is connected to a spring hanging plate (42), and the spring hanging plate (42) can be lifted under the action of a pushing device.

4. The catapult amusement ride of claim 3, wherein, The pushing device is a hydraulic cylinder (48).

5. The catapult amusement ride of claim 1, wherein, The cabin assembly (5) includes a plurality of seats (52), the seats (52) are fixed on a cabin framework (51), and the bottom of the cabin framework (51) is provided with an armature (56); a fixed cabin support fixing assembly (6) is arranged below the cabin assembly (5), and the cabin support fixing assembly (6) is provided with an electromagnet (63).

6. The catapult amusement ride of claim 5, wherein, The bottom of the cabin framework (51) is further provided with a lock plate (54), and a lock hole (55) is formed in the lock plate (54); correspondingly, the cabin support fixing assembly (6) is provided with a lock pin (64), the lock pin (64) can be inserted into the lock hole (55) under the driving of a motor (65), and hooking is realized.

7. The catapult amusement ride of claim 5, wherein, The bottom of the cabin assembly (5) is provided with a power taking electrode (57), and correspondingly, the cabin support fixing assembly (6) is provided with a power sending electrode (66), the power taking electrode (57) can be connected to the power sending electrode (66) to supply power.

8. The catapult amusement ride of claim 5, wherein, The bottom of the cabin assembly (5) is provided with a transverse positioning pin (58), and correspondingly, the cabin support fixing assembly (6) is provided with a guide frame (67) with an opening at the top end, and the positioning pin (58) can be inserted into the opening at the top end of the guide frame (67).