Seesaw interaction device
By integrating a sensing and control system into the seesaw, the dynamic lifting and lowering of the sculpture is directly linked to user operation, solving the problem of insufficient interactivity of the seesaw, enhancing user participation and experience, and making it a public artwork with both artistry and interactivity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI SHENZHEN AOYA GARDEN DESIGN CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-05
AI Technical Summary
Existing seesaw-type amusement facilities lack interactivity, offer a limited sensory experience, and lack dynamic incentive feedback, making it difficult to meet modern users' expectations for novelty and immersive experiences.
Design a seesaw interactive device that, by setting up a seesaw component, a sculpture with a preset shape, a liftable track component, a drive mechanism and a sensing system, uses a control system to realize the direct correlation between the dynamic visual changes of the sculpture and the user's operation, providing a multi-sensory experience and instant feedback of accomplishment.
It enhances the fun and interactivity of the seesaw, provides clear goal orientation and instant sense of accomplishment, improves user participation and play experience, breaks through the functional limitations of traditional facilities, and becomes a public artwork with artistry and interactivity.
Smart Images

Figure CN224194076U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of amusement facility technology, and in particular relates to a seesaw interactive device. Background Technology
[0002] With socio-economic development and the improvement of people's living standards, the public's demand for leisure and entertainment facilities is growing, showing a pursuit of higher quality, stronger interactivity, and richer experiences. Traditional amusement facilities, such as simple seesaws, while having a certain degree of fun, are often relatively simple in terms of interactive forms, sensory experiences, and integration with the environment, making it difficult to meet the expectations of modern users, especially the younger generation, for novelty and immersive experiences. Existing public art installations or amusement facilities still have considerable room for improvement in combining mechanical transmission, intelligent control, and biomimetic aesthetic design. Most products have relatively isolated functions, lacking multi-layered interactive feedback and captivating narrative experiences.
[0003] Currently, while sensor technology, motor drive technology, and intelligent control systems are used in some large-scale or high-end amusement facilities, it is rare to see these technologies cleverly and economically integrated into basic amusement facilities like seesaws, giving them unique artistic shapes and interactive themes. Many seesaw-like products remain at the level of basic physical movement, lacking dynamic visual feedback and incentive mechanisms that can stimulate users' sustained interest. Furthermore, some existing interactive devices may struggle to balance fun and artistry in their structural design. Therefore, developing a new type of amusement device that combines traditional amusement facilities with modern technology and artistic design, providing multi-sensory experiences and positive interactive feedback, has significant market implications and application prospects. Utility Model Content
[0004] The purpose of this invention is to address the technical problems of insufficient interactivity, limited sensory experience, and lack of dynamic feedback in existing seesaw-type amusement facilities, and to provide a seesaw interactive device. By incorporating a seesaw assembly, a sculpture with a preset shape, a track assembly for the sculpture's lifting and lowering movement, a drive mechanism, and a sensing system including first and second sensors, and with a control system controlling the lifting, lowering, stopping, or resetting of the sculpture based on the seesaw's motion state and the sculpture's position information, a direct link and real-time interaction are achieved between the user's operation of the seesaw and the dynamic visual changes of the sculpture. This not only enhances the seesaw's fun and appeal but also provides users with clear goal guidance and immediate feedback of achievement, effectively improving user participation and play experience, and overcoming the limitations of traditional seesaws that only provide a single physical movement.
[0005] A seesaw interactive device includes at least one interactive unit and a control system, wherein the interactive unit includes:
[0006] Seesaw assembly for users to ride and generate reciprocating motion;
[0007] Sculptures with pre-designed shapes;
[0008] A track assembly is arranged vertically, along which the sculpture can move up and down;
[0009] A drive mechanism, which is connected to the sculpture in a transmission manner, is used to drive the sculpture to move along the track assembly;
[0010] The sensing system includes at least one first sensor for detecting the motion state of the seesaw assembly, and at least one second sensor for detecting the position of the sculpture on the track assembly.
[0011] The control system is electrically connected to the drive mechanism and the sensing system. The control system is configured to: control the drive mechanism to drive the sculpture to move upward along the track assembly based on the movement of the seesaw assembly detected by the first sensor, and control the sculpture to stop or reset based on the position information of the sculpture detected by the second sensor.
[0012] Furthermore, the control system is also configured to adjust the speed at which the drive mechanism drives the sculpture to move upward based on the swing frequency or amplitude of the seesaw assembly detected by the first sensor.
[0013] Furthermore, the device includes two interactive units, which are symmetrically arranged around a central support column, and each of their track components is mounted on the central support column; and the control system is also configured to: when the seesaw components of the two interactive units are operated simultaneously, independently control their respective drive mechanisms to drive their corresponding sculptures to move upward, allowing them to rise at different speeds to achieve interactive competition.
[0014] Furthermore, the seesaw assembly includes a seat, armrests, and a lower support structure; the first sensor is disposed inside the lower support structure and is used to detect whether the movement of the seesaw assembly's lever arm reaches a preset condition.
[0015] Furthermore, the second sensor of the sensing system includes: a top sensor, disposed on the upper part of the track assembly, for detecting whether the sculpture has reached the top; and a bottom reset sensor, disposed on the lower part of the track assembly, for detecting whether the sculpture has reset to the bottom.
[0016] Furthermore, the device also includes an audio playback system electrically connected to the control system; the control system is further configured to: when the first sensor detects that the seesaw assembly begins to move effectively, trigger the audio playback system to play a first preset audio, and the first preset audio can only be triggered once within a preset audio playback period; when the top sensor detects that the sculpture has reached the top, trigger the audio playback system to play a second preset audio, and the second preset audio can only be triggered once within a preset audio playback period.
[0017] Furthermore, the control system is further configured to: when the seesaw assembly moves continuously for a first preset duration, control the drive mechanism to drive the sculpture to move upward; if the seesaw assembly stops moving for a second preset duration before the sculpture reaches the top, control the drive mechanism to drive the sculpture to reset downward.
[0018] Furthermore, the driving mechanism includes a motor; the sculpture has a pre-embedded fixing component inside, which is connected to the output end of the motor through a flexible traction component, and at least one slider is fixed on the sculpture, which slides in cooperation with the slide rail of the track assembly; the track assembly, the sculpture moving along it, and part of the driving mechanism are provided with a transparent protective cover on their outer periphery.
[0019] Furthermore, a top-shaped structure is installed at the top of the central support column, which covers the interactive unit to provide sunshade and protection for the internal components, and the top-shaped structure includes blades with a grid skin and a centrally located metal baffle.
[0020] Furthermore, the seat surface of the seesaw assembly is treated with an anti-slip coating, and a cushioning anti-collision component is provided under the seat.
[0021] The beneficial effects of this utility model are:
[0022] This embodiment provides a seesaw interactive device that greatly enhances the interactivity and fun of traditional seesaws. When users move on the seesaw, they no longer merely experience physical ups and downs, but can directly drive a visually appealing sculpture to dynamically rise and fall along the track. This instant visual feedback makes every action of the user meaningful and purposeful. The device accurately senses the movement of the seesaw and the position of the sculpture through a sensing system, and the control system intelligently links them together, realizing multi-level interaction between people and the device, and even between people (in the case of a dual-unit design). This brings users a novel and stimulating play experience, as they strive to make the sculpture "grow" to the top. By cleverly integrating mechanical movement, sensor feedback, and artistic design, it not only enhances the attractiveness of the amusement facility itself, but also enables it to serve as a dynamic public artwork, beautifying the environment and stimulating public participation. This breaks through the limitations of traditional amusement facilities, which are often characterized by single function, lack of themes, and lack of in-depth interactive experience, providing users with a brand-new experience that integrates entertainment, viewing, and interaction. Attached Figure Description
[0023] Figure 1 This is the front view of the seesaw interactive device;
[0024] Figure 2 Isometric drawing of the seesaw interactive device;
[0025] Figure 3 Diagram showing the connection between the sculpture and the component;
[0026] Figure 4 This is a schematic diagram of the top structural design.
[0027] Reference numerals: 1. Seesaw interactive device; 10. Interactive unit; 101. Seesaw assembly; 1011. Seat; 1012. Handrail; 1013. Support structure; 1014. Buffer and anti-collision component; 102. Sculpture component; 1021. Embedded fixing component; 103. Drive mechanism; 1031. Motor; 1032. Flexible traction component; 104. Track assembly; 1041. Slide rail; 1042. Slider; 1051. First sensor; 1052. Second sensor; 10521. Top sensor; 10522. Bottom reset sensor; 20. Sound system; 30. Protective cover; 40. Central support column; 50. Top styling structure; 501. Blade; 502. Metal baffle. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the present application will be further described in detail below with reference to the accompanying drawings. The described embodiments should not be regarded as limitations on this utility model. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0029] In the following description, references to "some embodiments" refer to a subset of all possible embodiments; however, it is understood that "some embodiments" may be the same or different subsets of all possible embodiments and may be combined with each other without conflict. Unless otherwise defined, all technical and scientific terms used in the embodiments of this utility model have the same meaning as commonly understood by one of ordinary skill in the art to which the embodiments of this utility model belong. The terminology used in the embodiments of this utility model is for the purpose of describing the embodiments of this utility model only and is not intended to limit the utility model.
[0030] Those skilled in the art should understand that, in the following description of the embodiments of this utility model, the sequence of numbers does not imply the order of execution. Some or all steps may be executed in parallel or sequentially. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this utility model.
[0031] The terminology used in the embodiments of this utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. The singular forms "a" and "the" as used in the embodiments of this utility model and the appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise.
[0032] This embodiment provides a seesaw interactive device 1, such as Figures 1-4 As shown, it includes at least one interactive unit 10 and a control system, wherein the interactive unit 10 includes:
[0033] Seesaw assembly 101 is provided for users to ride and generate reciprocating motion;
[0034] Sculpture 102 with a pre-designed shape;
[0035] The sculpted piece 102 can move up and down along the track assembly 104, which is arranged vertically.
[0036] The drive mechanism 103 is connected to the sculpture 102 and is used to drive the sculpture 102 to move along the track assembly 104.
[0037] The sensing system includes at least one first sensor 1051 for detecting the motion state of the seesaw assembly 101, and at least one second sensor 1052 for detecting the position of the sculpture 102 on the track assembly 104.
[0038] The control system is electrically connected to the drive mechanism 103 and the sensing system. The control system is configured to: control the drive mechanism 103 to drive the sculpture 102 to move upward along the track assembly 104 according to the movement of the seesaw assembly 101 detected by the first sensor 1051; and control the stop or reset movement of the sculpture 102 according to the position information of the sculpture 102 detected by the second sensor 1052.
[0039] In one specific embodiment, a seesaw interactive device 1 includes at least one interactive unit 10. The core of this interactive unit 10 is a seesaw assembly 101, which consists of a metal frame and a wooden seat. The seat surface is coated with a transparent matte anti-corrosion wood oil. It can swing back and forth around a central fulcrum. A metal armrest 1012 is provided in front of the seat, and plastic anti-collision components are installed under the seat. Near or in conjunction with the seesaw, a sculpture 102, designed with a biomimetic prototype of a dawn redwood berry and anthropomorphized, is placed. This sculpture 102 is made of fiberglass and coated with a brown matte paint. The sculpture 102 is mounted on a vertically aligned track assembly 104, which consists of symmetrically installed metal guide rails to ensure stable up-and-down sliding of the sculpture 102. The drive mechanism 103 is responsible for driving the movement of the sculpture 102. Specifically, it is a motor 1031 installed inside the equipment base or central column. It is connected to the sculpture 102 via a wire rope and pulley system connected to a pre-embedded steel plate inside the sculpture 102. A slider 1042 is also fixed on the sculpture 102 and cooperates with the slide rail 1041 of the track assembly 104. The forward and reverse rotation of the motor 1031 can drive the sculpture 102 to rise or fall. The sensing system is the key to realizing interaction: the first sensor 1051 is a metal sensor installed inside the double-tube support structure 1013 at the bottom of the seesaw. Its sensing head faces the inside of the structure and is used to detect whether the movement of the seesaw lever arm has reached the preset standard; the second sensor 1052 consists of two metal sensors installed at the top and bottom of the vertical track assembly 104, namely the top sensor 10521 and the bottom reset sensor 10522, and is used to detect whether the sculpture 102 has reached the top or bottom of the track. All these components are connected to a central control system installed in an outdoor electrical control box via wires concealed within the conduits. The control system integrates an existing controller or chip, which embeds or integrates the relevant programs that can execute this solution. When the user uses the seesaw, the first sensor 1051 transmits the seesaw's motion signal to the control system, which then issues a command to the drive mechanism 103. The drive motor 1031 drives the sculpture 102 to move upward. When the sculpture 102 reaches the top of the track (detected by the top sensor 10521) or after the seesaw has stopped moving for a period of time, the control system controls the drive mechanism 103 to stop the sculpture 102 or reverse its movement to return it to its initial position (detected by the bottom reset sensor 10522).
[0040] In some embodiments, the control system is further configured to adjust the speed at which the drive mechanism 103 drives the sculpture 102 to move upward based on the swing frequency or amplitude of the seesaw assembly 101 detected by the first sensor 1051.
[0041] Based on the above specific embodiments, speed adjustment logic is added to the program design of the control system. The number of times the first sensor 1051 is triggered by the seesaw lever within a certain period of time is recorded by the control system as the swing frequency. After receiving the swing frequency data, the control system controls the rotational speed of the motor 1031 in the drive mechanism 103 through a preset algorithm (for example, the higher the frequency, the larger the duty cycle of the PWM signal output to the motor 1031, or the higher the output frequency of the drive variable frequency motor 1031), thereby achieving the effect that the faster the seesaw swings, the faster the metasequoia fruit sculpture rises.
[0042] In some embodiments, the device includes two interactive units 10, which are symmetrically arranged around a central support column 40, and each of their respective track assemblies 104 is mounted on the central support column 40; and the control system is further configured to: when the seesaw assemblies 101 of the two interactive units 10 are operated simultaneously, independently control their respective drive mechanisms 103 to drive their corresponding sculpture pieces 102 to move upward, allowing them to rise at different speeds to achieve interactive competition.
[0043] Based on the above specific embodiment, the device includes two interactive units 10, which are symmetrically arranged around a common central support column 40 along a central axis. The vertical track assembly 104 of each interactive unit 10 is fixed to opposite sides of the central support column 40. The control system receives signals from the first sensors 1051 of the two interactive units 10 and independently controls their respective drive mechanisms 103. When the two seesaws are operated simultaneously, the control system drives the corresponding metasequoia nut sculptures 102 to rise along their respective vertical tracks at potentially different speeds, based on the movement of each seesaw. The user can observe the rising process of the two sculptures 102, thus creating a competitive gameplay experience.
[0044] In some embodiments, the seesaw assembly 101 includes a seat 1011, an armrest 1012, and a lower support structure 1013; the first sensor 1051 is disposed inside the lower support structure 1013 and is used to detect whether the movement of the pry bar of the seesaw assembly 101 reaches a preset condition.
[0045] Based on the above specific embodiments, each seesaw assembly 101 specifically comprises a wooden seat, a metal armrest 1012 in front of the seat, a supporting seat plate, and a lower double-tube metal support structure 1013 for pivoting movement. A first sensor 1051 is installed inside the tubular structure of the lower double-tube support structure 1013, with its sensing head facing the inside of the seesaw lever's movement path. When a user rides the seesaw and moves its lever to a specific angle or position, causing the front end of the lever to pass through and trigger the sensing range of the first sensor 1051, this is considered to meet a preset condition (the trigger condition for the start of interaction), and the first sensor 1051 sends a signal to the control system.
[0046] In some embodiments, the second sensor 1052 of the sensing system includes: a top sensor 10521 disposed on the upper part of the track assembly 104 for detecting whether the sculpture 102 has reached the top; and a bottom reset sensor 10522 disposed on the lower part of the track assembly 104 for detecting whether the sculpture 102 has reset to the bottom.
[0047] Based on the above specific embodiments, the second sensor 1052 used in the sensing system to detect the position of the sculpture 102 specifically includes: a top sensor 10521, which is installed at the uppermost end of the actual travel of the vertical track assembly 104. When the metasequoia nut sculpture 102 rises to this position and triggers the top sensor 10521, the control system knows that the sculpture 102 has reached the top. And a bottom reset sensor 10522, which is installed at the lowest end of the vertical track assembly 104, i.e., the initial static position of the metasequoia nut sculpture 102. When the sculpture 102 descends and resets to this position and triggers the bottom reset sensor 10522, the control system knows that the sculpture 102 has reset.
[0048] In some embodiments, the device further includes an audio playback system electrically connected to the control system; the control system is further configured to: trigger the audio playback system to play a first preset audio when the first sensor 1051 detects that the seesaw assembly 101 begins to move effectively, and the first preset audio can only be triggered once within a preset audio playback period; and trigger the audio playback system to play a second preset audio when the top sensor 10521 detects that the sculpture 102 has reached the top, and the second preset audio can only be triggered once within a preset audio playback period.
[0049] Based on the above specific embodiment, an audio system 20 is added, installed on the upper part of the central support column 40. This system is connected to the control system via wiring. The program logic of the control system is set so that when the first sensor 1051 detects that the seesaw has started to move effectively, the control system not only drives the sculpture 102, but also sends a command to the audio system 20 to play a first preset audio composed of edited public copyright bird calls and bell sounds. Furthermore, the control system ensures that within a complete lifting cycle of the sculpture 102, even if the seesaw continuously triggers the first sensor 1051, the first preset audio is only played once. Similarly, when the top sensor 10521 detects that the sculpture 102 has reached the top of the track, the control system triggers the audio system 20 to play victory music (a second preset audio), which is also only played once within the current cycle.
[0050] In some embodiments, the control system is further configured to: control the drive mechanism 103 to drive the sculpture 102 to move upward after the seesaw assembly 101 has been moving continuously for a first preset time; if the seesaw assembly 101 stops moving for a second preset time before the sculpture 102 reaches the top, then control the drive mechanism 103 to drive the sculpture 102 to reset downward.
[0051] Based on the above specific embodiments, the control system further optimizes its control logic: the control system only activates the drive mechanism 103 to make the corresponding metasequoia fruit sculpture 102 start moving upward after the seesaw has been swinging for more than a first preset duration (e.g., 5 seconds). If the metasequoia fruit sculpture 102 has not reached the top during its upward movement, and the seesaw has stopped swinging for more than a second preset duration (e.g., 30 seconds), the control system will control the drive mechanism 103 to make the metasequoia fruit sculpture 102 naturally fall back to the starting point (downward reset). Furthermore, during the descent of the metasequoia fruit sculpture 102, the swinging of the seesaw will not change the descent trajectory of the sculpture 102.
[0052] In some embodiments, the drive mechanism 103 includes a motor 1031; the sculpture 102 has a pre-embedded fixing member 1021 inside, which is connected to the output end of the motor 1031 through a flexible traction member 1032, and at least one slider 1042 is fixed on the sculpture 102, the slider 1042 slidingly engaging with the slide rail 1041 of the track assembly 104; the track assembly 104, the sculpture 102 moving along it, and a portion of the drive mechanism 103 are provided with a transparent protective cover 30 on their outer periphery.
[0053] Based on the above specific embodiments, the drive mechanism 103 is specifically implemented as follows: a motor 1031 serves as the power source. A steel plate is pre-embedded inside the metasequoia nut sculpture 102 (made of fiberglass) for connection to the transmission components. A steel wire rope serves as a flexible traction component 1032, with one end connected to the output drum or drive wheel of the motor 1031, and the other end fixedly connected to the pre-embedded steel plate of the sculpture 102 by screws or other means. At least one slider 1042 is also fixed on the sculpture 102, which precisely matches the slide rail 1041 on the vertical track assembly 104 to ensure the stability and guidance of the sculpture 102 during lifting. To protect these moving parts and the drive mechanism 103, and to ensure user safety, a protective cover 30 made of transparent polycarbonate sheet is installed around the vertical track assembly 104, the metasequoia nut sculpture 102 moving along it, and part of the drive mechanism 103.
[0054] In some embodiments, a top styling structure 50 is installed at the top of the central support column 40, which covers the interactive unit 10 to provide sunshade and protection for internal components, and the top styling structure 50 includes blades 501 with a grid skin and a centrally located metal baffle 502.
[0055] Based on the above specific embodiment, a top-shaped structure 50 is installed at the top of the central support column 40. This structure is designed to cover the top area of the track components 104 and sculptures 102 of the two interactive units 10 below, mainly providing sunshade and rain protection for the equipment below, while also providing shade for visitors. Structurally, the top-shaped structure 50 consists of two sets of symmetrical diamond-shaped blades 501. The blades 501 have a grid-like skin (e.g., made of anti-corrosion wood strips or metal grids), balancing shading and light transmission while reducing weight. At the central convergence point of the blades 501, or below the center of the top shape, an umbrella-shaped metal baffle 502 is installed to conceal the structural connectors, electrical conduit outlets, and audio components installed on the top of the central column, preventing them from being directly exposed to wind and rain.
[0056] In some embodiments, the surface of the seat 1011 of the seesaw assembly 101 is treated with an anti-slip coating, and a buffer anti-collision member 1014 is provided under the seat 1011.
[0057] Based on the above specific embodiments, to improve user experience and safety, the seesaw assembly 101 itself has been optimized in detail. The surface of the seesaw's wooden seat 1011 is coated with a transparent matte anti-corrosion wood oil, giving it a certain degree of anti-slip performance while retaining the natural texture of the wood. Under the seat 1011, at the part where the seesaw levers may come into contact with the ground or base, a cushioning and anti-collision component 1014 made of plastic material is installed to reduce impact, protect the equipment and the ground, and reduce noise.
[0058] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A seesaw interactive device, characterized in that, It includes at least one interactive unit and a control system, the interactive unit comprising: Seesaw assembly for users to ride and generate reciprocating motion; Sculptures with pre-designed shapes; A track assembly is arranged vertically, along which the sculpture can move up and down; A drive mechanism, which is connected to the sculpture in a transmission manner, is used to drive the sculpture to move along the track assembly; The sensing system includes at least one first sensor for detecting the motion state of the seesaw assembly, and at least one second sensor for detecting the position of the sculpture on the track assembly. The control system is electrically connected to the drive mechanism and the sensing system. The control system is configured to: control the drive mechanism to drive the sculpture to move upward along the track assembly based on the movement of the seesaw assembly detected by the first sensor, and control the sculpture to stop or reset based on the position information of the sculpture detected by the second sensor.
2. The seesaw interactive device according to claim 1, characterized in that, The control system is further configured to adjust the speed at which the drive mechanism drives the sculpture to move upward based on the swing frequency or amplitude of the seesaw assembly detected by the first sensor.
3. The seesaw interactive device according to claim 1 or 2, characterized in that, The device includes two interactive units, which are symmetrically arranged around a central support column, and each of their track components is mounted on the central support column. Furthermore, the control system is configured to independently control their respective drive mechanisms to drive their corresponding sculptures upward when the seesaw components of the two interactive units are operated simultaneously, allowing them to rise at different speeds to achieve interactive competition.
4. The seesaw interactive device according to claim 3, characterized in that, The seesaw assembly includes a seat, armrests, and a lower support structure; the first sensor is disposed inside the lower support structure and is used to detect whether the movement of the seesaw assembly's lever arm reaches a preset condition.
5. The seesaw interactive device according to claim 4, characterized in that, The second sensor of the sensing system includes: a top sensor, disposed on the upper part of the track assembly, for detecting whether the sculpture has reached the top; and a bottom reset sensor, disposed on the lower part of the track assembly, for detecting whether the sculpture has reset to the bottom.
6. The seesaw interactive device according to claim 5, characterized in that, The device further includes an audio playback system electrically connected to the control system; the control system is further configured to: when the first sensor detects that the seesaw assembly begins to move effectively, trigger the audio playback system to play a first preset audio, and the first preset audio can only be triggered once within a preset audio playback period; when the top sensor detects that the sculpture has reached the top, trigger the audio playback system to play a second preset audio, and the second preset audio can only be triggered once within a preset audio playback period.
7. The seesaw interactive device according to claim 5 or 6, characterized in that, The control system is further configured to: when the seesaw assembly moves continuously for a first preset time, control the drive mechanism to drive the sculpture to move upward; if the seesaw assembly stops moving for a second preset time before the sculpture reaches the top, control the drive mechanism to drive the sculpture to reset downward.
8. The seesaw interactive device according to claim 1, characterized in that, The driving mechanism includes a motor; the sculpture has a pre-embedded fixing component inside, which is connected to the output end of the motor through a flexible traction component, and at least one slider is fixed on the sculpture, which slides in cooperation with the slide rail of the track assembly; the track assembly, the sculpture moving along it, and part of the driving mechanism are provided with a transparent protective cover on their outer periphery.
9. The seesaw interactive device according to claim 3, characterized in that, A top-mounted structure is installed at the top of the central support column. This top-mounted structure covers the interactive unit and provides sunshade and protection for the internal components. The top-mounted structure includes blades with a grid-like surface and a centrally located metal baffle.
10. The seesaw interactive device according to claim 1, characterized in that, The seat surface of the seesaw assembly is treated with anti-slip material, and a cushioning anti-collision component is installed under the seat.