Safe and intelligent hanging basket
By installing three trigger buttons on the suspended platform, the hoist can only be started when all three buttons are pressed. This solves the safety and standardization issues caused by single-person operation, ensuring that at least two people can operate the platform, thus improving the safety and standardization of the suspended platform.
Patent Information
- Application Number
- CN202511375537.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-01
- Publication Date
- 2025-12-02
AI Technical Summary
The existing suspended platform has insufficient safety and standardization issues when operated by a single person, and cannot effectively guarantee that at least two people can operate it.
Design a safe and intelligent suspended platform. By setting three trigger buttons, the trigger switch will only turn on the hoist selection switch when all three buttons are activated, ensuring that at least two people can operate it.
This improves the standardization and safety of suspended platforms, avoids single-person operation, reduces the occurrence of accidents, and ensures that at least two people are using the suspended platform at any given time.
Smart Images

Figure CN121047397A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of construction hoisting equipment, and in particular to a safe and intelligent suspended platform. Background Technology
[0002] Currently, suspended platforms are construction machinery used in building engineering for high-altitude operations. They can replace scaffolding, reduce the labor intensity of workers, improve work efficiency, and are reusable high-altitude operation equipment.
[0003] When using a suspended platform, it is stipulated that two people must operate it; one person cannot use it alone. Avoiding single-person operation of the suspended platform can improve the standardization and safety of its use. Summary of the Invention
[0004] This application provides a safe and intelligent suspended platform, which improves the standardization and safety of the platform's use.
[0005] This application provides a safe intelligent suspended platform, including an electrical control box. The electrical control box includes a box body, a hoist selection switch, a first terminal block, and a trigger opening mechanism. The trigger opening mechanism includes a trigger button, a trigger component, and a trigger switch. The trigger switch is electrically connected between the hoist selection switch and the first terminal block. At least three trigger buttons are provided. The trigger component controls the trigger switch to open when at least three trigger buttons are activated.
[0006] In the above technical solution, by setting three trigger buttons, the triggering component can only act on the trigger switch when all three trigger buttons are activated, thereby enabling the trigger switch to connect the line between the first terminal block and the hoist selector switch.
[0007] All three trigger buttons are activated, requiring at least two people. Therefore, the hoist selection switch can only be turned on when two people are using the suspended platform, preventing the situation where only one person uses the suspended platform and ensuring that there are at least two people in the suspended platform when it is in use, thereby improving the standardization and safety of the suspended platform. Attached Figure Description
[0008] Figure 1 This is a front view structural diagram of one embodiment;
[0009] Figure 2 This is a schematic diagram of the electrical control box in one embodiment;
[0010] Figure 3 This is a schematic diagram of the structure of the trigger component and the trigger button in one embodiment;
[0011] Figure 4 This is a schematic diagram of the structure of a triggering component in one embodiment;
[0012] Figure 5This is a schematic diagram of the structure of the trigger component and the trigger button in one embodiment.
[0013] 11. Basketball hoist; 12. Infrared detection device; 13. Seat belt detection device; 14. Safety lock; 15. Hoist; 2. Electrical control box; 21. Box body; 22. Hoist selector switch; 231. First terminal block; 232. Second terminal block; 233. Third terminal block; 234. Fourth terminal block; 24. Trigger switch; 251. Up button switch; 252. Down button switch; 26. Door lock; 27. Speaker; 3. Trigger button; 31. First button; 32. Second button; 33. 34. Third button; 45. Fourth button; 46. Trigger assembly; 411. First flexible rope; 412. Second flexible rope; 413. Third flexible rope; 414. Fourth flexible rope; 421. First torsion spring; 422. Second torsion spring; 431. First compression spring; 432. Second compression spring; 441. First shaft; 442. Second shaft; 451. First moving plate; 4511. First protrusion; 452. Second moving plate; 4521. Second protrusion; 46. Fixed plate; 47. Trigger block; 5. Fixed ring. Detailed Implementation
[0014] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. Through these descriptions, the features and advantages of the present application will become clearer and more apparent.
[0015] The term “exemplary” as used herein means “serving as an example, embodiment, or illustration.” Any embodiment illustrated herein as “exemplary” is not necessarily to be construed as superior to or better than other embodiments. Although various aspects of embodiments are shown in the accompanying drawings, the drawings are not necessarily drawn to scale unless specifically indicated otherwise.
[0016] Furthermore, the technical features involved in the different embodiments of this application described below can be combined with each other as long as they do not conflict with each other.
[0017] This application discloses a safe and intelligent suspended platform. The entire suspended platform consists of a suspension mechanism, a suspended platform, a hoist, a safety lock, a working wire rope, a safety wire rope, an electrical control box, and an electrical control system.
[0018] Reference Figure 1 The suspended platform includes a basket frame 11, which is a spliced rectangular frame with a steel plate welded to the bottom.
[0019] There are two hoists 15, which are located at both ends of the basket frame 11 along its length. Each hoist 15 corresponds to one of the two working wire ropes, which are not shown in the attached drawings.
[0020] There are two safety locks 14, which are fixed to the upper end of the basket frame 11. Each safety lock 14 corresponds to one of the two working steel wire ropes. The safety lock 14 is a safety protection device for the basket frame 11. When the working steel wire rope suddenly breaks or the basket frame 11 tilts to a certain angle, it can automatically and quickly lock the working steel wire rope to ensure that the basket frame 11 platform does not fall or continue to tilt.
[0021] The electrical control system is located on the electrical control box 2, which is fixed on the basket frame 11 and located in the middle of the length of the basket frame 11.
[0022] Example 1
[0023] Reference Figure 2 A safe and intelligent suspended platform includes an electrical control box 2, which includes a box body 21, a hoist selection switch 22, a first terminal block 231, and a trigger opening mechanism.
[0024] The trigger-activated mechanism includes a trigger button 3, a trigger component 4, and a trigger switch 24. The trigger switch 24 is electrically connected between the hoist selector switch 22 and the first terminal block 231.
[0025] There are at least three trigger buttons 3. The trigger component 4 controls the trigger switch 24 to open when at least three trigger buttons 3 are activated.
[0026] Specifically, the box 21 is a square box, and a fixed hinge is fixed to the side of the box 21. The box 21 is fixedly connected to the basket frame 11 through the fixed hinge.
[0027] The enclosure 21 is equipped with a door and a lock 26, and electrical components are installed inside the enclosure 21. During normal use, the door is closed, and an operation panel is located on the door.
[0028] The trigger mechanism is activated, and then the hoist selector switch 22 is rotated. By pressing the up button switch 251, the hoist 15 drives the working wire rope, which in turn moves the basket 11 upward. By pressing the down button switch 252, the hoist 15 drives the working wire rope, which in turn moves the basket 11 downward.
[0029] The first terminal block 231 is used for electrical connection with the hoist 15 via a wire.
[0030] The trigger-activated mechanism includes a trigger switch 24, which is connected between the hoist selector switch 22 and the first terminal block 231. The trigger switch 24 is located inside the housing 21, and the figure shows a cross-sectional view of the area of the housing 21 corresponding to the trigger switch 24.
[0031] When the trigger switch 24 is turned on, the hoist selector switch 22 and the first terminal block 231 are electrically connected; when the trigger switch 24 is turned off, the hoist selector switch 22 and the first terminal block 231 are disconnected.
[0032] The trigger opening mechanism includes a trigger button 3 and a trigger component 4. When the trigger button 3 is applied, the trigger button 3 applies an action to the trigger component 4, and the trigger component 4 controls the trigger switch 24 to open.
[0033] It should be noted that after the trigger switch 24 is turned on, it remains in the on state. When the trigger component 4 applies an action to the trigger switch 24 again, the trigger switch 24 will turn off.
[0034] Reference Figure 2 There are at least three trigger buttons 3. The trigger component 4 controls the trigger switch 24 to open when at least three trigger buttons 3 are activated. The activation of at least three trigger buttons 3 means that three of the at least three trigger buttons 3 need to be triggered simultaneously at a certain moment.
[0035] Specifically, there are three trigger buttons 3, with a gap of no less than 30 centimeters between them. When all three trigger buttons 3 are activated, the trigger switch 24 is turned on.
[0036] Compared to existing technologies, which do not have a trigger button 3, operators can control the lifting and lowering of the hoist 15 simply by turning the hoist selection switch 22.
[0037] This embodiment adds three trigger buttons 3. The trigger switch 24 can only be turned on when all three trigger buttons 3 are activated. After the trigger switch 24 is turned on and the hoist selection switch 22 is rotated, the basket frame 11 can be raised and lowered by the up button switch 251 and the down button switch 252.
[0038] The placement of the three trigger buttons 3 ensures that at least two personnel are required within the basket 11 to activate all three buttons. This guarantees that the basket 11 is used in accordance with regulations, meaning it cannot be used by a single person. Using the basket by a single person can easily lead to a greater difference in stress on the two working steel cables, resulting in a high safety risk. This embodiment, by adding an extra operational step, ensures that the basket can be used by at least two people, thus improving the standardization and safety of its use.
[0039] Reference Figure 1 As an optional solution, it also includes an infrared detection device 12 and a seat belt detection device 13. The infrared detection device 12 is fixed to the basket frame 11, and the seat belt detection device 13 is fixed to the basket frame 11.
[0040] Specifically, the infrared detection device 12 detects whether anyone is climbing over it, and the safety belt detection device 13 detects whether the operator is wearing a safety belt correctly.
[0041] The infrared detection device 12 and the safety belt detection device 13 further improve the safety of using the suspended platform.
[0042] Reference Figure 1 The suspended platform also includes a speaker 27 and a controller. A receiver receives signals measured by the infrared detection device 12 and the safety belt detection device 13. The receiver sends signals to the speaker 27.
[0043] Specifically, the controller receives signals measured by the infrared detection device 12 and the seat belt detection device 13, and sends corresponding signals to the speaker 27. After receiving the signal from the controller, the speaker 27 plays a prompt sound to remind the staff to operate safely.
[0044] Reference Figure 2 The electrical control box also includes a second terminal block 232, a third terminal block 233 and a fourth terminal block 234. The second terminal block 232 is electrically connected to the infrared detection device 12 via a wire, the third terminal block 233 is electrically connected to the external lifting switch via a wire, and the fourth terminal block 234 is electrically connected to the power supply via a wire.
[0045] Reference Figure 3 As an alternative, the trigger button 3 is activated when it is pressed down.
[0046] Specifically, the trigger button 3 has an existing button structure. The trigger button 3 can be pressed down to a fixed length. After the trigger button 3 is pressed down, it applies a force to the trigger component 4. For clarity, the trigger button 3 shown in the figure is the shape after rotating the trigger button 3 90° around the horizontal line.
[0047] After all three trigger components 4 are pressed down, the force applied by the three trigger buttons 3 to the trigger components 4 can cause the trigger components 4 to exert a force on the trigger switch 24, thereby controlling the opening or closing of the trigger switch 24.
[0048] In another embodiment, the trigger button 3 is a touch-sensitive button, which activates the trigger component 4 when touched by a finger.
[0049] Compared to touch-sensitive buttons and other electronic sensing devices, the mechanical trigger button 3 has a longer service life and is less sensitive to environmental conditions, making it suitable for outdoor use.
[0050] Reference Figure 2 As an optional solution, when at least three trigger buttons 3 are applied in a set order, the trigger switch 24 is turned on.
[0051] Specifically, when the three trigger buttons 3 are applied in a set order, the trigger switch 24 is turned on. When the trigger buttons 3 are applied in a different order, the trigger switch 24 cannot be turned on.
[0052] By setting the order in which the three trigger buttons 3 are activated, the occurrence of unauthorized operation of the trigger switch 24 and use of the suspended platform can be reduced, further improving the standardization of the use of the suspended platform, reducing the occurrence of accidents during the use of the suspended platform, and improving the safety of the use of the suspended platform.
[0053] Reference Figure 3 As an optional solution, at least three trigger buttons 3 include a first button 31, a second button 32, and a third button 33. When the first button 31, the second button 32, and the third button 33 are applied sequentially, the trigger switch 24 is turned on.
[0054] Specifically, the first button 31, the second button 32, and the third button 33 are located at the corners of the housing 21 and are arranged in a counterclockwise direction, with the first button 31 located at the lower end of the housing 21.
[0055] Press the first button 31, the second button 32 and the third button 33 in sequence to trigger the trigger button 3 to act on the trigger component 4, and the trigger component 4 controls the trigger switch 24 to turn on or off.
[0056] Reference Figure 3 As an optional solution, the triggering component 4 includes a first flexible rope 411, a second flexible rope 412, a third flexible rope 413, a first torsion spring 421, a second torsion spring 422, a first compression spring 431, a fixing plate 46, a first shaft 441, a second shaft 442, a first moving plate 451, and a second moving plate 452.
[0057] The first shaft 441 and the second shaft 442 are rotatably connected to the housing 21 around their own axes, with the axis of the first shaft 441 being parallel to the axis of the second shaft 442.
[0058] The first movable plate 451 is slidably assembled with the first shaft 441 along the first direction, and the second movable plate 452 is slidably assembled with the second shaft 442 along the first direction, where the first direction is the axial direction of the second shaft 442.
[0059] The fixing plate 46 is fixedly connected to the box body 21.
[0060] Specifically, the first shaft 441 includes a circular shaft and a guide strip protruding from the side of the circular shaft. The guide strip is arranged along a first direction. The first movable plate 451 is a circular plate with a guide hole in the middle. The guide hole mates with the cross-section of the first shaft 441. The first movable plate 451 slides on the first shaft 441 along the first direction, and the first shaft 441 and the first movable plate 451 rotate synchronously around the axis of the first shaft 441. The second shaft 442 and the second movable plate 452 have the same structure as the first shaft 441 and the first movable plate 451.
[0061] In this embodiment, two fixing plates 46 are provided; in another embodiment, only one fixing plate 46 may be provided. The fixing plate 46 is provided with clearance holes that mate with the cross-section of the circular shaft of the first shaft 441. No guide strip is provided on the first shaft 441 at the position corresponding to the fixing plate 46, and the first shaft 441 rotates relative to the fixing plate 46 around its axis.
[0062] It should be noted that a stop block is fixed on the housing 21, and the stop block contacts the end faces of the first moving plate 451 and the second moving plate 452 facing away from the fixed plate 46 along the first direction. The first moving plate 451 and the second moving plate 452 move along the first direction away from the fixed plate 46 until they contact the stop block and then stop.
[0063] The first torsion spring 421 is connected at one end to the fixed plate 46 and at the other end to the first shaft 441, and is used to apply a torque to the first shaft 441 to rotate about the axis of the first shaft 441. The second torsion spring 422 is connected at one end to the fixed plate 46 and at the other end to the second shaft 442, and is used to apply a torque to the second shaft 442 to rotate about the axis of the second shaft 442.
[0064] One end of the first compression spring 431 is pressed into contact with the fixed plate 46, and the other end is pressed into contact with the first moving plate 451, which is used to apply pressure to the first moving plate 451 to move away from the fixed plate 46.
[0065] It should be noted that a first stop and a second stop are fixed on the housing 21. The first stop restricts the range of rotation of the first moving plate around its own axis, and the second stop restricts the range of rotation of the second moving plate 452 around its own axis.
[0066] One end of the first flexible rope 411 is fixedly connected to the housing 21, and the other end is wound and fixedly connected to the first shaft 441. One end of the second flexible rope 412 is fixedly connected to the housing 21, and the other end is wound and fixedly connected to the second shaft 442. One end of the third flexible rope 413 is fixedly connected to the housing 21, and the other end is fixedly connected to the second movable plate 452.
[0067] One end of the first flexible rope 411 is wound and fixedly connected to the first shaft 441, indicating that one end of the first flexible rope 411 is fixed to the first shaft 441 and the first flexible rope 411 is wrapped around the outside of the first shaft 441. When the first flexible rope 411 is pulled, the first flexible rope 411 pulls the first shaft 441 to rotate around the axis of the first shaft 441.
[0068] The first button 31 corresponds to the first flexible rope 411. When the first button 31 is pressed down, it is pressed against the first flexible rope 411, and the first flexible rope 411 pulls the first shaft 441 and the first moving plate 451 to rotate by a set angle. The second button 32 corresponds to the second flexible rope 412. When the second button 32 is pressed down, it is pressed against the second flexible rope 412, and the second flexible rope 412 pulls the second shaft 442 and the second moving plate 452 to rotate by a set angle.
[0069] The third button 33 corresponds to the third flexible rope 413. When the third button 33 is pressed down, it is pressed tightly against the third flexible rope 413, and the third flexible rope 413 pulls the two moving plates to move a first set distance.
[0070] Specifically, the first flexible rope 411, the second flexible rope 412, and the third flexible rope 413 are non-stretchable flexible ropes. Two retaining rings 5 are fitted on the outer sides of each of the three flexible ropes: the two retaining rings 5 on the first flexible rope 411 are located on both sides of the first button 31 along its length; the two retaining rings 5 on the second flexible rope 412 are located on both sides of the second button 32 along its length; and the two retaining rings 5 on the third flexible rope 413 are located on both sides of the third button 33 along its length.
[0071] When the first button 31 is pressed down, one end of the first button 31 contacts and presses against the first flexible rope 411, and pushes the first flexible rope 411 to move, so that the effective rope length of the first flexible rope 411 between the two fixed rings 5 increases, and the first flexible rope 411 pulls the first shaft 441 to rotate around the axis of the first shaft 441.
[0072] When the second button 32 is pressed down, one end of the second button 32 contacts and presses against the second flexible rope 412, and pushes the second flexible rope 412 to move, increasing the effective rope length of the second flexible rope 412 between the two fixed rings 5, so that the second flexible rope 412 pulls the second shaft 442 to rotate around the axis of the second shaft 442.
[0073] When the first movable plate 451 rotates around the first axis 441 by a set angle, and the second movable plate 452 rotates around the second axis 442 by a set angle, one end of the first movable plate 451 along the first direction and one end of the second movable plate 452 along the first direction come into contact and press against each other.
[0074] Specifically, the first movable plate 451 includes a first disk coaxial with the first shaft 441 and a first protrusion 4511 fixed to the side of the second disk. The second movable plate 452 includes a first disk coaxial with the second shaft 442 and a second protrusion 4521 fixed to the side of the second disk.
[0075] The diagram shows the position of the first protrusion 4511 after the first button 31 is pressed down and the first moving plate 451 rotates by a set angle. It also shows the position of the second protrusion 4521 after the second button 32 is pressed down and the second moving plate 452 rotates by a set angle. At this point, the first protrusion 4511 and the second protrusion 4521 are in contact at one end along the first direction, and the first protrusion 4511 is located between the second protrusion 4521 and the fixed plate 46.
[0076] When the third flexible rope 413 pulls the second moving plate 452 to move toward the fixed plate 46 in the first direction, the second moving plate 452 drives the first protrusion 4511 through the second protrusion 4521 to move the first moving plate 451 in the first direction. The second moving plate 452 drives the first moving plate 451 to move a first set distance toward the fixed plate 46 in the first direction and then stops moving.
[0077] The triggering component 4 also includes a triggering block 47, which is fixedly connected to the first moving plate 451. When the first moving plate 451 rotates around the axis of the first shaft 441 by a set angle and moves a first set distance in the first direction, the triggering block 47 triggers the triggering switch 24 to open.
[0078] Specifically, the trigger block 47 is fixed to the side of the first moving plate 451, attached... Figure 4 The image shows the correspondence between the trigger block 47 and the trigger switch 24 after the trigger block 47 rotates a set angle around the axis of the first shaft 441. When the first moving plate 451 drives the trigger block 47 to move a first set distance along the first direction, the trigger block 47 applies an action to the trigger switch 24, thereby opening and closing the trigger switch 24.
[0079] When the pressure on the third button 33 is removed, the third button 33 automatically resets. The first compression spring 431 pushes the first moving plate 451 to move away from the fixed plate 46 by a first set distance along the first direction, and the first moving plate 451 pushes the second moving plate 452 to move synchronously away from the fixed plate 46 along the first direction.
[0080] When the pressure applied to the first button 31 and the second button 32 is removed, the first button 31 and the second button 32 automatically reset themselves. The first torsion spring 421 drives the first shaft 441 to rotate by a set angle, and the second torsion spring 422 drives the second shaft 442 to rotate by a set angle, returning to the initial position.
[0081] Furthermore, the trigger assembly 4 also includes a second compression spring 432, which is sleeved on the second shaft 442. One end of the second compression spring 432 along the first direction contacts and presses against the second moving plate 452, and the other end contacts and presses against the fixed plate 46.
[0082] When the first button 31, the second button 32, and the third button 33 are removed simultaneously, the first torsion spring 421, the second torsion spring 422, the first tension spring, and the second tension spring can simultaneously reset the first moving plate 451 and the second moving plate 452.
[0083] Example 2
[0084] Reference Figure 5 A safe and intelligent suspended platform, which differs from Embodiment 1 in that at least three trigger buttons 3 also include a fourth button 34. When the first button 31 and the fourth button 34 are activated, pressing the second button 32 and the third button 33 in sequence controls the trigger switch 24 to open.
[0085] By adding a fourth button 34, the chance of accidental activation when the suspended platform is used by non-operators is reduced, further improving the safety of the suspended platform.
[0086] Reference Figure 5 As an optional solution, the triggering component 4 also includes a fourth flexible rope 414. The fourth flexible rope 414 is fixedly connected at one end to the housing 21 and at the other end to the first moving plate 451.
[0087] The fourth button 34 corresponds to the fourth flexible rope 414. When the fourth button 34 is pressed down, it is pressed against the fourth flexible rope 414, and the fourth flexible rope 414 pulls the first moving plate 451 to move a third set distance.
[0088] After the first moving plate 451 rotates around the first axis 441 by a set angle and moves along the first direction by a second set distance, when the second moving plate 452 rotates around the second axis 442 by a set angle, the second moving plate 452 drives the first moving plate 451 to move synchronously along the first direction by a third set distance.
[0089] The trigger block 47 is fixedly connected to the first moving plate 451. When the first moving plate 451 rotates around the axis of the first shaft 441 by a set angle and moves along the first direction by a second set distance and a third set distance, the trigger block 47 triggers the trigger switch 24 to open.
[0090] Example 3
[0091] A safe and intelligent suspended platform, which differs from Embodiment 1 in that the triggering component 4 includes a flexible rope, a reset spring, a fixed plate, and a movable plate.
[0092] One end of the flexible rope is fixedly connected to the housing 21, and the other end is fixedly connected to the movable plate. The fixed plate is fixedly connected to the housing 21, and the movable plate is slidably mounted on the housing 21, with the sliding direction facing towards or away from the fixed plate.
[0093] The two ends of the return spring are pressed into contact with the fixed plate and the moving plate respectively. The return spring applies a force to the moving plate to keep the flexible rope in a taut state.
[0094] At least three trigger buttons 3 are used to contact the flexible rope at a position between the end of the flexible rope that is fixed to the housing 21 and the fixing plate.
[0095] Trigger button 3 is used to drive the flexible rope to pull the moving plate toward the fixed plate when started.
[0096] After the three trigger buttons 3 are activated, the flexible rope is pulled to move three distances along the first direction. At this time, the trigger block 47 can activate the trigger switch 24 to open or close the trigger switch 24.
[0097] In another embodiment, five trigger buttons 3 may be provided, with the gap between two trigger buttons 3 being less than 10 centimeters. In this case, one worker can press three trigger buttons 3.
[0098] In the description of this application, it should be noted that the terms "upper", "lower", "inner", "outer", "front", "rear", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship in the working state of this application. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0099] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0100] The present application has been described above with reference to preferred embodiments; however, these embodiments are merely exemplary and illustrative. Various substitutions and modifications can be made to the present application based on these embodiments, all of which fall within the protection scope of the present application.
Claims
1. A safe and intelligent suspended platform, characterized in that, The system includes an electrical control box (2), which comprises a housing (21), a hoist selection switch (22), a first terminal block (231), and a trigger opening mechanism; wherein, The triggering mechanism includes a trigger button (3), a trigger component (4), and a trigger switch (24); wherein, The trigger switch (24) is electrically connected between the hoist selector switch (22) and the first terminal block (231); At least three trigger buttons (3) are provided; The trigger component (4) controls the trigger switch (24) to open when all at least three trigger buttons (3) are activated; When the at least three trigger buttons (3) are applied in a set order, they control the trigger switch (24) to turn on. The at least three trigger buttons (3) include a first button (31), a second button (32), a third button (33), and a fourth button (34); wherein, When the first button (31) and the fourth button (34) are activated, the second button (32) and the third button (33) are pressed in sequence to control the trigger switch (24) to turn on. The triggering component (4) includes a first flexible rope (411), a second flexible rope (412), a third flexible rope (413), a fourth flexible rope (414), a first torsion spring (421), a second torsion spring (422), a first compression spring (431), a second compression spring (432), a fixed plate (46), a first shaft (441), a second shaft (442), a first moving plate (451), and a second moving plate (452); wherein, The first shaft (441) and the second shaft (442) are rotatably connected to the housing (21) about their own axes, and the axis of the first shaft (441) is parallel to the axis of the second shaft (442). The first movable plate (451) is slidably mounted on the first shaft (441) along the first direction, and the second movable plate (452) is slidably mounted on the second shaft (442) along the first direction, wherein the first direction is the axial direction of the second shaft (442); The fixing plate (46) is fixedly connected to the box body (21); One end of the first torsion spring (421) is connected to the fixed plate (46), and the other end is connected to the first shaft (441), which is used to apply a torque to the first shaft (441) to rotate about the axis of the first shaft (441); One end of the second torsion spring (422) is connected to the fixed plate (46), and the other end is connected to the second shaft (442), which is used to apply a torque to the second shaft (442) to rotate about the axis of the second shaft (442); One end of the first compression spring (431) is pressed against the fixed plate (46), and the other end is pressed against the first moving plate (451), which is used to apply a spring force to the first moving plate (451) to move away from the fixed plate (46); One end of the second compression spring (432) is pressed against the fixed plate (46), and the other end is pressed against the second moving plate (452), which is used to apply pressure to the second moving plate (452) to move away from the fixed plate (46); One end of the first flexible rope (411) is fixedly connected to the box body (21), and the other end is wound and fixedly connected to the first shaft (441); One end of the second flexible rope (412) is fixedly connected to the box body (21), and the other end is wound and fixedly connected to the second shaft (442); The third flexible rope (413) is fixedly connected at one end to the box (21) and at the other end to the second movable plate (452); The fourth flexible rope (414) is fixedly connected at one end to the box (21) and at the other end to the first movable plate (451); The first button (31) corresponds to the first flexible rope (411). When the first button (31) is pressed down, it is pressed against the first flexible rope (411). The first flexible rope (411) pulls the first shaft (441) and the first moving plate (451) to rotate by a set angle. The second button (32) corresponds to the second flexible rope (412). When the second button (32) is pressed down, it is pressed against the second flexible rope (412). The second flexible rope (412) pulls the second shaft (442) and the second moving plate (452) to rotate by a set angle. The third button (33) corresponds to the third flexible rope (413). When the third button (33) is pressed down, it is pressed against the third flexible rope (413). The third flexible rope (413) pulls the second moving plate (452) to move a second set distance. The fourth button (34) corresponds to the fourth flexible rope (414). When the fourth button (34) is pressed down, it is pressed against the fourth flexible rope (414). The fourth flexible rope (414) pulls the first moving plate (451) to move a third set distance. After the first moving plate (451) rotates around the first axis (441) by a set angle and moves along the first direction by a second set distance, when the second moving plate (452) rotates around the second axis (442) by a set angle, the second moving plate (452) drives the first moving plate (451) to move synchronously along the first direction by the third set distance. The triggering component (4) further includes a trigger block (47), which is fixedly connected to the first moving plate (451). The trigger block (47) triggers the trigger switch (24) to open when the first moving plate (451) rotates a set angle around the axis of the first shaft (441) and moves a second set distance and a third set distance along the first direction.
2. The safe intelligent suspended platform according to claim 1, characterized in that, It also includes a basketball hoop (11), an infrared detection device (12), and a seatbelt detection device (13); among which, The electrical control box (2) is fixed to the basket frame (11), the infrared detection device (12) is fixed to the basket frame (11), and the seat belt detection device (13) is fixed to the basket frame (11).
3. The safe intelligent suspended platform according to claim 2, characterized in that, It also includes a speaker (27) and a controller; among which The controller receives signals measured by the infrared detection device (12) and the seat belt detection device (13); The controller sends a signal to the speaker (27).