Construction scaffolding

By installing rotatable baffles and buffer layers on the suspended platform, the problems of construction tools being thrown from heights and the wear and tear caused by the contact between the suspended platform and the exterior wall were solved, thus improving construction safety.

CN118774369BActive Publication Date: 2025-12-02BEIJING ZHUZONG FIRST DEV & CONSTR CO LTD
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Patent Information

Application Number
CN202411028031.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-12-02
Estimated Expiration
2044-07-30

AI Technical Summary

Technical Problem

Existing suspended platforms are prone to causing construction tools to be thrown from heights and to be worn or damaged by impacts with the exterior walls during construction. They are also prone to swaying in strong winds, posing safety hazards.

Method used

Design a suspended platform for building construction, equipped with a rotatable baffle and a buffer layer. The baffle rotates to form a receiving surface for construction tools when approaching the outer wall, and returns to a vertical state to form a buffer and reduce impact during a sudden drop.

Benefits of technology

It effectively prevents construction tools from being thrown from heights, reduces contact wear and impact damage between the suspended platform and the exterior wall, and improves construction safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a suspended platform for building construction, comprising: a platform body; a baffle plate, the upper end of which is rotatably mounted on the bottom of the platform body near the exterior wall, the rotation axis of the baffle plate being horizontal, and a buffer layer provided at the lower end of the baffle plate; and a driving member that drives the baffle plate to rotate until the lower end of the baffle plate contacts the exterior wall, so that the top surface of the baffle plate forms a receiving surface for construction tools. The beneficial effects of this invention are that it can prevent the risk of construction tools falling and causing objects to be thrown from heights during construction, and it can also minimize the damage to the exterior wall that may be caused by the suspended platform colliding with it during strong winds.
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Description

Technical Field

[0001] This invention relates to the field of suspended platform equipment. More specifically, this invention relates to a suspended platform for building construction. Background Technology

[0002] Suspended platforms are construction equipment used for high-altitude operations in building engineering, typically for curtain wall installation, exterior wall cleaning, and the installation of related accessories on exterior walls. Suspended platforms are frequently used in high-rise building construction. However, to avoid damage to the exterior walls, existing suspended platforms are usually positioned at a certain distance from the walls. During construction, tools may fall from the platform, creating a situation where, due to the height of the platform, these falling tools are considered high-altitude debris. This not only damages the tools themselves but also poses a risk of injury to people or objects below. Furthermore, suspended platforms operating at high altitudes are susceptible to swaying due to strong winds, potentially causing them to collide with and damage the exterior walls. Therefore, there is an urgent need for a suspended platform structure that can prevent tools from falling from heights while minimizing contact and wear between the platform and the exterior walls. Summary of the Invention

[0003] One object of the present invention is to solve at least the above-mentioned problems and to provide a suspended platform for building construction, which can prevent construction workers from dropping construction tools during the construction process and causing the risk of objects being thrown from heights. In addition, it can also minimize the damage to the exterior wall caused by the suspended platform colliding with the exterior wall when it sways in strong winds.

[0004] To achieve these objectives and other advantages according to the present invention, a suspended platform for construction is provided, comprising:

[0005] The suspended platform itself;

[0006] A baffle is rotatably mounted at the bottom of the suspended platform body near the outer wall at its upper end. The rotation center axis of the baffle is horizontal, and a buffer layer is provided at the lower end of the baffle.

[0007] A driving component drives the baffle to rotate so that when the lower end of the baffle contacts the outer wall, the top surface of the baffle forms a receiving surface for construction tools.

[0008] Preferably, the baffle includes a fixing groove and a buffer plate body slidably inserted into the fixing groove. The end of the fixing groove away from the buffer plate body is rotatably connected to the bottom of the suspended basket body. Multiple buffer members are spaced apart in the fixing groove along its length direction. One end of each buffer member is connected to the bottom of the fixing groove, and the other end is connected to the end of the buffer plate body inserted into the fixing groove.

[0009] Preferably, there are four baffles and four driving components, with each driving component corresponding to one of the four baffles. The driving component drives the corresponding baffle to rotate. The four baffles are respectively located on the four sides of the bottom of the suspended basket body, so that when the suspended basket body falls sharply, the driving component is driven to rotate the baffle to a set angle to form a buffer.

[0010] Preferably, the driving component includes a vertical plate, a hydraulic rod, and a slider. The top of the vertical plate is located at the bottom of the suspended basket body, and the bottom of the vertical plate is higher than the bottom end of the fixed groove in the vertical state. The slider is slidably disposed on the side wall of the corresponding baffle near the middle of the suspended basket body. One end of the hydraulic rod is hinged to the vertical plate, and the other end is hinged to the slider, so that when the hydraulic rod extends or retracts, it drives the baffle to rotate.

[0011] Preferably, each buffer component includes a buffer spring and a pair of magnets disposed at both ends of the buffer spring. The magnets repel each other. The magnet near the bottom of the fixed groove is connected to the bottom of the fixed groove, and the magnet near the end of the buffer plate is connected to the end of the buffer plate.

[0012] Preferably, it also includes guide posts corresponding to multiple buffer components, one end of which is connected to the bottom of the fixed groove and the other end is slidably inserted into the buffer plate body, and the buffer spring and a pair of magnets are respectively sleeved on the corresponding guide posts.

[0013] Preferably, the bottom of the suspended platform body has four passage holes, and each of the four passage holes can be detachably fitted with a cover block. The size of the cover block is adapted to the passage hole. The four cover blocks correspond one-to-one with four vertical plates, and the vertical plates are located at the bottom of the corresponding cover blocks. When the baffle is in the vertical state, an external force pulls the cover block upward, causing the baffle to rotate toward the bottom of the suspended platform and thus store the baffle at the bottom of the suspended platform body.

[0014] Preferably, the lower end of the baffle is a convex arc surface, and the buffer layer is applied to the arc surface.

[0015] Preferably, the mounting end of the baffle is a convex hemispherical shape, and when the baffle is vertical, the mounting end of the baffle is tangent to the bottom of the suspended basket body.

[0016] The present invention has at least the following beneficial effects:

[0017] Firstly, by configuring the suspended platform body, baffle, buffer layer, and drive mechanism, in the initial state, the baffle is vertically positioned. Once the suspended platform reaches the set height, the drive mechanism is activated, causing the baffle near the exterior wall to rotate. During this process, the lower end of the baffle, equipped with the buffer layer, gradually approaches the exterior wall until it contacts it. The buffer layer minimizes damage when the suspended platform contacts the exterior wall. At this point, construction workers can stand inside the suspended platform to perform their work. If tools suddenly fall, the baffle below the workers prevents them from falling onto the tools. Construction tools can be picked up by hand (and retrieved with the aid of tools if necessary) to resume construction operations. Overall, by designing the baffle to be rotatable, the baffle can be rotated adaptively according to the distance between the suspended platform and the outer wall. When the lower end of the baffle is in contact with or about to contact the outer wall, the top surface of the baffle forms a receiving surface to receive falling construction tools and prevent objects from being thrown from a height. At the same time, the lower end of the baffle is equipped with a buffer layer, which can effectively protect the outer wall from damage when the baffle comes into contact with the outer wall, and can also minimize the impact damage caused by the suspended platform swaying in strong winds and colliding with the outer wall.

[0018] Secondly, by setting a fixed groove, buffer plate, buffer components, and setting the number of baffles to four, when the lifting mechanism of the suspended platform fails and causes the suspended platform to fall suddenly, the drive component is activated to make the four baffles return to the vertical state, which can form a vertical buffer and minimize the violent impact on construction personnel when the bottom of the suspended platform hits the ground, thereby reducing the potential injury and improving the safety of the suspended platform construction process.

[0019] Other advantages, objectives and features of the present invention will become apparent in part from the following description, and in part from those skilled in the art through study and practice of the invention. Attached Figure Description

[0020] Figure 1 This is a front view of the construction scaffold with the baffle in a horizontal state, according to one of the technical solutions of the present invention.

[0021] Figure 2 This is a front view of the structure of the suspended platform for building construction described in one of the technical solutions of the present invention during use;

[0022] Figure 3 This is a front view of the construction scaffold with the baffle in a vertical state, according to one of the technical solutions of the present invention.

[0023] Figure 4 This is a schematic diagram of the structure of the baffle according to one of the technical solutions of the present invention;

[0024] Figure 5 This is a top view of the structure of the suspended platform for building construction according to one of the technical solutions of the present invention;

[0025] Figure 6 This is a front sectional view of the construction scaffold with the baffle horizontally retracted at the bottom of the scaffold body, according to one of the technical solutions of the present invention.

[0026] Figure 7 This is a front sectional view of the construction scaffolding used in one of the technical solutions of the present invention, when the baffle is in a vertical state.

[0027] Reference numerals: 1-Suspended basket body; 2-Support plate; 3-Baffle; 301-Fixing groove; 302-Buffer plate; 303-Spring; 304-First magnet; 305-Second magnet; 306-Guide column; 4-Vertical plate; 5-Hydraulic rod; 6-Mounting base; 7-Support rod; 8-Slider; 9-External wall; 10-Covering block; 11-Mounting plate; 12-Locking bolt; 13-Passage hole; 14-Screw hole; 15-Handle. Detailed Implementation

[0028] The present invention will now be described in further detail with reference to the accompanying drawings, so that those skilled in the art can implement it based on the description.

[0029] It should be understood that terms such as “having,” “comprising,” and “including” as used herein do not exclude the presence or addition of one or more other elements or combinations thereof.

[0030] like Figure 1-7 As shown, the present invention provides a suspended platform for building construction, comprising:

[0031] Suspended basket body 1;

[0032] The upper end of the baffle 3 is rotatably mounted on the bottom of the suspended basket body 1 near the outer wall 9. The rotation center axis of the baffle 3 is horizontal, and the lower end of the baffle 3 is provided with a buffer layer.

[0033] A driving component drives the baffle 3 to rotate so that when the lower end of the baffle 3 contacts the outer wall 9, the top surface of the baffle 3 forms a construction tool receiving surface.

[0034] In the above technical solution, the suspended platform body 1 is an existing structure in the field, and will not be described in detail here; the suspended platform body 1 is square, and its length direction is consistent with the length direction of the outer wall 9 (the length direction of the outer wall 9 is: the side of the outer wall 9 near the suspended platform is a vertical surface, the vertical direction of the vertical surface is the height direction, and the horizontal direction is the length direction). A baffle 3 is rotatably provided at one end of the suspended platform body 1 near the bottom of the outer wall 9. Specifically, the baffle 3 is arranged along the length direction of the suspended platform body 1. A pair of support plates 2 are provided at the bottom of the suspended platform body 1, and a support rod 7 is provided between the pair of support plates 2. The axial direction of the support rod 7 is consistent with the length direction of the suspended platform body 1. The support plates 2 are arranged along the length direction of the suspended platform. A mounting seat 6 is provided at the upper end of the baffle 3. A mounting hole is provided through the mounting seat 6. The mounting hole is along the baffle 3. The baffle 3 is positioned along its length, and the mounting base 6 is coaxially sleeved on the support rod 7 through mounting holes, allowing the baffle 3 to rotate around the support rod 7. The lower end face of the baffle 3 is provided with a buffer layer (not shown in the figure). The material of the buffer layer can be flexible materials such as rubber, silicone, or sponge. With this design, when the suspended basket impacts the outer wall 9, the lower end of the baffle 3 contacts the outer wall 9 first, and the presence of the buffer layer can reduce the wear generated when the suspended basket contacts the outer wall 9. The driving component drives the baffle 3 to rotate around the support rod 7. The driving component can be a motor. When the driving component is a motor, the motor can be installed on the bottom of the suspended basket body 1 through a bracket. The output shaft of the motor is coaxially connected to the support rod 7, and at the same time, the support rod 7 is coaxially fixed to the mounting base 6, so that when the motor starts, it drives the support rod 7 to rotate, thereby driving the baffle 3 to rotate.

[0035] In this technical solution, during use, the baffle 3 is initially set vertically. When the suspended platform is raised to the set height, the drive unit is activated according to the distance between the suspended platform body 1 and the outer wall 9, causing the baffle 3 to rotate. During this process, the lower end of the baffle 3, which has a buffer layer, rotates upward and gradually approaches the outer wall 9 until it contacts or is about to contact the outer wall 9. The buffer layer can minimize the damage caused when the suspended platform contacts the outer wall 9. At this time, the construction personnel can stand in the suspended platform to carry out construction operations. When the construction tools suddenly fall, since there is a baffle 3 below the construction personnel, the construction tools fall onto the baffle 3. The construction personnel can pick up the construction tools (and if necessary, use the tools to retrieve them) and resume the construction operations. The height of the baffle 3 is selected according to the actual situation.

[0036] The beneficial effects of this technical solution are as follows: by setting up the suspended platform body 1, baffle 3, buffer layer, and driving component, the baffle 3 is designed to be rotatable, allowing it to be rotated directly until its lower end contacts the outer wall 9. At this point, the top surface of the baffle 3 forms a receiving surface for falling construction tools. The presence of the outer wall 9 prevents construction tools from falling further, thus avoiding the formation of objects thrown from a height. At the same time, the end of the baffle 3 that contacts the outside is equipped with a buffer layer, which can effectively protect against damage caused when the baffle 3 contacts the outer wall 9, and can also minimize contact damage caused by the suspended platform swaying in strong winds and colliding with the outer wall 9.

[0037] In another technical solution, the baffle 3 includes a fixing groove 301 and a buffer plate 302 slidably inserted into the fixing groove 301. One end of the fixing groove 301 away from the buffer plate 302 is rotatably connected to the bottom of the suspended basket body 1. Multiple buffer members are spaced apart along the length of the fixing groove 301. One end of each buffer member is connected to the bottom of the fixing groove 301, and the other end is connected to the end of the buffer plate 302 inserted into the fixing groove 301. Specifically, the baffle 3 includes a fixing groove 301, which is a square groove. The upper end of the fixing groove 301 is provided with the mounting base 6, and the groove opening end is the lower end. The buffer plate 302 is a square plate, and the lower end of the buffer plate 302 is provided with the buffer layer. The upper end of 2 is slidably inserted into the fixed groove 301 from the groove opening. The sliding connection between the buffer plate 302 and the fixed groove 301 is preferably a pulley and a limiting groove. The bottom of the fixed groove 301 is the inner upper wall away from the groove opening. Multiple buffer members are spaced apart between the bottom of the fixed groove 301 and the upper end of the buffer plate 302 (the upper end of the buffer plate 302 is the end of the buffer plate 302 inserted into the fixed groove 301) to act as the lower end of the buffer plate 302. Multiple buffer members are spaced apart along the length direction of the fixed groove 301, which is the length direction of the suspended basket body 1. The buffer member can be a spring 303 so that when the lower end of the buffer plate 302 contacts the outer wall 9, the spring 303 forms further buffering to avoid a stronger impact between the suspended basket body 1 and the outer wall 9.

[0038] The beneficial effect of adopting this technical solution is that by setting the fixing groove 301, the buffer plate 302, and the buffer component, a structure is provided for further buffering at the lower end of the baffle 3, which can further reduce the wear generated when the suspended basket body 1 comes into contact with the outer wall 9.

[0039] In another technical solution, there are four baffles 3 and four driving components, each corresponding to one of the four baffles 3. The driving components drive the corresponding baffles 3 to rotate. The four baffles 3 are distributed on the four sides of the bottom of the suspended platform body 1. When the suspended platform body 1 falls sharply, the driving components are driven to rotate the baffles 3 to a set angle to form a buffer. Specifically, each baffle 3 includes a fixing groove 301, a buffer plate 302, and a buffer component. The four baffles 3 are rotatably connected to the corresponding four sides of the bottom of the suspended platform body 1 through mounting bases 6, support rods 7, and mounting plates 11. It should be noted that among the four support rods 7, the axial direction of one pair of support rods 7 is consistent with the length direction of the outer wall 9, and the axial direction of the other pair of support rods 7 is perpendicular to the length direction of the outer wall 9, so that all four baffles 3 can rotate outward. In use, during normal construction, the baffle 3 closest to the outer wall 9 is rotated to contact the outer wall 9, and the remaining three baffles 3 are rotated to the horizontal position, so that all four baffles 3 can receive the load. The system comprehensively prevents falling construction tools (as the guardrails on the suspended platform 1 mostly have large openings, there is a risk of tools falling); it also comprehensively prevents falling construction tools from causing objects to be thrown from heights. Furthermore, if the lifting mechanism of the suspended platform 1 suddenly malfunctions, causing it to plummet, construction personnel can quickly activate the drive mechanism to rotate the four baffles 3 to a vertical position (returning to their initial state). This creates a vertical buffer, minimizing the impact when the bottom of the suspended platform 1 contacts the ground, thus reducing injury to construction personnel. The beneficial effects of this technical solution are that, by setting up the four baffles 3 structure, on the one hand, it comprehensively prevents construction tools from falling from all sides of the suspended platform 1; on the other hand, when the platform is about to plummet or suddenly plummets, the drive mechanism can be activated to rotate the baffles 3 vertically, thus creating a vertical buffer to reduce the impact force when the platform contacts the ground, thereby reducing injury to construction personnel.

[0040] In another technical solution, the driving component includes a vertical plate 4, a hydraulic rod 5, and a slider 8. The top of the vertical plate 4 is located at the bottom of the suspended basket body 1, and the bottom of the vertical plate 4 is higher than the bottom end of the vertically fixed groove 301. The slider 8 is slidably mounted on the side wall of the corresponding baffle 3 near the middle of the suspended basket body 1. One end of the hydraulic rod 5 is hinged to the vertical plate 4, and the other end is hinged to the slider 8, so that when the hydraulic rod 5 extends or retracts, it drives the baffle 3 to rotate. Specifically, the slider 8 is slidably mounted in the middle of the fixed groove 301 (the middle refers to the middle part along the length direction of the baffle 3), and the slider 8 is along the height direction of the fixed groove 301 (the height direction of the fixed groove 301 means that the baffle 3 is vertical). The basket slides vertically. A vertical plate 4 is provided at the bottom of the basket. The fixed end of the hydraulic rod 5 is hinged to the vertical plate 4 and the telescopic end is hinged to the slider 8. When the telescopic end of the hydraulic rod 5 extends or retracts, it drives the fixed groove 301 to rotate. The bottom of the vertical plate 4 is higher than the bottom of the fixed groove 301, preferably close to the bottom of the fixed groove 301. This design is to avoid the bottom of the vertical plate 4 extending beyond the bottom of the fixed groove 301 after the buffer plate 302 retracts into the fixed groove 301, which would affect the overall buffering effect of the four baffles 3. Based on this design, in actual use, the installation position of the vertical plate 4 and the hinge points at both ends of the hydraulic rod 5 can be tested in advance according to the actual situation.

[0041] In this technical solution, when in use, the hydraulic rod 5 extends, driving the fixed groove 301 to rotate, which in turn drives the lower end of the buffer plate 302 to rotate until it contacts or is about to contact the outer wall 9. The beneficial effect of adopting this technical solution is that by designing the vertical plate 4, hydraulic rod 5, and slider 8, a structure for a driving component is provided, which has a good driving effect, is easy to obtain materials, and is quick and easy to install.

[0042] In another technical solution, each buffer component includes a buffer spring 303 and a pair of magnets disposed at both ends of the buffer spring 303. The magnets repel each other magnetically. The magnet near the bottom of the fixing groove 301 is connected to the bottom of the fixing groove 301, and the magnet near the end of the buffer plate 302 is connected to the end of the buffer plate 302. Specifically, the buffer component includes a pair of magnets and a buffer spring 303. The pair of magnets are a first magnet 304 and a second magnet 305. The first magnet 304 is connected to the bottom of the fixing groove 301, and the second magnet 305 is connected to the upper end of the buffer plate 302. A spring 303 is disposed between the first magnets 304, and one end of the spring 303 is attached to... Alternatively, the spring 303 may be attached to the first magnet 304, and the other end of the spring 303 may be attached to or glued to the second magnet 305. The magnetic properties of the first magnet 304 and the second magnet 305 are repulsive. In specific use, when the lower end of the buffer plate 302 is impacted (by contact with the outer wall 9 or the ground), the buffer plate 302 slides along the fixing groove 301. At this time, the spring 303 is compressed to form the first layer of buffer. When the first magnet 304 and the second magnet 305 approach each other, the repulsive force generated by the repulsion of like poles forms the second layer of buffer, which greatly increases the buffering capacity of the buffer and can minimize the impact sensation when the suspended basket body 1 collides with external objects, thereby protecting the safety of construction personnel as much as possible.

[0043] In another technical solution, guide posts 306 corresponding to multiple buffer components are also included. One end of the guide post 306 is connected to the bottom of the fixed groove 301, and the other end is slidably inserted into the buffer plate 302. The buffer spring 303 and a pair of magnets are respectively sleeved on the corresponding guide posts 306. Specifically, a sliding groove is opened at the upper end of the buffer plate 302. One end of the guide post 306 slides into the sliding groove and the other end is fixed to the bottom of the fixed groove 301. In addition, the first magnet 304 and the second magnet 305 are both annular. The outer diameter of the spring 303 is larger than the inner diameter of the magnet so that the two ends of the spring 303 abut against the first magnet 304 and the second magnet 305 respectively. The spring 303 and the first magnet 304 and the second magnet 305 are all sleeved on the guide posts 306. The beneficial effect of this technical solution is that by designing the guide posts 306, the buffering guidance of the spring 303 is facilitated.

[0044] In another technical solution, such as Figures 6-7As shown, the bottom of the suspended platform body 1 has four passage holes 13, and each of the four passage holes 13 can be detachably fitted with a cover block 10. The size of the cover block 10 is adapted to the passage hole 13. The four cover blocks 10 correspond one-to-one with four vertical plates 4, and the vertical plates 4 are located at the bottom of the corresponding cover block 10. When the baffle 3 is in the vertical state, an external force pulls the cover block 10 upward, causing the baffle 3 to rotate towards the bottom of the suspended platform, thereby storing the baffle 3 at the bottom of the suspended platform body 1. Specifically, the passage holes 13 are mainly used to allow the hydraulic rod 5 to enter the interior of the suspended platform body 1 from below for subsequent storage. The size of the passage holes 13 is designed according to the actual situation. The cover blocks 10 are used to cover the passage holes 13. The cover block 10 and the passage hole 13 can be detachably connected by having an installation device on one end of the top surface of the cover block 10. Mounting plate 11, with locking bolts 12 screwed onto it. The bottom of the suspended basket body 1 has screw holes 14 corresponding to the locking bolts 12. When the cover block 10 enters the passage hole 13 and covers the passage hole 13, the mounting plate 11 is placed on the inner bottom surface of the suspended basket body 1. Then, the locking bolts 12 are screwed into the corresponding screw holes 14 to achieve a stable connection between the cover block 10 and the bottom of the suspended basket body 1. The number of mounting plates 11, locking bolts 12, and screw holes 14 are designed according to actual conditions, with the cover block 10 being firmly fixed on the inner bottom surface of the suspended basket body 1. The bottom of the cover block 10 is provided with the vertical plate 4. When the baffle 3 is vertical, the stroke of the hydraulic rod 5 is zero or close to zero, that is, the hydraulic rod 5 returns to its initial state. In actual use, in order to facilitate lifting the hydraulic rod 5, a handle 15 can be designed on the top surface of the cover block 10.

[0045] In this technical solution, during use, when the device is not in use, first return the baffle 3 to its vertical position, then disconnect the cover block 10 from the inner bottom wall of the suspended basket body 1, and lift the cover block 10. During this process, the hydraulic rod 5 moves upward with the cover block 10 and enters the interior of the suspended basket body 1 through the passage hole 13, simultaneously driving the baffle 3 to rotate towards the bottom of the suspended basket body 1. When the lower end of the baffle 3 contacts the suspended basket body 1, the baffle 3 is stored at the bottom of the suspended basket body 1. Then, the device is placed on the mounting surface. Due to the resistance support generated by the mounting surface, the hydraulic rod 5 and the cover block 10 on it can be stably placed inside the suspended basket body 1, which helps to reduce the space occupied by the overall suspended basket device. In addition, in actual use, the four baffles 3 The dimensions can be adapted to the actual situation. For example, the length of the baffle 3 can be appropriately reduced so that all four baffles 3 can be horizontally stored at the bottom of the suspended platform body 1. If the length of the baffle 3 is to be increased to expand the range for receiving fallen construction tools, that is, when the straight-line distance between the ends of one pair of opposing baffles 3 (referred to as the first baffle) and the adjacent baffle 3 (referred to as the second baffle) is less than the width of the second baffle (the width refers to the height of the second baffle when it is vertical, and the width when it is horizontal), first store one pair of first baffles, and then store one pair of second baffles. The first baffle is folded horizontally and stored at the bottom of the suspended platform body 1, and the second baffle is placed outside the first baffle. This can also minimize the overall space occupied by the suspended platform device.

[0046] In another technical solution, the lower end of the baffle 3 is a convex arc surface, and the buffer layer is applied to the arc surface. The beneficial effect of this technical solution is that by designing the lower end of the baffle 3 as a convex arc surface, the contact wear generated when the lower end of the baffle 3 contacts the outer wall 9 can be further reduced.

[0047] In another technical solution, the mounting end of the baffle 3 is a convex hemispherical shape. When the baffle 3 is vertical, the mounting end of the baffle 3 is tangent to the bottom of the suspended basket body 1. Specifically, the outer wall of the mounting seat 6 at the top of the baffle 3 is a convex hemispherical shape. With this design, when the baffle 3 rotates, it can rotate along the bottom of the suspended basket body 1. When the baffle 3 is vertical, its top mounting seat 6 is just tangent to the bottom of the suspended basket body 1. This can minimize the vertical space occupied when installing the baffle 3, making the overall device structure compact and occupying less vertical space.

[0048] The number of devices and processing capacity described herein are for the purpose of simplifying the description of the invention. Applications, modifications, and variations of the suspended platform for construction using this invention will be readily apparent to those skilled in the art.

[0049] Although embodiments of the present invention have been disclosed above, they are not limited to the applications listed in the specification and embodiments. They can be applied to various fields suitable for the present invention. For those skilled in the art, other modifications can be easily made. Therefore, without departing from the general concept defined by the claims and their equivalents, the present invention is not limited to the specific details and illustrations shown and described herein.

Claims

1. A suspended platform for building construction, characterized in that, include: The suspended platform itself; A baffle is rotatably mounted at the bottom of the suspended platform body near the outer wall at its upper end. The rotation center axis of the baffle is horizontal, and a buffer layer is provided at the lower end of the baffle. A driving component drives the baffle to rotate so that when the lower end of the baffle contacts the outer wall, the top surface of the baffle forms a receiving surface for construction tools. The baffle includes a fixed groove and a buffer plate body slidably inserted into the fixed groove. The end of the fixed groove away from the buffer plate body is rotatably connected to the bottom of the suspended basket body. Multiple buffer members are spaced apart in the fixed groove along its length direction. One end of each buffer member is connected to the bottom of the fixed groove, and the other end is connected to the end of the buffer plate body inserted into the fixed groove. There are four baffles and four driving components. The four driving components correspond one-to-one with the four baffles. The driving components drive the corresponding baffles to rotate. The four baffles are located on the four sides of the bottom of the suspended basket body. When the suspended basket body falls sharply, the driving components are driven to rotate the baffles to a set angle to form a buffer.

2. The suspended platform for building construction as described in claim 1, characterized in that, The driving component includes a vertical plate, a hydraulic rod, and a slider. The top of the vertical plate is located at the bottom of the suspended basket body, and the bottom of the vertical plate is higher than the bottom of the fixed groove in the vertical state. The slider is slidably mounted on the side wall of the corresponding baffle near the middle of the suspended basket body. One end of the hydraulic rod is hinged to the vertical plate, and the other end is hinged to the slider, so that when the hydraulic rod extends or retracts, it drives the baffle to rotate.

3. The suspended platform for building construction as described in claim 1, characterized in that, Each buffer component includes a buffer spring and a pair of magnets disposed at both ends of the buffer spring. The magnets repel each other. The magnet near the bottom of the fixed groove is connected to the bottom of the fixed groove, and the magnet near the end of the buffer plate is connected to the end of the buffer plate.

4. The suspended platform for building construction as described in claim 3, characterized in that, It also includes guide posts corresponding to multiple buffer components. One end of the guide post is connected to the bottom of the fixed groove, and the other end is slidably inserted into the buffer plate body. The buffer spring and a pair of magnets are respectively sleeved on the corresponding guide posts.

5. The suspended platform for building construction as described in claim 4, characterized in that, The bottom of the suspended platform body has four passage holes, and each of the four passage holes can be detachably fitted with a cover block. The size of the cover block is adapted to the passage hole. The four cover blocks correspond one-to-one with four vertical plates, and the vertical plates are located at the bottom of the corresponding cover blocks. When the baffle is in the vertical state, an external force pulls the cover block upward, causing the baffle to rotate toward the bottom of the suspended platform and thus store the baffle at the bottom of the suspended platform body.

6. The suspended platform for building construction as described in claim 2, characterized in that, The lower end of the baffle is a convex arc surface, and the buffer layer is applied to the arc surface.

7. The suspended platform for building construction as described in claim 1, characterized in that, The mounting end of the baffle is a convex hemispherical shape. When the baffle is vertical, the mounting end of the baffle is tangent to the bottom of the suspended basket body.

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