Suspension protection device for building construction

By installing support and reinforcement components on the suspended platform and using electric suction cups to adhere and fix it to the building wall, the problem of swaying of the suspended platform is solved, improving construction safety and ease of use.

CN223738962UActive Publication Date: 2025-12-30ZIBO DONGCHEN DECORATION ENGINEERING CO LTD
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Patent Information

Application Number
CN202520127292.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-12-30
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

The existing suspended platform lacks a restraining structure between the suspended platform and the building wall during construction, which causes swaying and poses a safety hazard.

Method used

A suspension protection device including a support and reinforcement component was designed. The electric suction cup in the support and reinforcement component is used to adhere and fix it to the building wall. The installation unit, telescopic drive unit and suction unit realize stable support and limit between the main body of the suspended basket and the building wall.

Benefits of technology

It effectively prevents the suspended platform from swaying, improves construction safety, and the support and reinforcement components take up little space when stored, making them flexible and convenient to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a suspension protection device for building construction, which relates to the technical field of hanging basket protection and comprises a supporting and reinforcing component, and the supporting and reinforcing component comprises a mounting unit, a telescopic driving unit and an adsorption unit. The mounting unit is used for realizing clamping and fixing with a wall-leaning protective fence and a bottom limiting rod; the telescopic driving unit is used for enabling the adsorption unit to be close to or away from the building wall surface; the adsorption unit is used for being adsorbed and fixed to the building wall face so as to provide stable supporting force for the hanging basket body. The supporting and reinforcing assembly is arranged, the electric suction cup is close to the building wall and is fixed to the building wall in an adsorption mode, so that the hanging basket body and the building wall are supported and fixed, the hanging basket body cannot shake, construction safety is further improved, in addition, the supporting and reinforcing assembly is small in occupied space in the storage state, and the supporting and reinforcing assembly is convenient to use. And the horizontal position can be adjusted, and use is more flexible and convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a suspension protection device for building construction. BACKGROUND

[0002] The basket is a building tool for high-altitude operation of building engineering, is used for curtain wall installation, outer wall cleaning, and is erected on a building or structure, drives a suspension platform by using a lifting mechanism, and runs on a building or structure facade by a steel wire rope, is also an operation platform for an operator.

[0003] The existing basket does not contact between the suspension platform and the building wall and lacks mutual limiting structure during use, so that the suspension platform is easy to shake during the construction of the staff, which not only affects the construction operation, but also has a safety hazard, and based on this, the suspension protection device for building construction is provided. UTILITY MODEL CONTENTS

[0004] The utility model aims at: in order to solve the problem in the above -mentioned background, provide a suspension protection device for building construction.

[0005] In order to achieve the above object, the utility model provides the following technical scheme: a suspension protection device for building construction, including the support reinforcement assembly for supporting and limiting between the basket main part and building wall surface, the basket main part includes suspension platform, wall protection fence, bottom limiting rod;

[0006] The wall protection fence and the bottom limiting rod are fixed to one side of the suspension platform close to the wall surface, and the wall protection fence and the bottom limiting rod are respectively located on the upper and lower ends of the bottom plate of the suspension platform.

[0007] The support reinforcement assembly includes a mounting unit, a telescopic drive unit and an adsorption unit.

[0008] The mounting unit is used for realizing the clamping fixation with the wall protection fence and the bottom limiting rod.

[0009] The telescopic drive unit is used for realizing the close or away of the adsorption unit and the building wall surface.

[0010] The adsorption unit is used for adsorbing and fixing with the building wall surface, so as to provide stable supporting force for the basket main part.

[0011] As a further scheme of the utility model: the mounting unit includes a J-shaped connecting seat, a vertical limiting sliding groove, a 7-shaped clamping seat, a T-shaped sliding seat, a locking bolt, an adjusting bolt and a roller.

[0012] The vertical limiting groove is opened at the top of the J-type connecting seat, the 7-shaped snap-fit ​​seat is fixed to one side of the T-type sliding seat, and the 7-shaped snap-fit ​​seat is slidably connected to the vertical limiting groove through the T-type sliding seat. The locking bolt is threaded to the T-type sliding seat and passes through the inner wall side of the T-type sliding seat and fits tightly against the vertical limiting groove, which is used to fix the height position of the 7-shaped snap-fit ​​seat. The bottom of the J-type connecting seat is hung on the outside of the bottom limiting rod and snapped to the top outside of the wall guardrail through the downward movement of the 7-shaped snap-fit ​​seat, which is used to realize the limiting installation of the J-type connecting seat and the main body of the hanging basket.

[0013] The rollers are rotatably connected to the inner bottom of the J-type connector and the inner side of the 7-type snap-fit ​​seat, respectively, and the rollers roll and fit against the lower surface of the bottom limiting rod and the upper surface of the wall guardrail, respectively, to realize the adjustment operation of the horizontal position of the J-type connector.

[0014] The adjusting bolt is threaded onto one side of the 7-shaped locking seat and passes through the 7-shaped locking seat, fitting tightly against the side of the wall-mounted guardrail, in order to fix the horizontal position of the J-type connecting seat.

[0015] As a further embodiment of this utility model: the telescopic drive unit includes a vertical guide rail, a T-shaped lifting seat, a telescopic seat, an upper connecting arm, a lower connecting arm, an electric push rod, and a connecting piece;

[0016] The vertical guide rail and electric push rod are horizontally and parallelly fixedly installed on the side of the J-type connecting seat away from the main body of the suspended platform. The T-type lifting seat is limited and slidably connected to the inner side of the vertical guide rail and protrudes to the outer side of the vertical guide rail. The connecting piece is fixed to the top of the output end of the electric push rod and the top of the part of the T-type lifting seat protruding from the outer side of the vertical guide rail. The electric push rod is used to realize the up and down movement of the T-type lifting seat.

[0017] The telescopic seats are located on the side of the vertical guide rail away from the J-type connecting seats. The telescopic seats are rotatably connected to the bottom side of the T-type lifting seats and the J-type connecting seats through the upper connecting arm and the lower connecting arm, respectively. The downward movement of the T-type lifting seats is used to enable the telescopic seats to move closer to the building wall.

[0018] As a further improvement of this utility model: the adsorption unit includes an electric suction cup;

[0019] Multiple electric suction cups are provided and are installed in a matrix on the side of the telescopic seat away from the vertical guide rail. When the electric suction cups are in contact with the building wall, they operate to adsorb and fix them to the building wall, thereby achieving the limiting and fixing of the main body of the suspended platform to the building wall.

[0020] As a further improvement of this utility model: multiple rollers are evenly arranged horizontally on the inner side of the bottom of the J-type connector and the inner side of the 7-type snap-fit ​​seat. The longitudinal width of the inner side of the bottom of the J-type connector and the longitudinal width of the inner side of the 7-type snap-fit ​​seat match the longitudinal width of the wall guardrail and the bottom limiting rod.

[0021] Compared with the prior art, the beneficial effects of this utility model are:

[0022] By setting up support and reinforcement components, the electric suction cups are brought close to and attached to the building wall, thus providing support and fixation between the main body of the suspended platform and the building wall. This prevents the main body of the suspended platform from swaying, further improving construction safety. In addition, the support and reinforcement components occupy little space when stored, and can be adjusted in horizontal position, making them more flexible and convenient to use. Attached Figure Description

[0023] Fig. 1 This is a schematic diagram of the structure of this utility model;

[0024] Fig. 2 This is a structural cross-sectional view of the connection between the support and reinforcement component of this utility model and the main body of the suspended platform;

[0025] Fig. 3 This is a structural schematic diagram of the support and reinforcement component of this utility model;

[0026] Fig. 4 This is a partial exploded view of the support and reinforcement component of this utility model;

[0027] Fig. 5 This is a structural distribution diagram of the telescopic drive unit of this utility model.

[0028] In the diagram: 1. Suspended platform body; 101. Suspended platform; 102. Wall guardrail; 103. Bottom limit rod; 2. Support and reinforcement components; 201. J-type connecting seat; 202. Vertical limit slide groove; 203. L-shaped snap-fit ​​seat; 204. T-type slide; 205. Locking bolt; 206. Adjusting bolt; 207. Roller; 208. Vertical guide rail; 209. T-type lifting seat; 210. Telescopic seat; 211. Upper connecting arm; 212. Lower connecting arm; 213. Electric suction cup; 214. Electric push rod; 215. Connecting parts. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] Please see Figs. 1-5 In this embodiment of the utility model, a suspended protective device for building construction includes a support and reinforcement component 2 for supporting and limiting the space between the main body 1 of the suspended basket and the building wall. The main body 1 of the suspended basket includes a suspended platform 101, a wall-mounted guardrail 102, and a bottom limiting rod 103.

[0031] The wall-mounted guardrail 102 and the bottom limiting rod 103 are fixed to the side of the suspended platform 101 near the wall, and the wall-mounted guardrail 102 and the bottom limiting rod 103 are respectively located at the upper and lower ends of the bottom plate of the suspended platform 101;

[0032] The support and reinforcement component 2 includes an installation unit, a telescopic drive unit, and an adsorption unit;

[0033] The mounting unit is used to achieve snap-fit ​​fixing with the wall-mounted guardrail 102 and the bottom limiting rod 103;

[0034] The telescopic drive unit is used to move the adsorption unit closer to or further away from the building wall;

[0035] The adsorption unit is used to adhere and fix to the building wall, thereby providing stable support for the main body 1 of the suspended platform;

[0036] The mounting unit includes a J-type connector 201, a vertical limiting slide 202, a 7-type snap-fit ​​connector 203, a T-type slide 204, a locking bolt 205, an adjusting bolt 206, and a roller 207;

[0037] A vertical limiting groove 202 is formed on the top of the J-type connecting seat 201. A 7-shaped snap-fit ​​seat 203 is fixed to one side of the T-type sliding seat 204. The 7-shaped snap-fit ​​seat 203 is connected to the vertical limiting groove 202 through the T-type sliding seat 204. A locking bolt 205 is threaded to the T-type sliding seat 204 and passes through the T-type sliding seat 204 and fits tightly against the inner wall side of the vertical limiting groove 202. This is used to fix the height position of the 7-shaped snap-fit ​​seat 203. The bottom of the J-type connecting seat 201 is hung on the outside of the bottom limiting rod 103 and snapped onto the top outside of the wall guardrail 102 through the downward movement of the 7-shaped snap-fit ​​seat 203. This is used to achieve the limiting installation of the J-type connecting seat 201 and the main body 1 of the suspended basket.

[0038] Rollers 207 are rotatably connected to the inner bottom of the J-type connector 201 and the inner side of the 7-shaped snap-fit ​​seat 203, respectively. Rollers 207 are also rolling and adhering to the lower surface of the bottom limit rod 103 and the upper surface of the wall guardrail 102, respectively, to realize the adjustment operation of the horizontal position of the J-type connector 201.

[0039] The adjusting bolt 206 is threaded onto one side of the 7-shaped snap-fit ​​seat 203 and passes through the 7-shaped snap-fit ​​seat 203, fitting tightly against the side of the wall-mounted guardrail 102, in order to fix the horizontal position of the J-type connector 201.

[0040] The telescopic drive unit includes a vertical guide rail 208, a T-shaped lifting seat 209, a telescopic seat 210, an upper connecting arm 211, a lower connecting arm 212, an electric push rod 214, and a connector 215;

[0041] The vertical guide rail 208 and the electric push rod 214 are horizontally and parallelly fixedly installed on the side of the J-type connecting seat 201 away from the main body 1 of the suspended basket. The T-type lifting seat 209 is limited and slidably connected to the inner side of the vertical guide rail 208 and protrudes to the outer side of the vertical guide rail 208. The connecting piece 215 is fixed to the top of the output end of the electric push rod 214 and the top of the T-type lifting seat 209 protruding from the outer part of the vertical guide rail 208. The electric push rod 214 is used to realize the up and down movement of the T-type lifting seat 209.

[0042] The telescopic seat 210 is located on the side of the vertical guide rail 208 away from the J-type connecting seat 201. The telescopic seat 210 is rotatably connected to the side bottom of the T-type lifting seat 209 and the J-type connecting seat 201 respectively through the upper connecting arm 211 and the lower connecting arm 212. The telescopic seat 210 is brought closer to the building wall by the downward movement of the T-type lifting seat 209.

[0043] The adsorption unit includes an electric suction cup 213;

[0044] Multiple electric suction cups 213 are provided and are installed in a matrix on the side of the telescopic base 210 away from the vertical guide rail 208. When the electric suction cups 213 are in contact with the building wall, they operate to adsorb and fix them to the building wall, thereby achieving the limiting and fixing of the suspended basket body 1 to the building wall.

[0045] In this embodiment, the operation steps of this support and reinforcement component 2 are as follows:

[0046] First, install the support and reinforcement component 2 to the main body 1 of the suspended platform. First, release the locking bolt 205 from fixing the T-shaped slide 204. Then, move the T-shaped slide 204 and the 7-shaped snap-fit ​​seat 203 upward as a whole, so that the height between the bottom of the 7-shaped snap-fit ​​seat 203 and the J-shaped connecting seat 201 is greater than the overall height of the wall guardrail 102 and the bottom limit rod 103.

[0047] Next, hook the bottom of the J-type connector 201 onto the outside of the bottom limiting rod 103, and move the 7-shaped snap-fit ​​seat 203 down to snap onto the top outside of the wall guardrail 102. Its rollers 207 are respectively attached to the lower surface of the bottom limiting rod 103 and the upper surface of the wall guardrail 102. At this time, tighten the locking bolt 205 to fix the height of the 7-shaped snap-fit ​​seat 203. This completes the limiting installation of the support and reinforcement component 2 and the main body of the suspended basket 1.

[0048] During the lowering of the main body 1 of the suspended platform, the electric push rod 214 is in an extended state. At this time, the telescopic seat 210 is close to the vertical guide rail 208, that is, the electric suction cup 213 does not contact the wall, thus ensuring that the main body 1 of the suspended platform is lowered smoothly.

[0049] Once the main body 1 of the suspended platform is lowered to the required height, the electric push rod 214 can be activated to retract. The electric push rod 214 drives the connecting piece 215 and the T-shaped lifting seat 209 to move vertically downward as a whole. With the cooperation of the upper connecting arm 211 and the lower connecting arm 212, the T-shaped lifting seat 209 can push the telescopic seat 210 closer to the building wall when it moves downward. Finally, the electric suction cup 213 contacts the building wall. At this time, the electric suction cup 213 is activated and adheres to and fixes itself to the building wall, thereby providing support and fixation between the main body 1 of the suspended platform and the building wall, preventing the main body 1 of the suspended platform from shaking and further improving construction safety.

[0050] It should also be noted that before starting the electric push rod 214, the horizontal position of the support and reinforcement component 2 can be adjusted according to the condition of the building wall. That is, the support and reinforcement component 2 is moved along the horizontal direction of the wall guardrail 102 so that the support and reinforcement component 2 can be in a better position. After the position of the support and reinforcement component 2 is determined, the adjusting bolt 206 can be tightened to fix the position of the support and reinforcement component 2.

[0051] Please refer to this carefully. Figs. 1-3 Multiple rollers 207 are evenly arranged horizontally on the inner side of the bottom of the J-type connector 201 and the inner side of the 7-type snap-fit ​​connector 203. The longitudinal width of the inner side of the bottom of the J-type connector 201 and the longitudinal width of the inner side of the 7-type snap-fit ​​connector 203 match the longitudinal width of the wall guardrail 102 and the bottom limit rod 103.

[0052] In this embodiment: This structure allows the bottom of the J-type connector 201 to hook with the bottom limiting rod 103 and the 7-type snap-fit ​​connector 203 to snap with the wall guardrail 102, ensuring that the support and reinforcement component 2 as a whole will not become loose.

[0053] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A suspended protection device for use in construction work, characterised in that, Including support and reinforcement assembly (2) for supporting and limiting between hanging basket body (1) and building wall, the hanging basket body (1) includes suspension platform (101), wall guardrail (102), bottom limiting rod (103); The wall guardrail (102) and the bottom limiting rod (103) are fixed to one side of the suspension platform (101) close to the wall surface, and the wall guardrail (102) and the bottom limiting rod (103) are located on the upper and lower ends of the bottom plate of the suspension platform (101) respectively; The support and reinforcement assembly (2) comprises a mounting unit, a telescopic driving unit and an adsorption unit. The mounting unit is used for realizing the clamping and fixing of the wall guardrail (102) and the bottom limiting rod (103). The telescopic driving unit is used for realizing the approach or away of the adsorption unit and the building wall. The adsorption unit is used for adsorbing and fixing with the building wall, so as to provide stable support force for the hanging basket body (1).

2. A suspended protection device for use in construction according to claim 1, characterized in that, The mounting unit comprises a J-shaped connecting seat (201), a vertical limiting sliding groove (202), a 7-shaped clamping seat (203), a T-shaped sliding seat (204), a locking bolt (205), an adjusting bolt (206) and a roller (207). The vertical limiting sliding groove (202) is provided at the top of the J-shaped connecting seat (201), the 7-shaped clamping seat (203) is fixed to one side of the T-shaped sliding seat (204), and the 7-shaped clamping seat (203) is connected with the vertical limiting sliding groove (202) through the limiting sliding of the T-shaped sliding seat (204), the locking bolt (205) is threadedly connected with the T-shaped sliding seat (204) and penetrates the T-shaped sliding seat (204) to tightly fit with the inner wall side of the vertical limiting sliding groove (202), so as to realize the height position fixing of the 7-shaped clamping seat (203), the J-shaped connecting seat (201) is hung on the outside of the bottom limiting rod (103) and is clamped on the outside of the top of the wall guardrail (102) through the downward clamping of the 7-shaped clamping seat (203), so as to realize the limiting installation of the J-shaped connecting seat (201) and the hanging basket body (1). The roller (207) is rotatably connected to the bottom inner side of the J-shaped connecting seat (201) and the inner side of the 7-shaped clamping seat (203) respectively, and the roller (207) is in rolling fit with the lower surface of the bottom limiting rod (103) and the upper surface of the wall guardrail (102) respectively, so as to realize the adjusting operation of the horizontal position of the J-shaped connecting seat (201). The adjusting bolt (206) is threadedly connected with one side of the 7-shaped clamping seat (203) and penetrates the 7-shaped clamping seat (203) to tightly fit with the side of the wall guardrail (102), so as to realize the horizontal position fixing of the J-shaped connecting seat (201).

3. A suspended protection device for use in building construction according to claim 2, characterised in that The telescopic driving unit comprises a vertical guide rail (208), a T-shaped lifting seat (209), a telescopic seat (210), an upper connecting arm (211), a lower connecting arm (212), an electric push rod (214) and a connecting piece (215). The vertical guide rail (208) and the electric push rod (214) are fixedly installed in parallel transversely on the side of the J-shaped connecting base (201) away from the hanging basket body (1), the T-shaped lifting base (209) is limitingly and slidably connected to the inner side of the vertical guide rail (208) and protrudes to the outer side of the vertical guide rail (208), the connecting piece (215) is fixed to the top of the output end of the electric push rod (214) and the top of the part of the T-shaped lifting base (209) protruding to the outer side of the vertical guide rail (208), and the electric push rod (214) is used for realizing the up-down movement of the T-shaped lifting base (209) by running. The telescopic base (210) is arranged on the side of the vertical guide rail (208) away from the J-shaped connecting base (201), the telescopic base (210) is rotatably connected to the side surface bottom end of the T-shaped lifting base (209) and the J-shaped connecting base (201) through the upper connecting arm (211) and the lower connecting arm (212), and the telescopic base (210) is used for realizing the close operation with the building wall by the downward movement of the T-shaped lifting base (209).

4. A suspended protection device for use in building construction according to claim 3, characterized in that The adsorption unit comprises an electric suction cup (213). The electric suction cup (213) is arranged in plurality, the plurality of electric suction cups (213) are arranged in matrix on the side of the telescopic base (210) away from the vertical guide rail (208), the electric suction cup (213) is adsorbed and fixed to the building wall when being attached to the building wall, and the hanging basket body (1) is used for realizing the limiting and fixing with the building wall.

5. A suspended protection device for use in construction according to claim 2, characterized in that, The inner side of the bottom of the J-shaped connecting base (201) and the inner side of the 7-shaped clamping base (203) are uniformly provided with a plurality of rollers (207) along the horizontal transverse direction, and the longitudinal width of the inner side of the bottom of the J-shaped connecting base (201) and the longitudinal width of the inner side of the 7-shaped clamping base (203) are matched with the longitudinal width of the wall-protection fence (102) and the bottom limiting rod (103).