Multifunctional construction hanging basket and construction method

By setting up a double adsorption module and a driving component on the construction hanging basket for alternating lifting and lowering, the problem of the hanging basket shaking during the lifting process is solved, the stability of the hanging basket and the lifting efficiency are improved, and the construction scope is expanded.

CN120844784APending Publication Date: 2025-10-28CHINA TIESIJU CIVIL ENGINEERING GROUP CO LTD +1
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Patent Information

Application Number
CN202511337673.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2025-10-28

AI Technical Summary

Technical Problem

The existing construction scaffolds sway and are difficult to stabilize during the lifting and lowering process because the suction cups separate from the wall, which affects construction efficiency.

Method used

The design of alternating lifting of double adsorption modules and driving components ensures that there are always two sets of adsorption parts fixed to the wall or curtain wall during the lifting process. The position of the adsorption plates is alternately adjusted by the driving components to maintain the stability of the hanging basket and the lifting efficiency.

Benefits of technology

It effectively avoids the shaking of the hanging basket during the lifting process, improves construction efficiency, expands the construction scope, and enhances the stability and lifting efficiency of the hanging basket.

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Abstract

The invention discloses a multifunctional construction hanging basket and a construction method, and relates to the technical field of building construction.The construction hanging basket comprises a hanging basket body, the hanging basket body is arranged on one side of a lifting frame, and at least two sets of lifting ropes are symmetrically arranged on the lifting frame; a first adsorption module and a second adsorption module are arranged on the two sides of the lifting frame correspondingly. The first adsorption module and the second adsorption module each comprise a positioning frame, the two positioning frames are symmetrically fixed to the two ends of the lifting frame, and a first adsorption part and a second adsorption part are arranged on the sides, away from the hanging basket body, of the positioning frames in a sliding mode; the positioning frame is further provided with a driving part, and the driving part is used for driving the first adsorption part and the second adsorption part to alternately ascend and descend in the vertical direction; the phenomenon that the hanging basket body shakes in the lifting process can be effectively avoided, compared with the technical scheme of the prior art, the lifting efficiency of the hanging basket body is higher, and the construction efficiency of the hanging basket is effectively improved.
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Description

Technical Field

[0001] This invention relates to the field of building construction technology, and in particular to a multifunctional construction scaffold and construction method. Background Technology

[0002] A construction scaffold is a piece of equipment used in building construction or maintenance operations. It is typically suspended outside a building, providing workers with a safe and stable working platform. It allows workers to perform various tasks at height without the need for scaffolding or other temporary support structures. It can be used for a variety of tasks, such as painting exterior walls at height, installing glass curtain walls, and performing equipment maintenance.

[0003] When construction workers are working inside the suspended platform, the platform's stability decreases when it is at a high position due to the long hoisting ropes. This is especially true during construction, when storms can cause the ropes to sway, leading to the platform's swaying. When the ropes lift the platform, the swaying becomes even more pronounced.

[0004] In the prior art, in order to improve the stability of construction scaffolds, patent documents such as CN21326883U and CN221143502U disclose technical solutions for adsorption and fixation by setting suction cups on the scaffolds. However, in actual application, as construction progresses, the suspended platform needs to be adjusted in real time for raising and lowering. During the raising and lowering process, the suction cup needs to be separated from the wall or curtain wall. Therefore, during the separation and raising process, the suspended platform will still shake and it is difficult to maintain stability. Summary of the Invention

[0005] This invention provides a multifunctional construction suspended platform and construction method, which can solve the following problems existing in the prior art: In existing technologies, as construction progresses, the suspended platform needs to be adjusted in real time for raising and lowering. During the raising and lowering process, the suction cups need to be separated from the wall or curtain wall. Therefore, the suspended platform will still shake during the separation and raising process.

[0006] A multifunctional construction scaffold includes a scaffold body, which is arranged on one side of a lifting frame, and at least two sets of lifting cables are symmetrically arranged on the lifting frame. The lifting frame is provided with a first adsorption module and a second adsorption module on both sides respectively. The first adsorption module and the second adsorption module each include a positioning frame. The two sets of positioning frames are symmetrically fixed at both ends of the lifting frame. The first adsorption part and the second adsorption part are slidably arranged on the side of the positioning frame away from the basket body. The positioning frame is also equipped with a driving unit, which is used to drive the first adsorption unit and the second adsorption unit to alternately rise and fall in the vertical direction.

[0007] Preferably, the positioning frame has a first T-shaped groove on the side away from the basket body, and a first T-shaped seat is slidably embedded in the first T-shaped groove. The first adsorption part and the second adsorption part are respectively staggered and arranged on both sides of the first T-shaped seat.

[0008] Preferably, a second T-shaped groove is provided on both sides of the first T-shaped seat. The first adsorption part includes a first adsorption plate arranged on one side of the first T-shaped seat, and the second adsorption part includes a second adsorption plate arranged on the other side of the first T-shaped seat. The first adsorption plate and the second adsorption plate are arranged in parallel and staggered. A second T-shaped seat that is slidably connected to the second T-shaped groove is fixedly arranged on both the first adsorption plate and the second adsorption plate. In this configuration, a positioning plate is fixedly arranged at the ends of the first and second adsorption plates that are far apart from each other. A suction plate is fixedly arranged on the side of the positioning plate that is far away from the basket body. Several sets of suction cups are fixedly arranged on the side of the suction plate that is far away from the positioning frame. The suction cups are connected to the negative pressure cavity opened in the suction plate, and the negative pressure cavity is connected to the negative pressure module.

[0009] Preferably, the negative pressure module includes a first negative pressure pump and a second negative pressure pump that are fixedly arranged on the upper and lower sides of the lifting frame, respectively. The first negative pressure pump and the second negative pressure pump are connected to the negative pressure chambers of the suction plates on both sides through the main air pipe and the branch air pipe.

[0010] Preferably, an adjusting electric cylinder is fixedly installed on the side of the positioning plate facing the basket body, and the drive end of the adjusting electric cylinder is fixed to the suction plate.

[0011] Preferably, the driving unit includes a first gear rotatably arranged on the first T-shaped seat, the first gear being arranged on the side of the first T-shaped seat away from the positioning frame, and a first rack that meshes synchronously with the first gear being fixedly arranged on the side of the first adsorption plate and the second adsorption plate close to each other. The positioning frame has a guide groove on the side away from the first gear, and a limit plate is slidably provided on the side of the positioning frame closer to the basket body. A first motor is fixedly arranged on the limit plate, and the drive end of the first motor passes through the guide groove and the first T-shaped seat and is fixed to the first gear.

[0012] Preferably, at least one set of guide rods is fixedly arranged on the positioning frame, and guide seats that are fixed to the limiting plate are slidably sleeved on the guide rods.

[0013] Preferably, a support plate is fixedly arranged on the side of the suspended basket body facing the lifting frame, and a second rack is fixedly arranged on the lifting frame; The support plate is fixedly equipped with a mounting frame, and a second motor is fixedly equipped on both sides of the mounting frame. The drive end of the second motor is fixedly equipped with a second gear that meshes with the second rack.

[0014] Preferably, a fixing frame is also provided on one side of the mounting frame, and the drive ends of the second motors on both sides are rotatably connected to the fixing frame respectively; The lifting frame is also fixedly equipped with a guide shaft, and at least two sets of movable seats fixed to the fixed frame are slidably sleeved on the guide shaft.

[0015] A construction method for a multi-functional construction scaffold, applied to the aforementioned multi-functional construction scaffold, includes the following steps: Install the suspended platform and lifting frame on one side of the wall or curtain wall to be constructed; When construction workers are working, they can enter the guardrail. After the safety measures are prepared, the suspended platform is raised along the wall or curtain wall using the lifting cable. During the ascent of the lifting frame, the positioning frame can be simultaneously driven to slide upward a certain distance. After sliding to the preset position, the first adsorption part will detach from the wall; The driving unit drives the first adsorption unit to rise a preset distance, so that the first adsorption unit is adsorbed and fixed to the wall again; The lifting cable pulls the lifting frame up a certain distance, and the above actions are repeated to lift the second suction unit to the preset position, and so on.

[0016] This invention provides a multifunctional construction suspended platform and construction method, which has the following beneficial effects: 1) In the initial state, both the first and second adsorption parts of this invention are in a fixed adsorption state with the wall or curtain wall. When the lifting cable pulls the lifting frame upward, since both the first and second adsorption parts are in a sliding state with the positioning frame, the positioning frame can be synchronously driven to slide upward a certain distance during the upward movement of the lifting frame. After sliding to the preset position, this embodiment can detach the first adsorption part from the wall. At the same time, the driving part drives the first adsorption part to rise a preset distance. At this time, the first adsorption part is re-adsorbed and fixed to the wall, and then the lifting cable pulls the lifting frame upward a certain distance again. The above-mentioned actions are repeated to lift the second adsorption part to the preset position. This process is repeated to achieve the effect of lifting the lifting frame and the suspended basket body being raised by the lifting cable. During the entire lifting process, the present invention can drive the first adsorption part and the second adsorption part to rise alternately through the drive part and adsorb alternately with the wall or curtain wall. This ensures that during the lifting process, there are always two sets of adsorption parts at both ends of the lifting frame that are in an adsorbed and fixed state with the wall or curtain wall. This can effectively avoid the phenomenon of shaking during the lifting of the suspended basket body. Moreover, compared with the technical solutions of the prior art, the lifting efficiency of the suspended basket body in this embodiment is higher, which effectively improves the construction efficiency of the suspended basket. 2) The present invention drives the second gear to roll along the second rack via the second motor, and then drives the suspended basket body to move along the length of the lifting frame synchronously via the mounting frame and the support plate, so as to adjust the horizontal position of the suspended basket body and thus expand the construction range of the construction personnel on the wall. Attached Figure Description

[0017] Figure 1 A structural schematic diagram of a multifunctional construction suspended platform provided by the present invention. Figure 1 ; Figure 2 A structural schematic diagram of a multifunctional construction suspended platform provided by the present invention. Figure 2 ; Figure 3 A top view of a multifunctional construction suspended platform provided by the present invention; Figure 4 A side view of a multifunctional construction scaffold provided by the present invention; Figure 5 This is a front view structural diagram of a multifunctional construction suspended platform provided by the present invention; Figure 6 A schematic diagram of the drive unit in a multifunctional construction scaffold provided by the present invention; Figure 7 This is a schematic diagram of the alternating movement of the adsorption section in a multifunctional construction basket provided by the present invention; Figure 8 For the present invention Figure 1 A schematic diagram of the enlarged portion at point A in the middle.

[0018] Explanation of reference numerals in the attached figures: 1. Suspended basket body; 2. Lifting frame; 3. Lifting cable; 4. First negative pressure pump; 5. First motor; 6. First adsorption module; 101. Support plate; 102. Mounting frame; 103. Second motor; 104. Fixing frame; 105. Second gear; 106. Movable seat; 107. Guide shaft; 108. Second rack; 201. Positioning frame; 202. Guide groove; 203. Guide rod; 204. First T-shaped slide; 205. First T-shaped seat; 206. First gear; 207. First adsorption plate; 208. Second adsorption plate; 209. Positioning plate; 210. First rack; 301. Tensioning cable; 401. Main air pipe; 402. Second negative pressure pump; 403. Branch pipe; 501. Suction plate; 502. Suction cup; 503. Second T-shaped slide; 504. Second T-shaped seat; 505. Limiting plate; 506. Guide seat; 507. Adjusting electric cylinder; 601. Second adsorption module; 602. First adsorption part; 603. Second adsorption part. Detailed Implementation

[0019] The specific embodiments of the present invention will be described in detail below, but it should be understood that the scope of protection of the present invention is not limited to the specific embodiments.

[0020] Example 1

[0021] like Figures 1 to 4 As shown in the figure, an embodiment of the present invention provides a multifunctional construction scaffold, including a scaffold body 1, which is arranged on one side of a lifting frame 2. At least two sets of lifting cables 3 are symmetrically arranged on the lifting frame 2 for pulling the scaffold body 1 up and down. Specifically, the scaffold body 1 in this embodiment includes a base, and a protective railing is provided around the base. When construction workers are working, they can enter the protective railing. After the safety measures are prepared, the scaffold body 1 can be raised and lowered along the wall or curtain wall to a preset position by the lifting cables 3.

[0022] It should also be noted that the technical solution of driving the lifting frame 2 to rise and fall by the lifting cable 3 in this embodiment is existing technology, and its specific structure and principle will not be described in detail in this embodiment.

[0023] In this embodiment, a first adsorption module 6 and a second adsorption module 601 are respectively arranged on both sides of the lifting frame 2. It should be noted that during the process of the lifting cable 3 pulling the lifting frame 2 to rise and fall, it can be adsorbed and fixed to the wall or curtain wall through the first adsorption module 6 and the second adsorption module 601 on both sides of the lifting frame 2, so that the lifting frame 2 can maintain high stability during the lifting process, so as to avoid the phenomenon of shaking between the lifting frame 2 and the suspended basket body 1 during the lifting process. For details, please refer to Figures 1-3 The first adsorption module 6 and the second adsorption module 601 each include a positioning frame 201. The two positioning frames 201 are symmetrically fixed at both ends of the lifting frame 2. The first adsorption part 602 and the second adsorption part 603 are slidably arranged on the side of the positioning frame 201 away from the basket body 1. The positioning frame 201 is also provided with a driving part, which is used to drive the first adsorption part 602 and the second adsorption part 603 to rise and fall alternately in the vertical direction. It can be explained that in the initial state of this embodiment, both the first adsorption part 602 and the second adsorption part 603 are in an adsorbed and fixed state with the wall or curtain wall. When the lifting cable 3 pulls the lifting frame 2 upward, since both the first adsorption part 602 and the second adsorption part 603 are in a sliding state with the positioning frame 201, the positioning frame 201 can be driven to slide upward a certain distance simultaneously during the upward movement of the lifting frame 2. After sliding to the preset position, this embodiment can detach the first adsorption part 602 from the wall. At the same time, the first adsorption part 602 is driven to rise a preset distance by the driving part. At this time, the first adsorption part 602 is adsorbed and fixed to the wall again, and then the lifting cable 3 pulls the lifting frame 2 upward a certain distance again. Then, the above-mentioned actions are repeated to lift the second adsorption part 603 to the preset position (see reference). Figure 8 By repeating this process, the lifting cable 3 can pull the lifting frame 2 and the suspended basket body 1 to rise. During the entire rising process, this embodiment can drive the first adsorption part 602 and the second adsorption part 603 to rise alternately through the driving part, and adsorb them alternately with the wall or curtain wall. This ensures that during the rising process, there are always two sets of adsorption parts at both ends of the lifting frame 2 that are in an adsorbed and fixed state with the wall or curtain wall, which can effectively avoid the phenomenon of shaking during the lifting of the suspended basket body 1. Moreover, compared with the technical solutions of the prior art, the lifting efficiency of the suspended basket body 1 of this embodiment is higher, which effectively improves the construction efficiency of the suspended basket.

[0024] Example 2

[0025] Based on Example 1, please refer to Figures 1-2 as well as Figures 5-6 The positioning frame 201 has a first T-shaped groove 204 on the side away from the suspended basket body 1. A first T-shaped seat 205 is slidably embedded in the first T-shaped groove 204. The first adsorption part 602 and the second adsorption part 603 are respectively staggered on both sides of the first T-shaped seat 205. It can be explained that, in this embodiment, when the lifting cable 3 pulls the lifting frame 2 to rise and fall, since the first adsorption part 602 and the second adsorption part 603 are in an adsorption and fixed state with the wall or curtain wall, when the lifting frame 2 drives the positioning frame 201 to rise, the first T-shaped seat 205 slides in the first T-shaped groove 204, which can guide the rise and fall of the positioning frame 201 and the lifting frame 2, so as to avoid the phenomenon of tilting when the lifting frame 2 and the suspended basket body 1 rise and fall.

[0026] In this embodiment, second T-shaped grooves 503 are respectively provided on both sides of the first T-shaped seat 205. The first adsorption part 602 includes a first adsorption plate 207 arranged on one side of the first T-shaped seat 205, and the second adsorption part 603 includes a second adsorption plate 208 arranged on the other side of the first T-shaped seat 205. The first adsorption plate 207 and the second adsorption plate 208 are arranged in parallel and staggered. A second T-shaped seat 504 that is slidably connected to the second T-shaped groove 503 is fixedly arranged on both the first adsorption plate 207 and the second adsorption plate 208. A positioning plate 209 is fixedly arranged on the side of the first adsorption plate 207 and the second adsorption plate 208 that is away from each other. A suction plate 501 has several sets of suction cups 502 fixedly arranged on the side of the suction plate 501 away from the positioning frame 201. The suction cups 502 are connected to the negative pressure cavity opened in the suction plate 501, and the negative pressure cavity is connected to the negative pressure module. It can be noted that when the driving unit of this embodiment drives the first adsorption unit 602 and the second adsorption unit 603 to move, the first adsorption plate 207 of the first adsorption unit 602 and the second adsorption plate 208 of the second adsorption unit 603 can slide along the second T-shaped groove 503 through the second T-shaped seat 504. On the one hand, it can guide the movement of the first adsorption plate 207 and the second adsorption plate 208, and on the other hand, it can improve the stability of the movement of the first adsorption plate 207 and the second adsorption plate 208.

[0027] Please see Figures 1-2 The negative pressure module includes a first negative pressure pump 4 and a second negative pressure pump 402, which are respectively fixedly arranged on the upper and lower sides of the lifting frame 2. The first negative pressure pump 4 and the second negative pressure pump 402 are connected to the negative pressure chambers of the suction plates 501 on both sides through the main air pipe 401 and the branch air pipe 403. It can be explained that when it is necessary to adjust the suction cup 502 to be attached and fixed to the wall or curtain wall, this embodiment can start the first negative pressure pump 4 and the second negative pressure pump 402. The first negative pressure pump 4 and the second negative pressure pump 402 can generate negative pressure in the negative pressure chamber of the suction plate 501 through the main air pipe 401 and the branch air pipe 403, so as to achieve the adsorption and positioning effect of the suction cup 502 to the wall or curtain wall.

[0028] As a further embodiment, when the driving unit drives the first adsorption plate 207 and the second adsorption plate 208 to rise and fall alternately, in order to adjust the suction cup 502 to adhere to or separate from the wall, please refer to [the relevant documentation]. Figures 1-3 as well as Figures 5-6 The positioning plate 209 is fixedly mounted with an adjusting electric cylinder 507 on one side of the suspended basket body 1. The driving end of the adjusting electric cylinder 507 is fixed to the suction plate 501. It can be explained that in this embodiment, the adjusting electric cylinder 507 can drive the suction plate 501 to move closer to or further away from the positioning plate 209, thereby adjusting the relative position between the suction cup 502 and the wall, so that the suction cup 502 can be adsorbed or separated from the wall.

[0029] Please see Figures 1-2 as well as Figures 5-6 as well as Figure 8 The driving unit includes a first gear 206 rotatably mounted on a first T-shaped seat 205. The first gear 206 is mounted on the side of the first T-shaped seat 205 away from the positioning frame 201. A first rack 210 that meshes synchronously with the first gear 206 is fixedly mounted on the side of the first adsorption plate 207 and the second adsorption plate 208 that are close to each other. A guide groove 202 is provided on the side of the positioning frame 201 away from the first gear 206. A limit plate 505 is slidably mounted on the side of the positioning frame 201 that is close to the basket body 1. A first motor 5 is fixedly mounted on the limit plate 505. The driving end of the first motor 5 passes through the guide groove 202 and the first T-shaped seat 205 and is fixed to the first gear 206. It can be noted that when driving the first adsorption plate 207 and the second adsorption plate 208 to rise and fall alternately, in this embodiment, the first gear 206 can be driven to rotate first by the first motor 5. The first gear 206 can synchronously drive the first adsorption plate 207 and the second adsorption plate 208 to move by meshing with the first racks 210 on both sides. It should also be noted that you can refer to Figure 7 Initially, the first T-shaped seat 205 is located within the first T-shaped slide groove 204, near the top of the positioning frame 201. At this time, the suction cups 502 on the first suction plate 207 and the second suction plate 208 are both in a fixed state of adsorption to the wall. When the lifting cable 3 pulls the lifting frame 2 upward, the first T-shaped seat 205 can slide relative to the positioning frame 201 until the first T-shaped seat 205 slides to the position of the first T-shaped slide groove 204 near the bottom of the positioning frame 201. Then, the suction cups 502 of the first suction plate 207 can be adjusted to separate from the wall by adjusting the electric cylinder 507, while the suction cups 502 of the second suction plate 208 remain fixed to the wall. Then, the first electric... The machine 5 drives the first gear 206 to rotate. Based on the meshing action with the first rack 210 on the second adsorption plate 208, the first gear 206 can drive the first T-shaped seat 205 to slide upward along the first T-shaped slide groove 204. During this process, due to the rotation of the first gear 206, the first adsorption plate 207 can be driven to rise synchronously by meshing with the first rack 210 of the first adsorption plate 207. After rising to the preset position, the electric cylinder 507 adjusts the suction cup 502 of the first adsorption plate 207 to be adsorbed and fixed to the wall. Finally, the second adsorption plate 208 can be adjusted to rise by the same method as the first adsorption plate 207, thereby achieving the effect of alternating rise, and so on.

[0030] Please see Figures 1-8In order to improve the stability of the limiting plate 505 moving along the guide groove 202, at least one set of guide rods 203 are fixedly arranged on the positioning frame 201, and guide seats 506 fixed to the limiting plate 505 are slidably sleeved on the guide rods 203; specifically, the limiting plate 505 can synchronously drive the guide seats 506 to slide along the guide rods 203 during the movement, so as to improve the stability of the limiting plate 505 during the lifting process.

[0031] For further details, please refer to Figure 1 In order to expand the construction range of the suspended platform body 1, when the lifting cable 3 pulls the lifting frame 2 up and down, in this embodiment, a support plate 101 is fixedly arranged on the side of the suspended platform body 1 facing the lifting frame 2, and a second rack 108 is fixedly arranged on the lifting frame 2. The support plate 101 is fixedly arranged with an installation frame 102, and a second motor 103 is fixedly arranged on both sides of the installation frame 102. The drive end of the second motor 103 is fixedly arranged with a second gear 105 that meshes with the second rack 108. It can be explained that when the lifting cable 3 pulls the lifting frame 2 and the suspended platform body 1 to a preset position, in this embodiment, the second motor 103 can drive the second gear 105 to roll along the second rack 108, and then the installation frame 102 and the support plate 101 can synchronously drive the suspended platform body 1 to move along the length direction of the lifting frame 2, so as to adjust the horizontal position of the suspended platform body 1 and expand the construction range of the construction personnel on the wall.

[0032] Accordingly, in order to ensure that the mounting frame 102 can move smoothly along the length of the lifting frame 2, in this embodiment, a fixed frame 104 is also provided on one side of the mounting frame 102, and the drive ends of the second motors 103 on both sides are rotatably connected to the fixed frame 104. The lifting frame 2 is also fixedly provided with a guide shaft 107, and at least two sets of movable seats 106 fixed to the fixed frame 104 are slidably sleeved on the guide shaft 107. It can be noted that, in this embodiment, when the mounting frame 102 moves along the length of the lifting frame 2, the movable seats 106 can be synchronously driven to slide along the guide shaft 107 by the fixed frame 104, so as to improve the stability of the movement of each component in the horizontal direction.

[0033] In addition, you can refer to Figures 4-5 The bottom of the lifting frame 2 is also fixedly connected to a tension cable 301, which is connected to the ground unwinding equipment and can cooperate with the lifting cable 3 to further improve the stability of the lifting frame 2.

[0034] A construction method for a multi-functional construction scaffold includes the following steps: Please see Figures 1-3 as well as Figures 5-6 S1. Install the suspended platform body 1 and the lifting frame 2 on one side of the wall or curtain wall to be constructed. S2. When construction workers are working, they can enter the guardrail. After the safety measures are prepared, the suspended basket body 1 is raised along the wall or curtain wall by the lifting cable 3. S3. During the upward movement of the lifting frame 2, the positioning frame 201 can be driven to slide upward a certain distance simultaneously. S4. After sliding to the preset position, the first adsorption part 602 will detach from the wall. S5. Drive the first adsorption part 602 to rise a preset distance through the driving part, and then adsorb and fix the first adsorption part 602 to the wall again. S6. The lifting frame 2 is raised a certain distance by pulling the lifting cable 3, and the above actions are repeated to raise the second suction unit 603 to the preset position (see reference). Figure 8 And so on.

[0035] The above-disclosed embodiments are merely a few specific examples of the present invention. However, the embodiments of the present invention are not limited thereto, and any variations that can be conceived by those skilled in the art should fall within the protection scope of the present invention.

Claims

1. A multifunctional construction scaffold, comprising a scaffold body (1), wherein the scaffold body (1) is arranged on one side of a lifting frame (2), and at least two sets of lifting cables (3) are symmetrically arranged on the lifting frame (2). Its features are, The lifting frame (2) is provided with a first adsorption module (6) and a second adsorption module (601) on both sides respectively. The first adsorption module (6) and the second adsorption module (601) each include a positioning frame (201). The two sets of positioning frames (201) are symmetrically fixed at both ends of the lifting frame (2). The first adsorption part (602) and the second adsorption part (603) are slidably arranged on the side of the positioning frame (201) away from the basket body (1). The positioning frame (201) is also provided with a driving unit, which is used to drive the first adsorption unit (602) and the second adsorption unit (603) to alternately rise and fall in the vertical direction.

2. The multifunctional construction suspended platform as described in claim 1, characterized in that, The positioning frame (201) has a first T-shaped groove (204) on the side away from the basket body (1). A first T-shaped seat (205) is slidably embedded in the first T-shaped groove (204). The first adsorption part (602) and the second adsorption part (603) are respectively staggered and arranged on both sides of the first T-shaped seat (205).

3. A multifunctional construction suspended platform as described in claim 2, characterized in that, The first T-shaped seat (205) has a second T-shaped groove (503) on each side. The first adsorption part (602) includes a first adsorption plate (207) arranged on one side of the first T-shaped seat (205), and the second adsorption part (603) includes a second adsorption plate (208) arranged on the other side of the first T-shaped seat (205). The first adsorption plate (207) and the second adsorption plate (208) are arranged in parallel and staggered. The first adsorption plate (207) and the second adsorption plate (208) are both fixedly provided with a second T-shaped seat (504) that is slidably connected to the second T-shaped groove (503). In this arrangement, a positioning plate (209) is fixedly arranged at the ends of the first adsorption plate (207) and the second adsorption plate (208) that are far apart from each other. A suction plate (501) is fixedly arranged on the side of the positioning plate (209) that is far away from the basket body (1). Several sets of suction cups (502) are fixedly arranged on the side of the suction plate (501) that is far away from the positioning frame (201). The suction cups (502) are connected to the negative pressure cavity opened in the suction plate (501). The negative pressure cavity is connected to the negative pressure module.

4. A multifunctional construction suspended platform as described in claim 3, characterized in that, The negative pressure module includes a first negative pressure pump (4) and a second negative pressure pump (402) respectively fixedly arranged on the upper and lower sides of the lifting frame (2). The first negative pressure pump (4) and the second negative pressure pump (402) are connected to the negative pressure chambers of the suction plates (501) on both sides through the main air pipe (401) and the branch air pipe (403).

5. A multifunctional construction suspended platform as described in claim 3, characterized in that, The positioning plate (209) is fixedly mounted with an adjusting electric cylinder (507) on one side of the basket body (1), and the driving end of the adjusting electric cylinder (507) is fixed to the suction plate (501).

6. A multifunctional construction suspended platform as described in claim 3, characterized in that, The drive unit includes a first gear (206) rotatably arranged on the first T-shaped seat (205). The first gear (206) is arranged on the side of the first T-shaped seat (205) away from the positioning frame (201). The first adsorption plate (207) and the second adsorption plate (208) are both fixedly arranged with a first rack (210) that meshes synchronously with the first gear (206). The positioning frame (201) has a guide groove (202) on the side away from the first gear (206). The positioning frame (201) is slidably provided with a limiting plate (505) on the side of the basket body (1). The limiting plate (505) is fixedly provided with a first motor (5). The driving end of the first motor (5) passes through the guide groove (202) and the first T-shaped seat (205) and is fixed to the first gear (206).

7. A multifunctional construction suspended platform as described in claim 6, characterized in that, At least one set of guide rods (203) are fixedly arranged on the positioning frame (201), and a guide seat (506) fixed to the limiting plate (505) is slidably sleeved on the guide rod (203).

8. A multifunctional construction suspended platform as described in claim 1, characterized in that, A support plate (101) is fixedly arranged on the side of the suspended basket body (1) facing the lifting frame (2), and a second rack (108) is fixedly arranged on the lifting frame (2). The support plate (101) is fixedly provided with a mounting bracket (102), and a second motor (103) is fixedly provided on both sides of the mounting bracket (102). The drive end of the second motor (103) is fixedly provided with a second gear (105) that meshes with the second rack (108).

9. A multifunctional construction suspended platform as described in claim 8, characterized in that, A fixing frame (104) is also provided on one side of the mounting frame (102), and the drive ends of the second motors (103) on both sides are rotatably connected to the fixing frame (104); Among them, the lifting frame (2) is also fixedly arranged with a guide shaft (107), and at least two sets of movable seats (106) fixed to the fixed frame (104) are slidably sleeved on the guide shaft (107).

10. A construction method for a multifunctional construction suspended platform, characterized in that, The method applied to a multifunctional construction scaffold as described in any one of claims 1-9 includes the following steps: Install the suspended platform body (1) and the lifting frame (2) on one side of the wall or curtain wall to be constructed; When construction workers are working, they can enter the guardrail. After the safety measures are prepared, the suspended basket body (1) is raised along the wall or curtain wall by the lifting cable (3). During the lifting process, the positioning frame (201) can be driven to slide upward a certain distance simultaneously; After sliding to the preset position, the first adsorption part (602) will detach from the wall; The driving unit drives the first adsorption unit (602) to rise a preset distance, so that the first adsorption unit (602) is adsorbed and fixed to the wall again; The lifting cable (3) pulls the lifting frame (2) up a certain distance, and repeats the above actions to lift the second adsorption part (603) to the preset position, and so on.

Citation Information

Patent Citations

  • Building construction hanging basket

    CN221143502U