A gap protection structure between a scaffold and a building
By installing a combination structure of protective plates, connecting columns, and elastic drive components between the scaffolding and the building, the problem of collisions during falls from the external scaffolding gaps is solved, thus improving safety and adaptability.
Patent Information
- Application Number
- CN202311643899.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-01
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2043-12-01
AI Technical Summary
In existing technologies, although the fall protection nets in the gap between the external scaffolding and the building can provide support, people who fall into the gap are still prone to injury from collisions.
The structure adopts a combination of protective plate, connecting column, and elastic drive component. The gap is blocked by the protective plate, and the stability and adaptability of the protective plate are improved by the elastic drive component and support chain.
It effectively reduces the occurrence of falls from the gap between scaffolding and buildings, minimizes the possibility of personal injury, and adapts to changes in building width.
Smart Images

Figure CN117403869B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of building support, and in particular to a gap protection structure between scaffolding and a building. Background Technology
[0002] Scaffolding is a working platform erected to ensure the smooth progress of various construction processes. It consists of various supports erected on construction sites to facilitate worker operations and solve vertical and horizontal transportation issues. Scaffolding can be divided into external scaffolding and internal scaffolding according to its location. External scaffolding is scaffolding erected on the exterior walls of a building.
[0003] When erecting external scaffolding, it is usually connected and fixed to the building's exterior wall using wall ties. Because there will be a certain distance between the scaffolding's steps and the building after it is fixed, a fall protection net is installed between the scaffolding and the building during the erection process. The fall protection net is located under the scaffolding's steps. When someone steps into the gap between the scaffolding and the building, the fall protection net provides support and reduces the occurrence of safety accidents.
[0004] However, although fall protection nets can provide support for people who fall, they are still prone to injury from impacts when they fall. Summary of the Invention
[0005] In order to reduce the risk of falls from scaffolding and buildings and minimize the possibility of injury, this application provides a protective structure for the gap between scaffolding and buildings.
[0006] This application provides a protective structure for the gap between scaffolding and a building, employing the following technical solution:
[0007] A protective structure for the gap between scaffolding and a building, including
[0008] Connection parts are installed on the scaffolding;
[0009] Multiple connecting plates are respectively disposed on the connecting portion, and the connecting plates on the same side are parallel to each other, and the connecting plates are formed with connecting holes;
[0010] A protective plate is installed between the scaffolding and the building. There are multiple protective plates, and each protective plate is located between adjacent connecting plates of adjacent connecting parts. The protective plate has a mounting groove.
[0011] The connecting column is slidably connected to the mounting groove;
[0012] An elastic drive element is disposed in the mounting groove. When the connecting post is in contact with the connecting hole, the elastic drive element pushes the connecting post through the connecting hole.
[0013] By adopting the above technical solution, during installation, the protective plate is placed between the scaffold and the building, overlapping the wall ties connecting the scaffold and the building. Simultaneously, after installation, the connecting column is aligned with the connecting hole, and the elastic drive component pushes the connecting column through the connecting hole, thus restricting the position of the protective plate. In use, the protective plate covers the gap between the scaffold and the building, reducing the risk of falls and injuries.
[0014] Optionally, the elastic drive element includes a drive spring;
[0015] The drive spring is installed in the mounting groove, with one end abutting against the connecting post and the other end abutting against the wall of the mounting groove.
[0016] By adopting the above technical solution, the drive spring is elastically released, which can push the connecting column out of the mounting groove.
[0017] Optionally, the connecting column includes a first column and a second column;
[0018] The first column slides on the second column, and the first column and the second column slide on opposite sides of the adjacent protective plates, respectively.
[0019] By adopting the above technical solution, the first column slides on the second column, thereby connecting the two adjacent protective plates and improving the installation stability of the protective plates.
[0020] Optionally, the gap protection structure preferably includes a fixing part and a support chain;
[0021] The fixing parts are multiple and evenly spaced on the scaffold. One end of the support chain is connected to the fixing part, and the other end is connected to the protective plate.
[0022] By adopting the above technical solution, the support chain provides support force to support the protective plate, further improving the support stability of the protective plate.
[0023] Optionally, the outer wall of the connecting column is formed with an axially extending waist-shaped hole, and the protective plate is threaded with a limiting bolt, the limiting bolt protruding into the mounting groove;
[0024] When the limiting bolt is inserted into the oblong hole, the connecting post is located in the mounting groove.
[0025] By adopting the above technical solution, when the column abuts against the wall of the waist-shaped hole, the connecting column is located in the installation groove, which facilitates the installation of the protective plate.
[0026] Optionally, the protective plate has a push block that is adapted to the waist-shaped hole, and the push block slides up and down in the waist-shaped hole;
[0027] The bottom of the limiting bolt is rotatably connected to the pushing block, and the pushing block is inclined with a pushing surface. When the wall of the waist-shaped hole slides on the pushing surface, the connecting column slides into the mounting groove.
[0028] By adopting the above technical solution, the push block is slid into the waist-shaped hole, which facilitates the sliding installation of the connecting column into the groove.
[0029] Optionally, the protective plate includes a first plate body, a second plate body, a support column, a mounting column, a clamping plate, a drive block, a transmission column, a transmission block, a control rope, and a connecting tension spring;
[0030] The first plate is symmetrically arranged, and there are multiple second plates evenly spaced between two first plates;
[0031] The support columns are in two sets and are respectively arranged between the first plates. Each set of support columns has multiple columns and is evenly spaced. The two sets of support columns are staggered. One end of each support column is located on one of the first plates and the other end slides on the other first plate.
[0032] The mounting column is parallel to the support column and its two ends slide relative to the first plate.
[0033] The clamping plate slides within the second plate, the transmission column is disposed on the side of the clamping plate away from the support column, the transmission column has a sliding hole, and the transmission block slides between the second plate and the sliding hole respectively;
[0034] The sliding hole groove wall is inclined to form a driving groove, the driving block is disposed on the side wall of the transmission block, and the driving block slides in the driving groove;
[0035] The connecting spring is disposed in the second plate body, the control rope slides on the first plate body, the mounting column and the second plate body, one end of the control rope is connected to the push block and the other end is connected to the connecting spring, and the transmission block is fixedly connected to the control rope;
[0036] When the push block slides into the waist-shaped hole, the control rope pulls the transmission block to slide out of the sliding hole. At this time, the drive block slides in the drive groove, and the clamping plate moves away from the support column.
[0037] When the push block slides out of the waist-shaped hole, the connecting spring pulls the control rope. At this time, the control rope drives the transmission block to slide into the sliding hole, the drive block slides in the drive groove, and the clamping plate abuts against the support column.
[0038] By adopting the above technical solution, when the block is pushed away from the waist-shaped hole, the clamping plate drives the rubber layer to press against the support column, so that the support column and the second plate are fixed.
[0039] Optionally, the clamping plate has a rubber layer on the side facing the support column.
[0040] By adopting the above technical solution, the friction between the clamping plate and the support column is increased.
[0041] Optionally, a push spring is provided inside the first plate, and the push spring pushes the support column to slide out of the first plate.
[0042] By adopting the above technical solution, the support column is pushed out of the first plate, making it easier for the first plate to abut against the connecting plate.
[0043] In summary, this application includes at least one of the following beneficial effects:
[0044] 1. When in use, the gap between the scaffolding and the building is covered by protective plates, which can reduce the risk of falls from the scaffolding and the building and reduce the possibility of injury.
[0045] 2. When there is a gap between the first plate and the connecting plate, the push spring pushes the support column to slide outward from the first plate, which helps to adjust the length of the protective plate. Attached Figure Description
[0046] Figure 1 This is a schematic diagram of the overall structure of Embodiment 1 of this application;
[0047] Figure 2 yes Figure 1 Enlarged schematic diagram of part A;
[0048] Figure 3 This is a schematic diagram of the internal structure of a protective plate according to an embodiment of this application;
[0049] Figure 4 yes Figure 3 Enlarged schematic diagram of part B;
[0050] Figure 5 This is a schematic diagram of the external structure of the protective plate in Embodiment 2 of this application;
[0051] Figure 6 This is a schematic diagram of the internal structure of the second plate in Embodiment 2 of this application;
[0052] Figure 7 yes Figure 6 Enlarged schematic diagram of part C;
[0053] Figure 8This is a schematic diagram of the internal structure of the protective plate in Embodiment 2 of this application;
[0054] Figure 9 This is a schematic diagram of the internal structure of the first plate in Embodiment 2 of this application;
[0055] Figure 10 This is a schematic diagram of the connection structure between the control rope and the second plate in Embodiment 2 of this application.
[0056] Reference numerals: 1. Connecting part; 11. Connecting plate; 12. Connecting hole; 2. Protective plate; 21. Mounting groove; 22. Drive spring; 23. Slot; 24. Restricting bolt; 25. Pushing block; 26. Pushing surface; 27. Pushing spring; 3. Connecting column; 31. First column; 311. Support groove; 32. Second column; 33. Waist-shaped hole; 4. Fixing part; 41. Support chain; 5. Connecting tension spring; 51. First plate; 52. Second plate; 53. Support column; 54. Mounting column; 55. Clamping plate; 551. Rubber layer; 56. Drive block; 57. Transmission column; 571. Sliding hole; 572. Drive groove; 58. Transmission block; 59. Control rope. Detailed Implementation
[0057] The following is in conjunction with the appendix Figure 1-10 This application will be described in further detail.
[0058] This application discloses a protective structure for the gap between scaffolding and a building.
[0059] Example 1
[0060] See Figure 1 and Figure 2 The gap protection structure includes a connecting part 1 and connecting plates 11. The connecting part 1 is a clamp structure and can be detachably fixed to the vertical steel pipe of the scaffold near the exterior wall of the building. There are multiple sets of connecting plates 11, with one set of connecting plates 11 corresponding to one connecting part 1. Each set of connecting plates 11 has two plates and is symmetrically fixed on the side of the connecting part 1 facing the building. The two connecting plates 11 in the same set have mutually aligned connecting holes 12, and the central axis of the connecting holes 12 extends horizontally.
[0061] The gap protection structure also includes protective plates 2, which are rectangular plates. There are multiple protective plates 2, each positioned between two adjacent connecting plates 11 of two adjacent connecting parts 1. Adjacent protective plates 2 abut against each other. The length of the protective plates 2 extends horizontally and is parallel to the exterior wall of the building. The scaffolding is connected to the building via steel pipe wall ties, and the bottom of the protective plates 2 abuts against the steel pipe wall ties, providing support for the protective plates 2.
[0062] See Figure 2 and Figure 3The protective plate 2 has grooves 23 formed on both opposite sides. The connecting part 1 is located in the groove 23 and abuts against the groove wall of the groove 23, which can restrict the protective plate 2 from sliding along the length direction.
[0063] See Figure 2 and Figure 4 The protective plate 2 has a mounting groove 21 that corresponds to and is connected to the slot 23. The opening of the mounting groove 21 is located on the parallel side wall of the two slots 23, and the mounting groove 21 extends along the length of the protective plate 2.
[0064] The gap protection structure also includes connecting posts 3 and elastic driving components. There are multiple sets of connecting posts 3, with one set corresponding to one protective plate 2. Each set of connecting posts 3 has two posts, each corresponding to a mounting groove 21. The connecting posts 3 slide within the mounting groove 21. The elastic driving component includes a driving spring 22, which corresponds to one connecting post 3 and is installed within the mounting groove 21. One end of the driving spring 22 abuts against the connecting post 3, and the other end abuts against the side wall of the mounting groove 21 away from the groove opening. The diameter of the connecting post 3 matches the diameter of the connecting hole 12. When the protective plate 2 is installed, the connecting post 3 is first slid into the mounting groove 21. When the protective plate 2 is installed and the connecting post 3 is aligned with the connecting hole 12, the driving spring 22 drives the connecting post 3 to slide out of the mounting groove 21, allowing the connecting post 3 to pass through the connecting hole 12. At this time, the connecting post 3 restricts the position of the protective plate 2, reducing the possibility of the protective plate 2 sliding along its width.
[0065] Each set of two connecting columns 3 consists of a first column 31 and a second column 32. When two adjacent protective plates 2 are installed, the first column 31 of one protective plate 2 is adjacent to the second column 32 of the other protective plate 2. The diameter of the second column 32 is larger than the diameter of the first column 31. The first column 31 and the second column 32 are coaxially arranged, and the first column 31 slides on the second column 32, so that the two protective plates 2 are linked, improving the installation stability of the protective plates 2.
[0066] The outer periphery of the connecting column 3 has axially extending oblong holes 33. The protective plate 2 is threadedly connected with limiting bolts 24, which correspond one-to-one with the mounting grooves 21 and can protrude into the mounting grooves 21. Before installing the protective plate 2, the connecting column 3 is pushed into the mounting groove 21, at which point the oblong holes 33 are aligned with the limiting bolts 24. Then, the limiting bolts 24 are rotated until they are inserted into the oblong holes 33. Then, the connecting column 3 is released, and the drive spring 22 pushes the connecting column 3 to slide out of the mounting groove 21, so that the limiting bolts 24 abut against the wall of the oblong holes 33, thus restricting the position of the connecting column 3 and facilitating the installation of the protective plate 2. When the protective plate 2 is installed and the connecting column 3 is aligned with the connecting hole 12, the limiting bolts 24 are flipped, and then the drive spring 22 pushes the connecting column 3 to slide out of the mounting groove 21 and through the connecting hole 12.
[0067] See Figure 1 To further enhance the stability of the protective plate 2, the gap protection structure includes a fixing part 4 and a support chain 41. The fixing part 4 adopts a clamp structure, and there are multiple fixing parts 4 evenly spaced and detachably fixed to the scaffolding. The fixing part 4 is located above the connecting part 1, and two fixing plates are symmetrically fixed on the side of the fixing part 4 facing the building. The support chains 41 are in pairs, and each pair of support chains 41 corresponds to one protective plate 2. One end of each support chain 41 is connected to the fixing plate, and the other end is fixed to the top of the protective plate 2, thus supporting the protective plate 2.
[0068] The implementation principle of the gap protection structure between scaffolding and building in Embodiment 1 of this application is as follows:
[0069] The protective plate 2 is installed between the scaffolding and the building. When in use, the protective plate 2 covers the gap between the scaffolding and the building, reducing the possibility of falling accidents, while also providing support to reduce the possibility of injury.
[0070] Example 2
[0071] See Figure 5 and Figure 6 When the width of the building changes, the width of the scaffolding changes accordingly. At this time, the spacing between the vertical steel pipes used to support the scaffolding also changes accordingly. When the spacing between two vertical steel pipes is greater than the length of the protective plate 2, the protective plate 2 is prone to swaying along the length direction of the protective plate 2 after installation. In some cases, when there is a large gap between the protective plate 2 and the connecting plate 11, the protective plate 2 and the connecting plate 11 cannot be connected.
[0072] See Figure 5 and Figure 7 Therefore, the difference between Embodiment 2 and Embodiment 1 is that the protective plate 2 includes a first plate body 51, a second plate body 52, a support column 53, a mounting column 54, a clamping plate 55, a drive block 56, a transmission column 57, a transmission block 58, and a control rope 59.
[0073] The first plate 51 and the second plate 52 are both cuboid structures. There are two first plates 51 arranged symmetrically, and there are multiple second plates 52 in an even number. The second plates 52 are evenly spaced between the two first plates 51 along the length of the protective plate 2.
[0074] There are two sets of support columns 53, each set positioned between two opposing first plates 51. Each set contains multiple support columns 53, evenly spaced along the length of the first plate 51, and the two sets of support columns 53 are staggered. One end of each set of support columns 53 is fixed to the side of the corresponding first plate 51 facing the other first plate 51, and the other end slides along the width of the first plate 51 onto the other first plate 51. The second plate 52 slides on the support columns 53, and the upper and lower ends of the second plate 52 are respectively on the same plane as the upper and lower ends of the first plate 51.
[0075] See Figure 8 and Figure 9 The first plate 51 has a support groove 311 for the support column 53 to slide in. The first plate 51 is provided with a push spring 27, which corresponds one-to-one with the support column 53. One end of the push spring 27 abuts against the support column 53, and the other end abuts against the side wall of the support groove 311 away from the groove opening. During installation, the push spring 27 is released elastically, pushing the support column 53 to slide out of the support groove 311, so that the two opposing first plates 51 move away from each other. At this time, the two first plates 51 can abut against the adjacent connecting plates 11 of the adjacent connecting parts 1, so that the width of the protective plate 2 can be adjusted.
[0076] In order to prevent the support column 53 from detaching from the first plate 51, a limiting block is fixedly connected to the side wall of the support column 53, and a limiting groove is formed in the groove wall of the support groove 311, and the limiting block slides in the limiting groove.
[0077] The push block 25 corresponds one-to-one with the first plate 51 and slides up and down on the first plate 51. The bottom of the limiting bolt 24 is rotatably connected to the top of the push block 25. The push block 25 can slide into the oblong hole 33, and the bottom of the push block 25 is inclined to form a push surface 26. When the limiting bolt 24 slides into the oblong hole 33, the push block 25 slides downward. At this time, the side wall of the oblong hole 33 away from the opening of the mounting groove 21 slides on the push surface 26, and the connecting post 3 slides into the mounting groove 21, reducing the difficulty of the connecting post 3 sliding into the mounting groove 21.
[0078] See Figure 7 and Figure 8 The second plate 52 has a receiving groove, through which the support column 53 passes. There are multiple sets of clamping plates 55, each set corresponding to one second plate 52, and each set of clamping plates 55 has multiple plates that slide within the receiving groove. The clamping plate 55 has an arc-shaped plate structure, with the arc-shaped concave side of the clamping plate 55 facing the support column 53, and a rubber layer 551 is fixedly connected to the arc-shaped concave side of the clamping plate 55.
[0079] A transmission groove is formed on the side wall of the receiving groove away from the support column 53. The transmission column 57 corresponds one-to-one with the clamping plate 55, and is fixed to the arc-shaped convex side of the clamping plate 55. The transmission column 57 slides within the transmission groove. The transmission column 57 has a sliding hole 571 extending along the length of the second plate 52, and the width of the sliding hole 571 extends along the thickness of the second plate 52. A sliding groove extends along the length of the second plate 52, communicating with the transmission groove, and is aligned and connected with the sliding hole 571. The transmission block 58 slides in the sliding groove and can slide into the sliding hole 571. When the transmission column 57 approaches or moves away from the support column 53, the transmission block 58 slides in the sliding hole 571. The drive block 56 is fixed to the side wall of the transmission block 58. A drive groove 572 is formed obliquely on the wall of the sliding hole 571, and the drive block 56 slides within the drive groove 572.
[0080] See Figure 8 and Figure 10 The mounting post 54 is positioned between the two first plates 51, parallel to the support post 53, with both ends sliding on the first plates 51 respectively. The protective plate 2 also includes a connecting spring 5, which corresponds one-to-one with the second plate 52 and is installed within it. A control rope 59 corresponds one-to-one with the second plate 52, sliding through the second plate 52, the mounting post 54, and the first plates 51. One end of the control rope 59 is fixed to one end of the connecting spring 5, the end of the connecting spring 5 away from the control rope 59 is fixed to the second plate 52, and the other end of the control rope 59 is fixed to the push block 25 after passing through the second plate 52, the mounting post 54, and the first plates 51. Figure 9 (The control rope 59 in one half of the second plate 52 adjacent to one of the first plate 51 is fixed to the push block 25 in the corresponding first plate 51, and the control rope 59 in one half of the second plate 52 adjacent to the other first plate 51 is fixed to the push block 25 in the corresponding other first plate 51.
[0081] See Figure 7 and Figure 9 The control rope 59 is fixedly connected to the transmission block 58. When the push block 25 slides into the waist-shaped hole 33, the control rope 59 pulls the transmission block 58 to slide out of the sliding hole 571. At this time, the drive block 56 slides in the drive groove 572, and the transmission column 57 moves closer to the support column 53, so that the push clamping plate 55 moves away from the support column 53.
[0082] When the push block 25 slides out of the waist-shaped hole 33, the connecting spring 5 (the connecting spring 5 is in Figure 10(When the winning bid is made) Pull the control rope 59. At this time, the control rope 59 drives the transmission block 58 to slide into the sliding hole 571, and the drive block 56 slides in the drive groove 572, so that the clamping plate 55 abuts against the rubber layer 551 and abuts against the support column 53. At this time, the support column 53 is fixedly connected to the second plate 52, reducing the possibility of the second plate 52 sliding during use.
[0083] The implementation principle of the gap protection structure between scaffolding and building in Embodiment 2 of this application is as follows:
[0084] Before installation, rotate the limiting bolt 24 to allow the pushing block 25 to slide into the oblong hole 33, at which point the clamping plate 55 moves away from the support column 53. During installation of the protective plate 2, the pushing spring 27 pushes the support column 53, causing the two opposing first plates 51 to move away from each other. The length of the protective plate 2 is then adjusted according to the distance between the adjacent connecting plates 11 of the two adjacent connecting parts 1. Then, reverse the limiting bolt 24 to allow the pushing block 25 to move away from the oblong hole 33. At this point, the connecting column 3 passes through the connecting hole 12, and the clamping plate 55 causes the rubber layer 551 to press against the support column 53, thus fixing the second plate 52 to the support column 53.
[0085] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A scaffold to building gap protection arrangement characterised in that: The utility model provides a scaffold protection device, including The connecting part (1) is arranged to the scaffold; The connecting plate (11) is arranged to the connecting part (1), and the connecting plate (11) is formed with connecting hole (12); The protection board (2) is arranged between the scaffold and the building, and the protection board (2) is formed with installation slot (21); The connecting column (3) is slidably connected to the installation slot (21); The elastic driving part is arranged in the installation slot (21), and when the connecting column (3) is connected with the connecting hole (12), the elastic driving part pushes the connecting column (3) to pass through the connecting hole (12); The connecting column (3) is formed with the waist hole (33) extending along the axial direction, and the protection board (2) is threadedly connected with the limiting bolt (24), and the limiting bolt (24) protrudes into the installation slot (21); When the limiting bolt (24) is clamped into the waist hole (33), the connecting column (3) is located in the installation slot (21); The protection board (2) is slidably provided with the push block (25) matched with the waist hole (33) on the upper and lower sides, and the push block (25) is slidably arranged in the waist hole (33); The bottom of the limiting bolt (24) is rotatably connected to the push block (25), the push block (25) is obliquely provided with a push surface (26), and when the hole wall of the waist hole (33) slides on the push surface (26), the connecting column (3) slides into the installation slot (21); The protection board (2) comprises a first plate body (51), a second plate body (52), a support column (53), an installation column (54), a clamping plate (55), a driving block (56), a transmission column (57), a transmission block (58), a control rope (59) and a connecting tension spring (5); The first plate body (51) is symmetrically arranged, the second plate body (52) is arranged between the two first plate bodies (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first 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plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is uniformly spaced, the support column (53) is arranged between the first plate body (51) and is The sliding hole (571) is provided with a driving groove (572) on the inclined wall, and the driving block (56) is arranged on the side wall of the transmission block (58) and slides in the driving groove (572); The connecting tension spring (5) is arranged in the second plate body (52), the control rope (59) slides in the first plate body (51), the mounting column (54) and the second plate body (52), one end of the control rope (59) is connected to the pushing block (25), the other end is connected to the connecting tension spring (5), and the transmission block (58) and the control rope (59) are connected and fixed; When the pushing block (25) slides into the waist-shaped hole (33), the control rope (59) pulls the transmission block (58) to slide out of the sliding hole (571), at this time, the driving block (56) slides in the driving groove (572), and the clamping plate (55) is away from the supporting column (53); When the pushing block (25) slides out of the waist-shaped hole (33), the connecting tension spring (5) pulls the control rope (59), at this time, the control rope (59) drives the transmission block (58) to slide into the sliding hole (571), the driving block (56) slides in the driving groove (572), and the clamping plate (55) abuts against the supporting column (53).
2. A construction gap protection arrangement of scaffolding and a building according to claim 1, characterised in that: The elastic driving member comprises a driving spring (22); The driving spring (22) is installed in the mounting groove (21), one end of the driving spring (22) abuts against the connecting column (3), and the other end abuts against the groove wall of the mounting groove (21).
3. A construction gap protection arrangement of scaffolding and a building according to claim 1, characterised in that: The connecting column (3) comprises a first column body (31) and a second column body (32); The first column body (31) is slidably connected to the second column body (32), and the first column body (31) and the second column body (32) are respectively slidably connected to opposite sides of the adjacent protective plate (2).
4. A construction gap protection arrangement of scaffolding and a building according to claim 1, characterized in that: The gap protection structure further comprises a fixing part (4) and a supporting chain (41); The fixing part (4) is provided with a plurality of fixing parts (4) and is uniformly arranged on the scaffold, one end of the supporting chain (41) is connected to the fixing part (4), and the other end is connected to the protective plate (2).
5. A construction gap protection structure between a scaffold and a building according to claim 1, characterized in that: The clamping plate (55) is provided with a rubber layer (551) on one side of the supporting column (53).
6. A construction gap protection arrangement of scaffolding and a building according to claim 1, characterised in that: The first plate body (51) is provided with a pushing spring (27), and the pushing spring (27) pushes the supporting column (53) to slide out of the first plate body (51).
Citation Information
Patent Citations
Turnover plate assembly for scaffold protection
CN116677185A
Anti-falling safety net for house building construction
CN214195633U
Insulation board for building
CN219621995U