Anti-toppling device for ALC (autoclaved lightweight concrete) plate wall and construction method
By designing an anti-tipping device for ALC panel walls, and utilizing a combination of frame, limit plate, and anti-tipping baffle, automatic limiting and anti-tipping of ALC panel walls are achieved, solving the risk of tipping caused by strap breakage and improving installation safety and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-28
- Publication Date
- 2026-04-17
AI Technical Summary
During the installation of ALC panel walls, the breakage or slippage of the straps can cause the panel walls to collapse, posing a risk of personal injury. Furthermore, existing technologies lack effective measures to prevent collapse.
Design an ALC panel wall anti-tipping device, including a frame, a limiting plate, a transverse baffle and an anti-tipping baffle. The installation mechanism realizes automatic limiting and anti-tipping of the ALC panel wall. The combination of a rotating rod and an auxiliary baffle improves the blocking stability, and the universal wheels, sliding rod and support mechanism enhance the stability and applicability of the device.
It effectively reduces the probability of tipping accidents caused by strap breakage or slippage during the installation of ALC panel walls, improves installation safety and efficiency, and enhances the applicability and stability of the device.
Smart Images

Figure CN121875494A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of ALC panel wall installation, and in particular to an ALC panel wall anti-tipping device and construction method. Background Technology
[0002] With the continuous development of the construction industry and in line with the macro-development direction of building industrialization, there are increasingly higher requirements for the prefabrication rate of buildings. ALC panel walls, with their good integrity and simple and quick on-site assembly, are increasingly used in masonry engineering assembly. ALC panel walls refer to non-load-bearing walls constructed using autoclaved lightweight aerated concrete panels. It is a new type of green building material that is prefabricated in factories and assembled on-site. It has the characteristics of being lightweight and high-strength, having thermal insulation properties, being fireproof and fire-resistant, having good sound insulation properties, and being easy to construct. However, the current assembly construction of ALC panel walls involves manually pushing them to the installation position after hoisting, relying only on temporary fixing with hoisting straps, without any anti-tipping measures. Once the straps break or slip, or the hoisting device accidentally shifts or overturns, the ALC panel wall will collapse, which can easily cause personal injury accidents. Summary of the Invention
[0003] In order to reduce the probability of personal injury caused by the collapse of ALC panel walls due to the breakage or slippage of the straps during the installation process, this application provides an ALC panel wall anti-tipping device and construction method.
[0004] Firstly, this application provides an ALC panel wall anti-tipping device, which adopts the following technical solution: An ALC panel wall anti-tipping device includes a frame, which includes a first column, a second column, and a third column. The first column and the second column are fixedly connected by multiple limiting plates, and the second column and the third column are fixedly connected by one of the limiting plates. A transverse baffle and a first anti-tipping baffle are also rotatably connected between the second column and the third column through an installation mechanism. The transverse baffle is perpendicular to the first anti-tipping baffle.
[0005] By adopting the above technical solution, when installing the ALC panel wall, the entire device is first moved to the location where the ALC panel wall needs to be installed. Then, after the ALC panel wall is lifted, it touches multiple horizontal baffles. As the ALC panel wall rises, the horizontal baffles change from horizontal to vertical. Through the installation mechanism, the horizontal baffles drive the first anti-tipping baffle to change from a vertically retracted state to a horizontally extended state, thereby enclosing the ALC panel wall in the frame and achieving the anti-tipping function of the ALC panel wall. After the ALC panel wall is installed, as the device separates from the ALC panel wall, the horizontal baffles automatically return from vertical to horizontal under the action of gravity, and the first anti-tipping baffle automatically returns from a horizontally extended state to a vertically retracted state, thereby achieving automatic limiting of the ALC panel wall and reducing the probability of personal injury accidents caused by the ALC panel wall tipping over due to strap breakage or slippage during the installation process.
[0006] Optionally, an auxiliary mechanism is also installed on the second and third columns via an installation mechanism. The auxiliary mechanism includes a second anti-tipping baffle, which is rotatably connected to the second and third columns via the installation mechanism. A rotating rod is rotatably connected to the side wall of the second anti-tipping baffle, and one end of the rotating rod away from the second anti-tipping baffle is rotatably connected to the first anti-tipping baffle.
[0007] By adopting the above technical solution, due to the high height of the ALC panel wall, the effect of simply using the first anti-tipping baffle to block the ALC panel wall is poor. When the ALC panel wall tilts, there is a probability that the first anti-tipping baffle will collapse. By setting up a rotating rod and a second anti-tipping baffle, the second anti-tipping baffle changes accordingly when the state of the first anti-tipping baffle changes. Therefore, when the ALC panel wall tilts, the first and second anti-tipping baffles simultaneously block the ALC panel wall, improving the stability of the blocking and reducing the probability of equipment damage.
[0008] Optionally, the installation mechanism includes two fixed rods, both of which are mounted on the second and third columns via a locking assembly. A first rotating sleeve and a second rotating sleeve are rotatably connected to the two fixed rods, respectively. The transverse baffle and the first anti-tipping baffle are both fixedly connected to the first rotating sleeve, and the second anti-tipping baffle is fixedly connected to the second rotating sleeve. The locking assembly includes two left clamps and two right clamps. The left clamps are hinged to the right clamps, and the hinged ends are fixedly connected to the fixed rods. A first through-hole is provided on the side wall of the left clamp, and a second through-hole is provided on the side wall of the right clamp. A fixing bolt is inserted into both the first and second through-holes, and a fixing nut is threaded through the first and second through-holes in sequence.
[0009] By adopting the above technical solution, the first rotating sleeve and the second rotating sleeve enable the rotation of the transverse baffle, the first anti-tipping baffle and the second anti-tipping baffle, making their rotation more convenient and labor-saving; the left clamp and the right clamp enable the detachable connection of the fixing rod, which makes it easy to install the fixing rod at any position of the first column and the second column, and thus makes it easy to install the first anti-tipping baffle and the second anti-tipping baffle at any height, which is convenient for limiting the ALC wall panels of different heights and improving the applicability of the entire device.
[0010] Optionally, casters are installed on the bottom walls of the first, second, and third columns. First sliding grooves are formed on the side walls of the first, second, and third columns. Multiple limiting grooves are formed on the side walls of the first sliding grooves. Fixing mechanisms are installed on the first, second, and third columns. The fixing mechanisms include three first sliding rods, which are slidably connected to the first, second, and third columns respectively. Manual rods are fixedly connected to the side walls of the first sliding rods, and the manual rods are slidably connected to the first sliding grooves.
[0011] By adopting the above technical solution, since the bottom walls of the first, second, and third columns are all equipped with casters, the movement of the entire device is more convenient. However, when fixing the ALC wall panel, the stability of the entire device is poor due to the casters, resulting in a poor obstruction and limiting effect. The first sliding rod and the manual rod are used to fix the first, second, and third columns. When fixing the first, second, and third columns, the manual rod is slid according to the height of the ceiling. The manual rod drives the first sliding rod to abut against the ceiling, and then the manual rod is rotated into the limiting groove, so that the entire device generates friction with the ceiling, reducing the probability of the entire device moving accidentally and improving the anti-tipping effect of the entire device on the ALC wall panel.
[0012] Optionally, an adjustment assembly is installed on the first sliding rod. The adjustment assembly includes a first fixing block, which is fixedly connected inside the first sliding rod. A second sliding rod is also slidably connected inside the first sliding rod. A first spring is fixedly connected to one end of the second sliding rod near the first fixing block, and the other end of the first spring is fixedly connected to the first fixing block. A first rubber abutment block is fixedly connected to one end of the second sliding rod away from the first fixing block.
[0013] By adopting the above technical solution, since there is a gap between two adjacent limiting grooves, when the first sliding rod abuts against the ceiling, the manual rod is located between the two limiting grooves and cannot limit the first sliding rod, making it impossible for the first sliding rod to maintain its abutment against the ceiling. Furthermore, when the manual rod slides into the limiting groove, it will sink to some extent, which will also cause the first sliding rod to sink, thus preventing it from maintaining its abutment against the ceiling. The design of the first spring and the second sliding rod allows for a displacement margin between the first sliding rod and the ceiling, so that when the manual rod slides into the limiting groove and sinks, the first spring can still drive the second sliding rod to abut against the ceiling, and the probability of the manual rod not being able to slide into the limiting groove due to the different height of the ceiling is eliminated.
[0014] Optionally, a support mechanism is also installed on the first column, the second column, and the third column. The support mechanism includes three fixing plates, which are respectively fixedly connected to the first column, the second column, and the third column. A second fixing block is fixedly connected to the end face of the fixing plate near the universal wheel. A second sliding groove is formed on the end face of the second fixing block near the universal wheel. A third sliding rod is slidably connected in the second sliding groove. A second spring is fixedly connected to the bottom wall of the second sliding groove. The other end of the second spring is fixedly connected to the third sliding rod. A second rubber abutment block is fixedly connected to the end of the third sliding rod away from the second spring. A limit component is also installed on the third sliding rod.
[0015] By adopting the above technical solution, when installing ALC wall panels on sloping ground, the entire device will slide downhill under the weight of the frame and the action of the casters, resulting in poor stability. The support mechanism achieves the limitation of the bottom of the first, second, and third columns. When limiting the first, second, and third columns on sloping ground, the limitation of the third sliding rod is first released by the limiting component. At this time, the second spring drives the third sliding rod to slide, which in turn drives the second rubber abutment block to abut against the ground, thus achieving the limitation of the bottom of the first, second, and third columns and reducing the probability of the entire device sliding.
[0016] Optionally, the limiting component includes an L-shaped connecting rod, which is fixedly connected to the third sliding rod. One end of the L-shaped connecting rod is fixedly connected to a rotating shaft, and the end of the rotating shaft away from the L-shaped connecting rod is threaded with a limiting nut. A rotating ring is also rotatably connected to the rotating shaft, and a limiting rod is fixedly connected to the side wall of the rotating ring.
[0017] By adopting the above technical solution, when the frame is moved, the L-shaped connecting rod is manually pulled up, and then the limiting rod is rotated by the rotating ring, so that the limiting rod abuts against the end face of the fixed plate away from the second rubber abutment block, thereby limiting the third sliding rod and reducing the probability that the second rubber abutment block will contact the ground and affect the movement of the frame.
[0018] Optionally, a horizontal control mechanism is installed on the limiting plate between the first column and the second column. The horizontal control mechanism includes a mounting base, which is fixedly connected to the limiting plate. A third sliding groove is formed on the end face of the mounting base near the ALC wall panel. A sliding block is slidably connected in the third sliding groove. A third spring is fixedly connected to the bottom wall of the third sliding groove. The other end of the third spring is fixedly connected to the sliding block. A horizontal plate is fixedly connected to the end of the sliding block away from the third spring.
[0019] By adopting the above technical solution, when installing ALC wall panels, it is necessary to check the level of each ALC wall panel installed relative to the previously installed ALC wall panels to ensure that all ALC wall panels are on the same horizontal plane. A level is required for this check, and adjustments are needed when there are discrepancies in levelness, affecting construction efficiency. The level plate allows for the detection and limiting of the levelness between adjacent ALC wall panels. The level plate abuts against the two adjacent ALC wall panels, so when installing ALC wall panels, simply ensuring that the ALC wall panels abut against the level plate is sufficient to ensure that adjacent ALC wall panels are on the same horizontal plane, thereby improving installation efficiency.
[0020] Optionally, a fourth sliding groove is provided on the side wall of the horizontal plate, and the horizontal control mechanism further includes an extension component. The extension component includes a sliding plate, which is slidably connected in the fourth sliding groove. An extension plate is fixedly connected to the sliding plate, and the end faces of the extension plate and the horizontal plate near the ALC wall panel are on the same horizontal plane.
[0021] By adopting the above technical solution, for ALC wall panels with a relatively wide width, the horizontal plate may not be long enough to simultaneously abut against two adjacent ALC wall panels. The extension plate extends the horizontal plate. When the horizontal plate is long enough, the extension plate abuts against the horizontal plate. When the horizontal plate is not long enough, the extension plate slides out through the sliding plate, thereby extending the horizontal plate. This improves the applicability of the horizontal control mechanism without affecting the normal use of the entire device.
[0022] On the other hand, the ALC panel wall anti-tipping construction method provided in this application adopts the following technical solution: A method for constructing an ALC panel wall to prevent tipping includes the following steps: Step 1: First, move the entire frame to the location where the ALC panel wall needs to be installed; Step 2: Adjust the fixing mechanism according to the height of the ceiling to secure the entire frame; Step 3: Adjust the locking components according to the height of the ALC wall panel so that the first and second anti-tipping baffles are adapted to the height of the ALC wall panel. Step 4: Lift and install the ALC panel wall. The ALC panel wall will contact the horizontal baffle. As the panel wall rises, the horizontal baffle will change from horizontal to vertical, causing the first and second anti-tipping baffles to change from a vertically retracted state to a horizontally extended state, thus realizing the anti-tipping protection construction of the ALC panel wall.
[0023] In summary, this application includes the following beneficial technical effects: 1. When installing the ALC panel wall, first move the entire device to the location where the ALC panel wall needs to be installed. Then, after the ALC panel wall is lifted, it touches the multiple horizontal baffles. As the ALC panel wall rises, the horizontal baffles change from horizontal to vertical. The horizontal baffles, through the installation mechanism, drive the first anti-tipping baffle from a vertically retracted state to a horizontally extended state, thereby enclosing the ALC panel wall in the frame and achieving the anti-tipping function of the ALC panel wall. After the ALC panel wall is installed, as the device separates from the ALC panel wall, the horizontal baffles, under the action of gravity, automatically return from vertical to horizontal. The first anti-tipping baffle automatically returns from a horizontally extended state to a vertically retracted state, thereby achieving automatic limiting of the ALC panel wall and reducing the probability of personal injury accidents caused by the ALC panel wall tipping over due to strap breakage or slippage during the installation process. 2. Due to the height of the ALC panel wall, the effect of simply using the first anti-tipping baffle to block the ALC panel wall is poor. When the ALC panel wall tilts, there is a probability that the first anti-tipping baffle will collapse. By setting up a rotating rod and a second anti-tipping baffle, the second anti-tipping baffle changes accordingly when the state of the first anti-tipping baffle changes. Therefore, when the ALC panel wall tilts, the first and second anti-tipping baffles block the ALC panel wall simultaneously, improving the stability of the blocking and reducing the probability of equipment damage. 3. Since the first, second, and third columns are all equipped with casters on their base walls, the entire device is easier to move. However, when fixing the ALC wall panel, the casters reduce the stability of the device and make the limiting effect less effective. The first sliding rod and the manual rod fix the first, second, and third columns. When fixing the first, second, and third columns, the manual rod is slid according to the height of the ceiling. The manual rod drives the first sliding rod to abut against the ceiling. Then, the manual rod is rotated into the limiting groove, which generates friction between the entire device and the ceiling, reducing the probability of accidental movement and improving the anti-tipping effect of the device on the ALC wall panel. 4. Because there is a gap between two adjacent limiting grooves, when the first sliding rod abuts against the ceiling, the manual rod is located between the two limiting grooves and cannot limit the first sliding rod, making it impossible for the first sliding rod to maintain contact with the ceiling. Furthermore, when the manual rod slides into the limiting groove, it will sink to some extent, which will also cause the first sliding rod to sink, thus preventing it from maintaining contact with the ceiling. The design of the first spring and the second sliding rod allows for a displacement margin between the first sliding rod and the ceiling. This ensures that when the manual rod sinks into the limiting groove, the first spring can still drive the second sliding rod to contact the ceiling, eliminating the probability that the manual rod cannot slide into the limiting groove due to differences in ceiling height. 5. When installing ALC wall panels, the level of each installed ALC wall panel needs to be checked against the previously installed panels to ensure that all ALC wall panels are on the same horizontal plane. A level is required for this check, and adjustments are needed if there are discrepancies in levelness, which affects construction efficiency. The level plate allows for the detection and limiting of the levelness between two adjacent ALC wall panels. The level plate abuts against the two adjacent ALC wall panels, so when installing ALC wall panels, it is only necessary to ensure that the ALC wall panels abut against the level plate to ensure that the two adjacent ALC wall panels are on the same horizontal plane, thereby improving installation efficiency. 6. For ALC wall panels with a wider width, the horizontal plate may not be long enough to simultaneously abut two adjacent ALC wall panels. The extension plate extends the horizontal plate. When the horizontal plate is long enough, the extension plate abuts against the horizontal plate. When the horizontal plate is not long enough, the extension plate slides out through the sliding plate, thereby extending the horizontal plate. This improves the applicability of the horizontal control mechanism without affecting the normal use of the entire device. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the ALC panel wall anti-tipping device in Embodiment 1 of this application; Figure 2 This is a schematic diagram of the installation mechanism in Embodiment 1 of this application; Figure 3 This is a schematic diagram of the locking component in Embodiment 1 of this application; Figure 4 This is a schematic diagram of the fixing mechanism in Embodiment 1 of this application; Figure 5 This is a cross-sectional view of the adjustment component in Embodiment 1 of this application; Figure 6 This is a schematic diagram of the support mechanism in Embodiment 2 of this application; Figure 7 For this application Figure 6 Enlarged view of section A; Figure 8 This is a top view of the horizontal control mechanism in Embodiment 2 of this application.
[0025] Reference numerals: 1. Frame; 11. First upright; 12. Second upright; 13. Third upright; 14. Limiting plate; 15. Casters; 16. First sliding groove; 17. Limiting groove; 2. Lateral baffle; 3. First anti-tipping baffle; 4. Auxiliary mechanism; 41. Second anti-tipping baffle; 42. Rotating rod; 5. Installation mechanism; 51. First rotating sleeve; 52. Second rotating sleeve; 53. Fixing rod; 54. Locking assembly; 541. Left clamp; 542. Right clamp; 543. Fixing bolt; 544. Fixing nut; 6. Fixing mechanism; 61. First sliding rod; 62. Manual lever; 63. Adjustment assembly; 631. 632. Sliding rod; 633. First rubber abutment block; 634. First fixing block; 635. First spring; 7. Support mechanism; 71. Fixing plate; 72. Second fixing block; 721. Second slide groove; 73. Third sliding rod; 74. Second spring; 75. Second rubber abutment block; 76. Limiting assembly; 761. L-shaped connecting rod; 762. Rotating shaft; 763. Limiting nut; 764. Rotating ring; 765. Limiting rod; 8. Horizontal control mechanism; 81. Mounting base; 811. Third slide groove; 82. Sliding block; 83. Third spring; 84. Horizontal plate; 85. Extension assembly; 851. Extension plate; 852. Sliding plate. Detailed Implementation
[0026] The following is in conjunction with the appendix Figures 1-8 This application will be described in further detail.
[0027] This application discloses an ALC panel wall anti-tipping device.
[0028] Example 1: refer to Figure 1The ALC panel wall anti-tipping device includes a frame 1, which includes a first column 11, a second column 12, and a third column 13. The first column 11 and the second column 12 are fixedly connected by multiple limiting plates 14. Universal wheels 15 are installed on the bottom walls of the first column 11, the second column 12, and the third column 13. The second column 12 and the third column 13 are fixedly connected by a limiting plate 14. A transverse baffle 2 and a first anti-tipping baffle 3 are also rotatably connected between the second column 12 and the third column 13 through an installation mechanism 5. The transverse baffle 2 is perpendicular to the first anti-tipping baffle 3. An auxiliary mechanism 4 is also installed between the second column 12 and the third column 13 through the installation mechanism 5. A fixing mechanism 6 is installed on the first column 11, the second column 12, and the third column 13.
[0029] When installing the ALC panel wall, the entire device is first moved to the location where the ALC panel wall needs to be installed. Then, after the ALC panel wall is lifted, it touches the horizontal baffle 2. As the ALC panel wall rises, the horizontal baffle 2 changes from horizontal to vertical. The horizontal baffle 2, through the installation mechanism 5, drives the first anti-tipping baffle 3 from a vertically retracted state to a horizontally extended state, thereby enclosing the ALC panel wall in the frame 1 and achieving the anti-tipping function of the ALC panel wall. After the ALC panel wall is installed, as the device separates from the ALC panel wall, the horizontal baffle 2, under the action of gravity, automatically returns from vertical to horizontal, and the first anti-tipping baffle 3 automatically returns from a horizontally extended state to a vertically retracted state, thereby achieving automatic limiting of the ALC panel wall and reducing the probability of personal injury accidents caused by the ALC panel wall tipping over due to the breakage or slippage of the straps during the installation process.
[0030] The auxiliary mechanism 4 includes a second anti-tipping baffle 41, which is rotatably connected to the second column 12 and the third column 13 via the mounting mechanism 5. A rotating rod 42 is rotatably connected to the side wall of the second anti-tipping baffle 41, and the end of the rotating rod 42 away from the second anti-tipping baffle 41 is rotatably connected to the first anti-tipping baffle 3. Since the ALC wall is quite high, the effect of blocking the ALC wall solely by the first anti-tipping baffle 3 is poor. When the ALC wall tilts, there is a probability that the first anti-tipping baffle 3 will collapse. By setting up the rotating rod 42 and the second anti-tipping baffle 41, the second anti-tipping baffle 41 can be changed when the state of the first anti-tipping baffle 3 changes. Therefore, when the ALC wall tilts, the first anti-tipping baffle 3 and the second anti-tipping baffle 41 simultaneously block the ALC wall, improving the stability of the blockage and reducing the probability of equipment damage.
[0031] refer to Figure 2 and Figure 3The installation mechanism 5 includes two fixing rods 53, both of which are mounted on the second column 12 and the third column 13 via locking assembly 54. A first rotating sleeve 51 and a second rotating sleeve 52 are rotatably connected to the two fixing rods 53 respectively. The transverse baffle 2 and the first anti-tipping baffle 3 are fixedly connected to the first rotating sleeve 51, and the second anti-tipping baffle 41 is fixedly connected to the second rotating sleeve 52. The locking assembly 54 includes two left clamps 541 and two right clamps 542. The left clamps 541 and the right clamps 542 are hinged and the hinged ends are fixedly connected to the fixing rods 53. A first through hole is opened on the side wall of the left clamp 541, and a second through hole is opened on the side wall of the right clamp 542. A fixing bolt 543 is inserted into both the first and second through holes. The fixing bolt 543 passes through the first and second through holes in sequence and is threadedly connected to a fixing nut 544.
[0032] The first rotating sleeve 51 and the second rotating sleeve 52 enable the rotation of the transverse baffle 2, the first anti-tipping baffle 3 and the second anti-tipping baffle 41, making their rotation more convenient and labor-saving. The left clamp 541 and the right clamp 542 enable the detachable connection of the fixing rod 53, which is convenient to install the fixing rod 53 at any position of the first column 11 and the second column 12. This, in turn, makes it convenient to install the first anti-tipping baffle 3 and the second anti-tipping baffle 41 at any height, which is convenient to limit the ALC wall panels of different heights and improves the applicability of the entire device.
[0033] refer to Figure 4 and Figure 5 The first column 11, the second column 12 and the third column 13 are each provided with a first sliding groove 16. The side wall of the first sliding groove 16 is provided with a plurality of limiting grooves 17. The fixing mechanism 6 includes three first sliding rods 61, which are slidably connected in the first column 11, the second column 12 and the third column 13 respectively. A manual rod 62 is fixedly connected to the side wall of the first sliding rod 61, and the manual rod 62 is slidably connected in the first sliding groove 16.
[0034] Since the bottom walls of the first column 11, the second column 12, and the third column 13 are all equipped with casters 15, the movement of the entire device is more convenient. However, when fixing the ALC wall panel, the stability of the entire device is poor due to the casters 15, resulting in a poor obstruction and limiting effect. The first sliding rod 61 and the manual rod 62 are used to fix the first column 11, the second column 12, and the third column 13. When fixing the first column 11, the second column 12, and the third column 13, the manual rod 62 is slid according to the height of the ceiling. The manual rod 62 drives the first sliding rod 61 to abut against the ceiling. Then, the manual rod 62 is rotated into the limiting groove 17, so that the entire device generates friction with the ceiling, reducing the probability of the entire device moving accidentally and improving the anti-tipping effect of the entire device on the ALC wall panel.
[0035] An adjustment component 63 is installed on the first sliding rod 61. The adjustment component 63 has a first fixing block 633, which is fixedly connected inside the first sliding rod 61 and located at the end of the first sliding rod 61 away from the universal wheel 15. A second sliding rod 631 is also slidably connected inside the first sliding rod 61. A first spring 634 is fixedly connected to the end of the second sliding rod 631 near the first fixing block 633. The other end of the first spring 634 is fixedly connected to the first fixing block 633. A first rubber abutment block 632 is fixedly connected to the end of the second sliding rod 631 away from the first fixing block 633.
[0036] Because there is a gap between the two adjacent limiting grooves 17, when the first sliding rod 61 abuts against the ceiling, the manual rod 62, located between the two limiting grooves 17, cannot limit the first sliding rod 61, preventing it from maintaining contact with the ceiling. Furthermore, when the manual rod 62 slides into the limiting groove 17, it sinks, causing the first sliding rod 61 to sink as well, further preventing it from maintaining contact with the ceiling. The arrangement of the first spring 634 and the second sliding rod 631 allows for a displacement margin between the first sliding rod 61 and the ceiling. This ensures that when the manual rod 62 slides into the limiting groove 17 and sinks, the first spring 634 can still drive the second sliding rod 631 to contact the ceiling, eliminating the probability that the manual rod 62 cannot slide into the limiting groove 17 due to differences in ceiling height.
[0037] This application also discloses a construction method for preventing ALC panel walls from tipping over: A method for constructing an ALC panel wall to prevent tipping includes the following steps: Step 1: First, move the entire frame 1 to the location where the ALC panel wall needs to be installed; Step 2: Adjust the fixing mechanism 6 according to the height of the ceiling to fix the entire frame 1; Step 3: Adjust the locking assembly 54 according to the height of the ALC wall panel so that the first anti-tipping baffle 3 and the second anti-tipping baffle 41 are adapted to the height of the ALC wall panel. Step 4: Lift and install the ALC panel wall. The ALC panel wall comes into contact with the horizontal baffle 2. As the panel wall rises, the horizontal baffle 2 changes from horizontal to vertical, which drives the first anti-tipping baffle 3 and the second anti-tipping baffle 41 to change from the vertically retracted state to the horizontally extended state, thus realizing the anti-tipping protection construction of the ALC panel wall.
[0038] Example 2: refer to Figure 6 The difference between this embodiment and embodiment 1 is that a support mechanism 7 is also installed on the first column 11, the second column 12, and the third column 13. The support mechanism 7 includes three fixing plates 71, which are respectively fixedly connected to the first column 11, the second column 12, and the third column 13. The three fixing plates 71 are all located at the end of the first column 11, the second column 12, and the third column 13 near the universal wheel 15. A second fixing block 72 is fixedly connected to the end face of the fixing plate 71 near the universal wheel 15. A second sliding groove 721 is opened on the end face of the second fixing block 72 near the universal wheel 15. A third sliding rod 73 is slidably connected in the second sliding groove 721. A second spring 74 is fixedly connected to the bottom wall of the second sliding groove 721. The other end of the second spring 74 is fixedly connected to the third sliding rod 73. A second rubber abutment block 75 is fixedly connected to the end of the third sliding rod 73 away from the second spring 74. A limit component 76 is also installed on the third sliding rod 73.
[0039] When installing ALC wall panels on sloping ground, the entire device will slide downhill under the weight of the frame 1 and the action of the casters 15, resulting in poor stability. The support mechanism 7 limits the bottom of the first column 11, the second column 12, and the third column 13. When limiting the first column 11, the second column 12, and the third column 13 on sloping ground, the limiting component 76 first releases the limit on the third sliding rod 73. At this time, the second spring 74 drives the third sliding rod 73 to slide, which in turn drives the second rubber abutment block 75 to abut against the ground, thus limiting the bottom of the first column 11, the second column 12, and the third column 13 and reducing the probability of the entire device sliding.
[0040] refer to Figure 7The limiting component 76 includes an L-shaped connecting rod 761, which is fixedly connected to the third sliding rod 73. One end of the L-shaped connecting rod 761 is fixedly connected to a rotating shaft 762, and the end of the rotating shaft 762 away from the L-shaped connecting rod 761 is threadedly connected to a limiting nut 763. A rotating ring 764 is also rotatably connected to the rotating shaft 762, and a limiting rod 765 is fixedly connected to the side wall of the rotating ring 764. When moving the frame 1, the L-shaped connecting rod 761 is manually pulled up, and then the limiting rod 765 is rotated through the rotating ring 764, so that the limiting rod 765 abuts against the end face of the fixed plate 71 away from the second rubber abutment block 75, thereby limiting the third sliding rod 73 and reducing the probability that the second rubber abutment block 75 will contact the ground and affect the movement of the frame 1.
[0041] refer to Figure 8 A horizontal control mechanism 8 is installed on the limiting plate 14 between the first column 11 and the second column 12. The horizontal control mechanism 8 includes a mounting base 81, which is fixedly connected to the end face of the limiting plate 14 away from the ALC wall panel. A third sliding groove 811 is provided on the end face of the mounting base 81 close to the ALC wall panel. A sliding block 82 is slidably connected in the third sliding groove 811. A third spring 83 is fixedly connected to the bottom wall of the third sliding groove 811. The other end of the third spring 83 is fixedly connected to the sliding block 82. A horizontal plate 84 is fixedly connected to the end of the sliding block 82 away from the third spring 83.
[0042] When installing ALC wall panels, the level of each panel needs to be checked against the previously installed panels to ensure all panels are on the same horizontal plane. A level is required for this check, and adjustments are necessary if discrepancies are found, impacting construction efficiency. The level plate 84 allows for level detection and control between adjacent ALC wall panels. Since the level plate 84 abuts against adjacent panels, installation only requires the panels to contact the level plate 84 to ensure they are on the same horizontal plane, thus improving installation efficiency.
[0043] A fourth sliding groove is provided on the side wall of the horizontal plate 84. The horizontal control mechanism 8 also includes an extension component 85, which includes a sliding plate 852. The sliding plate 852 is slidably connected in the fourth sliding groove, and an extension plate 851 is fixedly connected to the sliding plate 852. The extension plate 851 and the end face of the horizontal plate 84 near the ALC wall panel are on the same horizontal plane. For ALC wall panels with a wide width, the horizontal plate 84 may not be long enough to simultaneously abut against two adjacent ALC wall panels. The extension plate 851 extends the horizontal plate 84. When the horizontal plate 84 is long enough, the extension plate 851 abuts against the horizontal plate 84. When the horizontal plate 84 is not long enough, the extension plate 851 slides out through the sliding plate 852, thereby extending the horizontal plate 84 and improving the applicability of the horizontal control mechanism 8 without affecting the normal use of the entire device.
[0044] 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. An ALC panel wall anti-tipping device, characterized in that, The frame includes a frame (1), which includes a first column (11), a second column (12) and a third column (13). The first column (11) and the second column (12) are fixedly connected by multiple limiting plates (14). The second column (12) and the third column (13) are fixedly connected by one of the limiting plates (14). The second column (12) and the third column (13) are also rotatably connected by an installation mechanism (5) to a transverse baffle (2) and a first anti-tipping baffle (3). The transverse baffle (2) is perpendicular to the first anti-tipping baffle (3).
2. The ALC panel wall anti-tipping device according to claim 1, characterized in that, The second column (12) and the third column (13) are also equipped with an auxiliary mechanism (4) by means of an installation mechanism (5). The auxiliary mechanism (4) includes a second anti-tipping baffle (41). The second anti-tipping baffle (41) is rotatably connected to the second column (12) and the third column (13) by means of the installation mechanism (5). A rotating rod (42) is rotatably connected to the side wall of the second anti-tipping baffle (41). The end of the rotating rod (42) away from the second anti-tipping baffle (41) is rotatably connected to the first anti-tipping baffle (3).
3. The ALC panel wall anti-tipping device according to claim 2, characterized in that, The installation mechanism (5) includes two fixing rods (53), both of which are mounted on the second column (12) and the third column (13) via locking components (54). A first rotating sleeve (51) and a second rotating sleeve (52) are rotatably connected to each of the two fixing rods (53). The transverse baffle (2) and the first anti-tipping baffle (3) are both fixedly connected to the first rotating sleeve (51), and the second anti-tipping baffle (41) is fixedly connected to the second rotating sleeve (52). The locking components (54) are... 4) Includes two left clamps (541) and two right clamps (542). The left clamps (541) and the right clamps (542) are hinged together and the hinged ends are fixedly connected to the fixing rod (53). A first through hole is provided on the side wall of the left clamp (541) and a second through hole is provided on the side wall of the right clamp (542). A fixing bolt (543) is inserted into both the first through hole and the second through hole. The fixing bolt (543) passes through the first through hole and the second through hole in sequence and is threaded with a fixing nut (544).
4. The ALC panel wall anti-tipping device according to claim 3, characterized in that, Universal wheels (15) are installed on the bottom walls of the first column (11), the second column (12) and the third column (13). A first sliding groove (16) is provided on the side wall of the first column (11), the second column (12) and the third column (13). Multiple limiting grooves (17) are provided on the side wall of the first sliding groove (16). A fixing mechanism (6) is installed on the first column (11), the second column (12) and the third column (13). The fixing mechanism (6) includes three first sliding rods (61). The three first sliding rods (61) are slidably connected in the first column (11), the second column (12) and the third column (13) respectively. A manual rod (62) is fixedly connected to the side wall of the first sliding rod (61). The manual rod (62) is slidably connected in the first sliding groove (16).
5. The ALC panel wall anti-tipping device according to claim 4, characterized in that, An adjustment assembly (63) is installed on the first sliding rod (61). The adjustment assembly (63) includes a first fixing block (633), which is fixedly connected inside the first sliding rod (61). A second sliding rod (631) is also slidably connected inside the first sliding rod (61). A first spring (634) is fixedly connected to one end of the second sliding rod (631) near the first fixing block (633). The other end of the first spring (634) is fixedly connected to the first fixing block (633). A first rubber abutment block (632) is fixedly connected to one end of the second sliding rod (631) away from the first fixing block (633).
6. The ALC panel wall anti-tipping device according to claim 4, characterized in that, A support mechanism (7) is also installed on the first column (11), the second column (12), and the third column (13). The support mechanism (7) includes three fixing plates (71), which are respectively fixedly connected to the first column (11), the second column (12), and the third column (13). A second fixing block (72) is fixedly connected to the fixing plate (71) near the end face of the universal wheel (15). The second fixing block (72) is close to the universal wheel (15). 5) has a second sliding groove (721) on its end face. A third sliding rod (73) is slidably connected in the second sliding groove (721). A second spring (74) is fixedly connected to the bottom wall of the second sliding groove (721). The other end of the second spring (74) is fixedly connected to the third sliding rod (73). A second rubber abutment block (75) is fixedly connected to the end of the third sliding rod (73) away from the second spring (74). A limit component (76) is also installed on the third sliding rod (73).
7. The ALC panel wall anti-tipping device according to claim 6, characterized in that, The limiting component (76) includes an L-shaped connecting rod (761), which is fixedly connected to the third sliding rod (73). One end of the L-shaped connecting rod (761) is fixedly connected to a rotating shaft (762). The end of the rotating shaft (762) away from the L-shaped connecting rod (761) is threadedly connected to a limiting nut (763). A rotating ring (764) is also rotatably connected to the rotating shaft (762). A limiting rod (765) is fixedly connected to the side wall of the rotating ring (764).
8. The ALC panel wall anti-tipping device according to claim 1, characterized in that, A horizontal control mechanism (8) is installed on the limiting plate (14) between the first column (11) and the second column (12). The horizontal control mechanism (8) includes a mounting base (81), which is fixedly connected to the limiting plate (14). A third sliding groove (811) is provided on the end face of the mounting base (81) near the ALC wall panel. A sliding block (82) is slidably connected in the third sliding groove (811). A third spring (83) is fixedly connected to the bottom wall of the third sliding groove (811). The other end of the third spring (83) is fixedly connected to the sliding block (82). A horizontal plate (84) is fixedly connected to the end of the sliding block (82) away from the third spring (83).
9. The ALC panel wall anti-tipping device according to claim 8, characterized in that, The horizontal plate (84) has a fourth sliding groove on its side wall. The horizontal control mechanism (8) also includes an extension component (85). The extension component (85) includes a sliding plate (852). The sliding plate (852) is slidably connected in the fourth sliding groove. An extension plate (851) is fixedly connected to the sliding plate (852). The end faces of the extension plate (851) and the horizontal plate (84) near the ALC wall panel are on the same horizontal plane.
10. A method for constructing an ALC panel wall to prevent tipping, characterized in that, The anti-tipping construction of ALC panel walls using the anti-tipping device of claim 4 includes the following steps: Step 1: First, move the entire frame (1) to the location where ALC panel wall installation is required; Step 2: Adjust the fixing mechanism (6) according to the height of the ceiling to fix the entire frame (1); Step 3: Adjust the locking assembly (54) according to the height of the ALC wall panel so that the first anti-tipping baffle (3) and the second anti-tipping baffle (41) are adapted to the height of the ALC wall panel: Step 4: Lift and install the ALC panel wall. The ALC panel wall comes into contact with the horizontal baffle (2). As the panel wall rises, the horizontal baffle (2) changes from horizontal to vertical, which drives the first anti-tipping baffle (3) and the second anti-tipping baffle (41) to change from the vertical retracted state to the horizontal extended state, so as to realize the anti-tipping protection construction of the ALC panel wall.