A high-stability assembled building wall mounting device and a use method thereof
By combining reinforcement, adjustment and support mechanisms, the problem of unstable wall installation in prefabricated buildings is solved, achieving stable installation and reuse.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-15
- Publication Date
- 2026-03-27
AI Technical Summary
Existing prefabricated building walls are prone to misalignment and bending during installation, and the steel reinforcement is unstable, resulting in unstable installation.
The reinforcement mechanism clamps the upper and lower walls, the adjustment mechanism adjusts the spacing of the reinforcement plates, the auxiliary reinforcement mechanism guides the insertion, and it is fixed by the support mechanism. The threaded connection and hinge seat support ensure the stability of the wall.
It enables the stable installation of prefabricated walls, preventing misalignment and bending. The support mechanism can be reused, avoiding gaps and cracks after painting.
Smart Images

Figure CN117703107B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building construction technology, specifically to a high-stability prefabricated building wall installation device and its usage method. Background Technology
[0002] Prefabricated buildings refer to buildings where a large amount of on-site work in traditional construction methods is transferred to factories. Building components and accessories (such as floor slabs, wall panels, stairs, balconies, etc.) are prefabricated in factories, transported to the construction site, and assembled on-site using reliable connection methods. Prefabricated buildings mainly include precast concrete structures, steel structures, and modern wood structures. Because they adopt standardized design, factory production, assembly construction, information management, and intelligent applications, they represent modern industrialized production methods.
[0003] Prefabricated building walls require stacking during installation. Existing prefabricated building walls are usually installed using protruding steel bars and steel bar grooves, which can easily cause misalignment during installation. Furthermore, if the steel bars cannot support the weight of the wall after installation, the wall may bend. To address this, we propose a high-stability prefabricated building wall installation device and its usage method. Summary of the Invention
[0004] The purpose of this invention is to provide a high-stability prefabricated building wall installation device and its usage method to solve the problems that need to be solved in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a high-stability prefabricated building wall installation device, comprising a reinforcement mechanism disposed between two sets of prefabricated walls distributed vertically. The reinforcement mechanism includes a first reinforcement component, a second reinforcement component, pads, and slide rods. Pads are fixedly connected to opposite sides of the first and second reinforcement components, and slide rods are slidably connected to opposite sides of the two sets of pads. Adjustment mechanisms for driving the first and second reinforcement components to move closer and further apart are provided on opposite sides of the first and second reinforcement components. Two sets of auxiliary reinforcement mechanisms for supporting and limiting the upper side of the wall and facilitating the placement of the upper prefabricated wall are rotatably connected to opposite sides of the first and second reinforcement components. Support mechanisms for supporting the first and second reinforcement components are fixedly installed on both sides of the first and second reinforcement components.
[0006] Prefabricated building walls require stacking during installation. Existing prefabricated building walls typically use protruding reinforcing bars and grooves for installation, which can easily lead to misalignment during installation. Furthermore, if the reinforcing bars cannot support the weight of the wall after installation, it can easily cause the wall to bend. This invention addresses this by using a reinforcement mechanism to clamp and fix the upper and lower prefabricated walls in the first stage. An adjustment mechanism can adjust the distance between the first and second reinforcement plates, facilitating the placement of the reinforcement mechanism and ensuring that the first and second reinforcement plates fit snugly against the sides of the prefabricated wall, thus guaranteeing a stable installation. During the placement of the upper prefabricated wall, an auxiliary reinforcement mechanism guides its insertion. After the upper prefabricated wall is placed, the auxiliary reinforcement mechanism rotates along the first and second reinforcement plates, positioning the upper prefabricated wall at its top. This completes the second stage of reinforcement for the prefabricated wall.
[0007] Preferably, the adjustment mechanism includes a hidden groove, a first threaded sleeve, and a screw. The hidden groove is provided on one side of the first reinforcement member, and the first threaded sleeve is fixedly installed on the pad on one side of the second reinforcement member at the position corresponding to the hidden groove. The screw is provided on the hidden groove, and one end of the screw is threaded into the inside of the first threaded sleeve.
[0008] Preferably, the auxiliary reinforcement mechanism includes a clearance groove, a first rotating shaft, a third reinforcement component, a pad, and a pressure rod. Two sets of clearance grooves are provided on both the first and second reinforcement components. The first rotating shaft is rotatably connected inside the clearance groove. The top of the first rotating shaft is fixedly connected to an inclined third reinforcement component, and the bottom of the first rotating shaft is fixedly connected to an inclined pressure rod. The cross-section of the pressure rod is "L" shaped.
[0009] Preferably, the support mechanism includes a first hinge seat, a first rotating cylinder, a second hinge seat, and a second rotating cylinder. The first hinge seat is fixedly installed on a first reinforcing member. The first rotating cylinder is rotatably connected to the first hinge seat. A first threaded rod is fixedly connected to one end of the first rotating cylinder. The second rotating cylinder is rotatably connected to the second hinge seat. A second threaded rod is fixedly connected to one side of the second rotating cylinder. The outer surfaces of the first threaded rod and the second threaded rod are threadedly connected by a second threaded sleeve.
[0010] Preferably, the bottom of the first and second reinforcing members are provided with chamfers to avoid obstacles, and a pad is fixedly installed on one side of the third reinforcing member.
[0011] Preferably, when the third reinforcement member and the pressure rod are in a perpendicular state, the pad and the pressure rod are located on the same horizontal plane, and when the third reinforcement member and the pressure rod are in a perpendicular state, the width of the third reinforcement member and the pad is the same as the width of the clearance groove.
[0012] Preferably, the first hinge seat is mounted on the first and second reinforcement members by means of a fixing threaded pin, and the second hinge seat is fixedly mounted on the bearing surface by means of a fixing threaded pin.
[0013] Preferably, the method of using the high-stability prefabricated building wall installation device includes the following steps:
[0014] Step 1: Unscrew the screw to move the first and second reinforcement components away from each other along the slide bar. Then, snap the bottom of the first reinforcement component, the second reinforcement component, and the pad onto the upper part of the lower prefabricated building wall.
[0015] Step 2: Rotate the screw to bring the first and second reinforcement components closer together along the slide bar. At this time, the first and second reinforcement components are in contact with the outer wall of the lower prefabricated wall.
[0016] Step 3: Place the upper prefabricated wall into the upper "U"-shaped space formed by the first reinforcement member, the second reinforcement member, and the pad. During the placement process, it first contacts the inclined third reinforcement member. As it is placed, the third reinforcement member and the pad gradually rotate and approach each other with the first rotating shaft. After the upper prefabricated wall contacts the bottom of the third reinforcement member, the pad can be made to fit against the upper prefabricated wall. Together with the upper "U"-shaped space formed by the first reinforcement member, the second reinforcement member, and the pad, the upper prefabricated wall is double reinforced.
[0017] Step 4: After the upper prefabricated wall is installed, use the fixing screws to fix the first hinge seat. Then rotate the second threaded sleeve to adjust the position of the second hinge seat. After the position is adjusted, use the fixing screws to fix the second hinge seat to the bearing surface.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. The present invention can clamp and fix the first step between the upper and lower prefabricated walls by setting a reinforcement mechanism. The setting adjustment mechanism can adjust the distance between the first reinforcement plate and the second reinforcement plate, so as to facilitate the insertion of the reinforcement mechanism and ensure that the first reinforcement plate and the second reinforcement plate fit closely to the two sides of the prefabricated wall, thereby ensuring the stability of the installation.
[0020] 2. During the placement of the upper prefabricated wall, the upper prefabricated wall can be guided into place by the auxiliary reinforcement mechanism. After the upper prefabricated wall is placed, the auxiliary reinforcement mechanism can be driven to rotate along the first and second reinforcement plates, thereby positioning the upper position of the upper prefabricated wall. This completes the second step of reinforcement of the prefabricated wall.
[0021] 3. After the prefabricated wall above is installed, multiple sets of fixing screws can be used to install and fix the support mechanism, thereby fixing and supporting the reinforcement mechanism. This can also prevent the wall from tilting after installation. Furthermore, when painting the exterior facade after the upper and lower sets of walls are installed, the support mechanism can be removed, allowing for reuse of the support mechanism. This also ensures that cracks will not appear due to excessive gaps after painting. Attached Figure Description
[0022] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0023] Figure 2 This is a three-dimensional view of the connection structure between the reinforcing mechanism and the adjusting mechanism of the present invention;
[0024] Figure 3 This is a side view structural diagram of the present invention.
[0025] In the diagram: 1. Reinforcing mechanism, 2. Adjusting mechanism, 3. Auxiliary reinforcing mechanism, 4. Supporting mechanism, 5. First reinforcing component, 6. Second reinforcing component, 7. Pad, 8. Slide rod, 9. Hidden groove, 10. First threaded sleeve, 11. Screw, 12. Clearance groove, 13. First rotating shaft, 14. Third reinforcing component, 15. Pad block, 16. Pressure rod, 17. First hinge seat, 18. First rotating cylinder, 19. First threaded rod, 20. Second hinge seat, 21. Second rotating cylinder, 22. Second threaded rod, 23. Second threaded sleeve, 24. Clearance chamfer. Detailed Implementation
[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0027] Example 1:
[0028] Please see Figure 1 ,、 Figure 2 and Figure 3This invention provides a technical solution: a high-stability prefabricated building wall installation device, including a reinforcement mechanism 1. The reinforcement mechanism 1 is disposed between two sets of prefabricated walls distributed vertically. The reinforcement mechanism 1 includes a first reinforcement member 5, a second reinforcement member 6, a pad 7, and a slide rod 8. The pad 7 is fixedly connected to the opposite sides of the first reinforcement member 5 and the second reinforcement member 6. The slide rod 8 is slidably connected to the opposite sides of the two sets of pads 7. An adjustment mechanism 2 is provided on the opposite sides of the first reinforcement member 5 and the second reinforcement member 6 to drive the first reinforcement member 5 and the second reinforcement member 6 to move closer and further away from each other. Two sets of auxiliary reinforcement mechanisms 3 are rotatably connected to the opposite sides of the first reinforcement member 5 and the second reinforcement member 6 to support and limit the upper side of the wall and facilitate the placement of the upper prefabricated wall. Support mechanisms 4 are fixedly installed on both sides of the first reinforcement member 5 and the second reinforcement member 6 to support them.
[0029] The first step of the installation involves clamping and fixing the upper and lower prefabricated walls by setting up a reinforcement mechanism 1. The adjustment mechanism 2 can adjust the distance between the first reinforcement plate 5 and the second reinforcement plate 6, making it easier to insert the reinforcement mechanism 1 and ensuring that the first and second reinforcement plates 5 and 6 fit snugly against the sides of the prefabricated wall, thus ensuring a stable installation. During the insertion of the upper prefabricated wall, the auxiliary reinforcement mechanism 3 can guide the upper prefabricated wall into place. After the upper prefabricated wall is inserted, the auxiliary reinforcement mechanism 3 can be driven to rotate along the first and second reinforcement plates 5 and 6. This allows the weight of the upper prefabricated wall to fix the auxiliary reinforcement mechanism 3, thereby positioning the upper part of the prefabricated wall. This completes the second step of reinforcement of the prefabricated wall. After the upper prefabricated wall is installed, multiple sets of fixing screws can be used to install and fix the support mechanism 4, thereby fixing and supporting the reinforcement mechanism 1 and preventing the weight of the wall from causing compression deformation of the first and second reinforcement plates 5 and 6.
[0030] Please see Figure 1 The adjustment mechanism 2 includes a hidden groove 9, a first threaded sleeve 10, and a screw 11. The hidden groove 9 is provided on one side of the first reinforcement 5. The first threaded sleeve 10 is fixedly installed on the pad 7 on one side of the second reinforcement 6 at the position corresponding to the hidden groove 9. The screw 11 is provided on the hidden groove 9. One end of the screw 11 is threaded into the inside of the first threaded sleeve 10. Both the bottom of the first reinforcement 5 and the second reinforcement 6 are provided with chamfers 24.
[0031] The chamfered corner 24 allows the first reinforcing plate 5 and the second reinforcing plate 6 to be easily placed onto the lower prefabricated wall. By rotating the screw 11, the screw 11 moves along the first threaded sleeve 10, allowing the pads 7 of the first and second reinforcing plates 5 and 6 to move and adjust along the slide rod 8. This ensures that the first and second reinforcing plates 5 and 6 fit snugly against the outer wall of the lower prefabricated wall, while the pads 7 fit snugly against the top of the lower prefabricated wall. The gap between the two sets of pads 7 also ensures that the connecting steel bars can be easily inserted. The hidden groove 9 allows one end of the screw 11 to be hidden inside, preventing the screw from protruding on one side and affecting the aesthetics when painting the wall.
[0032] Please see Figure 1 The auxiliary reinforcement mechanism 3 includes a clearance groove 12, a first rotating shaft 13, a third reinforcement member 14, a pad 15, and a pressure rod 16. Two sets of clearance grooves 12 are provided on the first reinforcement member 5 and the second reinforcement member 6. The first rotating shaft 13 is rotatably connected inside the clearance groove 12. The top of the first rotating shaft 13 is fixedly connected to the inclined third reinforcement member 14. The bottom of the first rotating shaft 13 is fixedly connected to the inclined pressure rod 16. The cross-section of the pressure rod 16 is "L" shaped. A pad 15 is fixedly installed on one side of the third reinforcement member 14.
[0033] The first rotating shaft 13, the third reinforcing plate 14, and the pressure rod 16 are initially tilted. When the upper prefabricated wall is placed, it is guided by the third reinforcing plate 14. When the upper prefabricated wall comes into contact with the pressure rod 16, the pressure rod 16 drives the third reinforcing plate 14 to gradually become vertical using the first rotating shaft 13. After the upper prefabricated wall comes into contact with the pad 7, the pressure plate 16 is hidden inside the clearance groove 12. At this time, the pressure plate 16 is positioned by the weight of the upper prefabricated wall itself. Then, the pad 15 can be used to fix and support the side wall of the wall.
[0034] Please see Figure 1 and Figure 3 The support mechanism 4 includes a first hinge seat 17, a first rotating cylinder 18, a second hinge seat 20, and a second rotating cylinder 21. The first hinge seat 17 is fixedly installed on the first reinforcing member 5. The first rotating cylinder 18 is rotatably connected to the first hinge seat 17. A first threaded rod 19 is fixedly connected to one end of the first rotating cylinder 18. The second rotating cylinder 21 is rotatably connected to the second hinge seat 20. A second threaded rod 22 is fixedly connected to one side of the second rotating cylinder 21. The outer surfaces of the first threaded rod 19 and the second threaded rod 22 are threadedly connected by a second threaded sleeve 23. The first hinge seat 17 is installed on the first reinforcing member 5 and the second reinforcing member 6 by fixing threaded pins. The second hinge seat 20 is fixedly installed on the bearing surface by fixing threaded pins.
[0035] After the upper prefabricated wall is installed, multiple sets of fixing screws can be used to install and fix the support mechanism 4, thereby fixing and supporting the reinforcement mechanism 3. This can also prevent the wall from tilting after installation. After the upper and lower walls are installed, the support mechanism 4 can be removed when painting the exterior facade, so that the support mechanism 4 can be reused. This also ensures that cracks will not appear due to excessive gaps after painting. When adjusting the support mechanism 4, the second threaded sleeve 23 is rotated. The rotation of the second threaded sleeve 23 can drive the first threaded rod 19 and the second threaded rod 22 to move relative to each other, thereby adjusting the position of the second hinge seat 20.
[0036] Please see Figure 1 When the third reinforcement member 14 and the pressure rod 16 are in a vertical state, the pad 15 and the pressure rod 16 are located on the same horizontal plane. When the third reinforcement member 14 and the pressure rod 16 are in a vertical state, the width of the third reinforcement member 14 and the pad 15 is the same as the width of the clearance groove 12.
[0037] The fact that the width of the third reinforcement 14 and the pad 15 is the same as the width of the clearance groove 12 ensures that no large gaps will appear during the wall painting process.
[0038] In use, firstly, the reinforcing mechanism 1 is placed between the upper and lower prefabricated walls for initial clamping and fixation. The adjusting mechanism 2 adjusts the distance between the first reinforcing plate 5 and the second reinforcing plate 6, facilitating the insertion of the reinforcing mechanism 1 and ensuring that the first and second reinforcing plates 5 and 6 fit snugly against the sides of the prefabricated wall, thus guaranteeing a stable installation. During the insertion of the upper prefabricated wall, the auxiliary reinforcing mechanism 3 guides its insertion. After the upper prefabricated wall is inserted, the auxiliary reinforcing mechanism 3 rotates along the first and second reinforcing plates 5 and 6, utilizing the weight of the upper prefabricated wall for auxiliary reinforcement. Mechanism 3 is fixed to position the upper part of the prefabricated wall, thus completing the second step of reinforcement of the prefabricated wall. After the upper prefabricated wall is installed, multiple sets of fixing screws are used to install and fix the support mechanism 4, thereby fixing and supporting the reinforcement mechanism 1 and preventing the weight of the wall itself from causing compression deformation of the first reinforcement plate 5 and the second reinforcement plate 6. The chamfer 24 provides a convenient way to place the first reinforcement plate 5 and the second reinforcement plate 6 onto the lower prefabricated wall. Rotating the screw 11 at any time moves the screw 11 along the first threaded sleeve 10, allowing the pads 7 of the first reinforcement plate 5 and the second reinforcement plate 6 to move and adjust along the slide rod 8, thus allowing the first reinforcement plate 5 to be adjusted. The second reinforcing plate 6 fits against the outer wall of the lower prefabricated wall, while the pad 7 fits against the top of the lower prefabricated wall. The gap between the two sets of pads 7 ensures easy insertion of the connecting steel bars. The concealed groove 9 allows one end of the screw 11 to be hidden inside, preventing the screw from protruding and affecting the aesthetics when painting the wall. The first rotating shaft 13, the third reinforcing plate 14, and the pressure rod 16 are initially tilted. When the upper prefabricated wall is placed, it is guided by the third reinforcing plate 14. When the upper prefabricated wall comes into contact with the pressure rod 16, the pressure rod 16 uses the first rotating shaft 13 to drive the third reinforcing plate 14 to gradually become vertical. When the upper prefabricated wall comes into contact with the pad 7... After contact, the pressure plate 16 is hidden inside the clearance groove 12. At this time, the pressure plate 16 is positioned by the weight of the upper prefabricated wall. The side wall of the wall can then be fixed and supported by the pad 15. After the upper prefabricated wall is installed, the support mechanism 4 can be installed and fixed by multiple sets of fixing screws, thereby fixing and supporting the reinforcement mechanism 3. This can also prevent the wall from tilting after installation. Furthermore, when painting the exterior facade after the upper and lower walls are installed, the support mechanism 4 can be removed, allowing it to be reused. This also ensures that cracks will not appear due to excessive gaps after painting. When adjusting the support mechanism 4, rotate the second threaded sleeve 23.The rotation of the second threaded sleeve 23 drives the first threaded rod 19 and the second threaded rod 22 to move relative to each other, thereby adjusting the position of the second hinge seat 20.
[0039] Example 2:
[0040] Please see Figure 1 , Figure 2 and Figure 3 The method of using the high-stability prefabricated building wall installation device includes the following steps:
[0041] Step 1: Unscrew screw 11 to move the first reinforcement 5 and the second reinforcement 6 away from each other along slide bar 8, and then snap the bottom of the first reinforcement 5, the second reinforcement 6 and the pad 7 onto the upper part of the lower prefabricated building wall.
[0042] Step 2: Rotate screw 11 to bring the first reinforcement 5 and the second reinforcement 6 closer to each other along slide bar 8. At this time, the first reinforcement 5 and the second reinforcement 6 are in contact with the outer wall of the lower prefabricated wall.
[0043] Step 3: Place the upper prefabricated wall into the upper "U"-shaped space formed by the first reinforcement 5, the second reinforcement 6, and the pad 7. During the placement process, it first contacts the inclined third reinforcement 14. As it is placed, the third reinforcement 14 and the pad 15 gradually rotate and approach each other following the first rotating shaft 13. After the upper prefabricated wall contacts the bottom of the third reinforcement 14, the pad 15 can be made to fit against the upper prefabricated wall. Together with the upper "U"-shaped space formed by the first reinforcement 5, the second reinforcement 6, and the pad 7, the upper prefabricated wall is double-reinforced.
[0044] Step 4: After the upper prefabricated wall is installed, use the fixing screws to fix the first hinge seat 17. Then rotate the second threaded sleeve 23 to adjust the position of the second hinge seat 20. After the position is adjusted, use the fixing screws to fix the second hinge seat 20 to the bearing surface.
[0045] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A high-stability assembled building wall mounting device, comprising a reinforcing mechanism (1) arranged between two groups of assembled walls distributed vertically, characterized in that: The reinforcing mechanism (1) includes a first reinforcing piece (5), a second reinforcing piece (6), a backing plate (7) and a slide bar (8), the opposite sides of the first reinforcing piece (5) and the second reinforcing piece (6) are fixedly connected with the backing plate (7), the opposite sides of the two groups of backing plates (7) are slidably connected with the slide bar (8), the opposite sides of the first reinforcing piece (5) and the second reinforcing piece (6) are provided with an adjusting mechanism (2) for driving the first reinforcing piece (5) and the second reinforcing piece (6) to move close to or away from each other, the opposite sides of the first reinforcing piece (5) and the second reinforcing piece (6) are rotatably connected with two groups of auxiliary reinforcing mechanisms (3) for supporting and limiting the upper side of the wall body and facilitating the placement of the upper side of the assembly type wall body, and the two sides of the first reinforcing piece (5) and the second reinforcing piece (6) are fixedly installed with a supporting mechanism (4) for supporting the same. The auxiliary reinforcing mechanism (3) includes an avoiding groove (12), a first rotating shaft (13), a third reinforcing piece (14), a cushion block (15) and a pressing rod (16), the first reinforcing piece (5) and the second reinforcing piece (6) are provided with two groups of avoiding grooves (12), the first rotating shaft (13) is rotatably connected in the avoiding groove (12), the top of the first rotating shaft (13) is fixedly connected with the third reinforcing piece (14) arranged obliquely, the bottom of the first rotating shaft (13) is fixedly connected with the pressing rod (16) arranged obliquely, and the cross section of the pressing rod (16) is "L" shaped.
2. The prefabricated building wall mounting device of claim 1, wherein: The adjusting mechanism (2) includes a hidden groove (9), a first threaded sleeve (10) and a screw rod (11), one side of the first reinforcing piece (5) is provided with the hidden groove (9), the first threaded sleeve (10) is fixedly installed on the backing plate (7) on one side of the second reinforcing piece (6) and at a position corresponding to the hidden groove (9), and the screw rod (11) is arranged on the hidden groove (9), one end of the screw rod (11) is screwedly installed in the first threaded sleeve (10).
3. The high-stability assembled building wall mounting device according to claim 2, characterized in that: The supporting mechanism (4) includes a first hinged seat (17), a first rotating cylinder (18), a second hinged seat (20) and a second rotating cylinder (21), the first hinged seat (17) is fixedly installed on the first reinforcing piece (5), the first hinged seat (17) is rotatably connected with the first rotating cylinder (18), one end of the first rotating cylinder (18) is fixedly connected with a first threaded rod (19), the second hinged seat (20) is rotatably connected with the second rotating cylinder (21), one side of the second rotating cylinder (21) is fixedly connected with a second threaded rod (22), and the outer surfaces of the first threaded rod (19) and the second threaded rod (22) are screwedly connected through a second threaded sleeve (23).
4. The prefabricated building wall mounting device of claim 3, wherein: The bottom of the first reinforcing piece (5) and the second reinforcing piece (6) is provided with an avoiding chamfer (24), and one side of the third reinforcing piece (14) is fixedly installed with the cushion block (15).
5. The high-stability assembled building wall mounting device according to claim 4, characterized in that: The third reinforcing member (14) and the pressing rod (16) are in a vertical state, and the cushion block (15) and the pressing rod (16) are located in the same horizontal plane; the third reinforcing member (14) and the cushion block (15) have the same width as the width of the avoiding groove (12) when the third reinforcing member (14) is in a vertical state.
6. The high-stability assembled building wall mounting device and method according to claim 5, characterized in that: The first hinge seat (17) is installed on the first reinforcing member (5) and the second reinforcing member (6) by fixed threaded nails, and the second hinge seat (20) is fixedly installed on the bearing surface by fixed threaded nails.
7. A method of using the mounting device of any one of claims 4-6, wherein: The use method of the high-stability assembled building wall mounting device comprises the following steps: Step one: unscrew the screw rod (11) to make the first reinforcing member (5) and the second reinforcing member (6) move away from each other along the sliding rod (8), and then the bottom of the first reinforcing member (5), the second reinforcing member (6) and the cushion plate (7) is clamped above the lower layer assembled building wall; Step two: rotate the screw rod (11) to make the first reinforcing member (5) and the second reinforcing member (6) move close to each other along the sliding rod (8), at this time, the first reinforcing member (5) and the second reinforcing member (6) are attached to the outer wall of the lower layer assembled wall; Step three: place the upper layer assembled wall into the upper layer "U" shaped space composed of the first reinforcing member (5), the second reinforcing member (6) and the cushion plate (7), during the placing process, first contact the inclined third reinforcing member (14), and during the continuous placing process, the third reinforcing member (14) and the cushion block (15) gradually rotate close to the first rotating shaft (13), when the upper layer assembled wall contacts the bottom of the third reinforcing member (14), the cushion block (15) is attached to the upper layer assembled wall, and the upper layer "U" shaped space composed of the first reinforcing member (5), the second reinforcing member (6) and the cushion plate (7) forms double reinforcement for the upper layer assembled wall; Step four: after the installation of the upper layer assembled wall is completed, the first hinge seat (17) is fixedly installed by using fixed threaded nails, then the second threaded sleeve (23) is rotated to adjust the position of the second hinge seat (20), and after the position adjustment is completed, the second hinge seat (20) is fixedly installed on the bearing surface by using fixed threaded nails.
Citation Information
Patent Citations
Assembly type building wall alignment installation device and alignment installation method
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Auxiliary device for wallboard installation
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