Fabricated green farm house and mounting method thereof
By using the installation method of combining back-shaped fixtures and fill components in prefabricated green farm houses, the problem of insufficient stability of the shear wall in extreme weather conditions is solved, and the efficient disaster resistance and overall strength of the structure are improved.
Patent Information
- Application Number
- CN202510106119.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing prefabricated green farm houses lack stability in connection with the shear wall and foundation under extreme weather conditions, resulting in a decrease in structural stability.
The installation method of combining the back-shaped fixture and the filling assembly is adopted, and the stability and connection strength of the shear wall are improved through the X-shaped cross-set structures, the adjustment components, the fixing rod and the connecting rod.
It effectively improves the stability of the shear wall in extreme weather conditions, enhances the disaster resistance and overall strength of the structure, and extends the service life of the farmhouse.
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Figure CN119933254A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of assembled green farmhouses, and in particular to an assembled green farmhouse and an installation method thereof. Background Art
[0002] Prefabricated green farmhouses refer to rural houses that transfer a large amount of on-site work in traditional construction methods to factories, where building components and accessories such as floor slabs, wall panels, stairs, balconies, etc. are processed and manufactured in factories, and then transported to the construction site. They are assembled and installed on site through reliable connection methods. This is a new type of rural house construction method. As the main load-bearing structure of the house, the design of the shear wall is the top priority of the prefabricated green farmhouse. The shear wall can not only effectively resist horizontal loads, such as wind loads and earthquake loads, but also provide stable support under vertical loads, ensuring the stability and safety of the entire building structure.
[0003] In prefabricated green farmhouses, shear walls are usually made of precast concrete panels or lightweight high-strength composite materials. These materials have excellent mechanical properties and durability, and can meet the requirements of modern rural houses for structural safety, energy conservation and environmental protection, and living comfort.
[0004] When installing prefabricated green farmhouses, dowel bars are installed on the foundation and installation lines are drawn. Then the shear wall is hoisted to align the shear wall with the dowel bars and the installation line. After the shear wall is in place, long and short oblique supports are installed to keep the shear wall vertical. Then the horizontality, verticality and flatness of the shear wall are calibrated. After the installation of the shear wall is completed, stirrups and longitudinal bars are installed between the two adjacent shear walls, and the steel bars are tied. The shear wall installation is completed by using a concrete pouring machine to cast a connecting wall to connect the two shear walls together. Subsequently, other walls and buildings are installed in the shear wall to achieve the installation of the prefabricated green farmhouse.
[0005] As in the prior art, the patent with authorization announcement number CN217460929U discloses a green modular farmhouse prefabricated building; it has the advantages of rainwater recycling, energy saving and consumption reduction, rapid construction, no impact on the on-site environment, restoration of site vegetation, and repeated relocation and use, and is fully beneficial to the energy saving and environmental protection of wind power and photovoltaic energy; it includes a modular house body, a combined foyer, ancillary structures and connecting corner pieces, the modular house body is divided into at least two layers, an upper box body and a lower box body, one corner of the upper box body and the lower box body are assembled and connected by connecting corner pieces, the combined foyer is installed at the front of the modular house body, and the ancillary structure is installed on one side of the modular house body, the connecting corner piece includes an upper box bottom corner piece, a lower box top corner piece and a positioning pin shaft, a lower positioning ring is arranged in the lower box top corner piece, the upper part of the positioning pin shaft is a cone, and the lower part of the positioning pin shaft is an isodiametric shaft body, the upper box bottom corner piece has an upper positioning ring built in, and a guide positioning structure is installed at the other adjacent corner of the upper box body and the lower box body.
[0006] Although the prefabricated building in the above-mentioned patent solves the problem of the inconvenience of installation of existing prefabricated farmhouses, the existing prefabricated green farmhouses have certain defects when in use; during the use of the existing prefabricated green farmhouses, the shear wall and the foundation are connected by inserting bars and pouring concrete. Although this method can provide the required stability of the shear wall to a certain extent, under the action of long-term loads, especially when encountering extreme weather conditions (such as strong winds, earthquakes, etc.), the connection between the shear wall and the foundation may be greatly affected, and the bonding force between the inserting bars and the concrete may gradually weaken due to long-term stress, environmental erosion and other factors, resulting in a decrease in the stability of the shear wall. Summary of the invention
[0007] In view of the deficiencies in the prior art, the present invention provides a prefabricated green farmhouse and an installation method thereof to solve the problems raised by the background technology and improve the stability of the shear wall.
[0008] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an assembled green farmhouse and an installation method thereof, comprising a foundation, a shear wall connected to the foundation and a connecting wall, a plurality of installation components connected in the shear wall, each installation component comprising two connecting ribs and a fixing rib, a plurality of installation grooves corresponding to the positions of the installation components are provided on both sides of the shear wall surface, a slot is provided in each installation groove, a connecting rib is slidably connected in the slot, a plurality of fixing grooves corresponding to the positions of the installation components are provided in the foundation, a fixing rib is fixedly connected in the fixing groove, a connecting groove is provided on the foundation surface, the connecting rib and the fixing rib are both slidably connected to the connecting groove, the two connecting ribs in each installation component respectively form a U-shaped fixing piece with the two fixing ribs, the two U-shaped fixing pieces are cross-arranged in an X shape, a filling component is connected to the outside of the installation component, and an adjustment component is connected to the bottom of both sides of the shear wall.
[0009] Furthermore, the filling component includes a blocking block, a filling block and a fixed block. A plurality of feed grooves are opened on the surface of the foundation. The one connected to the fixed groove close to the center of the foundation is the slurry inlet groove, and the one connected to the other fixed groove is the slurry outlet groove. The two installation grooves corresponding to the same installation component position are connected through a slurry guide groove. A blocking block is fixedly connected in the installation groove, a fixed block is fixedly connected in the connecting groove, and filling blocks are fixedly connected in the slot, the fixed groove and the slurry guide groove. Both ends of the connecting rib and both ends of the fixed rib are fixedly connected to the fixed block.
[0010] Furthermore, the adjustment component includes an adjustment box, a rotating shaft, an extrusion block and a support block. Placement grooves are provided on both sides of the bottom of the shear wall, and the adjustment box is fixedly connected in the placement groove. Two symmetrically arranged movable grooves are provided in the adjustment box, and a rotating shaft is rotatably connected in each movable groove. An extrusion block is threadedly connected to the middle part of the rotating shaft, and the top surface of the extrusion block is fitted with the top surface of the inner wall of the movable groove. A lifting groove is provided on the bottom surface of the movable groove, and a support block is slidably connected in the lifting groove, and the top surface of the support block is fitted with the bottom surface of the extrusion block. The thickness of the extrusion block is larger at the end away from the support block.
[0011] Furthermore, two slide rails are fixedly connected to the top surface of the movable groove, a slide groove corresponding to the position of the slide rail is opened on the top surface of the extrusion block, a plurality of sliders are fixedly connected in the lifting groove, and a sliding groove corresponding to the position of the slider is opened on the outer wall of the support block.
[0012] Furthermore, one end of the rotating shaft away from the supporting block is fixedly connected with a rotating block, and the side wall of the shear wall is provided with a plurality of rotating grooves corresponding to the positions of the rotating blocks.
[0013] Furthermore, a filling layer is installed between the bottom surface of the shear wall and the foundation surface.
[0014] Furthermore, fixing rods are fixedly connected to both sides of the shear wall, the fixing rods are fixedly connected to the connecting wall, and a plurality of connecting rods are fixedly connected between the two sides of the shear wall and the fixing rods.
[0015] Furthermore, the outer walls of one end of the connecting rib and the fixing rib located at the fixing block are both fixedly connected with a plurality of resistance rings.
[0016] A method for installing an assembled green farmhouse comprises the following steps: Step a, place shear wall: After the foundation is completed, draw the installation line of the shear wall on the foundation, then hoist the shear wall and align the shear wall with the installation line. After the shear wall is placed, insert the connecting ribs into the slots in the installation groove; Step b, adjust the position: Then use the level and verticality meter to measure the shear wall. When the shear wall is detected to be skewed, use the tool to rotate the rotating block to drive the extrusion block to move. The extrusion block squeezes the support block, so that the support block moves in the lifting groove, and then drives the four corners of the shear wall to move, so as to adjust the horizontality and verticality of the shear wall. After the leveling is completed, the shear wall is fixed with an inclined support. Step c, filling slurry: Install baffles at the joints between the foundation and the shear wall and outside the installation groove, and then inject the slurry into the slurry groove. At this time, the slurry will pass through the fixed groove, the connecting groove, the slot, the installation groove, the slurry guide groove, another installation groove, another slot, another connecting groove and another fixed groove in turn, and finally be discharged from the slurry outlet groove in another fixed groove, thereby forming blocking blocks, filling blocks and fixed blocks outside the connecting ribs and the fixed ribs to fix the connecting ribs and the fixed ribs. In this process, the slurry will enter the joints between the foundation and the shear wall to form a filling layer, and then the slurry will be injected into the rotating groove. After the slurry is dry, the baffle can be removed to complete the installation of the shear wall.
[0017] Compared with the prior art, the present invention has the following beneficial effects: (1) This type of prefabricated green farmhouse uses a fixing block to connect the connecting ribs and the fixing ribs into a U-shaped fixing piece, and uses the X-shaped cross arrangement formed by the two U-shaped fixing pieces to improve the stability of the shear wall when encountering extreme weather conditions (such as strong winds, earthquakes, etc.); the two U-shaped fixing pieces are arranged in an X-shaped cross manner to form a stable triangular support structure, which can effectively resist loads from all directions, including horizontal loads (such as wind loads, earthquake loads) and vertical loads. Under extreme weather conditions such as earthquakes, the U-shaped fixing pieces arranged in an X-shaped cross arrangement can more effectively disperse and absorb seismic energy, reduce the relative displacement between the shear wall and the foundation, and thus protect the house structure from serious damage; (2) By using the adjustment component, the horizontal and vertical degrees of the shear wall can be precisely adjusted through its internal structures such as the rotating shaft, extrusion block and support block. Construction workers can adjust the position of the extrusion block by rotating the rotating shaft according to the actual situation on site, and then push the support block up and down to correct the slight tilt or offset of the shear wall. This makes it convenient for construction workers to adjust the shear wall, allowing them to complete the installation of the shear wall more quickly and accurately. It also allows construction workers to more accurately control the position and angle of the shear wall, avoiding structural problems caused by installation errors. This high-precision installation method helps to improve the overall quality and service life of farmhouses; (3) The use of fixing rods and connecting rods can improve the connection strength and stability between the shear wall and the connecting wall, ensuring that the shear wall and the connecting wall can maintain better integrity and coordination when the farmhouse is subjected to external forces such as wind loads and earthquake loads, thereby improving the disaster resistance of the farmhouse; (4) The resistance ring 9 strengthens the connection between the connecting rib 4, the fixing rib 5 and the fixing block 8 by increasing the contact area and friction force, making the entire U-shaped fixing part more stable and able to withstand greater loads and deformations, thereby improving the overall structural strength of the farmhouse. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1It is a schematic diagram of the overall three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of the three-dimensional structure of the foundation, shear wall and blocking block of the present invention; Figure 3 It is a schematic diagram of the three-dimensional split structure of the foundation, shear wall and blocking block of the present invention; Figure 4 It is a three-dimensional structural schematic diagram of the shear wall, the fixing block, the filling block and the resistance block of the present invention; Figure 5 It is a schematic diagram of the three-dimensional split structure of the shear wall, the filling layer and the filling assembly of the present invention; Figure 6 It is a three-dimensional perspective structural diagram of the shear wall, the filling assembly and the fixing rod of the present invention; Figure 7 It is a schematic diagram of the three-dimensional structure of the filling component of the present invention; Figure 8 It is a three-dimensional structural schematic diagram of the mounting assembly and the resistance ring of the present invention; Fig. 9 It is a schematic diagram of the perspective structure of the three-dimensional split foundation and shear wall of the present invention; Fig.10 It is a schematic diagram of the three-dimensional structure of the adjustment component of the present invention; Fig.11 It is a schematic diagram of a three-dimensional split cross-sectional structure of the adjustment component of the present invention; Fig.12 It is a three-dimensional cross-sectional structural schematic diagram of the adjustment box, the slide rail and the slide block of the present invention.
[0019] In the figure: 1. foundation; 2. shear wall; 3. connecting wall; 4. connecting ribs; 5. fixing ribs; 6. blocking block; 7. filling block; 8. fixing block; 9. resistance ring; 10. mounting groove; 11. slot; 12. slurry inlet groove; 13. connecting groove; 14. slurry outlet groove; 15. fixing groove; 16. fixing rod; 17. placement groove; 18. adjustment box; 19. moving groove; 20. rotating shaft; 21. extrusion block; 22. slide rail; 23. slide groove; 24. lifting groove; 25. support block; 26. slider; 27. sliding groove; 28. rotating block; 29. rotating groove; 30. filling layer; 31. slurry guide groove; 32. connecting rod. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0021] See also Figures 1 to 12A prefabricated green farmhouse comprises a foundation 1, a shear wall 2 and a connecting wall 3 connected to the foundation 1, a plurality of installation components are connected in the shear wall 2, each installation component comprises two connecting ribs 4 and a fixing rib 5, a plurality of installation grooves 10 corresponding to the positions of the installation components are provided on both sides of the surface of the shear wall 2, a slot 11 is provided in each installation groove 10, a connecting rib 4 is slidably connected in the slot 11, a plurality of fixing grooves 15 corresponding to the positions of the installation components are provided in the foundation 1, a fixing rib 5 is fixedly connected in the fixing groove 15, a connecting groove 13 is provided on the surface of the foundation 1, the connecting rib 4 and the fixing rib 5 are both slidably connected to the connecting groove 13, the two connecting ribs 4 in each installation component respectively form a U-shaped fixing piece with the two fixing ribs 5, the two U-shaped fixing pieces are cross-arranged in an X shape, a filling component is connected to the outside of the installation component, and an adjustment component is connected to the bottom of both sides of the shear wall 2.
[0022] As a preferred technical solution of the present invention, the filling component includes a blocking block 6, a filling block 7 and a fixed block 8. A plurality of feed troughs are provided on the surface of the foundation 1. The slurry inlet trough 12 is connected to the fixed trough 15 near the center of the foundation 1, and the slurry outlet trough 14 is connected to the other fixed trough 15. The two installation grooves 10 corresponding to the same installation component position are connected through a slurry guide groove 31. The blocking block 6 is fixedly connected in the installation groove 10, and the fixed block 8 is fixedly connected in the connecting groove 13. The filling block 7 is fixedly connected in the slot 11, the fixed groove 15 and the slurry guide groove 31. Both ends of the connecting rib 4 and both ends of the fixing rib 5 are fixedly connected to the fixed block 8.
[0023] As a preferred technical solution of the present invention, the adjustment component includes an adjustment box 18, a rotating shaft 20, an extrusion block 21 and a support block 25. Placement grooves 17 are provided on both sides of the bottom of the shear wall 2. The adjustment box 18 is fixedly connected in the placement groove 17. Two symmetrically arranged moving grooves 19 are provided in the adjustment box 18. Each moving groove 19 is rotatably connected with a rotating shaft 20. The middle part of the rotating shaft 20 is threadedly connected with an extrusion block 21. The top surface of the extrusion block 21 is in contact with the top surface of the inner wall of the moving groove 19. A lifting groove 24 is provided on the bottom surface of the moving groove 19. A support block 25 is slidably connected in the lifting groove 24. The top surface of the support block 25 is in contact with the bottom surface of the extrusion block 21. The thickness of the end of the extrusion block 21 away from the support block 25 is larger.
[0024] As a preferred technical solution of the present invention, two slide rails 22 are fixedly connected to the top surface of the movable groove 19, a slide groove 23 corresponding to the position of the slide rail 22 is opened on the top surface of the extrusion block 21, a plurality of sliders 26 are fixedly connected in the lifting groove 24, and a sliding groove 27 corresponding to the position of the slider 26 is opened on the outer wall of the support block 25.
[0025] As a preferred technical solution of the present invention, one end of the rotating shaft 20 away from the supporting block 25 is fixedly connected to a rotating block 28 , and a plurality of rotating grooves 29 corresponding to the positions of the rotating blocks 28 are formed on the side wall of the shear wall 2 .
[0026] As a preferred technical solution of the present invention, a filling layer 30 is installed between the bottom surface of the shear wall 2 and the surface of the foundation 1 .
[0027] As a preferred technical solution of the present invention, fixing rods 16 are fixedly connected to both sides of the shear wall 2 , the fixing rods 16 are fixedly connected to the connecting wall 3 , and a plurality of connecting rods 32 are fixedly connected between the fixing rods 16 and both sides of the shear wall 2 .
[0028] As a preferred technical solution of the present invention, the outer walls of the connecting ribs 4 and the fixing ribs 5 at one end of the fixing block 8 are fixedly connected with a plurality of resistance rings 9 .
[0029] A method for installing an assembled green farmhouse comprises the following steps: Step a, place shear wall 2: After the foundation 1 is completed, the installation line of the shear wall 2 is drawn on the foundation 1, and then the shear wall 2 is hoisted and aligned with the installation line. After the shear wall 2 is placed, the connecting rib 4 is inserted into the slot 11 in the installation groove 10; Step b, adjust the position: Then, the shear wall 2 is measured using a level and a verticality meter. When the shear wall 2 is detected to be skewed, the rotating block 28 is rotated using a tool to drive the extrusion block 21 to move. The extrusion block 21 squeezes the support block 25, so that the support block 25 moves in the lifting groove 24, thereby driving the four corners of the shear wall 2 to move, thereby adjusting the horizontality and verticality of the shear wall 2. After the leveling is completed, the shear wall 2 is fixed using an inclined support. Step c, filling slurry: A baffle is installed at the joint between the foundation 1 and the shear wall 2 and outside the installation groove 10, and then the slurry is injected into the slurry groove 12. At this time, the slurry will pass through the fixing groove 15, the connecting groove 13, the slot 11, the installation groove 10, the slurry guide groove 31, another installation groove 10, another slot 11, another connecting groove 13 and another fixing groove 15 in sequence, and finally be discharged from the slurry outlet groove 14 in another fixing groove 15, thereby forming a blocking block 6, a filling block 7 and a fixing block 8 outside the connecting rib 4 and the fixing rib 5 to fix the connecting rib 4 and the fixing rib 5. In this process, the slurry will enter the joint between the foundation 1 and the shear wall 2 to form a filling layer 30, and then the slurry is injected into the rotating groove 29. After the slurry is dry, the baffle can be removed to complete the installation of the shear wall 2.
[0030] An assembled green farmhouse in the present invention connects the connecting ribs 4 and the fixing ribs 5 into a U-shaped fixing piece by using a fixing block 8, and utilizes the X-shaped cross arrangement formed by the two U-shaped fixing pieces to improve the stability of the shear wall 2 when encountering extreme weather conditions (such as strong winds, earthquakes, etc.); the two U-shaped fixing pieces are arranged in an X-shaped cross manner to form a stable triangular support structure, which can effectively resist loads from all directions, including horizontal loads (such as wind loads, earthquake loads) and vertical loads. Under extreme weather conditions such as earthquakes, the U-shaped fixing pieces arranged in an X-shaped cross arrangement can more effectively disperse and absorb earthquake energy, reduce the relative displacement between the shear wall 2 and the foundation 1, and thus protect the house structure from serious damage.
[0031] An assembled green farmhouse in the present invention utilizes an adjustment component, through its internal rotating shaft 20, extrusion block 21 and support block 25 and other structures, to achieve precise adjustment of the horizontality and verticality of the shear wall 2. Construction personnel can adjust the position of the extrusion block 21 by rotating the rotating shaft 20 according to the actual situation on site, and then push the support block 25 to move up and down to achieve correction of the slight tilt or offset of the shear wall 2, which brings convenience to the construction personnel in adjusting the shear wall 2, allowing the construction personnel to complete the installation of the shear wall 2 more quickly and accurately, and also allowing the construction personnel to more accurately control the position and angle of the shear wall 2, avoiding structural problems caused by installation errors. This high-precision installation method helps to improve the overall quality and service life of the farmhouse.
[0032] An assembled green farmhouse in the present invention utilizes a fixing rod 16 and a connecting rod 32 to improve the connection strength and stability between the shear wall 2 and the connecting wall 3, ensuring that when the farmhouse as a whole is subjected to external forces such as wind loads and earthquake loads, the shear wall 2 and the connecting wall 3 can maintain better integrity and coordination, thereby improving the disaster resistance of the farmhouse.
[0033] In the assembled green farmhouse of the present invention, the resistance ring 9 strengthens the connection between the connecting ribs 4, the fixing ribs 5 and the fixing blocks 8 by increasing the contact area and the friction force, so that the whole U-shaped fixing part is more stable and can withstand greater loads and deformations, thereby improving the overall structural strength of the farmhouse.
[0034] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An assembled green farmhouse, comprising a foundation (1), a shear wall (2) and a connecting wall (3) connected to the foundation (1), characterized in that: The shear wall (2) is connected with a plurality of installation components, each installation component comprises two connection bars (4) and a fixing bar (5); a plurality of installation slots (10) corresponding to the positions of the installation components are provided on both sides of the surface of the shear wall (2); a slot (11) is provided in each installation slot (10); a connection bar (4) is slidably connected in the slot (11); a plurality of fixing slots (15) corresponding to the positions of the installation components are provided in the foundation (1); a fixing bar (5) is fixedly connected in the fixing slot (15); a connection slot (13) is provided on the surface of the foundation (1); the connection bar (4) and the fixing bar (5) are slidably connected to the connection slot (13); the two connection bars (4) in each installation component respectively form a U-shaped fixing member with the two fixing bars (5); the two U-shaped fixing members are arranged crosswise in an X shape; a filling component is connected to the outside of the installation component; and adjustment components are connected to the bottom of both sides of the shear wall (2).
2. The assembled green farmhouse according to claim 1, characterized in that: The filling assembly comprises a blocking block (6), a filling block (7) and a fixed block (8); a plurality of feed slots are provided on the surface of the foundation (1); a slurry inlet slot (12) is connected to a fixed slot (15) close to the center of the foundation (1); a slurry outlet slot (14) is connected to another fixed slot (15); two installation slots (10) corresponding to the same installation assembly position are connected via a slurry guide slot (31); a blocking block (6) is fixedly connected in the installation slot (10); a fixed block (8) is fixedly connected in the connection slot (13); a filling block (7) is fixedly connected in the slot (11), the fixed slot (15) and the slurry guide slot (31); and both ends of the connecting rib (4) and both ends of the fixing rib (5) are fixedly connected to the fixed block (8).
3. The assembled green farmhouse according to claim 1, characterized in that: The adjustment component comprises an adjustment box (18), a rotating shaft (20), an extrusion block (21) and a support block (25). A placement groove (17) is provided on both sides of the bottom of the shear wall (2). The adjustment box (18) is fixedly connected in the placement groove (17). Two symmetrically arranged moving grooves (19) are provided in the adjustment box (18). A rotating shaft (20) is rotatably connected in each moving groove (19). An extrusion block (21) is threadedly connected in the middle of the rotating shaft (20). The top surface of the extrusion block (21) is in contact with the top surface of the inner wall of the moving groove (19). A lifting groove (24) is provided in the bottom surface of the moving groove (19). A support block (25) is slidably connected in the lifting groove (24). The top surface of the support block (25) is in contact with the bottom surface of the extrusion block (21). The thickness of the end of the extrusion block (21) away from the support block (25) is greater.
4. The assembled green farmhouse according to claim 3 is characterized in that: The top surface of the movable groove (19) is fixedly connected to two slide rails (22); the top surface of the extrusion block (21) is provided with a slide groove (23) corresponding to the position of the slide rails (22); a plurality of slide blocks (26) are fixedly connected inside the lifting groove (24); and the outer wall of the support block (25) is provided with a slide groove (27) corresponding to the position of the slide block (26).
5. The assembled green farmhouse according to claim 3 is characterized in that: One end of the rotating shaft (20) away from the supporting block (25) is fixedly connected to a rotating block (28), and the side wall of the shear wall (2) is provided with a plurality of rotating grooves (29) corresponding to the positions of the rotating blocks (28).
6. The assembled green farmhouse according to claim 1, characterized in that: A filling layer (30) is installed between the bottom surface of the shear wall (2) and the surface of the foundation (1).
7. The assembled green farmhouse according to claim 1, characterized in that: Both sides of the shear wall (2) are fixedly connected with fixing rods (16), the fixing rods (16) are fixedly connected to the connecting wall (3), and a plurality of connecting rods (32) are fixedly connected between the two sides of the shear wall (2) and the fixing rods (16).
8. The assembled green farmhouse according to claim 2, characterized in that: The outer walls of one end of the connecting rib (4) and the fixing rib (5) located on the fixing block (8) are both fixedly connected to a plurality of resistance rings (9).
9. A method for installing a prefabricated green farmhouse according to any one of claims 1 to 8, characterized in that: The following steps are involved: Step a, place shear wall (2): After the foundation (1) is completed, the installation line of the shear wall (2) is drawn on the foundation (1), and then the shear wall (2) is hoisted and aligned with the installation line. After the shear wall (2) is placed, the connecting rib (4) is inserted into the slot (11) in the installation groove (10); Step b, adjust the position: Then, the shear wall (2) is measured using a level and a verticality meter. When the shear wall (2) is detected to be skewed, a tool is used to rotate the rotating block (28) to drive the extrusion block (21) to move. The extrusion block (21) squeezes the support block (25), so that the support block (25) moves in the lifting groove (24), thereby driving the four corners of the shear wall (2) to move, thereby adjusting the horizontality and verticality of the shear wall (2). After the leveling is completed, the shear wall (2) is fixed using an inclined support. Step c, filling slurry: A baffle is installed at the joint between the foundation (1) and the shear wall (2) and outside the installation groove (10), and then the slurry is injected into the slurry groove (12). At this time, the slurry passes through the fixing groove (15), the connecting groove (13), the slot (11), the installation groove (10), the slurry guide groove (31), another installation groove (10), another slot (11), another connecting groove (13) and another fixing groove (15) in sequence, and finally is discharged from the slurry outlet groove (14) in the other fixing groove (15), thereby forming a blocking block (6), a filling block (7) and a fixing block (8) outside the connecting rib (4) and the fixing rib (5), so as to fix the connecting rib (4) and the fixing rib (5). In this process, the slurry enters the joint between the foundation (1) and the shear wall (2) to form a filling layer (30), and then the slurry is injected into the rotating groove (29). After the slurry is dried, the baffle can be removed to complete the installation of the shear wall (2).
Citation Information
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