Fabricated wall building device for house construction
By designing prefabricated wall building devices, the fast and stable connection of wall blocks is achieved by using splicing and stabilizing mechanisms, the problems of cumbersome wall splicing and poor connectivity in the existing technology are solved, the stability and connection strength of the wall are improved, resource waste is reduced, and it is in line with the concept of green building.
Patent Information
- Application Number
- CN202510715462.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2045-05-30
AI Technical Summary
The splicing and installation methods of existing prefabricated walls are cumbersome and have poor connectivity, resulting in unstable walls, inconvenient installation and disassembly, and waste of resources.
A prefabricated wall building device is designed, including a supporting wall, a supporting frame, a concrete support block and a splicing stabilization mechanism. The splicing stabilization mechanism achieves rapid and stable connection of wall blocks by bonding components such as partitions, positioning partitions, splicing sleeves and splicing screws.
It realizes rapid and convenient assembly of wall blocks, improves the overall stability and connection strength of the wall, simplifies the installation and disassembly process, reduces resource waste, and is in line with the concept of green building.
Smart Images

Figure CN120231394A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of modular construction, and particularly to an assembled wall building device for house construction. Background Technique
[0002] An assembled building refers to a building in which a large amount of on-site work in the traditional construction method is transferred to a factory. Building components and fittings (such as floor slabs, wall panels, stairs, balconies, etc.) are processed and manufactured in the factory and transported to the building construction site, and then assembled and installed on-site through reliable connection methods. An assembled wall module is a wall structure suitable for assembled buildings, which is a wall unit prefabricated in a factory, including functional layers such as structure, heat insulation, and sound insulation. After being transported to the construction site, it is directly assembled to form a wall, replacing the traditional wall building construction operation. Only the splicing and fixing of the modules need to be carried out on-site, which greatly shortens the construction period, reduces on-site construction waste, and reduces energy consumption, meeting the concept of green buildings. For this reason, the Chinese patent discloses an assembled building formwork system and wall modules, with the application number 201811113413.5. The assembled building formwork system of the present invention has the advantages of reasonable strength distribution design, light weight and easy manual operation, batch production, low manufacturing cost, simple installation, and prevention of slurry leakage. However, the current splicing and installation method of wall blocks is cumbersome, and the connection between adjacent wall blocks is not strong enough, resulting in the overall instability of the spliced and assembled wall, inconvenient installation and disassembly, causing inconvenience for subsequent disassembly, recycling and reuse, and resulting in waste of resources. Therefore, the present invention provides an assembled wall building device for house construction to meet people's needs. Summary of the Invention
[0003] The present invention provides an assembled wall building device for house construction, which can effectively solve the problems raised in the above background technique, namely, the splicing and installation method of wall blocks is cumbersome, the connection between adjacent wall blocks is not strong enough, resulting in the overall instability of the spliced and assembled wall, inconvenient installation and disassembly, causing inconvenience for subsequent disassembly, recycling and reuse, and resulting in waste of resources.
[0004] To achieve the above object, the present invention provides the following technical solution: An assembled wall building device for house construction, including a supporting wall, a supporting frame is fixedly installed on the inner wall of the supporting wall, a concrete support block is installed in the middle of the interior of the supporting frame, and a splicing and stabilizing mechanism is installed inside the supporting frame; The splicing and stabilizing mechanism includes a fitting partition board; A fitting partition is installed inside the support frame at a position on one side of the concrete support block, and a positioning partition is installed inside the support frame at a position on the other side of the concrete support block. The bottom of the fitting partition is symmetrically connected with splicing sleeves. Threaded holes are symmetrically opened at the bottom ends of the support wall and the support frame, and threaded holes are symmetrically opened at the top ends of the support wall and the support frame. Through holes are opened at positions on one side of the threaded holes at the top ends of the support wall and the support frame. A splicing screw is movably installed in the middle of the upper threaded hole; The bottom end of the splicing screw is connected with a positioning plate, a connecting block is installed at the bottom end of the positioning plate, one end of the bottom of the connecting block is connected with an intercepting block, a metal round rod is movably installed in the middle of the through hole, a positioning rod is connected to the bottom end of the metal round rod, a protective cover plate is fitted and installed on the surface of the support wall, positioning blocks are symmetrically connected to the middle of the protective cover plate, and elastic clamping blocks are connected to one ends of the positioning blocks.
[0005] According to the above technical solution, the positions of the upper threaded hole and the lower threaded hole correspond to each other, and the splicing sleeve is located directly above the lower threaded hole; The bottom of the positioning rod is closely attached to the surface of one end of the intercepting block. A recess is formed between the positioning rod and the connecting block, and one end of the elastic clamping block is movably inserted into the recess.
[0006] According to the above technical solution, mounting round plates are symmetrically and fixedly installed in the middle of the fitting partition. Fixed cylinders are fixedly installed in the middle of the two mounting round plates. A movable rod is movably installed in the middle of the fixed cylinder. Compression springs are fixedly installed at the edges of the two mounting round plates. An extrusion long plate is fixedly connected between the ends of the two movable rods. Limiting plates are symmetrically and fixedly connected to both ends of the extrusion long plate; Positioning round holes are opened at the four corner positions at one end of the support wall. Positioning cylinders are fixedly connected to the four corner positions of the protective cover plate. Pressing blocks are fixedly connected to the top and bottom of both sides of the protective cover plate. Splicing notches are symmetrically opened at one ends of the support wall and the support frame. A convex block is symmetrically and fixedly connected to the middle of one end of the support wall. A splicing block is symmetrically and fixedly connected to the middle of one end of the protective cover plate.
[0007] According to the above technical solution, the compression spring is sleeved outside the fixed cylinder and the movable rod, the compression spring is connected to the extrusion long plate, and the two limiting plates are respectively closely attached to the surfaces of one ends of the two positioning plates.
[0008] According to the above technical solution, the positioning cylinder is movably inserted into the positioning round hole, and the pressing block is closely attached to the surface of the fitting partition; The positions of the bumps and the splicing notches correspond to each other. The splicing block is embedded inside the splicing notch, and the sum of the widths of the bump and the splicing block is equal to the width of the splicing notch.
[0009] According to the above technical solution, one end of the supporting wall is fitted and installed with a splicing wall. One end inside the supporting frame is fixedly installed with a sound insulation board, and one end of the sound insulation board is fitted and fixedly installed with a heat insulation board. The fitting partition board and the positioning partition board are respectively closely attached to the two end surfaces of the concrete support block, and the positioning partition board is closely attached to one end surface of the heat insulation board.
[0010] According to the above technical solution, a water and electricity installation reserved mechanism is installed in the middle of the splicing wall. The water and electricity installation reserved mechanism includes a water pipe embedding groove. A water pipe embedding groove is opened in the middle of the splicing wall. Clamping arc plates are symmetrically installed inside the water pipe embedding groove. One end of the two clamping arc plates is rotatably connected to a rotating shaft at the top and bottom. Inside the water pipe embedding groove, operation round rods are symmetrically and rotatably installed at a position on one side of the clamping arc plates. A rotating block is fixedly connected to the middle of the operation round rod. A locking cylinder is fixedly connected to one end of the operation round rod. A locking knob is installed on the surface of the locking cylinder. Grooves are opened at the top and bottom of the other end of the operation round rod. Arc-shaped locking blocks are symmetrically installed on the surface of the operation round rod at positions corresponding to the grooves. Locking bolts are installed at both ends of the arc-shaped locking block. Fixed blocks are equidistantly installed on one inner side wall of the supporting wall. A line laying groove is opened at a position on one side of the water pipe embedding groove in the middle of the splicing wall. A laying board is fixedly installed inside the line laying groove. Wiring grooves are equidistantly opened on the middle surface of the laying board. Slots are equidistantly opened on the surface of the laying board at positions on both sides of the wiring grooves. Limit arc blocks are equidistantly installed on the surface of the laying board. Rubber insertion blocks are symmetrically fixedly connected to both ends of the limit arc block. Splicing grooves are symmetrically opened at both ends of the splicing wall. A sealing cover plate is fitted and installed on the surface of the splicing wall. Splicing strips are symmetrically fixedly connected to both ends of the sealing cover plate. Circular grooves are equidistantly opened on the surface of the splicing wall and the inner wall of the sealing cover plate. A pressing strip board is fixedly connected to the middle of one end of the sealing cover plate at a position corresponding to the line laying groove. An arc-shaped pressing plate is fixedly connected to the position of the sealing cover plate corresponding to the water pipe embedding groove. Installation square holes are symmetrically opened at the top and bottom of the pressing strip plate. Cover plates are installed at the top and bottom of the pressing strip plate. Installation blocks are symmetrically and fixedly connected to both ends of the cover plate. Installation screw holes are opened at the top and bottom of both sides of the splicing wall body. Installation grooves are opened at the top and bottom of both sides of the sealing cover plate. Installation bolts are installed in the middle of the installation grooves. Sealing round blocks are embedded on the surface of the installation grooves. A beautifying sticker plate is fitted and installed on the surface of the sealing cover plate.
[0011] According to the above technical solution, the rotating block and the rotating shaft are rotatably connected. The position of the locking knob corresponds to the position of the circular groove. The locking knob is embedded inside the circular groove. The number of fixing blocks is the same as the number of operating round rods. One end of the fixing block penetrates through the splicing wall body and extends into the inside of the supporting wall body. The operating round rod movably penetrates through the fixing block. The arc-shaped locking block is movably clamped in the middle of the groove. The arc-shaped locking block is closely attached to the surface of the fixing block.
[0012] According to the above technical solution, the rubber insertion block is movably inserted into the inside of the insertion slot. The pressing strip plate is closely attached to the surface of the limiting arc block. The positions of the splicing strip and the splicing groove correspond to each other. The splicing strip is movably inserted into the inside of the splicing groove.
[0013] According to the above technical solution, the positions of the installation screw holes and the installation grooves correspond one by one. The installation bolt movably penetrates through the sealing cover plate. One end of the installation bolt is embedded inside the installation screw hole. The sealing round block covers the surface of the installation bolt. The beautifying sticker plate is adhered to the surface of the sealing cover plate by glue.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is scientific and reasonable, and it is safe and convenient to use: 1. A splicing and stabilizing mechanism is provided. By using the fitting partition plate to closely adhere to the surface of the concrete support block, the splicing sleeve is positioned, so that the splicing screw rods and splicing sleeves of the upper and lower adjacent wall blocks correspond to each other. The adjacent wall blocks are locked and fixed by the splicing screw rods and splicing sleeves, which provides great convenience for the quick and convenient assembly of wall blocks, and enables the building wall to use this assembled type to shorten the building construction time. Meanwhile, the positioning rod is used to clamp one end of the connecting block to limit and fix the elastic clamping block, which plays a stabilizing role in the position of the protective cover plate, enabling the protective cover plate to closely adhere to one side of the supporting wall, serving as a sealing and flattening function. Moreover, the metal round rod can move up and down, allowing for its vertical adjustment, facilitating the change of the position of the positioning rod, providing sufficient space for the movement of the elastic clamping block, and thus providing great convenience for subsequently opening the protective cover plate. This enables the staff to adjust the splicing screw to disassemble the wall, ensuring that the walls can be separated from each other, allowing the wall blocks to be recycled, reducing resource waste, and realizing the concept of energy conservation and environmental protection.
[0015] 2. By making the splicing notch and the convex block correspond to each other, the left and right adjacent wall blocks can be spliced with each other. Moreover, the splicing block is fixedly embedded into the splicing notch along with the fixation of the protective cover plate, which plays a role in fixing the position of the convex block, thereby enhancing the connection strength between the left and right adjacent wall blocks and playing a certain role in positioning and flattening between the adjacent wall blocks, preventing the wall blocks from being misaligned and skewed, which may cause safety problems in the building. The positioning cylinder and the positioning circular hole cooperate with each other to position the protective cover plate, enabling the elastic clamping block to accurately engage with the positioning rod, making the installation more accurate. Meanwhile, the pressing block is used to press and fix the fitting partition board, enhancing the stability of the fitting partition board and the concrete support block.
[0016] 3. The extrusion spring and the movable rod cooperate with each other to facilitate the adjustment of the positions of the extrusion long plate and the limiting plate. The limiting plate closely adheres to one end surface of the positioning plate, playing a role in positioning and stabilizing the splicing screw, preventing the splicing screw from shaking and misaligning after the wall is spliced, which may cause the wall block to be unstable. Moreover, the relative position between the limiting plate and the positioning plate can be used to judge the rotation process of the splicing screw, making the installation and fixation more precise.
[0017] 4. A reserved mechanism for water and electricity installation is provided. The water pipe embedding groove and the circuit laying groove provide sufficient installation space for the water pipes and circuits to be installed in the building, and hide them inside the wall, reducing the occupied space and improving the space utilization rate. The operating round rod is used to adjust the positions of the rotating block and the clamping arc plate, causing the two clamping arc plates to change their positions and closely adhere to the surface of the installed pipeline, playing a role in clamping and stabilizing the pipeline, preventing the pipeline from shaking unstably inside it. The locking knob can directly lock and fix the operating round rod, keeping the position of the clamping arc plate unchanged, enhancing the stability of the pipeline. Moreover, the position of the clamping arc plate can be adjusted to meet pipelines of different diameters and sizes, with a wide range of applications. Meanwhile, the arc-shaped locking block is used to limit one end of the operating round rod, which improves the connection strength between the operating round rod and the fixed block, enables the operating round rod to rotate smoothly without detaching from the fixed block, and further increases the connection strength between the splicing wall and the supporting wall.
[0018] 5. The limiting arc block plays a role in positioning and arranging the laid cable lines, making the cable lines located inside the wire trough, separated from each other, neater, and preventing the lines from being messy and affecting subsequent identification and maintenance. The sealing cover plate is locked and fixed by the mounting bolts, covering the surface of the splicing wall. Then, the pressing strip is embedded into the line laying groove and closely attached to the surface of the limiting arc block, playing a role in pressing and stabilizing the limiting arc block to prevent it from falling off.
[0019] In summary, through the combination of the splicing and stabilizing mechanism and the water and electricity installation reserved mechanism, both exposed end faces of the wall can be disassembled and separated, providing great convenience for subsequent separation and disassembly of the wall blocks for recycling. Separating the fixed installation of the pipeline lines and the wall blocks from the two end faces respectively reduces the resource damage generated during building demolition, improves the resource recycling utilization rate, meets the requirements of modern society for building safety, comfort, energy conservation and environmental protection, reasonably controls the construction cost of the building, reduces environmental pollution, and fully meets the requirements of green buildings. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention.
[0021] In the drawings: Figure 1 is the structural schematic diagram of the present invention; Figure 2 is the installation structural schematic diagram of the protective cover plate of the present invention; Figure 3 is the installation structural schematic diagram of the splicing block of the present invention; Figure 4 is the installation structural schematic diagram of the fitting partition of the present invention; Figure 5 is the structural schematic diagram of the splicing and stabilizing mechanism of the present invention; Figure 6 is the installation structural schematic diagram of the elastic clamping block of the present invention; Figure 7 is the installation structural schematic diagram of the positioning rod of the present invention; Figure 8 is the installation structural schematic diagram of the sound insulation board of the present invention; Figure 9 is the structural schematic diagram of the water and electricity installation reserved mechanism of the present invention; Figure 10 It is a schematic diagram of the installation structure of the operating round rod of the present invention; Figure 11 It is a schematic diagram of the installation structure of the rotating block of the present invention; Figure 12 It is a schematic diagram of the installation structure of the pressing strip plate of the present invention; Figure 13 It is a schematic diagram of the installation structure of the limiting arc block of the present invention; Reference numerals in the figure: 1, supporting wall; 2, spliced wall; 3, supporting frame; 4, sound insulation board; 5, heat insulation board; 6, concrete support block; 7, splicing and stabilizing mechanism; 701, fitting partition board; 702, positioning partition board; 703, splicing sleeve; 704, lower threaded hole; 705, upper threaded hole; 706, through hole; 707, splicing screw; 708, positioning plate; 709, connecting block; 710, intercepting block; 711, positioning block; 712, metal round rod; 713, positioning rod; 714, protective cover plate; 715, elastic clamping block; 716, installation round plate; 717, fixed cylinder; 718, movable rod; 719, compression spring; 720, pressing long plate; 721, limiting plate; 722, positioning round hole; 723, positioning cylinder; 724, pressing block; 725, splicing notch; 726, convex block; 727, splicing block; 8, reserved mechanism for water and electricity installation; 801, water pipe embedding groove; 802, clamping arc plate; 803, rotating shaft; 804, operating round rod; 805, rotating block; 806, locking cylinder; 807, locking knob; 808, groove; 809, arc-shaped locking block; 810, locking bolt; 811, fixed block; 812, laying plate; 813, wire routing groove; 814, slot; 815, limiting arc block; 816, rubber plug; 817, splicing groove; 818, sealing cover plate; 819, splicing strip; 820, round groove; 821, pressing strip plate; 822, arc-shaped pressing plate; 823, installation square hole; 824, covering plate; 825, installation square block; 826, installation screw hole; 827, installation groove; 828, installation bolt; 829, sealing round block; 830, beautifying sticker; 831, line laying groove. Detailed implementation manners
[0022] The following is a description of the preferred embodiments of the present invention with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and explaining the present invention, and are not used to limit the present invention.
[0023] Embodiment: As Figures 1-13As shown in the figure, the present invention provides a technical solution, an assembled wall building device for house construction, including a supporting wall 1. A supporting frame 3 is fixedly installed on the inner wall of the supporting wall 1. A concrete support block 6 is installed in the middle of the inside of the supporting frame 3. A splicing and stabilizing mechanism 7 is installed inside the supporting frame 3; The splicing and stabilizing mechanism 7 includes a fitting partition 701; A fitting partition 701 is installed at a position on one side of the concrete support block 6 inside the supporting frame 3. A positioning partition 702 is installed at a position on the other side of the concrete support block 6 inside the supporting frame 3. Splicing sleeves 703 are symmetrically and fixedly connected to the bottom of the fitting partition 701. Lower threaded holes 704 are symmetrically opened at the bottom ends of the supporting wall 1 and the supporting frame 3. Upper threaded holes 705 are symmetrically opened at the top ends of the supporting wall 1 and the supporting frame 3. The positions of the upper threaded holes 705 and the lower threaded holes 704 correspond to each other. The splicing sleeves 703 are located directly above the lower threaded holes 704. Through holes 706 are opened at positions on one side of the upper threaded holes 705 at the top ends of the supporting wall 1 and the supporting frame 3. A splicing screw 707 is movably installed in the middle of the upper threaded hole 705; A positioning plate 708 is fixedly connected to the bottom end of the splicing screw 707. A connecting block 709 is fixedly installed at the bottom end of the positioning plate 708. One end of the bottom of the connecting block 709 is fixedly connected to an intercepting block 710. A metal round rod 712 is movably installed in the middle of the through hole 706. A positioning rod 713 is fixedly connected to the bottom end of the metal round rod 712. A protective cover plate 714 is fitted and installed on the surface of the supporting wall 1. Positioning blocks 711 are symmetrically and fixedly connected to the middle of the protective cover plate 714. One end of the positioning block 711 is fixedly connected to an elastic clamping block 715. The bottom of the positioning rod 713 closely adheres to one end surface of the intercepting block 710. A recess is formed between the positioning rod 713 and the connecting block 709. One end of the elastic clamping block 715 is movably inserted into the recess. By closely adhering the fitting partition 701 to the surface of the concrete support block 6, the splicing sleeve 703 is positioned, so that the splicing screws 707 and the splicing sleeves 703 of the adjacent upper and lower wall blocks correspond to each other, and the adjacent wall blocks are locked and fixed by the splicing screws 707 and the splicing sleeves 703, which provides great convenience for quickly and conveniently assembling the wall blocks, and enables the building wall to use this assembled method to shorten the building construction time; Meanwhile, the positioning rod 713 is stuck at one end of the connecting block 709 to limit and fix the elastic clamping block 715, which plays a stabilizing role in the position of the protective cover plate 714, enabling the protective cover plate 714 to closely adhere to one side of the supporting wall 1, playing a role of sealing and leveling. Moreover, the metal round rod 712 can move up and down, and its up-and-down adjustment is convenient for changing the position of the positioning rod 713, providing sufficient space for the movement of the elastic clamping block 715, and thus providing great convenience for subsequently opening the protective cover plate 714, facilitating the staff to adjust the splicing screw 707 to disassemble the wall, ensuring that the walls can be separated from each other, enabling the wall blocks to be recycled, reducing resource waste, and realizing the concept of energy conservation and environmental protection; Installation round plates 716 are symmetrically and fixedly installed in the middle of the fitting partition plate 701. Fixed cylinders 717 are fixedly installed in the middle of the two installation round plates 716. A movable rod 718 is movably installed in the middle of the fixed cylinder 717. Extrusion springs 719 are fixedly installed at the edges of the two installation round plates 716. An extrusion long plate 720 is fixedly connected between the ends of the two movable rods 718. Limiting plates 721 are symmetrically and fixedly connected to both ends of the extrusion long plate 720. The extrusion springs 719 are sleeved on the outer sides of the fixed cylinder 717 and the movable rod 718, and the extrusion springs 719 are connected to the extrusion long plate 720. The two limiting plates 721 are respectively closely attached to the surface of one end of the two positioning plates 708. By the mutual cooperation of the extrusion spring 719 and the movable rod 718, it is convenient to adjust the positions of the extrusion long plate 720 and the limiting plate 721. By the limiting plate 721 closely adhering to the surface of one end of the positioning plate 708, a positioning and stabilizing effect is exerted on the splicing screw 707, preventing the splicing screw 707 from shaking and misaligning after the wall is spliced, resulting in the instability of the wall block. Moreover, the relative position between the limiting plate 721 and the positioning plate 708 can be used to judge the rotation process of the splicing screw 707, making the installation and fixation more accurate; At the four corner positions at one end of the supporting wall 1, positioning round holes 722 are respectively opened. At the four corner positions of the protective cover plate 714, positioning cylinders 723 are fixedly connected. At the top and bottom of both side parts of the protective cover plate 714, pressing blocks 724 are fixedly connected. At one end of both the supporting wall 1 and the supporting frame 3, splicing notches 725 are symmetrically opened. At the middle part of one end of the supporting wall 1, convex blocks 726 are symmetrically and fixedly connected. At the middle part of one end of the protective cover plate 714, splicing blocks 727 are symmetrically and fixedly connected. The positioning cylinders 723 are movably inserted into the positioning round holes 722. The pressing blocks 724 are closely attached to the surface of the fitting partition plate 701. The positions of the convex blocks 726 and the splicing notches 725 correspond to each other. The splicing blocks 727 are embedded into the splicing notches 725. The sum of the widths of the convex blocks 726 and the splicing blocks 727 is equal to the width of the splicing notches 725. By making the splicing notches 725 and the convex blocks 726 correspond to each other, the left and right adjacent wall blocks can be spliced with each other. And as the protective cover plate 714 is fixed, the splicing blocks 727 are embedded into the splicing notches 725, which plays a role in fixing the position of the convex blocks 726, thereby improving the connection strength between the left and right adjacent wall blocks, and playing a certain role in positioning and leveling between the adjacent wall blocks, preventing the wall blocks from being misaligned and skewed, which may cause safety problems in the building. The positioning cylinders 723 and the positioning round holes 722 cooperate with each other to position the protective cover plate 714, so that the elastic clamping blocks 715 can be accurately clamped with the positioning rods 713, and the installation is more accurate. At the same time, the fitting partition plate 701 is pressed and fixed by the pressing blocks 724, improving the stability of the fitting partition plate 701 and the concrete support block 6.
[0024] At one end of the supporting wall 1, a splicing wall 2 is fitted and installed. At one end inside the supporting frame 3, a sound insulation board 4 is fixedly installed. At one end of the sound insulation board 4, a heat insulation board 5 is fitted and fixedly installed. The fitting partition plate 701 and the positioning partition plate 702 are respectively closely attached to the two end surfaces of the concrete support block 6. The positioning partition plate 702 is closely attached to one end surface of the heat insulation board 5; At the middle part of the splicing wall 2, a water and electricity installation reserved mechanism 8 is installed; The water and electricity installation reserved mechanism 8 includes a water pipe embedding groove 801; In the middle of the spliced wall body 2, a water pipe embedding groove 801 is provided. Inside the water pipe embedding groove 801, clamping arc plates 802 are symmetrically installed. At the top and bottom of one end of the two clamping arc plates 802, rotating shafts 803 are rotatably connected. Inside the water pipe embedding groove 801, operation round rods 804 are symmetrically and rotatably installed at a position on one side of the clamping arc plates 802. In the middle of the operation round rod 804, a rotating block 805 is fixedly connected. At one end of the operation round rod 804, a locking cylinder 806 is fixedly connected. On the surface of the locking cylinder 806, a locking knob 807 is installed. Between the rotating block 805 and the rotating shaft 803, a rotational connection is made. The position of the locking knob 807 corresponds to the position of the circular groove 820. The locking knob 807 is embedded inside the circular groove 820. At the top and bottom of the other end of the operation round rod 804, grooves 808 are provided. On the surface of the operation round rod 804, at positions corresponding to the grooves 808, arc-shaped locking blocks 809 are symmetrically installed. At both ends of the arc-shaped locking block 809, locking bolts 810 are installed. On one inner side wall of the supporting wall body 1, fixing blocks 811 are equidistantly installed. The number of the fixing blocks 811 is the same as the number of the operation round rods 804. One end of the fixing block 811 penetrates through the spliced wall body 2 and extends into the inside of the supporting wall body 1. The operation round rod 804 movably penetrates through the fixing block 811. The arc-shaped locking block 809 is movably clamped in the middle of the groove 808. The arc-shaped locking block 809 closely adheres to the surface of the fixing block 811; At a position on one side of the water pipe embedding groove 801 in the middle of the spliced wall body 2, a line laying groove 831 is provided. Inside the line laying groove 831, a laying board 812 is fixedly installed. On the middle surface of the laying board 812, wire grooves 813 are equidistantly provided. On the surface of the laying board 812, at positions on both sides of the wire grooves 813, slots 814 are equidistantly provided. On the surface of the laying board 812, limiting arc blocks 815 are equidistantly installed. At both ends of the limiting arc block 815, rubber plug blocks 816 are symmetrically fixedly connected. The rubber plug blocks 816 are movably inserted into the inside of the slots 814. The pressing strip board 821 closely adheres to the surface of the limiting arc block 815. The water pipe embedding groove 801 and the line laying groove 831 provide sufficient installation space for the water pipes and circuits that need to be installed in the building, and hide them inside the wall body, reducing the space they occupy and improving the space utilization rate; The operation round rod 804 is used to adjust the positions of the rotating block 805 and the clamping arc plates 802, so that the two clamping arc plates 802 change their positions and closely adhere to the surface of the installed pipeline, playing a role in clamping and stabilizing the pipeline, preventing the pipeline from shaking unstably inside it. The locking knob 807 can directly lock and fix the operation round rod 804, so that the position of the clamping arc plate 802 remains unchanged, improving the stability of the pipeline. Moreover, the position of the clamping arc plate 802 can be adjusted to meet pipelines of different diameters and sizes, with a wide range of applications; Meanwhile, the arc-shaped locking block 809 is used to limit one end of the operating round rod 804, which improves the connection strength between the operating round rod 804 and the fixed block 811, enables the operating round rod 804 to rotate smoothly without being separated from the fixed block 811, and further increases the connection strength between the splicing wall 2 and the supporting wall 1; Splicing grooves 817 are symmetrically formed at both ends of the splicing wall 2. A sealing cover plate 818 is fitted on the surface of the splicing wall 2. Splicing strips 819 are symmetrically and fixedly connected to both ends of the sealing cover plate 818. The positions of the splicing strips 819 and the splicing grooves 817 correspond to each other. The splicing strips 819 are movably embedded in the interior of the splicing grooves 817. Circular grooves 820 are equidistantly formed on the surface of the splicing wall 2 and the inner wall of the sealing cover plate 818. A pressing strip plate 821 is fixedly connected to the corresponding position of the middle part of one end of the sealing cover plate 818 and the line laying groove 831. An arc-shaped pressing plate 822 is fixedly connected to the corresponding position of one end of the sealing cover plate 818 and the water pipe embedding groove 801; Installation square holes 823 are symmetrically formed at the top and bottom of the pressing strip plate 821. Cover plates 824 are installed at the top and bottom of the pressing strip plate 821. Installation blocks 825 are symmetrically and fixedly connected to both ends of the cover plates 824. Installation screw holes 826 are formed at the top and bottom of both sides of the splicing wall 2. Installation grooves 827 are formed at the top and bottom of both sides of the sealing cover plate 818. Installation bolts 828 are installed in the middle of the installation grooves 827. Sealing round blocks 829 are embedded on the surface of the installation grooves 827. A beautifying sticker plate 830 is fitted on the surface of the sealing cover plate 818. The positions of the installation screw holes 826 and the installation grooves 827 correspond one by one. The installation bolts 828 movably penetrate through the sealing cover plate 818. One end of the installation bolts 828 is embedded in the interior of the installation screw holes 826. The sealing round blocks 829 cover the surface of the installation bolts 828. The beautifying sticker plate 830 is adhered to the surface of the sealing cover plate 818 by glue. The limiting arc block 815 plays a role in positioning and arranging the laid cable lines, enabling the cable lines to be located inside the wire trough 813, separated from each other, more orderly, and preventing the lines from being messy and affecting subsequent identification and maintenance; The sealing cover plate 818 is locked and fixed by the installation bolts 828 so that it covers the surface of the splicing wall 2. Then, the pressing strip plate 821 is embedded inside the line laying groove 831 and closely adheres to the surface of the limiting arc block 815, playing a role in pressing and stabilizing the limiting arc block 815 to prevent it from falling off. The splicing strips 819 and the splicing grooves 817 correspond to each other, playing a role in positioning the sealing cover plate 818, enabling the installation grooves 827 and the installation screw holes 826 to be quickly and accurately corresponded, and facilitating the fixed installation of the installation bolts 828.
[0025] Working principle and usage process of the present invention: First, during the construction of a house, the supporting wall 1 is spliced. Between adjacent wall blocks above and below, the top end of the supporting wall 1 is in contact with the bottom end of another supporting wall 1. The positioning partition 702 is closely attached to the end face of the heat insulation board 5. Then, the concrete support block 6 is pushed into the interior of the support frame 3 so that it is closely attached to the positioning partition 702. The fitting partition 701 is pressed on the surface of the concrete support block 6, so that the fitting partition 701 and the positioning partition 702 clamp and stabilize the concrete support block 6. After the fitting partition 701 is installed, both splicing sleeves 703 correspond to the lower threaded holes 704. The staff inserts the splicing screw 707 inside the lower wall block into the upper threaded hole 705 and rotates it upward so that it is screwed into the splicing sleeve 703 at the bottom of the upper wall block. Furthermore, the splicing sleeve 703 and the splicing screw 707 are spliced and fixed, so that the adjacent wall blocks above and below are spliced, locked and fixed; Moreover, when rotating the splicing screw 707, it is necessary to extrude the extrusion long plate 720 outward. The movable rod 718 is embedded in the fixed cylinder 717, and the extrusion spring 719 is compressed. Thus, when the splicing screw 707 rotates, it will not collide with the limiting plate 721. Until the positioning plate 708 rotates to a position corresponding to the limiting plate 721, release the extrusion long plate 720, and the extrusion spring 719 resets and elongates, so that the limiting plate 721 is closely attached to one end surface of the positioning plate 708, playing a role in positioning and stabilizing the positioning plate 708 and the splicing screw 707. Then, take the metal round rod 712, penetrate it upward through the through hole 706 from the inside of the supporting wall 1, and adjust its position so that the positioning rod 713 can move to one side of the connecting block 709, and insert its bottom downward into one side of the intercepting block 710, playing a limiting role on the positioning rod 713, making it closely attached to one side of the connecting block 709 and forming a depression with the connecting block 709; Next, during the wall assembly, the left and right adjacent wall blocks are spliced. The convex block 726 on the surface of one wall block is inserted into the splicing notch 725 at one end of the other wall block, so that the splicing between the left and right adjacent wall blocks is neat. The staff takes the protective cover plate 714 and covers it on the surface of the supporting wall 1. The positioning cylinder 723 is inserted into the positioning round hole 722, which plays a positioning role for both the protective cover plate 714 and the elastic clamping block 715, making the positions of the elastic clamping block 715 and the positioning rod 713 match. When the protective cover plate 714 is pushed inward for covering and sealing, the elastic clamping block 715 is blocked by the positioning rod 713. When the positioning block 711 continues to move forward, the elastic clamping block 715 is squeezed and deformed until it no longer contacts the positioning rod 713, and the elastic clamping block 715 resets and pops out, and its end is inserted into the recess formed by the assembly of the positioning rod 713 and the connecting block 709. The elastic clamping block 715 is limited by the positioning rod 713, improving the installation stability of the protective cover plate 714, preventing it from falling off and separating from the surface of the supporting wall 1. After the installation of the protective cover plate 714 is completed, the pressing block 724 presses tightly on the surface of the fitting partition plate 701, playing a fixing role for the fitting partition plate 701 and improving the installation stability of the fitting partition plate 701 and the concrete support block 6; After the wall assembly is completed, for the water pipes and cable lines that need to be installed inside the building, the water pipe embedding groove 801 and the line laying groove 831 at one end of the corresponding wall block can be selected. First, turn the locking knob 807 to loosen the fixation of the locking cylinder 806 and the operating round rod 804, and use the locking cylinder 806 to rotate the operating round rod 804, so that the rotating block 805 deflects by a certain angle. Then, the clamping arc plates 802 are pulled and move to both sides, and the two clamping arc plates 802 move away from each other. Push the water pipe into the water pipe embedding groove 801, and then perform a reverse rotation operation on the operating round rod 804, so that the two clamping arc plates 802 approach each other and are respectively close to both ends of the water pipe surface, playing a role in clamping and stabilizing the water pipe. Use the locking knob 807 to fix the operating round rod 804, improving the stability of the water pipe; Then, put the cable lines that need to be installed into the line laying groove 831, and the lines are respectively embedded in the wire grooves 813, keeping the lines tidy. Insert the rubber plug block 816 into the slot 814, and the limiting arc block 815 intercepts on the surface of the wire groove 813, playing a role in limiting and intercepting the lines inside the wire groove 813 to prevent the lines from detaching and shaking; After all the water pipes and lines are installed, take the sealing cover plate 818 and press it tightly against the surface of the spliced wall 2. The splicing strip 819 is inserted into the splicing groove 817, which plays a role in positioning the sealing cover plate 818. Insert the installation bolt 828 into the installation groove 827 and then into the installation screw hole 826. Tighten the installation bolt 828 to lock and fix the sealing cover plate 818 on the surface of the spliced wall 2. The sealing round block 829 is attached to the surface of the installation bolt 828 to cover and seal the installation groove 827, making the surface of the sealing cover plate 818 flat. Then, use glue to stick the beautifying sticker 830 on the surface of the sealing cover plate 818, making the surface of the wall block flat. If the building needs to be demolished, the wall can be disassembled and recycled. Since the beautifying sticker 830 is adhered by glue, it can be torn off. Then, dig out the sealing round block 829 and turn the knob of the installation bolt 828 to remove it, and the sealing cover plate 818 can be removed. For the same operation as above, first loosen the locking knob 807, and then rotate and adjust the operation round rod 804 so that the clamping arc plate 802 no longer clamps the water pipe. The staff can then remove the corresponding pipeline. Pull out the limit arc block 815 outward to disassemble and recycle the cable line in the middle of the wire trough 813. The staff then performs a disassembly operation on the other end face of the wall block. Starting from the top of the building, at the top of the uppermost wall block, it can be seen that the top of the metal round rod 712 is inserted into the through hole 706. Use the magnet to adsorb the top of the metal round rod 712 upward, making it move upward a certain distance. The bottom end of the positioning rod 713 is far away from the intercepting block 710, and then rotate and adjust it so that the positioning rod 713 is far away from the connecting block 709, and thus no longer limits and blocks the elastic clamping block 715. Then, the protective cover plate 714 can be pulled out and disassembled outward. The staff performs the same operation through the bottom end inside the uppermost wall block to adjust the position of the metal round rod 712 so that the lower elastic clamping block 715 is also no longer limited, and the protective cover plate 714 is removed. Then, repeat the operation downward all the time to remove all the protective cover plates 714. Then, by rotating the splicing screw rod 707 so that it no longer inserts into the splicing sleeve 703 at the bottom of the upper wall block, the adjacent upper and lower wall blocks can be separated. The adjacent left and right wall blocks can be separated by staggering them front and back. The recycled wall blocks can be reused in the construction of other buildings to realize the concept of energy conservation, environmental protection and green building.
[0026] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An assembled wall-building device for house construction, including a supporting wall (1), characterized in that: The inner wall of the support wall (1) is fixedly installed with a support frame (3). In the middle of the interior of the support frame (3), a concrete support block (6) is installed. A splicing and stabilizing mechanism (7) is installed inside the support frame (3). The splicing and stabilizing mechanism (7) includes a fitting partition board (701). A fitting partition board (701) is installed at one side position of the interior of the support frame (3) where the concrete support block (6) is located. A positioning partition board (702) is installed at the other side position of the interior of the support frame (3) where the concrete support block (6) is located. Splicing sleeves (703) are symmetrically connected to the bottom of the fitting partition board (701). Lower threaded holes (704) are symmetrically opened at the bottom ends of both the support wall (1) and the support frame (3). Upper threaded holes (705) are symmetrically opened at the top ends of both the support wall (1) and the support frame (3). Through holes (706) are opened at one side position of the top ends of the support wall (1) and the support frame (3) where the upper threaded holes (705) are located. A splicing screw rod (707) is movably installed in the middle of the upper threaded hole (705). A positioning plate (708) is connected to the bottom end of the splicing screw rod (707). A connecting block (709) is installed at the bottom end of the positioning plate (708). An intercepting block (710) is connected to one end of the bottom of the connecting block (709). A metal round rod (712) is movably installed in the middle of the through hole (706). A positioning rod (713) is connected to the bottom end of the metal round rod (712). A protective cover plate (714) is fitted and installed on the surface of the support wall (1). Positioning blocks (711) are symmetrically connected to the middle of the protective cover plate (714). An elastic clamping block (715) is connected to one end of the positioning block (711).
2. The prefabricated wall-building device for house construction according to claim 1, characterized in that, The positions of the upper threaded holes (705) and the lower threaded holes (704) correspond to each other, and the splicing sleeves (703) are located directly above the lower threaded holes (704). The bottom end of the positioning rod (713) closely adheres to the surface of one end of the intercepting block (710). A recess is formed between the positioning rod (713) and the connecting block (709). One end of the elastic clamping block (715) is movably embedded inside the recess.
3. The prefabricated wall building device for house construction according to claim 1, characterized in that, Installation round plates (716) are symmetrically and fixedly installed in the middle of the fitting partition board (701). Fixed cylinders (717) are fixedly installed in the middle of both of the installation round plates (716). A movable rod (718) is movably installed in the middle of the fixed cylinder (717). Compression springs (719) are fixedly installed at the edges of both of the installation round plates (716). An extrusion long plate (720) is fixedly connected between the ends of both of the movable rods (718). Limiting plates (721) are symmetrically and fixedly connected to both ends of the extrusion long plate (720). At each of the four corner positions at one end of the support wall (1), positioning round holes (722) are provided. At each of the four corner positions of the protective cover plate (714), positioning cylinders (723) are fixedly connected. At the top and bottom of both side parts of the protective cover plate (714), pressing blocks (724) are fixedly connected. At one end of both the support wall (1) and the support frame (3), splicing notches (725) are symmetrically provided. At the middle of one end of the support wall (1), convex blocks (726) are symmetrically and fixedly connected. At the middle of one end of the protective cover plate (714), splicing blocks (727) are symmetrically and fixedly connected.
4. The prefabricated wall building device for house construction according to claim 3, characterized in that, The compression spring (719) is sleeved on the outer sides of the fixed cylinder (717) and the movable rod (718). The compression spring (719) is connected to the compression long plate (720). The two limiting plates (721) are respectively closely attached to one end surface of the two positioning plates (708).
5. The prefabricated wall building device for house construction according to claim 3, characterized in that The positioning cylinder (723) is movably inserted into the positioning round hole (722). The pressing block (724) is closely attached to the surface of the fitting partition plate (701); The positions of the convex block (726) and the splicing notch (725) correspond to each other. The splicing block (727) is embedded into the splicing notch (725). The sum of the widths of the convex block (726) and the splicing block (727) is equal to the width of the splicing notch (725).
6. The prefabricated wall building device for house construction according to claim 3, characterized in that, One end of the support wall (1) is fitted with a splicing wall (2). At one end inside the support frame (3), a sound insulation board (4) is fixedly installed. At one end of the sound insulation board (4), a heat insulation board (5) is fitted and fixedly installed; The fitting partition plate (701) and the positioning partition plate (702) are respectively closely attached to both end surfaces of the concrete support block (6). The positioning partition plate (702) is closely attached to one end surface of the heat insulation board (5).
7. The prefabricated wall building device for house construction according to claim 6, characterized in that, In the middle of the splicing wall (2), a water and electricity installation reservation mechanism (8) is installed; The water and electricity installation reservation mechanism (8) includes a water pipe embedding groove (801); A water pipe embedding groove (801) is provided in the middle of the splicing wall (2). Inside the water pipe embedding groove (801), clamping arc plates (802) are symmetrically installed. At the top and bottom of one end of the two clamping arc plates (802), rotating shafts (803) are rotatably connected. Inside the water pipe embedding groove (801), operation round rods (804) are symmetrically and rotatably installed at a position on one side of the clamping arc plates (802). In the middle of the operation round rod (804), a rotating block (805) is fixedly connected. At one end of the operation round rod (804), a locking cylinder (806) is fixedly connected. On the surface of the locking cylinder (806), a locking knob (807) is installed. At the top and bottom of the other end of the operation round rod (804), grooves (808) are provided. At positions corresponding to the grooves (808) on the surface of the operation round rod (804), arc-shaped locking blocks (809) are symmetrically installed. At both ends of the arc-shaped locking block (809), locking bolts (810) are installed. On one inner side wall of the support wall (1), fixing blocks (811) are installed at equal intervals; In the middle of the spliced wall body (2) at a position on one side of the water pipe embedding groove (801), a line laying groove (831) is opened. Inside the line laying groove (831), a laying plate (812) is fixedly installed. On the middle surface of the laying plate (812), wire grooves (813) are equidistantly opened. On the surface of the laying plate (812) at positions on both sides of the wire grooves (813), slots (814) are equidistantly opened. On the surface of the laying plate (812), limiting arc blocks (815) are equidistantly installed. At both ends of the limiting arc block (815), rubber insertion blocks (816) are symmetrically and fixedly connected. At both ends of the spliced wall body (2), splicing grooves (817) are symmetrically opened. On the surface of the spliced wall body (2), a sealing cover plate (818) is fitted and installed. At both ends of the sealing cover plate (818), splicing strips (819) are symmetrically and fixedly connected. On the surface of the spliced wall body (2) and the inner wall of the sealing cover plate (818), circular grooves (820) are equidistantly opened. At a position corresponding to the line laying groove (831) in the middle of one end of the sealing cover plate (818), a pressing strip plate (821) is fixedly connected. At a position corresponding to the water pipe embedding groove (801) at one end of the sealing cover plate (818), an arc pressing plate (822) is fixedly connected. On the top and bottom of the pressing strip plate (821), installation square holes (823) are symmetrically opened. On the top and bottom of the pressing strip plate (821), covering plates (824) are installed. At both ends of the covering plate (824), installation square blocks (825) are symmetrically and fixedly connected. At the top and bottom of both sides of the spliced wall body (2), installation screw holes (826) are opened. At the top and bottom of both sides of the sealing cover plate (818), installation grooves (827) are opened. In the middle of the installation groove (827), an installation bolt (828) is installed. On the surface of the installation groove (827), a sealing circular block (829) is embedded. On the surface of the sealing cover plate (818), a beautifying sticker plate (830) is fitted and installed.
8. The prefabricated wall building device for house construction according to claim 7, characterized in that, Between the rotating block (805) and the rotating shaft (803), a rotational connection is provided. The position of the locking knob (807) corresponds to the position of the circular groove (820), and the locking knob (807) is embedded inside the circular groove (820). The number of fixing blocks (811) is the same as the number of operating round rods (804). One end of the fixing block (811) penetrates through the spliced wall body (2) and extends into the inside of the supporting wall body (1). The operating round rod (804) movably penetrates through the fixing block (811). The arc-shaped locking block (809) is movably clamped in the middle of the groove (808), and the arc-shaped locking block (809) closely adheres to the surface of the fixing block (811).
9. The prefabricated wall-building device for house construction according to claim 7, characterized in that, The rubber insertion block (816) is movably inserted into the inside of the slot (814), and the pressing strip plate (821) closely adheres to the surface of the limiting arc block (815). The positions of the splicing strip (819) and the splicing groove (817) correspond to each other, and the splicing strip (819) is movably embedded into the inside of the splicing groove (817).
10. The prefabricated wall-building device for house construction according to claim 7, characterized in that, The positions of the installation screw holes (826) and the installation grooves (827) correspond one by one. The installation bolts (828) movably penetrate through the sealing cover plate (818). One end of the installation bolt (828) is embedded inside the installation screw hole (826). The sealing round block (829) covers the surface of the installation bolt (828). The beautifying sticker plate (830) is adhered to the surface of the sealing cover plate (818) by glue.
Citation Information
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