Modular house thin wall structure

By using the slots and threaded connections of the modular thin-wall structure to connect the connecting plates, combined with the support mechanism and fixing components, the problem of the thin-wall structure being unable to provide support is solved, achieving efficient and stable thin-wall installation and reducing construction difficulty and cost.

CN224379174UActive Publication Date: 2026-06-19BCEG ADVANCED CONSTR MATERIALS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BCEG ADVANCED CONSTR MATERIALS
Filing Date
2025-06-13
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

In existing technologies, thin-walled structures cannot effectively utilize traditional steel mesh for support, resulting in high construction difficulty, high cost, and unstable installation.

Method used

The modular thin-wall structure is adopted, and the thin wall panels are stably spliced ​​and supported by the slots and threaded connection of the connecting plates, combined with the support mechanism and fixing components. The angle can be adjusted by adjusting bolts and control plates, and the return spring in the support mechanism provides elastic support to ensure the stability of the wall.

Benefits of technology

It improves the installation efficiency and stability of thin-walled structures, reduces construction difficulty and cost, solves the problem of uneven weight distribution in thin-walled panels, and adapts to the height adjustment needs of different installation scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of building technology and discloses a modular thin-wall structure for houses, including a foundation, a side wall fixedly connected to the top of the foundation, multiple thin wall panels installed on the top of the foundation, an installation mechanism and a support mechanism provided on the outside of the thin wall panels, the installation mechanism including multiple slots, the slots being formed on the outside of the thin wall panels, multiple side grooves on the outside of the thin wall panels, multiple connecting holes on the inside of the thin wall panels, and a casting cavity formed on the adjacent side of two thin wall panels, with a connecting plate threadedly connected to the outside of the slots. In this utility model, the thin wall panels on both sides are spliced ​​to form a casting cavity through the threaded connection structure between the slots on the outside of the thin wall panels and the connecting plate, thereby achieving efficient and stable forming of the thin wall structure, avoiding the use of traditional steel mesh, reducing construction difficulty and cost, and improving construction efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of building technology, and in particular to a modular thin-wall structure for houses. Background Technology

[0002] With the development of industrialized construction, prefabricated modular buildings are gradually becoming the mainstream trend. Compared with traditional cast-in-place concrete structures, prefabricated modular buildings have advantages such as faster construction speed, controllable quality, and environmental friendliness and energy saving. In prefabricated modular buildings, thin-walled structures are widely used due to their lightweight and space-saving characteristics.

[0003] A search revealed Chinese Patent Publication No. CN101089322A, which discloses a prefabricated wall panel for cast-in-place lightweight composite walls. The panel comprises a concrete surface and splicing units on the outer edge for joining adjacent prefabricated wall panels. These splicing units are either tenon or mortise-and-tenon structures that interlock, or they can be flat-mouth structures. The two sides of the cast-in-place composite wall are assembled using the prefabricated wall panels of this invention, and a lightweight concrete interlayer is poured between the prefabricated wall panels. Using the prefabricated wall panels of this invention to construct composite walls offers advantages such as simple construction process, high efficiency, and low cost. Furthermore, this wall provides good sound insulation, heat insulation, and thermal insulation properties.

[0004] The aforementioned patent specification mentions "a prefabricated wall panel for a cast-in-place lightweight composite wall, comprising a concrete panel and splicing units on the outer edge of the panel for joining adjacent prefabricated wall panels. The splicing units are mutually cooperating tenon or mortise structures, or can also be flat-mouth structures. The two sides of the cast-in-place composite wall are assembled into a wall using the prefabricated wall panels of this invention, and a lightweight concrete interlayer is poured between the prefabricated wall panels." This allows for rapid assembly, lightweight construction, and space saving. However, due to the thinness of the wall structure, the traditional steel mesh support method cannot be used, making it unsuitable for practical prefabricated thin wall structures. Therefore, a modular thin wall structure for housing is proposed to solve the above problems. Utility Model Content

[0005] To overcome the above shortcomings, this utility model provides a modular thin-wall structure for houses, which aims to improve the problem that the old-fashioned concrete pouring method of some devices in the prior art is to pour concrete with internal steel reinforcement molds, which is not suitable for actual prefabricated thin-wall structures.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A modular thin-wall structure for housing includes a foundation, a side wall fixedly connected to the top of the foundation, multiple thin wall panels installed on the top of the foundation, an installation mechanism and a support mechanism provided on the exterior of each thin wall panel, the installation mechanism including multiple slots, the slots being formed on the exterior of each thin wall panel, multiple side grooves on the exterior of each thin wall panel, multiple connecting holes on the interior of each thin wall panel, a casting cavity on an adjacent side of two thin wall panels, a connecting plate threaded to the exterior of each slot, an adjusting bolt rotatably connected to the interior of each connecting plate, a control plate threaded to the other end of each adjusting bolt, a splicing assembly threaded to the exterior of each thin wall panel, a fixing assembly threaded to the exterior of each thin wall panel, and a connecting assembly installed on the exterior of each thin wall panel.

[0008] The above technical solution involves first fixing the side walls to the top of the foundation, then placing thin wall panels on the foundation. The installation mechanism then functions, with the slots and connecting plates threaded together. Rotating the adjusting bolts causes them to rotate within the connecting plate and simultaneously move on the control plate, adjusting its position. The side slots and connecting holes provide space for the installation of other components. The pouring cavities on the adjacent sides of the two thin wall panels can be used for pouring and filling. Through the threaded connection of the splicing components, fixing components, and thin wall panels, as well as the installation of the connecting components, the thin wall panels are connected and fixed. The support mechanism provides support for the thin wall panels, ultimately completing the construction of the thin wall structure.

[0009] As a further description of the above technical solution:

[0010] The support mechanism includes a limiting plate, the limiting plate being externally threaded to the bottom of the thin wall panel, a support plate being externally threaded to the limiting plate, a stop plate being fixedly connected to the top of the support plate, the stop plate being externally threaded to the outside of the thin wall panel, a support seat being slidably connected inside the support plate, a protective tube being fixedly connected to the outside of the support plate, a return spring being sleeved inside the protective tube, and a pin being slidably connected inside the support plate.

[0011] Through the above technical solution: when the thin wall panel is subjected to lateral force, the force is first transmitted to the abutment plate. The abutment plate disperses the force to the support plate through a threaded connection. The support plate, through its threaded engagement with the limiting plate, transmits part of the force to the limiting plate, which then transmits the force to the bottom of the thin wall panel. If the lateral force continues to increase, the support plate will slide along the support seat. At this time, the return spring inside the protective tube is compressed, generating a reverse elastic force. This elastic force acts on the thin wall panel through the support plate and the abutment plate to resist the lateral force. When it is necessary to adjust the position of the support mechanism or perform maintenance, the pin can be pulled out. At this time, the sliding constraint between the support plate and the support seat is released, and the position of the support plate can be freely adjusted. After adjustment, the pin is inserted to fix the support plate on the support seat. The return spring plays a buffering and resetting role throughout the process. When the lateral force decreases or disappears, the elastic force of the return spring causes the support plate to slide back along the support seat, driving the abutment plate and the thin wall panel back to their initial positions.

[0012] As a further description of the above technical solution:

[0013] The fixing assembly includes a fixing plate, the outside of which is threaded to the outside of the thin wall panel, and a limiting block is fixedly connected to the outside of the fixing plate, the outside of which is snapped into the inside of the side groove.

[0014] The above technical solution involves aligning the fixing plate with the thin wall panel and rotating it during installation. The connection is achieved through external threads. During this process, the limiting block moves synchronously with the fixing plate. When the fixing plate and the thin wall panel are connected in place, the limiting block is precisely inserted into the side groove, thus achieving the positioning and fixing of the overall structure.

[0015] As a further description of the above technical solution:

[0016] The connecting assembly includes a connecting rod, the outside of which is installed inside the thin wall panel, a bracket is fixedly connected to the outside of the connecting rod, and multiple connecting blocks are fixedly connected to the outside of the bracket;

[0017] The above technical solution allows for the following: when connection is required, the connecting rod is installed inside the thin wall panel. During installation, the bracket moves synchronously with the connecting rod. Once the connecting rod is in place, the bracket is positioned at the predetermined location, at which point the multiple connecting blocks fixedly connected to its exterior are positioned accordingly, providing stable support for subsequent operations.

[0018] As a further description of the above technical solution:

[0019] The splicing assembly includes a mounting plate, the external thread of which is connected to the outside of the thin wall panel, an insert block is fixedly connected inside the mounting plate, a limit block is connected to the external thread of the insert block, and a splicing plate is fixedly connected to the outside of the limit block.

[0020] The above technical solution involves rotating the mounting plate during splicing to connect it to the thin wall panel via external threads. The insert block moves synchronously to the predetermined position along with the mounting plate. Then, the limiting block is rotated to connect with the insert block via threads. During this process, the splicing plate moves synchronously with the limiting block. When the limiting block and the insert block are in place, the splicing plate is positioned.

[0021] As a further description of the above technical solution:

[0022] The outer part of the mounting plate is snapped into the inside of the slot, the outer part of the splicing plate is snapped into the inside of the side slot, and the outer part of the splicing plate is threaded to the outside of the thin wall panel.

[0023] The above technical solution involves inserting the mounting plate into the slot during splicing to achieve initial positioning. Then, the splicing plate is rotated so that its external threads connect with the thin wall panel. During this process, the splicing plate is simultaneously inserted into the side groove. As the threaded connection is advanced, the mounting plate, splicing plate, and thin wall panel are gradually tightened, completing the splicing operation.

[0024] As a further description of the above technical solution:

[0025] The bracket is externally snapped onto the outside of the thin wall panel, the connecting block is externally snapped onto the inside of the side groove, and the connecting rod is externally installed inside the connecting hole;

[0026] The above technical solution involves aligning the connecting rod with the connecting hole and inserting it during installation. The bracket moves closer to the thin wall panel along with the connecting rod. When the connecting rod is fully inserted into the connecting hole, the bracket is precisely engaged with the outside of the thin wall panel, and the connecting block is simultaneously engaged into the side groove, completing the overall positioning.

[0027] As a further description of the above technical solution:

[0028] The outer inner side of the pin is fixedly connected to one end of the outer side of the return spring, the other end of the return spring is fixedly connected to the outside of the support plate, and one end of the pin is slidably connected to the inside of the support base.

[0029] The above technical solution works as follows: when the pin is subjected to external force, it will slide along the inside of the support and compress the return spring. The return spring undergoes elastic deformation due to the force and stores elastic potential energy. When the external force is removed, the return spring releases the elastic potential energy and pushes the pin to slide in the opposite direction along the inside of the support until it returns to its initial position.

[0030] This utility model has the following beneficial effects:

[0031] 1. In this utility model, the slots on the outside of the thin wall panel and the threaded connection structure of the connecting plate drive the adjusting bolts and the control plate to work, splicing the thin wall panels on both sides to form a casting cavity. When it is necessary to install the thin wall panel and adjust the angle, rotating the adjusting bolts can push the control plate to fix the adjacent thin wall panels in a specific position and adjust the angle. This not only has high installation efficiency, but also ensures the stability of the splice, effectively avoiding the problem of wall shaking caused by poor splicing. Thus, it realizes the efficient and stable forming of the thin wall structure, avoids the use of traditional steel mesh, reduces construction difficulty and cost, and improves construction efficiency.

[0032] 2. In this utility model, with the limiting plate threadedly connected to the bottom of the thin wall panel and threadedly connected to the support plate, and the abutment plate threadedly fixed to the outside of the thin wall panel, the weight of the thin wall panel can be stably transferred to the foundation, thus solving the problem of uneven weight transfer and excessive local stress of the thin wall panel. With the support base and support plate slidably connected, and with the cooperation of the return spring inside the protective tube, the support height can be flexibly adjusted to solve the problem of height adaptation in different installation scenarios. Attached Figure Description

[0033] Figure 1 This is a three-dimensional schematic diagram of a modular thin-walled house structure proposed in this utility model;

[0034] Figure 2 This is a schematic diagram of the casting cavity of a modular thin-walled house structure proposed in this utility model;

[0035] Figure 3 This is a structural schematic diagram of a thin wall panel for a modular thin wall structure for housing proposed in this utility model;

[0036] Figure 4 This is a schematic diagram of the connecting plate of a modular thin-walled house structure proposed in this utility model;

[0037] Figure 5 This is a structural schematic diagram of a fixing component for a modular thin-walled house structure proposed in this utility model;

[0038] Figure 6 This is a structural schematic diagram of the splicing components of a modular thin-walled house structure proposed in this utility model;

[0039] Figure 7 This is a structural schematic diagram of the support mechanism for a modular thin-walled house structure proposed in this utility model;

[0040] Figure 8 This is a schematic diagram of the connection components of a modular thin-walled house structure proposed in this utility model.

[0041] Legend:

[0042] 1. Foundation; 2. Side wall; 3. Thin wall panel; 4. Installation mechanism; 41. Slot; 42. Side groove; 43. Connecting hole; 44. Casting cavity; 45. Connecting plate; 46. Adjusting bolt; 47. Control plate; 5. Support mechanism; 51. Limiting plate; 52. Support plate; 53. Abutment plate; 54. Support seat; 55. Protective pipe; 56. Return spring; 57. Pin; 6. Fixing component; 61. Fixing plate; 62. Limiting block; 7. Connecting component; 71. Connecting rod; 72. Connecting block; 73. Bracket; 8. Splicing component; 81. Mounting plate; 82. Insert block; 83. Limiting block; 84. Splicing plate. Detailed Implementation

[0043] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0044] Reference Figure 1 , Figure 3 and Figure 4 The present invention provides an embodiment of a modular thin-wall structure for houses, including a foundation 1, which uniformly transfers the load to the stratum below the foundation 1. A side wall 2 is fixedly connected to the top of the foundation 1 for support and fixation. Multiple thin wall panels 3 are installed on the top of the foundation 1. The thin wall panels 3 are the main components of the modular thin-wall structure for houses, forming the walls of the house. Due to their thin design, they can effectively save building space and reduce the overall weight of the house while ensuring a certain strength and function. An installation mechanism 4 and a support mechanism 5 are provided on the outside of the thin wall panels 3.

[0045] Specifically, the modular thin-wall structure of the house is based on the foundation 1, which is used to evenly distribute the load to the underlying strata. The top of the foundation 1 is connected to the side wall 2, which provides support and fixation. At the same time, multiple thin wall panels 3 are installed on the foundation 1. These thin wall panels 3 constitute the walls of the house. They are designed to be thin and are the main components of the structure. The outer side of the thin wall panels 3 is equipped with an installation mechanism 4 and a support mechanism 5 to assist in the installation and stabilization of the thin wall panels 3.

[0046] The mounting mechanism 4 includes multiple slots 41, which are used to cooperate with the connecting plate 45 and the mounting plate 81 to realize the connection and fixation between thin wall panels 3 and between thin wall panels 3 and splicing components 8, fixing components 6 and connecting components 7. The multiple slots 41 are opened on the outside of the thin wall panels 3. Multiple side slots 42 are opened on the outside of the thin wall panels 3. The side slots 42 cooperate with the limiting block 62, connecting block 72 and splicing plate 84 to further enhance the connection strength and stability between thin wall panels 3, and at the same time play a positioning role. Multiple connecting holes 43 are opened inside the thin wall panels 3. The connecting holes 43 are used to install connecting rods 71 ​​to realize the mechanical connection between thin wall panels 3 and transfer load. A pouring cavity 44 is opened on the adjacent side of two thin wall panels 3. The pouring cavity 44 is used to fill concrete and other materials to form an integrated structure through pouring, which further enhances the connection strength between thin wall panels 3 and the overall stability of the wall.

[0047] Specifically, the installation mechanism 4 consists of multiple structures. The slots 41 are distributed on the outside of the thin wall panel 3. By adapting with the connecting plate 45 and the mounting plate 81, they undertake the connection and fixation between the thin wall panels 3 and between the thin wall panels 3 and the splicing components 8, fixing components 6, and connecting components 7. The side slots 42 on the outside of the thin wall panel 3 can cooperate with the limiting block 62, connecting block 72, and splicing plate 84 to play a positioning role during the splicing of the thin wall panels 3. The connecting holes 43 are located inside the thin wall panel 3 to provide installation space for the connecting rod 71 and realize the mechanical load transfer between the thin wall panels 3. The pouring cavities 44 opened on opposite sides of two adjacent thin wall panels 3 are reserved for filling concrete and other materials to form an integrated structure through the pouring operation.

[0048] The slot 41 is externally threaded with a connecting plate 45. The connecting plate 45, through the cooperation of the adjusting bolt 46 and the control plate 47, enables fine-tuning of the installation position and angle of the thin wall panel 3. The connecting plate 45 is internally rotatably connected with the adjusting bolt 46. By rotating the adjusting bolt 46, the control plate 47 can be moved within a certain range. The other end of the adjusting bolt 46 is threadedly connected with the control plate 47. The control plate 47 applies a certain pressure to the thin wall panel 3 to achieve fine-tuning of the position and angle of the thin wall panel 3. The thin wall panel 3 is externally threaded with a splicing component 8 and a fixing component 6. The thin wall panel 3 is externally installed with a connecting component 7.

[0049] Specifically, the slot 41 is connected to the matching connecting plate 45 by bolts. The connecting plate 45 is provided with a rotatable adjusting bolt 46. By rotating the adjusting bolt 46, the control plate 47 connected to it by threads can be driven to move within a certain range, thereby applying pressure to the thin wall panel 3 to finely adjust its installation position and angle. At the same time, the outer side of the thin wall panel 3 is connected to the splicing component 8 and the fixing component 6 by threads respectively. In addition, the connecting component 7 is also installed on the outside of the thin wall panel 3, together forming a connection system between the thin wall panel 3 and other components.

[0050] Reference Figure 5 , Figure 6 and Figure 8 The fixing component 6 includes a fixing plate 61, which provides mounting support for the limiting block 62. The fixing plate 61 is externally threaded to the outside of the thin wall panel 3. The limiting block 62 is fixedly connected to the outside of the fixing plate 61. The limiting block 62 restricts the relative displacement between the thin wall panels 3, especially the movement and rotation in the horizontal direction. The outside of the limiting block 62 is snapped into the inside of the side groove 42.

[0051] Specifically, the main body of the fixing component 6 is a fixing plate 61, which has bolts on its outer surface. It is connected to the outside of the thin wall panel 3 by tightening the bolts, providing an installation base for the entire fixing component 6. A limiting block 62 is directly fixedly installed on the outside of the fixing plate 61. The limiting block 62 is shaped to fit the side groove 42 and can be embedded in the side groove 42 opened on the outside of the thin wall panel 3. It can constrain the horizontal displacement and rotation of the adjacent thin wall panel 3 by snapping.

[0052] The connecting assembly 7 includes a connecting rod 71, which has high tensile and compressive strength and can effectively transfer the load between the walls, enhancing the integrity of the wall. The outside of the connecting rod 71 is installed inside the thin wall panel 3. A bracket 73 is fixedly connected to the outside of the connecting rod 71. The bracket 73 supports the connecting block 72 and tightly connects the connecting rod 71 to the thin wall panel 3. Multiple connecting blocks 72 are fixedly connected to the outside of the bracket 73. The connecting blocks 72 enhance the connection strength and stability between the thin wall panels 3. The outside of the bracket 73 is snapped into the outside of the thin wall panel 3. The outside of the connecting block 72 is snapped into the inside of the side groove 42. The outside of the connecting rod 71 is installed inside the connecting hole 43.

[0053] Specifically, the connecting component 7 has a connecting rod 71 as its core component, which is installed in the connecting hole 43 inside the thin wall panel 3. A bracket 73 is fixed on the outer surface of the connecting rod 71. The bracket 73 is shaped to fit the outer contour of the thin wall panel 3 and can be snapped onto the outside of the thin wall panel 3 to provide positioning and support. Multiple connecting blocks 72 are fixed on the bracket 73. These connecting blocks 72 fit the shape of the side groove 42 on the outside of the thin wall panel 3 and can be embedded in the side groove 42. Through the combination of the bracket 73 and the connecting blocks 72, a connection structure between the thin wall panels 3 is constructed.

[0054] The splicing assembly 8 includes a mounting plate 81, which provides a mounting base for the insert 82, which is inserted into the corresponding holes of adjacent thin wall panels 3, providing positioning and initial connection for splicing the thin wall panels 3. The external thread of the mounting plate 81 is connected to the outside of the thin wall panel 3. The insert 82 is fixedly connected inside the mounting plate 81. The insert 82 is threadedly connected to the limiting block 83, which can further fix the position of the splicing plate 84 and ensure the reliability of the splicing. The external thread of the insert 82 is connected to the limiting block 83, which restricts the position of the splicing plate 84 and is connected to the insert 82 on the mounting plate 81. The external fixed connection of the limiting block 83 is the splicing plate 84. The splicing plate 84 and the insert 82 connect adjacent thin wall panels 3 together, enhancing the integrity and continuity of the wall. The external part of the mounting plate 81 is snapped into the inside of the slot 41, and the external part of the splicing plate 84 is snapped into the inside of the side slot 42. The external thread of the splicing plate 84 is connected to the outside of the thin wall panel 3.

[0055] Specifically, the splicing assembly 8 consists of multiple cooperating parts. The mounting plate 81 with bolts is fixed to the outside of the thin wall panel 3, and it can also be inserted into the slot 41 on the outside of the thin wall panel 3. The mounting plate 81 has a fixed insert 82 inside, and the insert 82 has a bolt inside, which is engaged with the matching limiting block 83. The splicing plate 84 is fixed to the outside of the limiting block 83. The splicing plate 84 can be inserted into the side slot 42 on the outside of the thin wall panel 3, and it is also connected to the outside of the thin wall panel 3 by bolts, so as to realize the splicing of adjacent thin wall panels 3.

[0056] Reference Figure 1 , Figure 2 and Figure 7 The support mechanism 5 includes a limiting plate 51, which limits the horizontal displacement of the thin wall panel 3 and fixes the thin wall panel 3 in a certain position to prevent the wall from sliding or tilting when under stress, thus ensuring the stability of the wall. The external thread of the limiting plate 51 is connected to the bottom of the thin wall panel 3. The external thread of the limiting plate 51 is connected to a support plate 52, which supports the thin wall panel 3 and transfers the weight of the thin wall panel 3 to the foundation 1. The top of the support plate 52 is fixedly connected to a stop plate 53, which increases the contact area between the support plate 52 and the thin wall panel 3, so that the supporting force is more evenly distributed on the thin wall panel 3, avoiding excessive local stress that could damage the wall. The external thread of the stop plate 53 is connected to the outside of the thin wall panel 3. The support plate 52 is slidably connected to a support seat 54, which can adjust the support height as needed.

[0057] Specifically, the support mechanism 5 is based on the limiting plate 51, which has bolts on its outer surface and is fixed to the bottom of the thin wall panel 3 by screwing. This restricts the horizontal movement of the thin wall panel 3. The outer side of the limiting plate 51 is also connected to the support plate 52 by bolts. The top of the support plate 52 is fixed with a stop plate 53, which has bolts and can be connected to the outer side of the thin wall panel 3. The support plate 52 has a sliding support seat 54 inside, which can move in a certain direction within the support plate 52. The limiting plate 51, the support plate 52, the stop plate 53 and the support seat 54 cooperate with each other to form a support structure between the thin wall panel 3 and the foundation 1.

[0058] The support plate 52 is externally fixedly connected to a protective tube 55, which protects the return spring 56 from damage by external factors and guides the extension and retraction direction of the return spring 56 to ensure its normal operation. The return spring 56 is sleeved inside the protective tube 55, and the return spring 56 provides a return force to the pin 57. The support plate 52 is internally slidably connected to a pin 57, which fixes the support seat 54 in a specific position inside the support plate 52 to prevent the support seat 54 from sliding when subjected to force. The outer inner side of the pin 57 is fixedly connected to one end of the return spring 56, and the other end of the return spring 56 is fixedly connected to the outside of the support plate 52. One end of the pin 57 is slidably connected to the inside of the support seat 54.

[0059] Specifically, a protective tube 55 is fixed to the outside of the support plate 52, and a return spring 56 is sleeved inside it. One end of the return spring 56 is fixed to the outside of the support plate 52, and the other end is connected to the inside of the pin 57. The pin 57 can slide inside the support plate 52, and one end of it can extend into the support seat 54. Through cooperation with the support seat 54, the support seat 54 is fixed in a specific position inside the support plate 52. The protective tube 55 provides protection and extension guidance for the return spring 56, thus constructing a structural system for fixing and resetting the position of the support seat 54.

[0060] Working principle: Foundation 1 is used for construction. The top side wall 2 provides initial support and positioning reference. Thin wall panel 3 is installed on top of foundation 1 through support mechanism 5. Limiting plate 51 is threaded to the bottom of thin wall panel 3 and threaded to support plate 52. The abutment plate 53 on the top of support plate 52 is threaded to the outside of thin wall panel 3, transferring the weight of thin wall panel 3 to foundation 1. The abutment plate 53 increases the contact area to make the force uniform. Support seat 54 can slide inside support plate 52 to adjust the support height. The return spring 56 inside the protective tube 55 provides return force for pin 57. When support seat 54 is adjusted to a suitable position, pin 57 is inserted into support seat 54 under the action of return spring 56 to fix it and prevent support seat 54 from sliding under force, ensuring the stability of thin wall panel 3 in the vertical direction.

[0061] The slots 41 in the mounting mechanism 4 engage with the connecting plate 45 and the mounting plate 81 respectively. When the mounting plate 81 is engaged in the slot 41, the insert block 82 is inserted into the outside of the limiting block 83. The limiting block 83 and the insert block 82 are threaded together, causing the splicing plate 84 to engage in the slot 41 of another thin wall panel 3, thus initially completing the splicing of the thin wall panels 3. At the same time, the fixing plate 61 of the fixing component 6 is threadedly fixed to the outside of the thin wall panel 3, and the limiting block 62 on it engages in the side groove 42, connecting multiple thin wall panels 3 together and limiting the relative displacement and rotation of the thin wall panels 3 in the horizontal direction. The connecting rod 71 of the connecting component 7 is inserted into the connecting hole 43, the bracket 73 is fixed to the outside of the thin wall panel 3, and the connecting block 72 is inserted into the slot 41 and the side slot 42 to further enhance the connection strength and integrity between the thin wall panels 3. After the thin wall panels 3 are spliced, the pouring cavity 44 is filled with concrete and other materials. After solidification, it forms an integrated structure, which greatly improves the connection strength of the wall. In addition, the connecting plate 45 cooperates with the adjusting bolt 46 and the control plate 47. By rotating the adjusting bolt 46, the control plate 47 is moved to make fine adjustments to the installation position and angle of the thin wall panel 3 to ensure accurate splicing.

[0062] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model 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 make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A modular house thin wall structure comprising a foundation (1), characterized in that: The foundation (1) is fixedly connected to a side wall (2), and a plurality of thin wall panels (3) are installed on the top of the foundation (1). An installation mechanism (4) is provided on the outside of the thin wall panels (3), and a support mechanism (5) is provided on the outside of the thin wall panels (3). The installation mechanism (4) includes multiple slots (41), the external of the multiple slots (41) is opened on the outside of the thin wall panel (3), the external of the thin wall panel (3) is provided with multiple side grooves (42), the internal of the thin wall panel (3) is provided with multiple connecting holes (43), the adjacent side of the two thin wall panels (3) is provided with a casting cavity (44), the external of the slots (41) is threaded with a connecting plate (45), the internal of the connecting plate (45) is rotatably connected with an adjusting bolt (46), the other end of the adjusting bolt (46) is threaded with a control plate (47), the external of the thin wall panel (3) is threaded with a splicing component (8), the external of the thin wall panel (3) is threaded with a fixing component (6), and the external of the thin wall panel (3) is installed with a connecting component (7).

2. The modular thin-wall structure for housing according to claim 1, characterized in that: The support mechanism (5) includes a limiting plate (51), the external thread of which is connected to the bottom of the thin wall panel (3), the external thread of which is connected to a support plate (52), the top of which is fixedly connected to a stop plate (53), the external thread of which is connected to the outside of the thin wall panel (3), the inside of which is slidably connected to a support seat (54), the outside of which is fixedly connected to a protective tube (55), the inside of which is fitted with a return spring (56), and the inside of which is slidably connected to a pin (57).

3. A modular thin-walled house structure according to claim 1, characterized in that: The fixing component (6) includes a fixing plate (61), the outside of which is threaded to the outside of the thin wall panel (3), and a limiting block (62) is fixedly connected to the outside of the fixing plate (61), the outside of which is snapped into the inside of the side groove (42).

4. A modular thin-walled house structure according to claim 3, characterized in that: The connecting assembly (7) includes a connecting rod (71), the outside of which is installed inside the thin wall panel (3), and a bracket (73) is fixedly connected to the outside of the connecting rod (71), and a plurality of connecting blocks (72) are fixedly connected to the outside of the bracket (73).

5. A modular thin-walled housing structure according to claim 4, characterized in that: The splicing assembly (8) includes a mounting plate (81), the external thread of which is connected to the outside of the thin wall panel (3), and an insert (82) is fixedly connected inside the mounting plate (81). A limit block (83) is connected to the external thread of the insert (82), and a splicing plate (84) is fixedly connected to the outside of the limit block (83).

6. A modular thin-walled housing structure according to claim 5, characterized in that: The outside of the mounting plate (81) is snapped into the inside of the slot (41), the outside of the splicing plate (84) is snapped into the inside of the side slot (42), and the outside of the splicing plate (84) is threaded to the outside of the thin wall panel (3).

7. A modular thin-walled housing structure according to claim 4, characterized in that: The bracket (73) is externally snapped onto the outside of the thin wall panel (3), the connecting block (72) is externally snapped onto the inside of the side groove (42), and the connecting rod (71) is externally installed inside the connecting hole (43).

8. A modular thin-walled house structure according to claim 2, characterized in that: The outer inner side of the pin (57) is fixedly connected to one end of the outer side of the return spring (56), the other end of the return spring (56) is fixedly connected to the outside of the support plate (52), and one end of the pin (57) is slidably connected to the inside of the support base (54).

Citation Information

Patent Citations

  • Prefabricated wall board of cast-in-plast light compound wall

    CN101089322A