Modular integrated house

The modular integrated house features a detachable connection design for roof panels, exterior wall modules, and floor modules, solving transportation and installation challenges and achieving low-cost, efficient installation and sealing, making it suitable for various building scenarios.

CN224119719UActive Publication Date: 2026-04-14GOLDEN DIANSHI (BEIJING) ARCHITECTURAL DESIGN CONSULTING SERVICE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing modular integrated houses suffer from high costs during transportation and installation, high installation difficulty, high technical requirements for workers, and water and air leaks caused by gaps in the joints. Furthermore, they are difficult to industrialize and assemble in a simple, user-friendly manner.

Method used

The system employs detachable roof panel modules, exterior wall modules, and floor combination modules. These modules are connected via threaded holes, bolts, and other methods, combined with sealing strips and guide grooves to achieve detachable connection and sealing between modules. Standardized modular units are used for factory prefabrication and on-site assembly.

Benefits of technology

It achieves low-cost transportation and efficient installation, reduces labor costs, improves the convenience of installation and the sealing of connections, avoids gap problems, improves production efficiency and product quality, and is suitable for a variety of building scenarios.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224119719U_ABST
Patent Text Reader

Abstract

The utility model relates to a modularized integrated house which comprises a roof panel module, an outer wall module and a floor combination module, and the roof panel module and the floor combination module are respectively and detachably connected with the outer wall module. The outer wall module comprises a plurality of outer wall panel bodies, each outer wall panel body comprises an outer wall panel shell, an outer wall panel framework is arranged in each outer wall panel shell, and the outer wall panel shells surround the front side, the rear side, the left side and the right side of each outer wall panel framework; a space enclosed by the external wall panel shell and the external wall panel framework is filled with an external wall panel thermal insulation layer; every two adjacent external wall panel bodies are detachably connected through one external wall panel butt joint plate, and the adjacent external wall panel bodies and external wall panel butt joint plates are detachably connected through threaded holes and bolts. Outer wall panel butt joint pipes are symmetrically arranged at the left end and the right end of the outer wall panel framework. The bottom of the roof panel module and the top of the floor combination module are respectively provided with a positioning pin corresponding to the external wall panel butt joint pipe.
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Description

Technical Field

[0001] This utility model relates to the field of integrated housing, and more specifically, to a modular integrated housing. Background Technology

[0002] Traditional construction methods (cast-in-place concrete, on-site welding of steel structures, etc.) remain the mainstream in the global construction market, but they still suffer from significant drawbacks such as long construction cycles, labor intensity, and resource waste. In contrast, modular construction, which involves prefabricating components or modular units (such as room units) in factories and then transporting them to the site for assembly, offers advantages such as faster construction, environmental friendliness, and lower labor requirements. Modular construction is rapidly penetrating the residential, commercial, and emergency sectors and is expected to capture a larger share of the standardized market in the future.

[0003] Common modular integrated houses include capsule houses, packing box houses, and container houses. They are usually manufactured and assembled in factories, and after assembly, they are transported to their destinations via logistics for use. They are widely used due to their convenience.

[0004] Because prefabricated houses are typically manufactured in factories far from the intended use site, transporting them as a whole incurs high costs, especially if the product is exported overseas. On the other hand, while on-site assembly using modular components significantly reduces transportation costs, labor costs are extremely high, particularly in regions like Europe and America where modular homes and prefabricated houses are prevalent. This creates a dilemma for prefabricated houses: transporting them as a whole incurs high costs, and disassembling them into several modules for on-site assembly incurs exorbitant labor costs. Furthermore, prefabricated houses are difficult to install and require highly skilled workers. Additionally, achieving mass production of roof, wall, and floor modules, and ensuring airtightness, watertightness, and safety when connecting adjacent modules, remains a thorny issue in prefabricated house assembly.

[0005] The market urgently needs an integrated housing system that can be industrialized, assembled using modular components, and is easy to use. This system would improve product quality, reduce production costs, solve the problems of high overall transportation costs and modular component assembly quality, effectively save on on-site installation labor costs, and fundamentally eliminate problems such as component damage and reduced lifespan caused by worker error. Utility Model Content

[0006] In view of the above-mentioned technical problems in related technologies, this utility model proposes a modular integrated house that can overcome the above-mentioned shortcomings of the prior art.

[0007] To achieve the above-mentioned technical objectives, the technical solution of this utility model is as follows:

[0008] A modular integrated house includes a roof panel module, an exterior wall module, and a floor assembly module, wherein the roof panel module and the floor assembly module are detachably connected to the exterior wall module.

[0009] The exterior wall module includes several exterior wall panel bodies. Each exterior wall panel body includes an exterior wall panel shell. The exterior wall panel shell is provided with an exterior wall panel frame that plays a supporting role. The exterior wall panel shell surrounds the front, back, left, and right sides of the exterior wall panel frame. The space enclosed by the exterior wall panel shell and the exterior wall panel frame is filled with an exterior wall panel insulation layer.

[0010] The two adjacent exterior wall panels are detachably connected by an exterior wall panel butt plate, and the adjacent exterior wall panels and the exterior wall panel butt plate are detachably connected by threaded holes and bolts.

[0011] The outer wall panel frame is symmetrically provided with outer wall panel connecting pipes at both ends of the left and right sides;

[0012] The bottom of the roof panel module and the top of the floor assembly module are respectively provided with positioning pins corresponding to the external wall panel connecting pipes. The external wall panel insulation layer serves to provide heat insulation, thermal insulation, and waterproofing. The positioning pins of the roof panel module are inserted downwards into the corresponding external wall panel connecting pipes, while the positioning pins of the floor assembly module are inserted upwards into the corresponding external wall panel connecting pipes, thereby enabling the roof panel module and floor assembly module to be detachably connected to the external wall module.

[0013] Preferably, the outer wall panel shell is provided with outer wall panel mating parts at the left and right ends for the outer wall panel connecting pipe to be inserted, and the corresponding outer wall panel mating parts, outer wall panel connecting pipe, and outer wall panel mating plate are connected by threaded holes and bolts.

[0014] Preferably, the top surface, bottom surface and two sides of the exterior wall panel body are respectively provided with exterior wall panel sealing strips.

[0015] Preferably, the sidewall of the outer wall panel mating part is recessed inward relative to the outer wall panel shell on which it is located, and two adjacent outer wall panel bodies together form an outer wall panel mating groove that accommodates the outer wall panel mating plate through the adjacent outer wall panel mating parts.

[0016] Preferably, the length of the outer wall panel butt plate is less than or equal to the length of the outer wall panel butt groove.

[0017] Preferably, the width of the outer wall panel mating plate is less than or equal to the width of the outer wall panel mating groove.

[0018] Preferably, the thickness of the outer wall panel butt plate is less than or equal to the depth of the outer wall panel butt groove.

[0019] Preferably, the outer wall panel shell is provided with an outer wall panel groove on the outside of the outer wall panel mating part.

[0020] Preferably, the roof panel module includes a plurality of roof panel bodies arranged in a row, each roof panel body including a roof panel protective shell, the roof panel protective shell having a roof panel frame, and the space enclosed by the roof panel protective shell and the roof panel frame together being filled with a roof panel filling layer.

[0021] Preferably, the bottom of the mating end of the roof panel protective shell is provided with a roof panel mating groove, and a roof panel mating plate is detachably connected in the roof panel mating groove.

[0022] Preferably, in implementation, two adjacent roof panel protective shells are detachably connected via corresponding roof panel mating grooves and roof panel mating plates, thereby detachably connecting the two adjacent roof panel bodies together. The roof panel filling layer is filled with fireproof and waterproof materials.

[0023] Preferably, the length of the roof panel mating plate is less than or equal to the length of the roof panel mating groove.

[0024] Preferably, the width of the roof panel mating plate is less than or equal to the width of the roof panel mating groove × 2.

[0025] Preferably, the thickness of the roof panel mating plate is equal to the depth of the roof panel mating groove.

[0026] Preferably, the roof panel mating groove and the roof panel mating plate are connected by threaded holes and bolts.

[0027] Preferably, the roof panel frame includes a main roof panel frame, and the main roof panel frame has an n-shaped cross-section in the left-right direction.

[0028] Preferably, the positioning pin is provided at the bottom of the main frame of the roof panel.

[0029] Preferably, the front and rear ends of the main frame of the roof panel are respectively detachably connected with roof panel sealing components.

[0030] Preferably, the roof panel sealing assembly includes a roof panel sealing base plate, the inner side of the roof panel sealing base plate is provided with a plurality of roof panel first embedding blocks, and the left and right ends of the inner side of the roof panel sealing base plate are respectively provided with a roof panel second embedding block, the roof panel second embedding block being located below the roof panel first embedding block;

[0031] The main frame of the roof panel has several roof panel embedding holes at its front and rear ends, respectively corresponding to the first embedding block and the second embedding block of the roof panel.

[0032] The lower part of the back side of the second embedding block of the roof panel is provided with a second embedding block slope;

[0033] The lower part of the main frame of the roof panel is provided with a roof panel V-shaped transmission component, and the upper end of the roof panel V-shaped transmission component is provided with a V-shaped transmission component inclined surface, which corresponds to the inclined surface of the second embedded block.

[0034] The lower part of the main frame of the roof panel is provided with a transmission through hole for the V-shaped transmission component of the roof panel to slide through. The V-shaped transmission component of the roof panel passes downward through the transmission through hole and exits from the main frame of the roof panel.

[0035] Preferably, the transmission through hole is located on one side of the adjacent positioning pin.

[0036] Preferably, the roof panel V-shaped transmission component includes a roof panel transmission block and a V-shaped transmission bar. The roof panel transmission block is connected to the upper part of the V-shaped transmission bar. The inclined surface of the transmission component is located on the roof panel transmission block. The roof panel transmission block is located in the roof panel embedding hole corresponding to the second embedding block of the roof panel. The size of the roof panel transmission block is larger than the transmission through hole. The lower part of the V-shaped transmission bar slides through the transmission through hole and extends from the inside of the main frame of the roof panel to its outside.

[0037] Preferably, the outer surface of the roof panel protective shell is provided with an n-shaped roof panel guide groove.

[0038] Preferably, the floor assembly module includes several floor support frames, and each floor support frame is provided with a composite floor on its upper part; the floor support frame includes a floor bottom support, and the upper part of the floor bottom support is provided with two first floor horizontal tubes and two second floor horizontal tubes, and the two first floor horizontal tubes and the two second floor horizontal tubes are respectively arranged opposite to each other;

[0039] Two adjacent second horizontal tubes of the floor are passed through by corresponding horizontal connecting pieces of the floor. The outer diameter of the horizontal connecting pieces of the floor matches the inner diameter of the second horizontal tubes of the floor, thereby connecting adjacent floor support frames into a whole.

[0040] Preferably, the horizontal connecting member of the floor is a tube, column, or rod, as long as it can connect two adjacent second horizontal tubes of the floor.

[0041] Preferably, the length and width of the composite floor in the horizontal direction are smaller than the length and width of the floor support frame in the horizontal direction, respectively; a floor docking groove is formed between two adjacent composite floorboards, and a floor docking plate is provided in the floor docking groove. The top of the floor docking plate is flush with the top of the composite floorboard, and the top of the composite floorboard is higher than the top of the first horizontal tube of the floorboard, the second horizontal tube of the floorboard, and the bottom support of the floorboard.

[0042] Preferably, the composite floor includes an upper floor layer and a lower floor layer, wherein the width of the upper floor layer is less than the width of the lower floor layer, and the length of the upper floor layer is greater than the length of the lower floor layer.

[0043] Preferably, the lower layer of the floor is provided with floor connecting parts corresponding to the floor connecting plates, and two adjacent composite floorboards are detachably connected through the corresponding floor connecting plates and floor connecting parts.

[0044] Preferably, the floor mating groove is located between the upper layers of two adjacent floor panels; all the first and second horizontal floor panels on the same floor support frame form a receiving groove corresponding to the lower layer of the floor panel.

[0045] Preferably, the thickness of the floor mating plate is equal to the thickness of the upper layer of the floor.

[0046] Preferably, the exterior wall module is located on the outer side of the upper layer of the floor, and the positioning pin is provided on the top of the second horizontal tube of the floor.

[0047] Preferably, the modular integrated house has an internal partition module, which includes several internal partition wall panels. Two adjacent internal partition wall panels are detachably connected by internal partition connecting parts. All internal partition wall panels and internal partition connecting parts can be used with threaded holes, bolts, and other accessories to construct the internal partition module.

[0048] Preferably, the inner partition wall panel includes an inner partition main body, and the left and right ends of the inner partition main body are respectively provided with inwardly recessed inner partition panel docking parts. The adjacent inner partition panel docking parts are detachably connected to the inner partition docking parts, or the inner partition main body is directly detachably connected to the inner partition docking parts.

[0049] Preferably, the inner compartment connecting member is L-shaped, straight, cross-shaped, or plate-shaped. The inner compartment connecting member and the inner compartment wall panel can be detachably connected through threaded holes or bolts.

[0050] Preferably, when the inner compartment connecting member is L-shaped, it may include a first connecting plate and a second connecting plate; between two adjacent inner compartment wall panels, the first connecting plate is detachably connected to the inner compartment panel connecting part of the first inner compartment wall panel, and the second connecting plate is detachably connected to the inner compartment main body or the inner compartment panel connecting part of the second inner compartment wall panel.

[0051] Preferably, the first docking plate and the corresponding inner compartment plate docking part are threadedly connected by a threaded hole and a screw.

[0052] Preferably, the second mating plate is threadedly connected to the corresponding side of the inner compartment main body or the mating part of the inner compartment plate through a threaded hole and a screw.

[0053] Preferably, the top and bottom of the inner compartment panel joint are respectively provided with inner compartment connecting pipes, and the outer side of the inner compartment connecting pipes is provided with a connecting pipe side opening;

[0054] The first docking plate is provided with a first docking plate threaded hole at the top and bottom respectively, the second docking plate is provided with a second docking plate threaded hole at the top and bottom respectively, and the inner compartment docking pipe is provided with a third docking groove threaded hole corresponding to the first docking plate threaded hole.

[0055] The corresponding threaded hole one of the mating plate and the threaded hole three of the mating groove are connected by the first screw of the inner compartment. The rod of the first screw of the inner compartment passes through the threaded hole one of the mating plate and the threaded hole three of the mating groove and then extends into the mating pipe of the inner compartment.

[0056] The bottom of the roof panel module and the top of the floor assembly module are respectively provided with several positioning pins corresponding to the inner partition connecting pipe. In implementation, the docking method between the top and bottom of the inner partition module and the roof panel module and the floor assembly module is the same as that of the exterior wall module, that is, the inner partition connecting pipe and the positioning pin are used in conjunction.

[0057] Preferably, the inner compartment second screw is threadedly connected to the threaded hole two of the mating plate, the nut of the inner compartment second screw is located in the inner compartment mating tube, and the shank of the inner compartment second screw passes through the threaded hole two of the mating plate and penetrates the second mating plate.

[0058] Preferably, the inner compartment main board body can be provided with a plate thread hole four corresponding to the inner compartment second screw, so as to realize the threaded connection between the second mating plate and the inner compartment main board body side.

[0059] Preferably, the adjacent threaded holes 1, 2, 3, and 4 of the mating plate are flush with each other, that is, all the threaded holes located above are flush with each other, and all the threaded holes located below are flush with each other.

[0060] Preferably, in practice, between two adjacent inner partition wall panels, the second inner partition screw corresponding to one of the inner partition wall panels can act as the first inner partition screw corresponding to the other inner partition wall panel.

[0061] Preferably, the inner compartment main body may be provided with inner compartment doors and windows.

[0062] The beneficial effects of this design are as follows: The roof panel modules in this product achieve a detachable connection between adjacent roof panel bodies through roof panel fastening grooves, roof panel fasteners, and roof panel mating plates. The roof panel fastening grooves can be further designed as trapezoidal grooves, wider at the top and narrower at the bottom. The roof panel fasteners include roof panel fastening blocks, wider at the top and narrower at the bottom. The roof panel fastening grooves have notches for the roof panel fastening blocks to be inserted from the outside. The roof panel fastening blocks and the roof panel mating plates are fastened to the roof panel fastening grooves through matching threaded holes and screws, achieving a detachable connection between two adjacent roof panel bodies through a single roof panel mating plate. Flexible roof panel strips can be provided at both the front and rear ends of the roof panel top plate. In implementation, the flexible roof panel strips between two adjacent roof panel modules 1 can seal the gaps between them, provide a buffer for the connection, prevent collisions during assembly, and also provide a good seal to prevent air leakage from the roof panel modules. The left and right ends of the roof panel protective layer can be provided with n-shaped roof panel guide grooves, which can be used to guide rainwater flowing down the roof panel downwards, or to install outdoor wall decorations. It is only necessary to set the corresponding clips or strips on the outdoor wall decorations.

[0063] The exterior wall panel modules in this product, through the matching exterior wall panel bodies, wall panel mating plates, and auxiliary threaded holes and bolts, are assembled to form exterior wall panel mating grooves. The mating plates are placed within these grooves, and sealing strips and auxiliary sealing structures from different sides of the exterior wall panel bodies achieve sealing of the interior side. On the exterior side, external guide grooves are formed, which can guide water flow or facilitate the installation of exterior finishes. The vertical guide grooves of the exterior wall panels can be aligned with the guide grooves of the roof panels, further enhancing the drainage of rainwater. The exterior wall panel modules, through the cooperation of the outer frame mating grooves, exterior wall panel mating square steel, exterior wall panel mating plates, and various threaded holes, achieve staggered connections between the exterior wall panel bodies, avoiding water and air leaks caused by misaligned joints.

[0064] The floor support module in this product can be composed of an upper and lower floor layer to form a composite floor with varying lengths and widths. Combined with a base bracket, first horizontal tube, second horizontal tube, and floor mating plates, the joints between the various structures are staggered, achieving a staggered connection and avoiding problems such as air and water leakage caused by misaligned joints. Furthermore, the first and second horizontal tubes form a groove to accommodate the corresponding lower floor layer, allowing the composite floor to be installed simply by embedding the lower floor layer into this groove. Because the length and width of the composite floor are smaller than those of the support frame, the second horizontal tube extends beyond the upper floor layer. Therefore, the left and right ends of the top of the second horizontal tube are designed for detachable connection with the exterior wall panel module. For example, a bottom vertical mating block can be installed on the outer side of the upper floor layer for installing the corresponding exterior wall panel mating steel. Only exterior wall panel mating steel that allows the vertical mating block to be inserted needs to be installed on the left and right ends of the exterior wall panel body. The exterior wall panel mating steel and the bottom vertical mating block can be further secured to the exterior wall panel module and the second horizontal tube through threaded holes and screws. During assembly or disassembly, the construction workers only need to embed the lower layer of the composite floor into the groove formed by the first and second horizontal tubes, and insert the vertical connecting block on the second horizontal tube into the outer wall panel connecting pipe of the outer wall panel module. As for the second horizontal tubes between different support frames, they can be connected by floor horizontal connecting parts with matching diameters. The entire construction process is convenient and quick, requires few professional skills, is highly operable, and further avoids subsequent problems caused by improper operation.

[0065] The inner compartment module in this product can include several inner compartments. It allows for customization of inner compartment wall panels of different lengths and standardized inner compartment connecting parts, and utilizes threaded holes and screws to quickly assemble multiple inner compartments. Two inner compartment wall panels located on the outer side of the module can be detachably connected end-to-end via inner compartment connecting parts at their ends. Between the outer and inner inner compartment wall panels, threaded holes and screws can be provided at the corresponding inner compartment connecting parts at both ends of the inner compartment wall panel. Corresponding threaded holes are also provided on the non-end sides of the outer inner compartment wall panel, allowing for a detachable connection between the ends of the inner and non-end sides of the outer inner compartment wall panel. By using internal compartment connecting parts, and the internal compartment panel connecting parts and connecting grooves at both ends of each internal compartment wall panel are all manufactured in a standardized manner, the door and window openings or length and width of the internal compartment modules can also be customized. Furthermore, the internal compartment connecting parts and screws all adopt uniform specifications, thereby further improving the convenience of connecting the internal compartment modules. It can be assembled or disassembled in a completely foolproof way. As long as the operator follows the principle of aligning the screws and screw holes, it is difficult to make operational errors.

[0066] This product offers modular integrated housing using standardized modular units, integrating structural, flooring, wall, and roofing systems. The modules are prefabricated in the factory and then assembled on-site, achieving "off-site construction" and transforming "immovable property" into "movable property." This product breaks down the house into several standardized modules that can be assembled and combined. Each module can be manufactured using assembly line industrial production methods. The modules have a simple structure, are easy to assemble and disassemble, and have strong connections. Modules can be assembled and connected to form a fully functional house. This product allows for rapid assembly of modular integrated housing through matching roof panel modules, exterior wall panel modules, floor supports, and window components. Internal compartment modules can also be added inside the capsule as needed. This product can be flexibly assembled into various functional buildings according to customer needs, such as office buildings, commercial buildings, exhibition buildings, tourist buildings, residential buildings, elderly care buildings, school and kindergarten buildings, and various temporary buildings. This product requires very low professional skills from installers, greatly avoiding installation errors and reducing component damage or shortened capsule lifespan. This product allows for quick installation and disassembly, making it easier to transport than existing modular units and prefabricated houses, resulting in lower transportation costs and higher construction efficiency. It can be factory-processed and transported in parts, with simple assembly at the destination, significantly reducing transportation and labor costs and minimizing customer disputes caused by operator errors. The modular structure allows for direct connection, with an active waterproofing mechanism being its biggest highlight. This fully embodies the concept of staggered joints, preventing gaps or misaligned holes between different structures compared to existing modular units, thus further improving waterproofing and insulation.

[0067] During implementation, the roof panel module, exterior wall panel module, floor support module, and internal partition mechanism of this product can be assembled in one step using both interior and exterior finishes. The exterior wall panel insulation layer is sealed within the entire exterior wall structure, including the modular wall panel mechanism, preventing it from connecting to the outside environment and effectively avoiding damage such as combustion. Because the exterior wall panel insulation layer and sealing strips are sealed within the exterior wall structure, they are not exposed to wind and rain, and there are no issues with the usual material weather resistance, greatly extending the material's lifespan. Since the exterior wall panels are fully insulated, their insulation performance surpasses that of traditional buildings. Furthermore, the self-supporting characteristics of the exterior wall panels reduce the total wall thickness from the current 30 cm (after adding insulation) to only about 15 cm, saving 5-8% of the building area compared to traditional construction methods. In summary, this product can be mass-produced on industrial assembly lines in factories, improving production efficiency and product quality while effectively reducing production costs. It also allows for low-cost transportation, highly efficient, user-friendly assembly, and application in various building scenarios. This product requires no secondary decoration; it can be used directly through modular assembly, saving labor, effort, and costs. Attached Figure Description

[0068] The present invention will now be described in further detail with reference to the accompanying drawings.

[0069] Figure 1 This is a perspective view of the modular integrated house described in this utility model.

[0070] Figure 2 This is an exploded view of the modular integrated house described in this utility model.

[0071] Figure 3 This is a schematic diagram showing the combination of the roof panel module, exterior wall module, and floor support body described in this utility model.

[0072] Figure 4 This is a schematic diagram of the exterior wall module composed of the exterior wall panel body and the exterior wall panel mating plate described in this utility model.

[0073] Figure 5 This is an exploded view of the exterior wall panel body described in this utility model.

[0074] Figure 6 This is a schematic diagram of the splicing of adjacent roof panel bodies according to this utility model.

[0075] Figure 7 This is a structural schematic diagram of the roof panel body described in this utility model.

[0076] Figure 8This is a disassembly diagram of the roof panel body (roof panel protective shell, roof panel filling layer, and roof panel frame) described in this utility model.

[0077] Figure 9 This is a structural diagram of the roof panel frame of the present invention when positioning pins are installed.

[0078] Figure 10 This utility model describes the transmission relationship between the V-shaped transmission component of the roof panel, the second embedded block of the roof panel, and the exterior wall module. Figure 1 .

[0079] Figure 11 This utility model describes the transmission relationship between the V-shaped transmission component of the roof panel, the second embedded block of the roof panel, and the exterior wall module. Figure 2 .

[0080] Figure 12 This is an exploded view of the floor support body described in this utility model.

[0081] Figure 13 yes Figure 12 Enlarged view of point D in the middle.

[0082] Figure 14 This is an application diagram of the floor support body described in this utility model—that is, a diagram showing the cooperation of the bottom support frame, composite floor, floor mating plate, and exterior wall module.

[0083] Figure 15 yes Figure 14 A diagram from another perspective.

[0084] Figure 16 This is the combination of the bottom support frame and the composite floor described in this utility model.

[0085] Figure 17 This is a schematic diagram of the connection between adjacent bottom support frames described in this utility model.

[0086] Figure 18 This is a schematic diagram of the composite flooring and floor mating plate described in this utility model – in disassembled state.

[0087] Figure 19 This is a structural schematic diagram of the inner compartment module described in this utility model.

[0088] Figure 20 This is a schematic diagram showing the fit between the inner partition wall panel and the inner partition connecting parts described in this utility model.

[0089] Figure 21 yes Figure 20 Disassembly status of the inner partition wall panels and inner partition connecting parts Figure 1 .

[0090] Figure 22 yes Figure 20 Disassembly status of the inner partition wall panels and inner partition connecting parts Figure 2 .

[0091] Figure 23 yes Figure 19 Enlarged view of point F in the middle.

[0092] Figure 24 yes Figure 23 The corresponding disassembly state diagram -- i.e. Figure 19 Disassembly status diagram at point F.

[0093] Figure 25 yes Figure 19 Enlarged view of the disassembly status at point G. Detailed Implementation

[0094] 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. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model are within the protection scope of the present utility model.

[0095] like Figure 1-25 As shown, in order to facilitate understanding of the above technical solution of this utility model, the above technical solution of this utility model will be described in detail below through specific usage methods.

[0096] A modular integrated house includes a roof panel module 1, an exterior wall module 2, and a floor assembly module 3, wherein the roof panel module 1 and the floor assembly module 3 are detachably connected to the exterior wall module 2.

[0097] The exterior wall module 2 includes several exterior wall panel bodies 201. Each exterior wall panel body 201 includes an exterior wall panel shell 2011. The exterior wall panel shell 2011 is provided with an exterior wall panel frame 2012 that plays a supporting role. The exterior wall panel shell 2011 surrounds the front, rear, left, and right sides of the exterior wall panel frame 2012. The space enclosed by the exterior wall panel shell 2011 and the exterior wall panel frame 2012 is filled with an exterior wall panel insulation layer 2013.

[0098] The two adjacent exterior wall panel bodies 201 are detachably connected by an exterior wall panel butt plate 202, and the adjacent exterior wall panel bodies 201 and exterior wall panel butt plates 202 are detachably connected by threaded holes and bolts.

[0099] The exterior wall panel frame 2012 is symmetrically provided with exterior wall panel connecting pipes 20121 at both ends of the left and right sides;

[0100] The bottom of the roof panel module 1 and the top of the floor assembly module 3 are respectively provided with positioning pins 6 corresponding to the external wall panel connecting pipe 20121. The external wall panel insulation layer 2013 plays a role in heat insulation, heat preservation, and waterproofing. The positioning pins 6 of the roof panel module 1 are inserted downward into the corresponding external wall panel connecting pipe 20121, and the positioning pins 6 of the floor assembly module 3 are inserted upward into the corresponding external wall panel connecting pipe 20121, thereby realizing the detachable connection between the roof panel module 1, the floor assembly module 3 and the external wall module 2. The improvement of the external wall module 2 is mainly reflected in the external wall panel body 201 and the external wall panel connecting plate 202. The glass windows and doors in the external wall module 2 can be implemented using existing technology, or can be improved on the same type of external wall panel body 201, such as omitting the supporting frame for the doors and windows or using a ring-shaped frame around the edge of the doors and windows. Since the improvement of doors and windows is not the improvement point claimed in this application, it will not be described in detail here.

[0101] In one feasible embodiment, the outer wall panel shell 2011 is provided with outer wall panel mating parts 20111 at both the left and right ends for the outer wall panel mating pipe 20121 to be embedded in. The corresponding outer wall panel mating parts 20111, outer wall panel mating pipe 20121, and outer wall panel mating plate 202 are connected by threaded holes and bolts.

[0102] In one feasible embodiment, the top surface, bottom surface, and both sides of the exterior wall panel body 201 are respectively provided with exterior wall panel sealing strips 2014. In practice, the exterior wall panel mating part 20111, the exterior wall panel connecting pipe 20121, and the exterior wall panel mating plate 202 are respectively provided with threaded holes that can be aligned. The threaded holes of the three are connected by corresponding bolts, thereby detachably connecting the three together.

[0103] In one feasible embodiment, the sidewall of the outer wall panel mating portion 20111 is recessed inward relative to the outer wall panel shell 2011 in which it is located, and two adjacent outer wall panel bodies 201 together form an outer wall panel mating groove for accommodating the outer wall panel mating plate 202 through adjacent outer wall panel mating portions 20111. In practice, the outer wall panel mating groove is formed by splicing two adjacent outer wall panel mating portions 20111, and the threaded holes of the outer wall panel mating portions 20111 are located in the outer wall panel mating groove.

[0104] In one feasible embodiment, the length of the exterior wall panel butt plate 202 is less than or equal to the length of the exterior wall panel butt groove.

[0105] In one feasible embodiment, the width of the exterior wall panel mating plate 202 is less than or equal to the width of the exterior wall panel mating groove.

[0106] In one feasible embodiment, the thickness of the exterior wall panel butt plate 202 is less than or equal to the depth of the exterior wall panel butt groove.

[0107] In one feasible embodiment, the outer wall panel housing 2011 is provided with an outer wall panel groove 20112 on the outside of the outer wall panel mating portion 20111.

[0108] In one feasible embodiment, the roof panel module 1 includes a plurality of roof panel bodies arranged in a row. Each roof panel body includes a roof panel protective shell 101. The roof panel protective shell 101 is provided with a roof panel frame 103. The space enclosed by the roof panel protective shell 101 and the roof panel frame 103 is filled with a roof panel filling layer 102.

[0109] In one feasible embodiment, the bottom of the mating end of the roof panel protective shell 101 is provided with a roof panel mating groove 1011, and a roof panel mating plate 104 is detachably connected in the roof panel mating groove 1011.

[0110] In one feasible embodiment, during implementation, two adjacent roof panel protective shells 101 are detachably connected via corresponding roof panel mating grooves 1011 and roof panel mating plates 104, thereby detachably connecting the two adjacent roof panel bodies together. The roof panel filling layer 102 is filled with fireproof, waterproof, and other materials.

[0111] In one feasible embodiment, the length of the roof panel mating plate 104 is less than or equal to the length of the roof panel mating groove 1011.

[0112] In one feasible embodiment, the width of the roof panel mating plate 104 is less than or equal to the width of the roof panel mating groove 1011 × 2.

[0113] In one feasible embodiment, the thickness of the roof panel mating plate 104 is equal to the depth of the roof panel mating groove 1011.

[0114] In one feasible embodiment, the roof panel mating groove 1011 and the roof panel mating plate 104 are connected by threaded holes and bolts.

[0115] In one feasible embodiment, the roof panel frame 103 includes a roof panel main frame 1031, the roof panel main frame 1031 having an n-shaped cross-section in the left-right direction.

[0116] In one feasible embodiment, the positioning pin 6 is provided at the bottom of the roof panel main frame 1031.

[0117] In one feasible embodiment, the roof panel main frame 1031 is detachably connected to the front and rear ends of the roof panel sealing assembly 1032.

[0118] In one feasible embodiment, the roof panel sealing assembly 1032 includes a roof panel sealing substrate 10321. The inner side of the roof panel sealing substrate 10321 is provided with a plurality of first roof panel embedding blocks 10322. The left and right ends of the inner side of the roof panel sealing substrate 10321 are respectively provided with a second roof panel embedding block 10323. The second roof panel embedding block 10323 is located below the first roof panel embedding blocks 10322.

[0119] The main frame of the roof panel 1031 has several roof panel embedding holes 10311 at its front and rear ends, which correspond to the first embedding block 10322 and the second embedding block 10323 of the roof panel respectively.

[0120] The lower part of the back side of the second embedding block 10323 of the roof panel is provided with a second embedding block inclined surface 103231;

[0121] The roof panel main frame 1031 is provided with a roof panel V-shaped transmission component 1033 at the lower part, and a V-shaped transmission component inclined surface 10331 is provided at the upper end of the roof panel V-shaped transmission component 10333. The V-shaped transmission component inclined surface 10331 corresponds to the second embedded block inclined surface 103231.

[0122] The lower part of the roof panel main frame 1031 is provided with a transmission through hole for the roof panel V-shaped transmission component 1033 to slide through. The roof panel V-shaped transmission component 1033 extends downward through the transmission through hole and out of the roof panel main frame 1031. In implementation, such as Figure 10 , 11 As shown, when the roof panel module 1 and the exterior wall module 2 are connected, the positioning pin 6 is inserted downward into the exterior wall panel connecting pipe 20121. The top of the exterior wall module 2 will press upward against the roof panel V-shaped transmission component 1033, causing the roof panel V-shaped transmission component 1033 to rotate. This causes the inclined surface 10331 of the V-shaped transmission component to contact and push the inclined surface 103231 of the second embedded block. This causes the first embedded block 10322 of the roof panel to move the entire roof panel sealing base plate 10321 to the outside of the roof panel frame 103, thereby forcing the roof panel sealing components 1032 between two adjacent roof panel main frames 1031 to fit tightly together. This achieves the transmission connection method and realizes the active improvement of the airtightness between the roof panel modules 1. The outer side of the roof panel sealing base plate 10321 can also be provided with a roof panel sealing strip to further improve the sealing performance between the roof panel sealing components 1032 between two adjacent roof panel main frames 1031.

[0123] In one feasible embodiment, the roof panel sealing strip and the exterior wall panel sealing strip 2014 can be made of the same material.

[0124] In one feasible embodiment, the transmission through hole is located on one side of the adjacent locating pin 6.

[0125] In one feasible embodiment, the roof panel V-shaped transmission component 1033 includes a roof panel transmission block and a V-shaped transmission bar 10332. The roof panel transmission block is connected to the upper part of the V-shaped transmission bar 10332. The inclined surface 10331 of the transmission component is located on the roof panel transmission block. The roof panel transmission block is located in the roof panel embedding hole 10311 corresponding to the second embedding block 10323 of the roof panel. The size of the roof panel transmission block is larger than the transmission through hole. The lower part of the V-shaped transmission bar 10332 slides through the transmission through hole and extends from the inside of the roof panel main frame 1031 to its outside.

[0126] In one feasible embodiment, the outer surface of the roof panel protective shell 101 is provided with an n-shaped roof panel outer guide groove 1012. In implementation, the two side branches of adjacent roof panel outer guide grooves 1012 are spliced ​​together and can be spliced ​​with the outer wall panel outer groove 20112 on the outer wall module 2. The two side branches of adjacent roof panel outer guide grooves 1012 and the adjacent outer wall panel outer groove 20112 form a vertical guide groove 7, which can be used to install wall decorations 5 or to guide rainwater. The wall decoration 5 only needs to have a clip or strip on its back that can be embedded in the vertical guide groove 7. Furthermore, the n-shaped orientation of the roof panel outer guide groove 1012 can also guide rainwater flowing from the top of the roof panel module 1 to the vertical guide grooves 7 on both sides, improving the efficiency of rainwater diversion.

[0127] In one feasible embodiment, the floor assembly module 3 includes a plurality of floor support frames 301, and each floor support frame 301 is provided with a composite floor 302 on its upper part; the floor support frame 301 includes a floor bottom support 3013, and the upper part of the floor bottom support 3013 is provided with two first floor horizontal tubes 3011 and two second floor horizontal tubes 3012, and the two first floor horizontal tubes 3011 and the two floor horizontal tubes 3012 are respectively arranged opposite to each other;

[0128] Two adjacent floor second horizontal tubes 3012 are passed through by corresponding floor horizontal connectors 305. The outer diameter of the floor horizontal connectors 305 matches the inner diameter of the floor second horizontal tubes 3012, thereby connecting adjacent floor support frames 301 into a whole.

[0129] In one feasible embodiment, the floor transverse connector 305 is tubular, columnar, or rod-shaped, as long as it can connect two adjacent floor second transverse tubes 3012.

[0130] In one feasible embodiment, the length and width of the composite floor 302 in the horizontal direction are smaller than the length and width of the floor support frame 301 in the horizontal direction, respectively; a floor mating groove is formed between two adjacent composite floor 302, and a floor mating plate 304 is provided in the floor mating groove. The top of the floor mating plate 304 is flush with the top of the composite floor 302, and the top of the composite floor 302 is higher than the top of the first horizontal tube 3011, the second horizontal tube 3012, and the bottom support 3013.

[0131] In one feasible embodiment, the composite floor 302 includes an upper floor layer 3021 and a lower floor layer 3022, wherein the width of the upper floor layer 3021 is less than the width of the lower floor layer 3022, and the length of the upper floor layer 3021 is greater than the length of the lower floor layer 3022.

[0132] In one feasible embodiment, the lower layer 3022 of the floor is provided with a floor connecting piece 3023 corresponding to the floor connecting plate 304, and two adjacent composite floor 302s are detachably connected through the corresponding floor connecting plate 304 and floor connecting piece 3023.

[0133] In one feasible embodiment, the floor mating groove is located between two adjacent upper floor layers 3021; ​​all the first floor horizontal tubes 3011 and second floor horizontal tubes 3012 on the same floor support frame 301 form a receiving groove corresponding to the lower floor layer 3022.

[0134] In one feasible embodiment, the thickness of the floor mating plate 304 is equal to the thickness of the upper floor layer 3021;

[0135] In one feasible embodiment, the exterior wall module 2 is located outside the upper layer 3021 of the floor, and the positioning pin 6 is provided on the top of the second horizontal tube 3012 of the floor.

[0136] In one feasible embodiment, the modular integrated house has an internal partition module 4, which includes several internal partition wall panels 401. Two adjacent internal partition wall panels 401 are detachably connected by internal partition connecting parts 402. All internal partition wall panels 401 and internal partition connecting parts 402 can be used with threaded holes, bolts, and other accessories to construct the internal partition module 4.

[0137] In one feasible embodiment, the inner partition wall panel 401 includes an inner partition main body 4011, and the left and right ends of the inner partition main body 4011 are respectively provided with inwardly recessed inner partition panel docking portions 4012. The adjacent inner partition panel docking portions 4012 are detachably connected to the inner partition docking parts 402, or the inner partition main body 4011 is directly detachably connected to the inner partition docking parts 402.

[0138] In one feasible embodiment, the inner compartment connecting member 402 is L-shaped, straight, cross-shaped, or plate-shaped, etc. The inner compartment connecting member 402 and the inner compartment wall panel 401 can be detachably connected by threaded holes or bolts.

[0139] In a feasible embodiment, when the inner compartment connecting member 402 is L-shaped, it may include a first connecting plate 4021 and a second connecting plate 4022; between two adjacent inner compartment wall panels 401, the first connecting plate 4021 is detachably connected to the inner compartment panel connecting portion 4012 of the first inner compartment wall panel 401, and the second connecting plate 4022 is detachably connected to the inner compartment main body 4011 or the inner compartment panel connecting portion 4012 of the second inner compartment wall panel 401.

[0140] In a feasible embodiment, the first docking plate 4021 and the corresponding inner compartment plate docking part 4012 are threadedly connected by a threaded hole and a screw.

[0141] In a feasible embodiment, the second docking plate 4022 is threadedly connected to the corresponding side of the inner compartment main body 4011 or the inner compartment plate docking part 4012 through a threaded hole and a screw.

[0142] In a feasible embodiment, the top and bottom of the inner compartment plate connecting part 4012 are respectively provided with inner compartment connecting pipe 4013, and the outer side of the inner compartment connecting pipe 4013 is provided with connecting pipe side opening 40131.

[0143] The first docking plate 4021 is provided with a first docking plate threaded hole at the top and bottom respectively, the second docking plate 4022 is provided with a second docking plate threaded hole at the top and bottom respectively, and the inner compartment docking pipe 4013 is provided with a third docking groove threaded hole 40132 corresponding to the first docking plate threaded hole.

[0144] The corresponding threaded hole one of the docking plate and the threaded hole three of the docking groove 40132 are threadedly connected by the first screw of the inner compartment 4031. The rod of the first screw of the inner compartment 4031 passes through the threaded hole one of the docking plate and the threaded hole three of the docking groove 40132 and then extends into the inner compartment connecting pipe 4013.

[0145] The bottom of the roof panel module 1 and the top of the floor assembly module 3 are respectively provided with several positioning pins 6 corresponding to the internal partition connecting pipe 4013. In implementation, the connection method between the top and bottom of the internal partition module 4 and the roof panel module 1 and floor assembly module 3 is similar to that of the exterior wall module 2, i.e., the internal partition connecting pipe 4013 and the positioning pins 6 cooperate. The opening 40131 on the connecting pipe side provides a path for the corresponding positioning pin 6 to pass through during the installation of the internal partition module 4. Each structure of the internal partition module 4 can be installed by a push-pull method, with the corresponding positioning pin 6 ultimately extending into the corresponding internal partition connecting pipe 4013 through the connecting pipe side opening 40131, and then securely connected with bolts. The internal partition module 4 is constructed from all the internal partition wall panels 401 and internal partition connecting parts 402, and is integrated into the modular integrated house through the internal partition connecting pipe 4013, positioning pins 6, and other modules.

[0146] In one feasible embodiment, the inner compartment second screw 4032 is threadedly connected to the threaded hole two of the docking plate. The nut of the inner compartment second screw 4032 is located in the inner compartment connecting pipe 4013, and the rod of the inner compartment second screw 4032 passes through the threaded hole two of the docking plate and penetrates the second docking plate 4022.

[0147] In a feasible embodiment, the inner compartment main board 4011 may be provided with a plate thread hole 4014 corresponding to the inner compartment second screw 4032 on its side, thereby realizing a threaded connection between the second mating plate 4022 and the side of the inner compartment main board 4011.

[0148] In one feasible embodiment, the adjacent threaded holes 1, 2, 3, 40132, and 4014 of the mating plate are flush with each other, that is, all the threaded holes located above are flush with each other, and all the threaded holes located below are flush with each other.

[0149] In a feasible embodiment, during implementation, between two adjacent inner partition wall panels 401, the inner partition second screw 4032 corresponding to one inner partition wall panel 401 can act as the inner partition first screw 4031 corresponding to the other inner partition wall panel 401.

[0150] In one feasible embodiment, the inner compartment main body 4011 may be provided with an inner compartment door / window 4015.

[0151] In summary, thanks to the aforementioned unique technical solutions, the roof panel module, exterior wall panel module, floor support module, and internal partition mechanism of this product can be assembled in a single process using both interior and exterior finishes. The exterior wall panel insulation layer is sealed within the entire exterior wall structure, including the modular wall panel mechanism, preventing it from connecting to the outside environment and effectively avoiding damage such as combustion. Because the exterior wall panel insulation layer and sealing strips are sealed within the exterior wall structure, they are not exposed to wind and rain, and there are no issues with the usual material weather resistance, greatly extending the material's lifespan. Since the exterior wall panels are fully insulated, their insulation performance surpasses that of traditional buildings. Furthermore, the self-supporting characteristics of the exterior wall panels reduce the total wall thickness from the current 30 cm (after adding insulation) to only about 15 cm, saving the building area occupied by the exterior walls. Compared to traditional construction methods, this can save 5-8% of the building area. In summary, this product can be mass-produced on industrial assembly lines in factories, improving production efficiency and product quality while effectively reducing production costs. It also allows for low-cost transportation, highly efficient, user-friendly assembly, and application in various building scenarios. This product requires no secondary decoration; it can be used directly through modular assembly, saving labor, effort, and costs.

[0152] In the description of this utility model, it should be understood that the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this utility model and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

Claims

1. A modular integrated house, comprising a roof panel module (1), an exterior wall module (2), and a floor assembly module (3), characterized in that, The roof panel module (1) and the floor assembly module (3) are detachably connected to the exterior wall module (2); The exterior wall module (2) includes several exterior wall panel bodies (201), each exterior wall panel body (201) including an exterior wall panel shell (2011), the exterior wall panel shell (2011) having an exterior wall panel frame (2012) that provides support, the exterior wall panel shell (2011) surrounding the front, rear, left, and right sides of the exterior wall panel frame (2012); the space enclosed by the exterior wall panel shell (2011) and the exterior wall panel frame (2012) is filled with an exterior wall panel insulation layer (2013); The two adjacent exterior wall panel bodies (201) are detachably connected by an exterior wall panel butt plate (202), and the adjacent exterior wall panel bodies (201) and exterior wall panel butt plates (202) are detachably connected by threaded holes and bolts. The exterior wall panel frame (2012) is symmetrically provided with exterior wall panel connecting pipes (20121) at both ends; The bottom of the roof panel module (1) and the top of the floor assembly module (3) are respectively provided with positioning pins (6) corresponding to the external wall panel connecting pipe (20121).

2. The modular integrated housing as described in claim 1, characterized in that, The outer wall panel shell (2011) has outer wall panel mating parts (20111) at both ends for the outer wall panel connecting pipe (20121) to be inserted. The corresponding outer wall panel mating parts (20111), outer wall panel connecting pipe (20121), and outer wall panel mating plate (202) are connected by threaded holes and bolts. The outer wall panel body (201) is provided with sealing strips (2014) on the top surface, bottom surface and both sides.

3. The modular integrated housing as described in claim 2, characterized in that, The sidewall of the outer wall panel mating part (20111) is recessed inward relative to the outer wall panel shell (2011) on which it is located. Two adjacent outer wall panel bodies (201) together form an outer wall panel mating groove that accommodates the outer wall panel mating plate (202) through the adjacent outer wall panel mating parts (20111). The length of the external wall panel butt plate (202) is less than or equal to the length of the external wall panel butt groove; The width of the external wall panel butt plate (202) is less than or equal to the width of the external wall panel butt groove; The thickness of the external wall panel butt plate (202) is less than or equal to the depth of the external wall panel butt groove.

4. The modular integrated housing as described in claim 1, characterized in that, The roof panel module (1) includes several roof panel bodies arranged in a row. The roof panel body includes a roof panel protective shell (101). The roof panel protective shell (101) is provided with a roof panel frame (103). The space enclosed by the roof panel protective shell (101) and the roof panel frame (103) is filled with a roof panel filling layer (102). The bottom of the mating end of the roof panel protective shell (101) is provided with a roof panel mating groove (1011), and a roof panel mating plate (104) is detachably connected in the roof panel mating groove (1011). In practice, two adjacent roof panel protective shells (101) are detachably connected through the corresponding roof panel mating groove (1011) and roof panel mating plate (104), thereby detachably connecting the two adjacent roof panel bodies together.

5. The modular integrated housing as described in claim 4, characterized in that, The length of the roof panel mating plate (104) is less than or equal to the length of the roof panel mating groove (1011); The width of the roof panel mating plate (104) is less than or equal to the width of the roof panel mating groove (1011) × 2; The thickness of the roof panel mating plate (104) is equal to the depth of the roof panel mating groove (1011); The roof panel mating groove (1011) and the roof panel mating plate (104) are connected by threaded holes and bolts.

6. The modular integrated housing as described in claim 4, characterized in that, The roof panel frame (103) includes a roof panel main frame (1031), and the roof panel main frame (1031) has an n-shaped cross-section in the left and right directions; The positioning pin (6) is provided at the bottom of the main frame (1031) of the roof panel; The roof panel main frame (1031) is detachably connected to the roof panel sealing assembly (1032) at both the front and rear ends; The roof panel sealing assembly (1032) includes a roof panel sealing base plate (10321). The inner side of the roof panel sealing base plate (10321) is provided with a plurality of roof panel first embedding blocks (10322). The left and right ends of the inner side of the roof panel sealing base plate (10321) are respectively provided with a roof panel second embedding block (10323). The roof panel second embedding block (10323) is located below the roof panel first embedding block (10322). The main frame of the roof panel (1031) has several roof panel embedding holes (10311) at its front and rear ends, which correspond to the first embedding block (10322) and the second embedding block (10323) of the roof panel respectively; The second embedding block (10323) of the roof panel has a second embedding block slope (103231) on the lower part of its back side; The roof panel main frame (1031) is provided with a roof panel V-shaped transmission component (1033) at the lower part, and a V-shaped transmission component inclined surface (10331) is provided at the upper end of the roof panel V-shaped transmission component (10333). The V-shaped transmission component inclined surface (10331) corresponds to the second embedded block inclined surface (103231). The lower part of the roof panel main frame (1031) is provided with a transmission through hole for the roof panel V-shaped transmission component (1033) to slide through, and the roof panel V-shaped transmission component (1033) passes downward through the transmission through hole and out of the roof panel main frame (1031).

7. The modular integrated housing as described in claim 6, characterized in that, The transmission through hole is located on one side of the adjacent positioning pin (6); The roof panel V-shaped transmission component (1033) includes a roof panel transmission block and a V-shaped transmission bar (10332). The roof panel transmission block is connected to the upper part of the V-shaped transmission bar (10332). The inclined surface (10331) of the V-shaped transmission component is located on the roof panel transmission block. The roof panel transmission block is located in the roof panel embedding hole (10311) corresponding to the second embedding block (10323) of the roof panel. The size of the roof panel transmission block is larger than the transmission through hole. The lower part of the V-shaped transmission bar (10332) slides through the transmission through hole and extends from the inside of the roof panel main frame (1031) to its outside. The outer surface of the roof panel protective shell (101) is provided with an n-shaped roof panel outer guide groove (1012).

8. The modular integrated housing as described in claim 1, characterized in that, The floor assembly module (3) includes several floor support frames (301), and each floor support frame (301) is provided with a composite floor (302) on its upper part; The floor support frame (301) includes a floor base support (3013), and the upper part of the floor base support (3013) is provided with two first floor horizontal tubes (3011) and two second floor horizontal tubes (3012), and the two first floor horizontal tubes (3011) and the two second floor horizontal tubes (3012) are respectively arranged opposite to each other; Two adjacent floor second horizontal tubes (3012) are passed through by the corresponding floor horizontal connector (305). The outer diameter of the floor horizontal connector (305) matches the inner diameter of the floor second horizontal tube (3012), thereby connecting adjacent floor support frames (301) into a whole. The length and width of the composite floor (302) in the horizontal direction are smaller than the length and width of the floor support frame (301) in the horizontal direction, respectively; a floor docking groove is formed between two adjacent composite floor (302), and a floor docking plate (304) is provided in the floor docking groove. The top of the floor docking plate (304) is flush with the top of the composite floor (302), and the top of the composite floor (302) is higher than the top of the first horizontal tube (3011), the second horizontal tube (3012), and the bottom support (3013).

9. The modular integrated housing as described in claim 8, characterized in that, The composite floor (302) includes a floor upper layer (3021) and a floor lower layer (3022), wherein the width of the floor upper layer (3021) is less than the width of the floor lower layer (3022), and the length of the floor upper layer (3021) is greater than the length of the floor lower layer (3022). The lower layer (3022) of the floor is provided with a floor connecting piece (3023) corresponding to the floor connecting plate (304), and two adjacent composite flooring units (302) are detachably connected through the corresponding floor connecting plate (304) and floor connecting piece (3023); The floor docking groove is located between two adjacent upper floors (3021); all the first floor tubes (3011) and second floor tubes (3012) on the same floor support frame (301) form a receiving groove corresponding to the lower floor (3022); The thickness of the floor mat (304) is equal to the thickness of the upper floor layer (3021); The exterior wall module (2) is located outside the upper layer (3021) of the floor, and the positioning pin (6) is provided on the top of the second horizontal tube (3012) of the floor.

10. The modular integrated housing as described in claim 1, characterized in that, The modular integrated house is equipped with an internal partition module (4); The inner compartment module (4) includes several inner compartment wall panels (401), each inner compartment wall panel (401) includes an inner compartment main body (4011), and each pair of adjacent inner compartment main bodies (4011) are detachably connected by an inner compartment connecting piece (402).