Modularized folding and unfolding type container camping house structure
Through the modular foldable container barrack structure, standardized containers and foldable support components are used to achieve rapid expansion and folding. Combined with independent bathroom facilities, it solves the problems of high transportation costs, low construction efficiency and low space utilization of existing foldable houses, and provides an efficient and flexible temporary living solution.
Patent Information
- Application Number
- CN202510984443.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-16
- Publication Date
- 2025-09-09
AI Technical Summary
Existing foldable house structures have high transportation and storage costs, low construction efficiency, low space utilization, and poor modular interface compatibility. They are unable to meet the needs of rapid response in emergency situations, and their structural strength and modular expandability are insufficient.
The modular foldable container barracks structure is adopted, including standardized containers, foldable support components, tracks and pile components. It can be quickly unfolded and folded through the truss structure and scissor-folding structure. Combined with independent bathroom facilities and modular layout, it can achieve efficient space utilization and rapid construction.
Efficiently expand living space within a limited transportation volume, quickly build fully functional living units, improve comfort and convenience, reduce transportation and storage costs, and adapt to the complex needs of diverse scenarios.
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Figure CN120608564A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of foldable houses, and in particular to a modular foldable container barrack structure. Background Art
[0002] Foldable houses are mobile, convenient and temporary, and therefore have great value in emergency rescue, field engineering operations, temporary commercial space construction and outdoor travel.
[0003] At present, the common foldable houses or temporary buildings on the market have many limitations. Although traditional foldable houses can be assembled quickly, their folding structure design is complex, and the volume after shrinking is still relatively large, resulting in high transportation and storage costs. In addition, the internal space layout is not reasonable after the house is unfolded, and the space utilization rate is difficult to reach the ideal level. Some foldable houses designed based on the standardized dimensions of containers have improved in transportation adaptability, but the disassembly and assembly process relies on large-scale machinery and professional personnel, resulting in low construction efficiency and difficulty in meeting the rapid response needs in emergency situations. They are significantly restricted by site conditions and are difficult to apply to emergency scenarios with complex terrain. The modular interface has poor compatibility, making it difficult to achieve rapid expansion and reorganization of functional units. In addition, existing foldable houses also have defects in structural strength, modular expandability, etc., and cannot adapt to the complex needs of diverse scenarios.
[0004] Therefore, there is an urgent need to develop a new type of foldable house structure that is small in size after shrinkage, convenient to transport and store, and can be quickly built and efficiently utilize space. Summary of the Invention
[0005] To this end, an embodiment of the present invention provides a modular foldable container barrack structure to solve at least one problem existing in the prior art.
[0006] In order to achieve the above objectives, the embodiments of the present invention provide the following technical solutions:
[0007] A modular foldable container camping structure, comprising:
[0008] container;
[0009] a foldable support assembly, wherein the foldable support assembly is stored in the container in a folded state and is pulled out relative to the container in an unfolded state;
[0010] a track along which the foldable support assembly moves to unfold or fold;
[0011] There are multiple ground pile assemblies, each of which is arranged at intervals at the bottom of the foldable support assembly, and the track is installed on the ground pile assemblies.
[0012] In some embodiments, there are two containers, and the openings of the two containers are spaced apart from each other.
[0013] There are at least two groups of foldable support assemblies, and each of the foldable support assemblies can be folded and stored in two of the containers respectively;
[0014] At least one of the two containers is provided with a bathroom space.
[0015] In some embodiments, the foldable support assembly includes:
[0016] A truss structure, wherein the truss structure is multiple and adjacent truss structures are arranged at intervals;
[0017] A truss scissor-type folding structure is installed between every two adjacent truss structures, and the truss structures are moved closer or farther away by unfolding and folding, so as to fold or unfold the foldable support assembly.
[0018] In some embodiments, the truss structure comprises:
[0019] Top truss structure;
[0020] Truss foot supports, the truss foot supports being spaced apart and disposed at the bottom of the top truss structure;
[0021] A truss roller is installed at the bottom of the truss foot support and is rollingly connected to the track.
[0022] In some embodiments, the periphery of the foldable support assembly is covered with a tarpaulin, and a tarpaulin window is embedded on the surface of the tarpaulin.
[0023] In some embodiments, the bathroom space includes:
[0024] a laundry area, wherein the laundry area is equipped with a washing machine and / or a dryer;
[0025] A shower area, comprising a plurality of independent shower cubicles, each of which is equipped with a shower head on the top, a squat toilet embedded below the shower area, and a flushing tank integrated into the rear wall;
[0026] The washing area adopts a bilaterally symmetrical layout, with a urinal on one side and a washbasin group on the other side. Each functional area is physically separated by baffles.
[0027] In some embodiments, the ground pile assembly comprises:
[0028] Ground piles, wherein the ground piles are multiple and arranged at intervals, and the track is detachably mounted on the ground piles;
[0029] The telescopic structure is installed between two adjacent ground piles to move the two ground piles closer to or farther away from each other.
[0030] In some embodiments, the ground pile assembly further comprises:
[0031] A floor support frame, through which the track is detachably mounted on the ground piles.
[0032] In some embodiments, the ground pile assembly further comprises:
[0033] A ground nail connecting plate is installed at the bottom of the ground pile.
[0034] In some embodiments, the telescopic structure is a scissors-folding structure.
[0035] In one or more of the above-mentioned embodiments, the modular foldable container barracks structure provided by the present invention utilizes standardized containers for loading, effectively expanding living space within a limited transport volume. A single container, when unfolded, can accommodate the temporary living or work needs of multiple individuals. Furthermore, through modular assembly, it can be flexibly expanded, combining transport convenience with adaptability for group living. Based on the standardized container design, the foldable and expandable space technology achieves an efficient conversion of transport volume and living space. During use, two containers, when unfolded, form a fully functional living unit, meeting the temporary living or work needs of multiple individuals. Through modular assembly and assembly, the usable area can be flexibly expanded to easily accommodate larger groups. Furthermore, the housing is equipped with independent bathroom facilities, effectively enhancing living comfort and convenience, truly achieving an organic combination of transport convenience and adaptability for group living. All components are integrated and stored within the container, allowing for the rapid expansion of living space several times the volume of the container itself using only two standard containers. The house is mainly composed of foldable floors, retractable truss support structures and ground piles. Each component has the functions of telescoping and folding. During construction, it can be quickly deployed and unfolded from the container, greatly improving construction efficiency and significantly shortening deployment time. It provides an efficient and reliable temporary living solution for emergency rescue, field operations and other scenarios. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are merely exemplary, and those skilled in the art can derive other implementation drawings based on the provided drawings without inventive effort.
[0037] The structures, proportions, sizes, etc. illustrated in this specification are intended only to complement the contents disclosed herein and to facilitate understanding and reading by persons familiar with the art. They are not intended to limit the conditions under which the present invention may be implemented and therefore have no substantive technical significance. Any structural modifications, changes in proportions, or adjustments in sizes, without affecting the efficacy and objectives of the present invention, shall still fall within the scope of the technical contents disclosed herein.
[0038] Figure 1 This is one of the overall expanded views of the modular foldable container barrack structure provided by the present invention;
[0039] Figure 2 for Figure 1 Enlarged view of part A;
[0040] Figure 3 This is the second overall expansion diagram of the modular foldable container barrack structure provided by the present invention;
[0041] Figure 4 This is a structural schematic diagram of the foldable support assembly in the modular foldable container barrack structure provided by the present invention;
[0042] Figure 5 for Figure 4 Enlarged view of part B;
[0043] Figure 6 This is a structural schematic diagram of the foldable floor in the modular foldable container barrack structure provided by the present invention;
[0044] Figure 7 This is a schematic diagram of the modular foldable container barrack structure provided by the present invention in the storage state (ground pile storage side);
[0045] Figure 8 This is a schematic diagram of the modular foldable container barrack structure provided by the present invention in the storage state (bathroom space side);
[0046] Figure 9 This is a structural schematic diagram of the bathroom space in the modular foldable container barrack structure provided by the present invention;
[0047] Figure 10 This is a structural schematic diagram of the ground pile assembly in the modular foldable container barrack structure provided by the present invention in the unfolded state;
[0048] Figure 11 This is a structural schematic diagram of the pile assembly in the modular foldable container barrack structure provided by the present invention in a retracted state;
[0049] Figure 12This is a schematic diagram of the unfolding process of the foldable floor in the modular foldable container barrack structure provided by the present invention.
[0050] Description of reference numerals:
[0051] 1-left container, 2-steel rope, 3-tarpaulin, 4-tarpaulin window, 5-right container, 6-ground pile;
[0052] 7- scissor folding structure, 8- truss roller, 9- track, 10- folding support assembly;
[0053] 11-truss foot support, 12-truss scissor folding structure, 13-folding floor, 14-bathroom space;
[0054] 15-washer-dryer, 16-shower head, 17-toilet flushing tank, 18-urinal, 19-washbasin set; 20-squat toilet, 21-baffle, 22-floor support frame, 23-ground nail connecting plate. DETAILED DESCRIPTION
[0055] The following describes the implementation of the present invention using specific embodiments. Those skilled in the art will readily understand the other advantages and benefits of the present invention from the disclosure herein. Obviously, the embodiments described are only a portion of the present invention, not all of it. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are intended to fall within the scope of protection of the present invention.
[0056] To address the above technical issues, the present invention provides a modular, foldable container barrack structure that utilizes standardized containers for loading, efficiently expanding living space within a limited transport volume. A single container, when unfolded, can accommodate multiple people for temporary living or work. Furthermore, through modular assembly, it can be flexibly expanded, combining transport convenience with group accommodation. Based on a standardized container design, the structure utilizes folding and expansion technology to efficiently convert transport volume into living space. During use, two containers, when unfolded, form a fully functional living unit, meeting the temporary living or work needs of multiple people. Through modular assembly and assembly, the usable area can be flexibly expanded to easily accommodate larger groups. Furthermore, the structure is equipped with independent bathroom facilities, effectively enhancing living comfort and convenience, truly achieving an organic balance between transport convenience and group accommodation. All components are integrated and stored within the container, allowing for rapid expansion of living space several times the volume of the container itself, using only two standard containers. The house is mainly composed of a foldable floor 13, a retractable truss support structure and ground piles 6. Each component has the functions of telescoping and folding. During construction, it can be quickly deployed and unfolded from the container, greatly improving construction efficiency and significantly shortening deployment time. It provides an efficient and reliable temporary living solution for emergency rescue, field operations and other scenarios.
[0057] In a specific embodiment, Figures 1-12 As shown, the modular foldable container barrack structure provided by the present invention includes a container, a foldable support assembly 10, a track 9 and a ground pile assembly; wherein the container can be a commonly used standard container used in the transportation industry, the foldable support assembly 10 is stored in the container in a folded state, and the foldable support assembly 10 is pulled out and unfolded relative to the container in an unfolded state; the foldable support assembly 10 moves along the track 9 to unfold or fold, and there are multiple ground pile assemblies, each of which is arranged at intervals at the bottom of the foldable support assembly 10, and the track 9 is installed on the ground pile assembly.
[0058] In order to expand the storage space and increase the area of the house after expansion, the containers can be provided in two, and the openings of the two containers are arranged opposite to each other at intervals; on this basis, the foldable support assemblies 10 are provided in at least two groups, and each of the foldable support assemblies 10 can be folded and stored in the two containers respectively; the specifications of each group of foldable support assemblies 10 can be the same or different, and each container can accommodate the same number of foldable support assemblies 10 or a different number of foldable support assemblies 10; at least one of the two containers is provided with a bathroom space 14.
[0059] Generally speaking, the modular foldable container barrack structure provided by the present invention mainly includes containers, pile components, foldable support components 10 and foldable floor 13. The foldable container barrack structure is a modular structure, which adopts a double container integrated storage structure. For the convenience of description, the two containers are respectively referred to as the left container 1 and the right container 5 (left and right are Figure 1 (The left-right orientation shown is for ease of description only and is not intended to be limiting.) All structural components are integrated and stored within the left and right containers 1 and 5. Specifically, taking two sets of foldable support assemblies 10 as an example, they are evenly distributed within the containers on both sides. The bottom of the left container 1 is stacked with pile assemblies, with half of the foldable support assemblies 10 neatly stored above them. The right container 5 has an independent bathroom space 14 pre-installed inside, with the other half of the foldable support assemblies 10 stored in layers on the outside, and a foldable floor 13 neatly stacked underneath. Once the components are loaded, the container sidewalls are secured closed with steel cables 2 to form a closed storage structure, ensuring the integrity and safety of the components during transportation and storage. It is worth noting that the structure provided by the present invention is not limited to a fixed storage layout on both sides of the containers. The storage location and arrangement of the components within the left and right containers 1 and 5 can be flexibly adjusted according to actual transportation needs, space planning, or assembly processes, significantly enhancing the flexibility and adaptability of the system.
[0060] In some embodiments, the foldable support assembly 10 includes a truss structure and a truss scissor-folding structure 12. The truss structures are multiple and spaced apart from each other. In other words, each foldable support assembly 10 includes multiple truss structures, the specific number of which can be determined based on usage. In this case, the number of truss structures distributed between the two containers can also be determined based on actual usage. The truss scissor-folding structure 12 is installed between each two adjacent truss structures and, by unfolding and folding, brings the truss structures closer together or further apart, thereby folding or unfolding the foldable support assembly 10.
[0061] Specifically, the truss structure includes a top truss structure, a truss foot support 11 and a truss roller 8; wherein, each top truss structure is generally provided with two truss foot supports 11, and the two truss foot supports 11 are spaced apart at the bottom of the top truss structure. The top truss structure and the truss foot support 11 can be an integrated structure or a detachably connected structure. The truss roller 8 is installed at the bottom of the truss foot support 11 and is rollingly connected to the track 9.
[0062] Furthermore, in order to improve the waterproofness and anti-fouling properties of the structure, the periphery of the foldable support assembly 10 is covered with a tarpaulin 3, and a tarpaulin window 4 is embedded on the surface of the tarpaulin 3.
[0063] Generally speaking, the top truss structure in the foldable support assembly 10 provided by the present invention adopts an arched streamlined design. By optimizing the cross-sectional shape of the house, the wind resistance coefficient is effectively reduced, and the wind load is reasonably distributed in a high-wind environment. The foldable support assembly 10 uses a truss system as the core support structure, and cooperates with the diagonal bracing assembly to optimize the frame force mode to ensure the stability and load-bearing capacity of the structure under complex working conditions. Truss rollers 8 are provided at the bottom of the foldable support assembly 10. The truss rollers 8 are used in conjunction with the track 9 to more accurately control the overall folding and unfolding process of the tent. The bottom of the foldable support assembly 10 is provided with multiple truss foot supports 11. Each support point of the truss foot support 11 is equipped with a truss roller 8. The truss roller 8 can roll flexibly along the track 9 to achieve smooth displacement and positioning. In order to further improve the storage efficiency, a truss scissor-type folding structure 12 is integrated into the structure. Through the contraction action of the truss scissor-type folding structure 12, the occupied space is greatly reduced, which is convenient for transportation and storage. The foldable support assembly 10 is covered with a tarpaulin 3, which is designed to be linked to the support structure, collapsing and expanding simultaneously with the structure. To enhance indoor lighting and ventilation, the tarpaulin 3 is embedded with tarpaulin windows 4, effectively improving living comfort and space usage experience.
[0064] In some embodiments, the bathroom space 14 includes a laundry area, a shower area and a washing area; wherein, the laundry area is equipped with a washing machine and / or a dryer, the shower area includes multiple independent shower rooms, each of which is equipped with a shower head 16 on the top, a squat toilet 20 is embedded under the shower area, and a flushing tank 17 is integrated into the back wall; the washing area adopts a bilaterally symmetrical layout, with a urinal 18 on one side and a washbasin group 19 on the other side, and each functional area is physically separated by a baffle 21.
[0065] The bathroom space 14 is designed to achieve efficient container space utilization and integrated functionality to meet the daily needs of multiple users. Within the container's built-in bathroom space 14, three functional areas—laundry, showering, and washing—are integrated through a modular layout. Specifically, the laundry area is equipped with a washing machine and dryer or a washer-dryer 15, providing one-stop laundry cleaning and drying. The shower area utilizes a three-dimensional spatial plan, with three independent shower cubicles, each equipped with a shower head 16 on top. A squat toilet 20 is embedded beneath the shower area, and a flushing tank 17 is integrated into the rear wall, forming a circulating water supply system for efficient vertical space utilization. The washing area adopts a bilaterally symmetrical layout, with a urinal 18 on one side and a washbasin 19 on the other. Each functional area is physically separated by a baffle 21, ensuring privacy and improving space efficiency. This multifunctional design creates a fully functional and well-planned bathroom system within the limited container volume, significantly enhancing the comfort and practicality of the temporary living environment. It should be noted that the functional zoning design in this plan is highly flexible and scalable. The number, specifications and layout of each functional area (including laundry area, shower area, wash area, etc.) can be adjusted according to actual usage needs, application scenarios and space conditions, and effectively adapt to diverse scenarios such as emergency rescue, field operations, commercial travel, etc.
[0066] In some embodiments, the ground pile assembly includes a ground pile 6, a floor support frame 22, a ground pile connecting plate 23, and a telescopic structure. The ground piles 6 are multiple and spaced apart, and the track 9 is detachably mounted on the ground piles 6. The telescopic structure is mounted between two adjacent ground piles 6 to move the two ground piles 6 closer or further apart. The track 9 is detachably mounted on the ground pile 6 via the floor support frame 22, and the ground pile connecting plate 23 is mounted on the bottom of the ground pile 6. The telescopic structure can be specifically a scissor-type folding structure 7.
[0067] Specifically, the ground pile assembly serves as the foundational support structure for the overall foldable house. Pre-set threaded holes at the top allow for a removable screw connection to the floor support frame 22, ensuring stable support for the upper structure while also securing the track 9 for the matching rollers. Each ground pile assembly includes multiple ground piles 6. In this embodiment, four ground piles 6 form a ground pile assembly. Adjacent ground piles 6 within the ground pile assembly are articulated using a scissor-type folding structure 7. This structure is flexible and retractable, significantly reducing the space it occupies in the collapsed state, making it easy to compactly stack and store within a container. Furthermore, the bottom of the ground piles 6 are fixedly connected to a ground nail connecting plate 23. The positioning holes distributed on its surface allow for quick assembly with the ground nails. Deep anchoring significantly enhances the overall anti-overturning capability and environmental adaptability of the house, effectively improving the stability and safety of the structure in complex terrain conditions.
[0068] Furthermore, the foldable floor 13 utilizes a dual-sided, opposing installation design, with three sets of four foldable floor units pre-installed in each container on either side. During construction, the container sidewall panels are first lowered and unfolded using steel cables 2 to form a basic operating platform. The built-in foldable floor panels are then sequentially folded and extended, gradually flattening and extending using their hinged structures. The floor is secured and supported by multiple sets of ground pile assemblies, which quickly connect to floor support frames 22 through threaded holes at the top of the piles 6, forming a stable support system. This design enables efficient integration of the entire process from storage to installation, significantly reducing construction time and ensuring the flatness and load-bearing capacity of the floor structure.
[0069] It should be understood that the ordinal numbers such as "first" and "second" mentioned herein are used to distinguish different components with the same name. They are for the convenience of description only and do not represent any limitation and should not be understood as any order.
[0070] For ease of understanding, the overall solution of the modular foldable container barrack structure provided by the present invention is described below.
[0071] like Figure 1 and Figure 2 As shown, the foldable container camping house provided by the present invention maximizes space utilization through a modular layout. A left container 1 and a right container 5 are respectively provided at the left and right ends as core storage units. The middle area is connected by a foldable support assembly 10 to form a main frame. The outer periphery of the foldable support assembly 10 is tightly wrapped with a tarpaulin 3, and multiple groups of tarpaulin windows 4 are orderly distributed thereon, taking into account ventilation, lighting and privacy protection. The bottom of the foldable support assembly 10 is integrated with a truss roller 8, which is precisely adapted to the track 9 laid on the pile assembly. The smooth rolling and rapid expansion and contraction of the support structure are achieved through mechanical transmission. In conjunction with the folding mechanism, the form conversion from compact storage to a complete living space can be completed in a short time, significantly improving the efficiency of use and deployment flexibility.
[0072] like Figure 3-Figure 5 As shown, the top of the foldable support assembly 10 adopts an overall arched streamlined design. By optimizing the cross-sectional shape of the house, the wind resistance coefficient is effectively reduced. The foldable support assembly 10 can also be efficiently deployed and retracted. The evenly distributed truss foot supports 11 at the bottom serve as the core support points. Each support point is equipped with a truss roller 8, which precisely cooperates with the track 9 to ensure that the support structure can flexibly roll along the preset path during deployment and deployment, achieving precise positioning. In addition, the truss scissor-type folding structure 12 integrated into the foldable support assembly 10 can be compressed or expanded through the contraction and extension of the scissor mechanism, effectively reducing transportation space and storage costs, and significantly improving equipment reuse efficiency and transfer convenience.
[0073] like Figure 6 and Figure 12As shown, the foldable floor 13 utilizes an innovative design of dual-sided installation, with foldable floor units pre-stored in containers on both sides, enabling efficient space utilization and rapid deployment. During installation, the container sidewall panels are first lowered using steel cables 2 to create an initial work platform. Subsequently, the built-in foldable floor panels are sequentially unfolded using hinge structures, extending symmetrically horizontally. During this process, multiple sets of ground pile assemblies operate synchronously, with the top threaded holes of the ground piles 6 quickly screwed into the floor support frames 22 to form a stable support network. This design, through the precise coordination of structural components, achieves an integrated and smooth operation from storage to installation, significantly shortening the installation cycle while ensuring the floor's excellent flatness and load-bearing capacity to meet diverse usage requirements.
[0074] like Figure 7 and Figure 8 As shown, the foldable container barracks provided by the present invention utilizes a dual-container integrated storage solution, enabling efficient storage and flexible deployment of structural components. The left and right containers (left container 1 and right container 5) serve as core storage units, integrating and partitioning all functional components. The left container 1 houses the orderly stacked pile components on the bottom layer, while the upper layer accommodates half of the truss structure. The right container 5 houses an independent bathroom 14, with the remaining support structures stored in layers on the outer sides, and the foldable floor 13 neatly stored at the bottom. After loading is complete, steel cables 2 tighten the container sidewalls to form a fully enclosed transport structure, effectively ensuring the integrity and safety of the components during transportation and storage.
[0075] like Figure 9 As shown, the bathroom space 14, through innovative modular and intensive design, creates a multifunctional living system within the limited container space, integrating three core functional areas: laundry, showering, and washing. The laundry area is equipped with a washer-dryer 15, and the shower area has three independent single rooms with a shower head 16 installed on the top. A squat toilet 20 is installed in the lower level, and a flushing tank 17 integrated into the rear wall forms a circulating water supply system, maximizing the utilization of vertical space. The washing area is arranged on both sides, with a urinal 18 on one side and a set of wash basins 19 on the other. The functional areas are physically separated by baffles 21.
[0076] like Figure 10 and Figure 11As shown, the ground pile assembly, serving as the foundational support core of the barracks, achieves a seamless balance of stability and portability through multiple design features. The tops of the ground piles 6 feature pre-set threaded holes for quick screw connection to the floor support frame 22. This not only provides stable support for the superstructure but also precisely secures the track 9, ensuring the displacement accuracy of the foldable support assembly 10. Four ground piles 6 form a ground pile assembly, internally connected by a scissor-type folding structure 7. This structure allows for flexible expansion and contraction, facilitating compact storage within a container. The ground pile connecting plate 23, secured at the bottom, features positioning holes for quick anchoring with the ground piles, making the ground pile assembly a key foundational component for barracks adapting to diverse environments.
[0077] This design is highly customizable, allowing the number, size, and layout of each functional area to be flexibly adjusted based on the specific scenario. Component placement can be flexibly adjusted based on transportation conditions, site space planning, or assembly process requirements, significantly enhancing the system's adaptability in diverse scenarios, including emergency rescue, field operations, and temporary commercial construction, fully demonstrating the versatility and scalability of the technical solution.
[0078] For the above modular foldable container barrack structure, the construction process adopts a modular linkage design to achieve efficient deployment. Its rapid construction method includes the following steps:
[0079] First, the container side wall panel is lowered by the steel cable 2 to build the initial working platform, and then the ground pile assembly is taken out and the collapsed ground pile assembly is unfolded using the scissor-type folding structure 7. The deep anchoring is completed through the ground nail connecting plate 23 and the ground nail to ensure the stability of the foundation, and the floor support frame 22 is quickly fixed on the top of the ground pile 6 with screws to form a load-bearing foundation, and the track 9 is fixed.
[0080] Then, the three sets of four folding floor units are sequentially removed from the container, and the foldable floor 13 is extended flatly using the hinge structure. During this process, the floor's unfolding simultaneously drives the foldable support assembly 10 to unfold along the track 9. Pre-set positioning holes in the floor are precisely aligned with the floor support brackets 22, and quickly locked with high-strength bolts to form a stable overall framework, completing the construction of the modular foldable container camp.
[0081] For the modular foldable container barrack structure mentioned above, the storage stage adopts reverse disassembly logic to improve operational efficiency. Its rapid storage method includes the following steps:
[0082] First, remove the fixing bolts and screws between the components, and pull out the ground nails to release the foundation constraints.
[0083] Subsequently, the foldable support assembly 10 is contracted and folded by the slide rail system and pushed into the container, and the foldable floor 13 is folded in the opposite direction along the hinge structure and compactly stored inside the container.
[0084] Finally, the floor support frame 22 is disassembled, and the pile assemblies are collapsed to their minimum size using the scissor-folding structure 7, and stacked neatly on one side of the container. Once the assemblies are stored, the container side panels are pulled back into place using the steel cables 2, closing to form a sealed transport unit, enabling a quick transition from operational use to transport and storage.
[0085] All components of the foldable house are fastened with anti-loosening bolts and screws to ensure structural reliability. The entire construction and storage process is rationally designed, significantly shortening the operation time and facilitating the repeated deployment and transfer transportation of the barracks.
[0086] Compared with the prior art, the present invention has the following beneficial effects:
[0087] 1. The dual-container modular storage method of the present invention integrates all components of the barracks (truss support, floor, bathroom, etc.) into two standard containers. It is fully functional, and the built-in bathroom module integrates functions such as laundry, shower, and washing. The three-dimensional partitioning achieves living comfort within a limited volume and the partitioned storage maximizes space utilization.
[0088] 2. The modular foldable container barracks proposed in the present invention can be quickly built and has high storage efficiency. No additional large equipment is required for installation and disassembly. Multiple folding mechanisms are set up, and the compression and expansion states can be flexibly and quickly achieved, significantly reducing transportation and storage costs.
[0089] 3. In the modular foldable container camping house proposed by the present invention, the truss support adopts an arched streamlined design, combined with the diagonal bracing assembly and deep anchoring of the ground piles 6, the structure is safe and reliable, and has strong environmental adaptability.
[0090] The above specific implementation methods further illustrate the objectives, technical solutions and beneficial effects of the present invention in detail. It should be understood that the above are only specific implementation methods of the present invention and are not intended to limit the scope of protection of the present invention. Any modifications, equivalent replacements, improvements, etc. made on the basis of the technical solutions of the present invention should be included in the scope of protection of the present invention.
Claims
1. A modular foldable container barrack structure, characterized in that: include: container; a foldable support assembly, wherein the foldable support assembly is stored in the container in a folded state and is pulled out relative to the container in an unfolded state; a track along which the foldable support assembly moves to unfold or fold; There are multiple ground pile assemblies, each of which is arranged at intervals at the bottom of the foldable support assembly, and the track is installed on the ground pile assemblies.
2. The modular foldable container barrack structure according to claim 1 is characterized in that: There are two containers, and the openings of the two containers are arranged opposite to each other and spaced apart; There are at least two groups of foldable support assemblies, and each of the foldable support assemblies can be folded and stored in two of the containers respectively; At least one of the two containers is provided with a bathroom space.
3. The modular foldable container barrack structure according to claim 2 is characterized in that: The foldable support assembly includes: A truss structure, wherein the truss structure is multiple and adjacent truss structures are arranged at intervals; A truss scissor-type folding structure is installed between every two adjacent truss structures, and the truss structures are moved closer or farther away by unfolding and folding, so as to fold or unfold the foldable support assembly.
4. The modular foldable container barrack structure according to claim 3 is characterized in that: The truss structure comprises: Top truss structure; Truss foot supports, the truss foot supports being spaced apart and disposed at the bottom of the top truss structure; A truss roller is installed at the bottom of the truss foot support and is rollingly connected to the track.
5. The modular foldable container barrack structure according to claim 4 is characterized in that: The periphery of the foldable support assembly is covered with a tarpaulin, and a tarpaulin window is embedded on the surface of the tarpaulin.
6. The modular foldable container barrack structure according to claim 2, characterized in that: The bathroom space includes: a laundry area, wherein the laundry area is equipped with a washing machine and / or a dryer; A shower area, comprising a plurality of independent shower cubicles, each of which is equipped with a shower head on the top, a squat toilet embedded below the shower area, and a flushing tank integrated into the rear wall; The washing area adopts a bilaterally symmetrical layout, with a urinal on one side and a washbasin group on the other side. Each functional area is physically separated by baffles.
7. The modular foldable container barrack structure according to claim 1 is characterized in that: The ground pile assembly comprises: Ground piles, wherein the ground piles are multiple and arranged at intervals, and the track is detachably mounted on the ground piles; The telescopic structure is installed between two adjacent ground piles to move the two ground piles closer to or farther away from each other.
8. The modular foldable container camping structure according to claim 7, characterized in that: The ground pile assembly further comprises: A floor support frame, through which the track is detachably mounted on the ground piles.
9. The modular foldable container camping structure according to claim 8, characterized in that: The ground pile assembly further comprises: A ground nail connecting plate is installed at the bottom of the ground pile.
10. The modular foldable container camping structure according to claim 7, characterized in that: The telescopic structure is a scissors-folding structure.