Folding box house
By designing a folding box room, using articulated structures and components such as connectors, drainage parts, and restriction parts, the rapid folding and unfolding of the box room and the rapid assembly of the drainage structure are achieved, solving the problems of time spent on-site construction and rainwater leakage, and improving construction efficiency and loading rate.
Patent Information
- Application Number
- CN202520541873.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2035-03-26
AI Technical Summary
The existing box room is built on site for a long time, has a large labor investment, and cannot quickly assemble the drainage structure, resulting in rainwater leakage into the house, affecting use.
A folding box room was designed. Through two box room bodies stacked vertically, using articulated structures and components such as connecting parts, drainage parts, restriction parts, etc., the box room is quickly folded and unfolded, and after the box room body is completed, the assembly of drainage parts is conveniently and quickly completed.
The rapid construction of box rooms and the rapid assembly of drainage structures have been achieved, the construction time and labor investment of on-site construction have been reduced, the problem of rainwater leaking into the house has been avoided, and the loading rate and space utilization have been improved.
Smart Images

Figure CN222976107U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of container houses, and more specifically, to a foldable container house. Background Art
[0002] The prefabricated container house originated in the United States. It is an environmentally friendly and economical container house with a new concept, which has a light steel skeleton, sandwich panels as enclosure materials, combines spaces in a standard modular series, and the components are connected by bolts.
[0003] Currently, after the production of container houses, due to their large volume, they cannot be preliminarily assembled in the factory and need to be built on-site, which is time-consuming and requires a large amount of labor. It cannot be used immediately after assembly. Some foldable container houses generally use a semi-panel folding method. This type of container house has certain limitations in appearance and cannot quickly complete the assembly and use of the drainage structure. The container house cannot be well connected to the urban drainage system, and most of the rainwater directly flows down from the roof to the surrounding areas, easily leaking into the house and affecting the normal work and life of users. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a foldable container house to solve the above problems.
[0005] To achieve the above purpose, an embodiment of the utility model provides a foldable container house, including: two container house bodies stacked vertically on top of each other;
[0006] The container house body includes a house bottom, a house top arranged directly above the house bottom and parallel to the house bottom, two house facades symmetrically hinged to the house bottom, two side walls hinged to the house bottom and perpendicular to the two house facades, a plurality of connecting pieces arranged on the house top and the two house facades, drainage pieces arranged on the house bottom and the house top, and a plurality of limiting pieces arranged between the house bottom and the house top, where
[0007] The plurality of connecting pieces are used to complete the connection between the house top and the two house facades, so that the two house facades will not separate from the house top during the process of rotating and folding around the house bottom surface;
[0008] The drainage pieces are used to guide and drain the rainwater falling on the house top surface;
[0009] The plurality of limiting pieces are adapted to be stably assembled between the house bottom and the house top through the drainage pieces after the two house facades and the two side walls are folded, and limit the rotation of the two house facades.
[0010] Further, the bottom of the house includes a bottom steel structure framework, a bottom plate fixed on the upper surface of the bottom steel structure framework, and several bottom box corners fixed at the four corners of the bottom steel structure framework;
[0011] The top of the house includes a top steel structure framework, a top plate fixed on the upper surface of the top steel structure framework, and several top box corners fixed at the four corners of the top steel structure framework and corresponding to several of the bottom box corners;
[0012] Both ends of the bottom of the side wall are respectively hinged to two of the bottom box corners.
[0013] Further, the front of the house includes two frame columns hinged to the bottom steel structure framework through hinges and symmetrically arranged, and a house panel fixed between the two frame columns;
[0014] Arc-shaped guide plates are fixedly connected to several of the frame columns, and several guide grooves adapted to the arc-shaped guide plates are opened on several of the bottom box corners;
[0015] Windows are assembled on both of the house panels, and a door body is assembled on one of the house panels.
[0016] Further, the connecting member includes a movable groove opened on the top steel structure framework and one of the top box corners, a limiting wheel rotatably installed in the top steel structure framework and one of the top box corners, a connecting frame fixed in one of the frame columns, a sliding groove opened on the connecting frame, a limiting slider slidably installed in the sliding groove, a connecting rod rotatably connected to the limiting slider, and a movable column with one end rotatably connected to the limiting wheel and the other end rotatably connected to the connecting rod.
[0017] Further, the drainage member includes a water guide groove opened on the upper surface of the top steel structure framework, a water guide edge with the upper end fixedly connected to the top plate and the other end extending into the water guide groove, several water guide pipes arranged between several of the bottom box corners and several of the top box corners, several water guide funnels respectively installed on several of the top box corners and corresponding to several of the water guide pipes, and several water diversion members arranged on several of the bottom box corners;
[0018] The lower end of the water guide funnel is closely inserted and slid in the upper end of the water guide pipe.
[0019] Further, the water diversion member includes a water diversion pipe movably installed on the bottom box corner, a support plate fixed to the bottom of the water diversion pipe, two guide rods symmetrically fixed in the bottom box corner and passing through the support plate, and two top support springs respectively movably sleeved outside the two guide rods;
[0020] Both ends of the top support spring are fixedly connected to the lower surface of the support plate and the inner wall of the bottom box corner respectively.
[0021] Further, two limit bumps and two limit grooves are symmetrically arranged on the upper surface of the bottom steel structure framework. Two positioning grooves corresponding to the two limit bumps are respectively arranged on the lower surfaces of the two side walls. Two positioning blocks corresponding to the two limit grooves are respectively fixedly connected to the lower surfaces of the two roof panels.
[0022] The side walls are fastened to the roof panels, the side walls are fastened to the top steel structure framework, and the roof panels are fastened to the top steel structure framework by angle steels.
[0023] Further, the limiting member includes a limiting sleeve arranged between one bottom box corner and one top box corner, a locking groove formed on the limiting sleeve and adapted to the bottom of the roof part and the positioning block, and a limiting groove formed on the lower surface of the limiting sleeve and adapted to the water diversion pipe.
[0024] Compared with the prior art, the embodiment of the present utility model has the following beneficial effects:
[0025] 1. For this foldable container house, both of the two side panels and the two roof parts are hinged to the house bottom, and the house top is connected to the upper ends of the two roof parts through a plurality of connecting members, so that the upper ends of the two roof parts can move horizontally and rotate on the house top through the connecting members. Furthermore, the six surfaces of the container house can be integrally folded and unfolded, reducing the assembled parts required for building the container house body. The overall integration degree is high, the construction amount is small, effectively reducing the construction duration and labor input during on-site construction of the container house. And after the container house is folded, it can be integrally packaged, effectively reducing the stacked transportation of assembled loose parts, improving the loading rate and space utilization rate of the vehicle, reducing the possibility of loss of assembled loose parts, avoiding resource waste. At the same time, the overall packaging can ensure that materials enter the site simultaneously, accelerating the on-site installation progress.
[0026] 2. For this foldable container house, through the arranged water diversion member, after the container house body is built, it is convenient and fast to complete the assembly of the drainage member on the container house body. When it rains and rain falls on the house top, it can quickly flow to the house bottom through the drainage member, forming an isolation system between the outside and inside of the box body, thus avoiding the situation that rainwater directly flows down from the roof surface to the surrounding and seeps into the inside of the container house. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The present utility model will be further described below with reference to the drawings and embodiments.
[0028] Figure 1 The three-dimensional view of the present utility model is shown;
[0029] Figure 2 Shows a partial perspective view of one state of the present utility model;
[0030] Figure 3 Shows a partial perspective view of another state of the present utility model;
[0031] Figure 4 Shows a partial perspective view of the present utility model;
[0032] Figure 5 Shows a partial exploded schematic view of the present utility model Figure 1 ;
[0033] Figure 6 Shows a partial exploded schematic view of the present utility model Figure 2 ;
[0034] Figure 7 Shows a partial top perspective view of the present utility model;
[0035] Figure 8 Shows a partial schematic view of the present utility model Figure 1 ;
[0036] Figure 9 Shows a partial schematic view of the present utility model Figure 2 ;
[0037] Figure 10 Shows a partial exploded perspective view of the present utility model Figure 1 ;
[0038] Figure 11 Shows a partial exploded perspective view of the present utility model Figure 2 .
[0039] In the figure
[0040] 1, container house body; 2, house bottom; 3, house top; 4, house face; 5, side wall; 6, connecting piece; 7, drainage piece; 8, limiting piece; 9, bottom steel structure framework; 10, bottom plate; 11, bottom box corner; 12, top steel structure framework; 13, top plate; 14, top box corner; 15, frame column; 16, house panel; 17, arc-shaped guide plate; 18, guide groove; 19, window body; 20, door body; 21, movable groove; 22, limiting wheel; 23, connecting frame; 24, chute; 25, limiting slider; 26, connecting rod; 27, movable column; 28, water guide groove; 29, water guide edge; 30, water guide pipe; 31, water guide funnel; 32, water diversion piece; 33, water diversion pipe; 34, support plate; 35, guide rod; 36, top support spring; 37, limiting groove; 38, positioning groove; 39, positioning block; 40, angle steel; 41, limiting sleeve; 42, locking groove; 43, limiting groove; 44, limiting convex block. Detailed implementation manners
[0041] Now, the present utility model will be further described in detail with reference to the accompanying drawings. These drawings are all simplified schematic diagrams, only illustrating the basic structure of the present utility model in a schematic manner, so they only show the components related to the present utility model.
[0042] As Figure 1-11 shown, a foldable box house includes: two box house bodies 1 stacked vertically on top of each other;
[0043] The box house body 1 includes a house bottom 2, a house top 3 disposed directly above the house bottom 2 and parallel to the house bottom 2, two house facades 4 symmetrically and hingedly installed on the house bottom 2, two side walls 5 hingedly installed on the house bottom 2 and perpendicular to the two house facades 4, a plurality of connecting members 6 disposed on the house top 3 and the two house facades 4, a drainage member 7 disposed on the house bottom 2 and the house top 3, and a plurality of limiting members 8 disposed between the house bottom 2 and the house top 3, wherein
[0044] The plurality of connecting members 6 are used to complete the connection between the house top 3 and the two house facades 4, so that the two house facades 4 will not separate from the house top 3 during the process of rotating and folding around the house bottom surface;
[0045] The drainage member 7 is used to guide and drain the rainwater falling on the house top surface;
[0046] A number of the limiting members 8 are adapted to be stably assembled between the bottom part 2 and the top part 3 of the box house through the drainage member 7 after the two housing surfaces 4 and the two side walls 5 are folded, so as to limit the rotation of the two housing surfaces 4. In use, both of the two side walls 5 are hinged to the bottom part 2 of the box house. Thus, when the two side walls 5 rotate to be parallel or perpendicular to the bottom surface of the box house, the folding or unfolding of the box house body 1 can be carried out. In the cooperation of a number of connecting members 6, the tops of the two housing surfaces 4 are both connected to the top part 3 of the box house. When the two housing surfaces 4 are folded on the bottom part 2 of the box house and the relationship between the housing surface 4 and the bottom part 2 changes from perpendicular to parallel, the connection position between the two housing surfaces 4 and the top part 3 changes from the edge of the top part 3 to the middle position. Thus, when the two housing surfaces 4 are folded on the bottom part 2 of the box house, the housing surface 4 abuts against the two housing surfaces 4. When the two housing surfaces 4 are unfolded on the bottom part 2 of the box house and the relationship between the housing surface 4 and the bottom part 2 changes from parallel to perpendicular, the connection position between the two housing surfaces 4 and the top part 3 changes from the middle position of the top part 3 to the edge position. At the same time, the top part 3 and the two housing surfaces 4 are perpendicular to each other, so that the six surfaces of the box house body 1 can be quickly folded, stacked and unfolded during use, effectively reducing the assembled parts required for building the box house body 1. The overall integration degree is high, the construction amount is small, and the construction duration and labor input during the on-site construction of the box house are effectively reduced; and the box house can be integrally packaged after folding, effectively reducing the stacking and transportation of the assembled loose parts, improving the loading rate and space utilization rate of the vehicle, reducing the possibility of loss of the assembled loose parts, avoiding resource waste, and at the same time, the overall packaging can ensure that the materials enter the site at the same time, accelerating the on-site installation progress; after the box house body 1 is unfolded, through the arranged water diversion member 32, the assembly of the drainage member 7 in the box house body 1 can be quickly completed, so that when it rains and the rainwater falls on the top part 3 of the box house, the rainwater can quickly flow to the bottom part 2 through the drainage member 7 and is not easy to enter the box house body 1 through the folding gaps of the box house body 1, facilitating the use of the user; at the same time, after the box house body 1 is folded and stacked, through the arranged water diversion member 32, the assembly of a number of limiting members 8 on the box house body 1 can be realized. Under the control of the number of limiting members 8, it is effectively avoided that during the transportation of the folded box house body 1, the components of the box house body 1 may collide or squeeze with each other due to the vehicle bumping or sudden braking, resulting in structural deformation or damage, and avoiding the situation that the structural deformation will affect the assembly and use of the house and even may cause some components to be unable to be normally installed or used; when a number of folding box houses are connected and horizontally assembled, a single side wall can be shared between two adjacent box houses to achieve the effect of a common wall, reducing the material cost.
[0047] Optionally, the bottom part 2 of the box house includes a bottom steel structure framework 9, a bottom plate 10 fixed on the upper surface of the bottom steel structure framework 9, and a number of bottom box corners 11 fixed at the four corners of the bottom steel structure framework 9;
[0048] The top of the box house 3 includes a top steel structure framework 12, a top plate 13 fixed on the upper surface of the top steel structure framework 12, and a number of top box corners 14 fixed at the four corners of the top steel structure framework 12 and corresponding to a number of the bottom box corners 11;
[0049] Both ends of the bottom of the side wall surface 5 are respectively hinged to two of the bottom box corners 11. During the folding process of the box house body 1, the two side wall surfaces 5 can rotate on a number of the bottom box corners 11 to control the two side wall surfaces 5 to fold parallel to the bottom surface of the box house or unfold perpendicular to the bottom surface of the box house, effectively reducing the components required for assembly during the construction of the box house body 1 and effectively improving the assembly efficiency of the box house body 1.
[0050] Optionally, the box house surface 4 includes two frame columns 15 hinged to the bottom steel structure framework 9 through hinges and symmetrically arranged, and a box house panel 16 fixed between the two frame columns 15;
[0051] Arc-shaped guide plates 17 are fixedly connected to a number of the frame columns 15, and a number of guide grooves 18 adapted to the arc-shaped guide plates 17 are provided on a number of the bottom box corners 11;
[0052] Windows 19 are assembled on both of the two box house panels 16, and a door body 20 is assembled on one of the two box house panels 16. When the two box house surfaces 4 rotate on the bottom steel structure framework 9 through hinges to complete the folding and unfolding of the two box house surfaces 4, the provided a number of arc-shaped guide plates 17 will move in a number of the guide grooves 18, thereby effectively restricting the movement of the two box house surfaces 4 and ensuring the stability during the folding and unfolding operation of the two box house surfaces 4.
[0053] Optionally, the connecting member 6 includes a movable groove 21 formed in the top steel structure framework 12 and one of the top box corners 14, a limiting wheel 22 rotatably installed in the top steel structure framework 12 and one of the top box corners 14, a connecting frame 23 fixed in one of the frame columns 15, a sliding groove 24 formed in the connecting frame 23, a limiting slider 25 slidably installed in the sliding groove 24, a connecting rod 26 rotatably connected to the limiting slider 25, and a movable column 27 with one end rotatably connected to the limiting wheel 22 and the other end rotatably connected to the connecting rod 26. When folding the box house body 1, the two housing surfaces 4 are pushed to rotate and incline towards each other. At this time, the movable column 27 is supported by the top box corner 14 and the top steel structure framework 12 and moves in the movable groove 21 under the restriction of the limiting wheel 22. At this time, the connecting rod 26 remains vertical, and the limiting slider 25 at the lower end of the connecting rod 26 moves in the sliding groove 24 to maintain the connection between the top of the housing surface 4 and the housing top 3. During the rotation and folding process of the two housing surfaces 4, the distance between the housing surface 4 and the housing top 3 can be adjusted to a certain extent, so that when the two housing surfaces 4 can smoothly change from the vertical state to the horizontal state, and the upper ends of the two housing surfaces 4 move from both ends of the housing top 3 to the middle position of the housing top 3, the housing top 3 can smoothly abut against the two housing surfaces 4, ensuring the smooth progress of the folding operation; when the box house body 1 is unfolded from the folded state, the housing top 3 is lifted upward by the hoisting device. Then, under the control of a number of connecting members 6, the upper ends of the two housing surfaces 4 are synchronously driven to move upward and move from the middle position of the housing top 3 to both ends of the housing top 3 respectively, thereby driving the two housing surfaces 4 to complete the rotation and unfolding, changing from the horizontal state to the vertical state, ensuring the smooth progress of the unfolding operation.
[0054] Optionally, the drainage member 7 includes a water guide groove 28 formed on the upper surface of the top steel structure framework 12, a water guide edge 29 with the upper end fixedly connected to the top plate 13 and the other end extending into the water guide groove 28, a number of water guide pipes 30 arranged between a number of the bottom box corners 11 and a number of the top box corners 14, a number of water guide funnels 31 respectively installed on a number of the top box corners 14 and corresponding to the number of water guide pipes 30, and a number of water diversion members 32 arranged on a number of the bottom box corners 11;
[0055] The lower end of the water guide funnel 31 is fitted and slidably inserted into the upper end of the water guide pipe 30. After the drainage member 7 is assembled in the container house body 1, if it rains, rainwater will flow along the top plate 13 and the water guide groove 28 on the top plate 13 into the water guide groove 28, then along the water guide groove 28 into several top box corners 14, and then into several water guide pipes 30 through several water guide funnels 31, and finally into several bottom box corners 11 through several water diversion members 32 and then discharged. When the rain is heavy and several water guide pipes 30 cannot meet the drainage requirements of the roof 3 of the house, the water flow holes on several top box corners 14 can smoothly discharge the excess water, preventing rainwater from flowing back into the container house body 1.
[0056] Optionally, the water diversion member 32 includes a water guide pipe 33 movably installed on the bottom box corner 11, a support plate 34 fixed to the bottom of the water guide pipe 33, two guide rods 35 symmetrically fixed inside the bottom box corner 11 and passing through the support plate 34, and two top support springs 36 respectively sleeved outside the two guide rods 35;
[0057] The two ends of the top support spring 36 are respectively fixedly connected to the lower surface of the support plate 34 and the inner wall of the bottom box corner 11. By arranging the two top support springs 36 and the guide rods 35, the water guide pipe 33 can be pushed back to its original position by the elastic force of the top support spring 36 after being pressed down. Thus, when the water guide pipe 33 is pressed down, the upper end of the water guide pipe 30 can be connected to the water guide funnel 31 in the corresponding top box corner 14, and the lower end of the water guide pipe 30 can be aligned with the water guide pipe 33. Then, when the pressing on the water guide pipe 33 is released, under the pushing of the elastic force of the return spring, the connection between the drinking water pipe and the lower end of the water guide pipe 30 can be completed, facilitating the installation of the drainage member 7 in the narrow space of the container house body 1; when the container house body 1 is folded, during the process of the water guide pipe 33 moving up and resetting under the pushing of the elastic force of the top support spring 36, the movement of the limiting member 8 can be effectively restricted, completing the fixation of the limiting member 8 on the container house body 1.
[0058] Optionally, two limit bumps and two limit grooves 37 are symmetrically arranged on the upper surface of the bottom steel structure frame 9, two positioning grooves 38 corresponding to the two limit bumps are respectively arranged on the lower surfaces of the two side walls 5, and two positioning blocks 39 corresponding to the two limit grooves 37 are respectively fixedly connected to the lower surfaces of the two house panels 16;
[0059] The side wall surface 5 is fastened to the roof panel 16, the side wall surface 5 is fastened to the top steel structure framework 12, and the roof panel 16 is fastened to the top steel structure framework 12 by angle steel 40. When the container house body 1 is controlled from the folded state to the unfolded state, and when the two roof panels 16, the two side wall surfaces 5 and the bottom steel structure framework 9 are perpendicular, the positioning block 39 at the bottom of the roof panel 16 will be inserted into the limit groove 37 on the steel structure framework, and the limit convex block on the steel structure framework will be stuck into the positioning groove 38 at the bottom of the side wall surface 5, thereby effectively improving the sealing effect and stability of the contact positions between the roof panel 16 and the side wall surface 5 and the top steel structure framework 12; and when the two roof panels 16 and the two side wall surfaces 5 are unfolded and perpendicular to the bottom steel structure framework 9, angle steel 40 can be installed by bolts at the positions where the two roof panels 16 and the two side wall surfaces 5 are perpendicular and close to each other first, and then angle steel 40 can be installed by bolts at the positions where the two roof panels 16 and the two side wall surfaces 5 are perpendicular and close to the top steel structure framework 12, thereby ensuring the stability and rigidity among the top steel structure framework 12, the two roof panels 16 and the two side wall surfaces 5 when the container house body 1 is unfolded, and improving the integrity and stability of the overall structure of the container house body 1 after unfolding.
[0060] Optionally, the limiting member 8 includes a limiting sleeve 41 arranged between one of the bottom box corners 11 and one of the top box corners 14, a locking groove 42 formed on the limiting sleeve 41 and adapted to the bottom of the roof surface portion 4 and the positioning block 39, and a limiting groove 43 formed on the lower surface of the limiting sleeve 41 and adapted to the water guiding pipe 33. When the two container house bodies 1 need to be transported, first fold the two container house bodies 1. At this time, insert a plurality of limiting sleeves 41 between a plurality of bottom box corners 11 and top box corners 14 of the container house body 1 respectively, and set the corresponding roof surface portion 4 and the positioning block 39 to be stuck into the locking groove 42 on the limiting sleeve 41, thereby effectively restricting the rotational movement of the roof surface portion 4 in the two container house bodies 1, and thus avoiding the mutual collision and damage of the roof top 3, the roof surface portion 4 and the side wall surface 5 in the container house body 1 during the transportation process; and when the limiting sleeve 41 is inserted between the bottom box corner 11 and the top box corner 14, the water guiding portion in the bottom box corner 11 will be stuck into the limiting groove 43 in the limiting sleeve 41, thereby effectively restricting the movement of the limiting sleeve 41 and avoiding the limiting sleeve 41 detaching from the container house body 1 during the transportation of the container house body 1, which affects the restriction of the folded state of the container house body 1.
[0061] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A foldable container house, characterized in that: include: Two box house bodies (1) stacked vertically on top of each other; The box house body (1) comprises a bottom part (2), a top part (3) arranged directly above the bottom part (2) and parallel to the bottom part (2), two floor parts (4) symmetrically hingedly mounted on the bottom part (2), two side walls (5) hingedly mounted on the bottom part (2) and perpendicularly mounted to the two floor parts (4), a plurality of connecting parts (6) arranged on the top part (3) and the two floor parts (4), a drainage part (7) arranged on the bottom part (2) and the top part (3), and a plurality of limiting parts (8) arranged between the bottom part (2) and the top part (3), wherein The plurality of connecting members (6) are used to complete the connection between the roof top (3) and the two roof sections (4), so that the two roof sections (4) will not separate from the roof top (3) during the process of rotating and folding around the floor surface; The drainage member (7) is used to guide and drain rainwater falling on the roof surface; The plurality of limiting members (8) are suitable for being stably assembled between the bottom floor (2) and the top floor (3) through the drainage member (7) after the two house surface sections (4) and the two side wall surfaces (5) are folded, thereby limiting the rotation of the two house surface sections (4).
2. A foldable container house as claimed in claim 1, characterized in that: The bottom of the house (2) comprises a bottom steel structure frame (9), a bottom plate (10) fixed to the upper surface of the bottom steel structure frame (9), and a plurality of bottom box corners (11) fixed at the four corners of the bottom steel structure frame (9); The roof (3) comprises a top steel structure frame (12), a top plate (13) fixed to the upper surface of the top steel structure frame (12), and a plurality of top box corners (14) fixed at four corners of the top steel structure frame (12) and corresponding to the plurality of bottom box corners (11); The two ends of the bottom of the side wall (5) are respectively hinged to the two bottom box corners (11).
3. A foldable container house as claimed in claim 2, characterized in that: The roof portion (4) comprises two frame columns (15) which are hinged to the bottom steel structure frame (9) via hinges and are symmetrically arranged, and a roof panel (16) fixed between the two frame columns (15); A plurality of the frame columns (15) are fixedly connected with arc-shaped guide plates (17), and a plurality of the bottom box corners (11) are provided with a plurality of guide grooves (18) adapted to the arc-shaped guide plates (17); Both of the two house panels (16) are equipped with a window body (19), and one of the house panels (16) is equipped with a door body (20).
4. A foldable container house as claimed in claim 3, characterized in that: The connecting member (6) includes a movable groove (21) provided on the top steel structure frame (12) and one of the top box corners (14), a limiting wheel (22) rotatably installed in the top steel structure frame (12) and one of the top box corners (14), a connecting frame (23) fixed in one of the frame columns (15), a slide groove (24) provided on the connecting frame (23), a limiting slider (25) slidably installed in the slide groove (24), a connecting rod (26) rotatably connected to the limiting slider (25), and a movable column (27) one end of which is rotatably connected to the limiting wheel (22) and the other end of which is rotatably connected to the connecting rod (26).
5. A foldable container house as claimed in claim 4, characterized in that: The drainage member (7) comprises a water guide groove (28) provided on the upper surface of the top steel structure frame (12), an upper end of which is fixedly connected to the top plate (13), and a water guide edge (29) extending to the inside of the water guide groove (28), a plurality of water guide pipes (30) arranged between a plurality of the bottom box corners (11) and a plurality of the top box corners (14), a plurality of water guide funnels (31) respectively installed on a plurality of the top box corners (14) and corresponding to the plurality of the water guide pipes (30), and a plurality of water guide members (32) arranged on a plurality of the bottom box corners (11); The lower end of the water guide funnel (31) is snugly inserted into the upper end of the water guide pipe (30).
6. A foldable container house as claimed in claim 5, characterized in that: The water guide member (32) comprises a water guide pipe (33) movably mounted on the bottom box corner (11), a support plate (34) fixed to the bottom of the water guide pipe (33), two guide rods (35) symmetrically fixed in the bottom box corner (11) and penetrating the support plate (34), and two supporting springs (36) movably sleeved on the outside of the two guide rods (35); The two ends of the supporting spring (36) are respectively fixedly connected to the lower surface of the supporting plate (34) and the inner wall of the bottom box corner (11).
7. A foldable container house as claimed in claim 6, characterized in that: The upper surface of the bottom steel structure frame (9) is symmetrically provided with two limiting protrusions and two limiting grooves (37); the lower surfaces of the two side walls (5) are respectively provided with two positioning grooves (38) corresponding to the two limiting protrusions; and the lower surfaces of the two room panels (16) are respectively fixedly connected with two positioning blocks (39) corresponding to the two limiting grooves (37); The side wall surface (5) and the house panel (16), the side wall surface (5) and the top steel structure frame (12), and the house panel (16) and the top steel structure frame (12) are all fastened by angle steels (40).
8. A foldable container house as claimed in claim 7, characterized in that: The limiting member (8) comprises a limiting sleeve (41) arranged between one of the bottom box corners (11) and one of the top box corners (14), a locking groove (42) provided on the limiting sleeve (41) and adapted to the bottom of the housing portion (4) and the positioning block (39), and a limiting groove (43) provided on the lower surface of the limiting sleeve (41) and adapted to the water diversion pipe (33).