A quickly expandable folding container house
By designing a fast-spread folding box room, the side panels and end panels connected by the hinges are solved, and the problems of low transportation efficiency and high cost of traditional containers are achieved, and more efficient space utilization and transportation efficiency are achieved.
Patent Information
- Application Number
- CN202010883542.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-28
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2040-08-28
AI Technical Summary
Traditional containers take up a lot of space during transportation of empty containers, resulting in low transportation efficiency and high cost.
A quick-spread folding box room is designed to achieve a detachable structure through the side panels and end panels connected by hinges, reducing the space occupied in the packaging state.
On the premise of ensuring that the use space after expansion remains unchanged, the space occupied by the folding box room is reduced, transportation efficiency is improved and transportation costs are reduced.
Smart Images

Figure CN111977199B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of containers, and particularly to a quickly deployable folding container house. Background Art
[0002] Currently, traditional containers have advantages such as low manufacturing cost and convenient transportation, so they are widely used in global trade. However, during the transportation of empty containers, due to the volume limitation of the containers, a large amount of space is occupied. A transport vehicle can only transport one container, resulting in very low transportation efficiency and high transportation costs. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a folding container house or a quickly deployable folding container house to solve the problems that the overall transportation of traditional container houses occupies a large amount of space and has low transportation efficiency.
[0004] The technical solution of the present invention to solve the above technical problems is as follows: A folding container house or a quickly deployable folding container house includes a top plate, a bottom plate, two side plates, and two end plates, and is characterized in that: the side plate includes an upper side plate, a first hinge member, and a lower side plate which are arranged in sequence from top to bottom, the lower edge of the upper side plate is connected to the upper edge of the lower side plate through the first hinge member, the lower part of the end plate is connected to the bottom plate through a second hinge member, the upper part of the end plate is detachably connected to the top plate, the upper edge of the upper side plate is connected to the top plate through a second hinge member, and the lower edge of the lower side plate is connected to the bottom plate through a second hinge member.
[0005] Further, it further includes two brow plates which are respectively vertically and fixedly arranged at both ends of the top plate in the length direction, the outer surface of the upper part of the end plate is removably abutted against the brow plates, and the end plate is detachably connected to the brow plates.
[0006] Further, a bolt perpendicular to the end plate is fixedly arranged on the outer surface of the upper part of the end plate, and a jack is arranged on the inner surface of the brow plate corresponding to the position of the bolt.
[0007] Further, it further includes a self-unfolding power cable which passes through the brow plates and is arranged at the middle position of the top plate along the length direction, an opening exposing the self-unfolding power cable is formed on the top plate, and both ends of the self-unfolding power cable are respectively connected to the upper edges of the end plates.
[0008] Further, a pulley is arranged at the center position of the brow plate, and the self-unfolding power cable is wound around the pulley.
[0009] Further, the top plate includes two side frames and two center keels. The two side frames are arranged in parallel, and two eyebrow plates are respectively vertically arranged at both ends of the two side frames. One end of one center keel is fixedly connected to the middle position of one eyebrow plate, and one end of the other center keel is fixedly connected to the middle position of the other eyebrow plate. The side frame and the center keel are fixedly connected by square steel. A gap is left between the two center keels at both ends, and the self-unfolding power cable is arranged inside the two center keels.
[0010] Further, the first hinge includes a plurality of connecting plates, a plurality of first right-angled sector steel plates and a plurality of second right-angled sector steel plates. A first L-shaped steel plate is provided between two adjacent first right-angled sector steel plates. A through hole is provided at the center position of the first right-angled sector steel plate, and a first bolt is arranged in the through hole. A second L-shaped steel plate is provided between two adjacent second right-angled sector steel plates. A through hole is provided at the center position of the second right-angled sector steel plate, and a second bolt is arranged in the through hole. One end of the connecting plate is sleeved on the first bolt and clamped between two adjacent first right-angled sector steel plates, and the other end of the connecting plate is sleeved on the second bolt and clamped between two adjacent second right-angled sector steel plates. A limiting protrusion is arranged at one end of the first right-angled sector steel plate, and a limiting groove is correspondingly arranged on the second right-angled sector steel plate for the limiting protrusion.
[0011] Further, first insertion square tubes are fixedly arranged on both the first right-angled sector steel plate and the second right-angled sector steel plate. First grooves are opened on the upper side plate and the lower side plate corresponding to the first insertion square tubes. The first insertion square tube on the first right-angled sector steel plate is inserted into the position of the first groove on the upper side plate, and the first insertion square tube on the second right-angled sector steel plate is inserted into the position of the first groove on the lower side plate.
[0012] Further, the second hinge includes a second insertion square tube, a third insertion square tube and a plurality of third right-angled sector steel plates. A third L-shaped steel plate is provided between two adjacent third right-angled sector steel plates. The third insertion square tube is provided with equally spaced support plates, and the support plates are inserted between two adjacent third right-angled sector steel plates. The third right-angled sector steel plate and the support plate are hinged by a third bolt. Second grooves are provided on the upper side plate, the lower side plate and the end plate corresponding to the second insertion square tube, and third grooves are provided on the top plate and the bottom plate corresponding to the third insertion square tube.
[0013] Further, the height of the central axis of the third bolt from the upper surface of the third insertion square tube is not less than the thickness of the end plate plus half of the side length of the third right-angled sector steel plate.
[0014] The present invention provides a quickly expandable folding container house, which includes a top plate, a bottom plate, two side plates and two end plates. It is characterized in that: the side plate includes an upper side plate, a first hinge and a lower side plate arranged in sequence from top to bottom. The lower edge of the upper side plate is connected to the upper edge of the lower side plate through the first hinge. The lower part of the end plate is connected to the bottom plate through a second hinge. The upper part of the end plate is detachably connected to the top plate. The upper edge of the upper side plate is connected to the top plate through a second hinge. The lower edge of the lower side plate is connected to the bottom plate through a second hinge. In this way, since the lower edge of the upper side plate is connected to the upper edge of the lower side plate through the first hinge, and the lower part of the end plate is connected to the bottom plate through the second hinge, when storing, first release the fixation of the top plate to the end plate, and the end plate is turned inwards to fit on the upper surface of the bottom plate to complete the storage of the end plate. Then the top plate moves downwards. Due to the hinge relationship between the upper side plate and the lower side plate, the entire side plate contracts inwards from the middle and is in a folded state, and the storage is completed. Compared with the prior art, the advantages are: through a new structural design, on the premise of ensuring that the usable space remains unchanged after expansion, the occupied space of the folding container house in the packed state is reduced, the space is reasonably utilized, the transportation efficiency is improved, and the transportation cost is reduced. Brief Description of the Drawings
[0015] Figure 1 is an overall structural schematic diagram of a quickly expandable folding container house of the present invention;
[0016] Figure 2 is an overall structural explosion diagram of a quickly expandable folding container house of the present invention;
[0017] Figure 3 is a structural schematic diagram of the first hinge of a quickly expandable folding container house of the present invention;
[0018] Figure 4 is a side view of the first hinge of a quickly expandable folding container house of the present invention;
[0019] Figure 5 is a structural schematic diagram of the second hinge of a quickly expandable folding container house of the present invention;
[0020] Figure 6 is a structural schematic diagram of the connection position between the end plate and the brow plate of a quickly expandable folding container house of the present invention.
[0021] In the drawings, the list of components represented by each reference numeral is as follows:
[0022] 1. Top plate; 2. Bottom plate; 3. Side plate; 301. Upper side plate; 302. Lower side plate; 303. First hinge; 3031. Connecting plate; 3032. First right-angled sector steel plate; 3033. Second right-angled sector steel plate; 3034. First L-shaped steel plate; 3035. Second L-shaped steel plate; 3036. Limit projection; 3037. Limit groove; 3038. First inserted square tube; 4. End plate; 401. Bolt; 5. Eyebrow plate; 501. Socket; 502. Pulley; 6. Self-unfolding power cable; 7. Second hinge; 701. Second inserted square tube; 702. Third inserted square tube; 703. Third right-angled sector steel plate; 704. Third L-shaped steel plate; 705. Support plate. Detailed implementation mode
[0023] The principles and features of the present invention will be described below with reference to the accompanying drawings. The examples given are only for explaining the present invention and are not intended to limit the scope of the present invention.
[0024] In the description of the present invention, it should be understood that the orientation or positional relationships indicated by the terms "upper", "lower", "center", "inner", "outer", "top", "bottom", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the present invention.
[0025] In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0026] Such as Figures 1-6As shown in the figure, the present invention provides a quickly expandable folding container house, which includes a top plate 1, a bottom plate 2, two side plates 3 and two end plates 4. It is characterized in that: the side plate 3 includes an upper side plate 301, a first hinge 303 and a lower side plate 302 which are arranged in sequence from top to bottom. The lower edge of the upper side plate 301 is connected to the upper edge of the lower side plate 302 through the first hinge 303. The lower part of the end plate 4 is connected to the bottom plate 2 through a second hinge 7. The upper part of the end plate 4 is detachably connected to the top plate 1. The upper edge of the upper side plate 301 is connected to the top plate 1 through a second hinge 7. The lower edge of the lower side plate 302 is connected to the bottom plate 2 through a second hinge 7. In this way, since the lower edge of the upper side plate 301 is connected to the upper edge of the lower side plate 302 through the first hinge 303, and the lower part of the end plate 4 is connected to the bottom plate 2 through the second hinge 7, during storage, first release the fixation of the top plate 1 on the end plate 4, and the end plate 4 is turned inward to fit onto the upper surface of the bottom plate 2 to complete the storage of the end plate 4. Then the top plate 1 moves downward. Due to the hinge relationship between the upper side plate 301 and the lower side plate 302, the entire side plate 3 contracts inward from the middle and is in a folded state, and the storage is completed. Compared with the prior art, the advantages are: through a new structural design, on the premise of ensuring that the usable space remains unchanged after expansion, the occupied space of the folding container house in the packed state is reduced, the space is reasonably utilized, the transportation efficiency is improved, and the transportation cost is reduced.
[0027] Furthermore, it should be noted that: there is a preliminary research plan for the building water, electricity and gas system, which can be prefabricated in the folding container house according to the needs of the user, without later modification or on-site installation, improving the installation efficiency and reducing the use and maintenance costs for the user; this system can achieve modular series and parallel connection, facilitating the user to strive for the shortest installation time in a harsh environment and quickly put it into use; and as a constituent unit of the overall camp construction, a standardized installation plan and system connection plan have been formulated.
[0028] The quickly expandable folding container house of the present invention, such as Figures 1-6As shown in the figure, on the basis of the technical solutions described above, it can also be: It further includes two eyebrow plates 5, and the two eyebrow plates 5 are respectively vertically and fixedly arranged at both ends of the top plate 1 in the length direction. The outer surface of the upper part of the end plate 4 is removably abutted against the eyebrow plate 5, and the end plate 4 is detachably connected to the eyebrow plate 5. In this way, the eyebrow plates 5 are arranged at both ends of the top plate 1, and the height of the eyebrow plates 5 is greater than the thickness of the top plate 1. In the state where the end plate 4 is vertically erected, it can abut against the eyebrow plate 5. On the one hand, the eyebrow plate 5 plays a certain limiting role on the end plate 4 to prevent the end plate 4 from flipping excessively. On the other hand, it also provides a better fixing position for the end plate 4; A further preferred technical solution is: A pin 401 perpendicular to the end plate 4 is fixedly arranged on the outer surface of the upper part of the end plate 4, and a jack 501 is arranged on the inner surface of the eyebrow plate 5 corresponding to the position of the pin 401. In this way, when the entire container house is unfolded, the crane is hoisted at the position of the top plate 1, the entire side plate 3 is unfolded, and after the end plate 4 is erected, the pin 401 on the end plate 4 is inserted into the jack 501 to complete the unfolding and installation, which is very fast and convenient. After many tests on the connection method of the pin 401 and the jack 501, after the pin 401 is inserted into the jack 501, the jack 501 will play a certain limiting role on the pin 401, and it is very difficult for the pin 401 to slide, and its connection strength can be guaranteed; Of course, in order to further ensure the use safety, an opening pin, a bolt or a pin can also be installed on the pin 401 and the jack 501 for fixation.
[0029] The quickly deployable folding container house of the present invention, such as Figures 1-6As shown in the figure, on the basis of the technical solution described above, it may further include a self-unfolding power cable 6. The self-unfolding power cable 6 is passed through the middle position of the top plate 1 along the length direction through the eyebrow plate 5. An opening for exposing the self-unfolding power cable 6 is provided on the top plate 1. Both ends of the self-unfolding power cable 6 are respectively connected to the upper edges of the end plates 4. In this way, by setting the self-unfolding power cable 6, during the unfolding process of the entire container house, a crane is used for lifting. Since existing cranes generally have main and auxiliary hoists, they also have a main hook and an auxiliary hook. The main hook suspends the top plate 1, causing the upper side plate 301 and the lower side plate 302 to unfold to form the entire side plate 3 that stands vertically. Then, the auxiliary hook is used for lifting. Since an opening for exposing the self-unfolding power cable 6 is provided on the top plate 1, the self-unfolding power cable 6 can be lifted at the opening position. The self-unfolding power cable 6 pulls the end plate 4 to stand upright, and the worker cooperates to insert the bolt 401 into the jack 501 to complete the unfolding and installation. By prefabricating the self-unfolding power cable 6 inside the top plate 1, it effectively avoids the operation of personnel entering and exiting the "unlocked and semi-unfolded container house" during the self-unfolding process of the end plate 4 of the traditional folding container house, improves safety; at the same time, reduces the number of operators during the installation process; reduces the number of times the installation personnel change the installation operation surface, improves the speed of the self-unfolding process of the end plate 4 of the container house, and improves the installation efficiency. A further preferred technical solution is that a pulley 502 is provided at the center position of the eyebrow plate 5, and the self-unfolding power cable 6 is wound around the pulley 502. In this way, by setting the pulley 502, the self-unfolding power cable 6 can slide on the pulley 502, avoiding direct abrasion of the eyebrow plate 5 by the self-unfolding power cable 6, reducing the frictional resistance while also increasing the service life of the eyebrow plate 5.
[0030] The quickly deployable folding container house of the present invention, as Figures 1-6 shown in the figure, on the basis of the technical solution described above, it may further be: The top plate 1 includes two side frames and two center keels. The two side frames are arranged in parallel. Two eyebrow plates 5 are respectively vertically arranged at both ends of the two side frames. One end of one center keel is fixedly connected to the middle position of one eyebrow plate 5, and one end of the other center keel is fixedly connected to the middle position of the other eyebrow plate 5. The side frame and the center keel are fixedly connected by square steel. A gap is left between the two center keels at both ends, and the self-unfolding power cable 6 is passed through the two center keels. In this way, by setting the center keels, it is convenient to pre-bury the self-unfolding power cable 6, without the self-unfolding power cable 6 being exposed outside. It has a certain storage effect on the self-unfolding power cable 6, and at the same time also slows down its oxidation rate and extends the service life of the self-unfolding power cable 6. A gap is left between the two center keels to provide a hanging space for the hook.
[0031] The quickly deployable folding container house of the present invention, as Figures 1-6As shown in the figure, on the basis of the technical solution described above, it can also be: the first hinge member 303 includes a plurality of connecting plates 3031, a plurality of first right-angled sector steel plates 3032, and a plurality of second right-angled sector steel plates 3033. A first L-shaped steel plate 3034 is provided between two adjacent first right-angled sector steel plates 3032. A through hole is provided at the center position of the first right-angled sector steel plate 3032, and a first bolt is inserted through the through hole. A second L-shaped steel plate 3035 is provided between two adjacent second right-angled sector steel plates 3033. A through hole is provided at the center position of the second right-angled sector steel plate 3033, and a second bolt is inserted through the through hole. One end of the connecting plate 3031 is sleeved on the first bolt and clamped between two adjacent first right-angled sector steel plates 3032, and the other end of the connecting plate 3031 is sleeved on the second bolt and clamped between two adjacent second right-angled sector steel plates 3033. A limiting protrusion 3036 is provided at one end of the first right-angled sector steel plate 3032, and a limiting groove 3037 corresponding to the limiting protrusion 3036 is provided on the second right-angled sector steel plate 3033.
[0032] A through hole is provided at the center position of the first right-angled sector steel plate 3032, and a limiting protrusion 3036 protruding along the length direction of the first right-angled side of the first right-angled sector steel plate 3032 is provided on the first right-angled side of the first right-angled sector steel plate 3032;
[0033] A through hole is provided at the center position of the second right-angled sector steel plate 3033, and a limiting groove 3037 recessed along the length direction of the first right-angled side of the second right-angled sector steel plate 3033 is provided on the first right-angled side of the second right-angled sector steel plate 3033;
[0034] The inner wall of the first L-shaped steel plate 3034 is an arc structure and can be tangent to the semi-circular end of the connecting plate 3031. A limiting protrusion 3036 protruding along the length direction of the first right-angled side of the first L-shaped steel plate 3034 is provided on the first right-angled side of the first L-shaped steel plate 3034;
[0035] The connecting plate 3031 is a long strip-shaped steel plate with semi-circular ends at both ends, which can be tangent to the arc-shaped ends of the inner walls of the first L-shaped steel plate 3034 and the second L-shaped steel plate 3035, reducing the resistance when the column rotates. A through hole is provided at each end of the connecting plate 3031;
[0036] The inner wall of the second L-shaped steel plate 3035 is an arc structure and can be tangent to the semi-circular end of the connecting plate 3031. A limiting groove 3037 recessed along the length direction of the first right-angled side of the second L-shaped steel plate 3035 is provided on the first right-angled side of the second L-shaped steel plate 3035;
[0037] The thickness of the first right-angled sector steel plate 3032 is the same as that of the second right-angled sector steel plate 3033, and the thickness of the first L-shaped steel plate 3034, the connecting plate 3031, and the second L-shaped steel plate 3035 is the same. The same thickness makes the manufacturing and use of each component convenient and fast. One first L-shaped steel plate 3034 is arranged between every two first right-angled sector steel plates 3032 to form a first component unit, and three first component units are arranged side by side;
[0038] One second L-shaped steel plate 3035 is arranged between every two second right-angled sector steel plates 3033 to form a second component unit, and three second component units are arranged side by side;
[0039] The first end of each connecting plate 3031 is arranged at the inner wall position of each first L-shaped steel plate 3034, and the semicircular end of the connecting plate 3031 is tangent to the arc structure of the first L-shaped steel plate 3034, so that the through holes of the first right-angled sector steel plate 3032 and the connecting plate 3031 are on the same straight line. The second end of each connecting plate 3031 is arranged at the inner wall position of each second L-shaped steel plate 3035, and the semicircular end of the connecting plate 3031 is tangent to the arc structure of the second L-shaped steel plate 3035, so that the through holes of the second right-angled sector steel plate 3033 and the connecting plate 3031 are on the same straight line;
[0040] Two bolts are respectively inserted into two groups of through holes. Among them, the limit protrusion 3036 of the first right-angled sector steel plate 3032 is clamped with the limit groove 3037 of the second right-angled sector steel plate 3033, and the limit protrusion 3036 of the first L-shaped steel plate 3034 is clamped with the limit groove 3037 of the second L-shaped steel plate 3035.
[0041] The first right-angled sector steel plate 3032 further includes: V-shaped notches. The V-shaped notches can be used to release the stress inside the component and extend the service life of the component. There are 3 V-shaped notches, which are respectively arranged on the two right-angled sides and the arc side of the first right-angled sector steel plate 3032.
[0042] The second right-angled sector steel plate 3033 further includes: V-shaped notches. The V-shaped notches can be used to release the stress inside the component and extend the service life of the component. There are 3 V-shaped notches, which are respectively arranged on the two right-angled sides and the arc side of the second right-angled sector steel plate 3033.
[0043] The first L-shaped steel plate 3034 further includes: V-shaped notches. The V-shaped notches can be used to release the stress inside the component and extend the service life of the component. There are 3 V-shaped notches, which are respectively arranged on the two right-angled sides of the first L-shaped steel plate 3034 and the straight side where there is no limit protrusion 3036.
[0044] The second L-shaped steel plate 3035 further includes: a V-shaped notch which can be used to release the stress inside the component and extend the service life of the component. There are 3 V-shaped notches, which are respectively arranged on the two right-angled sides of the second L-shaped steel plate 3035 and the straight side without the limit groove 3037.
[0045] From the above structural description, it can be seen that the entire unfolding angle of the first hinge 303 is 180°, that is, the upper side plate 301 and the lower side plate 302 are in the same horizontal plane after being fully unfolded.
[0046] The quick-unfolding folding container house of the present invention, as Figures 1-6 shown, on the basis of the technical solution described above, it can also be: first insertion square tubes 3038 are fixedly arranged on both the first right-angled sector steel plate 3032 and the second right-angled sector steel plate 3033. First grooves are opened on the upper side plate 301 and the lower side plate 302 corresponding to the first insertion square tubes 3038. The first insertion square tube 3038 on the first right-angled sector steel plate 3032 is inserted at the position of the first groove on the upper side plate 301, and the first insertion square tube 3038 on the second right-angled sector steel plate 3033 is inserted at the position of the first groove on the lower side plate 302. In this way, because the first insertion square tube 3038 is inserted into the first groove, the first groove can provide an installation position for the first insertion square tube 3038, that is, ensure the effectiveness of the hinge, and at the same time ensure the overall flatness of the side plate 3 after installation. The specific installation and fixation can be achieved by welding or passing square steel through the connection positions of the first insertion square tube 3038 and the upper side plate 301 and the lower side plate 302. The fixation method can be diversified according to actual needs.
[0047] The quick-unfolding folding container house of the present invention, as Figures 1-6As shown, based on the technical solutions described above, it can also be: The second hinge member 7 includes a second plug-in square tube 701, a third plug-in square tube 702, and a plurality of third right-angled sector steel plates 703. A third L-shaped steel plate 704 is provided between adjacent two of the third right-angled sector steel plates 703. The third plug-in square tube 702 is provided with equally spaced support plates 705. The support plates 705 are inserted between adjacent two of the third right-angled sector steel plates 703. The third right-angled sector steel plate 703 and the support plate 705 are hinged by a third bolt. The upper side plate 301, the lower side plate 302, and the end plate 4 are provided with second grooves corresponding to the second plug-in square tube 701. The top plate 1 and the bottom plate 2 are provided with third grooves corresponding to the third plug-in square tube 702. In this way, the third right-angled sector steel plate 703 is provided with a through hole at the central position. The inner wall of the third L-shaped steel plate 704 is an arc structure and can be tangent to the semi-circular end of the support plate 705. The end of the support plate 705 is a semi-circular structure and can be tangent to the arc end of the inner side wall of the third L-shaped steel plate 704, reducing the resistance when the column rotates; the third L-shaped steel plate 704 and the support plate 705 have the same thickness, and the same thickness makes the manufacturing and use of each component convenient and fast. When the end plate 4 is erected completely, the inner side surface of the third L-shaped steel plate 704 abuts against the support plate 705. When the end plate 4 is stored and placed horizontally, the other inner side surface of the third L-shaped steel plate 704 abuts against the support plate 705. In this way, the rotation angle of the second hinge member 7 can be 90°.
[0048] The quick-expandable folding container house of the present invention, as Figures 1-6 shown, based on the technical solutions described above, it can also be: The height of the central axis of the third bolt from the upper surface of the third plug-in square tube 702 is not less than the thickness of the end plate 4 plus half of the side length of the third right-angled sector steel plate 703. In this way, by making the height of the central axis of the third bolt from the upper surface of the third plug-in square tube 702 not less than the thickness of the end plate 4 plus half of the side length of the third right-angled sector steel plate 703, it can be ensured that after the end plate 4 is folded, the lower surface of the lower side plate 302 can be completely attached and placed on the outer surface of the end plate 4, ensuring that there is no interference between the panels after storage is completed and forming the best storage state.
[0049] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A quickly expandable folding container house, comprising a top plate (1), a bottom plate (2), two side plates (3) and two end plates (4). Characterized in that: The side plate (3) includes an upper side plate (301), a first hinge member (303) and a lower side plate (302) arranged in sequence from top to bottom. The lower edge of the upper side plate (301) is connected to the upper edge of the lower side plate (302) through the first hinge member (303). The lower part of the end plate (4) is connected to the bottom plate (2) through a second hinge member (7). The upper part of the end plate (4) is detachably connected to the top plate (1). The upper edge of the upper side plate (301) is connected to the top plate (1) through a second hinge member (7). The lower edge of the lower side plate (302) is connected to the bottom plate (2) through a second hinge member (7). The quickly expandable folding container house further includes two eyebrow plates (5). The two eyebrow plates (5) are respectively vertically and fixedly arranged at both ends of the top plate (1) in the length direction. The outer surface of the upper part of the end plate (4) is removably abutted against the eyebrow plate (5). The end plate (4) is detachably connected to the eyebrow plate (5). A plug pin (401) perpendicular to the end plate (4) is fixedly arranged on the outer surface of the upper part of the end plate (4). A jack (501) is arranged at the position corresponding to the plug pin (401) on the inner surface of the eyebrow plate (5). The quickly expandable folding container house further includes a self-unfolding power cable (6). The self-unfolding power cable (6) passes through the eyebrow plate (5) and is arranged at the middle position of the top plate (1) along the length direction. An opening exposing the self-unfolding power cable (6) is formed on the top plate (1). Both ends of the self-unfolding power cable (6) are respectively connected to the upper edges of the end plates (4). The first hinge member (303) includes a plurality of connecting plates (3031), a plurality of first right-angle sector steel plates (3032) and a plurality of second right-angle sector steel plates (3033). A first L-shaped steel plate (3034) is provided between adjacent two first right-angle sector steel plates (3032). A through hole is provided at the central position of the first right-angle sector steel plate (3032), and a first bolt passes through the through hole. A second L-shaped steel plate (3035) is provided between adjacent two second right-angle sector steel plates (3033). A through hole is provided at the central position of the second right-angle sector steel plate (3033), and a second bolt passes through the through hole. One end of the connecting plate (3031) is sleeved on the first bolt and clamped between adjacent two first right-angle sector steel plates (3032). The other end of the connecting plate (3031) is sleeved on the second bolt and clamped between adjacent two second right-angle sector steel plates (3033). A limit protrusion (3036) is arranged at one end of the first right-angle sector steel plate (3032). A limit groove (3037) corresponding to the limit protrusion (3036) is arranged on the second right-angle sector steel plate (3033).
2. The quickly expandable folding container house according to claim 1, Characterized in that: The eyebrow plate (5) is provided with a pulley (502) at the central position, and the self-unfolding power cable (6) is wound around the pulley (502).
3. The quickly deployable folding container house according to claim 1, characterized in that: The top plate (1) includes two side frames and two central keels. The two side frames are arranged in parallel, and two eyebrow plates (5) are respectively vertically arranged at both ends of the two side frames. One end of one central keel is fixedly connected to the middle position of one eyebrow plate (5), and one end of the other central keel is fixedly connected to the middle position of the other eyebrow plate (5). The side frame and the central keel are fixedly connected by square steel. There is a gap between the two central keels at both ends, and the self-unfolding power cable (6) is arranged inside the two central keels.
4. The quickly deployable folding container house according to claim 1, characterized in that: First plugging square tubes (3038) are fixedly arranged on both the first right-angled sector steel plate (3032) and the second right-angled sector steel plate (3033). First grooves are opened on the upper side plate (301) and the lower side plate (302) corresponding to the first plugging square tubes (3038). The first plugging square tube (3038) on the first right-angled sector steel plate (3032) is plugged at the position of the first groove of the upper side plate (301), and the first plugging square tube (3038) on the second right-angled sector steel plate (3033) is plugged at the position of the first groove of the lower side plate (302).
5. The quickly deployable folding container house according to any one of claims 1-3, characterized in that: The second hinge member (7) includes a second plugging square tube (701), a third plugging square tube (702) and a plurality of third right-angled sector steel plates (703). A third L-shaped steel plate (704) is padded between two adjacent third right-angled sector steel plates (703). The third plugging square tube (702) is provided with equidistantly spaced support plates (705). The support plates (705) are plugged between two adjacent third right-angled sector steel plates (703). The third right-angled sector steel plate (703) and the support plate (705) are hinged by a third bolt. Second grooves are provided on the upper side plate (301), the lower side plate (302) and the end plate (4) corresponding to the second plugging square tube (701), and third grooves are provided on the top plate (1) and the bottom plate (2) corresponding to the third plugging square tube (702).
6. The quickly deployable folding container house according to claim 5, characterized in that: The height of the central axis of the third bolt from the upper surface of the third plugging square tube (702) is not less than the thickness of the end plate (4) plus half of the side length of the third right-angled sector steel plate (703).
Citation Information
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