A container-type house that can be quickly installed

Through the sliding connection structure and hinge component design, the problems of low installation efficiency and insufficient connection strength of box-type houses are solved, and rapid and stable wall installation and disassembly are achieved.

CN113152941BActive Publication Date: 2025-08-22ZHEJIANG JIUTAI INTEGRATED HOUSING TECH CO LTD
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Patent Information

Application Number
CN202110604043.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-31
Publication Date
2025-08-22
Estimated Expiration
2041-05-31

AI Technical Summary

Technical Problem

The installation efficiency of existing box-type houses is low and the connection strength is insufficient, making wall misalignment likely, affecting use.

Method used

It adopts a sliding connection structure and hinge component design, including front transverse slide rail beam, sliding connection structure, left sliding hinge group and plug-in hinge component, to achieve rapid installation and disassembly of wall panels.

Benefits of technology

It improves the installation efficiency and structural reliability of box-type houses, reduces installation complexity, ensures the stability of wall connections, and avoids misalignment.

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Abstract

The present invention discloses a container-type house capable of rapid installation, relating to the technical field of container-type house structures, and comprising a top wall panel assembly, a left wall panel assembly, a right wall panel assembly, a front wall panel assembly, a rear wall panel assembly, and a bottom wall panel assembly. The top wall panel assembly comprises a front transverse slide rail beam and a rear transverse slide rail beam, each of which is provided with a sliding connection structure. The left end of the bottom wall panel assembly is provided with a left sliding hinge group, and the right end of the bottom wall panel assembly is provided with a right sliding hinge group. The left sliding hinge group is connected to the bottom of the left wall panel assembly, and the right sliding hinge group is connected to the bottom of the right wall panel assembly. The front wall panel assembly and the rear wall panel assembly are both composed of an articulated wall panel group and an inserted wall panel group. The bottom of the articulated wall panel group is connected to an inserted hinge group, and the bottom of the inserted wall panel group is provided with an assembly structure. The present invention has the advantages of a reliable installation process, a stable structure, and high installation efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of container-type house structures, and in particular to a container-type house that can be quickly installed. Background Art

[0002] Container houses are a type of removable, reusable construction product. They offer the following characteristics: easy transportation, making them particularly suitable for units that frequently relocate their construction sites; sturdy and durable, constructed entirely of steel, with strong earthquake and deformation resistance; excellent sealing, thanks to rigorous manufacturing processes, making these portable houses watertight; built on a standard steel chassis, they can be configured into a variety of modular spaces; they are shockproof, waterproof, fireproof, and corrosion-resistant, and lightweight. Therefore, container houses are generally used on construction sites that require high-end temporary structures, such as project managers' offices, accommodations, and conference rooms; or where construction sites are limited by space and can only accommodate modular container houses; or as field workspaces, such as mobile offices and dormitories for field exploration and construction; or as emergency housing, such as mobile military command centers, emergency rescue command centers, and disaster relief command centers. Some existing container houses have separate wall panels, which requires the use of various sheet metal parts to fix and connect adjacent wall panels together, resulting in extremely low installation efficiency and increased costs. Some container houses adopt an integrated design, but during the installation of the container houses, the relative movement between the walls is unreliable, the connection strength is low, and wall dislocation is easy to occur, thus affecting the use of the entire container house. Summary of the Invention

[0003] In view of the defects in the prior art, the present invention provides a container-type house that can be quickly installed.

[0004] A box-type house that can be quickly installed includes a top wall panel assembly, a left wall panel assembly, a right wall panel assembly, a front wall panel assembly, a rear wall panel assembly and a bottom wall panel assembly; wherein, the front and rear ends of the top wall panel assembly are respectively provided with a front transverse sliding rail beam and a rear transverse sliding rail beam, and two sliding connection structures that can slide are provided inside the front transverse sliding rail beam and the rear transverse sliding rail beam, the two sliding connection structures in the front transverse sliding rail beam are respectively connected to the front end top of the left wall panel assembly and the front end top of the right wall panel assembly, and the two sliding connection structures in the rear transverse sliding rail beam are respectively connected to the rear end top of the left wall panel assembly and the rear end top of the right wall panel assembly; the left end of the bottom wall panel assembly is provided with a left sliding hinge group, and the right end of the bottom wall panel assembly is provided with a right sliding hinge group, and the left sliding hinge group is connected to the left wall panel At the bottom of the component, the left wall panel component can rotate around the left sliding hinge group, the right sliding hinge group is connected to the bottom of the right wall panel component, and the right wall panel component can rotate around the right sliding hinge group; the front wall panel component and the rear wall panel component are respectively connected to the front end and the rear end of the bottom wall panel component, and the front wall panel component and the rear wall panel component are both composed of a hinged wall panel group and an inserted wall panel group, and the bottom of the hinged wall panel group is connected to an inserted hinge assembly arranged on the bottom wall panel component, and the hinged wall panel group can rotate around the inserted hinge assembly, and the hinged wall panel group of the front wall panel component and the hinged wall panel group of the rear wall panel component can be attached to each other and stacked on the bottom wall panel component after rotation, and the bottom of the inserted wall panel group is provided with an assembly structure that can cooperate with the top of the bottom wall panel component. The entire box-type house consists of six major parts, namely the top wall panel assembly, the left wall panel assembly, the right wall panel assembly, the front wall panel assembly, the rear wall panel assembly and the bottom wall panel assembly. Each wall panel assembly includes beams or frames arranged on all sides and wall panels arranged therein. In particular, the front and rear ends of the top wall panel assembly are respectively provided with front transverse sliding rail beams and rear transverse sliding rail beams. There are sliding channels inside the front and rear transverse sliding rail beams to enable the sliding connection structure to slide on the sliding channels.

[0005] Specifically, the sliding connection structure inside the front transverse slide rail beam includes a sliding structure, the sliding structure is arranged inside the front transverse slide rail beam, the sliding structure is connected to a primary link through a first rotating substructure, the end of the primary link passes through the front transverse slide rail beam and is connected to a secondary link through a second rotating substructure, the secondary link is connected to a fixed block through a third rotating substructure, and the fixed block is arranged on the left wall panel assembly or the right wall panel assembly. When the front transverse slide rail beam is lifted, the position of the sliding structure inside the front transverse slide rail beam can be adjusted, the sliding structure drives the primary link to move, the primary link drives the secondary link to move, and the secondary link drives the fixed block to move, thereby ultimately driving the left wall panel assembly and the right wall panel assembly to adjust their angles until both are perpendicular to the top wall panel assembly and the bottom wall panel assembly, thereby completing the installation between the left wall panel assembly, the right wall panel assembly, the top wall panel assembly and the bottom wall panel assembly, and realizing the rapid installation of adjacent walls without the need for additional sheet metal parts. Similarly, during disassembly, the same method can be used. The disassembly of the container house is completed quickly. In summary, the entire sliding connection structure greatly reduces the complexity of the installation and disassembly process of the container house, improves the installation efficiency of the container house, and makes the installation process more time-saving and labor-saving; in particular, the primary connecting rod is connected to the secondary connecting rod through the second rotating substructure. On the basis of realizing the traction movement between the primary connecting rod and the secondary connecting rod, the distance between the fixed block and the sliding structure, that is, the distance between the top wall panel assembly and the left wall panel assembly or the right wall panel assembly, can also be adjusted through the relative rotation between the two, thereby further improving the structural reliability during the installation process.

[0006] Specifically, the sliding structure includes two rollers disposed within the front transverse slide rail beam, a first rotational pair structure disposed between the two rollers, the first rotational pair structure including a connecting shaft disposed between the two rollers, the connecting shaft passing through the head end of the primary connecting rod, a second rotational pair structure including a first connecting hole disposed at the end of the primary connecting rod, a second connecting hole disposed at the head end of the secondary connecting rod, and a rotational bolt passing through both the first and second connecting holes, and a third rotational pair structure including a third connecting hole disposed at the end of the secondary connecting rod, the third connecting hole passing through a screw structure fixed to the fixed block. The rollers enable reliable movement within the front transverse slide rail beam, further improving installation efficiency. The primary connecting rod can rotate about the connecting shaft, and after movement, the rollers pull the primary connecting rod by driving the connecting shaft. The secondary connecting rod and the primary connecting rod can rotate about the rotational bolt, and after movement, the primary connecting rod pulls the secondary connecting rod via the rotational bolt. The secondary connecting rod can rotate about the screw structure, and after rotation, the secondary connecting rod can pull the fixed block via the screw structure.

[0007] Specifically, the lower end of the primary connecting rod and the head end of the secondary connecting rod are provided with positioning holes, and locking bolts are inserted through the two positioning holes. By providing positioning holes and locking bolts, the primary and secondary connecting rods are prevented from rotating relative to each other, thereby maintaining a constant distance between the fixed block and the sliding structure, which can be used in some special installation processes to improve installation reliability.

[0008] Specifically, the left sliding hinge group and the right sliding hinge group are symmetrically arranged and each consists of two sliding hinge structures. The two sliding hinge structures of the left sliding hinge group are respectively arranged at the bottom of the front and rear ends of the left wall panel assembly, and the two sliding hinge structures of the right sliding hinge group are respectively arranged at the bottom of the front and rear ends of the right wall panel assembly; wherein, the sliding hinge structure of the left sliding hinge group includes a traction part arranged in the upper half and a directional sliding part arranged in the lower half, the traction part is provided with a positioning hole, and a positioning bolt fixed to the left wall panel assembly is passed through the positioning hole, and the directional sliding part is vertically provided with two sliding grooves, and the sliding grooves are provided with a fixing bolt fixed to the bottom wall panel assembly. When the left wall panel assembly is rotated to be perpendicular to the bottom wall panel assembly, the entire traction part can be lowered so that the left wall panel assembly and the bottom wall panel assembly can continue to fit tightly together, thereby completing the reliable and rapid installation and construction of the entire box-type house.

[0009] Specifically, the traction section defines an arcuate slot, the centerline of which coincides with the centerline of the positioning hole. A sliding bolt secured to the left wall panel assembly is inserted into the arcuate slot. In the left wall panel assembly, the left wall panel is connected to the traction section via both the sliding bolt and the positioning bolt. This ensures that the sliding bolt rotates along with the left wall panel assembly around the positioning bolt, significantly improving the connection strength between the traction section and the vertical mounting beam without compromising the installation and construction of the containerized house.

[0010] Specifically, the plug-in hinge assembly of the front wall panel assembly includes: a placement part fixed to the bottom wall panel assembly; and a hinge part fixed to the front wall panel assembly; wherein, the placement part includes a placement block fixed to the bottom base, a placement groove is provided on the top surface of the placement block, and the hinge part includes a pin shaft, a fixing plate and an insertion plate are wound around the pin shaft, the fixing plate is fixed to the side of the front wall panel assembly, the insertion plate extends into the placement groove, and the width of the placement groove is equal to the thickness of the insertion plate. Before the entire box-type house is installed, the hinged wall panel group of the front wall panel assembly and the hinged wall panel group of the rear wall panel assembly are attached to each other and stacked together, so the heights of the two hinged wall panel groups are different. At this time, through the entire plug-in hinge structure, the insertion piece of one of the hinged wall panel groups is pulled out of the placement slot, so that the hinged wall panel group is lifted, so that the two hinged wall panel groups can be placed horizontally and stacked together, thereby greatly improving space utilization; at the same time, the placement slot width is equal to the insertion piece thickness, which can limit the movement of the insertion piece in the horizontal front and rear directions, making it easier to match and connect the bottom wall panel assembly with the hinged wall panel group of the front wall panel assembly or the hinged wall panel group of the rear wall panel assembly, thereby improving installation efficiency.

[0011] Specifically, the assembly structure of the front wall panel assembly includes: a first horizontal portion affixed to the bottom surface of the front wall panel assembly; a first vertical portion extending vertically downward from the rear end of the first horizontal portion; a second vertical portion extending vertically upward from the front end of the first horizontal portion; and a limiting strip fixed to the bottom surface of the first horizontal portion; wherein the limiting strip is parallel to the first vertical portion, and an assembly slot is formed between the limiting strip and the first vertical portion, and the assembly slot is clamped on the bottom wall panel assembly. The bottom wall panel assembly is provided with a horizontal bottom beam, and the assembly slot and the horizontal bottom beam cooperate with each other. The entire quick assembly component is jointly surrounded by the first horizontal part, the first vertical part and the limit strip to form an assembly groove. When the plug-in wall panel group needs to be connected and assembled with the bottom wall panel assembly, it is only necessary to align the assembly groove with the position where it needs to be installed on the bottom wall panel assembly, and then move the assembly groove close to the bottom wall panel assembly until the horizontal bottom beam is stuck in the entire assembly groove, so that simple positioning and assembly can be quickly achieved. Furthermore, when the width of the horizontal bottom beam is equal to the distance between the first vertical part and the limit strip, the entire assembly groove can limit the horizontal movement of the plug-in wall panel group in the front and rear directions, and can quickly and reliably achieve positioning and assembly, thereby avoiding the reduction in the structural strength of the entire plug-in wall panel group due to the use of various threaded structures, and at the same time greatly improving the disassembly and assembly efficiency between the plug-in wall panel group and the bottom wall panel assembly.

[0012] Specifically, the bottom end of the first vertical portion bends horizontally backward to form a second horizontal portion, and the rear end of the second horizontal portion bends vertically upward to form a third vertical portion. The third vertical portion, the second horizontal portion, and the first vertical portion together form a gutter. Generally, a gutter is provided at the bottom of each inserted wall panel assembly to drain accumulated water in a targeted manner. In addition to the gutter, a stop bar is provided to form an assembly slot between the stop bar and the gutter.

[0013] Specifically, it also includes a downpipe assembly, which includes: a pipe joint arranged on the top wall panel assembly; a support body arranged on the bottom wall panel assembly; and a water pipe that can be connected to the pipe joint and can extend into the support body; wherein the top of the water pipe is connected to the pipe joint, and the pipe joint is used to pass the accumulated water into the water pipe, and a circular opening is opened on the top of the support body, and the water pipe passes through the support body from the circular opening, and a limiting structure is provided on the outer wall of the water pipe, and the limiting structure is used to support the top of the circular opening to prevent the water pipe from moving downward. After the entire container house is installed and a large amount of accumulated water is collected, a large amount of accumulated water will flow into the pipe joint. The pipe joint is connected through the top of the water pipe, so that all the accumulated water entering the pipe joint is conducted to the ground. Furthermore, the limiting structure provided on the outer wall of the water pipe is used to ensure that the water pipe can be supported by the circular opening on the support body, completely preventing the water pipe from moving further downward. In this way, the length of the water pipe can be set according to the distance between the pipe joint and the support body, so that under the premise that the top of the water pipe is connected to the pipe joint, the bottom limiting structure is just supported by the support body, which can completely prevent the downpipe from falling off, thereby improving the waterproof performance of the container house. Moreover, when installing the water pipe, there is no need to set up an additional connection assembly structure, thereby greatly improving the installation and disassembly efficiency.

[0014] The beneficial effects of the present invention are embodied in:

[0015] In the present invention, before the entire box-type house is installed, six major parts are stored and stacked together to maximize space utilization. Specifically, the top is the top wall panel assembly, the middle is the left wall panel assembly, the right wall panel assembly, the front wall panel assembly and the rear wall panel assembly, while part of the front wall panel assembly and part of the rear wall panel assembly are attached to each other and stacked, and the bottom is the bottom wall panel assembly. Furthermore, when the entire box-type house is installed and constructed, the entire top wall panel assembly is first lifted directly, and the two sliding connection structures connected to the top of the left wall panel assembly will slide from the middle to the left end on the sliding channel of the top wall panel assembly, and the bottom of the left wall panel assembly directly rotates around the left sliding hinge group. Similarly, the two sliding connection structures connected to the top of the right wall panel assembly will slide from the middle to the right end on the sliding channel of the top wall panel assembly, and the bottom of the right wall panel assembly directly rotates around the right sliding hinge group. In this way, it can be ensured that while the top wall panel assembly is lifted, the left wall panel assembly and The right wall panel assembly moves together, which greatly improves the installation efficiency while ensuring that the left wall panel assembly and the right wall panel assembly are reliably displaced during the installation process. The left wall panel assembly and the right wall panel assembly continue to move during the continuous lifting of the top wall panel assembly until both are perpendicular to the top wall panel assembly and the bottom wall panel assembly. At this time, the top wall, left wall, right wall and lower wall of the entire box-type house are successfully constructed, and the hinged wall panel group is now located in the middle of the box-type house. At this time, it is only necessary to adjust the hinged wall panel group of the front wall panel assembly and the rear wall panel assembly so that all the hinged wall panel groups rotate around the inserted hinge assembly until all the hinged wall panel groups are perpendicular to the top wall panel assembly and the bottom wall panel assembly. Furthermore, finally, the assembly structure of the inserted wall panel group is used to insert the inserted wall panel groups one by one on the bottom wall panel assembly, so that the vacant areas of the front wall and the rear wall of the box-type house are filled by the inserted wall panel group, thereby completing the rapid installation of the entire box-type house. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly describes the drawings required for the specific embodiments or the description of the prior art. Similar elements or parts are generally identified by similar reference numerals throughout the drawings. Elements or parts in the drawings are not necessarily drawn to scale.

[0017] Figure 1 A structural stereogram of the present invention in one state;

[0018] Figure 2 It is a structural stereogram of the present invention in another state;

[0019] Figure 3 A structural stereogram of another state of the present invention;

[0020] Figure 4This is a structural stereogram of the present invention in yet another state;

[0021] Figure 5 For the present invention Figure 2 A three-dimensional diagram of a part of the structure in a representative state;

[0022] Figure 6 It is a partial structural perspective diagram of the present invention;

[0023] Figure 7 For the present invention Figure 6 A magnified view of the structure at point A;

[0024] Figure 8 It is a structural stereogram of the sliding connection structure of the present invention;

[0025] Figure 9 For the present invention Figure 2 Another partial structural stereogram in a representative state;

[0026] Figure 10 For the present invention Figure 9 A magnified view of the structure at B in the middle;

[0027] Figure 11 A structural perspective view of the hinged wall panel assembly of the present invention;

[0028] Figure 12 For the present invention Figure 11 A magnified view of the structure at C in the middle;

[0029] Figure 13 This is a partial structural stereogram of the present invention after the inserted wall panel group is connected to the bottom wall panel assembly.

[0030] Reference numerals:

[0031] 1-top wall panel assembly, 11-front transverse slide rail beam, 12-rear transverse slide rail beam, 2-left wall panel assembly, 3-right wall panel assembly, 4-front wall panel assembly, 41-hinged wall panel group, 42-inserted wall panel group, 5-rear wall panel assembly, 6-bottom wall panel assembly, 7-sliding connection structure, 71-sliding structure, 72-first rotating substructure, 73-first connecting rod, 74-second rotating substructure, 75-secondary connecting rod, 76-third rotating substructure, 77- Fixed block, 8-insertion hinge assembly, 81-placement portion, 811-placement block, 812-placement slot, 82-hinge portion, 821-pin shaft, 822-fixing plate, 823-insertion plate, 9-assembly structure, 91-first horizontal portion, 92-first vertical portion, 93-second vertical portion, 94-limiting bar, 10-sliding hinge structure, 101-traction portion, 1011-positioning bolt, 102-directional sliding portion, 1021-slide groove, 1022-fixing bolt. DETAILED DESCRIPTION

[0032] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0033] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the invention as claimed, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are intended to fall within the scope of protection of the present invention.

[0034] It should be noted that similar reference numerals and letters represent similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings. In addition, the terms "first," "second," etc. are used only to distinguish the descriptions and are not to be understood as indicating or implying relative importance.

[0035] In the description of the embodiments of the present invention, it should be noted that the terms "inside", "outside", "upper", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the inventive product is usually placed when in use. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.

[0036] like Figures 1 to 13As shown, a box-type house that can be quickly installed includes a top wall panel assembly 1, a left wall panel assembly 2, a right wall panel assembly 3, a front wall panel assembly 4, a rear wall panel assembly 5 and a bottom wall panel assembly 6; wherein, the front and rear ends of the top wall panel assembly 1 are respectively provided with a front transverse slide rail beam 11 and a rear transverse slide rail beam 12, and two sliding connection structures 7 that can slide are provided inside the front transverse slide rail beam 11 and the rear transverse slide rail beam 12, the two sliding connection structures 7 in the front transverse slide rail beam 11 are respectively connected to the front end top of the left wall panel assembly 2 and the front end top of the right wall panel assembly 3, and the two sliding connection structures 7 in the rear transverse slide rail beam 12 are respectively connected to the rear end top of the left wall panel assembly 2 and the rear end top of the right wall panel assembly 3; the left end of the bottom wall panel assembly 6 is provided with a left sliding hinge group, and the right end of the bottom wall panel assembly 6 is provided with a right sliding hinge group. The hinge group is connected to the bottom of the left wall panel assembly 2, and the left wall panel assembly 2 can rotate around the left sliding hinge group. The right sliding hinge group is connected to the bottom of the right wall panel assembly 3, and the right wall panel assembly 3 can rotate around the right sliding hinge group; the front wall panel assembly 4 and the rear wall panel assembly 5 are respectively connected to the front and rear ends of the bottom wall panel assembly 6. The front wall panel assembly 4 and the rear wall panel assembly 5 are both composed of a hinged wall panel group 41 and an inserted wall panel group 42. The bottom of the hinged wall panel group 41 is connected to an inserted hinge assembly 8 arranged on the bottom wall panel assembly 6. The hinged wall panel group 41 can rotate around the inserted hinge assembly 8, and the hinged wall panel group 41 of the front wall panel assembly 4 and the hinged wall panel group 41 of the rear wall panel assembly 5 can be attached to each other and stacked on the bottom wall panel assembly 6 after rotation. The bottom of the inserted wall panel group 42 is provided with an assembly structure 9 that can cooperate with the top of the bottom wall panel assembly 6.

[0037] In this embodiment, it should be noted that the entire container house is composed of six major parts, namely the top wall panel assembly 1, the left wall panel assembly 2, the right wall panel assembly 3, the front wall panel assembly 4, the rear wall panel assembly 5 and the bottom wall panel assembly 6. Each wall panel assembly includes a beam body or a frame body arranged around it and a wall panel arranged therein. In particular, the front and rear ends of the top wall panel assembly 1 are respectively provided with a front transverse slide rail beam 11 and a rear transverse slide rail beam 12. There are sliding channels inside the front and rear transverse slide rail beams 11 and 12, so that the sliding connection structure 7 slides on the sliding channels. Figure 1 As shown, before the entire box-type house is installed, six major parts are stored and stacked together to maximize space utilization. Specifically, the top is the top wall panel assembly 1, the middle is the left wall panel assembly 2, the right wall panel assembly 3, the front wall panel assembly 4 and the rear wall panel assembly 5. At the same time, part of the front wall panel assembly 4 and part of the rear wall panel assembly 5 are attached to each other and stacked. The bottom is the bottom wall panel assembly 6. Further, as shown in FIG. Figure 2As shown, when the installation and construction of the entire box-type house begins, the entire top wall panel assembly 1 is directly lifted first, and the two sliding connection structures 7 connected to the top of the left wall panel assembly 2 will slide from the middle to the left end on the sliding channel of the top wall panel assembly 1, and the bottom of the left wall panel assembly 2 will directly rotate around the left sliding hinge group. Similarly, the two sliding connection structures 7 connected to the top of the right wall panel assembly 3 will slide from the middle to the right end on the sliding channel of the top wall panel assembly 1, and the bottom of the right wall panel assembly 3 will directly rotate around the right sliding hinge group. In this way, it is possible to ensure that while the top wall panel assembly 1 is lifted, the left wall panel assembly 2 and the right wall panel assembly 3 can move together, which greatly improves the installation efficiency while ensuring that the left wall panel assembly 2 and the right wall panel assembly 3 can be reliably displaced during the installation process. Figure 3 As shown, the left wall panel assembly 2 and the right wall panel assembly 3 continue to move during the continuous lifting of the top wall panel assembly 1 until both are perpendicular to the top wall panel assembly 1 and the bottom wall panel assembly 6. At this time, the top wall, left wall, right wall and lower wall of the entire box-type house are successfully constructed, and the hinged wall panel group 41 is now located in the middle of the box-type house. At this time, it is only necessary to adjust the hinged wall panel group 41 of the front wall panel assembly 4 and the rear wall panel assembly 5 so that all the hinged wall panel groups 41 rotate around the inserted hinge assembly 8, as shown in FIG. Figure 4 As shown, until all the hinged wall panel groups 41 are perpendicular to the top wall panel assembly 1 and the bottom wall panel assembly 6, further, finally, the assembly structure 9 of the inserted wall panel group 42 is used to insert the inserted wall panel groups 42 one by one on the bottom wall panel assembly 6, so that the vacant areas of the front wall and the rear wall of the box-type house are filled with the inserted wall panel groups 42, thereby completing the rapid installation of the entire box-type house.

[0038] Specifically, the sliding connection structure 7 inside the front transverse slide rail beam 11 includes a sliding structure 71, which is arranged inside the front transverse slide rail beam 11. The sliding structure 71 is connected to a primary connecting rod 73 through a first rotating sub-structure 72. The end of the primary connecting rod 73 passes through the front transverse slide rail beam 11 and is connected to a secondary connecting rod 75 through a second rotating sub-structure 74. The secondary connecting rod 75 is connected to a fixed block 77 through a third rotating sub-structure 76. The fixed block 77 is arranged on the left wall panel assembly 2 or the right wall panel assembly 3.

[0039] The second link 75 of the second link 75 is moved, and the second link 75 of the second link 75 is moved, thereby finally driving the left wall panel assembly 2 and the right wall panel assembly 3 to adjust the angle, and finally until both are perpendicular to the top wall panel assembly 1 and the bottom wall panel assembly 6, the left wall panel assembly 2, the right wall panel assembly 3, the top wall panel assembly 1 and the bottom wall panel assembly 6 are installed, and the adjacent walls can be quickly installed without the need for additional sheet metal parts. During disassembly, the disassembly of the container house can also be completed quickly in the same manner. In summary, the entire sliding connection structure 7 greatly reduces the complexity of the installation and disassembly process of the container house, improves the installation efficiency of the container house, and makes the installation process more time-saving and labor-saving; in particular, the first-level connecting rod 73 is connected to the second-level connecting rod 75 through the second rotating sub-structure 74. On the basis of realizing the traction movement between the first-level connecting rod 73 and the second-level connecting rod 75, the distance between the fixed block 77 and the sliding structure 71, that is, the distance between the top wall panel assembly 1 and the left wall panel assembly 2 or the right wall panel assembly 3, can also be adjusted by the relative rotation between the two, thereby further improving the structural reliability during the installation process.

[0040] Specifically, the sliding structure 71 includes two rollers arranged inside the front transverse slide rail beam 11, and a first rotating sub-structure 72 is arranged between the two rollers. The first rotating sub-structure 72 includes a connecting shaft arranged between the two rollers, and the connecting shaft is passed through the head end of the first-level connecting rod 73. The second rotating sub-structure 74 includes a first connecting hole opened at the end of the first-level connecting rod 73, a second connecting hole opened at the head end of the second-level connecting rod 75, and a rotating bolt passed through the first connecting hole and the second connecting hole at the same time. The third rotating sub-structure 76 includes a third connecting hole opened at the end of the second-level connecting rod 75, and the third connecting hole is passed through a screw structure fixed on the fixed block 77.

[0041] In this embodiment, it should be noted that the reliable movement inside the front transverse slide rail beam 11 is achieved by means of rollers, which further improves the installation efficiency. The first-level connecting rod 73 can rotate around the connecting shaft, and the roller pulls the first-level connecting rod 73 by driving the connecting shaft after movement. The second-level connecting rod 75 and the first-level connecting rod 73 can rotate around the rotating bolt, and the first-level connecting rod 73 pulls the second-level connecting rod 75 through the rotating bolt after movement. The second-level connecting rod 75 can rotate around the screw structure, and the rotated second-level connecting rod 75 can pull the fixed block 77 through the screw structure.

[0042] Specifically, positioning holes are provided at the end of the primary connecting rod 73 and the head end of the secondary connecting rod 75, and locking bolts are passed through the two positioning holes.

[0043] In this embodiment, it should be noted that by providing positioning holes and locking bolts, the first-level connecting rod 73 and the second-level connecting rod 75 cannot rotate relative to each other, thereby making the distance between the fixed block 77 and the sliding structure 71 constant, which can be used in some special installation processes to improve installation reliability.

[0044] Specifically, the left sliding hinge group and the right sliding hinge group are symmetrically arranged and each consists of two sliding hinge structures 10. The two sliding hinge structures 10 of the left sliding hinge group are respectively arranged at the bottom of the front and rear ends of the left wall panel assembly 2, and the two sliding hinge structures 10 of the right sliding hinge group are respectively arranged at the bottom of the front and rear ends of the right wall panel assembly 3; wherein, the sliding hinge structure 10 of the left sliding hinge group includes a traction part 101 arranged in the upper half and a directional sliding part 102 arranged in the lower half, the traction part 101 is provided with a positioning hole, and a positioning bolt 1011 fixed to the left wall panel assembly 2 is passed through the positioning hole, and the directional sliding part 102 is vertically provided with two sliding grooves 1021, and the sliding groove 1021 is provided with a fixing bolt 1022 fixed to the bottom wall panel assembly 6.

[0045] In this embodiment, it should be noted that, in the left wall panel assembly 2, when the container-type house is initially installed and constructed, the left wall panel assembly 2 and the bottom wall panel assembly 6 are horizontally fitted together. If the left wall panel assembly 2 is rotated directly, the end corner of the left wall panel assembly 2 will be pressed against the top surface of the bottom wall panel assembly 6. Therefore, for the sake of installation reliability and efficiency, the left wall panel assembly 2 cannot be rotated directly. It is necessary to lift the entire traction part 101 first to leave space for the end corner of the left wall panel assembly 2 to rotate. The design of the two slide grooves 1021 ensures that the entire traction part 101 can be rotated vertically. At the same time, because the fixing bolt 1022 is arranged in the slide groove 1021, it is ensured that the entire sliding hinge structure 10 will not separate from the bottom wall panel assembly 6 during the lifting process, thereby making the lifting process faster and more reliable. Furthermore, after lifting, the entire left wall panel assembly 2 can be rotated around the positioning bolt 1011. When the left wall panel assembly 2 is rotated to be perpendicular to the bottom wall panel assembly 6, the entire traction part 101 can be lowered to make the left wall panel assembly 2 continue to fit tightly with the bottom wall panel assembly 6, thereby completing the reliable and rapid installation and construction of the entire box-type house.

[0046] Specifically, the traction portion 101 is provided with an arc-shaped groove, the center line of the arc-shaped groove coincides with the center line of the positioning hole, and a sliding bolt fixed to the left wall panel assembly 2 is passed through the arc-shaped groove.

[0047] In this embodiment, it should be noted that, in the left wall panel assembly 2, the left wall panel assembly 2 is connected to the traction part 101 at the same time through the sliding bolt and the positioning bolt 1011, while ensuring that the sliding bolt can rotate around the positioning bolt 1011 along with the left wall panel assembly 2, thereby greatly improving the connection strength between the traction part 101 and the vertical installation beam without affecting the installation and construction of the box-type house.

[0048] Specifically, the plug-in hinge assembly 8 of the front wall panel assembly 4 includes: a placement portion 81 fixed to the bottom wall panel assembly 6; and a hinge portion 82 fixed to the front wall panel assembly 4; wherein, the placement portion 81 includes a placement block 811 fixed to the bottom base, and a placement groove 812 is provided on the top surface of the placement block 811; the hinge portion 82 includes a pin shaft 821, and a fixing piece 822 and an insertion piece 823 are wound around the pin shaft 821; the fixing piece 822 is fixed to the side of the front wall panel assembly 4, and the insertion piece 823 extends into the placement groove 812, and the width of the placement groove 812 is equal to the thickness of the insertion piece 823.

[0049] In this embodiment, it should be noted that before the entire box-type house is installed, the hinged wall panel group 41 of the front wall panel assembly 4 and the hinged wall panel group 41 of the rear wall panel assembly 5 are attached to each other and stacked together, so the heights of the two hinged wall panel groups 41 are different. At this time, through the entire plug-in hinge structure, the insertion piece 823 of one of the hinged wall panel groups 41 is pulled out of the placement groove 812, so that the hinged wall panel group 41 is lifted so that the two hinged wall panel groups 41 can be placed horizontally and stacked together, thereby greatly improving space utilization; at the same time, the width of the placement groove 812 is equal to the thickness of the insertion piece 823, which can limit the movement of the insertion piece 823 in the horizontal front and rear direction, making it easier to match and connect the bottom wall panel assembly 6 with the hinged wall panel group 41 of the front wall panel assembly 4 or the hinged wall panel group 41 of the rear wall panel assembly 5, thereby improving installation efficiency.

[0050] Specifically, the assembly structure 9 of the front wall panel assembly 4 includes: a first horizontal portion 91 attached to the bottom surface of the front wall panel assembly 4; a first vertical portion 92 extending vertically downward from the rear end of the first horizontal portion 91; a second vertical portion 93 extending vertically upward from the front end of the first horizontal portion 91; and a limiting strip 94 fixed to the bottom surface of the first horizontal portion 91; wherein the limiting strip 94 is parallel to the first vertical portion 92, and an assembly groove is formed between the limiting strip 94 and the first vertical portion 92, and the assembly groove is clamped on the bottom wall panel assembly 6.

[0051] In this embodiment, it should be noted that a horizontal bottom beam is provided on the bottom wall panel assembly 6, and the assembly groove cooperates with the horizontal bottom beam. The entire quick assembly assembly is formed by the first horizontal portion 91, the first vertical portion 92 and the limiting strip 94 to form an assembly groove. When it is necessary to connect and assemble the plug-in wall panel group 42 with the bottom wall panel assembly 6, it is only necessary to align the assembly groove with the position to be installed on the bottom wall panel assembly 6, and then move the assembly groove close to the bottom wall panel assembly 6 until the horizontal bottom beam is stuck in the entire assembly groove, so that simple positioning and assembly can be quickly achieved. Furthermore, when the width of the horizontal bottom beam is equal to the distance between the first vertical portion 92 and the limiting strip 94, the entire assembly groove can limit the horizontal movement of the plug-in wall panel group 42 in the front-to-back direction, so that reliable positioning and assembly can be quickly achieved, thereby avoiding the reduction in the structural strength of the entire plug-in wall panel group 42 due to the use of various threaded structures, and at the same time greatly improving the disassembly and assembly efficiency between the plug-in wall panel group 42 and the bottom wall panel assembly 6.

[0052] Specifically, the bottom end of the first vertical portion 92 bends and extends horizontally backward to form a second horizontal portion, and the rear end of the second horizontal portion bends and extends vertically upward to form a third vertical portion. The third vertical portion, the second horizontal portion and the first vertical portion 92 are together arranged to form a flooding trough.

[0053] In this embodiment, it should be noted that a drain gutter is generally provided at the bottom of the inserted wall panel group 42, and the entire drain gutter can discharge the accumulated water in a direction. On the basis of setting the drain gutter, a limit bar 94 is provided so that the limit bar 94 and the drain gutter together form an assembly groove.

[0054] Specifically, it also includes a downpipe assembly, which includes: a pipe joint arranged on the top wall panel assembly 1; a support body arranged on the bottom wall panel assembly 6; and a water pipe that can be connected to the pipe joint and can extend into the support body; wherein, the top of the water pipe is connected to the pipe joint, the pipe joint is used to pass the accumulated water into the water pipe, a circular opening is opened on the top of the support body, the water pipe passes through the support body from the circular opening, and a limiting structure is set on the outer wall of the water pipe, the limiting structure is used to support the top of the circular opening to prevent the water pipe from moving downward.

[0055] In this embodiment, it should be noted that after the entire container-type house is installed and a large amount of accumulated water is collected, a large amount of accumulated water will flow into the pipe joint, and the pipe joint will be connected through the top of the water pipe, so that all the accumulated water entering the pipe joint will be conducted to the ground. Furthermore, the limiting structure provided on the outer wall of the water pipe can ensure that the water pipe can be supported by the circular opening on the support body, completely preventing the water pipe from continuing to move downward. In this way, the length of the water pipe can be set according to the distance between the pipe joint and the support body, so that under the premise that the top of the water pipe is connected to the pipe joint, the bottom limiting structure is just supported by the support body, which can completely prevent the downpipe from falling off, thereby improving the waterproof performance of the container-type house. In addition, when installing the water pipe, there is no need to additionally set up a connecting assembly structure 9, thereby greatly improving the installation and disassembly efficiency.

[0056] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present invention, and they should all be included in the scope of the claims and description of the present invention.

Claims

1. A container-type house that can be quickly installed, characterized in that: It includes a top wall panel assembly, a left wall panel assembly, a right wall panel assembly, a front wall panel assembly, a rear wall panel assembly and a bottom wall panel assembly; wherein, The front and rear ends of the top wall panel assembly are respectively provided with a front transverse slide rail beam and a rear transverse slide rail beam, and two sliding connection structures capable of sliding are provided inside the front transverse slide rail beam and the rear transverse slide rail beam. The two sliding connection structures in the front transverse slide rail beam are respectively connected to the front end top of the left wall panel assembly and the front end top of the right wall panel assembly, and the two sliding connection structures in the rear transverse slide rail beam are respectively connected to the rear end top of the left wall panel assembly and the rear end top of the right wall panel assembly; The left end of the bottom wall panel assembly is provided with a left sliding hinge group, and the right end of the bottom wall panel assembly is provided with a right sliding hinge group. The left sliding hinge group is connected to the bottom of the left wall panel assembly, and the left wall panel assembly can rotate around the left sliding hinge group. The right sliding hinge group is connected to the bottom of the right wall panel assembly, and the right wall panel assembly can rotate around the right sliding hinge group. The front wall panel assembly and the rear wall panel assembly are respectively connected to the front end and the rear end of the bottom wall panel assembly, and the front wall panel assembly and the rear wall panel assembly are both composed of a hinged wall panel group and an inserted wall panel group. The bottom of the hinged wall panel group is connected to an inserted hinge assembly arranged on the bottom wall panel assembly, and the hinged wall panel group can rotate around the inserted hinge assembly, and the hinged wall panel group of the front wall panel assembly and the hinged wall panel group of the rear wall panel assembly can be attached to each other and stacked on the bottom wall panel assembly after rotation, and the bottom of the inserted wall panel group is provided with an assembly structure that can cooperate with the top of the bottom wall panel assembly; The left sliding hinge group and the right sliding hinge group are symmetrically arranged and each consists of two sliding hinge structures. The two sliding hinge structures of the left sliding hinge group are respectively arranged at the bottom of the front and rear ends of the left wall panel assembly, and the two sliding hinge structures of the right sliding hinge group are respectively arranged at the bottom of the front and rear ends of the right wall panel assembly; wherein, The sliding hinge structure of the left sliding hinge group includes a traction part provided on the upper half and a directional sliding part provided on the lower half, the traction part is provided with a positioning hole, a positioning bolt fixed to the left wall panel assembly is passed through the positioning hole, and the directional sliding part is provided with two vertical sliding grooves, a fixing bolt fixed to the bottom wall panel assembly is passed through the sliding grooves; The sliding connection structure inside the front transverse slide rail beam includes a sliding structure, and the sliding structure is arranged inside the front transverse slide rail beam. The sliding structure is connected to a primary connecting rod through a first rotating sub-structure, and the end of the primary connecting rod passes through the front transverse slide rail beam and is connected to a secondary connecting rod through a second rotating sub-structure. The secondary connecting rod is connected to a fixed block through a third rotating sub-structure, and the fixed block is arranged on the left wall panel assembly or the right wall panel assembly.

2. The container-type house capable of rapid installation according to claim 1, characterized in that: The sliding structure includes two rollers arranged inside the front transverse slide rail beam, the first rotating substructure is arranged between the two rollers, the first rotating substructure includes a connecting shaft arranged between the two rollers, the connecting shaft is passed through the head end of the first-level connecting rod, the second rotating substructure includes a first connecting hole opened at the end of the first-level connecting rod, a second connecting hole opened at the head end of the second-level connecting rod, and a rotating bolt passed through the first connecting hole and the second connecting hole at the same time, the third rotating substructure includes a third connecting hole opened at the end of the second-level connecting rod, and the third connecting hole is passed through a screw structure fixed to the fixed block.

3. The container-type house capable of rapid installation according to claim 2, characterized in that: The end of the first-stage connecting rod and the head end of the second-stage connecting rod are also provided with positioning holes, and locking bolts are passed through the two positioning holes.

4. The container-type house capable of rapid installation according to claim 1, characterized in that: The traction portion is provided with an arc-shaped groove, the center line of the arc-shaped groove coincides with the center line of the positioning hole, and a sliding bolt fixed to the left wall panel assembly is passed through the arc-shaped groove.

5. The container-type house capable of rapid installation according to claim 1, characterized in that: The plug-in hinge assembly of the front wall panel assembly includes: A placement portion fixed to the bottom wall panel assembly; and The hinge portion is fixed to the front wall panel assembly; wherein, The placement portion includes a placement block fixed to the bottom wall panel assembly, a placement groove is provided on the top surface of the placement block, the hinge portion includes a pin shaft, a fixing piece and an insertion piece are wound around the pin shaft, the fixing piece is fixed to the side of the front wall panel assembly, the insertion piece extends into the placement groove, and the width of the placement groove is equal to the thickness of the insertion piece.

6. The container-type house capable of rapid installation according to claim 1, characterized in that: The assembly structure of the front wall panel assembly includes: A first horizontal portion attached to the bottom surface of the front wall panel assembly; a first vertical portion extending vertically downward from a rear end of the first horizontal portion; A second vertical portion extending vertically upward from a front end of the first horizontal portion; and A limiting strip fixed to the bottom surface of the first horizontal portion; wherein, The limiting strip is parallel to the first vertical portion, and an assembly groove is formed between the limiting strip and the first vertical portion. The assembly groove is clamped on the bottom wall panel assembly.

7. The container-type house capable of rapid installation according to claim 6, characterized in that: The bottom end of the first vertical portion is bent and extended horizontally backward to form a second horizontal portion, and the rear end of the second horizontal portion is bent and extended vertically upward to form a third vertical portion. The third vertical portion, the second horizontal portion and the first vertical portion are jointly surrounded to form a flooding trough.

8. The container-type house capable of rapid installation according to any one of claims 1 to 7, characterized in that: Also included is a downpipe assembly, the downpipe assembly comprising: a pipe joint provided on the top wall panel assembly; a support disposed on the bottom wall panel assembly; and A water conduit capable of being connected to the pipe joint and extending into the support body; wherein, The top of the water pipe is connected to the pipe joint, and the pipe joint is used to pass the accumulated water into the water pipe. A circular opening is provided on the top of the support body, and the water pipe passes through the support body from the circular opening. A limiting structure is provided on the outer wall of the water pipe, and the limiting structure is used to support the top of the circular opening to prevent the water pipe from moving downward.

Citation Information

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