A prefabricated wall assembly for a model house and a method of assembly

By using retractable and adjustable wall components and flexible splicing methods, the problems of time-consuming, labor-intensive, and resource-wasting construction of existing model houses have been solved, enabling rapid adjustment of multiple unit types and low-cost reuse.

CN116411656BActive Publication Date: 2026-01-06YINFENG ENG CO LTD
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Patent Information

Application Number
CN202310391552.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-13
Publication Date
2026-01-06
Estimated Expiration
2043-04-13

AI Technical Summary

Technical Problem

Building physical model homes for existing apartment layouts is time-consuming and labor-intensive, resulting in significant resource waste. Furthermore, it can only present one type of apartment layout and cannot be flexibly adjusted, leading to high costs and low efficiency.

Method used

The wall components are telescopic and adjustable, including door panels, beam panels and wall panels. The components can be flexibly spliced ​​through telescopic adjustment mechanism and height adjustment mechanism, and fixedly connected by wall panel connectors. There is no need to pre-draw the wall position during assembly. The length and height of the components can be adjusted according to the actual size.

Benefits of technology

It enables flexible adjustment of wall components, allows for the reuse of the same batch of components, reduces costs, improves construction efficiency, and allows for quick adjustment of various house types, saving manpower and resources.

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Abstract

This invention proposes a prefabricated wall assembly for a model house and its assembly method. The wall assembly includes a door panel, a beam panel, and wall panels. The door panel includes a door wall panel with a hollow top structure and a first telescopic plate, which is telescopically installed within the cavity of the door wall panel via a telescopic adjustment mechanism. The beam panel includes a second telescopic plate and a first wall panel with a hollow structure, with both ends of the second telescopic plate telescopically installed within the cavities of the two first wall panels respectively. The wall panels include a third telescopic plate and a second wall panel with a hollow structure, with both ends of the third telescopic plate telescopically installed within the cavities of the two second wall panels respectively. The wall assemblies are fixed together using wall panel connectors. The assembly method involves adjusting the dimensions of each wall assembly according to the actual dimensions of the model house, and then connecting the wall assemblies using wall panel connectors. The wall assembly of this invention offers high flexibility, can be used to build various house types, and can be reused repeatedly. Using this invention for model house construction is more convenient and can save manpower, construction time, and costs.
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Description

Technical Field

[0001] This invention relates to the field of component technology for simulating apartment structure, specifically to a prefabricated wall component for a model room and its assembly method. Background Technology

[0002] When designing residential apartment layouts, designers typically use floor plans or models to express their designs, identify problems, and make improvements. However, the actual feel of the apartment and its actual dimensions cannot be fully captured by drawings and models. Therefore, show flats have emerged. These are constructed to present the designed apartment layout at a 1:1 scale, allowing people to experience the actual space and more intuitively understand any design flaws. Show flats also provide customers with a firsthand experience during the sales process.

[0003] Existing physical model homes have several drawbacks. For example, their construction and dismantling are time-consuming and labor-intensive, they can only represent a limited number of floor plans (generally only one type), and the components are for single use, leading to resource waste. Furthermore, since the dimensions of each component in a given floor plan are fixed, the location and dimensions of each wall must be marked on the ground before selecting the corresponding components, making the construction process cumbersome and inconvenient. The limited number of floor plans that can be verified by existing physical model homes, coupled with significant time, manpower, and material costs, necessitates a more user-friendly, flexible, cost-effective, and easily assembled model home wall components and assembly method that simulate the floor plan structure. Summary of the Invention

[0004] To address the problems existing in the background art, the present invention proposes a prefabricated wall component for a model house, including a door panel, a beam panel, and a wall panel. The door panel includes a door-wall panel and a first telescopic plate. The top of the door-wall panel has a hollow structure, and the first telescopic plate is telescopically installed in the hollow of the door-wall panel through a telescopic adjustment mechanism.

[0005] The beam plate is equipped with height adjustment mechanisms at both ends. The beam plate includes a second telescopic plate and two first wall plates. The first wall plates have a hollow structure. The left and right ends of the second telescopic plate are respectively telescopically installed in the cavities of the two first wall plates.

[0006] The wall panel includes a third telescopic plate and two second wall panels. The second wall panels have a hollow structure. The left and right ends of the third telescopic plate are respectively telescopically installed in the cavities of the two second wall panels.

[0007] All wall components other than the beams and slabs are fixedly connected to each other via wall panel connectors, and the beams and slabs are connected to other wall components via height adjustment mechanisms.

[0008] Preferably, the door wall panel, the first wall panel, the second wall panel, the first telescopic plate, the second telescopic plate, and the third telescopic plate all include a frame and a plate body installed on the frame. The frame includes a horizontal support and a vertical support. Both the horizontal support and the vertical support are provided with a limiting groove along the length direction, and a sliding nut is provided in the limiting groove.

[0009] Preferably, the telescopic adjustment mechanism includes a first fixed steel plate and a first adjusting steel plate. The first fixed steel plate is fixed on the inner wall of the cavity of the door wall panel. The first fixed steel plate has a plurality of first bolt holes along the longitudinal direction. The first adjusting steel plate is fixed to one end of the first telescopic plate. The first adjusting steel plate has a first through hole that matches the first bolt holes. The first adjusting steel plate is bolted to the first fixed steel plate. Each end of the first telescopic plate is provided with a telescopic adjustment mechanism.

[0010] The height adjustment mechanism includes a second fixed steel plate and a second adjustable steel plate. The second fixed steel plate is fixed to the first wall panel. The second fixed steel plate has multiple second bolt holes along the longitudinal direction. The second adjustable steel plate is a right-angled steel plate. A second through hole matching the second bolt holes is provided on one right-angled side of the second adjustable steel plate. The second fixed steel plate is bolted to the second adjustable steel plate. A bolt hole matching the sliding nut is provided on the other right-angled side of the second adjustable steel plate.

[0011] Preferably, the wall panel connector includes a right-angle connector and a straight connector, and bolt holes are provided at both ends of the right-angle connector and the straight connector.

[0012] Preferably, the outer walls of the first, second, and third telescopic plates are all provided with scales along the telescopic direction.

[0013] Preferably, the outer walls of the second and third telescopic plates are provided with multiple insertion holes along the telescopic direction, with each insertion hole corresponding to a scale value. The positions of the insertion holes on the first and second telescopic plates are movably provided with locking rods that match the insertion holes, and the positions of the insertion holes on the second and third telescopic plates are also movably provided with locking rods that match the insertion holes.

[0014] Preferably, both the second wall panel and the door wall panel are equipped with casters at their bottom ends.

[0015] A method for assembling prefabricated wall components for a model house includes the following steps:

[0016] S1. Push the wall panel and door panel to the assembly position respectively. Adjust the length of the wall panel and beam panel and the height of the beam panel according to the actual size of the wall at the installation location in the sample room. Adjust the extension amount of the first telescopic plate according to the actual height of the doorway in the sample room.

[0017] S2. Use wall panel connectors to connect all wall components except beams and slabs. When one end of a wall component is connected to the other end of another wall component, a straight connector is used. When one end of a wall component is connected to the side wall of another wall component, a right-angle connector is used. Beams and slabs are connected to other wall components through a height adjustment mechanism.

[0018] S3. After all wall components are connected, lock the casters to complete the assembly of the model room.

[0019] Preferably, the length adjustment process of the beam plate in S1 is as follows: pull the first wall plate to the appropriate scale according to the actual size, and then insert the locking rod into the corresponding hole on the scale to fix the first wall plate and the second telescopic plate relative to each other;

[0020] The length adjustment process of the wall panel is as follows: pull the second wall panel to the appropriate scale according to the actual size, and then insert the locking rod into the corresponding hole on the scale to fix the second wall panel and the third telescopic plate relatively.

[0021] The height adjustment process of the beam plate is as follows: adjust the connection position of the second adjusting steel plate and the second fixed steel plate according to the actual size, and then fix the second adjusting steel plate and the second fixed steel plate with bolts after adjustment.

[0022] The door panel adjustment process is as follows: adjust the connection position of the first adjusting steel plate and the first fixed steel plate according to the actual size, and then use bolts to fix the first adjusting steel plate and the first fixed steel plate.

[0023] Preferably, in S2, the process of connecting the wall components using wall panel connectors is as follows: the sliding nuts on the frames of the two wall components to be connected are moved along the limiting groove to the connection point, so that the bolt holes at both ends of the right-angle connecting plate or the straight connecting plate correspond to the sliding nuts on the two wall components respectively. Then, the right-angle connecting plate and the sliding nuts are tightened with bolts to fix the two ends of the right-angle connecting plate or the straight connecting plate to the two wall components respectively.

[0024] When connecting the beam and slab, the sliding nut on the frame of another wall component needs to be moved to the beam and slab installation location so that the bolt holes on the second adjusting steel plate correspond to the sliding nut. Then, the second adjusting steel plate and the sliding nut are tightened with bolts to fix the second adjusting steel plate to the other wall component.

[0025] The present invention has the following beneficial effects:

[0026] 1. All wall components of this invention are telescopic and adjustable, allowing the wall size to be adjusted according to the floor plan. After a batch of wall components is used to build a model house of one type, it can be used to build model houses of other types by adjusting the wall size. The wall components of this invention are flexible in use, and the same batch of wall components can be reused to build model houses of multiple types, saving resources and reducing costs.

[0027] 2. The assembly method of the present invention is convenient and simple. During assembly, there is no need to pre-draw the position and size of the wall to be installed on the ground, nor is it necessary to select the wall one by one according to the drawn position and size. During installation, it is only necessary to adjust the wall size according to the scale on the wall component of the present invention so that the wall meets the size requirements of the house, which greatly saves manpower and time. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the wall panel structure of the present invention;

[0029] Figure 2 This is a schematic diagram of the door panel structure of the present invention;

[0030] Figure 3 This is a schematic diagram of the telescopic adjustment mechanism of the present invention;

[0031] Figure 4 This is a schematic diagram of the beam-slab structure of the present invention;

[0032] Figure 5 This is a schematic diagram of the connection between the beam and slab and other wall components of the present invention;

[0033] Figure 6 This is a schematic diagram of the linear connection structure between the wall components of the present invention;

[0034] Figure 7 This is a schematic diagram of the right-angle connection structure between wall components of the present invention;

[0035] Figure 8 This is a schematic diagram of the wall panel disassembly structure of the present invention;

[0036] Figure 9 This is a schematic diagram of the structure at the scale of the wall panel of the present invention;

[0037] Figure 10 This is a schematic diagram of the wall panel connector structure of the present invention.

[0038] Numbering in the diagram: 1-Wall panel, 101-Second wall panel, 102-Third telescopic plate, 2-Door panel, 21-Door wall panel, 22-First telescopic plate, 3-Beam plate, 31-First wall panel, 32-Second telescopic plate, 4-Wall panel connector, 41-Straight connecting plate, 42-Right angle connecting plate, 5-Frame, 51-Horizontal support, 52-Longitudinal support, 53-Limiting groove, 6-Plate body, 7-Scale, 8-Insertion hole, 9-Locking rod, 10-Wheel caster, 11-Height adjustment mechanism, 111-Second adjusting steel plate, 112-Second fixed steel plate, 12-Telescopic adjustment mechanism, 121-First adjusting steel plate, 122-First fixed steel plate. Detailed Implementation

[0039] To make the technical solutions, objectives, and advantages of the present invention clearer, the present invention will be further described below in conjunction with the accompanying drawings and embodiments. It should be understood that the provided embodiments are merely one way to implement the technical solutions and do not represent all embodiments. Based on this embodiment, any non-creative embodiments made by those skilled in the art to the present invention are within the protection scope of the present invention.

[0040] In this article, terms such as "left," "right," "horizontal," and "vertical" are established based on the positional relationships shown in the attached drawings. Depending on the attached drawings, the corresponding positional relationships may also change. Therefore, they should not be interpreted as an absolute limitation on the scope of protection.

[0041] Combined with appendix Figure 1-10 A prefabricated wall component for a model room includes a door panel 2, a beam panel 3, and a wall panel 1. The door panel 2 includes a door wall panel 21 and a first telescopic plate 22. The top of the door wall panel 21 has a hollow structure, and the first telescopic plate 22 is telescopically installed in the cavity of the door wall panel 21 through a telescopic adjustment mechanism 12.

[0042] The beam slab 3 is provided with height adjustment mechanisms 11 at both ends. The beam slab 3 includes a second telescopic plate 32 and two first wall plates 31. The first wall plate 31 is a cavity structure. The left and right ends of the second telescopic plate 32 are respectively telescopically arranged in the cavities of the two first wall plates 31. Specifically, the first wall plate 31 is a cavity structure with one end open. The bottom of the cavity structure of the first wall plate 31 is connected to the bottom of the second telescopic plate 32 through a slide rail. The two first wall plates 31, which are respectively slidably connected to the two ends of the second telescopic plate 32, can move away from or close to each other. The extension and retraction of the beam slab 3 is achieved by accommodating or exposing the second telescopic plate 32.

[0043] The wall panel 1 includes a third telescopic plate 102 and two second wall panels 101. The second wall panels 101 are hollow structures. The left and right ends of the third telescopic plate 102 are telescopically disposed in the cavities of the two second wall panels 101, respectively. Specifically, the second wall panel 101 is a cavity structure with one end open. The bottom of the cavity structure of the second wall panel 101 is connected to the bottom of the third telescopic plate 102 through a slide rail. The two second wall panels 101, which are slidably connected to the two ends of the third telescopic plate 102, can be relatively far apart or close together. The telescopic movement of the wall panel 1 is achieved by accommodating or exposing the third telescopic plate 102.

[0044] All wall components except the beam slab 3 are fixedly connected to each other by wall panel connectors 4, and the beam slab 3 is connected to other wall components by a height adjustment mechanism 11.

[0045] Specifically, the door wall panel 21, the first wall panel 31, the second wall panel 101, the first telescopic plate 22, the second telescopic plate 32, and the third telescopic plate 102 all include a frame 5 and a plate 6 installed on the frame 5. The frame 5 includes a horizontal support 51 and a vertical support 52. Both the horizontal support 51 and the vertical support 52 are provided with a limiting groove 53 along the length direction. A sliding nut is provided in the limiting groove 53. Specifically, the frame 5 can be constructed by aluminum alloy profiles, that is, the horizontally arranged aluminum alloy profiles are the horizontal support 51, and the vertically arranged aluminum alloy profiles are the vertical support 52. The plate 6 is made of environmentally friendly and lightweight materials, such as bamboo and wood fiberboard. The plate 6 can be installed on the frame 5 by plugging or gluing.

[0046] Specifically, the telescopic adjustment mechanism 12 includes a first fixed steel plate 122 and a first adjusting steel plate 121. The first fixed steel plate 122 is fixed to the inner wall of the cavity of the door wall panel 21. The first fixed steel plate 122 has a plurality of first bolt holes along the longitudinal direction. The first adjusting steel plate 121 is fixed to one end of the first telescopic plate 22. The first adjusting steel plate 121 has a first through hole that matches the first bolt holes. The first adjusting steel plate 121 is bolted to the first fixed steel plate 122. Each end of the first telescopic plate 22 is provided with a telescopic adjustment mechanism 12. More specifically, the first adjusting steel plate 121 is a right-angled steel plate. A first through hole is provided on one right-angled side of the first adjusting steel plate 121, and a bolt hole that matches the sliding nut is provided on the other right-angled side of the first adjusting steel plate 121. The end of the first adjusting steel plate 121 with the bolt hole is fixed to the bottom of one end of the first telescopic plate 22 by bolts. The structure of the telescopic adjustment mechanism 12 is as follows. Figure 3 As shown, Figure 3 The view shown is of the door panel 21 and the first telescopic panel 22 with one side of the panel 6 hidden.

[0047] The height adjustment mechanism 11 includes a second fixed steel plate 112 and a second adjusting steel plate 111. The second fixed steel plate 112 is fixed to the first wall panel 31. The second fixed steel plate 112 has a plurality of second bolt holes along the longitudinal direction. The second adjusting steel plate 111 is a right-angled steel plate. A second through hole matching the second bolt holes is provided on one right-angled side of the second adjusting steel plate 111. The second fixed steel plate 112 is bolted to the second adjusting steel plate 111. A bolt hole matching the sliding nut is provided on the other right-angled side of the second adjusting steel plate 111.

[0048] Specifically, the wall panel connector 4 includes a right-angle connector 42 and a straight connector 41, both ends of which are provided with bolt holes.

[0049] Specifically, the first telescopic plate 22, the second telescopic plate 32 and the third telescopic plate 102 are all provided with scales 7 along the telescopic direction on their outer walls, and the telescopic amount of the telescopic plate is determined by the scales 7.

[0050] Specifically, the second telescopic plate 32 and the third telescopic plate 102 are provided with multiple insertion holes 8 along the telescopic direction on their outer walls. Each insertion hole 8 corresponds to a scale value. Locking rods 9 that match the insertion holes 8 are movably provided at the positions corresponding to the insertion holes 8 on the first wall plate 31 and the second telescopic plate 32. Locking rods 9 that match the insertion holes 8 are also movably provided at the positions corresponding to the insertion holes 8 on the second wall plate 101 and the third telescopic plate 102.

[0051] Specifically, the bottom ends of the second wall panel 101 and the door wall panel 21 are provided with casters 10 to facilitate the movement of the wall panel 1 and the door panel 2.

[0052] A method for assembling prefabricated wall components for a model house includes the following steps:

[0053] S1. Push the wall panel 1 and door panel 2 to the assembly position respectively. Adjust the length of the wall panel 1 and beam panel 3 and the height of the beam panel 3 according to the actual size of the wall at the installation location in the sample room. Adjust the extension amount of the first telescopic plate 22 according to the actual height of the doorway in the sample room.

[0054] S2. All wall components except beam slab 3 are connected using wall panel connectors 4. Specifically, wall panel 1 is connected to wall panel 1, and wall panel 1 is connected to door panel 2 using wall panel connectors 4. When one end of a wall component is connected to the other end of another wall component, a straight connecting plate 41 is used. The straight connection is as follows: Figure 6 The connection between wall A and wall B shown is achieved by using a right-angle connecting plate 42 when one end of a wall component is connected to the side wall of another wall component. The right-angle connection is as follows: Figure 7 The connection between wall C and wall D is shown. Beam 3 is connected to other wall components via height adjustment mechanism 11, such as... Figure 5 The connection between beam 3 and wall E is shown;

[0055] S3. After all wall components are connected, lock the caster wheel 10 to complete the assembly of the model room.

[0056] Specifically, the length adjustment process of the beam plate 3 described in S1 is as follows: The first wall plate 31 is pulled to a suitable scale position according to the actual dimensions. Then, the locking rod 9 is inserted into the corresponding hole 8 on the scale, so that the first wall plate 31 and the second telescopic plate 32 are relatively fixed. The structure of the locking rod 9 and the hole 8 of the wall plate 1 is as follows: Figure 9 As shown;

[0057] The length adjustment process of the wall panel 1 is as follows: pull the second wall panel 101 to the appropriate scale position according to the actual size, and then insert the locking rod 9 into the corresponding hole 8 on the scale to fix the second wall panel 101 and the third telescopic plate 102 relatively. The structure of the locking rod 9 and the hole 8 at the beam plate 3 can also be referred to. Figure 9 ;

[0058] The height adjustment process of the beam plate 3 is as follows: adjust the connection position of the second adjusting steel plate 111 and the second fixed steel plate 112 according to the actual size, and then use bolts to fix the second adjusting steel plate 111 and the second fixed steel plate 112.

[0059] The door panel 2 adjustment process is as follows: adjust the connection position of the first adjusting steel plate 121 and the first fixed steel plate 122 according to the actual size, and then use bolts to fix the first adjusting steel plate 121 and the first fixed steel plate 122.

[0060] Specifically, in S2, the process of connecting the wall components using the wall panel connector 4 is as follows: the sliding nuts on the frame 5 of the two wall components to be connected are moved to the connection point along the limiting groove 53, so that the bolt holes at both ends of the right angle connecting plate 42 or the straight connecting plate 41 correspond to the sliding nuts on the two wall components respectively. Then, the right angle connecting plate 42 and the sliding nuts are tightened with bolts to fix the two ends of the right angle connecting plate 42 or the straight connecting plate 41 to the two wall components respectively.

[0061] After the bolt and sliding nut are tightened, they can clamp the side wall of the limiting groove 53, thereby achieving a fixing effect.

[0062] When connecting beam 3, the sliding nut on the frame 5 of another wall component needs to be moved along the limiting groove 53 to the installation position of beam 3 so that the bolt hole on the second adjusting steel plate 111 corresponds to the sliding nut. Then, the second adjusting steel plate 111 and the sliding nut are tightened with bolts to fix the second adjusting steel plate 111 to the other wall component.

[0063] It is important to understand that other types of wall components required in the model room can be designed based on the structure of wall panel 1, such as balcony wall panels and window wall panels. The shape and size of the wall panel can be changed based on the structure and expansion method of wall panel 1.

[0064] The above embodiments merely illustrate the basic principles and characteristics of the present invention, but are not limited to these embodiments. It should be understood that those skilled in the art can make various changes and modifications to the present invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A panelized wall assembly for a model home, comprising a door panel (2), a beam panel (3) and a wall panel (1), characterized in that: The door panel (2) comprises a door wall panel (21) and a first telescopic panel (22), the door wall panel (21) is a hollow structure at the top, and the first telescopic panel (22) is telescopically arranged in the cavity of the door wall panel (21) through a telescopic adjusting mechanism (12); The beam panel (3) is provided with a height adjusting mechanism (11) at both ends, and comprises a second telescopic panel (32) and two first wall panels (31), the first wall panel (31) is a hollow structure, and the left and right ends of the second telescopic panel (32) are telescopically arranged in the cavities of the two first wall panels (31) respectively; The wall panel (1) comprises a third telescopic panel (102) and two second wall panels (101), the second wall panel (101) is a hollow structure, and the left and right ends of the third telescopic panel (102) are telescopically arranged in the cavities of the two second wall panels (101) respectively; The wall panel connecting piece (4) is used for fixedly connecting the wall body assemblies except the beam panel (3), and the beam panel (3) is connected with other wall body assemblies through the height adjusting mechanism (11).

2. The panelized wall assembly of claim 1, wherein: The door wall panel (21), the first wall panel (31), the second wall panel (101), the first telescopic panel (22), the second telescopic panel (32) and the third telescopic panel (102) all comprise a frame (5) and a panel body (6) mounted on the frame (5), the frame (5) comprises a transverse support (51) and a longitudinal support (52), and a limiting sliding groove (53) is arranged on the transverse support (51) and the longitudinal support (52) along the length direction, and a sliding nut is arranged in the limiting sliding groove (53).

3. A panelized wall assembly for a model home according to claim 2, wherein: The telescopic adjusting mechanism (12) comprises a first fixed steel plate (122) and a first adjusting steel plate (121), the first fixed steel plate (122) is fixed on the inner wall of the cavity of the door wall panel (21), a plurality of first bolt holes are arranged on the first fixed steel plate (122) along the longitudinal direction, the first adjusting steel plate (121) is fixed on one end of the first telescopic panel (22), a first through hole matched with the first bolt hole is arranged on the first adjusting steel plate (121), the first adjusting steel plate (121) is bolted with the first fixed steel plate (122), and one telescopic adjusting mechanism (12) is arranged at each end of the first telescopic panel (22); The height adjusting mechanism (11) comprises a second fixed steel plate (112) and a second adjusting steel plate (111), the second fixed steel plate (112) is fixed on the first wall panel (31), a plurality of second bolt holes are arranged on the second fixed steel plate (112) along the longitudinal direction, the second adjusting steel plate (111) is a right-angle steel plate, a second through hole matched with the second bolt hole is arranged on one right-angle side of the second adjusting steel plate (111), the second fixed steel plate (112) is bolted with the second adjusting steel plate (111), and a bolt hole matched with the sliding nut is arranged on the other right-angle side of the second adjusting steel plate (111).

4. The panelized wall assembly of claim 2, wherein: The wall panel connecting piece (4) comprises a right-angle connecting plate (42) and a one-letter connecting plate (41), and bolt holes are arranged at both ends of the right-angle connecting plate (42) and the one-letter connecting plate (41).

5. The panelized wall assembly of claim 1, wherein: The outer walls of the first telescopic panel (22), the second telescopic panel (32) and the third telescopic panel (102) are all provided with scales (7) along the telescopic direction.

6. The panelized wall assembly of claim 5, wherein: The second telescopic plate (32) and the third telescopic plate (102) are provided with a plurality of insertion holes (8) on the outer wall in the telescopic direction, one insertion hole (8) corresponds to one scale value, the first wall plate (31) and the second telescopic plate (32) are movably provided with locking insertion rods (9) matched with the insertion holes (8) at the positions corresponding to the insertion holes (8), and the second wall plate (101) and the third telescopic plate (102) are also movably provided with locking insertion rods (9) matched with the insertion holes (8) at the positions corresponding to the insertion holes (8).

7. The panelized wall assembly of claim 1, wherein: The second wall plate (101) and the door wall plate (21) are provided with universal wheels (10) at the bottom ends.

8. A method of assembling a panelized wall assembly according to any one of claims 1-7, wherein, The method comprises the following steps: S1, the wall plate (1) and the door plate (2) are pushed to the to-be-assembled positions respectively, the length of the wall plate (1) and the beam plate (3) and the height of the beam plate (3) are adjusted according to the actual size of the wall to be installed in the sample house, and the telescopic amount of the first telescopic plate (22) is adjusted according to the actual height of the door opening of the sample house; S2, each wall component is connected by using the wall plate connecting piece (4), when one end of a wall component is connected with one end of another wall component, a straight connecting plate (41) is used for connection, when one end of a wall component is connected with the side wall of another wall component, a right-angle connecting plate (42) is used for connection, and the beam plate (3) is connected with other wall components by using the height adjusting mechanism (11); S3, after the connection of each wall component is completed, the universal wheels (10) are locked, and the sample house is assembled.

9. An assembly method according to claim 8, characterised in that: The length adjustment process of the beam plate (3) in S1 is that the first wall plate (31) is pulled to a suitable scale according to the actual size, then the locking insertion rod (9) is inserted into the insertion hole (8) at the corresponding scale, and the first wall plate (31) and the second telescopic plate (32) are relatively fixed; The length adjustment process of the wall plate (1) is that the second wall plate (101) is pulled to a suitable scale according to the actual size, then the locking insertion rod (9) is inserted into the insertion hole (8) at the corresponding scale, and the second wall plate (101) and the third telescopic plate (102) are relatively fixed; The height adjustment process of the beam plate (3) is that the connection position of the second adjusting steel plate (111) and the second fixed steel plate (112) is adjusted according to the actual size, and after the adjustment is completed, the second adjusting steel plate (111) and the second fixed steel plate (112) are fixedly connected by using bolts; The adjustment process of the door plate (2) is that the connection position of the first adjusting steel plate (121) and the first fixed steel plate (122) is adjusted according to the actual size, and after the adjustment is completed, the first adjusting steel plate (121) and the first fixed steel plate (122) are fixedly connected by using bolts.

10. An assembly method according to claim 8, characterized in that: The process of connecting each wall component by using the wall plate connecting piece (4) in S2 is that the sliding nuts on the frames (5) of the two wall components to be connected are moved along the limiting sliding grooves (53) to the connection positions, the bolt holes at the two ends of the right-angle connecting plate (42) or the straight connecting plate (41) are respectively matched with the sliding nuts on the two wall components, then the right-angle connecting plate (42) or the straight connecting plate (41) is fixedly connected with the two wall components at the two ends respectively by using bolts and the sliding nuts. When connecting the beam plate (3), the sliding nut on the frame (5) of the other wall body assembly is moved along the limiting sliding groove (53) to the installation position of the beam plate (3), the bolt hole on the second adjusting steel plate (111) is corresponded with the sliding nut, then the second adjusting steel plate (111) and the sliding nut are screwed by using the bolt, and the second adjusting steel plate (111) is fixedly connected with the other wall body assembly.

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