Combined wallboard mechanism for modular integrated house

By designing a combined wall panel mechanism, using miss-slit connections and sealing components, the high cost and difficulty of modular integrated houses in transportation and installation are solved, fool-style assembly and efficient sealing are achieved, reducing labor costs and risk of component damage.

CN120193629APending Publication Date: 2025-06-24GOLDEN DIANSHI (BEIJING) ARCHITECTURAL DESIGN CONSULTING SERVICE CO LTD
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Patent Information

Application Number
CN202510534230.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

Existing modular integrated houses have high cost and high installation difficulties in overall transportation and on-site installation, especially in areas with high labor costs, and are prone to damage to components and reduced life span due to workers' misoperation.

Method used

A combined wall panel mechanism is designed, including wall panel body, wall panel butt panel and sealing components. The detachable connection and efficient sealing between wall panels are achieved through malfunctioning joints and sealing structures, reducing installation difficulty and labor costs.

Benefits of technology

It realizes fool-style assembly, reduces transportation and installation costs, improves waterproof and windproof performance, reduces the risk of component damage and lifespan, and is suitable for a variety of building scenarios.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The combined wallboard mechanism comprises N wallboard bodies, each wallboard body comprises a wallboard shell, a wallboard framework playing a supporting role is arranged in each wallboard shell, and the wallboard shells surround all the side faces, except the top face and the bottom face, of each wallboard framework; a space enclosed by the wallboard shell and the wallboard framework is filled with a wallboard heat preservation layer which has the functions of heat insulation, heat preservation, water prevention and the like; every two adjacent wallboard bodies in the transverse direction are detachably connected through one wallboard butt-joint plate, and the adjacent wallboard bodies and wallboard butt-joint plates are detachably connected with each other; the Ngt; = 2. The outer frame butt-joint parts, the butt-joint pipe bodies and the wallboard butt-joint plates jointly achieve staggered joint connection between the adjacent wallboard bodies and the wallboard butt-joint plates, different connection gaps are not aligned, and therefore air leakage or water leakage possibly caused by gap alignment is avoided, namely the waterproof and windproof performance is further improved through staggered joint connection.
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Description

Technical Field

[0001] The present disclosure relates to the field of integrated houses, and more particularly, to a combined wall panel mechanism for modular integrated houses. Background Art

[0002] Traditional construction methods (such as in-situ concrete casting, on-site welding of steel structures, etc.) are still the mainstream in the global construction market, but there are still prominent problems such as long construction periods, labor-intensive, resource waste (the building material loss rate is about 30%), and environmental pollution (construction waste accounts for more than 40% of the total urban waste). In contrast, modular construction prefabricates components or integral modules (such as room units) in factories and then transports them to the site for assembly, which has the advantages of fast construction (shortening the construction period by 30% - 70%), environmental protection (reducing construction waste by more than 80%), and low labor demand. With policy support and industrial advantages, modular construction is rapidly penetrating into the fields of housing, commerce, and emergency, and is expected to occupy a larger share in the standardized market in the future.

[0003] Common modular integrated houses include space capsules, flat-pack container houses, container houses, etc. They are usually manufactured and assembled in factories. After the factory assembly is completed, they can be transported to the destination by logistics and put into use. They are widely used because of their convenience.

[0004] Since integrated houses are usually produced in factories and are far from the use site, if the integrated houses are transported as a whole, the transportation cost is relatively high. If the product is to be exported, the overall transportation cost is even higher. On the other hand, if modular components are assembled on-site, although the transportation cost is reduced a lot, especially in regions where space capsules and prefabricated houses are popular in Europe and America, the labor cost is very high, which has created the current dilemma of integrated houses - if the integrated houses are transported as a whole, the transportation cost will be very high; if they are disassembled into several modules and assembled on-site at the destination, high assembly labor costs need to be paid, and the installation of integrated houses is difficult and requires a high technical level of workers.

[0005] The market urgently needs a modular integrated house that can achieve foolproof assembly to solve the problem of high overall transportation costs, effectively save the labor cost of on-site installation, and fundamentally prevent problems such as component damage and reduced lifespan caused by workers' incorrect operations. Summary of the Invention

[0006] In view of the above technical problems in the related art, the present disclosure provides a combined wall panel mechanism for modular integrated houses, which can overcome the above-mentioned deficiencies of the prior art.

[0007] To achieve the above technical objectives, the technical solution of the present disclosure is realized as follows: The present disclosure relates to a combined wall panel mechanism for a modular integrated house, which includes N wall panel bodies. Each wall panel body includes a wall panel housing, and a wall panel skeleton for support is provided in the wall panel housing. The wall panel housing surrounds all sides of the wall panel skeleton except the top surface and the bottom surface; a wall panel insulation layer for heat insulation, heat preservation, waterproofing, etc. is filled in the space jointly enclosed by the wall panel housing and the wall panel skeleton; Horizontally, every two adjacent wall panel bodies are detachably connected through a wall panel docking plate, and the adjacent wall panel bodies and the wall panel docking plate are detachably connected to each other; The N >= 2.

[0008] Preferably, symmetric docking pipe bodies are provided at the left and right ends of the wall panel skeleton, and outer frame docking parts for embedding the docking pipe bodies are provided at the left and right ends of the wall panel housing. Threaded holes I, threaded holes II, and threaded holes III with corresponding positions are respectively provided on the outer frame docking part, the docking pipe body, and the wall panel docking plate; the corresponding threaded holes I, II, and III are threadedly connected through fastening bolts. During implementation, the outer frame docking part, the docking pipe body, and the wall panel docking plate jointly realize the staggered joint between adjacent wall panel bodies and the wall panel docking plate, so that different connection gaps are not aligned, thereby avoiding air leakage or water leakage that may occur due to the alignment of the gaps - that is, the waterproof and windproof performance is further improved through the staggered joint.

[0009] Preferably, sealing strips are provided on the top surface, the bottom surface, and both side surfaces of the wall panel skeleton. The sealing strips play roles such as waterproofing, windproofing, and sealing.

[0010] Preferably, side sealing assemblies are movably connected to the left and right ends of the wall panel skeleton. Each side sealing assembly includes a side substrate. A sealing strip is provided on the outer side surface of the side substrate, and a side slider extending into the docking pipe body is provided on the inner side surface. Openings for the side slider to slide through are respectively provided on the wall panel housing and the docking pipe body; The side slider is provided with a side slider inclined surface, and a positioning pin capable of being inserted into the docking pipe body is provided on the ceiling structure or the floor structure. The positioning pin is provided with a positioning pin first inclined surface that cooperates with the side slider inclined surface. During implementation, the positioning pin of the ceiling structure or the floor structure is inserted into the docking pipe body, and the corresponding positioning pin first inclined surface is closely attached to the side slider inclined surface, thereby prompting the side slider to drive the entire side sealing assembly to move outward. In this way, the side sealing assemblies between adjacent wall panel bodies will be closely attached to each other, and the sealing strips provided on the outer sides of the adjacent side sealing assemblies will also be closely attached accordingly, thereby enhancing the waterproof and windproof sealing performance in the horizontal direction.

[0011] Preferably, a limiting component is provided on the part of the side slider extending into the wall panel skeleton. The limiting component is used to prevent the side slider from being pushed out of the wall panel skeleton by the first inclined surface of the positioning pin. When the ceiling structure or the floor structure is removed, when the first inclined surface of the positioning pin loosens or disengages from the inclined surface of the side slider upward or downward, under the inward elastic force of the limiting component, the side slider will reset and drive the entire side sealing component to reset to the initial position close to the wall panel skeleton.

[0012] Preferably, the limiting component includes a limiting sleeve frame sleeved on the side slider. The limiting sleeve frame and the side slider are fastened by threaded holes, bolts or screws. Limiting spring pieces are respectively provided on both sides of the limiting sleeve frame. The limiting sleeve frame and the limiting spring pieces are jointly sleeved on the side slider, and the limiting spring pieces are in close contact with the inner side wall of the butt joint pipe body. During implementation, corresponding threaded holes can be respectively provided at the top and bottom of the limiting sleeve frame and the side slider, and then after aligning the corresponding threaded holes, the two can be firmly connected together through the threaded holes, bolts or bolts, etc.

[0013] Preferably, a top sealing component is movably connected to the top end of the wall panel skeleton. The top sealing component includes a top base plate. A sealing strip is provided on the top surface of the top base plate, and a top slider inserted into the wall panel skeleton is provided on the bottom surface. The wall panel skeleton is provided with an opening for the top slider to slide through. A transmission block is provided in the wall panel skeleton through a rotating shaft. One end of the transmission block abuts against the top slider upward, and the other end of the transmission block is provided with a transmission block inclined surface. The ceiling structure is provided with a positioning pin that can be inserted into the butt joint pipe body. A second inclined surface of the positioning pin corresponding to the transmission block inclined surface is provided on the upper part of the positioning pin. During implementation, the positioning pin of the ceiling structure is inserted downward into the butt joint pipe body. After the lower part of the positioning pin has entered the butt joint pipe body, the second inclined surface of the positioning pin on the upper part of the positioning pin will contact and act on the transmission block inclined surface, driving the transmission block to rotate around the rotating shaft and push the top slider upward. The top slider drives the top base plate to move upward, thereby making the top sealing component and the sealing strip provided thereon closely adhere to the bottom of the ceiling structure upward, thus improving the waterproof and windproof sealing performance between the top of the combined wall panel mechanism and the ceiling structure. As for the bottom surface of the wall panel skeleton, due to the load-bearing gravity from top to bottom, it will automatically fit closely with the floor mechanism. Therefore, there is no need to set up a sealing component similar to those on both sides and the top to assist in strengthening the close fit. Only a layer of sealing strip needs to be provided on the bottom surface of the wall panel skeleton. The top sealing component does not need to be configured with a reset spring component because after disassembly, under the action of its own gravity, the top base plate of the top sealing component will automatically closely adhere to the top surface of the wall panel skeleton.

[0014] Preferably, in the wall panel framework, a plurality of horizontally and vertically criss-crossed horizontal support pipes and vertical support pipes are provided between the two butt pipe bodies; the intersecting horizontal support pipes and vertical support pipes are fixedly connected or detachably connected; the butt pipe body is also fixedly connected or detachably connected to the adjacent horizontal support pipes and vertical support pipes.

[0015] Preferably, the uppermost horizontal support pipe in the wall panel framework serves as the top horizontal butt pipe, the transmission block extends from the inside of the butt pipe body into the top horizontal butt pipe, the butt pipe body and the top horizontal butt pipe are communicated with each other and jointly form a channel for the transmission block to rotate through, an opening for the top slider to slide through is provided at the top of the top horizontal butt pipe, and a rotating shaft corresponding to the transmission block is provided on the side wall of the top horizontal butt pipe. The butt pipe body and the top horizontal butt pipe are respectively provided with connected openings, and together with their hollow pipe structures, a channel for the transmission block to rotate through is formed.

[0016] Preferably, the side wall of the outer frame docking part is recessed inward relative to the wall panel shell where it is located, so a docking groove for accommodating the wall panel docking plate is formed between two adjacent wall panel bodies.

[0017] Preferably, the length (height) of the wall panel docking plate <= the length (height) of the docking groove, the width of the wall panel docking plate <= the width of the docking groove, and the thickness of the wall panel docking plate <= the depth of the docking groove.

[0018] Preferably, the top of the front end (facing the indoor side) of the wall panel shell is flush with the top of the rear end (facing the outdoor side), and the bottom of the front end (facing the indoor side) of the wall panel shell is higher than the bottom of the rear end (facing the outdoor side). The different heights of the bottoms of the front and rear ends of the wall panel shell enable the wall panel structure and the floor structure to be interlocked and overlapped, which can prevent the formation of a continuous ventilation gap when the wall panel is connected to the floor.

[0019] Preferably, the wall panel framework is located inside the front end of the wall panel shell.

[0020] Preferably, the wall panel shell is provided with an outer guiding groove outside the outer frame docking part.

[0021] Beneficial effects achieved by this design: This product has a simple structure, is convenient for maintenance, disassembly and assembly, and has a firm connection. This product is spliced by a supporting wall panel body, a wall panel docking plate, and auxiliary threaded holes and screw rods. The wall panel docking plate is placed in the spliced docking groove, and each sealing strip and its auxiliary sealing structure from different wall panel bodies are used to achieve the sealing of the indoor side, and an outer guiding groove that can play a role in guiding water flow or installing exterior decoration is formed on the outdoor side, thus realizing precise and foolproof assembly. Through the cooperation of the outer frame docking part, the docking pipe body, the wall panel docking plate, and each threaded hole, etc., this product realizes the staggered joint connection between the wall panel bodies, avoiding situations such as water leakage and air leakage caused by the alignment of the connection gaps. This product has extremely low requirements for the professional skills of installers, greatly avoids installation errors, and reduces problems such as component damage or the decline of the life of the space capsule. This product can achieve convenient and firm connection between the wall panel and the wall panel docking plate, between the wall panel and the floor, and between the wall panel and the ceiling only through 4 bolts, greatly saving labor costs, being quickly installed and disassembled, being more convenient for transportation than existing space capsules, prefabricated houses, etc., having lower transportation costs and higher construction efficiency.

[0022] During implementation, this product is produced and formed by one-time pressing of the inner and outer finishes, the structure body, and the insulation layer. The wall panel insulation layer will be sealed by each structure in all the entire wall structures including the combined wall panel mechanism and cannot be connected to the outside world, effectively avoiding the occurrence of damage situations such as combustion of the wall panel insulation layer. Because the wall panel insulation layer and the sealing strip are sealed in the wall structure, they will not be exposed to wind, rain and sun, and there is even no problem of the usual material weather resistance, greatly improving the service life of the material. Due to the full distribution of insulation materials in the wall panel, its insulation performance exceeds the insulation effect of traditional buildings, and due to the self-bearing characteristics of the wall panel, the wall that usually has a total thickness of up to 30 cm after setting the insulation layer can be reduced to a thickness of only about 15 cm to meet the needs, saving the building area occupied by the wall, and the building area can be saved by 5-8% compared with the houses built in the traditional way. In short, this product can realize industrialized assembly line batch production in the factory, improve production efficiency and product quality, effectively reduce production costs, can also be transported at low cost and assembled in a high-efficiency foolproof manner, and can be applied to various building scenarios. This product complies with the relevant national policies on wall reform, does not need to be decorated twice, and can be directly assembled and used in a prefabricated manner, saving labor, effort and cost.

[0023] The modular integrated house provided by this disclosure adopts standardized module units, covering a structural system, a ground system, a wall system, etc. The modules are prefabricated in the factory and assembled on site, realizing the "off-site construction" of the building and the transformation from "real estate" to "movable property". The core features of this disclosure are that it can achieve industrialized assembly line production, green environmental protection, flexible configuration and a wide range of application scenarios, and can be used as tourist accommodation, small business, office buildings, low-rise residences, elderly care residences, emergency shelters, temporary shelters, etc. Brief Description of the Drawings

[0024] The present disclosure will be further described in detail below with reference to the drawings.

[0025] Figure 1 It is a schematic diagram of the modular wall panel mechanism described in the present disclosure.

[0026] Figure 2 It is a disassembly schematic of the wall panel body described in the present disclosure Figure 1 (without waterproof sealing strip).

[0027] Figure 3 It is a perspective view of the wall panel body described in the present disclosure.

[0028] Figure 4 It is a disassembly schematic of the wall panel body described in the present disclosure Figure 2 (with waterproof sealing strip).

[0029] Figure 5 It is Figure 4 The disassembly schematic diagram of the wall panel skeleton, top sealing component, side sealing component, and waterproof sealing strip in

[0030] Figure 6 It is a schematic diagram of the transmission relationship of the positioning pin, side sealing component, top sealing component, and transmission block described in the present disclosure Figure 1 .

[0031] Figure 7 It is Figure 1 The enlarged view at position A in - showing the transmission block and side slider.

[0032] Figure 8 It is the corner of the wall panel body described in the present disclosure Figure 1 - highlighting the transmission block.

[0033] Figure 9 It is the corner of the wall panel body described in the present disclosure Figure 2 - highlighting the side slider.

[0034] Figure 10 It is a schematic diagram of the use of the modular wall panel mechanism described in the present disclosure - the mating schematic diagram of the wall panel body and the floor structure positioning pin.

[0035] Figure 11 It is a schematic diagram of the use of the modular wall panel mechanism described in the present disclosure - the mating schematic diagram of the wall panel body with the floor structure and the ceiling structure positioning pins.

[0036] Figure 12 It is a schematic diagram of the structure of the limiting component described in the present disclosure.

[0037] Figure 13It is a schematic diagram of the cooperation between the side slider and the limit component described in the present disclosure. Detailed implementation manners

[0038] Next, the technical solutions in the embodiments of the present disclosure will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only a part of the embodiments of the present disclosure, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present disclosure belong to the scope of protection of the present disclosure.

[0039] As Figure 1-13 shown, in order to facilitate the understanding of the above technical solutions of the present disclosure, the above technical solutions of the present disclosure will be described in detail below in terms of specific usage methods.

[0040] The combined wall panel mechanism for a mobile house includes N wall panel bodies 1. The wall panel body 1 includes a wall panel outer shell 101, and a wall panel skeleton 102 for support is provided in the wall panel outer shell 101. The wall panel outer shell 101 surrounds all the sides of the wall panel skeleton 102 except the top surface and the bottom surface; a wall panel insulation layer 103 for heat insulation, heat preservation, waterproofing, etc. is filled in the space jointly enclosed by the wall panel outer shell 101 and the wall panel skeleton 102; Horizontally, every two adjacent wall panel bodies 1 are detachably connected by a wall panel docking plate 2, and the adjacent wall panel bodies 1 and wall panel docking plates 2 are detachably connected to each other; The N >= 2.

[0041] In a feasible embodiment, symmetric docking pipe bodies 1021 are provided at the left and right ends of the wall panel skeleton 102, and outer frame docking parts 1011 for the docking pipe bodies 1021 to be embedded are provided at the left and right ends of the wall panel outer shell 101. Threaded holes 1, threaded holes 2, and threaded holes 3 corresponding in position are respectively provided on the outer frame docking part 1011, the docking pipe body 1021, and the wall panel docking plate 2; the corresponding threaded holes 1, threaded holes 2, and threaded holes 3 are threadedly connected by fastening bolts 1013. During implementation, the outer frame docking part 1011, the docking pipe body 1021, and the wall panel docking plate 2 together realize the staggered connection between adjacent wall panel bodies 1 and wall panel docking plates 2, so that different connection gaps are not aligned, thereby avoiding air leakage or water leakage that may occur due to the alignment of the gaps - that is, the waterproof and windproof performance is further improved through the staggered connection.

[0042] In a feasible embodiment, sealing strips 1027 are respectively provided on the top surface, bottom surface, and both side surfaces of the wall panel skeleton 102. The sealing strips 1027 play roles such as waterproofing, windproofing, and sealing.

[0043] In a feasible embodiment, side sealing assemblies 1024 are movably connected to the left and right ends of the wall panel framework 102. The side sealing assembly 1024 includes a side base plate 10241. A sealing strip 1027 is provided on the outer side of the side base plate 10241, and a side slider 10242 extending into the docking pipe body 1021 is provided on the inner side. The wall panel outer shell 101 and the docking pipe body 1021 are respectively provided with openings for the side slider 10242 to slide through. The side slider 10242 is provided with a side slider inclined surface 102421. The ceiling structure or the floor structure is provided with a positioning pin 3 that can be inserted into the docking pipe body 1021. The positioning pin 3 is provided with a first positioning pin inclined surface 302 that cooperates with the side slider inclined surface 102421. During implementation, the positioning pin 3 of the ceiling structure or the floor structure is inserted into the docking pipe body 1021, and the corresponding first positioning pin inclined surface 302 is in close contact with the side slider inclined surface 102421, so as to cause the side slider 10242 to drive the entire side sealing assembly 1024 to move outward. In this way, the side sealing assemblies 1024 between adjacent wall panel bodies 1 will be in close contact with each other, and the sealing strips 1027 provided on the outer sides of the adjacent side sealing assemblies 1024 will also be in close contact accordingly, thereby improving the waterproof and windproof sealing performance in the horizontal direction.

[0044] In a feasible embodiment, a limiting assembly 10243 is provided on the part of the side slider 10242 extending into the wall panel framework 102. The limiting assembly 10243 is used to prevent the side slider 10242 from being pushed out of the wall panel framework 102 by the first positioning pin inclined surface 302. When the ceiling structure or the floor structure is removed, when the first positioning pin inclined surface 302 loosens or disengages from the side slider inclined surface 102421 upward or downward, under the inward elastic force of the limiting assembly 10243, the side slider 10242 will reset and drive the entire side sealing assembly 1024 to reset to the initial position close to the wall panel framework 102.

[0045] In a feasible embodiment, the limiting assembly 10243 includes a limiting sleeve frame 102431 sleeved on the side slider 10242. The limiting sleeve frame 102431 and the side slider 10242 are fastened by threaded holes, bolts or screws. Limiting spring pieces 102432 are respectively provided on both sides of the limiting sleeve frame 102431. The limiting sleeve frame 102431 and the limiting spring pieces 102432 are jointly sleeved on the side slider 10242, and the limiting spring pieces 102432 are in close contact with the inner side wall of the docking pipe body 1021. During implementation, corresponding threaded holes can be respectively provided at the top and bottom of the limiting sleeve frame 102431 and the side slider 10242, and then after aligning the corresponding threaded holes, the two can be firmly connected together through the threaded holes, bolts or bolts, etc.

[0046] In a feasible embodiment, a top sealing assembly 1025 is movably connected to the top end of the wall panel frame 102. The top sealing assembly 1025 includes a top substrate 10251. A sealing strip 1027 is provided on the top surface of the top substrate 10251, and a top slider 10252 inserted into the wall panel frame 102 is provided on the bottom surface. The wall panel frame 102 is provided with an opening for the top slider 10252 to slide through. A transmission block 1026 is provided in the wall panel frame 102 through a rotating shaft. One end of the transmission block 1026 abuts against the top slider 10252 upward, and a transmission block inclined surface 10261 is provided at the other end of the transmission block 1026. The ceiling structure is provided with a positioning pin 3 that can be inserted into the docking pipe body 1021. A second positioning pin inclined surface 303 corresponding to the transmission block inclined surface 10261 is provided on the upper part of the positioning pin 3. During implementation, the positioning pin 3 of the ceiling structure is inserted downward into the docking pipe body 1021. After the lower part of the positioning pin 3 has entered the docking pipe body 1021, the second positioning pin inclined surface 303 on the upper part of the positioning pin 3 will contact and act on the transmission block inclined surface 10261, driving the transmission block 1026 to rotate around the rotating shaft and push the top slider 10252 upward. The top slider 10252 drives the top substrate 10251 to move upward, thereby making the top sealing assembly 1025 and the sealing strip 1027 provided thereon closely adhere to the bottom of the ceiling structure upward, thus improving the waterproof and windproof sealing performance between the top of the combined wall panel mechanism and the ceiling structure. As for the bottom surface of the wall panel frame 102, due to the self-weight load from top to bottom, it will automatically fit closely with the floor mechanism. Therefore, there is no need to set up a sealing assembly similar to those on both sides and the top for strengthening the close fit. Only a layer of sealing strip 1027 needs to be provided on the bottom surface of the wall panel frame 102. The top sealing assembly 1025 does not need to be configured with a reset spring assembly because after disassembly, under the action of its own gravity, the top substrate 10251 of the top sealing assembly 1025 will automatically closely adhere to the top surface of the wall panel frame 102.

[0047] In a feasible embodiment, in the wall panel frame 102, a plurality of horizontally and vertically intersecting horizontal support pipes 1022 and vertical support pipes 1023 are provided between the two docking pipe bodies 1021; the intersecting horizontal support pipes 1022 and vertical support pipes 1023 are fixedly connected or detachably connected; the docking pipe body 1021 is also fixedly connected or detachably connected to the adjacent horizontal support pipes 1022 and vertical support pipes 1023.

[0048] In a feasible embodiment, the uppermost horizontal support pipe 1022 in the wall panel framework 102 serves as the top horizontal docking pipe. The transmission block 1026 extends from inside the docking pipe body 1021 into the top horizontal docking pipe. The docking pipe body 1021 and the top horizontal docking pipe are in communication with each other and jointly form a channel for the transmission block 1026 to rotate through. An opening for the top slider 10252 to slide through is provided at the top of the top horizontal docking pipe, and a rotation shaft corresponding to the transmission block 1026 is provided on the side wall of the top horizontal docking pipe. The docking pipe body 1021 and the top horizontal docking pipe are respectively provided with communicating openings, and together with their hollow pipe structures, a channel for the transmission block 1026 to rotate through is formed.

[0049] In a feasible embodiment, the side wall of the outer frame docking portion 1011 is recessed inward relative to the wall panel housing 101 where it is located. Therefore, a docking groove for accommodating the wall panel docking plate 2 is formed between two adjacent wall panel bodies 1.

[0050] In a feasible embodiment, the length (height) of the wall panel docking plate 2 <= the length (height) of the docking groove, the width of the wall panel docking plate 2 <= the width of the docking groove, and the thickness of the wall panel docking plate 2 <= the depth of the docking groove.

[0051] In a feasible embodiment, the top of the front end (facing the indoor side) of the wall panel housing 101 is flush with the top of the rear end (facing the outdoor side), and the bottom of the front end (facing the indoor side) of the wall panel housing 101 is higher than the bottom of the rear end (facing the outdoor side). The different heights of the bottoms of the front and rear ends of the wall panel housing 101 enable the wall panel structure and the floor structure to be engaged and overlapped, which can prevent the formation of a continuous ventilation gap when the wall panel is connected to the floor.

[0052] In a feasible embodiment, the wall panel framework 102 is located inside the front end of the wall panel housing 101.

[0053] In a feasible embodiment, the wall panel housing 101 is provided with an outer guiding groove 1012 outside the outer frame docking portion 1011.

[0054] Working principle: During implementation, positioning pins 3 that match the inner diameter of the docking pipe body 1021 can be respectively arranged on the ceiling structure and the floor structure, so that the positioning pins 3 can be inserted into the corresponding docking pipe bodies 1021, thereby realizing the firm connection between the wall body 1 and the ceiling structure and the floor structure. Moreover, the docking pipe body 1021 is located at the front end (indoor side) of the wall panel housing 101, avoiding possible risks such as rain leakage and air leakage where the connection position is exposed outdoors. The requirements for professional skills of this product are extremely low. It only needs to align the positioning pin 3 with the docking pipe body 1021. After aligning the first thread, the second threaded hole, and the third threaded hole respectively provided on the outer frame docking part 1011, the docking pipe body 1021, and the wall panel docking plate 2, then connect them through fastening bolts 1013 or screws, etc. As for the wall panel docking plate 2, it is responsible for the detachable connection between different wall body 1s, and the product can be assembled into the entire space capsule, fully avoiding the risk of installation errors and ensuring the construction quality. For firmer connection, threaded holes 301 corresponding to the first thread, the second threaded hole, and the third threaded hole can also be provided on the positioning pin 3, and the corresponding fastening bolts 1013 are used to connect the aligned first thread, the second threaded hole, the third threaded hole, and the threaded hole 301 together, thereby further strengthening the firm connection between the wall body 1 and the rectangular block 3, and further improving the structural stability of the entire space capsule.

[0055] For the tightness of the connection between the wall bodies 1 in the combined wall panel mechanism, the two side surfaces of the wall panel skeleton 102 can be realized by arranging sealing strips 1027 on the outer sides of the side sealing components 1024. The positioning pin 3 is provided with a first inclined surface 302 of the positioning pin corresponding to the inclined surface 102421 of the side slider, so as to push the side sealing component 1024 outward (both sides of the wall body 1) when the positioning pin 3 is docked with the docking pipe body 1021, so that the sealing strips 1027 on the side parts of the adjacent wall bodies 1 are closely attached, improving the waterproof and windproof performance in the transverse direction. The top of the wall panel skeleton 102 is provided with a top sealing component 1025, and the principle is similar to that of the side sealing component 1024, to realize the tightness between the wall body 1 and the ceiling structure. The sealing strip 1027 at the bottom of the wall body 102 will naturally be closely attached to the floor structure under the action of gravity, and there is no need to design a tightness mechanism similar to the top sealing component 1025.

[0056] This product realizes the staggered joint and detachable connection between different wall panel bodies 1 through the wall panel docking plate 2. Moreover, the first threaded holes, the second threaded holes, and the third threaded holes are respectively provided on the outer frame docking part 1011, the docking pipe body 1021, and the wall panel docking plate 2; for the corresponding first threaded holes, second threaded holes, and third threaded holes, only by aligning and realizing threaded connection through the fastening bolts 1013 can the in-place connection of each wall panel body 1 and the wall panel docking plate 2 be achieved, greatly reducing the installation difficulty. Even non-professionals can learn it immediately, reducing the risk of installation errors, and it can be disassembled and transported to the destination and then assembled, greatly reducing the transportation cost.

[0057] To sum up, through the above unique design, this product has a simple structure, is convenient for maintenance, disassembly and assembly, and has a firm connection. This product is produced by one-time pressing of the inner and outer finishes, the structural body, and the insulation layer. The wall panel insulation layer will be sealed in all the entire wall structures including the combined wall panel mechanism by each structure and cannot be connected to the outside world, effectively avoiding the occurrence of damage such as combustion of the wall panel insulation layer. Because the wall panel insulation layer and the sealing strip are sealed in the wall structure, they will not be exposed to wind, rain and sun, and even there is no usual problem of material weather resistance, greatly improving the service life of the material. Since the wall panel is fully filled with insulation materials, its insulation performance exceeds that of traditional buildings, and due to the self-weight characteristic of the wall panel, the wall that is usually as thick as 30 cm after setting the insulation layer can be reduced to a thickness of only about 15 cm to meet the requirements, saving the building area occupied by the wall, and the building area can be saved by 5-8% compared with the houses built in the traditional way. In short, this product can be mass-produced by industrial assembly line in the factory, improving production efficiency and product quality, effectively reducing production costs, and can be transported at low cost, assembled in a high-efficiency foolproof manner, and can be applied to various building scenarios. This product complies with the relevant national policies on wall reform, does not need to be decorated twice, and can be directly assembled and used in a prefabricated manner, saving labor, effort and cost.

[0058] In the description of the present disclosure, it should be understood that the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present disclosure and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present disclosure.

[0059] The above are only the preferred embodiments of the present disclosure and are not intended to limit the present disclosure. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present disclosure shall be included in the protection scope of the present disclosure.

Claims

1. A modular wall panel mechanism for a modular integrated house, characterized in that: The wall panel body (1) comprises N wall panel bodies (1), wherein the wall panel body (1) comprises a wall panel shell (101), wherein a wall panel frame (102) having a supporting function is provided in the wall panel shell (101), and the wall panel shell (101) surrounds all side surfaces of the wall panel frame (102) except the top surface and the bottom surface; and the space enclosed by the wall panel shell (101) and the wall panel frame (102) is filled with a wall panel insulation layer (103) having heat insulation, thermal insulation and waterproof functions; Each two adjacent wall panel bodies (1) in the transverse direction are detachably connected via a wall panel butt joint plate (2), and the adjacent wall panel bodies (1) and wall panel butt joint plates (2) are detachably connected to each other; Said N>=2.

2. The combined wall panel mechanism according to claim 1, characterized in that: The left and right ends of the wall panel frame (102) are provided with symmetrical butt joint bodies (1021); the left and right ends of the wall panel outer shell (101) are provided with outer frame butt joint parts (1011) for the butt joint bodies (1021) to be embedded; the outer frame butt joint parts (1011), the butt joint bodies (1021) and the wall panel butt joint plate (2) are respectively provided with threaded holes one, two and three at corresponding positions; the corresponding threaded holes one, two and three are threadedly connected by fastening bolts (1013).

3. The combined wall panel mechanism according to claim 2, characterized in that: The top surface, bottom surface and two side surfaces of the wall panel frame (102) are respectively provided with sealing strips (1027).

4. The combined wall panel mechanism according to claim 3, characterized in that: The left and right ends of the wall panel frame (102) are movably connected with side sealing components (1024), the side sealing components (1024) comprising a side base plate (10241), the outer side surface of the side base plate (10241) is provided with the sealing strip (1027) and the inner side surface is provided with a side slider (10242) extending into the butt joint body (1021), and the wall panel shell (101) and the butt joint body (1021) are respectively provided with openings for the side slider (10242) to slide through; The side slider (10242) is provided with a side slider inclined surface (102421), and the ceiling structure or the floor structure is provided with a positioning pin (3) capable of being inserted into the butt joint body (1021), and the positioning pin (3) is provided with a first positioning pin inclined surface (302) matching the side slider inclined surface (102421).

5. The combined wall panel mechanism according to claim 4, characterized in that: The portion of the side sliding block (10242) extending into the wall panel frame (102) is provided with a limiting component (10243).

6. The combined wall panel mechanism according to claim 5, characterized in that: The limiting assembly (10243) comprises a limiting sleeve (102431), the limiting sleeve (102431) is sleeved on the side slider (10242), the limiting sleeve (102431) and the side slider (10242) are fastened to each other via threaded holes, bolts or screws, limiting spring sheets (102432) are respectively provided on both sides of the limiting sleeve (102431), the limiting sleeve (102431) and the limiting spring sheet (102432) are jointly sleeved on the side slider (10242), and the limiting spring sheet (102432) is closely attached to the inner wall of the butt joint body (1021).

7. The combined wall panel mechanism according to claim 3, characterized in that: The top of the wall panel frame (102) is movably connected to a top sealing assembly (1025), the top sealing assembly (1025) comprises a top base plate (10251), the top surface of the top base plate (10251) is provided with the sealing strip (1027) and the bottom surface is provided with a top sliding block (10252) inserted into the wall panel frame (102), and the wall panel frame (102) is provided with an opening for the top sliding block (10252) to slide through; A transmission block (1026) is provided in the wall panel frame (102) via a rotating shaft, one end of the transmission block (1026) presses upward against the top sliding block (10252), and the other end of the transmission block (1026) is provided with a transmission block inclined surface (10261); The ceiling structure is provided with a positioning pin (3) capable of being inserted into the butt joint pipe body (1021), and the upper part of the positioning pin (3) is provided with a second positioning pin inclined surface (303) corresponding to the inclined surface (10261) of the transmission block.

8. The combined wall panel mechanism according to claim 7, characterized in that: In the wall panel frame (102), a plurality of crisscrossing transverse support tubes (1022) and vertical support tubes (1023) are provided between two butt-jointed tube bodies (1021); the intersecting transverse support tubes (1022) and vertical support tubes (1023) are fixedly connected or detachably connected; The butt joint pipe body (1021) is also fixedly connected or detachably connected to the adjacent transverse support pipe (1022) and vertical support pipe (1023); The uppermost transverse support tube (1022) in the wall panel frame (102) serves as a top transverse butt joint tube, and the transmission block (1026) extends from the inside of the butt joint tube body (1021) into the top transverse butt joint tube. The butt joint tube body (1021) and the top transverse butt joint tube are connected and together form a channel for the transmission block (1026) to rotate through. An opening is provided at the top of the top transverse butt joint tube for the top sliding block (10252) to slide through, and a rotation axis corresponding to the transmission block (1026) is provided on the side wall of the top transverse butt joint tube.

9. The combined wall panel mechanism according to claim 2, characterized in that: The side wall of the outer frame docking portion (1011) is recessed inwardly relative to the wall panel outer shell (101) where it is located, so that a docking groove capable of accommodating the wall panel docking plate (2) is formed between two adjacent wall panel bodies (1); The length of the wall panel butt joint plate (2) is less than or equal to the length of the butt joint groove, the width of the wall panel butt joint plate (2) is less than or equal to the width of the butt joint groove, and the thickness of the wall panel butt joint plate (2) is less than or equal to the depth of the butt joint groove.

10. The combined wall panel mechanism according to claim 1, characterized in that: The front end top of the wall panel shell (101) is flush with the rear end top, and the front end bottom of the wall panel shell (101) is higher than the rear end bottom; The wall panel frame (102) is located inside the front end of the wall panel shell (101); The wall panel shell (101) is provided with an outer guide groove (1012) on the outer side of the outer frame docking portion (1011).