An assembly-type green heat-insulating board structure installation system and its construction method

Through the prefabricated green insulation and thermal insulation plate structure installation system, the combination of support members and adjustment devices is used to realize the flexible installation and reuse of thermal insulation plate structure, solving many problems in ground laying in the prior art, and improving construction efficiency and environmental protection.

CN112144813BActive Publication Date: 2025-07-18SHENZHEN RUIHE CONSTR DECORATION
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Patent Information

Application Number
CN202010941679.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-09-09
Publication Date
2025-07-18
Estimated Expiration
2040-09-09

AI Technical Summary

Technical Problem

The existing residential floor laying methods have problems such as hollow floors, alkaline, water spots, long construction periods, polluted environments, poor insulation and sound insulation effects, inability to redisassemble and recycle, and low overall installation efficiency.

Method used

The prefabricated green insulation and thermal insulation plate structure installation system is adopted. Through the combination of support members, adjustment devices and thermal insulation plate structural components, the vertical lifting and lowering are achieved by using the engagement connection between the lower adjustment components and the upper adjustment components. Combined with the fixing of the limiting device and the locking member, the flexible installation and reuse of the thermal insulation plate structure is achieved.

Benefits of technology

It realizes simple, quick and efficient installation of thermal insulation panel structure, reduces labor and material costs, conforms to the trend of green and environmental protection, has good thermal insulation and sound insulation effects, and supports repeated lossless disassembly and assembly recycling.

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Abstract

The present invention discloses an installation system for an assembled green thermal insulation board structure and its construction method. The installation system includes a foundation, a support member, an adjusting device, and a thermal insulation board structure assembly. The adjusting device includes an adjusting lower part, a locking member, and an adjusting upper part. The adjusting lower part is adjustably installed on the ground and locked and fixed to the support member through the locking member. The adjusting upper part is meshed and connected with the adjusting lower part, and when the locking member is in the unlocked state, by moving the adjusting lower part, the adjusting upper part can be lifted and lowered in the vertical direction. The thermal insulation board structure assembly is fixed to the adjusting upper part, so that the thermal insulation board structure assembly can be lifted and lowered with the height of the adjusting upper part, thereby achieving the purpose of adjusting the thermal insulation board structure according to the on-site installation, with strong applicability and the ability to be disassembled, assembled, recycled without damage, and reused. At the same time, it can reduce labor and material costs.
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Description

Technical Field

[0001] The present invention relates to the technical field of building decoration, and particularly to an installation system for an assembled green heat-insulating and sound-insulating board structure and a construction method thereof. Background Art

[0002] With the continuous rise of the construction industry, the state supports the development of the construction industry, supports research on building science and technology, improves the architectural design level of residences, encourages energy conservation and environmental protection, and advocates the adoption of advanced technologies, new equipment, new processes, and new building environmental protection materials to improve the quality of residential buildings. Therefore, the standardized and mass industrial production mode of residences is becoming the development trend of the construction industry.

[0003] The floor of existing residences is generally laid by wet pasting with cement mortar, and this method has the following defects:

[0004] 1. It is easy to cause floor hollowing, resulting in efflorescence and water stains;

[0005] 2. After the floor tiles are laid, they need to be cured, and people can walk on them only after they solidify, so the construction period is relatively long;

[0006] 3. Cement mortar is easy to pollute the environment;

[0007] 4. The heat-insulating, sound-insulating and noise-reducing effects are poor;

[0008] 5. It cannot be disassembled, assembled and recycled repeatedly;

[0009] 6. The overall installation efficiency is low and the labor cost is high. Summary of the Invention

[0010] Aiming at the deficiencies of the prior art, the purpose of the present invention is to provide an installation system for an assembled green heat-insulating and sound-insulating board structure and a construction method thereof that can at least solve one of the above problems. The installation is simple, fast, efficient, and can be disassembled, assembled and recycled repeatedly without damage; at the same time, it can reduce labor and material costs, conforms to the trend of factoryization, mass production of building decoration, and popularization and application of energy-saving, material-saving and green environmental protection that can be recycled, and is worthy of popularization and application.

[0011] The purpose of the present invention is achieved by adopting the following technical solutions:

[0012] An installation system for an assembled green heat-insulating and sound-insulating board structure, comprising:

[0013] A foundation,

[0014] A support member, the support member being fixed on the foundation;

[0015] An adjusting device, the adjusting device comprising an adjusting lower member, a locking member and an adjusting upper member;

[0016] The adjustable lower component is adjustably mounted on the ground and is locked and fixed with the supporting member through the locking member;

[0017] The upper adjustment component is meshedly connected with the lower adjustment component, and when the locking member is unlocked, the lower adjustment component is moved so that the upper adjustment component can be lifted and lowered in the vertical direction;

[0018] A thermal insulation board structure component is fixed on the upper adjustment component so that the thermal insulation board structure component can be raised and lowered along with the height of the upper adjustment component.

[0019] Furthermore, the support member has a cavity structure and a notch communicating with the cavity structure is formed on the top of the support member;

[0020] The lower adjustment component is installed in the cavity structure, and when the locking member is unlocked, the lower adjustment component can move in the cavity structure;

[0021] The adjusting upper component is inserted into the cavity structure from the position of the notch;

[0022] The upper adjustment component has a first toothed adjustment slope, and the lower adjustment component has a second toothed adjustment slope meshing with the first toothed adjustment slope. The meshing connection between the upper adjustment component and the lower adjustment component is achieved by means of the meshing of the first toothed adjustment slope and the second toothed adjustment slope.

[0023] Furthermore, the supporting member has two symmetrically arranged supporting side uprights and a top plate connected to the supporting side uprights. The space enclosed by the supporting side uprights and the top plate forms the cavity structure. A limiting device for limiting the lateral movement of the adjusting upper component is also provided in the cavity structure.

[0024] Furthermore, the limiting device is a limiting cross bar, the limiting cross bar is arranged along the length direction of the upper adjustment component, and the two ends of the limiting cross bar are respectively fixed to the two supporting side vertical plates.

[0025] Furthermore, bottom plates are extended outwardly from both sides of the supporting side vertical plates, and the bottom plates are fixed to the foundation by means of fasteners to achieve fixation of the supporting member.

[0026] Furthermore, the thermal insulation board structure assembly includes a supporting member, a keel and a thermal insulation board structure. The supporting member is fixed to the top of the adjustable upper component for supporting the keel; the keel is fixed to the supporting member for installing the thermal insulation board structure.

[0027] Further, the supporting member has a supporting plate in a cross-shaped structure. At the middle position of the bottom of the supporting plate, two limiting and fixing inclined plates are arranged at intervals. The two limiting and fixing inclined plates are symmetrically arranged relative to each other. A groove for inserting the limiting and fixing inclined plates is formed at the top of the adjusting upper member, so as to realize the connection between the supporting member and the adjusting upper member.

[0028] Further, a limiting structure is further arranged at the top of the supporting plate. The limiting structure is distributed at the four corner positions of the supporting plate. The keel is of a hollow structure. A slot hole is formed at the bottom of the keel for inserting the limiting structure, so as to realize the connection between the supporting member and the keel.

[0029] Further, two limiting grooves are arranged at the top of the keel. The two limiting grooves are arranged at intervals along the length direction of the keel. A convex portion adapted to the limiting groove extends downward from the bottom of the heat preservation and heat insulation plate structure. By means of the limiting groove and the convex portion, the connection between the heat preservation and heat insulation plate structure and the keel is realized.

[0030] A construction method of an assembled heat preservation and heat insulation plate structure installation system according to the above, comprising the following construction steps:

[0031] S1. Setting out and positioning: Set out and position the installation position of the support member on the foundation;

[0032] S2. Installing the support member: Install the support members at the set-out and positioned places respectively, and fix them after adjusting through fasteners;

[0033] S3. Installing the adjusting device: Before installing the support member, the support member and the lower adjusting member can be assembled, or the lower adjusting member and the support member can be assembled on site, and then the upper adjusting member is placed into the support member from the notch on the support member and combined with the lower adjusting member. After adjusting according to the on-site requirements, fix and tighten;

[0034] S4. Installing the supporting member: Install the limiting and fixing inclined plates of the supporting member into the groove of the upper adjusting member in a snap-fastening manner and fasten them to complete the installation of the supporting member;

[0035] S5. Installing the keel: Engage the slot hole of the keel with the limiting structure of the supporting member to complete the installation of the keel;

[0036] S6. Installing the heat preservation and heat insulation plate structure: Install the heat preservation and heat insulation plate structure on the keel;

[0037] S7. Acceptance: Carry out caulking and cleaning acceptance.

[0038] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0039] In the present invention, a support member is fixed to the foundation, an adjustable lower member is adjustably installed on the ground and locked and fixed to the support member by means of a locking member; the adjustable lower member is meshed and connected with the adjustable upper member, and when the locking member is in the unlocked state, the adjustable lower member is moved so that the adjustable upper member can move up and down in the vertical direction, so that the heat-insulating board structure assembly fixed on the adjustable upper member can move up and down with the height of the adjustable upper member, thereby realizing the installation adjustment of the heat-insulating board structure according to the site; the present invention is simple, fast, efficient in installation, and can be disassembled, assembled, recycled without damage repeatedly, and at the same time, the labor and material costs can be reduced, which conforms to the trend of industrialization, batch production of building decoration and popularization and use of energy-saving, material-saving and green environmental protection that can be recycled, and is worthy of popularization and application. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Figure 1 is a schematic structure of the present invention Figure 1 ;

[0041] Figure 2 is a schematic structure of the present invention Figure 2 ;

[0042] Figure 3 is a front view of the support member in a specific embodiment of the present invention;

[0043] Figure 4 is a side view of the support member in a specific embodiment of the present invention;

[0044] Figure 5 is a top view of the support member in a specific embodiment of the present invention;

[0045] Figure 6 is a front view of the adjustable lower member in a specific embodiment of the present invention;

[0046] Figure 7 is a side view of the adjustable lower member in a specific embodiment of the present invention;

[0047] Figure 8 is a front view of the adjustable upper member in a specific embodiment of the present invention;

[0048] Figure 9 is a side view of the adjustable upper member in a specific embodiment of the present invention;

[0049] Figure 10 is a top view of the adjustable upper member in a specific embodiment of the present invention;

[0050] Figure 11 is a side view of the supporting member in a specific embodiment of the present invention;

[0051] Figure 12 is a top view of the supporting member in a specific embodiment of the present invention;

[0052] Figure 13 Side view of the keel in a specific embodiment of the present invention;

[0053] Figure 14 Front view of the keel in a specific embodiment of the present invention;

[0054] Figure 15 Bottom view of the keel in a specific embodiment of the present invention;

[0055] Figure 16 Structural schematic diagram of the heat insulation board structure in a specific embodiment of the present invention.

[0056] In the figure: 1, foundation; 2, support member; 20, cavity structure; 201, support side plate; 2010, bottom plate; 2011, fixed through hole; 202, top plate; 2020, notch; 3, adjusting device; 30, lower adjusting member; 300, first serrated adjusting inclined plane; 301, long slot; 31, locking member; 32, upper adjusting member; 320, second serrated adjusting inclined plane; 321, groove; 4, limiting device; 40, first limiting cross bar; 41, second limiting cross bar; 5, heat insulation board structure assembly; 50, supporting member; 500, supporting plate; 5000, limiting fixed inclined plate; 5001, limiting structure; 51, keel; 510, slot hole; 511, limiting groove; 52, heat insulation board structure; 520, board body; 521, board surface layer; 5200, protrusion; 6, sealant. Specific embodiments

[0057] Next, in combination with the accompanying drawings and specific embodiments, the present invention will be preferentially described. It should be noted that, on the premise of no conflict, the following described embodiments or technical features can be arbitrarily combined to form new embodiments.

[0058] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "horizontal", "vertical", "top", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0059] In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0060] Embodiment:

[0061] Please refer to Figures 1 - 16 , the present invention shows an installation system for an assembled green thermal insulation board structure, including a foundation 1, a support member 2, an adjustment device 3, and a thermal insulation board structure assembly 5. The support member 2 is fixed on the foundation 1. The adjustment device 3 includes an adjustment lower member 30, a locking member 31, and an adjustment upper member 32. Among them, the adjustment lower member 30 is adjustably connected to the support member 2, that is, the adjustment lower member 30 is adjustably installed on the ground and locked and fixed to the support member 2 through the locking member 31. The adjustment lower member 30 is engaged with the adjustment upper member 32. In some embodiments, the adjustment lower member 30 has a first toothed adjustment inclined surface 300, and the adjustment upper member 32 has a second toothed adjustment inclined surface 320 that meshes with the first toothed adjustment inclined surface 300. By means of the meshing of the first toothed adjustment inclined surface 300 and the second toothed adjustment inclined surface 320, the adjustment upper member 32 is engaged with the adjustment lower member 30, so that moving the adjustment lower member 30 can adjust the up and down movement of the adjustment upper member 32. Of course, the thermal insulation board structure assembly 5 is fixed to the adjustment upper member 32, so that the thermal insulation board structure assembly 5 can rise and fall with the height of the adjustment upper member 32, that is, the thermal insulation board structure assembly 5 can rise and fall with the up and down movement of the adjustment upper member 32.

[0062] Those skilled in the art can understand that during use, by fixing the support member 2 to the foundation 1, the adjustable lower member 30 is adjustably installed on the support member 2 and locked and fixed by means of the locking member 31; by means of the engagement of the first toothed adjustment inclined surface 300 on the adjustable lower member 30 and the second toothed adjustment inclined surface 320 on the adjustable upper member 32, the engagement connection between the adjustable upper member 32 and the adjustable lower member 30 is realized, so that moving the adjustable lower member 30 can adjust the up and down movement of the adjustable upper member 32, so that the thermal insulation board structure assembly 5 fixed on the adjustable upper member 32 can move up and down with the up and down movement of the adjustable upper member 32, and further realize the on-site installation adjustment of the thermal insulation board structure 52, with strong flexibility, simple, fast and efficient installation, and can also be disassembled, assembled and recycled repeatedly, and at the same time, the labor and material costs can be reduced, thus reducing the construction cost. In addition, thermal insulation and sound insulation materials are filled between the thermal insulation board structure assembly 5 and the foundation 1 to ensure that the assembled green thermal insulation board structure installation system of the present invention has good thermal insulation, heat insulation and sound insulation effects.

[0063] Specifically, the support member 2 has a cavity structure 20, and the adjustable lower member 30 is installed in the cavity structure 20, that is, the adjustable lower member 30 is installed in the cavity structure 20 and locked and fixed by the locking member 31; of course, in the unlocked state of the locking member 31, the adjustable lower member 30 can move in the cavity structure 20. A notch 2020 communicating with the cavity structure 20 is also opened at the top of the support member 2, and the notch 2020 is preferably a square notch 2020. The adjustable upper member 32 is inserted into the cavity structure 20 from the position of the notch 2020 and can be engaged with the adjustable lower member 30, that is, the adjustable upper member 32 is inserted into the cavity structure 20 from the position of the notch 2020 and is engaged with the adjustable lower member 30 by means of the engagement of its second toothed adjustment inclined surface 320 and the first toothed adjustment inclined surface 300 on the adjustable lower member 30, so as to realize the engagement connection between the adjustable upper member 32 and the adjustable lower member 30. In some embodiments, the first toothed adjustment inclined surface 300 is arranged at the top of the adjustable lower member 30, and the second toothed adjustment inclined surface 320 is arranged at the bottom of the adjustable upper member 32. Of course, for those skilled in the art, according to the actual operation situation, changing the first toothed adjustment inclined surface 300 and the second toothed adjustment inclined surface 320 to the engagement of a gear and a rack to realize the engagement connection between the adjustable upper member 32 and the adjustable lower member 30, that is, adjusting the up and down movement of the adjustable upper member 32 by adjusting the adjustable lower member 30, the protection scope should also fall within the protection scope of the present invention.

[0064] As a preferred embodiment, the support member 2 has two symmetrically arranged support side plates 201 and a top plate 202 connected to the two support side plates 201. The space enclosed by the support side plates 201 and the top plate 202 forms the cavity structure 20. That is, when the adjusting lower member 30 is installed in the cavity structure 20 and before being locked by the locking member 31, with the foundation 1 as a reference, the adjusting lower member 30 can move in the front-back direction of the support member 2. Of course, in order to enable the adjusting lower member 30 to be locked to the support member 2 by means of the locking member 31, preferably, long slots 301 or kidney-shaped holes that communicate with each other are provided on both sides of the adjusting lower member 30. The long slots 301 or kidney-shaped holes are arranged along the length direction of the adjusting lower member 30. Fixed through holes 2011 corresponding to the long slots 301 or kidney-shaped holes are provided on the support side plates 201. The locking member 31 passes through the fixed through holes 2011 and the long slots 301 or kidney-shaped holes to lock the adjusting lower member 30 to the support member 2 by means of the locking member 31. In addition, in order to achieve the purpose of enabling the adjusting upper member 32 to move up and down by adjusting the adjusting lower member 30, based on the setting of the first tooth pattern adjusting inclined surface 300 on the top of the adjusting lower member 30 and the second tooth pattern adjusting inclined surface 320 on the bottom of the adjusting upper member 32, the first tooth pattern is arranged along the length direction of the adjusting lower member 30, and the second tooth pattern is also arranged along the length direction of the adjusting upper member 32. Thus, by adjusting the adjusting lower member 30, the purpose of adjusting the up and down movement of the adjusting upper member 32 is achieved. Those skilled in the art can understand that by setting the tooth pattern adjusting inclined surface in the present invention, the friction force of the inclined surface is increased. Under the action of fixing the adjusting lower member 30 and the support member 2, the phenomenon of the adjusting upper member 32 slipping is avoided, ensuring smooth leveling of the heat insulation board structure 52.

[0065] As a preferred embodiment, a limiting device 4 for restricting the lateral movement of the adjusting upper member 32 is further provided in the cavity structure 20. Among them, the limiting device 4 is a limiting cross bar. The limiting cross bar is arranged along the length direction of the adjusting upper member 32, and both ends of the limiting cross bar are respectively fixed to the two support side plates 201. Of course, the limiting cross bar includes a first limiting cross bar 40 and a second limiting cross bar 41. The first limiting cross bar 40 is arranged on one side of the adjusting upper member 32 and fixed to the support side plate 201 for restricting the lateral freedom degree of one side of the adjusting upper member 32; the second limiting cross bar 41 is arranged on the other side of the adjusting upper member 32 and fixed to the support side plate 201 for restricting the lateral freedom degree of the other side of the adjusting upper member 32, ensuring that the adjusting upper member 32 has no offset swing during the up and down movement and can accurately perform longitudinal operation.

[0066] As a preferred embodiment, bottom plates 2010 extend outwardly from both sides of the supporting vertical plate 201, and the bottom plates 2010 are fixed to the foundation 1 by fasteners, which are preferably fastening bolts, so as to achieve the purpose of fixing the supporting member 2.

[0067] As a preferred embodiment, the thermal insulation board structure assembly 5 includes a supporting member 50, a keel 51 and a thermal insulation board structure 52. The supporting member 50 is fixed to the top of the adjusting upper member 32 for supporting the keel 51; the keel 51 is fixed to the supporting member 50 for installing the thermal insulation board structure 52. Specifically, the supporting member 50 has a supporting plate 500 with a cross-shaped structure. Two limiting and fixing inclined plates 5000 are spaced apart at the middle position of the bottom of the supporting plate 500. The two limiting and fixing inclined plates 5000 are symmetrically arranged relative to each other. A groove 321 for inserting the limiting and fixing inclined plates 5000 is formed at the top of the adjusting upper member 32. That is, the limiting and fixing inclined plates 5000 of the supporting member 50 are installed in the groove 321 of the adjusting upper member in a snap-fit manner and fastened, so as to achieve the purpose of connecting the supporting member 50 and the adjusting upper member 32, and the installation is simple, convenient, fast, firm and not easy to shift. Further, an angle A is formed between the limiting and fixing inclined plate 5000 and the supporting plate 500, and the angle A is 60-75°. Through this angle setting, it is convenient for the limiting and fixing inclined plate 5000 to be inserted into the groove 321.

[0068] As a preferred embodiment, a limiting structure 5001 is further provided at the top of the supporting plate 500. The limiting structure 5001 is distributed at the four corner positions of the supporting plate 500. The keel 51 is of a hollow structure, and a slot hole 510 is formed at the bottom of the keel 51 for inserting the limiting structure 5001, so as to achieve the purpose of connecting the supporting member 50 and the keel 51. That is, it can be understood that by using the cross-shaped structure of the supporting plate 500, the limiting structure 5001 is arranged at the four corner positions of the cross-shaped structure, and then the slot hole 510 on the keel 51 is matched with the limiting structure 5001 on the supporting plate 500 to realize the transverse and longitudinal staggered arrangement and installation of the keel 51, facilitating the quick installation effect of the thermal insulation board structure 52.

[0069] As a preferred embodiment, two limiting grooves 511 are provided at the top of the keel 51. The two limiting grooves 511 are spaced apart and arranged along the length direction of the keel 51. A protrusion 5200 adapted to the limiting groove 511 extends downward from the bottom of the heat-insulating board structure 52. With the cooperation of the limiting groove 511 and the protrusion 5200, the connection between the heat-insulating board structure 52 and the keel 51 is realized. Of course, the gap between two adjacent heat-insulating board structures 52 is filled with sealant 6 or foam rod to achieve the sealing between two adjacent heat-insulating board structures 52. Here, it should be noted that the heat-insulating board structure 52 includes a board body 520 and a board surface layer 521. The board body 520 is a hollow structure, and heat-insulating materials are filled in the inner cavity of the board body 520, so that the board body 520 forms a heat-insulating structure, and the board surface layer 521 is located on the upper layer of the heat-insulating structure, thereby improving the heat-insulating performance of the building structure and reducing building energy consumption. Of course, the protrusion 5200 is arranged on the board body 520, so that the heat-insulating board structure 52 of the present invention has high structural strength, anti-deformation ability, temperature stability, and the effects of being flat and wear-resistant.

[0070] The present invention also provides a construction method for an assembled heat-insulating board installation system, including the following construction steps:

[0071] S1. Layout and positioning: Layout and position the installation position of the support member 2 on the foundation 1;

[0072] S2. Install the support member: Install the support members 2 at the layout and positioning positions respectively, and fix them after adjusting with fasteners;

[0073] S3. Install the adjusting device: Before installing the support member 2, the support member 2 can be assembled with the lower adjusting member, or the lower adjusting member can be assembled with the support member 2 on-site, and then the upper adjusting member is placed into the notch 2020 of the support member 2 and combined with the lower adjusting member. After adjusting according to the on-site needs, fix and tighten;

[0074] S4. Install the supporting member: Install the limiting and fixing inclined plate 5000 of the supporting member 50 into the groove 321 of the upper adjusting member in a snap-fit manner and fasten it to complete the installation of the supporting member 50;

[0075] S5. Install the keel: Engage the slot hole 510 of the keel 51 with the limiting structure 5001 of the supporting member 50 to complete the installation of the keel 51;

[0076] S6. Install the heat-insulating board structure: Install the heat-insulating board structure 52 on the keel 51;

[0077] S7. Acceptance: Carry out caulking and cleaning acceptance.

[0078] The construction method of the prefabricated installation system for pavement structure of the present invention does not require paste with cement mortar or glue, saves materials, is green and environmentally friendly without pollution, conforms to the trend of factory production, batch production of building decoration and popularization of the use of recyclable energy-saving and material-saving, green and environmentally friendly, and is worthy of popularization and application.

[0079] The above-mentioned embodiments are only the preferred embodiments of the present invention, and the scope of protection of the present invention cannot be limited thereby. Any non-substantial changes and substitutions made by those skilled in the art on the basis of the present invention shall fall within the scope of protection required by the present invention.

Claims

1. An installation system for an assembled green heat-insulating board structure, characterized in that, Comprising: a foundation, a support member, the support member being fixed to the foundation; an adjustment device, the adjustment device comprising an adjustment lower member, a locking member and an adjustment upper member; the adjustment lower member is adjustably mounted on the ground and is locked and fixed to the support member by the locking member; the adjustment upper member is meshed and connected with the adjustment lower member, and when the locking member is in the unlocked state, the adjustment lower member is moved so that the adjustment upper member can move up and down in the vertical direction; a heat-insulating board structure assembly, the heat-insulating board structure assembly being fixed to the adjustment upper member so that the heat-insulating board structure assembly can move up and down with the height of the adjustment upper member; the support member has a cavity structure and a notch communicating with the cavity structure is provided at the top thereof; the adjustment lower member is mounted in the cavity structure, and when the locking member is in the unlocked state, the adjustment lower member can move in the cavity structure; the adjustment upper member is inserted into the cavity structure from the position of the notch; the adjustment upper member has a first tooth pattern adjustment inclined surface, and the adjustment lower member has a second tooth pattern adjustment inclined surface meshing with the first tooth pattern adjustment inclined surface, and by means of the meshing of the first tooth pattern adjustment inclined surface and the second tooth pattern adjustment inclined surface, the meshing connection between the adjustment upper member and the adjustment lower member is realized; the heat-insulating board structure assembly comprises a supporting member, a keel and a heat-insulating board structure, the supporting member is fixed to the top of the adjustment upper member for supporting the keel; the keel is fixed to the supporting member for mounting the heat-insulating board structure; the support member has two symmetrically arranged support side plates and a top plate connected to the support side plates, and the space surrounded by the support side plates and the top plate forms the cavity structure, and a limiting device for restricting the lateral movement of the adjustment upper member is further provided in the cavity structure; the limiting device is a limiting cross bar, the limiting cross bar is arranged along the length direction of the adjustment upper member, and both ends of the limiting cross bar are respectively fixed to the two support side plates.

2. The installation system of an assembled green heat-insulating board structure according to claim 1, characterized in that: The two sides of the support side plate extend outwards to form a bottom plate, and the bottom plate is fixed to the foundation by means of fasteners to realize the fixation of the support member.

3. The installation system of a prefabricated green heat-insulating board structure according to claim 1, characterized in that: The supporting member has a supporting plate in a cross shape, and two limiting and fixing inclined plates are arranged at intervals in the middle position of the bottom of the supporting plate, the two limiting and fixing inclined plates are symmetrically arranged relative to each other, and a groove for inserting the limiting and fixing inclined plates is provided at the top of the adjustment upper member to realize the connection between the supporting member and the adjustment upper member.

4. The installation system of an assembled green heat-insulating board structure according to claim 3, characterized in that: A limiting structure is further provided at the top of the supporting plate, the limiting structure is distributed at the four corner positions of the supporting plate, the keel is of a hollow structure, and a slot hole is provided at the bottom of the keel for inserting the limiting structure to realize the connection between the supporting member and the keel.

5. The installation system of a prefabricated green heat-insulating board structure according to claim 4, characterized in that: Two limiting grooves are arranged at the top of the keel. The two limiting grooves are spaced apart and arranged along the length direction of the keel. The bottom of the thermal insulation board structure extends downward to form a protrusion adapted to the limiting groove. With the help of the limiting groove and the protrusion, the connection between the thermal insulation board structure and the keel is realized.

6. A construction method of an assembled thermal insulation board structure installation system according to any one of claims 1-4, characterized in that: It includes the following construction steps: S1. Setting out and positioning: Set out and position the installation position of the support member on the foundation; S2. Installing the support member: Install the support members at the set-out positions respectively, and fix them after adjusting with fasteners; S3. Installing the adjusting device: Before installing the support member, the support member and the lower adjusting member can be assembled, or the lower adjusting member and the support member can be assembled on site, and then the upper adjusting member is placed into the notch on the support member and combined with the lower adjusting member. After adjusting according to the on-site requirements, fix and tighten; S4. Installing the supporting member: Install the limiting and fixing inclined plate of the supporting member into the groove of the upper adjusting member in a snap-fastening manner and fasten it to complete the installation of the supporting member; S5. Installing the keel: Engage the slot hole of the keel with the limiting structure of the supporting member to complete the installation of the keel; S6. Installing the thermal insulation board structure: Install the thermal insulation board structure on the keel; S7. Acceptance: Conduct caulking and cleaning acceptance.

Citation Information

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