Fabricated building energy-saving thermal insulation wall

The use of hexagonal linkages and clamping plates enables the adjustment of the wall angle and replacement of the external insulation layer in prefabricated buildings, solving the problems of insulation layer aging and fixed angle in traditional prefabricated buildings, and improving the wall's utilization efficiency and energy saving effect.

CN223689116UActive Publication Date: 2025-12-19CHONGQING CHENGHUAN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422692835.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-12-19
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

Traditional prefabricated building insulation layers deteriorate after prolonged exposure to sunlight, and the fixed angle of prefabricated wall panels leads to resource waste.

Method used

The design employs a hexagonal linkage and clamping plate structure, allowing for wall angle adjustment and maintaining insulation performance through a replaceable external insulation layer.

Benefits of technology

It enables flexible angle adjustment of prefabricated wall panels, extends the service life of the insulation layer, reduces material waste, maintains the stability of house temperature, and saves energy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an assembly type building energy-saving thermal insulation wall which comprises a filling body, an assembly shell is arranged on the outer surface of the filling body, first clamping plates which are evenly arranged at intervals are fixedly connected to the end face of one side of the assembly shell, and second clamping plates which are evenly arranged at intervals are fixedly connected to the end face of the other side of the assembly shell. A hexagonal groove is formed in the center of the first clamping plate and the center of the second clamping plate in a penetrating mode, and a hexagonal connecting rod is movably clamped into the hexagonal groove. A limiting groove is formed in the outer surface of the topmost end of the first clamping plate; a clamping frame is fixedly connected to the outer surface of the outer side of the assembly shell, and an outer heat preservation layer is movably clamped into the clamping frame. Fixing rods are evenly arranged on the outer surface of the outer heat preservation layer at intervals, and the two ends of each fixing rod are rotationally connected with fixing screws in a penetrating mode. According to the fabricated building energy-saving heat-preservation wall, the angle of the two sets of fabricated wall bodies can be adjusted according to the actual use environment, so that the prefabricated wall bodies can be freely adjusted according to the requirements of users, and then the use rate of prefabricated wall plates is increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to energy -conserving wall technology field especially, relates to a kind of prefabricated building energy -conserving wall. BACKGROUND

[0002] Prefabricated building refers to according to design draft in advance to wall in advance pouring manufacturing, then according to original design, wall is installed, and wall can be increased waterproof layer and insulation layer according to its own demand in manufacturing process, to achieve waterproof and insulation effect, for prefabricated wall, insulation layer can stabilize the temperature inside house, to achieve the purpose of energy saving, such as electric energy;

[0003] And the surface of traditional insulation layer is abraded after long time illumination, so that the effect of insulation layer is deteriorated, and since assembly body belongs to prefabricated house, its wall belongs to pre-manufacturing, so the connecting angle between wall cannot be changed, and when on-site construction, the installation angle of assembly body can be changed according to actual situation, so that the wallboard that has been prefabricated is scrapped, and resource waste is caused.

[0004] In view of the above situation, we propose a kind of prefabricated building energy -conserving wall. INVENTION CONTENTS

[0005] The utility model aims at solving the shortcomings in the prior art, and provides a kind of prefabricated building energy -conserving wall.

[0006] To achieve the above object, the utility model adopts the following technical scheme:

[0007] A kind of prefabricated building energy -conserving wall, including filling body, the outer surface of the filling body is provided with assembly shell, the side end surface of the assembly shell is fixedly connected with the first clamping plate that is evenly spaced, the other side end surface of the assembly shell is fixedly connected with the second clamping plate that is evenly spaced;

[0008] The position of the first clamping plate and the second clamping plate is crossed and corresponds, hexagonal slot is passed through the center of the first clamping plate and the second clamping plate, hexagonal link is movably connected in the hexagonal slot, fixed circular plate is fixedly connected at the top of the hexagonal link, and taper rod is fixedly connected at the bottom of the hexagonal link.

[0009] Limiting slot is movably connected on the outer surface of the top end of the first clamping plate with fixed circular plate;

[0010] The outer surface of the outside of the assembly shell is fixedly connected with the clamping frame with opposite opening direction, and the outer insulation layer is movably connected in the clamping frame.

[0011] The outer surface of the outer thermal insulation layer is provided with fixed rods uniformly spaced, both ends of the fixed rods are rotatably connected with fixed screws, and the bottom of the fixed screw is threadedly connected with the assembling shell.

[0012] Preferably, the filling body is wrapped with a filling shell fixedly connected on the outer surface.

[0013] Preferably, the filling shell is fixedly connected with an inner thermal insulation layer on the inner and outer sides respectively, and the outer surface of the inner thermal insulation layer is fixedly connected with a thermal insulation layer.

[0014] Preferably, the assembling shell is wrapped on the outer surface of the filling body, the filling shell, the inner thermal insulation layer and the thermal insulation layer, and the inner wall of the assembling shell is fixedly connected with the outer surface of the thermal insulation layer.

[0015] Preferably, the second clamping plate is movably clamped between the intervals of the first clamping plate.

[0016] Preferably, the top outer surface of the filling body, the filling shell, the inner thermal insulation layer and the thermal insulation layer is fixedly connected with an upper mounting plate, and the bottom outer surface of the filling body, the filling shell, the inner thermal insulation layer and the thermal insulation layer is fixedly connected with a lower mounting plate.

[0017] The prefabricated wall body has the advantages that during installation, the user can adjust the angle of the two groups of assembly body walls according to the actual use environment, so that the prefabricated wall body can be freely adjusted according to the requirements of the user, thereby increasing the use rate of the prefabricated wall body, so that the related materials used for the prefabricated wall body can be saved, and the user can replace the outer thermal insulation layer of the wall body during use, so that the thermal insulation effect of the assembled wall body will not be reduced due to the aging of the outer thermal insulation layer, so that the wall body can better stabilize the temperature inside the house, and the purpose of saving energy is further achieved. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a structural schematic view of the whole outer surface of the utility model;

[0019] Figure 2 It is a structural schematic view of the whole side surface of the utility model;

[0020] Figure 3 It is a cross-sectional view of the whole structure of the utility model.

[0021] As shown in the figure, 1 is a filling body, 2 is a filling shell, 3 is an inner thermal insulation layer, 4 is a thermal insulation interlayer, 5 is an assembly shell, 6 is an outer thermal insulation layer, 7 is a clamping frame, 8 is a fixing rod, 9 is a fixing screw rod, 10 is a first clamping plate, 11 is a second clamping plate, 12 is a hexagonal groove, 13 is a limiting groove, 14 is a hexagonal connecting rod, 15 is a fixed circular plate, 16 is a conical rod, 17 is a lower mounting plate, and 18 is an upper mounting plate. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.

[0023] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0024] Referring to 1-3, an assembled building energy-saving thermal insulation wall body includes a filling body 1, the outer surface of the filling body 1 is provided with an assembly shell 5, the outer surface of the filling body 1 is wrapped and fixedly connected with a filling shell 2, the inner and outer sides of the filling shell 2 are respectively fixedly connected with an inner thermal insulation layer 3, the outer surface of the inner thermal insulation layer 3 is fixedly connected with a thermal insulation interlayer 4, the thermal insulation interlayer 4 can protect the inner thermal insulation layer 3, the assembly shell 5 is wrapped on the outer surfaces of the filling body 1, the filling shell 2, the inner thermal insulation layer 3 and the thermal insulation interlayer 4, and the inner wall of the assembly shell 5 is fixedly connected with the outer surface of the thermal insulation interlayer 4, the top outer surfaces of the filling body 1, the filling shell 2, the inner thermal insulation layer 3 and the thermal insulation interlayer 4 are fixedly connected with an upper mounting plate 18, the bottom outer surfaces of the filling body 1, the filling shell 2, the inner thermal insulation layer 3 and the thermal insulation interlayer 4 are fixedly connected with a lower mounting plate 17, and the lower mounting plate 17 is connected with a foundation.

[0025] The side end surface of the assembly shell 5 is fixedly connected with first clamping plates 10 which are uniformly spaced, the other side end surface of the assembly shell 5 is fixedly connected with second clamping plates 11 which are uniformly spaced, the second clamping plates 11 are movably clamped between the intervals of the first clamping plates 10, the positions of the first clamping plates 10 and the second clamping plates 11 correspond to each other, hexagonal grooves 12 are formed through the centers of the first clamping plates 10 and the second clamping plates 11, hexagonal connecting rods 14 are movably clamped in the hexagonal grooves 12, fixed circular plates 15 are fixedly connected to the top of the hexagonal connecting rods 14, tapered rods 16 are fixedly connected to the bottom of the hexagonal connecting rods 14, the bottom of the tapered rods 16 is smaller in area, so that the tapered rods 16 are more easily inserted into the foundation, limit grooves 13 are formed in the outer surface of the top of the first clamping plates 10, and the limit grooves 13 are movably clamped with the fixed circular plates 15, the outer surface of the assembly shell 5 is fixedly connected with clamping frames 7 which are opposite in opening direction, and the clamping frames 7 movably clamp outer thermal insulation layers 6, the outer surface of the outer thermal insulation layers 6 is provided with fixed rods 8 which are uniformly spaced, the two ends of the fixed rods 8 are rotatably connected with fixed screws 9, the bottom of the fixed screws 9 is screwed with the assembly shell 5, and the fixed rods 8 can better position the outer thermal insulation layers 6 to prevent the outer thermal insulation layers 6 from falling off.

[0026] In summary, in the application process, when installing the assembled wall body, the user clamps the second clamping plates 11 in the intervals between the first clamping plates 10, then rotates to the desired angle according to the actual situation, when rotating the angle, the hexagonal grooves 12 of the first clamping plates 10 and the second clamping plates 11 need to be coincided, then take out the hexagonal connecting rods 14, so that the tapered rods 16 at the bottom of the hexagonal connecting rods 14 are inserted into the hexagonal grooves 12, and the angle of the hexagonal connecting rods 14 is adjusted, so that the hexagonal connecting rods 14 can penetrate the hexagonal grooves 12, until the fixed circular plates 15 are clamped in the limit grooves 13, then the connected assembled wall body is lifted and the appropriate position is found, and is installed by falling, when installing, the hexagonal connecting rods 14 need to be hammered downward, so that the tapered rods 16 at the bottom of the hexagonal connecting rods 14 can be inserted into the foundation, to achieve the purpose of secondary reinforcement.

[0027] When replacing the outer thermal insulation layer 6, the user first rotates the fixed screw 9 to take out the fixed rod 8, the outer thermal insulation layer 6 is made of a material with certain flexibility, such as polystyrene foam, then the outer thermal insulation layer 6 is bent, so that the outer thermal insulation layer 6 can be taken out of the clamping frame 7, finally the user takes out a new outer thermal insulation layer 6, and clamps one side of the outer thermal insulation layer 6 in one clamping frame 7, then the user clamps the other side of the outer thermal insulation layer 6 in the corresponding clamping frame 7, and finally the fixed rod 8 is closely attached to the outer surface of the outer thermal insulation layer 6, and the fixed screw 9 is used to position the fixed rod 8, so as to achieve the purpose of positioning the outer thermal insulation layer 6.

[0028] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. An energy-saving and heat-insulating prefabricated building wall, comprising a pouring body (1), an assembled shell (5) is arranged on the outer surface of the pouring body (1), characterized in that, One side end surface of the assembly shell (5) is fixedly connected with first clamping plates (10) evenly spaced, the other side end surface of the assembly shell (5) is fixedly connected with second clamping plates (11) evenly spaced; The first clamping plate (10) and the second clamping plate (11) correspond in position, a hexagonal groove (12) is provided at the center of the first clamping plate (10) and the second clamping plate (11), a hexagonal connecting rod (14) is movably connected in the hexagonal groove (12), a fixed circular plate (15) is fixedly connected to the top of the hexagonal connecting rod (14), and a tapered rod (16) is fixedly connected to the bottom end of the hexagonal connecting rod (14); A limiting groove (13) is provided on the outer surface of the top end of the first clamping plate (10), and the limiting groove (13) is movably connected with the fixed circular plate (15); The outer surface of the assembly shell (5) is fixedly connected with clamping frames (7) with opposite opening directions, and the clamping frames (7) are movably connected with outer thermal insulation layers (6); The outer surface of the outer thermal insulation layer (6) is provided with fixed rods (8) evenly spaced, and the two ends of the fixed rod (8) are rotatably connected with fixed screws (9), and the bottom of the fixed screw (9) is threadedly connected with the assembly shell (5).

2. The prefabricated energy-saving thermal insulation wall of claim 1, wherein, The filling body (1) is wrapped and fixedly connected with a filling shell (2) around the outer surface.

3. The prefabricated energy-saving thermal insulation wall of claim 2, characterized in that, The inner and outer sides of the filling shell (2) are respectively fixedly connected with inner thermal insulation layers (3), and the outer surface of the inner thermal insulation layer (3) is fixedly connected with a thermal insulation layer (4).

4. The prefabricated energy-saving thermal insulation wall of claim 1, wherein, The assembly shell (5) is wrapped on the outer surfaces of the filling body (1), the filling shell (2), the inner thermal insulation layer (3), and the thermal insulation layer (4), and the inner wall of the assembly shell (5) is fixedly connected with the outer surface of the thermal insulation layer (4).

5. The prefabricated energy-saving thermal insulation wall of claim 1, wherein, The second clamping plate (11) is movably connected between the first clamping plates (10).

6. The prefabricated energy-saving thermal insulation wall of claim 1, wherein, The top outer surfaces of the filling body (1), the filling shell (2), the inner thermal insulation layer (3), and the thermal insulation layer (4) are fixedly connected with upper mounting plates (18), and the bottom outer surfaces of the filling body (1), the filling shell (2), the inner thermal insulation layer (3), and the thermal insulation layer (4) are fixedly connected with lower mounting plates (17).