Assembling type green energy-saving wall

Through the combined structure and connection mechanism of the metal frame and polystyrene foam insulation board, the problem of the non-detachable insulation structure in the assembled green energy-saving wall is solved, the detachability and rapid assembly of the insulation board are realized, and the construction efficiency and energy-saving effect are improved.

CN223330042UActive Publication Date: 2025-09-12HEILONGJIANG FORESTRY DESIGN INST
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Patent Information

Application Number
CN202422811955.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-09-12
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

The existing assembled green energy-saving walls lack a detachable insulation structure, which means that the insulation structure needs to be replaced as a whole after reaching its service life, making it impossible to reuse resources.

Method used

The combined structure of metal frame, polystyrene foam insulation board and metal panel is adopted. The insulation board can be detachably installed through limit rods and bolts, and the connectors and T-shaped plug-ins in the connection mechanism are used to realize the rapid assembly of the wall.

Benefits of technology

The insulation board is made removable and replaceable, which reduces resource waste, improves construction efficiency and energy-saving effects, and shortens the construction period.

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Abstract

The utility model relates to the technical field of assembled green energy-saving wall bodies, and discloses an assembled green energy-saving wall body which comprises an energy-saving mechanism, the energy-saving mechanism comprises a metal frame, a T-shaped groove is formed in the right side of the metal frame, and first threaded holes are formed in the periphery of the back face of the metal frame; the metal frame is connected with the polystyrene foam insulation board and the metal panel through the limiting rods, the polystyrene foam insulation board can be installed on the limiting rods in the metal frame in an embedded mode through the arranged energy-saving mechanism, and then the polystyrene foam insulation board can be installed on the limiting rods in the metal frame by means of mutual matching of first bolts and first threaded holes. The metal panel and the metal frame are tightly connected, the polystyrene foam insulation board has excellent heat insulation performance, indoor and outdoor heat exchange can be effectively reduced, and therefore the heating and refrigerating requirements are lowered, and after the service life is reached, the structure is convenient to detach and replace the polystyrene foam insulation board inside, and the wall is more environmentally friendly and saves more energy.
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Description

Technical Field

[0001] The utility model relates to the technical field of assembled green energy-saving walls, in particular to an assembled green energy-saving wall. Background Art

[0002] When constructing today's prefabricated buildings, the foundation, walls and roof must be prefabricated and fixed during assembly. They cannot be disassembled or reused. However, the disassembly rate of today's buildings is high. Green energy-saving walls are a type of wall that has many advantages, such as environmental protection and energy saving.

[0003] After searching, the applicant found that a Chinese patent disclosed "an assembled green energy-saving wall", and its publication (announcement) number is "CN219622031U". This patent mainly sets up splicing walls to enable green energy-saving walls to be assembled quickly, thereby improving the work efficiency of green energy-saving wall assembly. The splicing wall has a simple structure and fewer parts, which can reduce the occurrence rate of later failures and also reduce production costs. However, this patent does not have a detachable insulation structure. After the insulation structure reaches its service life, the green energy-saving wall still needs to be replaced as a whole. For this reason, we propose an assembled green energy-saving wall. Utility Model Content

[0004] The purpose of the present invention is to provide an assembled green energy-saving wall to solve the problem in the above background technology that there is no detachable insulation structure and the green energy-saving wall still needs to be replaced as a whole after the insulation structure reaches its service life.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an assembled green energy-saving wall, including an energy-saving mechanism, the energy-saving mechanism including a metal frame, a T-slot is provided on the right side of the metal frame, and first threaded holes are provided on all four sides of the back side thereof, the metal frame is connected to a polystyrene foam insulation board and a metal panel through a limiting rod, and the metal panel is threadedly connected with a first bolt on all four sides.

[0006] As a preferred solution, one end of the limiting rod is fixedly installed inside the metal frame, the surfaces of the polystyrene foam insulation board and the metal panel are penetrated by limiting holes, and the limiting rod is inserted into the limiting hole.

[0007] As a preferred solution, the polystyrene foam insulation board and the metal panel are both embedded in the metal frame, and the surface of the metal panel is parallel to the surface of the metal frame.

[0008] As a preferred solution, the size of the first bolt is adapted to the first threaded hole.

[0009] As a preferred solution, a connecting mechanism is provided on the outside of the energy-saving mechanism, and the connecting mechanism includes a connector, a connector slot and a T-shaped plug-in. The connector is fixedly installed on the upper end of the metal frame, and the connector slot is fixedly installed on the lower end of the metal frame.

[0010] As a preferred solution, a groove is provided on one side of the connector, and a second threaded hole is provided inside the groove.

[0011] As a preferred solution, a protruding block is fixedly connected to one side of the plug-in slot, and second bolts are threadedly connected to both sides of the plug-in slot, and the size of the second bolts is adapted to the second threaded hole.

[0012] As a preferred solution, the size of the T-shaped plug-in is adapted to the T-shaped slot.

[0013] Technical effects and advantages of this utility model:

[0014] 1. Through the energy-saving mechanism, the polystyrene foam insulation board can be installed on the limit rod in the metal frame in an embedded manner. Subsequently, the metal panel and the metal frame are tightly connected by means of the mutual cooperation of the first bolt and the first threaded hole. The polystyrene foam insulation board has excellent thermal insulation performance and can effectively reduce the heat exchange between indoor and outdoor, thereby reducing the demand for heating and cooling. Moreover, when the service life is reached, the structure is easy to disassemble and replace the internal polystyrene foam insulation board, making the wall more green and energy-saving.

[0015] 2. Through the connection mechanism, when installing adjacent walls up and down, the two sets of walls can be quickly installed by aligning the plug-in slot at the lower end of the upper wall with the plug-in at the upper end of the lower wall and then tightening the second bolt. When installing adjacent walls on the left and right, the two sets of walls can be quickly installed by plugging the T-shaped plug-in on the right wall into the T-shaped slot on the left wall. The various components are prefabricated in the factory and only need to be assembled in sequence on site, which can greatly shorten the construction period and improve construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a front view of the utility model;

[0017] Figure 2 It is a cross-sectional view of the utility model;

[0018] Figure 3 It is a rear view of the utility model;

[0019] Figure 4 It is a schematic diagram of the three-dimensional structure of the energy-saving mechanism of the utility model;

[0020] Figure 5 This is one of the partial structural diagrams of the energy-saving mechanism of the utility model;

[0021] Figure 6 This is the second partial structural diagram of the energy-saving mechanism of the utility model;

[0022] Figure 7 This is one of the partial structural diagrams of the connecting mechanism of the present utility model;

[0023] Figure 8 This is the second partial structural diagram of the connecting mechanism of the present invention.

[0024] In the figure: 1. Energy-saving mechanism; 101. Metal frame; 102. T-slot; 103. First threaded hole; 104. Limit rod; 105. Polystyrene foam insulation board; 106. Metal panel; 107. Limit hole; 108. First bolt; 2. Connecting mechanism; 201. Connector; 202. Groove; 203. Second threaded hole; 204. Connecting slot; 205. Raised block; 206. Second bolt; 207. T-shaped plug-in. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] Example 1:

[0027] Please see the attached Figure 1 - Attachment Figure 6 , an assembled green energy-saving wall, including an energy-saving mechanism 1, the energy-saving mechanism 1 includes a metal frame 101, a T-slot 102 is opened on the right side of the metal frame 101, and first threaded holes 103 are opened on the four sides of the back thereof, the metal frame 101 is connected to a polystyrene foam insulation board 105 and a metal panel 106 through a limiting rod 104, and the metal panel 106 is threaded with a first bolt 108 on all four sides, one end of the limiting rod 104 is fixedly installed on the inside of the metal frame 101, the surfaces of the polystyrene foam insulation board 105 and the metal panel 106 both pass through the limiting hole 107, the limiting rod 104 is inserted into the inside of the limiting hole 107, the polystyrene foam insulation board 105 and the metal panel 106 are both embedded in the inside of the metal frame 101, the surface of the metal panel 106 is parallel to the surface of the metal frame 101, and the size of the first bolt 108 is adapted to the first threaded hole 103.

[0028] If the energy-saving wall is installed outdoors, a special adhesive can be evenly applied between the polystyrene foam insulation board 105 and the metal frame 101 to protect the polystyrene foam insulation board 105 and enhance the integrity of the energy-saving wall.

[0029] Specifically, the polystyrene foam insulation board 105 can be installed on the limit rod 104 in the metal frame 101 in an embedded manner, and then the metal panel 106 is fastened to the metal frame 101 through the cooperation of the first bolt 108 and the first threaded hole 103. The thermal insulation performance of the polystyrene foam insulation board 105 can reduce the heat exchange between indoor and outdoor, reduce the heating and cooling needs, and at the same time, it is easy to disassemble and replace the internal polystyrene foam insulation board 105 after reaching its service life, making the wall more green and energy-saving.

[0030] Example 2:

[0031] Please see the attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 , Attachment Figure 7 and attached Figure 8 , and on the basis of Example 1, it is further obtained that a connecting mechanism 2 is provided on the outside of the energy-saving mechanism 1, and the connecting mechanism 2 includes a connector 201, a connector slot 204 and a T-shaped plug-in 207. The connector 201 is fixedly installed on the upper end of the metal frame 101, and the connector slot 204 is fixedly installed on the lower end of the metal frame 101. A groove 202 is provided on one side of the connector 201, and a second threaded hole 203 is provided inside the groove 202. A protrusion 205 is fixedly connected to one side of the connector slot 204, and second bolts 206 are threadedly connected on both sides of the connector slot 204. The size of the second bolt 206 is adapted to the second threaded hole 203, and the size of the T-shaped plug-in 207 is adapted to the T-shaped slot 102.

[0032] A groove 202 is provided on the side of the plug connector 201 and is adapted to a protrusion 205 provided on the side of the plug slot 204 , so that the connection between the plug connector 201 and the plug slot 204 is more stable.

[0033] Specifically, when installing adjacent walls up and down, the two groups of walls can be quickly installed by aligning the plug-in slot 204 at the lower end of the upper wall with the plug-in component 201 at the upper end of the lower wall and then tightening the second bolt 206. When installing adjacent walls left and right, the two groups of walls can be quickly installed by plugging the T-shaped plug-in 207 on the right wall into the T-shaped slot 102 on the left wall. The various components are prefabricated in the factory and only need to be assembled in sequence on site, which can greatly shorten the construction period and improve construction efficiency.

[0034] Working principle of the utility model: The utility model is an assembled green energy-saving wall. First, the polystyrene foam insulation board 105 is installed on the limiting rod 104 in the metal frame 101 through the limiting hole 107, and then the first bolt 108 is tightened inside the first threaded hole 103 to fasten the metal panel 106 to the metal frame 101. When installing adjacent walls up and down, the plug-in slot 204 at the lower end of the upper wall is plugged into the plug-in piece 201 at the upper end of the lower wall, and then the second bolt 206 is tightened inside the second threaded hole 203 to achieve rapid installation of the two groups of walls. When installing adjacent walls on the left and right, the T-shaped plug-in 207 on the right wall is plugged into the T-shaped slot 102 on the left wall to achieve rapid installation of the two groups of walls.

[0035] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An assembled green energy-saving wall, comprising an energy-saving mechanism (1), characterized in that: The energy-saving mechanism (1) comprises a metal frame (101), a T-shaped slot (102) is provided on the right side of the metal frame (101), and first threaded holes (103) are provided on the four sides of the back side of the metal frame (101), the metal frame (101) is connected to a polystyrene foam insulation board (105) and a metal panel (106) via a limiting rod (104), and the four sides of the metal panel (106) are threadedly connected to first bolts (108).

2. The assembled green energy-saving wall according to claim 1, characterized in that: One end of the limiting rod (104) is fixedly mounted inside the metal frame (101); the surfaces of the polystyrene foam insulation board (105) and the metal panel (106) are penetrated by limiting holes (107); and the limiting rod (104) is inserted into the limiting hole (107).

3. The assembled green energy-saving wall according to claim 2, characterized in that: The polystyrene foam insulation board (105) and the metal panel (106) are both embedded in the metal frame (101), and the surface of the metal panel (106) is parallel to the surface of the metal frame (101).

4. The assembled green energy-saving wall according to claim 3, characterized in that: The size of the first bolt (108) is adapted to the first threaded hole (103).

5. The assembled green energy-saving wall according to claim 2, characterized in that: A connecting mechanism (2) is provided on the outside of the energy-saving mechanism (1), the connecting mechanism (2) comprising a plug-in connector (201), a plug-in slot (204), and a T-shaped plug-in connector (207), the plug-in connector (201) being fixedly mounted on the upper end of the metal frame (101), and the plug-in slot (204) being fixedly mounted on the lower end of the metal frame (101).

6. The assembled green energy-saving wall according to claim 5, characterized in that: A groove (202) is provided on one side of the plug connector (201), and a second threaded hole (203) is provided inside the groove (202).

7. The assembled green energy-saving wall according to claim 6, characterized in that: A protruding block (205) is fixedly connected to one side of the plug-in slot (204), and second bolts (206) are threadedly connected to both sides of the plug-in slot (204), and the size of the second bolts (206) is adapted to the second threaded hole (203).

8. The assembled green energy-saving wall according to claim 7, characterized in that: The size of the T-shaped plug-in (207) is adapted to the T-shaped slot (102).

Citation Information

Patent Citations

  • Assembling type green energy-saving wall

    CN219622031U