Ultralow-energy-consumption heat preservation structure
By introducing reflective layers and multi-layer insulation structures into the building walls, the temperature increase caused by external light absorption is solved, and more efficient insulation and connection stability is achieved, and building energy consumption is reduced.
Patent Information
- Application Number
- CN202422617742.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-29
AI Technical Summary
Existing building walls are prone to absorb light and heat under high temperature external environments, resulting in an increase in internal temperature and affecting the insulation effect and practicality.
An ultra-low energy-consuming insulation structure including a reflective layer is adopted to reflect external light and block heat. Combined with a multi-layer insulation layer and a connecting structure, the insulation ability and connection stability of the wall are improved.
Effectively reduce building energy consumption, improve wall insulation performance and connection stability, prevent heat transfer, and enhance the energy-saving and consumption-saving effect of building.
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Figure CN223281543U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of building insulation technology, and specifically to an ultra-low energy consumption insulation structure. Background Art
[0002] The functions of walls are load-bearing, partitioning, and enclosure. Walls are an indispensable part of every building. They can resist the invasion of wind, rain, and snow in nature, prevent solar radiation, noise interference, and indoor heat loss, and play the role of heat preservation, thermal insulation, and sound insulation. Building walls are the key to the thermal insulation capacity of buildings. Walls with good thermal insulation effect can greatly reduce the loss of temperature inside the building, thereby achieving the effect of energy saving and consumption reduction. How to improve the thermal insulation effect of building walls is a problem that needs to be solved in the existing technology.
[0003] According to an ultra-low energy consumption building wall insulation structure disclosed in Chinese patent publication No. CN221441806U, it includes a wall body, a protective layer is laid on one side of the inner wall of the wall body, a fireproof layer is fixedly provided on one side wall of the protective layer, a second insulation layer is fixedly provided on the side wall of the fireproof layer away from the protective layer, a reinforcement layer is fixedly provided on the side wall of the second insulation layer away from the fireproof layer, and a fixed layer is fixedly provided on the side wall of the reinforcement layer away from the second insulation layer. This solves the problem that most existing ultra-low energy consumption building wall insulation structures have poor insulation effect, resulting in difficulty in maintaining indoor temperature. At the same time, it solves the problem that most existing ultra-low energy consumption building walls have poor waterproof effect, which makes the bottom of the wall easily corroded by water when people mop the floor or sprinkle water.
[0004] However, this patent still has certain shortcomings in actual use. When the outside temperature is high and the temperature inside the building is low, the outside of the wall does not have a structure to reflect light, resulting in a large amount of natural light from the outside being absorbed, thereby generating heat, which has a certain impact on the temperature inside the building, resulting in its thermal insulation capacity and practicality having certain room for improvement. Utility Model Content
[0005] In response to the shortcomings of the existing technology, the present application provides an ultra-low energy consumption insulation structure, which has the advantages of further improving the insulation capacity of the wall and further reducing the energy consumption of the building, and solves the shortcomings of the existing building wall insulation structure that is prone to increase in internal temperature due to absorption of light during actual use.
[0006] To achieve the above objectives, the present application provides the following technical solutions: an ultra-low energy consumption thermal insulation structure, comprising two thermal insulation structure bodies, wherein a skirting block is fixedly installed on the front of each thermal insulation structure body, and a thermal insulation assembly is installed inside each thermal insulation structure body;
[0007] The insulation assembly includes a wall foundation layer, an anti-corrosion layer, a first insulation layer, a waterproof layer, a reflective layer, a second insulation layer, a heat-insulating layer, a fire-proof layer, a decorative layer and a waterproof coating; the anti-corrosion layer is fixed to one side of the wall foundation layer, the first insulation layer is fixed to the side of the anti-corrosion layer away from the wall foundation layer, the waterproof layer is fixed to the side of the first insulation layer away from the wall foundation layer, the reflective layer is fixed to the side of the waterproof layer away from the wall foundation layer, the second insulation layer is fixed to the other side of the wall foundation layer, the heat-insulating layer is fixed to the side of the second insulation layer away from the wall foundation layer, the fire-proof layer is fixed to the side of the heat-insulating layer away from the wall foundation layer, the decorative layer is fixed to the side of the fire-proof layer away from the wall foundation layer, and the waterproof coating is applied to the side of the decorative layer away from the wall foundation layer.
[0008] By adopting the above technical solution, the thermal insulation capacity of the wall can be further improved and the energy consumption of the building can be further reduced.
[0009] Furthermore, the first thermal insulation layer, the anti-corrosion layer, the wall foundation layer, the second thermal insulation layer and the heat insulation layer are combined into an internal structural layer, and a connecting cavity is opened between opposite sides of two adjacent internal structural layers.
[0010] By adopting the above technical solution, it is possible to facilitate the connection between two adjacent thermal insulation structure bodies.
[0011] Furthermore, two groups of fixing plates are fixedly installed on the inner side of the connecting cavity, connecting plates are fixed on opposite sides of the two groups of fixing plates, and symmetrical plates are fixed on opposite sides of the two groups of connecting plates.
[0012] By adopting the above technical solution, the stability of the connection can be improved.
[0013] Furthermore, an annular block is fixed on the right side of the skirting block, and an annular groove for the corresponding annular block to be inserted is provided on the left side of the skirting block.
[0014] By adopting the above technical solution, the two skirting blocks can be easily connected.
[0015] Furthermore, the annular block is a triangular frame, the outer side of the skirting block is trapezoidal, and one side of the top is a slope.
[0016] By adopting the above technical solution, the interior of the annular groove can be pre-filled with mortar, concrete or other connecting materials before the annular block is inserted, so that it has a larger contact surface and improves the stability of the skirting block connection.
[0017] Furthermore, the number of the fixing plates in each group is no less than two, the fixing plates are fixed to the outer sides of the corresponding wall foundation layers, and the two groups of symmetrical plates extend toward the side close to each other.
[0018] By adopting the above technical solution, the fixing plate can be stably installed.
[0019] Furthermore, the first insulation layer and the second insulation layer are both insulation boards, the anti-corrosion layer is an epoxy resin layer, the waterproof layer is a waterproof asphalt layer, and the waterproof coating is a polyurea waterproof coating.
[0020] By adopting the above technical solution, good thermal insulation ability, anti-corrosion effect and waterproof effect can be achieved.
[0021] Furthermore, the reflective layer is a polyurethane coated reflective plate, the fireproof layer is a refractory brick layer, and the heat insulating layer is an aerated concrete layer.
[0022] By adopting the above technical solution, external light can be reflected to prevent it from continuously shining on the outer surface of the wall for a long time, which can achieve good fire prevention and heat insulation effects and effectively prevent the transfer of indoor heat.
[0023] Compared with the existing technology, the technical solution of this application has the following beneficial effects:
[0024] This ultra-low energy consumption thermal insulation structure, through the coordinated use of the internal structure of the thermal insulation structure body and the skirting blocks, can further enhance the thermal insulation capacity of the wall and further reduce the energy consumption of the building. By reflecting and blocking external light, it is difficult for external heat to pass through the wall, thereby achieving the effect of energy saving and consumption reduction. It can also assist in reinforcing and positioning the connection between two adjacent building walls, so that the stability of the connection can be further enhanced, thereby effectively improving the practicality of the ultra-low energy consumption thermal insulation structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 This is a schematic diagram of the structure of this application;
[0026] Figure 2 For this application structure Figure 1 A top-view cross-sectional diagram of the main body of the medium thermal insulation structure;
[0027] Figure 3 For this application structure Figure 1 A schematic front cross-sectional view of the center skirting block connection structure;
[0028] Figure 4 For this application structure Figure 1 A three-dimensional schematic diagram of the center skirting block connection structure.
[0029] In the figure: 1. Insulation structure body; 201. Skirting block; 202. Annular block; 203. Annular groove; 301. Wall foundation layer; 302. Anti-corrosion layer; 303. First insulation layer; 304. Waterproof layer; 305. Reflective layer; 306. Second insulation layer; 307. Heat insulation layer; 308. Fireproof layer; 309. Decorative layer; 310. Waterproof coating; 311. Connecting cavity; 312. Fixing plate; 313. Connecting plate; 314. Symmetrical plate. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application.
[0031] See also Figures 1 to 4 The present application provides a technical solution: an ultra-low energy consumption insulation structure, comprising two insulation structure main bodies 1, a skirting block 201 fixedly installed on the front of the insulation structure main body 1, and an insulation component installed inside the insulation structure main body 1; through the coordinated use of the internal structure of the insulation structure main body 1 and the skirting block 201, the insulation capacity of the wall can be further improved and the energy consumption of the building can be further reduced. By reflecting and blocking external light, it is difficult for external heat to pass through the wall, thereby achieving the effect of energy saving and consumption reduction, and it can also assist in reinforcing and positioning the connection between two adjacent building walls, so that the stability of the connection can be further improved, thereby effectively improving the practicality of the ultra-low energy consumption insulation structure.
[0032] It should be noted that if Figure 3 and Figure 4 As shown, an annular block 202 is fixed to the right side of the skirting block 201, and an annular groove 203 for the corresponding annular block 202 to be inserted is provided on the left side of the skirting block 201. The annular block 202 is a triangular frame, so that the interior of the annular groove 203 can be pre-filled with mortar or concrete and other connecting materials before the annular block 202 is inserted, so that it has a larger contact surface, which improves the stability of the connection of the skirting block 201. The outer side of the skirting block 201 is trapezoidal, and the top side is an inclined surface, so that the skirting block 201 can provide certain protection for the bottom of the insulation structure body 1 to prevent water on the ground from entering its interior.
[0033] In this embodiment, the thermal insulation component is a structure used to save energy and reduce consumption as well as to achieve a good thermal insulation effect.
[0034] like Figure 1 and Figure 2As shown, the insulation assembly includes a wall foundation layer 301, an anti-corrosion layer 302, a first insulation layer 303, a waterproof layer 304, a reflective layer 305, a second insulation layer 306, a heat-insulating layer 307, a fire-proof layer 308, a decorative layer 309 and a waterproof coating 310; the anti-corrosion layer 302 is fixed to one side of the wall foundation layer 301, the first insulation layer 303 is fixed to the side of the anti-corrosion layer 302 away from the wall foundation layer 301, the waterproof layer 304 is fixed to the side of the first insulation layer 303 away from the wall foundation layer 301, and the reflective layer 305 is fixed to the side of the second insulation layer 306, the heat-insulating layer 307, the fire-proof layer 308, the decorative layer 309 and the waterproof coating 310. The light layer 305 is fixed to the side of the waterproof layer 304 away from the wall foundation layer 301, the second thermal insulation layer 306 is fixed to the other side of the wall foundation layer 301, the thermal insulation layer 307 is fixed to the side of the second thermal insulation layer 306 away from the wall foundation layer 301, the fireproof layer 308 is fixed to the side of the thermal insulation layer 307 away from the wall foundation layer 301, the decorative layer 309 is fixed to the side of the fireproof layer 308 away from the wall foundation layer 301, and the waterproof coating 310 is applied to the side of the decorative layer 309 away from the wall foundation layer 301.
[0035] It should be noted that the first insulation layer 303, the anti-corrosion layer 302, the wall foundation layer 301, the second insulation layer 306 and the heat-insulating layer 307 are combined into an internal structural layer. A connecting cavity 311 is opened between the opposite sides of two adjacent internal structural layers. Two groups of fixing plates 312 are fixedly installed on the inner side of the connecting cavity 311. The opposite sides of the two groups of fixing plates 312 are fixed with connecting plates 313. The opposite sides of the two groups of connecting plates 313 are fixed with symmetrical plates 314. The number of each group of fixing plates 312 is not less than two, and the fixing plates 312 are fixed to the inner side of the connecting cavity 311. 12 is fixed to the outer side of the corresponding wall foundation layer 301, so that the fixing plate 312 can be stably installed, and the two groups of symmetrical plates 314 extend toward the side close to each other, so that the two symmetrical plates 314 can form a ring shape, thereby increasing the overall contact area after the interior of the connecting cavity 311 is filled with mortar or concrete or other mixtures, and utilizing the connection characteristics of the ring structure to improve the overall connection stability, wherein the above structure is combined with the insulation component to form the insulation structure body 1, which can achieve good insulation effect.
[0036] In addition, the wall foundation layer 301 is a reinforced concrete layer, and can also be other central supporting structures used for wall construction. The first insulation layer 303 and the second insulation layer 306 are both insulation boards, which can be rock wool insulation boards, polyurethane insulation boards and other boards with insulation effects, which can have good insulation capabilities. The anti-corrosion layer 302 is an epoxy resin layer, which can have a filling and anti-corrosion effect.
[0037] At the same time, the waterproof layer 304 is a waterproof asphalt layer, and the waterproof coating 310 is a polyurea waterproof coating, which can achieve a good waterproof effect. The reflective layer 305 is a polyurethane coated reflector, which can reflect external light to prevent long-term continuous exposure to the outer surface of the wall. The fireproof layer 308 is a refractory brick layer, and the thermal insulation layer 307 is an aerated concrete layer. Aerated concrete has the advantages of light bulk density, high thermal insulation performance, good sound absorption effect, certain strength and workability, etc., which can achieve a good fireproof and heat-insulating effect, and can also effectively prevent the transfer of indoor heat, and play a role in isolating and blocking indoor and outdoor, so that the energy consumption of the building can be effectively reduced. The surface of the decorative layer 309 can be coated with various types of coatings to achieve a decorative effect on the interior, and can provide interior decoration for wall panels with patterns on the surface.
[0038] The working principle of the above embodiment is:
[0039] During use, part of the external light will be reflected by the reflective layer 305, and under the action of the first thermal insulation layer 303, it can effectively block the external heat from entering the interior of the thermal insulation structure body 1, thereby playing a good role in separating the outside and the interior. The cooperation between the waterproof layer 304 and the anti-corrosion layer 302 can prevent the erosion of rainwater and protect the stability of the wall foundation layer 301. Under the cooperation between the fireproof layer 308, the thermal insulation layer 307 and the second thermal insulation layer 306, it can block the indoor heat transfer while also playing a good fireproof and heat-insulating effect, increasing the durability and safety performance of the thermal insulation structure body 1. Under the action of the symmetrical pieces 314 in the connecting cavity 311, when the connection between the two adjacent thermal insulation structure bodies 1 is sealed after the installation is completed, whether it is pouring concrete or mortar, after it solidifies, the symmetrical pieces 314 on both sides and the filler between the opposite side can form a circular connection structure, and can also increase the contact area of the connection, thereby improving the stability and facilitating the long-term maintenance of efficient thermal insulation capabilities.
[0040] Compared with the existing technology, this ultra-low energy consumption insulation structure can further improve the insulation capacity of the wall and further reduce the energy consumption of the building through the coordinated use of the internal structure of the insulation structure main body 1 and the skirting block 201. By reflecting and blocking external light, it is difficult for external heat to pass through the wall, thereby achieving the effect of energy saving and consumption reduction. It can also assist in reinforcing and positioning the connection between two adjacent building walls, so that the stability of the connection can be further improved, thereby effectively improving the practicality of the ultra-low energy consumption insulation structure and solving the shortcoming of the existing building wall insulation structure that the internal temperature rises easily due to absorbing light during actual use.
Claims
1. An ultra-low energy consumption thermal insulation structure, comprising two thermal insulation structure bodies (1), characterized in that: A skirting block (201) is fixedly mounted on the front of the thermal insulation structure main body (1), and a thermal insulation component is mounted inside the thermal insulation structure main body (1); The thermal insulation component comprises a wall foundation layer (301), an anticorrosion layer (302), a first thermal insulation layer (303), a waterproof layer (304), a reflective layer (305), a second thermal insulation layer (306), a heat-insulating layer (307), a fireproof layer (308), a decorative layer (309) and a waterproof coating (310); the anticorrosion layer (302) is fixed to one side of the wall foundation layer (301), the first thermal insulation layer (303) is fixed to the side of the anticorrosion layer (302) away from the wall foundation layer (301), the waterproof layer (304) is fixed to the side of the first thermal insulation layer (303) away from the wall foundation layer (301), the reflective layer (305) is fixed to the second thermal insulation layer (306), a heat-insulating layer (307), a fireproof layer (308), a decorative layer (309) and a waterproof coating (310); the anticorrosion layer (302) is fixed to the side of the anticorrosion layer (302) away from the wall foundation layer (301), the waterproof layer (304) is fixed to the side of the first thermal insulation layer (303) away from the wall foundation layer (301), the fireproof layer (308) is fixed to the second thermal insulation layer (306), the heat-insulating layer (307), the fireproof layer (308), the decorative layer (309) and the waterproof coating (310); The light layer (305) is fixed to a side of the waterproof layer (304) away from the wall foundation layer (301), the second thermal insulation layer (306) is fixed to the other side of the wall foundation layer (301), the thermal insulation layer (307) is fixed to a side of the second thermal insulation layer (306) away from the wall foundation layer (301), the fireproof layer (308) is fixed to a side of the thermal insulation layer (307) away from the wall foundation layer (301), the decorative layer (309) is fixed to a side of the fireproof layer (308) away from the wall foundation layer (301), and the waterproof coating (310) is applied to a side of the decorative layer (309) away from the wall foundation layer (301).
2. The ultra-low energy consumption thermal insulation structure according to claim 1, characterized in that: The first thermal insulation layer (303), the anti-corrosion layer (302), the wall foundation layer (301), the second thermal insulation layer (306), and the heat insulation layer (307) are combined into an internal structural layer, and a connecting cavity (311) is provided between opposite sides of two adjacent internal structural layers.
3. The ultra-low energy consumption thermal insulation structure according to claim 2, characterized in that: Two groups of fixing plates (312) are fixedly installed on the inner side of the connecting cavity (311), connecting plates (313) are fixed on opposite sides of the two groups of fixing plates (312), and symmetrical plates (314) are fixed on opposite sides of the two groups of connecting plates (313).
4. The ultra-low energy consumption thermal insulation structure according to claim 1, characterized in that: An annular block (202) is fixed on the right side of the kicking block (201), and an annular groove (203) for plugging the corresponding annular block (202) is provided on the left side of the kicking block (201).
5. The ultra-low energy consumption thermal insulation structure according to claim 4, characterized in that: The annular block (202) is a triangular frame, the outer side of the skirting block (201) is trapezoidal, and one side of the top is an inclined surface.
6. The ultra-low energy consumption thermal insulation structure according to claim 3, characterized in that: The number of each group of fixing plates (312) is no less than two, and the fixing plates (312) are fixed to the outer sides of the corresponding wall foundation layers (301), and the two groups of symmetrical plates (314) extend toward the side close to each other.
7. The ultra-low energy consumption thermal insulation structure according to claim 1, characterized in that: The first thermal insulation layer (303) and the second thermal insulation layer (306) are both thermal insulation boards, the anti-corrosion layer (302) is an epoxy resin layer, the waterproof layer (304) is a waterproof asphalt layer, and the waterproof coating (310) is a polyurea waterproof coating.
8. The ultra-low energy consumption thermal insulation structure according to claim 1, characterized in that: The reflective layer (305) is a polyurethane-coated reflective plate, the fireproof layer (308) is a refractory brick layer, and the heat-insulating layer (307) is an aerated concrete layer.
Citation Information
Patent Citations
Ultralow-energy-consumption building wall heat preservation structure
CN221441806U