CN219153870U - Environment-friendly composite heat-insulating layer - Google Patents
Environment-friendly composite heat-insulating layer Download PDFInfo
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- CN219153870U CN219153870U CN202221542357.9U CN202221542357U CN219153870U CN 219153870 U CN219153870 U CN 219153870U CN 202221542357 U CN202221542357 U CN 202221542357U CN 219153870 U CN219153870 U CN 219153870U
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Abstract
The utility model relates to an environment-friendly composite heat preservation layer, which belongs to the technical field of heat preservation materials and comprises a first base layer, wherein the bottom surface of the first base layer is connected with a reinforcing layer through thermosetting epoxy resin, the top surface of the first base layer is connected with a waterproof layer through thermosetting epoxy resin, the bottom surface of the reinforcing layer is connected with a second base layer through thermosetting epoxy resin, and the bottom surface of the second base layer is connected with a heat preservation and heat insulation layer through thermosetting epoxy resin. The waterproof layer of the modified asphalt material is arranged on the surface of the first base layer, so that the problem that the heat insulation material is corroded by rainwater when being used outdoors is solved, the waterproof effect of the heat insulation material when being used outdoors is achieved, the problem that the tensile strength and the tensile strength of the heat insulation material are low is solved, and the effect of improving the structural strength and the tensile strength of the heat insulation material is achieved by arranging the reinforcing layer of the glass fiber material between the first base layer and the second base layer.
Description
Technical Field
The utility model relates to the technical field of heat preservation materials, in particular to an environment-friendly composite heat preservation layer.
Background
The heat-insulating material is an environment-friendly material with the heat coefficient smaller than or equal to 0.12, the heat-insulating material is fast in development, and good heat-insulating technology and materials are adopted in industry and buildings, so that the effect of twice the effort can be achieved. Every ton of mineral wool heat insulation products are used in the building, one ton of petroleum can be saved in one year, the heat insulation materials can collect redundant heat, the heat insulation materials are released timely and stably, gradient change is small, loss is effectively reduced, and heat insulation in winter can play a role in balancing.
The traditional heat insulation material is usually used indoors, the material is easy to be soaked by rainwater to corrode when used outdoors, and the structure of the heat insulation material is thinner, so that the structural strength and tensile pull resistance of the heat insulation material are lower when the heat insulation material is used, and the service life of the heat insulation material is shorter.
Disclosure of Invention
The utility model aims to provide an environment-friendly composite heat-insulating layer so as to solve the problems in the background technology.
The technical scheme of the utility model is as follows: the utility model provides an environmental protection combined type heat preservation, includes first basic unit, the bottom surface of first basic unit is connected with the enhancement layer through thermosetting epoxy, just the top surface of first basic unit is connected with the waterproof layer through thermosetting epoxy, the bottom surface of enhancement layer is connected with the second basic unit through thermosetting epoxy, the bottom surface of second basic unit is connected with heat preservation insulating layer through thermosetting epoxy.
Further, the first base layer and the second base layer are made of polyester fiber materials, and the first base layer and the second base layer are used for guaranteeing crease resistance and shape retention of the materials.
Further, the reinforcing layer is made of glass fiber material, the reinforcing layer is made of net structure, and the reinforcing layer is used for improving the tensile property of the material.
Further, the waterproof layer is made of modified asphalt materials, and the waterproof layer is used for improving the waterproof performance of the materials.
Further, the heat preservation and insulation layer is made of ceramic fiber materials, and the heat preservation and insulation layer is used for improving heat preservation and insulation performance and flame retardance of the materials.
Further, the top surface of the first base layer and the bottom surface of the second base layer are provided with protruding blocks at equal intervals, grooves which are matched with the protruding blocks are formed in the bottom surface of the waterproof layer and the top surface of the heat insulation layer at equal intervals, and the protruding blocks are of a conical block structure.
Compared with the prior art, the environment-friendly composite heat-insulating layer provided by the utility model has the following improvements and advantages:
firstly, the waterproof layer of the modified asphalt material is arranged on the surface of the first base layer, so that the problem that the heat insulation material is corroded by rainwater when being used outdoors is solved, and the waterproof effect of the heat insulation material when being used outdoors is achieved;
secondly, the reinforcing layer made of the glass fiber material is arranged between the first base layer and the second base layer, so that the problem of lower tensile property of the heat insulation material is solved, and the effects of improving the structural strength and the tensile property of the heat insulation material are achieved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic top view of the reinforcement layer of the present utility model;
FIG. 3 is an enlarged view of the utility model at A of FIG. 1;
fig. 4 is a schematic perspective view of a first base layer according to the present utility model.
Reference numerals illustrate:
1. a first base layer; 2. a reinforcing layer; 3. a waterproof layer; 4. a second base layer; 5. a heat preservation and insulation layer; 6. a bump; 7. a groove.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
According to the utility model, as shown in fig. 1-4, the environment-friendly composite heat insulation layer is provided by improvement, the environment-friendly composite heat insulation layer comprises a first base layer 1, the bottom surface of the first base layer 1 is connected with a reinforcing layer 2 through thermosetting epoxy resin, the top surface of the first base layer 1 is connected with a waterproof layer 3 through thermosetting epoxy resin, the bottom surface of the reinforcing layer 2 is connected with a second base layer 4 through thermosetting epoxy resin, the bottom surface of the second base layer 4 is connected with a heat insulation layer 5 through thermosetting epoxy resin, the first base layer 1 and the second base layer 4 serve as a main body structure of a heat insulation material, the reinforcing layer 2 is additionally arranged between the first base layer 1 and the second base layer 4, the heat insulation material cannot break and break when being pulled, the shearing resistance of the heat insulation material is improved, the waterproof layer 3 is additionally arranged on the top surface of the first base layer 1, the heat insulation material has waterproof performance when being used outdoors, the heat insulation material is prevented from being soaked in rainwater for a long time, the heat insulation layer 5 is additionally arranged on the bottom surface of the second base layer 4, the heat insulation material is covered on the surface of an object, the heat insulation material has heat insulation and heat insulation effects are better than heat insulation agents and heat insulation agents are provided.
The first base layer 1 and the second base layer 4 are made of polyester fiber materials, and the first base layer 1 and the second base layer 4 are used for guaranteeing the crease resistance and shape retention of the materials, so that the heat insulation materials have good crease resistance and shape retention, and the heat insulation materials are convenient to fold and deform when being wound.
The reinforcing layer 2 is made of glass fiber materials, the reinforcing layer 2 is made of a net-shaped structure, and the reinforcing layer 2 is used for improving the tensile strength of the materials, so that the thermal insulation materials cannot break and break when being pulled, and the shearing resistance of the thermal insulation materials is improved.
The waterproof layer 3 is made of modified asphalt material, and the waterproof layer 3 is used for improving the waterproof property of the material, so that the heat insulation material has waterproof property when being used outdoors, and the phenomenon that the heat insulation material is corroded after being soaked by rainwater for a long time is avoided.
The heat insulation layer 5 is made of ceramic fiber materials, and the heat insulation layer 5 is used for improving heat insulation and flame retardance of the materials, and has heat insulation and heat preservation effects when the heat insulation materials are covered on the surface of an object.
The equal interval of the top surface of first basic unit 1 and the bottom surface of second basic unit 4 is provided with lug 6, and the equal interval of the bottom surface of waterproof layer 3 and the top surface of heat preservation insulating layer 5 has seted up recess 7 that agrees with lug 6, and lug 6 sets up to the toper piece structure, the top surface of first basic unit 1 agrees with the lug 6 of the bottom surface toper structure of second basic unit 4 and blocks in the recess 7 of waterproof layer 3 bottom surface and heat preservation insulating layer 5 top surface, improved the joint strength between first basic unit 1 and second basic unit 4 and waterproof layer 3 and heat preservation insulating layer 5.
Working principle: firstly, the first base layer 1 and the second base layer 4 are used as a main structure of a heat insulating material, a polyester fiber material is adopted, so that the heat insulating material has good crease resistance and shape retention, the heat insulating material is convenient to fold and deform when being rolled, a reinforcing layer 2 of a glass fiber material is additionally arranged between the first base layer 1 and the second base layer 4, the reinforcing layer 2 of the glass fiber material is of a net structure, the heat insulating material cannot be broken or damaged when being pulled, the shearing resistance of the heat insulating material is improved, a waterproof layer 3 of a modified asphalt material is additionally arranged on the top surface of the first base layer 1, the heat insulating material has waterproof performance when being used outdoors, the heat insulating material is prevented from being corroded due to rain soaking for a long time, and a heat insulating layer 5 of a ceramic fiber material is additionally arranged on the bottom surface of the second base layer 4, so that the heat insulating material is covered on the surface of an object, and the heat insulating material has heat insulating and heat insulating effects, wherein thermosetting epoxy resin is used as an adhesive, and has good heat resistance and ageing resistance;
secondly, the lug 6 of the conical structure of the top surface of the first base layer 1 and the bottom surface of the second base layer 4 are fit and clamped in the groove 7 of the bottom surface of the waterproof layer 3 and the top surface of the heat insulation layer 5, so that the connection strength between the first base layer 1 and the second base layer 4 and the waterproof layer 3 and the heat insulation layer 5 is improved, layering phenomenon of the heat insulation material when the heat insulation material is subjected to oblique extrusion is avoided, and the connection compactness of the composite heat insulation material is improved.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. An environment-friendly composite heat preservation layer is characterized in that: including first basic unit (1), the bottom surface of first basic unit (1) is connected with enhancement layer (2) through thermosetting epoxy, just the top surface of first basic unit (1) is connected with waterproof layer (3) through thermosetting epoxy, the bottom surface of enhancement layer (2) is connected with second basic unit (4) through thermosetting epoxy, the bottom surface of second basic unit (4) is connected with heat preservation insulating layer (5) through thermosetting epoxy.
2. The environmental protection composite insulation layer according to claim 1, wherein: the first base layer (1) and the second base layer (4) are made of polyester fiber materials, and the first base layer (1) and the second base layer (4) are used for guaranteeing crease resistance and shape retention of the materials.
3. The environmental protection composite insulation layer according to claim 1, wherein: the reinforcing layer (2) is made of glass fiber material, the reinforcing layer (2) is made of net structure, and the reinforcing layer (2) is used for improving the tensile property of the material.
4. The environmental protection composite insulation layer according to claim 1, wherein: the waterproof layer (3) is made of modified asphalt material, and the waterproof layer (3) is used for improving the waterproof property of the material.
5. The environmental protection composite insulation layer according to claim 1, wherein: the heat preservation and insulation layer (5) is made of ceramic fiber materials, and the heat preservation and insulation layer (5) is used for improving heat preservation and insulation performance and flame retardance of the materials.
6. The environmental protection composite insulation layer according to claim 1, wherein: the top surface of first basic unit (1) with the equal interval of bottom surface of second basic unit (4) is provided with lug (6), just the bottom surface of waterproof layer (3) with the equal interval of top surface of heat preservation insulating layer (5) seted up with recess (7) that lug (6) agree with, and lug (6) set up to the toper piece structure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221542357.9U CN219153870U (en) | 2022-06-20 | 2022-06-20 | Environment-friendly composite heat-insulating layer |
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CN202221542357.9U CN219153870U (en) | 2022-06-20 | 2022-06-20 | Environment-friendly composite heat-insulating layer |
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CN219153870U true CN219153870U (en) | 2023-06-09 |
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CN202221542357.9U Active CN219153870U (en) | 2022-06-20 | 2022-06-20 | Environment-friendly composite heat-insulating layer |
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- 2022-06-20 CN CN202221542357.9U patent/CN219153870U/en active Active
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