CN204676765U - The heat preservation module that structural strength is high - Google Patents
The heat preservation module that structural strength is high Download PDFInfo
- Publication number
- CN204676765U CN204676765U CN201520404527.0U CN201520404527U CN204676765U CN 204676765 U CN204676765 U CN 204676765U CN 201520404527 U CN201520404527 U CN 201520404527U CN 204676765 U CN204676765 U CN 204676765U
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- China
- Prior art keywords
- heat preservation
- preservation module
- structural strength
- connector
- insulation layer
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Abstract
The utility model discloses the heat preservation module that a kind of structural strength is high, it comprises the connector of two insulation layers be arranged in parallel, multiple connection two insulation layer; Connecting member forming described in each has at least three contiguous blocks, and each insulation layer is at least connected with a contiguous block and at least surrounds a hole between three contiguous blocks and two insulation layers; By said structure, it is staggered that the utility model heat preservation module can allow concrete be formed after pouring concrete is come in, not only side and concrete combine connector up and down, hole simultaneously between contiguous block with insulation layer is also combined with concrete, allow between connector and concrete and connect more firmly, whole wall body structure intensity is higher.
Description
Technical field
The utility model relates to a kind of for building unit field, refers in particular to the heat preservation module that a kind of structural strength is high.
Background technology
In order to improve the energy-saving heat preserving effect of building, extend building unit application life, improve production and the efficiency of construction of building, have developed multiple before and after the applicant successively take EPS as the constructional materials of raw material, comprising the complex heat-preservation module of the diverse location for buildings such as interior wall, exterior wall, ground, roofings; Wherein a kind of in order to obtain good heat insulation effect, the structural strength improving body of wall and constructability, normally two-layer EPS heat preservation module plastic fastening is connected, fluid concrete between two-layer EPS heat preservation module so again, thus be concrete structure in the middle of being formed, and both sides are the energy-saving heat-insulating composite body of wall of EPS heat preservation module.
Refer to Fig. 1, Fig. 2, existing heat preservation module includes the connector 20 of two insulation layers be arranged in parallel 10 and multiple connection two insulation layer 10, then toward concreting in two insulation layers 10; Existing connector 20 is mostly yi word pattern, play the concrete effect between locking insulation layer 10, this insulation layer 10 and connector 20 form the pore space structure of horizontal and vertical, after fluid concrete, connector 20 up and down four sides and concrete combines, but this integrated structure makes the structural strength of body of wall limited.
In view of this, the design people for above-mentioned heat preservation module structure design not being attained perfect caused many disappearances and inconvenience, and deeply conceives, and active research improvement has a fling at and development and Design goes out this case.
Utility model content
The purpose of this utility model is the heat preservation module providing a kind of structural strength high, to improve the structural strength of whole wall body module.
In order to reach above-mentioned purpose, solution of the present utility model is:
The heat preservation module that structural strength is high, it comprises the connector of two insulation layers be arranged in parallel, multiple connection two insulation layer; Connecting member forming described in each has at least three contiguous blocks, and each insulation layer is at least connected with a contiguous block and at least surrounds a hole between three contiguous blocks and two insulation layers.
Described connecting member forming has four contiguous blocks, surrounds two circular cavities between four contiguous blocks and two insulation layers.
Described connector is X-type.
Offering one at described connector upper surface can the steel bar groove of accommodating reinforcement bar.
Described insulation layer and connector integrated injection molding.
The interval, side of described insulation layer arranges multiple vertical slot, and each contiguous block has can be inserted in vertical slot and the grafting block slided on vertical slot.
Each contiguous block has the parallel surface of one and insulation layer parallel contact; Described grafting block is arranged on parallel surface.
Two-layer connector is set in insulation layer described in two.
Described two-layer connector shifts to install.
After adopting said structure, the connecting member forming of the heat preservation module that the utility model structural strength is high has three contiguous blocks, and each insulation layer is at least connected with a contiguous block and at least surrounds a hole between three contiguous blocks and two insulation layers; Concrete can be allowed to be formed after pouring concrete is come in staggered, not only side and concrete combine connector up and down, hole simultaneously between contiguous block with insulation layer is also combined with concrete, and allow between connector and concrete and connect more firmly, whole wall body structure intensity is higher.
Accompanying drawing explanation
Fig. 1 is the structural representation of existing heat preservation module;
Fig. 2 is the schematic top plan view of existing heat preservation module;
Fig. 3 is the structural representation of the utility model heat preservation module;
Fig. 4 is the schematic top plan view of the utility model heat preservation module;
Fig. 5 is the structural representation of the connector of the utility model heat preservation module.
Symbol description
Insulation layer 1 connector 2 vertical slot 11
Contiguous block 21 grafting block 22 hole 23
Parallel surface 24 steel bar groove 25.
Detailed description of the invention
In order to explain the technical solution of the utility model further, below by specific embodiment, the utility model is elaborated.
Refer to Fig. 3, Fig. 4, the utility model discloses the high heat preservation module of a kind of structural strength, and it comprises the connector 2 of two insulation layers be arranged in parallel 1, multiple connection two insulation layer 1; It is Y type that connector 2 described in each forms at least three contiguous block 21(), each insulation layer 1 is at least connected with a contiguous block 21 and at least surrounds a hole 23 between three contiguous blocks 21 and two insulation layers 1.
The connector 2 of the heat preservation module that the utility model structural strength is high forms three contiguous blocks 21, and each insulation layer 1 is at least connected with a contiguous block 21 and at least surrounds a hole 23 between three contiguous blocks 21 and two insulation layers 1; Concrete can be allowed to be formed after pouring concrete is come in staggered, not only side and concrete combine connector 2 up and down, hole 23 simultaneously between contiguous block 21 with insulation layer 1 is also combined with concrete, allow between connector 2 and concrete and connect more firmly, whole wall body structure intensity is higher.
Refer to Fig. 5, the described connector 2 of the heat preservation module that the utility model structural strength is high forms between four contiguous blocks, 21, four contiguous blocks 21 and two insulation layers 1 and surrounds two circular cavities 23; And described connector 2 is in X-type; When fluid concrete, not only side and concrete combine connector 2 up and down, two holes 23 simultaneously between contiguous block 2 with insulation layer 1 are also combined with concrete, concrete is allowed to be formed staggered, make to connect between connector 2 and concrete more firm, whole wall body structure intensity is higher, and the utility model heat preservation module improves connectivity robustness between connector 2 and concrete by increasing hole 23 with increase and concrete joint surface, and then increases the intensity of wall body structure.
The high heat preservation module of the utility model structural strength offers one at described connector 2 upper surface can the steel bar groove 25 of accommodating reinforcement bar; Reinforcement bar can be added before fluid concrete, improve body of wall overall construction intensity.
The described insulation layer 1 of the heat preservation module that the utility model structural strength is high and connector 2 can integrated injection moldings, need distinguish assembly and connection part 2 and consume the plenty of time, increase work efficiency when avoiding the later stage to use.
The described insulation layer 1 of the heat preservation module that the utility model structural strength is high can separate with connector 2 to be produced, and the later stage is linked together by other connected modes; Can needing varying strength that quantity and the arrangement of connector 2 are set according to body of wall, namely by arranging several connector 2 to increase the structural strength of heat preservation module, in concrete use, reaching flexible Application more.The interval, side of described insulation layer 1 arranges multiple vertical slot 11, and each contiguous block 21 has can be inserted in vertical slot 11 and the grafting block 22 slided on vertical slot 11, and each contiguous block 21 has the parallel surface 24 of one and insulation layer 1 parallel contact; Described grafting block 22 is arranged on parallel surface 24, makes contiguous block 21 and insulation layer 1 junction more firm.
The heat preservation module that the utility model structural strength is high two-layer connector 2 is set in insulation layer described in two 1, strengthen heat preservation module structural strength; And described two-layer connector 2 shifts to install; Allow concrete not only be formed staggered in the horizontal direction and wildly in the vertical direction to be formed staggered, make to connect between connector 2 and concrete more firm, whole wall body structure intensity is higher.
Above-described embodiment and accompanying drawing non-limiting product form of the present utility model and style, any person of an ordinary skill in the technical field, to its suitable change done or modification, all should be considered as not departing from patent category of the present utility model.
Claims (9)
1. the heat preservation module that structural strength is high, is characterized in that: the connector comprising two insulation layers be arranged in parallel, multiple connection two insulation layer; Connecting member forming described in each has at least three contiguous blocks, and each insulation layer is at least connected with a contiguous block and at least surrounds a hole between three contiguous blocks and two insulation layers.
2. the heat preservation module that structural strength is high as claimed in claim 1, is characterized in that: described connecting member forming has four contiguous blocks, surrounds two circular cavities between four contiguous blocks and two insulation layers.
3. the heat preservation module that structural strength is high as claimed in claim 2, is characterized in that: described connector is X-type.
4. the heat preservation module that structural strength is high as claimed in claim 1, is characterized in that: offering one at described connector upper surface can the steel bar groove of accommodating reinforcement bar.
5. the heat preservation module that structural strength is high as claimed in claim 1, is characterized in that: described insulation layer and connector integrated injection molding.
6. the heat preservation module that structural strength is high as claimed in claim 1, is characterized in that: the interval, side of described insulation layer arranges multiple vertical slot, and each contiguous block has can be inserted in vertical slot and the grafting block slided on vertical slot.
7. the heat preservation module that structural strength is high as claimed in claim 6, is characterized in that: each contiguous block has the parallel surface of one and insulation layer parallel contact; Described grafting block is arranged on parallel surface.
8. the heat preservation module that structural strength is high as claimed in claim 1, is characterized in that: in insulation layer described in two, arrange two-layer connector.
9. the heat preservation module that structural strength is high as claimed in claim 8, is characterized in that: described two-layer connector shifts to install.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520404527.0U CN204676765U (en) | 2015-06-12 | 2015-06-12 | The heat preservation module that structural strength is high |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520404527.0U CN204676765U (en) | 2015-06-12 | 2015-06-12 | The heat preservation module that structural strength is high |
Publications (1)
Publication Number | Publication Date |
---|---|
CN204676765U true CN204676765U (en) | 2015-09-30 |
Family
ID=54176470
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201520404527.0U Expired - Fee Related CN204676765U (en) | 2015-06-12 | 2015-06-12 | The heat preservation module that structural strength is high |
Country Status (1)
Country | Link |
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CN (1) | CN204676765U (en) |
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2015
- 2015-06-12 CN CN201520404527.0U patent/CN204676765U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150930 Termination date: 20210612 |