CN208309899U - No heat bridge lattice combines vacuum heat-preserving building block - Google Patents
No heat bridge lattice combines vacuum heat-preserving building block Download PDFInfo
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- CN208309899U CN208309899U CN201820796022.7U CN201820796022U CN208309899U CN 208309899 U CN208309899 U CN 208309899U CN 201820796022 U CN201820796022 U CN 201820796022U CN 208309899 U CN208309899 U CN 208309899U
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Abstract
The utility model relates to a kind of no heat bridge lattices to combine vacuum heat-preserving building block, belong to technical field of buildings.No heat bridge lattice combination vacuum heat-preserving building block is divided into main building block and auxiliary building block, and main building block includes cross main piece and I-shaped main piece two kinds, and auxiliary building block is auxiliary piece one of concave character type and auxiliary piece two of concave character type.Building block is multi-layer cavity, insulating layer exists jointly with cavity, overlap joint between building block and building block forms lattice system, contain stem cavity and vacuum screened bag in building block, stem reserves the stress transmission force property that cavity improves building block, enhances the globality of wall, ensure that the anti-seismic performance of wall, heat preservation filling gelating material plays the role of insulation, sound insulation, compact, improves exterior-wall heat insulation, energy-efficient effect significantly.
Description
Technical field
The utility model belongs to technical field of buildings, builds more particularly to a kind of no heat bridge lattice combination vacuum heat-preserving
Block.
Background technique
The production and application of building block have close relationship with resource, the energy, ecological environment and residential areas.China's Novel wall
Development, product restructuring, the promotion of equipment technology level, the raising of properties of product and quality, construction application skill of body material
Art it is perfect, the development of China's building materials and building energy conservation cause all will be further pushed, and to China's strategy of sustainable development
Implement to generate and energetically act on.A kind of construction style of the building block building as suitable China's national situation, superiority are mainly manifested in:
Anti-seismic performance is more prominent;Construction technology is convenient, speed is fast;Efficiency, saving material are built for mitigating building self weight, improving
Material, reduction freight volume and reduction project cost all play an important role, this undoubtedly has wide prospect.But in masonry structure,
The thermal property of building block is always problem maximum in building energy conservation, single blockwork building block non-heat preservation position, build
There are heat bridges at the positions such as the mortar joint and stem built, keep heat insulation effect undesirable, energy-saving effect does not also protrude.Therefore, partition is single
The heat bridge of one heat insulation block material improves the exterior-wall heat insulation performance of building block, to the heat preservation energy-saving and green ecological environment of building
It is of great significance.
Utility model content
The utility model provides a kind of no heat bridge lattice combination vacuum heat-preserving building block, and building block is multi-layer cavity, insulating layer
With the public presence of cavity, the overlap joint between building block and building block forms lattice system, reserves cavity and true containing stem in building block
Empty barrier bag, stem reserve the stress transmission force property that cavity improves building block, enhance the globality of wall, ensure that wall
Anti-seismic performance, vacuum screened bag play insulation, sound insulation, are tightly combined, and improve exterior-wall heat insulation, energy-efficient effect significantly
Fruit.
The technical solution adopted in the utility model is as follows:
A kind of no heat bridge lattice combination vacuum heat-preserving building block, is divided into main building block and auxiliary building block, main building block includes cross
Main piece and I-shaped main piece two kinds, auxiliary building block are auxiliary piece one of concave character type and auxiliary piece two of concave character type, and when masonry is followed successively by from left to right
Auxiliary piece two of concave character type, it is main piece cross, main piece I-shaped, auxiliary piece one of concave character type;Described cross main piece, it is main piece I-shaped, recessed
There are the consistent stem cavitys of size for auxiliary piece two centre of auxiliary piece one of font and concave character type;Described cross main piece in stem cavity
Surrounding arrangement and the consistent vacuum screened bag two of stem cavity size;Described I-shaped main piece and auxiliary piece one of concave character type, concave character type
Auxiliary piece of two stem cavitys arrange vacuum screened bag three and vacuum screened bag one up and down.
Further, when masonry cross main piece and it is main piece I-shaped between can in any combination, cross main number of blocks
Than I-shaped one piece more than main piece.
Further, the no heat bridge lattice composite thermal insulation building block is mutually staggered using middle rib, is formed after building block overlap joint
Lattice.
Further, the no heat bridge lattice combination vacuum heat-preserving building block is multi-layer cavity, insulating layer and stem cavity
It is common to exist.
A kind of production method of no heat bridge lattice combination vacuum heat-preserving building block, comprising the following steps: according to blocks shape
And size makes building block skeleton template, the template is there are stem cavity and is placed with vacuum screened bag one, vacuum screened bag two, true
The cavity of empty barrier bag three checks very after conserving demoulding according to engine request casting concrete or other hydraulic cementing materials
Whether empty barrier bag one, vacuum screened bag two, vacuum screened bag three are damaged, and vacuum screened bag one, vacuum resistance are put into after no breakage
Compartment two, vacuum screened bag three cavity in;The vacuum screened bag one, vacuum screened bag two, vacuum screened bag are third is that glass
Aluminium foil bag or fibrous glass vacuum bag.
The utility model has the beneficial effects that
The design of the utility model structure is simple, can modularized production, building block is multi-layer cavity, and insulating layer is public with cavity
In the presence of the overlap joint between building block and building block forms lattice system, and stem cavity and vacuum screened bag are contained in building block, and stem is empty
Chamber improves the stress transmission force property of building block, enhances the globality of wall, ensure that the anti-seismic performance of wall, vacuum screened bag
Play the role of insulation, sound insulation, compact, improves exterior-wall heat insulation, energy-efficient effect significantly.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model.
Fig. 2 is cross main piece of schematic diagram in the utility model.
Fig. 3 is I-shaped main piece of schematic diagram in the utility model.
The schematic diagram that Fig. 4 is auxiliary piece one of concave character type in the utility model.
The schematic diagram that Fig. 5 is auxiliary piece two of concave character type in the utility model.
In figure, 1 is cross main piece;2 be I-shaped main piece;3-1 is auxiliary piece one of concave character type;3-2 is auxiliary piece two of concave character type;
4-1 is vacuum screened bag one;4-2 is vacuum screened bag two;4-3 is vacuum screened bag three;5 be stem cavity.
Specific embodiment
Embodiment
As shown in Fig. 1 ~ 5, a kind of no heat bridge lattice combination vacuum heat-preserving building block is divided into main building block and auxiliary building block, main block
Block includes cross main piece 1 and main piece 2 two kinds I-shaped, and auxiliary building block is auxiliary piece of two 3-2 of auxiliary piece of 3-1 of concave character type and concave character type,
Auxiliary piece of two 3-2 of concave character type, main piece 1 cross, main piece 2 I-shaped, auxiliary piece of 3-1 of concave character type are followed successively by when masonry from left to right;
Described cross main piece 1, there are sizes one among auxiliary piece of two 3-2 of main piece 2 I-shaped, auxiliary piece of 3-1 of concave character type and concave character type
The stem cavity of cause;Described cross main piece) in 5 surrounding of stem cavity arrangement and the consistent vacuum screened of 5 size of stem cavity
Two 4-2 of bag;Auxiliary piece of described I-shaped main piece 2 and auxiliary piece of 3-1 of concave character type, concave character type two about 5 3-2 stem cavitys arrangement vacuum
One 4-1 of three 4-3 of barrier bag and vacuum screened bag.
Further, when masonry cross main piece 1 and it is main piece 2 I-shaped between can in any combination, cross main piece 1
Quantity is than I-shaped main piece more than 2 one pieces.
Further, the no heat bridge lattice composite thermal insulation building block is mutually staggered using middle rib, is formed after building block overlap joint
Lattice.
Further, the no heat bridge lattice combination vacuum heat-preserving building block is multi-layer cavity, insulating layer and stem cavity
It is common to exist.
A kind of production method of no heat bridge lattice combination vacuum heat-preserving building block, comprising the following steps: according to blocks shape
And size makes building block skeleton template, the template is there are stem cavity 5 and is placed with one 4-1 of vacuum screened bag, vacuum screened bag
The cavity of two 4-2, three 4-3 of vacuum screened bag, tear open according to engine request casting concrete or other hydraulic cementing materials, maintenance
Check whether one 4-1 of vacuum screened bag, two 4-2 of vacuum screened bag, three 4-3 of vacuum screened bag are damaged, are put into after no breakage after mould
One 4-1 of vacuum screened bag, two 4-2 of vacuum screened bag, three 4-3 of vacuum screened bag cavity in;One 4-1 of vacuum screened bag,
Two 4-2 of vacuum screened bag, three 4-3 of vacuum screened bag are fiberglass aluminum foil bag or fibrous glass vacuum bag.
The above is only the preferred embodiment of the utility model, it is noted that for the common skill of the art
For art personnel, without departing from the principle of this utility model, several improvements and modifications can also be made, these improve and
Retouching also should be regarded as the protection scope of the utility model.
Claims (4)
1. a kind of no heat bridge lattice combines vacuum heat-preserving building block, it is characterised in that: be divided into main building block and auxiliary building block, main building block packet
Include it is cross main piece (1) and main piece (2) two kinds I-shaped, auxiliary building block be auxiliary piece one of concave character type (3-1) and auxiliary piece of two (3- of concave character type
2), be followed successively by from left to right when masonry auxiliary piece two of concave character type (3-2), cross main piece (1), I-shaped main piece of (2), concave character type it is auxiliary
Block one (3-1);Cross main piece (1), I-shaped main piece (2), auxiliary piece one of concave character type (3-1) and auxiliary piece of two (3- of concave character type
It is 2) intermediate that there are the consistent stem cavitys (5) of size;Cross main piece (1) is in stem cavity (5) surrounding arrangement and core
The consistent vacuum screened bag two (4-2) of column cavity (5) size;It is I-shaped main piece (2) and auxiliary piece one of concave character type (3-1), recessed
Auxiliary piece two (3-2) stem cavity (5) of font arranges vacuum screened bag three (4-3) and vacuum screened bag one (4-1) up and down.
2. a kind of no heat bridge lattice combines vacuum heat-preserving building block according to claim 1, it is characterised in that: ten when masonry
Can in any combination between main piece of font (1) and I-shaped main piece (2), cross main piece of (1) quantity is more than I-shaped main piece (2)
One piece.
3. a kind of no heat bridge lattice combines vacuum heat-preserving building block according to claim 1, it is characterised in that: the no heat bridge
Lattice composite thermal insulation building block is mutually staggered using middle rib, forms lattice after building block overlap joint.
4. a kind of no heat bridge lattice combines vacuum heat-preserving building block according to claim 1, it is characterised in that: the no heat bridge
It is multi-layer cavity that lattice, which combines vacuum heat-preserving building block, and insulating layer and stem cavity (5) exist jointly.
Priority Applications (1)
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CN201820796022.7U CN208309899U (en) | 2018-05-25 | 2018-05-25 | No heat bridge lattice combines vacuum heat-preserving building block |
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CN201820796022.7U CN208309899U (en) | 2018-05-25 | 2018-05-25 | No heat bridge lattice combines vacuum heat-preserving building block |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108589968A (en) * | 2018-05-25 | 2018-09-28 | 沈阳建筑大学 | No heat bridge lattice combination vacuum heat-preserving building block and preparation method thereof |
-
2018
- 2018-05-25 CN CN201820796022.7U patent/CN208309899U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108589968A (en) * | 2018-05-25 | 2018-09-28 | 沈阳建筑大学 | No heat bridge lattice combination vacuum heat-preserving building block and preparation method thereof |
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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: 20190101 |