CN206174268U - Evaporate and press aerated concrete insulation block - Google Patents

Evaporate and press aerated concrete insulation block Download PDF

Info

Publication number
CN206174268U
CN206174268U CN201621044027.1U CN201621044027U CN206174268U CN 206174268 U CN206174268 U CN 206174268U CN 201621044027 U CN201621044027 U CN 201621044027U CN 206174268 U CN206174268 U CN 206174268U
Authority
CN
China
Prior art keywords
bubble
block body
aerated concrete
bubbles
building block
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201621044027.1U
Other languages
Chinese (zh)
Inventor
张福华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN201621044027.1U priority Critical patent/CN206174268U/en
Application granted granted Critical
Publication of CN206174268U publication Critical patent/CN206174268U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Building Environments (AREA)

Abstract

The utility model relates to an evaporate and press aerated concrete insulation block, including building block body, the first bubble that has a plurality of interconnect in the building block body, first bubble inside has at least one second bubble, because first bubble is inside to have at least one second bubble, the bubble suit forms the multilayer space together, so building block body intensity is high, greatly reduced building block body's coefficient of heat transfer, improved building block body's heat preservation effect greatly, do not need to cover installation insulation material at the outer wall alone, reduced construction costs, practiced thrift the energy, protected the environment.

Description

A kind of steam pressure sand aerated concrete insulation blocks
Technical field
The utility model is related to a kind of structure material, builds more particularly to a kind of insulation of steam pressure sand aerated concrete Block.
Background technology
The world today, economic technology develops the contradiction of the huge consumption to the energy and natural resources excessively between exploitation increasingly Highlight, can properly settle this contradiction and will be directly connected to World Economics realize sustainable development.Energy shortage is one Individual global problem, be also restrict Chinese national economy development major issue, energy saving oneself be subject to whole world various countries it is general All over concern.Conventional energy resource has faced exhaustion, so coordinate development becomes the important topic in the whole world with the relation of energy saving.I The energy development level of state is far from the needs for meeting China's economic development, and building energy consumption situation is surprising, and China's building is being built During use, the energy for consuming directly, indirectly accounts for the 46.7% of social total energy consumption.The maximum composition portion of China's building energy consumption It is divided into northern cities and towns Winter heat supply heating energy consumption, accounts for the 36% of whole nation building total energy consumption, and in this part energy consumption, because building is enclosed Protection structure is incubated the bad energy consumption for causing and accounts for 70%.
Steam pressure sand aerated concrete block be with siliceous material and calcareous material as raw material, the cast of Jing dispensings, expansion of getting angry, The New Building Materials of light heat-insulating made by technique such as steam-cured are cut, is gone through in the production and application in China's existing more than 60 years History, is being currently production in being widely used in industry and civil buildings the characteristics of due to lightweight, good heat insulating The most ripe novel wall material of technology and application technology.
Steam pressure sand aerated concrete block is lightweight, and by different stage 300~800kg/m3, only the 1/ of clay brick are divided into 3 or so, basis can be simplified to the skyscraper in earth bearing strength lower area, shock resistance is improved, reduce building deadweight.Due to Aerated sand concrete segment has good thermal and insulating performance, can also save heating and energy consumption for cooling, has with clay brick During identical heat insulation effect, thickness of wall body can be substantially reduced, save material usage, reduce construction investment, while increasing building Usable floor area.
It is higher that the steam pressure sand aerated concrete block for being used now yet suffers from heat transfer coefficient, and heat scatters and disappears larger, protects The bad problem of temp effect, generally also needs to be covered in exterior wall and installs insulation material, substantially increases building cost, and is incubated Material is reached to be needed to be changed after service life, causes the waste of construction material and the pollution of environment, is unfavorable for energy saving And environmental protection.
Utility model content
Problem to be solved in the utility model is for problem above, there is provided a kind of intensity is high, heat transfer coefficient is lower, insulation The more preferable steam pressure sand aerated concrete insulation blocks of effect.
To solve the above problems, the technical scheme that the utility model is adopted is:A kind of steam pressure sand aerated concrete insulation With the first bubble that several are connected with each other in building block, including block body, the block body, inside the first bubble With at least one second bubbles.
Because first bubble inside has at least one second bubbles, bubble is set in together, and forms many sheaf spaces, institute With, block body intensity is high, greatly reduces the heat transfer coefficient of block body, substantially increases the heat insulation effect of block body, Individually need not cover in exterior wall and insulation material is installed, reduce building cost, save the energy, protect environment.
As a kind of prioritization scheme, the quantity of second bubble two.
Used as a kind of prioritization scheme, two the second bubbles are set in together.
Used as a kind of prioritization scheme, two the second bubbles link together.
As a kind of prioritization scheme, the generally circular in shape, oval of the first bubble, polygon, it is irregularly shaped in One or more.
As a kind of prioritization scheme, the generally circular in shape, oval of the second bubble, polygon, it is irregularly shaped in One or more.
The utility model takes above technical scheme, with advantages below:
This insulation blocks intensity is high, and heat transfer coefficient is low, high insulating effect, it is not necessary to individually covers in exterior wall and installs thermal insulating material Material, reduces building cost, it is to avoid the replacing that insulation material is changed, and has saved the energy, protects environment.
With reference to the accompanying drawings and examples the utility model is described in further detail.
Description of the drawings
Accompanying drawing 1 is a kind of structural representation of steam pressure sand aerated concrete insulation blocks in the utility model embodiment;
Accompanying drawing 2 is the structural representation of first bubble and the second bubble in accompanying drawing 1;
Accompanying drawing 3 is the structural representation of first bubble and the second bubble in accompanying drawing 1;.
Accompanying drawing 4 is the structural representation of first bubble and the second bubble in accompanying drawing 1;
Accompanying drawing 5 is the structural representation of first bubble and the second bubble in accompanying drawing 1;
Accompanying drawing 6 is the structural representation of first bubble and the second bubble in accompanying drawing 1;
Accompanying drawing 7 is the structural representation of first bubble and the second bubble in accompanying drawing 1.
In figure:
1- block bodies;2- first bubbles;The bubbles of 3- second.
Specific embodiment
Embodiment 1:As shown in Figures 1 and 2, a kind of steam pressure sand aerated concrete insulation blocks, including block body 1, with the first bubble 2 that several are connected with each other in the block body 1, the inside of the first bubble 2 has two second Bubble 3, the second bubble 3 can also be multiple, and first bubble 2 is more than the second bubble 3, and the bubble 3 of first bubble 2 and second is by particle diameter Different size of aluminium powder foaming is formed, due to aluminium powder particle size difference, so forming bubble of different sizes in foaming.
Two the second bubbles 3 are set in together, and two the second bubbles 3 are connected with each other, externally-located the second bubble 3 and One bubble 2 connects.
The bubble 3 of the first bubble 2 and second it is generally circular in shape.
Embodiment 2:As shown in accompanying drawing 1 and accompanying drawing 3, a kind of steam pressure sand aerated concrete insulation blocks, including block body 1, with the first bubble 2 that several are connected with each other in the block body 1, the inside of the first bubble 2 has two second Bubble 3, the second bubble 3 can also be multiple, and first bubble 2 is more than the second bubble 3, and the bubble 3 of first bubble 2 and second is by particle diameter Different size of aluminium powder foaming is formed, due to aluminium powder particle size difference, so forming bubble of different sizes in foaming.
Two the second bubbles 3 are set in together, and two the second bubbles 3 are connected with each other, externally-located the second bubble 3 and One bubble 2 connects.
The first bubble 2 and second bubble 3 is shaped as ellipse.
Embodiment 3:As shown in accompanying drawing 1 and accompanying drawing 4, a kind of steam pressure sand aerated concrete insulation blocks, including block body 1, with the first bubble 2 that several are connected with each other in the block body 1, the inside of the first bubble 2 has two second Bubble 3, the second bubble 3 can also be multiple, and first bubble 2 is more than the second bubble 3, and the bubble 3 of first bubble 2 and second is by particle diameter Different size of aluminium powder foaming is formed, due to aluminium powder particle size difference, so forming bubble of different sizes in foaming.
Two the second bubbles 3 are set in together, and two the second bubbles 3 are connected with each other, externally-located the second bubble 3 and One bubble 2 connects.
Being shaped as the bubble 3 of the first bubble 2 and second is irregularly shaped.
Embodiment 4:As shown in accompanying drawing 1 and accompanying drawing 5, a kind of steam pressure sand aerated concrete insulation blocks, including block body 1, with the first bubble 2 that several are connected with each other in the block body 1, the inside of the first bubble 2 has two second Bubble 3, the second bubble 3 can also be multiple, and first bubble 2 is more than the second bubble 3, and the bubble 3 of first bubble 2 and second is by particle diameter Different size of aluminium powder foaming is formed, due to aluminium powder particle size difference, so forming bubble of different sizes in foaming.
Two the second bubbles 3 link together, and two the second bubbles 3 are connected with each other, one of them second bubble 3 and first Bubble 2 connects, or two the second bubbles 3 are connected respectively with first bubble 2, and two the second bubbles 3 are not connected to, or two Two bubbles 3 are connected with each other, while two the second bubbles are connected respectively with first bubble 2.
The bubble 3 of the first bubble 2 and second it is generally circular in shape.
Embodiment 5:As shown in accompanying drawing 1 and accompanying drawing 6, a kind of steam pressure sand aerated concrete insulation blocks, including block body 1, with the first bubble 2 that several are connected with each other in the block body 1, the inside of the first bubble 2 has two second Bubble 3, the second bubble 3 can also be multiple, and first bubble 2 is more than the second bubble 3, and the bubble 3 of first bubble 2 and second is by particle diameter Different size of aluminium powder foaming is formed, due to aluminium powder particle size difference, so forming bubble of different sizes in foaming.
Two the second bubbles 3 link together, and two the second bubbles 3 are connected with each other, one of them second bubble 3 and first Bubble 2 connects, or two the second bubbles 3 are connected respectively with first bubble 2, and two the second bubbles 3 are not connected to, or two Two bubbles 3 are connected with each other, while two the second bubbles are connected respectively with first bubble 2.
The first bubble 2 and second bubble 3 is shaped as ellipse.
Embodiment 6:As shown in accompanying drawing 1 and accompanying drawing 7, a kind of steam pressure sand aerated concrete insulation blocks, including block body 1, with the first bubble 2 that several are connected with each other in the block body 1, the inside of the first bubble 2 has two second Bubble 3, the second bubble 3 can also be multiple, and first bubble 2 is more than the second bubble 3, and the bubble 3 of first bubble 2 and second is by particle diameter Different size of aluminium powder foaming is formed, due to aluminium powder particle size difference, so forming bubble of different sizes in foaming.
Two the second bubbles 3 link together, and two the second bubbles 3 are connected with each other, one of them second bubble 3 and first Bubble 2 connects, or two the second bubbles 3 are connected respectively with first bubble 2, and two the second bubbles 3 are not connected to, or two Two bubbles 3 are connected with each other, while two the second bubbles are connected respectively with first bubble 2.
Being shaped as the bubble 3 of the first bubble 2 and second is irregularly shaped.
Block structure in the present embodiment, B04 parameters are as follows:
Dry density≤400kg
Compression strength >=2.5 megapascal (MPa)
Heat transfer coefficient≤0.09w/ (m.k)
Block structure in the present embodiment, B05 parameters are as follows:
Dry density≤500kg
Compression strength >=3.5 megapascal (MPa)
Heat transfer coefficient≤0.11w/ (m.k)
Above parameter is superior to national standard parameter.

Claims (6)

1. have in a kind of steam pressure sand aerated concrete insulation blocks, including block body (1), the block body (1) some The individual first bubble (2) being connected with each other, it is characterised in that:There are at least one second bubbles inside the first bubble (2) (3)。
2. a kind of steam pressure sand aerated concrete insulation blocks as claimed in claim 1, it is characterised in that:Second bubble (3) quantity two.
3. a kind of steam pressure sand aerated concrete insulation blocks as claimed in claim 2, it is characterised in that:Two the second bubbles (3) it is set in together.
4. a kind of steam pressure sand aerated concrete insulation blocks as claimed in claim 2, it is characterised in that:Two the second bubbles (3) link together.
5. a kind of steam pressure sand aerated concrete insulation blocks as described in one of claim 1-4, it is characterised in that:It is described One or more in the generally circular in shape, oval of first bubble (2), polygon.
6. a kind of steam pressure sand aerated concrete insulation blocks as described in one of claim 1-4, it is characterised in that:It is described One or more in the generally circular in shape, oval of second bubble (3), polygon.
CN201621044027.1U 2016-08-31 2016-08-31 Evaporate and press aerated concrete insulation block Expired - Fee Related CN206174268U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621044027.1U CN206174268U (en) 2016-08-31 2016-08-31 Evaporate and press aerated concrete insulation block

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621044027.1U CN206174268U (en) 2016-08-31 2016-08-31 Evaporate and press aerated concrete insulation block

Publications (1)

Publication Number Publication Date
CN206174268U true CN206174268U (en) 2017-05-17

Family

ID=58675345

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201621044027.1U Expired - Fee Related CN206174268U (en) 2016-08-31 2016-08-31 Evaporate and press aerated concrete insulation block

Country Status (1)

Country Link
CN (1) CN206174268U (en)

Similar Documents

Publication Publication Date Title
CN100564307C (en) Gradient composite heat-insulating layer and manufacture method thereof
CN101768006A (en) Lightweight refractory for glass smelting kiln
CN101603347B (en) Straight type recycled concrete block with light heat-insulation mortar bed and manufacturing method thereof
CN206174268U (en) Evaporate and press aerated concrete insulation block
CN104710141A (en) Energy-saving environment-friendly type multi-row-hole self-insulating full-recycled concrete block
CN107663055A (en) A kind of self-insulating concrete containing perlite particle
CN201883596U (en) Highly efficient energy-saving multi-row-hole autoclaved aerated concrete block
CN203514544U (en) Inorganic antiflaming composite thermal-insulating wall
CN206319541U (en) A kind of regeneration aggregate floor insulating brick
CN204212310U (en) A kind of novel self-insulated building block and a kind of body of wall
CN208309899U (en) No heat bridge lattice combines vacuum heat-preserving building block
CN202500256U (en) Energy-saving building brick
CN105272031A (en) Warm-keeping material
CN205171746U (en) Thermal -insulated wall body keeps warm
CN202925741U (en) Honeycomb-structured thermal insulating brick
CN205138209U (en) Parapet brick for cement kiln
CN204753953U (en) Heat preservation type polyurethane concrete block
CN215594581U (en) High-strength heat-preservation waterproof autoclaved aerated concrete block
CN204401862U (en) Small-sized insulation blocks
CN102501453A (en) Heat-preservation insulating plate and manufacturing method thereof
CN102926499A (en) Coal gangue heat preservation immature soil building block and manufacture method thereof
CN101792292B (en) Lightweight, high-strength and super-freezing and thawing resistant cement culture stone
CN202969693U (en) Novel insulating brick
CN206635969U (en) Heat insulating inner wall system
CN201535030U (en) Concrete building hollow brick

Legal Events

Date Code Title Description
GR01 Patent grant
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: 20170517

Termination date: 20180831