CN206646719U - Building thermal-insulation energy-saving brick - Google Patents
Building thermal-insulation energy-saving brick Download PDFInfo
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- CN206646719U CN206646719U CN201720363923.2U CN201720363923U CN206646719U CN 206646719 U CN206646719 U CN 206646719U CN 201720363923 U CN201720363923 U CN 201720363923U CN 206646719 U CN206646719 U CN 206646719U
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- pole
- brick
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- saving
- energy
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Abstract
The utility model discloses a kind of building thermal-insulation energy-saving brick, including brick body, the top and bottom of brick body opens up fluted, and the inside of the brick body offers the voided layer of insertion;The side position of voided layer two that is internally located at of brick body offers filling heat insulating wall for filling insulation material, and reinforcing enhancing mechanism is connected with the voided layer.The utility model improves the hollow Rotating fields of the heat-preserving energy-saving brick, can in use by the heat-preserving energy-saving brick up and down four orientation suffered by extraneous extruding force, the extraneous extruding force suffered by the heat-preserving energy-saving brick is changed into rapidly weakening by elastic deformation caused by spring and buffering sponge, greatly reduce the pressure wear suffered by the heat-preserving energy-saving brick, so as to extend the service life of building thermal-insulation energy-saving brick, be advantageous to the heat-preserving energy-saving brick and significantly promote the use of.
Description
Technical field
Architectural Equipment field is the utility model is related to, specially a kind of building thermal-insulation energy-saving brick.
Background technology
Insulating brick, a kind of building material, using synthesis of polymer material, also useful cinder, slag are processed into, main to use
Filled in the wall of building constructions, have the advantages that it is in light weight, easy for construction, warming, nowadays, as building energy-saving is environmentally friendly
Requirement improve constantly, insulating brick obtained substantial amounts of application in modern architecture, turned into the main materials for wall of modern architecture
So as to which there is different types of building thermal-insulation energy-saving brick in the market.
But building thermal-insulation energy-saving brick at present on the market, in use, the heat-preserving energy-saving brick four up and down
Orientation is by strong extraneous extruding force, and heat-preserving energy-saving brick is put down heat-preserving energy-saving brick certainly by upper and lower between each other such as when building by laying bricks or stones
The pressure that body gravity is formed, as heat-preserving energy-saving brick using when born against power by external force such as people's left and right directions between each other
Effect, so as to cause heat-preserving energy-saving brick the situation that rupture fractures or even caved in occur, building thermal-insulation energy-saving brick is caused integrally to use
Short life, it is difficult to meet the use demand in market.
Utility model content
The purpose of this utility model is to provide a kind of building thermal-insulation energy-saving brick, to solve to propose in above-mentioned background technology
During use, four orientation are caused heat-preserving energy-saving brick to occur to the heat-preserving energy-saving brick by strong extraneous extruding force up and down
The problem of rupture fractures or even the situation of landslide, and building thermal-insulation energy-saving brick whole service life is short.
To achieve the above object, the utility model provides following technical scheme:
A kind of building thermal-insulation energy-saving brick, including brick body, the top and bottom of brick body open up it is fluted, the brick body
Inside offers the voided layer of insertion;The side position of voided layer two that is internally located at of brick body is offered for filling thermal insulating material
The filling heat insulating wall of material, reinforcing enhancing mechanism is connected with the voided layer;The enhancing mechanism that reinforces includes strengthening horizontal bar, fastening
Part and inserting column, the inserting column are embedded in brick body in advance, and the both ends for strengthening horizontal bar are connected by fastener with inserting column, should
Strengthen horizontal bar and the overall space of voided layer is divided into two independent chambers, and the outer surface for strengthening horizontal bar is arranged side by side equidistantly
The locating piece of cylinder-like structure is socketed with, the top of the locating piece is located at voided layer upper chamber position and is fixedly connected with enhancing
Pole, the bottom of locating piece are located at voided layer lower chambers position and are fixedly connected with lower enhancing pole, the lower enhancing pole and upper increasing
The body of rod outer surface of strong pole is wound with spring, and the entirety that lower enhancing pole, reinforcement horizontal bar and upper enhancing pole mutually form
Profile is in " cross ";The buffering sponge for depressurizing is filled with chamber in the voided layer.
Preferably, the fastener is nut, and the outer surface of fastener is coated with corrosion resistant coating.
Preferably, the rod end of the upper enhancing pole and lower enhancing pole mutually welds with locating piece block outer surface
Connect.
Preferably, the upper enhancing pole is provided with two groups with lower enhancing pole, and strengthens pole and two groups on two groups
Lower enhancing pole mutual dislocation placement.
Preferably, the rod end of the upper enhancing pole and lower enhancing pole is glued by adhesive and brick body inwall
In one.
Compared with prior art, the beneficial effects of the utility model are:
1st, the utility model strengthens the setting of mechanism by reinforcing, and improves the hollow Rotating fields of the heat-preserving energy-saving brick, energy
Enough set in voided layer reinforces increase mechanism, passes through fastener and the inserting column phase interworking being embedded into the heat-preserving energy-saving brick brick body
Horizontal bar will be reinforced by, which closing, is laterally connected in the voided layer in the heat-preserving energy-saving brick, and by reinforcement horizontal bar, upper enhancing pole with
" cross " that enhancing pole is formed realizes the consolidation process in four orientation up and down to voided layer, enhances the insulation section
The structural integrity and stability of energy brick, and can be in use by suffered by the heat-preserving energy-saving brick up and down four orientation
The extraneous extruding force arrived, the external world suffered by the heat-preserving energy-saving brick is squeezed by elastic deformation caused by spring and buffering sponge
Pressure changes rapidly weakening, greatly reduces the pressure wear suffered by the heat-preserving energy-saving brick, effectively prevents in use
Four orientation are caused the situation that rupture fractures or even caved in by extraneous extruding force to the heat-preserving energy-saving brick up and down, improve
The safety in utilization of the heat-preserving energy-saving brick, so as to extend the service life of building thermal-insulation energy-saving brick, be advantageous to the heat preservation energy-saving
Brick is significantly promoted the use of.
Brief description of the drawings
Fig. 1 is the utility model main structure diagram;
Fig. 2 is that the utility model reinforces enhancing mechanism structure schematic diagram;
Fig. 3 is the utility model side structure schematic view.
In figure:1 brick body, 2 grooves, 3 filling heat insulating walls, 4 voided layers, 5 reinforce enhancing mechanism, 51 reinforcement horizontal bars, 52 fastenings
Part, 53 inserting columns, 54 locating pieces, strengthen pole on 55,56 time enhancing poles, 57 springs, 58 buffer sponges.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the embodiment of the utility model is carried out
Clearly and completely describing, it is clear that described embodiment is only the utility model part of the embodiment, rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made
The every other embodiment obtained, belong to the scope of the utility model protection.
Fig. 1-3 are referred to, the utility model provides a kind of technical scheme:
A kind of building thermal-insulation energy-saving brick, including brick body 1, the top and bottom of brick body 1 open up fluted 2, and groove 2 makes
With, adhesive and brick body 1 can be incorporated into one rapidly by the groove-like structure of groove 2 in the heat preservation energy-saving brick masonry,
And two pieces of identical heat-preserving energy-saving bricks are incorporated into one by adhesive, groove 2 can improve the heat preservation energy-saving combined two-by-two
Brick combines more firm, and the inside of the brick body 1 offers the voided layer 4 of insertion;Brick body 1 is internally located at the both sides of voided layer 4
Position offers the filling heat insulating wall 3 for filling insulation material, and reinforcing enhancing mechanism 5 is connected with the voided layer 4.
Reinforce enhancing mechanism 5 and be embedded in advance in brick body 1 including strengthening horizontal bar 51, fastener 52 and inserting column 53, inserting column 53,
The both ends for strengthening horizontal bar 51 are connected by fastener 52 with inserting column 53, and fastener 52 is nut, and the outer surface of fastener 52
Coated with corrosion resistant coating, the use of corrosion resistant coating can improve the corrosion resistance of fastener 52, reduce fastener 52 and using process
In suffered external force corrode, so as to extend the service life of fastener 52, the reinforcement horizontal bar 51 is by the overall empty of voided layer 4
Between be divided into two independent chambers, and the equidistant positioning for being socketed with cylinder-like structure is arranged side by side in the outer surface for strengthening horizontal bar 51
Block 54, the top of locating piece 54 are located at the upper chamber position of voided layer 4 and are fixedly connected with enhancing pole 55, the bottom of locating piece 54
Lower enhancing pole 56 is fixedly connected with positioned at the lower chambers position of voided layer 4, the bar of the lower enhancing pole 56 and upper enhancing pole 55
External surface is wound with spring 57, can be in the heat preservation energy-saving brick masonry, rapidly by heat preservation energy-saving in the presence of spring 57
Vertical pressure of the brick two-by-two with reference to suffered by when institute's heat-preserving energy-saving brick brick body 1 is converted to the elastic deformation of spring 57, so as to weaken
The pressure suffered by brick body 1 is cut down, the pressure wear suffered by brick body 1 is reduced, so as to extend the use of the heat-preserving energy-saving brick
Life-span, and the monnolithic case that lower enhancing pole 56, reinforcement horizontal bar 51 and upper enhancing pole 55 mutually form is in " cross ";It is hollow
The buffering sponge 58 for depressurizing is filled with chamber in layer 4.
The rod end of upper enhancing pole 55 and lower enhancing pole 56 mutually welds with the block outer surface of locating piece 54, upper increasing
Strong pole 55 is provided with two groups with lower enhancing pole 56, and it is mutually wrong with strengthening pole 56 under two groups to strengthen pole 55 on two groups
Position placement, the upper enhancing pole 55 of mutual dislocation placement and lower enhancing pole 56 can increase the heat-preserving energy-saving brick overall aesthetics
While energy, the heat-preserving energy-saving brick is carried out to consolidate support, upper enhancing using upper enhancing pole 55 and lower enhancing pole 56 are overall
The rod end of pole 55 and lower enhancing pole 56 is glued at one by adhesive and the inwall of brick body 1.
Operation principle:In use, inserting column 53 is embedded in advance when the heat-preserving energy-saving brick makes in brick body 1, the insulation
After energy-saving brick production shaping, the reinforcement horizontal bar 51 for being socketed with locating piece 54 in advance is connected with inserting column 53 by fastener 52, then
The lower enhancing pole 56 of the upper enhancing pole 55 of winding spring 57 and winding spring 57 is connected with locating piece 54 respectively, and in sky
Buffering sponge 58 can complete the overall making of the heat-preserving energy-saving brick in filling in central layer 4.
In summary:The utility model strengthens the setting of mechanism 5 by reinforcing, and improves the voided layer of the heat-preserving energy-saving brick
4 structures, it can be set in voided layer 4 and reinforce increase mechanism 5, by fastener 52 and be embedded into the heat-preserving energy-saving brick brick body 1
Interior inserting column 53, which cooperates, is laterally connected in reinforcing horizontal bar 51 in the voided layer 4 in the heat-preserving energy-saving brick, and by reinforcement
" cross " that horizontal bar 51, upper enhancing pole 55 are formed with lower enhancing pole 56 realizes four sides up and down to voided layer 4
The consolidation process of position, enhances the structural integrity and stability of the heat-preserving energy-saving brick, and in use can protect this
The warm energy-saving brick extraneous extruding force suffered by four orientation up and down, by elasticity caused by spring 57 and buffering sponge 58
Extraneous extruding force suffered by the heat-preserving energy-saving brick is changed rapidly weakening by deformation, is greatly reduced suffered by the heat-preserving energy-saving brick
Pressure wear, effectively prevent that the heat-preserving energy-saving brick up and down by extraneous extruding force made by four orientation in use
The situation for fractureing or even caving in into rupture, the safety in utilization of the heat-preserving energy-saving brick is improved, so as to extend building heat preservation section
The service life of energy brick, is advantageous to the heat-preserving energy-saving brick and significantly promotes the use of, solve in use, the heat preservation energy-saving
Four orientation are caused heat-preserving energy-saving brick the feelings that rupture fractures or even caved in occur to brick by strong extraneous extruding force up and down
Condition, the problem of building thermal-insulation energy-saving brick whole service life is short.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art,
It is appreciated that these embodiments can be carried out with a variety of changes in the case where not departing from principle of the present utility model and spirit, repaiied
Change, replace and modification, the scope of the utility model are defined by the appended claims and the equivalents thereof.
Claims (5)
1. a kind of building thermal-insulation energy-saving brick, including brick body (1), the top and bottom of brick body (1) opens up fluted (2),
The inside of the brick body (1) offers the voided layer (4) of insertion;Brick body (1) to be internally located at the side position of voided layer (4) two equal
The filling heat insulating wall (3) for filling insulation material is offered, reinforcing enhancing mechanism (5) is connected with the voided layer (4);It is special
Sign is:The enhancing mechanism (5) that reinforces includes strengthening horizontal bar (51), fastener (52) and inserting column (53), the inserting column (53)
It is embedded in advance in brick body (1), the both ends for strengthening horizontal bar (51) are connected by fastener (52) with inserting column (53), should be added
The overall space of voided layer (4) is divided into two independent chambers by tyrannical muscle (51), and strengthens the outer surface of horizontal bar (51) simultaneously
Row sets the equidistant locating piece (54) for being socketed with cylinder-like structure, and the top of the locating piece (54) is located at voided layer (4) epicoele
Room position is fixedly connected with enhancing pole (55), and the bottom of locating piece (54) is located at voided layer (4) lower chambers position and fixes company
Lower enhancing pole (56) is connected to, the body of rod outer surface of the lower enhancing pole (56) and upper enhancing pole (55) is wound with spring
(57), and lower enhancing pole (56), to strengthen horizontal bar (51) and upper pole (55) monnolithic case that mutually forms that strengthens be in " cross
Type ";The buffering sponge (58) for depressurizing is filled with chamber in the voided layer (4).
2. building thermal-insulation energy-saving brick according to claim 1, it is characterised in that:The fastener (52) is nut, and tightly
The outer surface of firmware (52) is coated with corrosion resistant coating.
3. building thermal-insulation energy-saving brick according to claim 1, it is characterised in that:The upper enhancing pole (55) and lower enhancing
The rod end of pole (56) mutually welds with locating piece (54) block outer surface.
4. building thermal-insulation energy-saving brick according to claim 1, it is characterised in that:The upper enhancing pole (55) and lower enhancing
Pole (56) is provided with two groups, and strengthens pole (55) on two groups with strengthening the placement of pole (56) mutual dislocation under two groups.
5. building thermal-insulation energy-saving brick according to claim 1, it is characterised in that:The upper enhancing pole (55) and lower enhancing
The rod end of pole (56) is glued at one by adhesive and brick body (1) inwall.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201720363923.2U CN206646719U (en) | 2017-04-10 | 2017-04-10 | Building thermal-insulation energy-saving brick |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201720363923.2U CN206646719U (en) | 2017-04-10 | 2017-04-10 | Building thermal-insulation energy-saving brick |
Publications (1)
Publication Number | Publication Date |
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CN206646719U true CN206646719U (en) | 2017-11-17 |
Family
ID=60274509
Family Applications (1)
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CN201720363923.2U Expired - Fee Related CN206646719U (en) | 2017-04-10 | 2017-04-10 | Building thermal-insulation energy-saving brick |
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CN (1) | CN206646719U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109853778A (en) * | 2019-03-01 | 2019-06-07 | 孙霞伢 | A kind of non-bearing wall body insulating brick and insulation firewall |
CN116556581A (en) * | 2023-06-04 | 2023-08-08 | 上海隆振节能科技股份有限公司 | Autoclaved aerated block |
-
2017
- 2017-04-10 CN CN201720363923.2U patent/CN206646719U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109853778A (en) * | 2019-03-01 | 2019-06-07 | 孙霞伢 | A kind of non-bearing wall body insulating brick and insulation firewall |
CN116556581A (en) * | 2023-06-04 | 2023-08-08 | 上海隆振节能科技股份有限公司 | Autoclaved aerated block |
CN116556581B (en) * | 2023-06-04 | 2024-04-05 | 上海隆振节能科技股份有限公司 | Autoclaved aerated block |
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Legal Events
Date | Code | Title | Description |
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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: 20171117 Termination date: 20180410 |