CN203145298U - Self-thermal-insulation buckled and clamped building block - Google Patents

Self-thermal-insulation buckled and clamped building block Download PDF

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Publication number
CN203145298U
CN203145298U CN 201320165991 CN201320165991U CN203145298U CN 203145298 U CN203145298 U CN 203145298U CN 201320165991 CN201320165991 CN 201320165991 CN 201320165991 U CN201320165991 U CN 201320165991U CN 203145298 U CN203145298 U CN 203145298U
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CN
China
Prior art keywords
fixture block
insulation groove
brick body
pouring hole
groove
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Expired - Fee Related
Application number
CN 201320165991
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Chinese (zh)
Inventor
许迪茗
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Sichuan Ouk Building Materials Science & Technology Co Ltd
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Sichuan Ouk Building Materials Science & Technology Co Ltd
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Filing date
Publication date
Application filed by Sichuan Ouk Building Materials Science & Technology Co Ltd filed Critical Sichuan Ouk Building Materials Science & Technology Co Ltd
Priority to CN 201320165991 priority Critical patent/CN203145298U/en
Application granted granted Critical
Publication of CN203145298U publication Critical patent/CN203145298U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a self-thermal-insulation buckled and clamped building block which comprises a brick body; the brick body is sequentially provided with a first clamping block, a second clamping block, a third clamping block and a fourth clamping block from the inside out; connecting ribs are arranged between the second clamping block and the third clamping block; clamping blocks on the upper surface and the lower surface are provided with clamping structures; hollow spaces among the connecting ribs, the second clamping block and the third clamping block forms thermal insulation grooves and pouring holes; the number of the thermal insulation grooves is at least two, namely a first thermal insulation groove and a second thermal insulation groove; the first thermal insulation groove is positioned in the inner side surface of the second clamping block; the second thermal insulation groove is positioned in the inner side surface of the third clamping block; a first pouring hole is formed among the first thermal insulation groove and the connecting ribs at the middle part; a second pouring hole is formed among the second thermal insulation groove and the connecting ribs at the middle part; and the first pouring hole and the second pouring hole are all U-shaped grooves. The surfaces of the U-shaped grooves are smooth curve surfaces, and the stress concentration is prevented; the pouring holes are prevented from being damaged caused by brick body manufacturing or transportation and the like; concrete can be conveniently poured in the U-shaped grooves; and the brick body is high in intensity.

Description

Self-heat conserving button card is laid bricks
Technical field
The utility model relates to insulation lays bricks, and especially a kind of self-heat conserving button card is laid bricks.
Background technology
In order to reduce energy consumption, modern building brick body will increase insulating usually.Be incubated the inner fill insulant material of laying bricks, as polystyrene foam.The insulation of prior art is laid bricks and is comprised the brick body, the brick body has been disposed in order first fixture block from the inside to the outside, second fixture block, the 3rd fixture block and the 4th fixture block, between second fixture block and the 3rd fixture block, be provided with dowel, the hollow space of dowel between second fixture block and the 3rd fixture block forms insulation groove and pouring hole, first fixture block, interface arrangment and first fixture block that the second fixture block upper surface forms, the interface arrangment that the second fixture block soffit forms is suitable, the 3rd fixture block, interface arrangment and the 3rd fixture block that the 4th fixture block upper surface forms, the interface arrangment that the 4th fixture block soffit forms is suitable.Because the pouring hole major part of prior art is dovetail groove, dovetail groove stress is easily concentrated, and causes brick strength low.
The utility model content
Technical problem to be solved in the utility model is: provide a kind of intensity high self-heat conserving button card lay bricks.
The technical scheme that its technical problem that solves the utility model adopts is: self-heat conserving button card is laid bricks, comprise the brick body, described brick body has been disposed in order first fixture block from the inside to the outside, second fixture block, the 3rd fixture block and the 4th fixture block, between second fixture block and the 3rd fixture block, be provided with dowel, the hollow space of described dowel between second fixture block and the 3rd fixture block forms insulation groove and pouring hole, first fixture block, interface arrangment and first fixture block that the second fixture block upper surface forms, the interface arrangment that the second fixture block soffit forms is suitable, the 3rd fixture block, interface arrangment and the 3rd fixture block that the 4th fixture block upper surface forms, the interface arrangment that the 4th fixture block soffit forms is suitable, described insulation groove has two at least, comprise the first insulation groove, the second insulation groove, the described first insulation groove is positioned at the second fixture block medial surface, and the second insulation groove is positioned at the 3rd fixture block medial surface; Be provided with first pouring hole between the dowel at the first insulation groove and middle part, be provided with second pouring hole between the dowel at the second insulation groove and middle part, described first pouring hole and second pouring hole are U-lag.
The upper surface of described second fixture block protrudes from the upper surface of first fixture block, and the upper surface of the 3rd fixture block protrudes from the upper surface of the 4th fixture block, and the upper surface of second fixture block, the upper surface of the 3rd fixture block and the upper surface of dowel form a concordant plane.
The soffit of the soffit of described second fixture block, the 3rd fixture block and the soffit of dowel form a concordant plane.
Dowel bottom surface between described second fixture block and the 3rd fixture block is the isosceles trapezoid groove to brick body indent.
Described brick body also is provided with the 3rd insulation groove and the 4th insulation groove, the 3rd insulation groove and the 4th insulation groove are between the first insulation groove and the second insulation groove, and the 3rd insulation groove and the 4th insulation groove positioned opposite, the 3rd insulation groove and the 4th insulation groove have outside opening end.
The side joint face of described brick body one end has two curve slopes, be respectively first curve slope and second curve slope, described first curve slope tilts in from second fixture block to the brick body and extends to the 3rd insulation groove, and described second curve slope tilts in from the 3rd fixture block to the brick body and extends to the 3rd insulation groove; The side joint face of the described brick body other end has two curve slopes, be respectively the 3rd curve slope and the 4th curve slope, described the 3rd curve slope tilts in from second fixture block to the brick body and extends to the 4th insulation groove, and described the 4th curve slope tilts in from the 3rd fixture block to the brick body and extends to the 4th insulation groove.
The beneficial effects of the utility model are: brick body pouring hole is U-lag, and U-shaped rooved face is smooth curved surface, avoids stress to concentrate, and avoids the brick system to make or carrying etc. causes plug hole to damage, and U-lag is convenient to concreting, and the brick strength height.
Description of drawings
Fig. 1 is the upward view of first kind of embodiment;
Fig. 2 is the left view of first kind of embodiment;
Fig. 3 is the installation upward view of first kind of embodiment;
Fig. 4 is the vertical view of second kind of embodiment;
Fig. 5 is the left view of second kind of embodiment;
Mark among the figure: 1-brick body, 11-first curve slope, 12-second curve slope, 13-the 3rd curve slope, 14-the 4th curve slope, 21-first fixture block, 22-second fixture block, 31-the 3rd fixture block, 32-the 4th fixture block, 4-dowel, the 51-first insulation groove, the 52-second insulation groove, 53-the 3rd insulation groove, 54-the 4th insulation groove, 61-first pouring hole, 62-second pouring hole, 63-the 3rd pouring hole, 64-the 4th pouring hole, 7-isosceles trapezoid groove.
The specific embodiment
Below in conjunction with accompanying drawing the utility model is described further.
As Fig. 1,2,4, shown in 5, self-heat conserving button card is laid bricks, comprise brick body 1, described brick body 1 has been disposed in order first fixture block 21 from the inside to the outside, second fixture block 22, the 3rd fixture block 31 and the 4th fixture block 32, between second fixture block 22 and the 3rd fixture block 31, be provided with dowel 4, the hollow space of described dowel 4 between second fixture block 22 and the 3rd fixture block 32 forms insulation groove and pouring hole, first fixture block 21, interface arrangment and first fixture block 21 that second fixture block, 22 upper surfaces form, the interface arrangment that second fixture block, 22 soffits form is suitable, the 3rd fixture block 31, interface arrangment and the 3rd fixture block 31 that the 4th fixture block 32 upper surfaces form, the interface arrangment that the 4th fixture block 32 soffits form is suitable, described insulation groove has two at least, comprise the first insulation groove 51, the second insulation groove 52, the described first insulation groove 51 is positioned at second fixture block, 22 medial surfaces, and the second insulation groove 52 is positioned at the 3rd fixture block 31 medial surfaces; Be provided with second pouring hole 62 between the dowel 4 that is provided with first pouring hole, 61, the second insulation grooves 52 and middle part between the dowel 4 at the first insulation groove 51 and middle part, described first pouring hole 61 and second pouring hole 62 are U-lag.
The brick body of mentioning in the above-mentioned embodiment 1 from the inside to the outside in, wherein " interior " is brick body 1 inboard of brick body 1 after being built into, " outward " is brick body 1 outside after brick body 1 is built into.Medial surface refers near the one side in the middle of the brick body 1.Upper surface and soffit refer to upper surface and the soffit after brick body 1 is built into.Brick body pouring hole is U-lag, and U-shaped rooved face is smooth curved surface, avoids stress to concentrate, and avoids the brick system to make or carrying etc. causes plug hole to damage, and U-lag is convenient to concreting, and the brick strength height.
The upper surface of described brick body 1 fixture block is the upper surface of extended dowel 4 all, but because the brick body 1 of the demoulding just is softer, fragile fixture block, so as preferred embodiment, shown in Fig. 2,5, the upper surface of described second fixture block 22 protrudes from the upper surface of first fixture block 21, and the upper surface of the 3rd fixture block 31 protrudes from the upper surface of the 4th fixture block 32, and the upper surface of second fixture block 22, the upper surface of the 3rd fixture block 31 and the upper surface of dowel 4 form a concordant plane.Like this, just from die for molding and still undried brick body 1 therefore be not easy to cause subsiding of brick body 1 owing to be that the plane follows dry flat board to contact, thereby be beneficial to the quality that improves product, improve yield rate.
In order further to improve the intensity of brick body 1, avoid the damage of fixture block, so as preferred embodiment, as shown in Figure 5, the soffit of the soffit of described second fixture block 22, the 3rd fixture block 31 and the soffit of dowel 4 form a concordant plane.
It is concordant plane that the soffit of second fixture block 22, the 3rd fixture block 31 and the soffit of dowel 4 can look like above-mentioned embodiment described, form region of stress concentration but can allow between second fixture block 22 and dowel 4, the 3rd fixture block 31 and the dowel 4, damage brick body 1.When installing down brick body 1, it is less that the side between the brick body 1 connects area, and brick body 1 is less with the space of concreting, causes the bonding strength between brick body 1 and the brick body 1 little.In order to increase the bonding strength between brick body 1 and the brick body 1, as preferred embodiment, as shown in Figure 2, dowel 4 bottom surfaces between described second fixture block 22 and the 3rd fixture block 31 are the isosceles trapezoid groove 7 to brick body 1 indent.
A plurality of insulation grooves form multi-layer heat preserving at the thickness direction of brick body 1, better heat preservation.Shown in Fig. 1,4, described brick body 1 also is provided with the 3rd insulation groove 53 and the 4th insulation groove 54, the 3rd insulation groove 53 and the 4th insulation groove 54 are between the first insulation groove 52 and the second insulation groove 52, and the 3rd insulation groove 53 and the 4th insulation groove 54 positioned opposite, the 3rd insulation groove 53 and the 4th insulation groove 54 have outside opening end.Positioned opposite refers to the 3rd insulation groove 53 and the 4th insulation groove 54 is symmetrical arranged.Brick body 1 side joint face refers to brick body 1 left and right sides after brick body 1 is built into.After two adjacent bricks bodies 1 connected, namely the side joint face of a brick body 1 was connected with the side joint face of another one brick body 1, and the space between these two side joint faces has formed the 3rd pouring hole 63 and the 4th pouring hole 64.As shown in Figure 3.During use, elder generation connects a plurality of brick bodies 1, clogs heat insulating material in the groove toward being incubated then, and is last toward first pouring hole 61, second pouring hole 62, the 3rd pouring hole 63 and the 4th pouring hole 64 interior concretings, can form to have heat insulating ability and the high brick body of intensity.
Shown in Fig. 1,4, the side joint face of described brick body 1 one ends has two curve slopes, be respectively first curve slope 11 and second curve slope 12, described first curve slope 11 tilts in 1 from second fixture block 22 to the brick body and extends to the 3rd insulation groove 53, and described second curve slope 12 tilts in 1 from the 3rd fixture block 31 to the brick body and extends to the 3rd insulation groove 53; The side joint face of described brick body 1 other end has two curve slopes, be respectively the 3rd curve slope 13 and the 4th curve slope 14, described the 3rd curve slope 13 tilts in 1 from second fixture block 22 to the brick body and extends to the 4th insulation groove 54, and described the 4th curve slope 14 tilts in 1 from the 3rd fixture block 31 to the brick body and extends to the 4th insulation groove 54.After two adjacent bricks bodies 1 connected, namely the side joint face of a brick body 1 was connected with the side joint face of another one brick body 1, and the space between these two side joint faces has formed the 3rd pouring hole 63 and the 4th pouring hole 64 of U-shaped.The size of described the 3rd pouring hole 63, the 4th pouring hole 64 preferably approaches with first pouring hole 61, second pouring hole 62, and such two brick bodies butt joint back forms the integral body of balanced insulation, and reduces the repetition cost of heat insulating material, reduces unnecessary waste.As shown in Figure 3.During use, elder generation connects a plurality of brick bodies 1, clogs heat insulating material in the groove toward being incubated then, and is last toward first pouring hole 61, second pouring hole 62, the 3rd pouring hole 63 and the 4th pouring hole 64 interior concretings, can form to have heat insulating ability and the high brick body of intensity.

Claims (6)

1. self-heat conserving button card is laid bricks, comprise brick body (1), described brick body (1) has been disposed in order first fixture block (21) from the inside to the outside, second fixture block (22), the 3rd fixture block (31) and the 4th fixture block (32), between second fixture block (22) and the 3rd fixture block (31), be provided with dowel (4), the hollow space of described dowel (4) between second fixture block (22) and the 3rd fixture block (32) forms insulation groove and pouring hole, first fixture block (21), interface arrangment and first fixture block (21) that second fixture block (22) upper surface forms, the interface arrangment that second fixture block (22) soffit forms is suitable, the 3rd fixture block (31), interface arrangment and the 3rd fixture block (31) that the 4th fixture block (32) upper surface forms, the interface arrangment that the 4th fixture block (32) soffit forms is suitable, it is characterized in that: described insulation groove has two at least, comprise the first insulation groove (51), the second insulation groove (52), the described first insulation groove (51) is positioned at second fixture block (22) medial surface, and the second insulation groove (52) is positioned at the 3rd fixture block (31) medial surface; Between the dowel (4) at the first insulation groove (51) and middle part, be provided with first pouring hole (61), be provided with second pouring hole (62) between the dowel (4) at the second insulation groove (52) and middle part, described first pouring hole (61) is U-lag with second pouring hole (62).
2. self-heat conserving button card as claimed in claim 1 is laid bricks, it is characterized in that: the upper surface of described second fixture block (22) protrudes from the upper surface of first fixture block (21), the upper surface of the 3rd fixture block (31) protrudes from the upper surface of the 4th fixture block (32), and the upper surface of second fixture block (22), the upper surface of the 3rd fixture block (31) and the upper surface of dowel (4) form a concordant plane.
3. self-heat conserving button card as claimed in claim 2 is laid bricks, and it is characterized in that: the soffit of the soffit of described second fixture block (22), the 3rd fixture block (31) and the soffit of dowel (4) form a concordant plane.
4. self-heat conserving button card as claimed in claim 2 is laid bricks, and it is characterized in that: dowel (4) bottom surface between described second fixture block (22) and the 3rd fixture block (31) is the isosceles trapezoid groove (7) to brick body (1) indent.
5. lay bricks according to the described self-heat conserving button of arbitrary claim card in the claim 1 to 4, it is characterized in that: described brick body (1) also is provided with the 3rd insulation groove (53) and the 4th insulation groove (54), the 3rd insulation groove (53) and the 4th insulation groove (54) are positioned between the first insulation groove (52) and the second insulation groove (52), and the 3rd insulation groove (53) and the 4th insulation groove (54) positioned opposite, the 3rd insulation groove (53) and the 4th insulation groove (54) have outside opening end.
6. self-heat conserving button card as claimed in claim 5 is laid bricks, it is characterized in that: the side joint face of described brick body (1) one end has two curve slopes, be respectively first curve slope (11) and second curve slope (12), described first curve slope (11) tilts in from second fixture block (22) to brick body (1) and extends to the 3rd insulation groove (53), and described second curve slope (12) tilts in from the 3rd fixture block (31) to brick body (1) and extends to the 3rd insulation groove (53); The side joint face of described brick body (1) other end has two curve slopes, be respectively the 3rd curve slope (13) and the 4th curve slope (14), described the 3rd curve slope (13) tilts in from second fixture block (22) to brick body (1) and extends to the 4th insulation groove (54), and described the 4th curve slope (14) tilts in from the 3rd fixture block (31) to brick body (1) and extends to the 4th insulation groove (54).
CN 201320165991 2013-04-03 2013-04-03 Self-thermal-insulation buckled and clamped building block Expired - Fee Related CN203145298U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320165991 CN203145298U (en) 2013-04-03 2013-04-03 Self-thermal-insulation buckled and clamped building block

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320165991 CN203145298U (en) 2013-04-03 2013-04-03 Self-thermal-insulation buckled and clamped building block

Publications (1)

Publication Number Publication Date
CN203145298U true CN203145298U (en) 2013-08-21

Family

ID=48972837

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201320165991 Expired - Fee Related CN203145298U (en) 2013-04-03 2013-04-03 Self-thermal-insulation buckled and clamped building block

Country Status (1)

Country Link
CN (1) CN203145298U (en)

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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: 20130821

Termination date: 20210403