CN205421600U - Novel thermal -insulated thermal insulation wall - Google Patents

Novel thermal -insulated thermal insulation wall Download PDF

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Publication number
CN205421600U
CN205421600U CN201620124982.XU CN201620124982U CN205421600U CN 205421600 U CN205421600 U CN 205421600U CN 201620124982 U CN201620124982 U CN 201620124982U CN 205421600 U CN205421600 U CN 205421600U
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wall
lateral body
heat insulating
layer
heat
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CN201620124982.XU
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Chinese (zh)
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黄照明
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Guangdong Chengsheng Building Materials Technology Co.,Ltd.
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Zhongshan Chengsheng Building Material Development Co ltd
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Abstract

The utility model discloses a novel thermal -insulated thermal insulation wall (100) are folded the step layer upon layer by a plurality of layers wall body layer (10) and are formed, and every layer wall body layer (10) including first wall lateral body (1) and second wall lateral body (2), first wall lateral body (1) and second wall lateral body (2) between be equipped with the body (3) that keeps warm, the heat preservation body (3) of adjacent wall body layer (10) the setting of staggering each other. The utility model discloses simple structure, thermal -insulated heat preservation is effectual.

Description

A kind of novel heat insulating wall
[technical field]
This utility model relates to a kind of novel heat insulating wall.
[background technology]
The body of wall that existing sandwiched thermal-insulating wall is typically built by laying bricks or stones by inside and outside two leaves, centre adds heat-insulation layer and constitutes, in order to strengthen the stability of interior siphonal lobe wall, needing to make steel tie mesh sheet or steel tie passes heat-insulation layer, the two ends (typically with there being crotch) of reinforcing bar are built by laying bricks or stones at inside and outside leaf within the walls.This kind of wall body structure is novel, energy-saving heat preserving, but this kind of body of wall has following defect: the connection of interior siphonal lobe wall connects mainly by steel tie mesh sheet or steel tie, firm connection for interior siphonal lobe wall, the usage amount of reinforcing bar is bigger, with high costs, additionally reinforcement ratio is easier to corrosive degradation and even lost efficacy, internally firmly connecting of siphonal lobe wall impacts, furthermore, reinforcing bar is built by laying bricks or stones in inside and outside leaf wall through heat-insulation layer and two ends, owing to the capacity of heat transmission of reinforcing bar is strong, reinforcing bar becomes the heat bridge of transmission heat, impacts the heat insulating effect of body of wall.Meanwhile, only poor by its stability of combined wall and the shock resistance of siphonal lobe wall composition in bar connecting.
At present, also someone uses the structure of rowlock wall to obtain the effect of insulation.Rowlock wall is to build with brick side or flat, top-cross is for the hollow wall built by laying bricks or stones, is internally formed and has some cavitys.But rowlock wall also has following deficiency:, top-cross flat with brick causes connection interior wall the most with the brick of exterior wall for building by laying bricks or stones, and heat is transmitted by these bricks, and the effect causing heat-insulation and heat-preservation is the most excellent;Existing to build by laying bricks or stones in a large number to enclose additionally, due to inside and form cavity, the anti-seismic performance of rowlock wall is poor.
Therefore, this utility model is based on above deficiency and produces.
[utility model content]
This utility model purpose is to overcome the deficiencies in the prior art, it is provided that a kind of simple in construction, the novel heat insulating wall that heat insulation and preservation effect is good.
This utility model is achieved through the following technical solutions:
A kind of novel heat insulating wall 100, if being formed by dried layer body of wall layer 10 bond layer by layer, it is characterized in that: every layer of body of wall layer 10 includes the first wall lateral body 1 and the second wall lateral body 2, being provided with thermal insulator 3 between described the first wall lateral body 1 and the second wall lateral body 2, the thermal insulator 3 of neighboring walls layer 10 mutually staggers setting.
Novel heat insulating wall 100 as above, it is characterised in that: the width of the first described wall lateral body 1 is more than the width of the second wall lateral body 2.
Novel heat insulating wall 100 as above, it is characterised in that: 2 times of the width of the first described wall lateral body 1 are more than the width of heat-insulating and heat-preserving wall 100.
Novel heat insulating wall 100 as above, it is characterized in that: the first described wall lateral body 1 is formed by multilamellar the first lateral body brick 101 bond, the second described wall lateral body 2 is formed by multilamellar the second lateral body brick 201 bond, and in every layer of body of wall layer 10, the number of plies of the first lateral body brick 101 is more than the number of plies of the second lateral body brick 201.
Novel heat insulating wall 100 as above, it is characterised in that: described thermal insulator 3 uses foam concrete heat-preserving block or air entrained concrete heat insulating block or foam glass heat insulating block or foam ceramic thermal insulation block or light aggregate concrete heat-insulating block or pearlite insulation block or extruded polystyrene board heat insulating block or expansion polyphenyl plate heat preserving block or hard-foam polyurethane plate heat insulating block or rock cotton board heat insulating block or vacuum heat-insulating plate heat insulating block or pre-manufactured inorganic light-weight aggregate thermal insulation mortar heat insulating block or composite foam concrete plate heat insulating block or phenolic-aldehyde heat-insulation board heat insulating block.
Novel heat insulating wall 100 as above, it is characterised in that: it is respectively equipped with gap 4 between described thermal insulator 3 and the first wall lateral body 1 and the second wall lateral body 2.
Compared with prior art, this utility model has the following advantages:
1, if, this utility model is built by the stacking layer by layer of dried layer body of wall and is formed, and is provided with thermal insulator between the first wall lateral body and the second wall lateral body of composition body of wall layer, and the thermal insulator of neighboring walls layer mutually staggers setting.Wherein, thermal insulator plays good heat insulating effect, the thermal insulator of neighboring walls layer mutually staggers setting, it is no longer necessary to the reinforcing bar using poor durability through heat-insulation layer to connect the cumbersome process of inside and outside leaf wall, thus on the basis of less working procedure, reach preferable heat insulating effect, and the use reducing reinforcing bar has been greatly reduced cost, and owing to the thermal insulator of neighboring walls layer mutually staggers setting, the most neighbouring body of wall layer is engaged, it is not necessary to burying underground of reinforcing bar also can guarantee that whole heat-insulating and heat-preserving wall stability and shock resistance are good.
2,2 times of the width of the first wall lateral body of the present utility model are more than the width of heat-insulating and heat-preserving wall.The design of such structure can make the occlusion effect of neighbouring two-layer body of wall layer more preferably, more can ensure that the stability of heat-insulating and heat-preserving wall.
3, this utility model simple in construction, designs ingenious, and using effect is the best, is suitable for popularization and application.
[accompanying drawing explanation]
Fig. 1 is this utility model embodiment 1 axonometric chart;
Fig. 2 is the axonometric chart of the body of wall layer of this utility model embodiment 1;
Fig. 3 is the sectional view of this utility model embodiment 1;
Fig. 4 is the sectional view of this utility model embodiment 2.
[detailed description of the invention]
Below in conjunction with the accompanying drawings this utility model is further described:
Embodiment 1:
As shown in Figure 1 to Figure 3, a kind of novel heat insulating wall 100, if being formed by dried layer body of wall layer 10 bond layer by layer, every layer of body of wall layer 10 includes the first wall lateral body 1 and the second wall lateral body 2, being provided with thermal insulator 3 between described the first wall lateral body 1 and the second wall lateral body 2, the thermal insulator 3 of neighboring walls layer 10 mutually staggers setting.Wherein, thermal insulator 3 plays good heat insulating effect, the thermal insulator 3 of neighboring walls layer 10 mutually staggers setting, it is no longer necessary to the reinforcing bar using poor durability and connects through heat-insulation layer interior, the cumbersome process of siphonal lobe wall, thus on the basis of less working procedure, reach preferable heat insulating effect, and the use reducing reinforcing bar has been greatly reduced cost, and owing to the thermal insulator 3 of neighboring walls layer 10 mutually staggers setting, the most neighbouring body of wall layer 10 is engaged, need not burying underground of reinforcing bar and also can guarantee that whole heat-insulating and heat-preserving wall stability and shock resistance are good.
As it is shown on figure 3, the width of the first described wall lateral body 1 is more than the width of the second wall lateral body 2.Or, 2 times of the width of the first wall lateral body 1 are more than the width of heat-insulating and heat-preserving wall 100.The design of such structure can make neighbouring two-layer body of wall layer 10 be engaged all the time, and occlusion effect is more preferable, more can ensure that the stability of heat-insulating and heat-preserving wall 100.
As shown in Figure 2 and Figure 3, the first described wall lateral body 1 is formed by multilamellar the first lateral body brick 101 bond, the second described wall lateral body 2 is formed by multilamellar the second lateral body brick 201 bond, and in every layer of body of wall layer 10, the number of plies of the first lateral body brick 101 is more than the number of plies of the second lateral body brick 201.In every layer of body of wall layer 10, the number of plies of the first lateral body brick 101 and the second lateral body brick 201 is unequal, and the design of this structure can reach the purpose of saving of labor in heat-insulating and heat-preserving wall 100 building course.Certainly, in every layer of body of wall layer 10, the number of plies of the first lateral body brick 101 can also be less equal than the number of plies of the second lateral body brick 201.
As shown in Figure 2, Figure 3, Figure 4, described thermal insulator 3 is used masonry way to be formed by heat insulating block 301 or after the first wall lateral body 1 contained by every layer of body of wall layer 10 and the second wall lateral body 2 bond complete, and inserts heat insulating block 301 and formed in the space formed between the two;Or, after the first wall lateral body 1 or the second wall lateral body 2 have been built by laying bricks or stones, formed at the first wall lateral body 1 or the second wall lateral body 2 side paste heat-preserving block 301, build the second wall lateral body 2 or the first wall lateral body 1 the most again in heat insulating block 301 side by laying bricks or stones;Or, in factories, first heat insulating block 301 and the first lateral body brick 101 or the second lateral body brick 201 are grouped together into entirety, then composite entity are transported to scene, then build combination by laying bricks or stones with the second lateral body brick 201 or the first lateral body brick 101.Thermal insulator 3 is foam concrete heat-preserving block or air entrained concrete heat insulating block or foam glass heat insulating block or foam ceramic thermal insulation block or light aggregate concrete heat-insulating block or pearlite insulation block or extruded polystyrene board heat insulating block or expansion polyphenyl plate heat preserving block or hard-foam polyurethane plate heat insulating block or rock cotton board heat insulating block or vacuum heat-insulating plate heat insulating block or pre-manufactured inorganic light-weight aggregate thermal insulation mortar heat insulating block or composite foam concrete plate heat insulating block or phenolic-aldehyde heat-insulation board heat insulating block.
Used by lateral body brick 101, lateral body brick 201 and heat insulating block 301 bond, binding material uses mortar or binding agent.
Lateral body brick 101, lateral body brick 201 surface can be from decorative layers, and heat-insulating and heat-preserving wall 100 outward appearance so formed is the most beautiful.
Embodiment 2:
As shown in Figure 4, embodiment 2 is with the difference of embodiment 1:
It is respectively equipped with gap 4 between described thermal insulator 3 and the first wall lateral body 1 and the second wall lateral body 2.It is of course also possible to only arrange gap 4 between the first wall lateral body 1 and thermal insulator 3, or only gap 4 is set between the second wall lateral body 2 and thermal insulator 3.

Claims (6)

1. a novel heat insulating wall (100), if being formed by dried layer body of wall layer (10) bond layer by layer, it is characterized in that: every layer of body of wall layer (10) includes the first wall lateral body (1) and the second wall lateral body (2), being provided with thermal insulator (3) between the first described wall lateral body (1) and the second wall lateral body (2), the thermal insulator (3) of neighboring walls layer (10) mutually staggers setting.
Novel heat insulating wall the most according to claim 1 (100), it is characterised in that: the width of the first described wall lateral body (1) is more than the width of the second wall lateral body (2).
Novel heat insulating wall the most according to claim 1 (100), it is characterised in that: 2 times of the width of the first described wall lateral body (1) are more than the width of heat-insulating and heat-preserving wall (100).
4. according to the novel heat insulating wall (100) described in claim 1 or 2 or 3, it is characterized in that: the first described wall lateral body (1) is formed by multilamellar the first lateral body brick (101) bond, the second described wall lateral body (2) is formed by multilamellar the second lateral body brick (201) bond, and in every layer of body of wall layer (10), the number of plies of the first lateral body brick (101) is more than the number of plies of the second lateral body brick (201).
5. according to the novel heat insulating wall (100) described in claim 1 or 2 or 3, it is characterised in that: described thermal insulator (3) uses foam concrete heat-preserving block or air entrained concrete heat insulating block or foam glass heat insulating block or foam ceramic thermal insulation block or light aggregate concrete heat-insulating block or pearlite insulation block or extruded polystyrene board heat insulating block or expansion polyphenyl plate heat preserving block or hard-foam polyurethane plate heat insulating block or rock cotton board heat insulating block or vacuum heat-insulating plate heat insulating block or pre-manufactured inorganic light-weight aggregate thermal insulation mortar heat insulating block or composite foam concrete plate heat insulating block or phenolic-aldehyde heat-insulation board heat insulating block.
6. according to the novel heat insulating wall (100) described in claim 1 or 2 or 3, it is characterised in that: it is respectively equipped with gap (4) between described thermal insulator (3) and the first wall lateral body (1) and the second wall lateral body (2).
CN201620124982.XU 2016-02-17 2016-02-17 Novel thermal -insulated thermal insulation wall Active CN205421600U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620124982.XU CN205421600U (en) 2016-02-17 2016-02-17 Novel thermal -insulated thermal insulation wall

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620124982.XU CN205421600U (en) 2016-02-17 2016-02-17 Novel thermal -insulated thermal insulation wall

Publications (1)

Publication Number Publication Date
CN205421600U true CN205421600U (en) 2016-08-03

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
CN (1) CN205421600U (en)

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CP01 Change in the name or title of a patent holder

Address after: 528400 by Shagang Road, Gangkou Town, Zhongshan City, Guangdong Province (behind Yinghua hardware factory)

Patentee after: Guangdong Chengsheng Building Materials Technology Co.,Ltd.

Address before: 528400 by Shagang Road, Gangkou Town, Zhongshan City, Guangdong Province (behind Yinghua hardware factory)

Patentee before: ZHONGSHAN CHENGSHENG BUILDING MATERIAL DEVELOPMENT Co.,Ltd.

CP01 Change in the name or title of a patent holder