CN218758495U - Straw composite geothermal floor - Google Patents
Straw composite geothermal floor Download PDFInfo
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- CN218758495U CN218758495U CN202222331670.4U CN202222331670U CN218758495U CN 218758495 U CN218758495 U CN 218758495U CN 202222331670 U CN202222331670 U CN 202222331670U CN 218758495 U CN218758495 U CN 218758495U
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Abstract
The utility model relates to the technical field of geothermal floors, and discloses a straw composite geothermal floor, which comprises a protection mechanism, wherein a heat conduction mechanism is arranged at the bottom of the protection mechanism; the protection mechanism comprises a flame-retardant layer, the bottom surface of the flame-retardant layer is fixedly connected with a glass fiber layer, alumina particles and activated carbon particles are arranged in the glass fiber layer, and the bottom surface of the glass fiber layer is fixedly connected with a carbonization plate. This compound geothermal floor of straw, through fire-retardant protection of fire-retardant layer to geothermal floor fire prevention, play fixed action to aluminium oxide granule and active carbon particle through the glass fiber layer, step on when the people at geothermal floor, the aluminium oxide granule makes floor surface can the deformation arch, walk the back when the people, the surface resumes smoothly again, make geothermal floor surface have fine anti-skidding effect, adsorb through active carbon particle inside the bottom plate and indoor harmful gas and purify, the healthy environmental protection of carbomorphism board material, and the high non-deformable of intensity, carbomorphism board has the air-purifying effect simultaneously.
Description
Technical Field
The utility model relates to a geothermal floor technical field specifically is a compound geothermal floor of straw.
Background
Geothermal floor is through floor radiation heating, and the temperature upwards radiates from ground, along with people's improvement of standard of living to increase to the interior decoration demand, the demand to various floors increases year by year, various geothermal floor that appear on the market, including three-layer solid wood composite floor and multilayer solid wood composite floor etc. as the floor that the heating was used.
The existing composite floor is formed by gluing a plurality of layers of wood boards and has peculiar smell, so that harmful gas can be emitted when the composite floor conducts heat and is heated, and the existing composite floor has large heat conduction loss and low efficiency.
We therefore propose a straw composite geothermal floor to solve the problems in the background above.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a straw composite geothermal floor to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a straw composite geothermal floor comprises a protection mechanism, wherein a heat conduction mechanism is arranged at the bottom of the protection mechanism;
the protection mechanism comprises a flame-retardant layer, the bottom surface of the flame-retardant layer is fixedly connected with a glass fiber layer, alumina particles and activated carbon particles are arranged in the glass fiber layer, and the bottom surface of the glass fiber layer is fixedly connected with a carbonization plate;
through fire-retardant protection of fire-retardant layer to geothermal floor fire prevention, play fixed action to aluminium oxide granule and active carbon particle through the glass fiber layer, step on when the people steps on geothermal floor, the aluminium oxide granule makes floor surface can the deformation arch, walk the back when the people, the surface resumes smoothly again, make geothermal floor surface have fine anti-skidding effect, adsorb the purification to inside and indoor harmful gas of bottom plate through the active carbon particle, the healthy environmental protection of carbomorphism board material, and the high non-deformable of intensity, carbomorphism board has the air-purifying action simultaneously, thereby avoid current compound geothermal floor to give off harmful gas's problem when rising temperature.
The heat conduction mechanism comprises an upper heat conduction plate, a heat conduction column is fixedly connected in the upper heat conduction plate, a lower heat conduction plate is fixedly connected at the lower end of the heat conduction column, a straw base layer is arranged on the upper surface of the lower heat conduction plate, and a waterproof layer is fixedly connected on the bottom surface of the lower heat conduction plate.
Carry out water proof through the waterproof layer to ground, receive floor bottom heat through lower heat-conducting plate, transmit supreme heat-conducting plate through the heat conduction post, thereby avoid the problem that compound geothermal floor heat conduction efficiency is low, run through the straw basic unit through a plurality of heat conduction posts, go up in heat-conducting plate and the carbomorphism board, it is fixed to make it connect, tenon fourth of the twelve earthly branches connection structure in the similar to traditional handicraft, thereby reduce glue and use, avoid harmful gas's production, fill geothermal floor inside through the straw basic unit, recycle the straw, reduce timber and use, thereby resources are saved protects the environment, the inside packing of straw basic unit has tiny active carbon particle to air-purifying simultaneously.
Preferably, the glass fiber layer is honeycomb-shaped, the alumina particles are filled in the glass fiber layer, and the activated carbon particles are uniformly distributed in the glass fiber layer.
The honeycomb glass fiber layer is convenient for fixing the alumina particles and the activated carbon particles, and is beneficial to playing the anti-skid function of the alumina particles.
Preferably, the upper heat conducting plate is internally provided with air holes, and the air holes are uniformly distributed in the upper heat conducting plate.
Go up the inside bleeder vent of having seted up of heat-conducting plate, increase the gas permeability on geothermal floor, the heat of being convenient for circulates, keeps inside temperature balanced, avoids leading to structural deformation because of inside cold and hot inequality.
Preferably, the lower end of the heat conduction column penetrates through the interior of the upper heat conduction plate, and the number of the heat conduction columns is multiple.
Preferably, the upper end of the heat conduction column is fixedly connected with the interior of the carbonization plate, and the lower end of the heat conduction column penetrates through the interior of the straw base layer.
Run through in straw basic unit, last heat-conducting plate and the carbomorphism board through a plurality of heat conduction posts, connect it fixedly, be similar to the mortise-tenon joint structure in the traditional handicraft to reduce glue and use, avoid harmful gas's production.
Preferably, the straw base layer is arranged between the upper heat-conducting plate and the lower heat-conducting plate, and activated carbon particles are uniformly distributed in the straw base layer.
Through the inside packing of straw basic unit to geothermal floor, recycle the straw, reduce timber and use to resources are saved protects the environment, and the inside packing of straw basic unit has tiny active carbon granule can air-purifying simultaneously.
Preferably, the carbonized plate and the lower heat conducting plate are the same, and the side surfaces of the carbonized plate and the lower heat conducting plate are both polished.
The side surfaces of the carbonization plate and the lower heat conducting plate are both polished, so that the edge is smooth, the installation is smooth, and the gap is small.
Compared with the prior art, the utility model provides a straw composite geothermal floor possesses following beneficial effect:
1. this compound geothermal floor of straw, through fire-retardant protection of fire-retardant layer to geothermal floor fire prevention, play fixed action to aluminium oxide granule and active carbon particle through the glass fiber layer, step on when the people at geothermal floor, the aluminium oxide granule makes floor surface can the deformation arch, walk the back when the people, the surface resumes smoothly again, make geothermal floor surface have fine anti-skidding effect, adsorb the purification to inside and indoor harmful gas of bottom plate through the active carbon particle, the healthy environmental protection of carbomorphism board material, and the high non-deformable of intensity, carbomorphism board has the air-purifying effect simultaneously, thereby avoid current compound geothermal floor to give off harmful gas's problem when rising temperature.
2. This compound geothermal floor of straw, carry out water proof through the waterproof layer to ground, receive floor bottom heat through heat-conducting plate down, transmit supreme heat-conducting plate through the heat conduction post, thereby avoid the problem that compound geothermal floor heat conduction efficiency is low, run through the straw basic unit through a plurality of heat conduction posts, go up in heat-conducting plate and the carbomorphism board, make it connect fixedly, be similar to the mortise-tenon joint structure in the traditional handicraft, thereby reduce glue and use, avoid harmful gas's production, fill geothermal floor inside through the straw basic unit, recycle the straw, it uses to reduce timber, thereby resources are saved protects the environment, the inside packing of straw basic unit has tiny active carbon particle can air-purifying simultaneously.
Drawings
FIG. 1 is a schematic view of the internal structure of the present invention;
FIG. 2 is a schematic view of the internal structure of the glass fiber layer of the present invention;
FIG. 3 is a schematic view of the connection structure of the upper heat-conducting plate of the present invention;
fig. 4 is a schematic view of the connection structure of the lower heat-conducting plate of the present invention.
Wherein: 1. a protection mechanism; 2. a heat conducting mechanism; 101. a flame retardant layer; 102. a glass fiber layer; 103. alumina particles; 104. activated carbon particles; 105. carbonizing the plate; 201. an upper heat conducting plate; 202. a heat-conducting column; 203. a lower heat conducting plate; 204. a straw base layer; 205. and a waterproof layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Please refer to fig. 1-4.
A straw composite geothermal floor comprises a protection mechanism 1, wherein a heat conduction mechanism 2 is arranged at the bottom of the protection mechanism 1;
the protection mechanism 1 comprises a flame-retardant layer 101, wherein a glass fiber layer 102 is fixedly connected to the bottom surface of the flame-retardant layer 101, alumina particles 103 and activated carbon particles 104 are arranged in the glass fiber layer 102, and a carbonization plate 105 is fixedly connected to the bottom surface of the glass fiber layer 102;
through fire-retardant layer 101 to geothermol power floor fire prevention flame retardant protection, play the fixed action to aluminium oxide granule 103 and active carbon granule 104 through glass fiber layer 102, step on when the people is on the geothermol power floor, aluminium oxide granule 103 makes floor surface can the deformation arch, after the people walks, the surface resumes smoothly again, make geothermol power floor surface have fine anti-skidding effect, adsorb the purification to inside and indoor harmful gas of bottom plate through active carbon granule 104, the healthy environmental protection of carbomorphism board 105 material, and the high non-deformable of intensity, carbomorphism board 105 has the air-purifying effect simultaneously, thereby avoid current compound geothermol power floor to give off harmful gas's problem when rising temperature.
The heat conducting mechanism 2 comprises an upper heat conducting plate 201, a heat conducting column 202 is fixedly connected inside the upper heat conducting plate 201, a lower heat conducting plate 203 is fixedly connected at the lower end of the heat conducting column 202, a straw base layer 204 is arranged on the upper surface of the lower heat conducting plate 203, and a waterproof layer 205 is fixedly connected on the bottom surface of the lower heat conducting plate 203.
Carry out water proof through waterproof layer 205 to ground, receive floor bottom heat through lower heat-conducting plate 203, transmit to last heat-conducting plate 201 through heat conduction post 202, thereby avoid the problem that compound geothermal floor heat conduction efficiency is low, run through straw basic unit 204 through a plurality of heat conduction posts 202, go up in heat-conducting plate 201 and carbomorphism board 105, make it connect fixedly, be similar to the mortise-tenon joint structure in the traditional handicraft, thereby reduce glue and use, avoid harmful gas's production, fill geothermol power floor inside through straw basic unit 204, recycle the straw, reduce timber and use, thereby resources are saved protects the environment, straw basic unit 204 inside packing has tiny active carbon granule 104 can air-purifying simultaneously.
The glass fiber layer 102 is honeycomb-shaped, alumina particles 103 are filled in the glass fiber layer 102, and activated carbon particles 104 are uniformly distributed in the glass fiber layer 102.
The honeycomb-shaped glass fiber layer 102 facilitates the fixation of the alumina particles 103 and the activated carbon particles 104, and at the same time, facilitates the anti-skid function of the alumina particles 103.
The upper heat conducting plate 201 is internally provided with air holes, and the air holes are uniformly distributed in the upper heat conducting plate 201.
Go up the inside bleeder vent of having seted up of heat-conducting plate 201, increase the gas permeability on geothermol power floor, the heat circulation of being convenient for keeps inside temperature balanced, avoids leading to structural deformation because of inside cold and hot inequality.
The lower end of the heat-conducting column 202 penetrates the inside of the upper heat-conducting plate 201, and a plurality of heat-conducting columns 202 are provided.
The upper end of the heat-conducting column 202 is fixedly connected with the interior of the carbonization plate 105, and the lower end of the heat-conducting column 202 penetrates through the interior of the straw substrate 204.
The heat-conducting columns 202 penetrate through the straw base layer 204, the upper heat-conducting plate 201 and the carbonization plate 105 and are fixedly connected, and the structure is similar to a mortise-tenon connection structure in the traditional process, so that the use of glue is reduced, and the generation of harmful gas is avoided.
The straw base layer 204 is arranged between the upper heat conducting plate 201 and the lower heat conducting plate 203, and the activated carbon particles 104 are uniformly distributed in the straw base layer 204.
Through straw basic unit 204 to the inside packing of geothermal floor, recycle the straw, reduce timber and use to resources are saved protects the environment, and the inside packing of straw basic unit 204 has tiny active carbon granule 104 can air-purifying simultaneously.
The charring plate 105 is the same as the lower heat conducting plate 203, and the side surfaces of the charring plate 105 and the lower heat conducting plate 203 adopt polishing processes.
The side surfaces of the charring plate 105 and the lower heat conducting plate 203 are polished, so that the edge is smooth, the installation is smooth, and the gap is small.
When in use, the geothermal floor is protected from fire and flame through the flame retardant layer 101, the alumina particles 103 and the activated carbon particles 104 are fixed through the glass fiber layer 102, when a person steps on the geothermal floor, the alumina particles 103 deform and protrude the surface of the floor, and when the person walks, the surface returns to be flat, so that the surface of the geothermal floor has a good anti-slip effect, harmful gases inside the floor and in the room are adsorbed and purified through the activated carbon particles 104, the carbonized board 105 is healthy and environment-friendly, and has high strength and is not easy to deform, and meanwhile, the carbonized board 105 has an air purifying effect, thereby avoiding the problem that the existing composite geothermal floor emits harmful gases when being heated, performing waterproof protection on the ground through the waterproof layer 205, receiving heat at the bottom of the floor through the lower heat conducting plate 203, transferring the heat to the upper heat conducting plate 201 through the heat conducting columns 202, thereby avoiding the problem of low heat conduction efficiency of the composite geothermal floor, penetrating through the plurality of heat conducting columns 202, the straw base layer 204, the upper heat conducting plate 201 and the carbonized board 105, fixing the straw, similar to the mortise connection structure in the traditional process, thereby reducing the use of the harmful gases, reducing the filling of the straw base layer 204, and reducing the use of the active carbon particles, and reducing the use of the wood, and saving the wood, and purifying the wood, and saving the wood resources of the wood, and saving the wood.
It should be noted that, in this document, relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (7)
1. The utility model provides a compound geothermal floor of straw, includes protection machanism (1), its characterized in that: the bottom of the protection mechanism (1) is provided with a heat conduction mechanism (2);
the protection mechanism (1) comprises a flame-retardant layer (101), the bottom surface of the flame-retardant layer (101) is fixedly connected with a glass fiber layer (102), alumina particles (103) and activated carbon particles (104) are arranged in the glass fiber layer (102), and the bottom surface of the glass fiber layer (102) is fixedly connected with a carbonization plate (105);
heat-conducting mechanism (2) are including heat-conducting plate (201), go up heat-conducting plate (201) inside fixedly connected with heat conduction post (202), heat-conducting plate (203) under heat conduction post (202) lower extreme fixedly connected with, heat-conducting plate (203) upper surface is provided with straw basic unit (204) down, heat-conducting plate (203) bottom surface fixedly connected with waterproof layer (205) down.
2. The straw composite geothermal floor according to claim 1, wherein: the glass fiber layer (102) is honeycomb-shaped, the alumina particles (103) are filled in the glass fiber layer (102), and the activated carbon particles (104) are uniformly distributed in the glass fiber layer (102).
3. The straw composite geothermal floor according to claim 1, wherein: the upper heat conducting plate (201) is internally provided with air holes, and the air holes are uniformly distributed in the upper heat conducting plate (201).
4. The straw composite geothermal floor according to claim 1, wherein: the lower end of the heat conduction column (202) penetrates through the interior of the upper heat conduction plate (201), and a plurality of heat conduction columns (202) are arranged.
5. The straw composite geothermal floor according to claim 1, wherein: the upper end of the heat-conducting column (202) is fixedly connected with the interior of the carbonization plate (105), and the lower end of the heat-conducting column (202) penetrates through the interior of the straw base layer (204).
6. The straw composite geothermal floor according to claim 1, wherein the straw composite geothermal floor comprises: the straw base layer (204) is arranged between the upper heat conducting plate (201) and the lower heat conducting plate (203), and the activated carbon particles (104) are uniformly distributed in the straw base layer (204).
7. The straw composite geothermal floor according to claim 1, wherein: the carbonized plate (105) is the same as the lower heat conducting plate (203), and the side surfaces of the carbonized plate (105) and the lower heat conducting plate (203) both adopt polishing processes.
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CN202222331670.4U CN218758495U (en) | 2022-09-01 | 2022-09-01 | Straw composite geothermal floor |
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CN202222331670.4U CN218758495U (en) | 2022-09-01 | 2022-09-01 | Straw composite geothermal floor |
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