CN102829507B - Spontaneous heating multilayer solid wood composite floor - Google Patents

Spontaneous heating multilayer solid wood composite floor Download PDF

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Publication number
CN102829507B
CN102829507B CN201210374620.2A CN201210374620A CN102829507B CN 102829507 B CN102829507 B CN 102829507B CN 201210374620 A CN201210374620 A CN 201210374620A CN 102829507 B CN102829507 B CN 102829507B
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China
Prior art keywords
winding displacement
solid wood
displacement groove
composite floor
wood composite
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CN201210374620.2A
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CN102829507A (en
Inventor
吴传明
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Suzhou Kang Carbon Warm Home Technology Co., Ltd.
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KOM FLOOR (SUZHOU) CO Ltd
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Abstract

The invention provides a spontaneous heating multilayer solid wood composite floor. The spontaneous heating multilayer solid wood composite floor comprises a top layer, a bottom layer and an interlayer between the top layer and the bottom layer, wherein at least one flat cable slot is arranged on the interlayer in the longitude direction thereof, and the at least one flat cable slot is equipped with an electrical heating coil therein which is connected with the power supply through the flat cable slot. The electrical heating coil is a kind of carbon nanocoil which is made from a carbon nano composite material. The wall surface of the at least one flat cable slot is equipped with metal material heat conducting layer. The spontaneous heating multilayer solid wood composite floor provided by the invention has simply structure and is easy to be installed by way of machining a flat cable slot on the interlayer and arranging carbon nanocoil in the flat cable slot, and the heat conducting layer on the surface of the flat cable slot is capable of uniformly conducting heat to the floor surface because the carbon nanocoil has very high electricity-heat transfer efficiency, so that the composite floor provided by the invention has low energy consumption, is very safe and suitable for office, household and other various of sites, and has extensive application.

Description

Spontaneous heating multi-layer solid wood composite floor
Technical field
the present invention relates to a kind of composite floor board, relate more specifically to a kind of spontaneous heating multi-layer solid wood composite floor.
Background technology
in the prior art, self-heating floor having been carried out to more research, is generally that electric heating material is arranged in floor, by this electric heating material in floor being switched on to reach the object of heating, thereby makes floor generate heat to warm oneself.On the floor of this kind, be also provided with the metalwork of conduction, in installation process, two adjacent floors are connected by metalwork, thereby reach the object to the power supply heating of whole space.But, in use, if having electric heating material or metalwork on any one or more plates damaged, all floors of installing will be de-energized, and be difficult to check out to be any piece plate existing problem, and so just must cause practicality not strong, cause great difficulty to user.Secondly, even if checked out the plate going wrong, change, because electric heating material is embedded in plate, metalwork is also hard-wired, must change whole problematic plate, and cost is suitable high and pretty troublesome, particularly multi-layer solid wood composite floor, this obviously can not meet the demand of domestic consumer.In addition, the electric heating material that floor of the prior art is used or equipment safety are good not enough, and the floor that family is used is difficult to avoid to contact water, and this is obviously danger close.
Summary of the invention
for overcoming the problems referred to above of the prior art, the invention provides a kind of spontaneous heating multi-layer solid wood composite floor, it installs simple, safety and environmental protection.
the technical solution used in the present invention is, a kind of spontaneous heating multi-layer solid wood composite floor, comprise upper strata, bottom and be arranged at upper strata and bottom between intermediate layer, wherein, on this intermediate layer, offer along its length and be formed with at least one winding displacement groove, in at least one winding displacement groove, be furnished with Electrothermic wire, this Electrothermic wire passes this winding displacement groove and is electrically connected with power supply.
further, Electrothermic wire is the carbon nano wire of being made up of carbon nano-composite material.
further, the wall surface of at least one winding displacement groove is provided with metal material heat-conducting layer.
preferably, this metal material heat-conducting layer is aluminium alloy layer.
further, this at least one winding displacement groove comprises pars intermedia and a part of sidewall by this pars intermedia hollow sidepiece forming that stretches out.
preferably, metal material heat-conducting layer is filled full whole sidepiece.
more preferably, the cross section of the pars intermedia of winding displacement groove is rectangle or circle or arc.
further, winding displacement groove is two, and these two winding displacement grooves are arranged along the width in intermediate layer.
further, Electrothermic wire is one, and it is successively through each winding displacement groove.
again further, the quantity of Electrothermic wire is identical with winding displacement groove, and each Electrothermic wire is respectively separately through a winding displacement groove.
compared with prior art, the present invention has following advantages: spontaneous heating multi-layer solid wood composite floor provided by the present invention, by being provided with at least one winding displacement groove on interbed therein, in each winding displacement groove, be furnished with the Electrothermic wire being electrically connected with power supply, this kind of Electrothermic wire is a kind of carbon nano wire of being made up of carbon nano-composite material, electric conversion rate is high, good insulating, thereby very safe, the wall surface of winding displacement groove is also provided with metal material heat-conducting layer, its heat that this carbon nano wire can be sent conducts equably, and floor is simple in structure, install or change and be all easy to.In addition, spontaneous heating multi-layer solid wood composite floor of the present invention, can one or several floor on winding displacement groove use an Electrothermic wire, in use procedure, multiple Electrothermic wires are connected with power supply after being connected to terminals, it is the heating on one or a few floor of each Electrothermic wire control, if find that a part of floor heating function is not all right, just can promptly pinpoint the problems and change, and this material is because good insulating, the power down source of even can breaking can be changed, and these terminals are also electrically connected with a temperature controller, to control the work of Electrothermic wire.In addition, if only need to, in certain position heating in room, only need to heat part time, can set up in this position independent power interface.Spontaneous heating multi-layer solid wood composite floor of the present invention is simple in structure, easy for installation, and safety, environmental protection, applicable to the librarian use of each kind of groups.
Brief description of the drawings
fig. 1 is the cross-sectional schematic of spontaneous heating multi-layer solid wood composite floor of the present invention;
fig. 2 is the front elevational schematic of spontaneous heating multi-layer solid wood composite floor of the present invention;
fig. 3 is the schematic diagram of the winding displacement groove of spontaneous heating multi-layer solid wood composite floor of the present invention.
in figure: 1, upper strata; 2, intermediate layer; 21, winding displacement groove; 211, pars intermedia; 212, sidepiece; 22, Electrothermic wire; 23, metal material heat-conducting layer; 3, bottom.
Detailed description of the invention
below in conjunction with accompanying drawing, preferred embodiment of the present invention is described in detail, thereby so that advantages and features of the invention are easier to be it will be appreciated by those skilled in the art that protection scope of the present invention is made and more removed clear and definite defining.
consult accompanying drawing, Fig. 1 and Fig. 2 are respectively cross-sectional schematic and the front elevational schematic of an embodiment of spontaneous heating multi-layer solid wood composite floor of the present invention.Spontaneous heating multi-layer solid wood composite floor in this embodiment comprise upper strata 1, bottom 3 and be arranged at upper strata 1 and bottom 3 between intermediate layer 2, on the upper surface in intermediate layer 2, offer along its length and be formed with two winding displacement grooves 21, in two winding displacement grooves, be all furnished with Electrothermic wire 22, Electrothermic wire 22 passes winding displacement groove 21 and is electrically connected with power supply, and the wall surface of winding displacement groove 21 is provided with metal material heat-conducting layer 23.Winding displacement groove 21 comprises pars intermedia 211 and the part by two sidepieces of pars intermedia 211 two the hollow sidepieces 212 that form that stretch out respectively, the carbon nano wire of Electrothermic wire 22 for being made up of carbon nano wire composite, Electrothermic wire 22 is contained in the pars intermedia 211 of winding displacement groove 21.Metal material heat-conducting layer 23 is aluminium alloy layer, it covers on the wall surface of pars intermedia 211, and fill whole sidepiece 212,, in the floor of the both sides of Electrothermic wire 22, be embedded with aluminium alloy layer, so just, heat can be conducted to both sides, aluminium alloy layer has good heat-conductive characteristic, thereby floor can be uniformly heated.Carbon nano wire is just converted to heat energy by electric energy efficiently in the moment switching on power, heat supply towards periphery, and the heat that aluminium alloy layer sends carbon nanometer conducts better to floor, to warm oneself to floor heating more equably.In this embodiment, the cross section of the pars intermedia 211 of winding displacement groove 21 is rectangle, certainly also can be set to circle or arc here, or other required any shapes, as long as can reach the function through Electrothermic wire 22.Two winding displacement grooves 21 are arranged along the width in intermediate layer 2, certainly, the number of winding displacement groove 21 can change according to the size on floor, can be provided with more, also can be made as one, can be arranged on the upper surface in intermediate layer 2, also can be arranged on the lower surface in intermediate layer 2, or be set to have on upper surface and lower surface.Substitute as one, also can be arranged on the centre in intermediate layer 1, thermal conduction effect is better in this case, certainly, and also can be according to above-mentioned three kinds of set-up modes any combination.Fig. 3 illustrates the shape of the winding displacement groove 21 of an embodiment, the pars intermedia 211 of this winding displacement groove 21 and sidepiece 212 are hollow, in use, on the wall surface of pars intermedia 211 and 212 li of sidepieces be equipped with aluminium alloy layer, this sidepiece 212 can conduct heat to both sides, thereby it is more even that floor is heated.If winding displacement groove 21 is multiple, Electrothermic wire 22 can be one, and power supply rear through each winding displacement groove 21 is electrically connected respectively successively, also can conceivablely be, Electrothermic wire 22 is multiple, preferably, the number of Electrothermic wire 22 is identical with the number of winding displacement groove 21, and each Electrothermic wire 22 is respectively separately through a winding displacement groove 21.In the present invention, the carbon nano wire of this Electrothermic wire 22 for being made by carbon nano-composite material, this kind of material has high electric heating and turns the thermal efficiency (can up to more than 90%) and good insulating properties, crushing resistance and stability, after switching on power, it can in seconds be converted to heat energy by electric energy efficiently, thereby for floor provides heat for heating, and safe and reliable, even also there will not be danger at extreme environments such as contact water, high voltage, bending jackknifings.
spontaneous heating multi-layer solid wood composite floor simple installation of the present invention, temperature control is good, and safety coefficient is high and processing is simple, uses applicable to average family.In use, spontaneous heating multi-layer solid wood composite floor of the present invention can be one or more floor heatings by an Electrothermic wire 22, also can multiple Electrothermic wires 22 be one or more floor heatings jointly, as long as install according to different demands when mounted, for example, an Electrothermic wire 22 is through after the winding displacement groove 21 on a floor, then pass again the winding displacement groove 21 on another adjacent floor, then be electrically connected with terminals, also can be that two or more Electrothermic wires 22 are respectively separately through the winding displacement groove 21 on a floor, then more separately through each winding displacement groove 21 on another adjacent floor, then be electrically connected with above-mentioned terminals, similarly, above-mentioned Electrothermic wire 22 can successively be thought more floor heatings through the winding displacement groove 21 on more floors, this can decide by the difference requirement to temperature and the size on floor.Terminals are also connected with temperature controller, by temperature controller, desired temperature are set.In practical application, zones of different can also be distinguished independent control, for example, does not need heating such as the part of bed, cupboard and sofa, and Electrothermic wire be controlled or do not accessed in the floor of this part can with independent power supply.In addition, use carbon nano wire as Electrothermic wire, consume energy very low, average family heating use, power consumption in a day may only have 1-2 degree.In addition, floor of the present invention also has the effect of physiotherapy, carbon nano wire produces a large amount of far infrared light waves in the process of heating, can play to human body the effect of health care, thereby spontaneous heating multi-layer solid wood composite floor of the present invention integrates floor, heating and physical therapy function, and energy-saving and environmental protection, low price, be real inexpensive, has extremely huge using value.
above specific embodiment of the present invention is illustrated; but protection content of the present invention is not only limited to above embodiment; under of the present invention, in technical field, the common knowledge of a GPRS just can be carried out diversified change within the scope of its technology main idea.

Claims (7)

1. a spontaneous heating multi-layer solid wood composite floor, comprise upper strata (1), bottom (3) and be arranged at described upper strata (1) and described bottom (3) between intermediate layer (2), it is characterized in that: on the upper surface of described intermediate layer (2), offer along its length and be formed with at least one winding displacement groove (21), in described at least one winding displacement groove (21), be furnished with Electrothermic wire (22), described Electrothermic wire (22) passes described winding displacement groove (21) and is electrically connected with power supply, the wall surface of described at least one winding displacement groove (21) is provided with metal material heat-conducting layer (23), described at least one winding displacement groove (21) comprises pars intermedia (211) and a part of sidewall by described pars intermedia (211) the hollow sidepiece (212) forming that stretches out, described metal material heat-conducting layer (23) is filled full whole sidepiece (212).
2. spontaneous heating multi-layer solid wood composite floor according to claim 1, is characterized in that: described Electrothermic wire is the carbon nano wire of being made up of carbon nano-composite material.
3. spontaneous heating multi-layer solid wood composite floor according to claim 2, is characterized in that: described metal material heat-conducting layer is aluminium alloy layer.
4. according to the spontaneous heating multi-layer solid wood composite floor described in any one in claim 1-3, it is characterized in that: the cross section of the pars intermedia (211) of described winding displacement groove (21) is rectangle or circle or arc.
5. spontaneous heating multi-layer solid wood composite floor according to claim 4, is characterized in that: described winding displacement groove (21) is two, these two winding displacement grooves (21) along intermediate layer (2) width arrange.
6. spontaneous heating multi-layer solid wood composite floor according to claim 4, is characterized in that: described Electrothermic wire (22) is one, and it is successively through each winding displacement groove (21).
7. according to the spontaneous heating multi-layer solid wood composite floor of claim 4, it is characterized in that: the quantity of described Electrothermic wire (22) is identical with the quantity of described winding displacement groove (21), each Electrothermic wire (22) is respectively separately through a winding displacement groove (21).
CN201210374620.2A 2012-09-29 2012-09-29 Spontaneous heating multilayer solid wood composite floor Active CN102829507B (en)

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Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104908386A (en) * 2015-06-26 2015-09-16 安徽省科林人造板有限公司 Fiber board for embossment
CN104960287A (en) * 2015-06-29 2015-10-07 安徽省科林人造板有限公司 Fiber board for package box
CN105421718B (en) * 2015-12-09 2017-07-11 安徽扬子地板股份有限公司 Electric heating floor and its manufacture method and installation method
CN105442803A (en) * 2015-12-28 2016-03-30 卡尔玛地板(苏州)有限公司 Floor and manufacturing method thereof
CN109162425A (en) * 2018-10-30 2019-01-08 昆山博尔法新材料科技有限公司 For indoor aluminium alloy ground heating floor structure
CN110701666A (en) * 2019-11-07 2020-01-17 苏州康碳暖居科技有限公司 Independent wiring groove splicing type automatic temperature control heating module, heating system and manufacturing method

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2186882Y (en) * 1993-11-24 1995-01-04 王瑞国 Electrothermal device
CN201103954Y (en) * 2007-10-11 2008-08-20 杨万强 Electric ground-warming system device
CN202227648U (en) * 2011-08-19 2012-05-23 上海热丽电热材料有限公司 Far infrared low-temperature self-heating strengthened composite floor
CN202810110U (en) * 2012-09-29 2013-03-20 卡尔玛地板(苏州)有限公司 Spontaneous heating multilayer solid wood composite floor

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2186882Y (en) * 1993-11-24 1995-01-04 王瑞国 Electrothermal device
CN201103954Y (en) * 2007-10-11 2008-08-20 杨万强 Electric ground-warming system device
CN202227648U (en) * 2011-08-19 2012-05-23 上海热丽电热材料有限公司 Far infrared low-temperature self-heating strengthened composite floor
CN202810110U (en) * 2012-09-29 2013-03-20 卡尔玛地板(苏州)有限公司 Spontaneous heating multilayer solid wood composite floor

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Effective date of registration: 20170602

Address after: 3 215228 and 6 sets of Suzhou village, Shengze Town, Wujiang District, Jiangsu

Patentee after: Suzhou Oriental Kang carbon Amperex Technology Limited

Address before: Kalmar Industrial Park 215228 Jiangsu city of Suzhou Province, Wujiang Shengze Town Development Zone

Patentee before: Kom Floor (Suzhou) Co., Ltd.

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20191210

Address after: Shengze Hong'an Economic Development Zone Town, Wujiang District of Suzhou City, Jiangsu province 215228

Patentee after: Suzhou Kang Carbon Warm Home Technology Co., Ltd.

Address before: 3 215228 and 6 sets of Suzhou village, Shengze Town, Wujiang District, Jiangsu

Patentee before: Suzhou Oriental Kang carbon Amperex Technology Limited