CN204023966U - Two-way insertion heating conduction floor - Google Patents

Two-way insertion heating conduction floor Download PDF

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Publication number
CN204023966U
CN204023966U CN201420462517.8U CN201420462517U CN204023966U CN 204023966 U CN204023966 U CN 204023966U CN 201420462517 U CN201420462517 U CN 201420462517U CN 204023966 U CN204023966 U CN 204023966U
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CN
China
Prior art keywords
heat energy
heating cable
conducting shell
metal conducting
energy diffusion
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Expired - Fee Related
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CN201420462517.8U
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Chinese (zh)
Inventor
沈冬良
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Individual
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Individual
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Priority to CN201420462517.8U priority Critical patent/CN204023966U/en
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Publication of CN204023966U publication Critical patent/CN204023966U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Central Heating Systems (AREA)

Abstract

The utility model discloses a kind of two-way insertion heating conduction floor, it comprises top plate, intermetallic metal conducting shell, lower plywood, the upper surface of intermetallic metal conducting shell is provided with several heat energy diffusion bars projected upwards, its soffit is provided with one or more outstanding heating cable pipe and several outstanding balance strips downwards downwards, top plate correspondence is provided with the groove for placing heat energy diffusion bar, lower plywood correspondence is provided with heating cable tube seat for placing heating cable hole and balance strip and balance strip groove, upper, middle and lower three layers sticks with glue agent pressing and integral, surrounding is processed with floor tongue-and-groove.The utility model is applicable to wooden floor, integration wood floor, MULTILAYER COMPOSITE and consolidated floor, have heat conductivity high, spread the features such as even, safe and reliable, Stability Analysis of Structures, improve the conversion ratio of the energy.

Description

Two-way insertion heating conduction floor
Technical field
The utility model relates to a kind of two-way insertion heating conduction floor.
Background technology
Along with the development of society, the continuous progress of science and technology, improving constantly of living standard, floor heating has just been installed in house decoration.Solid wood compoiste wood floor becomes the material that increasing house decoration adopts, but after solid wood compoiste wood floor of mating formation, floor heating heating layer need could arrive ground by the air layer of a determining deviation between same wood flooring, wood flooring, and because the poor thermal conductivity of timber own, cause thermal source to run off, cause a large amount of wastes of resource.
And the area of heating is not installed when house is built, if option and installment electric radiation heating, after the heat generating wire cable that so just needs first to mat formation, repave dress wood flooring, its installation procedure is loaded down with trivial details, poor thermal conductivity, for reaching the effect of heating, energy consumption consumption is large, increases use cost.
Due to the existence of the problems referred to above, the applicant studies existing floor technique and improves, so that can produce have heat conductivity high, spread the features such as even, safe and reliable, structure is more stable, effectively improve the floor of the conversion ratio of the energy and the comfortableness of heating.
Utility model content
The utility model object is: provide a kind of two-way insertion to heat and conduct floor.
For reaching above-mentioned purpose, the technical solution of the utility model is: a kind of two-way insertion heating conduction floor, comprise top plate 1, intermetallic metal conducting shell 3 and lower plywood 2, the upper surface of described intermetallic metal conducting shell 3 is provided with several heat energy diffusion bar 5a projected upwards, the soffit of described intermetallic metal conducting shell 3 is provided with one or more outstanding heating cable pipe 4 and several outstanding balance strip 5b downwards downwards, described top plate 1 correspondence is provided with the groove 7a for placing heat energy diffusion bar 5a, lower plywood 2 correspondence is provided with heating cable tube seat 6 for placing heating cable hole 4 and balance strip 5b and balance strip groove 7b.
Heat energy diffusion bar 5a on above-mentioned intermetallic metal conducting shell 3, heating cable pipe 4, balance strip 5b are spaced from each other a distance and distribution parallel to each other, and heat energy diffusion bar 5a, balance strip 5b, heating cable pipe 4 are symmetrical along the center line of the length of intermetallic metal conducting shell 3.
As the further preferred version of the utility model one: the centerline of described intermetallic metal conducting shell 3 upper surface is provided with a heat energy diffusion bar 5a, its upper surface is symmetrically arranged with several heat energy diffusion bar 5a along the both sides of line of symmetry, its soffit is symmetrically arranged with several balance strips 5b and several heating cable pipes 4 along the both sides of line of symmetry, and described heating cable pipe 4 is distributed in the centre of balance strip 5b and heat energy diffusion bar 5a.
As the further preferred version two of the utility model: intermetallic metal conducting shell 3 is divided into two unit 31,32 to place side by side, the soffit center line along its length of described unit 31,32 is provided with a heating cable pipe 4, its both sides are symmetrically arranged with a balance strip 5b respectively, and the upper surface of described unit 31,32 is symmetrically arranged with two heat energy diffusion bar 5a respectively along the both sides in heating cable pipe 4 direction.
In above-mentioned various scheme, described heating cable pipe 4 shape of cross section is annulus or rectangle, and described heat energy diffusion bar 5a and balance strip 5b shape of cross section are vertical rectangle or the long narrow shape of falling type.The shape for the groove 7a cross section laying heat energy diffusion bar 5a that the soffit correspondence of described top plate 1 is arranged is rectangle, and the shape of the cross section of described heating cable tube seat 6 and balance strip groove 7b is respectively arch and vertical rectangle.
Described top plate (1) has top, tenon limit (9a) and notch top (8a), described lower plywood (2) offers bottom, tenon limit (9b) and notch bottom (8b), described intermetallic metal conducting shell (3) position corresponding with top, tenon limit (9a) and bottom (9b) is the middle part on tenon limit, and upper, middle and lower three layers sticks with glue agent pressing and integral.
The utility model advantage is:
The utility model have heat conductivity high, spread the features such as even, safe and reliable, structure is more stable, effectively improve the conversion ratio of the energy and the comfortableness of heating.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the utility model is further described:
Fig. 1 is the decomposing schematic representation of the utility model first embodiment.
Fig. 2 is the decomposition cross-sectional schematic of the utility model first embodiment.
Fig. 3 is the utility model first embodiment cross-sectional schematic.
Fig. 4 is the decomposing schematic representation that the utility model second executes example.
Fig. 5 is the decomposition cross-sectional schematic of the utility model second embodiment.
Fig. 6 is the utility model second embodiment cross-sectional schematic.
Fig. 7 is the intermetallic metal conducting shell unit position cross-sectional schematic of the utility model second embodiment.
Detailed description of the invention
Shown in figure 1-7, the utility model two-way insertion heating conduction floor, comprise top plate 1, intermetallic metal conducting shell 3 and lower plywood 2, the upper surface of described intermetallic metal conducting shell 3 is provided with several heat energy diffusion bar 5a projected upwards, the soffit of described intermetallic metal conducting shell 3 is provided with one or more outstanding heating cable pipe 4 and several outstanding balance strip 5b downwards downwards, described top plate 1 correspondence is provided with the groove 7a for placing heat energy diffusion bar 5a, lower plywood 2 correspondence is provided with heating cable tube seat 6 for placing heating cable hole 4 and balance strip 5b and balance strip groove 7b.
Heat energy diffusion bar 5a on above-mentioned intermetallic metal conducting shell 3, heating cable pipe 4, balance strip 5b are spaced from each other a distance and distribution parallel to each other, and heat energy diffusion bar 5a, balance strip 5b, heating cable pipe 4 are symmetrical along the center line of the length of intermetallic metal conducting shell 3.
As Figure 1-3, as the further preferred version of the utility model one: the centerline of described intermetallic metal conducting shell 3 upper surface is provided with a heat energy diffusion bar 5a, its upper surface is symmetrically arranged with several heat energy diffusion bar 5a along the both sides of line of symmetry, its soffit is symmetrically arranged with several balance strips 5b and several heating cable pipes 4 along the both sides of line of symmetry, and described heating cable pipe 4 is distributed in the centre of balance strip 5b and heat energy diffusion bar 5a.
As shown in figs. 4-7, as the further preferred version two of the utility model: be divided into by intermetallic metal conducting shell 3 two unit 31,32 to place side by side, the soffit center line along its length of described unit 31,32 is provided with a heating cable pipe 4, its both sides are symmetrically arranged with a balance strip 5b respectively, and the upper surface of described unit 31,32 is symmetrically arranged with two heat energy diffusion bar 5a respectively along the both sides in heating cable pipe 4 direction.
In above-mentioned various scheme, described heating cable pipe 4 shape of cross section is annulus or rectangle, and described heat energy diffusion bar 5a and balance strip 5b shape of cross section are vertical rectangle or the long narrow shape of falling type.The shape for the groove 7a cross section laying heat energy diffusion bar 5a that the soffit correspondence of described top plate 1 is arranged is rectangle, and the shape of the cross section of described heating cable tube seat 6 and balance strip groove 7b is respectively arch and vertical rectangle.
Top plate (1) will have top, tenon limit (9a) and notch top (8a), lower plywood (2) offers bottom, tenon limit (9b) and notch bottom (8b), the position that intermetallic metal conducting shell (3) is corresponding with top, tenon limit (9a) and bottom (9b) is the middle part on tenon limit, and upper, middle and lower three layers sticks with glue agent pressing and integral.Also first upper, middle and lower three layers can be sticked with glue agent pressing and integral, then be used for tenon limit and the notch of splicing floors in the processing of its surrounding.The utility model is applicable to wooden floor, integration wood floor, MULTILAYER COMPOSITE and consolidated floor, have heat conductivity high, spread the features such as even, safe and reliable, Stability Analysis of Structures, improve the conversion ratio of the energy.
Certain above-described embodiment, only for technical conceive of the present utility model and feature are described, its object is to person skilled in the art can be understood content of the present utility model and implement according to this, can not limit protection domain of the present utility model with this.All equivalent transformations of doing according to the Spirit Essence of the utility model main technical schemes or modification, all should be encompassed within protection domain of the present utility model.

Claims (8)

1. a two-way insertion heating conduction floor, comprise top plate (1), intermetallic metal conducting shell (3) and lower plywood (2), it is characterized in that: the upper surface of described intermetallic metal conducting shell (3) is provided with several heat energy diffusion bar (5a) projected upwards, the soffit of described intermetallic metal conducting shell (3) is provided with one or more outstanding heating cable pipe (4) and several outstanding balance strips (5b) downwards downwards, described top plate (1) correspondence is provided with the groove (7a) for placing heat energy diffusion bar (5a), lower plywood (2) correspondence is provided with heating cable tube seat (6) for placing heating cable pipe (4) and balance strip (5b) and balance strip groove (7b).
2. two-way insertion heating conduction floor according to claim 1, it is characterized in that: upper heat energy diffusion bar (5a) of described intermetallic metal conducting shell (3), heating cable pipe (4), balance strip (5b) are spaced from each other a distance and distribution parallel to each other, described heat energy diffusion bar (5a), balance strip (5b), heating cable pipe (4) are symmetrical along the center line of the length of intermetallic metal conducting shell (3).
3. two-way insertion heating conduction floor according to claim 2, it is characterized in that: the centerline of described intermetallic metal conducting shell (3) upper surface is provided with a heat energy diffusion bar 5a, its upper surface is symmetrically arranged with several heat energy diffusion bar (5a) along the both sides of line of symmetry, its soffit is symmetrically arranged with several balance strips (5b) and several heating cable pipes (4) along the both sides of line of symmetry, and described heating cable pipe (4) is distributed in the centre of balance strip (5b) and heat energy diffusion bar 5a.
4. two-way insertion heating conduction floor according to claim 1, it is characterized in that: described intermetallic metal conducting shell (3) is more than one unit composition, the soffit of described unit is provided with several heating cable pipes (4), the both sides of described heating cable pipe (4) are symmetrically distributed with several balance strips (5b), the upper surface of described unit is provided with several heat energy diffusion bar, and partial equilibrium bar (5b) and heat energy spread bar and is on same vertical line.
5. two-way insertion heating conduction floor according to claim 4, it is characterized in that: described intermetallic metal conducting shell (3) is that Unit two (31,32) are placed side by side, the soffit center line along its length of described unit (31,32) is provided with a heating cable pipe (4), its both sides are symmetrically arranged with a balance strip (5b) respectively, and the upper surface of described unit (31,32) is symmetrically arranged with two heat energy diffusion bar (5a) respectively along the both sides in heating cable pipe (4) direction.
6. two-way insertion heating conduction floor according to claim 1, it is characterized in that: described heating cable pipe (4) shape of cross section is annulus or rectangle, described heat energy diffusion bar (5a) and balance strip (5b) shape of cross section are vertical rectangle or the long narrow shape of falling type.
7. two-way insertion heating conduction floor according to claim 6, it is characterized in that: the shape for groove (7a) cross section laying heat energy diffusion bar (5a) that the soffit correspondence of described top plate (1) is arranged is rectangle, and the shape of the cross section of described heating cable tube seat (6) and balance strip groove (7b) is respectively arch and vertical rectangle.
8. the two-way insertion heating conduction floor according to any one of claim 1-7, it is characterized in that: described top plate (1) has top, tenon limit (9a) and notch top (8a), described lower plywood (2) offers bottom, tenon limit (9b) and notch bottom (8b), described intermetallic metal conducting shell (3) position corresponding with top, tenon limit (9a) and bottom (9b) is the middle part on tenon limit, and upper, middle and lower three layers sticks with glue agent pressing and integral.
CN201420462517.8U 2014-08-15 2014-08-15 Two-way insertion heating conduction floor Expired - Fee Related CN204023966U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420462517.8U CN204023966U (en) 2014-08-15 2014-08-15 Two-way insertion heating conduction floor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420462517.8U CN204023966U (en) 2014-08-15 2014-08-15 Two-way insertion heating conduction floor

Publications (1)

Publication Number Publication Date
CN204023966U true CN204023966U (en) 2014-12-17

Family

ID=52063851

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420462517.8U Expired - Fee Related CN204023966U (en) 2014-08-15 2014-08-15 Two-way insertion heating conduction floor

Country Status (1)

Country Link
CN (1) CN204023966U (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

Granted publication date: 20141217

Termination date: 20150815

EXPY Termination of patent right or utility model