CN105113759B - Floor-heating type Modular Floor and its component - Google Patents
Floor-heating type Modular Floor and its component Download PDFInfo
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- CN105113759B CN105113759B CN201510643272.8A CN201510643272A CN105113759B CN 105113759 B CN105113759 B CN 105113759B CN 201510643272 A CN201510643272 A CN 201510643272A CN 105113759 B CN105113759 B CN 105113759B
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- floor
- lace
- groove
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- screw rod
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- 230000015572 biosynthetic process Effects 0.000 claims abstract description 6
- 238000009408 flooring Methods 0.000 claims abstract description 4
- 239000002184 metal Substances 0.000 claims description 27
- 229910052751 metal Inorganic materials 0.000 claims description 27
- 239000000758 substrate Substances 0.000 claims description 25
- 238000009413 insulation Methods 0.000 claims description 19
- 239000000463 material Substances 0.000 claims description 11
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical compound [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 claims description 6
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- 238000012423 maintenance Methods 0.000 abstract description 3
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- 239000002023 wood Substances 0.000 description 11
- 238000005485 electric heating Methods 0.000 description 8
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- 235000017166 Bambusa arundinacea Nutrition 0.000 description 1
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F15/00—Flooring
- E04F15/02—Flooring or floor layers composed of a number of similar elements
- E04F15/04—Flooring or floor layers composed of a number of similar elements only of wood or with a top layer of wood, e.g. with wooden or metal connecting members
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Life Sciences & Earth Sciences (AREA)
- Wood Science & Technology (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Floor Finish (AREA)
Abstract
The present invention discloses a kind of floor-heating type Modular Floor and its component, it includes core and peripheral part, it is made up of modular unit and lace unit, several piece modular unit is by positioning tongue-and-groove, location lug bar, the core of connecting screw rod and Embeded nut connection composition floor-heating type Modular Floor, several piece lace unit passes through lace tenon, plug-in type tenon bar, connecting screw rod, the peripheral part of Embeded nut and fixing screws connection composition floor-heating type Modular Floor, floor heating water pipe groove or floor heating cable groove are provided with inside the floor-heating type Modular Floor, placed in floor heating water pipe groove and floor heating cable is placed in floor heating water pipe or floor heating cable groove, it is formed around pipeline passway, bottom is provided with elastic cushion block, fixed or directly mated formation on ground or flooring with fot screw.Deformation, loosening, visual effect that it solves existing ground heating floor are single, comfortable foot feeling is poor, noise is big when walking about, low heat utilization efficiency and the problems such as big maintenance difficulty.
Description
Technical field
The invention belongs to the fitting-out work technical field of building, it is related to solid wooden floor board, wooden connected floor and its mats formation
The component of system.
The invention particularly relates to ground heating floor and pavement system and it is related to component for the system.
Background technology
Traditional ground heating floor, floor heating water pipe or floor heating cable are fixed on insulating, is spread after pea gravel concreten
It is mounted directly ceramic tile, or after after concrete drying, laying floor, because floor heating water pipe or floor heating cable are embedded in underground, and once
Break down, whole ground heating system need to be reinstalled, and floor can also scrap therewith.
Solid wood or other heating floors are laid on traditional ground heating system, due to keel can not be used, mostly
Heating floor can only directly mat formation on the ground, combine not closely, easily loosen between heating floor and floor heating ground, feel is not relaxed
Suitable, noise is big when walking about, and heat utilization efficiency is low, if using floor glue sticking, hot thermal conductivity factor is lower.
The A of patent application publication CN 102852308, disclose a kind of spontaneous-heating type heating floor, including embedded underground heat
Two kinds of floor and through type heating floor, described embeddedly heating floor are made up of floor, pipeline, notch, groove, card article,
Described floor side sets fluted, and opposite side is provided with card article, described floor bottom surface and is arranged with two notches in parallel,
Described notch is strip, and described pocket bottom is provided with circular pipe, and described through type heating floor is by upper floor
Two semi-circular grooves are respectively arranged with block, bottom plate, pipeline composition, described upper floorboard and bottom plate, it is described
Upper floorboard and bottom plate are closed by Waterproof wood gluing, two semi-circular groove phases in described upper floorboard and bottom plate
Two cylinder pipelines are correspondingly formed, described bottom plate side is provided with card article, and opposite side sets fluted.The invention is led to
Cross and floor heating pipe portion disposed within is realized into floor spontaneous heating in floor inner perforated, it improves energy utilization rate, still, it leads to
Cross card article and groove is directly installed in heat insulation layer, not close, yielding and loosening, feel are combined between same floorboard
It is uncomfortable, and ground plate shape is single is unable to parquets, it is impossible to meet the Individualized Pursuit of modern people.
The content of the invention
Regarding to the issue above, the present invention provides a kind of floor-heating type Modular Floor.It solve existing ground heating floor deformation,
Loosen, visual effect is single, comfortable foot feeling is poor, noise is big when walking about, low heat utilization efficiency and the problems such as big maintenance difficulty.
Floor-heating type Modular Floor of the present invention includes core and peripheral part, by modular unit and lace unit group
Into several piece modular unit is by positioning tongue-and-groove, location lug bar, connecting screw rod and Embeded nut connection composition floor-heating type Modular Floor
Core, several piece lace unit pass through lace tenon, plug-in type tenon bar, connecting screw rod, Embeded nut and fixing screws connect
Connect inside the peripheral part of composition floor-heating type Modular Floor, the floor-heating type Modular Floor provided with floor heating water pipe groove or floor heating electricity
Placed in cable groove, floor heating water pipe groove and floor heating cable, the floor-heating type module are placed in floor heating water pipe, or floor heating cable groove
Floor is formed around pipeline passway, and bottom is provided with elastic cushion block, is fixed or directly mated formation on ground or flooring with fot screw.
Modular unit of the present invention by parquets panel, substrate, keel grid successively and bottom surface overlap, with adhesive, iron
Nail or other fixtures link together under given conditions, constitute an irreversible firm entirety, the monnolithic case
For cuboid, the cuboid is also comprising cuboid of the bottom surface for square, and its bottom surface sets damp-proof layer, and upper bottom surface is applied
There is floor paint.
Modular unit surrounding is respectively provided with a sliver transvers section for rectangular positioning tongue-and-groove at grade, positioned at substrate four
The bottom or middle part in week;Modular unit is positioned by location lug bar, and the size of location lug bar matches with positioning tongue-and-groove, for ease of
Install, the water caltrop of location lug bar and positioning tongue-and-groove changes into fillet.
The rectangle that parquets panel of the present invention is combined into by equal, the different block of several piece thickness, be highly
The thickness of block, the interior angle of internal adjacent block and equal to 180 ° or 360 °, if the side of block is camber line, adjacent block
The radian on the side of shape thing is identical, seamless spliced between block, and the block is fixed together with connection flat nail or adhesive.
Parquets panel is cuboid, its underpart be uniformly arranged several parallel to the floor heating water pipe groove of parquets panel sides or
At grade, the plane is parallel to spelling at the top of floor heating cable groove, the floor heating water pipe groove or floor heating cable groove
The cross section of flower panel upper bottom surface, the floor heating water pipe groove or floor heating cable groove is semicircle or rectangle.
Parquets middle panel same plane is uniformly provided with several parallel to parquets panel upper bottom surface and perpendicular to floor heating water pipe
The horizontal heat-conducting metal groove of groove or floor heating cable groove, the horizontal heat-conducting metal groove top planes are higher than floor heating water pipe
In the diameter units of one heat-conducting metal silk of groove or floor heating cable groove top planes, the two adjacent floor heating water pipe groove
Line is respectively provided with a longitudinal heat-conducting metal groove, the top horizontal of the top of longitudinal heat-conducting metal groove in floor heating water pipe groove
On face, the top of all horizontal heat-conducting metal silk grooves or longitudinal heat-conducting metal groove is provided with heat-conducting metal silk, and the transverse direction is led
The width of hot wire groove or longitudinal heat-conducting metal groove is equal to the diameter of heat-conducting metal silk.
Substrate of the present invention is single-layer solid wood jigsaw or multi-layer solid wood composite board or bamboo slab rubber, the water-heating type module ground
The substrate top of plate is provided with several floor heating water pipe grooves, quantity, shape and the distributing position and mosaic surface of the floor heating water pipe groove
The floor heating water pipe groove of plate bottom matches;The substrate top of the electric heating type Modular Floor does not have floor heating cable groove, if spelling
The thickness of flower panel is sufficiently thin when can not open up floor heating cable groove, and now, the substrate top of electric heating type Modular Floor sets number
Bar identical and parallel to the floor heating cable groove of substrate side surfaces, its cross section is semicircle or rectangle.
It is same flat in modular unit when parquets panel bottom surface and substrate upper bottom surface are overlapped and adhesion is modular unit
Several are constituted on face logical parallel to modular unit upper bottom surface and the complete floor heating water pipe groove or floor heating cable of left and right side
A kind of netted heat conducting system is formed at groove, the floor heating water pipe groove of modular unit or the top of floor heating cable groove, is located at
The middle part of parquets panel.
Keel grid of the present invention is that rectangular square material surrounds a grid closed by several cross sections, is
" mouth " font, " day " font, sphere of movements for the elephants shape, " Wall " font or other present situations, keel grid are embedded with thermal insulation thermal insulation board, the guarantor
Warm thermal insulation board top is provided with instrument groove, and the square material is flitch or organic material, and thickness is identical.
The adjacent square material in A, B both sides of keel grid of the present invention is provided with Embeded nut, connecting screw rod through hole, instrument
Through hole and fot screw inclined hole, the connecting screw rod through hole are on conplane diverse location and mutually equal with tool throughbore
OK, the Embeded nut is arranged on connecting screw rod through hole and two center lines are overlapped;Set in other adjacent C, the square material in D both sides
Have and connecting screw rod is placed in connecting screw rod through hole, the connecting screw rod through hole.Accordingly, the connecting screw rod through hole on C, D both sides,
The center line of the tool throughbore of tool throughbore and A, B both sides on internal square material on the same line, and parallel to keel
Grid upper bottom surface and left and right side.
Keel grid of the present invention is divided into first, second two types, the tool throughbore on A type keel grid A sides, connection spiral shell
Rod through-hole connecting screw rod through hole respectively with corresponding B-mode keel grid A sides, tool throughbore are on same position, A type keel
Grid B while tool throughbore, connecting screw rod through hole respectively with corresponding B-mode keel grid B while connecting screw rod through hole, instrument
Through hole is on same position;A type keel grid C, D while connecting screw rod be separately fixed at B-mode keel grid A, B while
On Embeded nut, B-mode keel grid C, D while connecting screw rod be separately fixed at A type keel grid A, B while pre-buried spiral shell
On cap.
Lace unit of the present invention is made up of lace unit top and lace unit bottom, the lace unit top by
Lace panel, upper substrate and lace tenon constitute a firm entirety, and the lace unit bottom is by lower basal plate and flower
Keelson constitutes a firm entirety, and provided with mesopore, the turn of the screw opening and pipeline passway is installed, the lace keel are dragon
A part for bone grid, lace keel are embedded with thermal insulation thermal insulation board, and the lace unit bottom surface is provided with damp-proof layer, and upper bottom surface is applied
There is floor paint.
Lace unit top of the present invention is provided with lace tenon, the size of the lace tenon and the positioning of modular unit
The size of tongue-and-groove matches, and the water caltrop of lace tenon changes into fillet;Inside lace tenon and top provided with floor heating water pipe groove or
Floor heating cable groove is provided with above lace tenon, the water-heating type lace unit top is provided with U-shaped floor heating water pipe groove.
The figure of lace panel of the present invention is a part for parquets panel, or equal, different by several piece thickness
Block seamless be combined into the figure with lace characteristic.
Block of the present invention is wooden unit or jade or stone or glass blocks or organic matter block, according to design configuration need
Will, block is cut into variously-shaped straight cylinder, parquets panel or lace panel are by one or more different wooden wood
Block is constituted, or is made up of wooden unit and the mixing of the block of other one or two kinds of materials, jade or stone or glass blocks or organic
Thing block is embedded in wooden unit, is risen and is interspersed decoration function.
Elastic cushion block of the present invention is made up of rubber or plastics elastomeric material, and cushion is determined according to the need for ground
The thickness of block, plays regulation height and Jing Yin, is arranged on the bottom of keel grid.
Floor heating water pipe of the present invention is connected with thermal water source's heating water pipe, makes hot water in floor heating by hot water circulating pump
Modular Floor inner loop, described floor heating cable is connected with power supply, reaches heating purpose.
Floor-heating type Modular Floor is generally without using fot screw, if floor area is larger or ground out-of-flatness or ground
Fot screw is used when face is moister.
Floor-heating type Modular Floor, which is realized, is conducive to the scale of factory to give birth to after the modularization on floor, ground heating floor modularization
Production, simplifies in-site installation program, and manufacturer provides finished product floor according to the size of user, it is not necessary to which on-site cutting, floor is no longer
It is semi-finished product.
Due to the shape of the block that constitutes parquets panel and lace panel, color, wood grain and surface coating (or wood
Oil) difference, the parquets pattern and visual effect of different style can be showed, the individual demand of user is met.
Parquets panel, substrate and the keel grid of modular unit and lace unit are tightly coupled into a firm entirety,
The wood-fibred of parquets panel is destroyed, and stability is strong;All modular unit and lace units pass through location lug bar or lace tenon
Head is fixed in positioning tongue-and-groove, is firmly connected by connecting screw rod, Embeded nut and fixing screws, constitutes a seamless entirety,
Long service life, is unlikely to deform and crack.
Due between modular unit, between lace unit, there is no relative movement between modular unit and lace unit, and
Floor-heating type Modular Floor has enough thickness, below flexible cushion block, so the muting function of Modular Floor is good, comfortable foot feeling.
Connector is threaded spindle cap nut between unit inside floor-heating type Modular Floor, can be damaged with global transfer or local replacing
Bad part, is easy to maintenance, and lace upper panel can be unloaded, and be conveniently replaceable the heating water pipe or floor heating cable of aging.
Heating water pipe or floor heating cable are directly installed on the inside of floor-heating type Modular Floor, and hot body is directly or by heat conduction
Wire is transferred heat on parquets panel and lace panel, and its thickness is the half of common heating floor, there is substrate below
And thermal insulation thermal insulation board, heat utilization efficiency height.
Brief description of the drawings
Fig. 1 water-heating type modular unit 3-D views.
Fig. 2 floor heating cable-type modular unit 3-D views.
Fig. 3 water-heating type modular unit parquets panel three dimensional bottom views.
Fig. 4 floor heating cable-type modular unit parquets panel three dimensional bottom views.
Fig. 5 A type keel grid 3-D views.
The B-mode keel grid 3-D views of Fig. 6 (band thermal insulation board).
Fig. 7 keel grid joining method schematic three dimensional views.
Fig. 8 water-heating type modular unit STRUCTURE DECOMPOSITIONs and component schematic three dimensional views.
Fig. 9 floor heatings cable-type modular unit STRUCTURE DECOMPOSITION and component schematic three dimensional views.
Figure 10 water-heating type lace unit three-dimensional views.
Figure 11 water-heating type lace units upper and lower part structure three-dimensional view.
Figure 12 water-heating type lace unit upper right end structure three-dimensional upward views.
Figure 13 water-heating type lace unit upper left end structure three-dimensional upward views.
Figure 14 water-heating type lace unit upper left end import and export mix three dimensional bottom views.
Figure 15 water-heating type lace unit upper left end loop structure three dimensional bottom views.
Figure 16 floor heating cable-type lace unit three-dimensional views.
Figure 17 floor heating cable-type lace units upper and lower part structure three-dimensional view.
Figure 18 modular units and lace unit spliced method front view I.
Figure 19 modular units and lace unit spliced method front view II.
Figure 20 water-heating type Modular Floor assemble method schematic three dimensional views.
Figure 21 floor heating cable-type Modular Floor assemble method schematic three dimensional views.
Figure 22 floor-heating type Modular Floor overall three-dimensional views.
Embodiment
Embodiment 1:Water-heating type Modular Floor.
As shown in Fig. 1, Fig. 7, Fig. 8, Figure 10, Figure 11, Figure 18, Figure 20 and Figure 22, water-heating type Modular Floor includes central part
Divide and peripheral part, be made up of modular unit 45 and lace unit 46, it is fixed that several piece modular unit 45 is embedded in by location lug bar 22
In the tongue-and-groove 21 of position, on the Embeded nut 38 that connecting screw rod 36 is fixed to adjacent modular unit 45 with screw tool 42, composition
The core of water-heating type Modular Floor;Lace unit 46 is made up of lace unit top 47 and lace unit bottom 48, several piece
Lace unit bottom 48 is fixed to by connecting screw rod 36 on the Embeded nut 38 of adjacent lace unit bottom 48, several piece lace
Unit top 47 is embedded into by lace tenon 27 in the positioning tongue-and-groove 21 of adjacent modular unit 45, inserts plug-in type tenon bar
26, the peripheral part on composition floor heating module floor is fixed with fixing screws 49.
Floor heating water pipe groove 11 is provided with inside the water-heating type Modular Floor, floor heating water pipe groove 11 places floor heating water pipe
43, water-heating type Modular Floor is formed around pipeline passway 52, and bottom is provided with elastic cushion block 40, water-heating type Modular Floor lower margin spiral shell
Nail 41 is fixed or directly mated formation on ground or flooring.
As shown in Fig. 2 the modular unit 45 by parquets panel 10, substrate 20, keel grid 30 successively and bottom surface overlap,
Linked together under given conditions with adhesive, iron nail, constitute a firm irreversible entirety, the monnolithic case is
Bottom surface is square cuboid, and bottom surface is provided with damp-proof layer, and upper bottom surface scribbles floor paint.
The modular unit surrounding of the present embodiment is respectively provided with a sliver transvers section for identical rectangular positioning at grade
Tongue-and-groove 21, groove depth is 10mm, a width of 8mm of notch, and inside is omited provided with four floor heating water pipe grooves 11, the upper plane of positioning tongue-and-groove 21
Less than the next top plane of floor heating water pipe groove 11, the lower plane of positioning tongue-and-groove 21 is the upper plane of keel grid 30.
The size of location lug bar 22 matches with positioning tongue-and-groove 21, for the ease of installing, by location lug bar 22 and location lug
The water caltrop of groove 21 changes into fillet.
As shown in figures 1 and 3, nine piece thickness=20mms of the parquets panel 10 of the present embodiment by shaping high-quality is hard
The contact surface that wooden unit is assembled between cuboid of the bottom surface for square, height=20mm, wooden unit coats wood glue, and surrounding keeps one
Fixed pressure, is fixed with connection flat nail 19, seamless spliced into an entirety, as parquets panel 10 between wooden unit.
Uniformly four sides and upper bottom parallel to parquets panel 10 are opened up on the same plane of the bottom of parquets panel 10
The floor heating water pipe groove 11 in face, its cross section is semicircle;Six are set in another plane perpendicular to floor heating water pipe groove 11
Horizontal heat-conducting metal groove 14, this six horizontal top planes of heat-conducting metal groove 14 are higher than the upper top of floor heating water pipe groove 11
The diameter units of one heat-conducting metal silk 13 of plane;The center line of two adjacent floor heating water pipe grooves 11 is respectively provided with a longitudinal heat conduction gold
Belong to groove 15, the top of longitudinal heat-conducting metal groove 15 is in the top planes of floor heating water pipe groove 11.
The top of all horizontal heat-conducting metal silk grooves 14 and longitudinal heat-conducting metal groove 15 is horizontal provided with heat-conducting metal silk 13
The width of guide hot wire groove 14 or longitudinal heat-conducting metal groove 15 is equal to the diameter of heat-conducting metal silk 13.
As illustrated in figures 1 and 8, the substrate 20 of the embodiment is single-layer solid wood jigsaw, and its top is provided with four and wood-fibred
The vertical floor heating water pipe groove 11 in direction, matches with the floor heating water pipe groove 11 of the bottom of parquets panel 10, when parquets panel 10
When bottom surface and the coincidence of the upper bottom surface of substrate 20, the complete floor heating water pipe groove 11 of composition, its cross section is circle.
As shown in Fig. 5, Fig. 6, Fig. 7 and Fig. 8, keel grid 30 passes through tenon by six roots of sensation cross section for identical rectangular flitch
Head, tongue-and-groove connect into the square grid of a sphere of movements for the elephants shape, the bottom surface of keel grid 30 and the bottom surface congruence of parquets panel 10;
Keel grid 30 is embedded with four pieces of thermal insulation thermal insulation boards 33, and the top of thermal insulation thermal insulation board 33 is provided with instrument groove 34, is easy to screw tool
42 pass through, and thermal insulation thermal insulation board 33 is identical with the thickness of keel grid 30.
Be respectively provided with adjacent two flitch of A, B of the periphery of keel grid 30 two Embeded nuts 38, two Embeded nut grooves 37,
Two tool throughbores 31 and two connecting screw rod through holes 32, one or three fot screw inclined holes 35, the He of connecting screw rod through hole 32
Tool throughbore 31 is on conplane diverse location, and Embeded nut 38 is arranged on connecting screw rod through hole 32 and two center lines
Overlap;Two connecting screw rod through holes 32 are respectively provided with another adjacent C, the flitches of D two, two connecting screw rods 36 are placed on two connections
In screw vent 32.The connecting screw rod through hole 32 and opposite A while or tool throughbore 31 and internal flitch during B on tool throughbore
31 center line is on the same line;The center line of all connecting screw rod through holes 32 and tool throughbore 31 in keel grid 30 exists
Upper bottom surface and left and right side on same plane and parallel to keel grid 30.
As shown in Fig. 5, Fig. 6 and Fig. 7,30 points of keel grid is first, second two types, the A type keel grid of the present embodiment
Two tool throughbores 31 on A sides are within two connecting screw rod through holes 32, and the distance of the adjacent side of two tool throughbore 31 to two is
L1, the distance of the adjacent side of two connecting screw rod through hole 32 to two is L2, L1 > L2;Two tool throughbores 31 on B sides are in two connections
Outside screw vent 32, the distance of the adjacent side of two tool throughbore 31 to two is L2, and two connecting screw rod through holes 32 to two are adjacent
The distance of side is L1.B-mode keel grid is with A type keel grid on the contrary, two tool throughbores 31 i.e. on A sides are connected spiral shell two
Outside rod through-hole 32, two tool throughbores 31 on B sides are within two connecting screw rod through holes 32.
As shown in fig. 7, the adjacent side of two connecting screw rod through hole 32 to two on the A type keel grid C sides of the present embodiment
Distance is that the distance of the adjacent side of two connecting screw rod through hole 32 to two on L1, D sides is L2;B-mode keel grid and A type keel
Grid is on the contrary, the distance of the adjacent side of two connecting screw rod through hole 32 to two on C sides is two connecting screw rod through holes on L2, D sides
The distance of 32 to two adjacent sides is L1.
A type keel grid C, D when upper connecting screw rod 36 is separately fixed at B-mode keel grid A, B on it is pre-buried
On nut 38, B-mode keel grid C, D when upper connecting screw rod 36 is separately fixed at A type keel grid A, B on it is pre-
Bury on nut 38.Modular unit containing A type keel grid and the modular unit cross arrangement containing B-mode keel grid are simultaneously solid
It is scheduled on together.
As shown in Figure 10, Figure 11, Figure 18 and Figure 19, the lace unit 46 of the present embodiment is by lace unit top 47 and lace
Unit bottom 48 is constituted.Lace unit top 47 is by lace panel 16, upper substrate 23 and the specific method of lace tenon 27
It is fixed together, constitutes a firm entirety;Lace unit bottom 48 is by lower basal plate 24 and lace keel 39 with specifically
Method is fixed together, and constitutes a firm entirety, and lace keel 39 are a part for keel grid 30.The lace unit
46 bottom surface is provided with damp-proof layer, and upper bottom surface scribbles floor paint.
As shown in figure 11, the lace panel 16 of the present embodiment is by thickness=20mm 4 long flitches, the wood of 24 pieces of triangles
Block and 5 pieces of rectangular wooden units are combined into, and use wooden figure (black and white of the high-quality hardwood composition with lace characteristic of 5 kinds of differences
Figure aberration is not clear aobvious);The thickness of upper substrate 23 subtracts the thickness of positioning tongue-and-groove 21 for the thickness of modular unit substrate 20;Flower
Thickness=8mm of side tenon first 27.Lace panel 16 and lace tenon 27 are all fixed in upper substrate 23, for the ease of installing,
The water caltrop of lace tenon 27 is changed into fillet.
As shown in Figure 12, Figure 13, Figure 14 and Figure 15, the bottom surface on the lace unit top 47 after shaping is opened up into U-shaped ground
Hot water pipe groove 11, groove depth is slightly larger than the diameter of floor heating water pipe 43, it is contemplated that floor heating water pipe 43 it is flexible, parallel to lace tenon
The width of 27 direction and the U-shaped floor heating water pipe groove 11 at distortion position is suitably widened.
As shown in figure 20, in the present embodiment, one side that floor heating water pipe imports and exports 17 is referred to as left end by us, and opposite side is the right side
End, the both sides being distributed without floor heating water pipe are referred to as both sides, and the bottom on the lace unit top 47 of both sides is without opening up U-shaped floor heating water
Pipe groove 11, right-hand member opens up a type of U-shaped floor heating water pipe groove 11 (as shown in figure 14), and right-hand member opens up the U of three types
Type floor heating water pipe groove 11 (as shown in Figure 15,16,17).
Two lace units 46 that four corner portions of Modular Floor are are intercepted by 45° angle saw on a corresponding position
Two gable compositions, Area comparison is small, and four corner portions are respectively incorporated into the lace of adjacent both sides in actual production
In unit.
As shown in Figure 10, Figure 11, Figure 18 and Figure 19, in the present embodiment, the thickness of lower basal plate 24 of lace unit 46 is mould
The thickness (in the present embodiment=8mm) of module unit positioning tongue-and-groove 21, width subtracts lace tenon 27 for the width of upper substrate 23
Width, when lace tenon 27 be embedded in modular unit 45 positioning tongue-and-groove 21 after, lace tenon 27, upper substrate 23, bottom base
Plate 24 and lace keel 39 define installation mesopore 25, the size of plug-in type tenon bar 26 and the size kissing for installing mesopore 25
Close;The turn of the screw opening 28 is provided with lower basal plate 24, is easy to tighten connecting screw rod 36, if being left on the side of lace keel 39 pre-buried
Nut 38, lower basal plate 24 can not set the turn of the screw opening 28;If water-heating type Modular Floor uses fot screw 41, flower is installed
Behind side unit bottom 48, fot screw 41 need to be tightened;Ground 50, metope 51, lace keel 39 and lower basal plate 24 define pipe
Line passage 52.
As shown in figure 20, when installing water-heating type Modular Floor, according to the position being pre-designed, the one side in room installs one
Side lace unit bottom 48 of the row with corner portion, in room, adjacent another side installs end edge lace unit bottom 48,
Note the A type of lace keel 39, B-mode be staggered.
When modular unit 45 is installed, the connecting screw rod 36 on C, D side is respectively fixed to adjacent two using screw tool 42
On the Embeded nut 38 of the lace keel 39 on side, the elastic cushion block 40 of suitable thickness, tightens fot screw 41 on pad;With such
Push away ... ...;Last block is installed for modular unit 45.According to the position being pre-designed, A type keel grid is noted and B-mode
Keel grid is staggered.
After modular unit 45 is installed, similarly, then the lace unit bottom 48 on remaining two sides is installed.
According to method as shown in figure 20, floor heating water pipe 43 is penetrated to the floor heating water pipe groove 11 of water-heating type modular unit 45
It is interior, draw floor heating water pipe import and export 17 and be connected with thermal water source's heating water pipe, hot water is made in floor heating pattern by hot water circulating pump
Block floor inner loop, is detected whether normal.
As shown in Figure 11, Figure 19 and Figure 20, lace unit top 47 is installed, insertion plug-in type tenon in mesopore 25 is being installed
Bar 26, tightens fixing screws 49.All modular units and lace unit are linked to be an entirety, constitute water-heating type Modular Floor.
Embodiment 2, electric heating type Modular Floor.
The structure of electric heating type Modular Floor and water-heating type Modular Floor has many same sections, the difference is that because floor heating electricity
The diameter of cable be less than floor heating water pipe, its structure optimization some, the present embodiment is only illustrated with regard to different piece.
As shown in Fig. 2, Figure 16 and Figure 21, electric heating type Modular Floor includes core and peripheral part, by modular unit
45 and lace unit 46 constitute, floor heating cable groove 12 is provided with inside electric heating type Modular Floor, floor heating cable groove 12 places ground
Warm cable 44.
As shown in Figure 2 and Figure 4, the parquets panel 10 of the embodiment is by the equal wooden unit and one of the 33 pieces of thickness shaped
Block jade 29 is assembled into cuboid of the bottom surface for square, the highly thickness for wooden unit(=20mm), it is seamless spliced between wooden unit
Into a fixed irreversible entirety, as parquets panel 10.
It is uniform on the same plane of the bottom of parquets panel 10 to open up six parallel to the side of parquets panel 10 and upper bottom surface
Floor heating cable groove 12, its cross section for square;Six are set in another plane perpendicular to floor heating cable groove 12
Horizontal heat-conducting metal groove 14, six top planes of heat-conducting metal groove 14 are higher than 12 top planes of floor heating cable groove one
The diameter units of heat-conducting metal silk 13.
As shown in Figure 2 and Figure 9, the substrate 20 of the embodiment is three-layer real-wood jigsaw, and its top does not have floor heating cable groove.
As shown in Figure 16 and Figure 17, the top of lace tenon 27 of the present embodiment opens up horizontal U-shaped floor heating cable groove 12, position
In the bottom of lace panel 16, parallel to lace tenon 27, groove depth is more than the diameter of floor heating cable 44, and groove width is equal to parquets panel
The height of floor heating cable groove 12 on 10.
As shown in Fig. 1, Fig. 9, Figure 17 and Figure 21, keel structure, connected mode, component and the installation of electric heating type Modular Floor
Mode is identical with the water-heating type Modular Floor in embodiment 1.
As shown in figure 21, floor heating cable both positive and negative polarity 18 is connected with power supply, reaches heating purpose, all modular unit and
Lace unit is linked to be an entirety, constitutes electric heating type Modular Floor.
Specific embodiments described herein is only to spirit explanation for example of the invention.The technical field of the invention
Technical staff can be made various modifications or supplement to described technical scheme or be substituted using similar mode, such as will
Threaded spindle cap nut connection between modular unit, lace unit is snapped connection or other manner connection instead, and modular unit is made into
Positive 6 prism or positive three prism, but not deviate scope defined in appended claims first or Article 2.
Claims (8)
1. a kind of floor-heating type Modular Floor, including core and peripheral part, it is characterised in that:The floor-heating type Modular Floor by
Modular unit (45) and lace unit (46) composition, several piece modular unit (45) pass through location lug bar (22), connecting screw rod (36)
The core of composition floor-heating type Modular Floor is connected with Embeded nut (38), several piece lace unit (46) passes through lace tenon
(27), the peripheral part of connecting screw rod (36), Embeded nut (38) and fixing screws (49) connection composition floor-heating type Modular Floor;
Above-mentioned modular unit (45) by parquets panel (10), substrate (20), keel grid (30) successively and bottom surface overlap, with adhesive,
Iron nail or other fixtures link together under given conditions, and one firm profile of composition is the entirety of cuboid, and it four
It is rectangular positioning tongue-and-groove (21) to be respectively provided with a sliver transvers section week, positioned at the bottom or middle part of substrate (20) surrounding, bottom surface
Provided with damp-proof layer, upper bottom surface scribbles floor paint;Above-mentioned lace unit (46) is by under lace unit top (47) and lace unit
Portion (48) is constituted, and lace unit top (47) constitutes one by lace panel (16), upper substrate (23) and lace tenon (27)
Firm overall, lace unit bottom (48) constitutes a firm entirety by lower basal plate (24) and lace keel (39), if
There are installation mesopore (25), the turn of the screw opening (28) and pipeline passway (52), lace keel (39) are the one of keel grid (30)
Part, lace unit (46) bottom surface is provided with damp-proof layer, and upper bottom surface scribbles floor paint;Set inside above-mentioned floor-heating type Modular Floor
Have and floor heating water pipe (43) is placed in floor heating water pipe groove (11) or floor heating cable groove (12), floor heating water pipe groove (11), or ground
Floor heating cable (44) is placed in warm cable groove (12), pipeline passway (52) is formed around, bottom is provided with elastic cushion block (40), uses
Fot screw (41) is fixed or directly mats formation on ground or flooring.
2. floor-heating type Modular Floor according to claim 1, it is characterised in that:It is same flat in the modular unit (45)
Several are uniformly provided with face parallel to modular unit (45) upper bottom surface and the floor heating water pipe groove (11) of left and right side or floor heating electricity
The cross section of cable groove (12), the floor heating water pipe groove (11) or floor heating cable groove (12) is circular or rectangle, is located at
The place that joins of parquets panel (10) and substrate (20).
3. floor-heating type Modular Floor according to claim 1, it is characterised in that:It is same flat in the modular unit (45)
Several are uniformly provided with face parallel to modular unit (45) upper bottom surface and logical perpendicular to floor heating water pipe groove (11) or floor heating cable
The horizontal heat-conducting metal groove (14) of groove (12), its top planes are higher than floor heating water pipe groove (11) or floor heating cable groove (12)
The diameter units of one heat-conducting metal silk (13) of top planes, the center line of the two adjacent floor heating water pipe groove (11) is respectively provided with one
Bar longitudinal direction heat-conducting metal groove (15), its top is located in the top planes of floor heating water pipe groove (11), the horizontal heat conduction
The top of wire groove (14) or longitudinal heat-conducting metal groove (15) is provided with heat-conducting metal silk (13), positioned at parquets panel (10)
Middle part.
4. floor-heating type Modular Floor according to claim 1, it is characterised in that:The keel grid (30) is by several sections
The grid of a closing is surrounded for rectangular square material, profile is " mouth " font, " day " font, sphere of movements for the elephants shape, " Wall " word
Shape or other present situations, keel grid (30) are embedded with thermal insulation thermal insulation board (33), and thermal insulation thermal insulation board (33) top is provided with instrument and led to
Groove (34), the square material is flitch or organic material, and thickness is identical.
5. the floor-heating type Modular Floor according to claim 1 or 4, it is characterised in that:The keel grid (30) adjacent A, B
The square material in both sides is provided with Embeded nut (38), connecting screw rod through hole (32), tool throughbore (31) and fot screw inclined hole
(35), the connecting screw rod through hole (32) and tool throughbore (31) are on conplane diverse location and parallel to each other, described
Embeded nut (38) is arranged on connecting screw rod through hole (32) and two center lines are overlapped;In other adjacent C, the square material in D both sides
Provided with connecting screw rod through hole (32), placed in the connecting screw rod through hole (32) by connecting screw rod (36);Accordingly, C, D two
In connecting screw rod through hole (32), the tool throughbore (31) on internal square material and the tool throughbore (31) on A, B both sides on side
Heart line on the same line, and parallel to keel grid (30) upper bottom surface and left and right side.
6. floor-heating type Modular Floor according to claim 5, it is characterised in that:The keel grid (30) is divided into first, second
Two types, the tool throughbore (31) on A type keel grid (30) A sides, connecting screw rod through hole (32) respectively with corresponding B-mode dragon
The connecting screw rod through hole (32) on bone grid (30) A sides, tool throughbore (31) are on same position, A type keel grid (30) B sides
Tool throughbore (31), the connecting screw rod through hole of connecting screw rod through hole (32) respectively with corresponding B-mode keel grid (30) B sides
(32), tool throughbore (31) is on same position;The connecting screw rod (36) on A type keel grid C, D sides is separately fixed at B-mode dragon
On the Embeded nut (38) on bone grid A, B sides, the connecting screw rod (36) on B-mode keel grid C, D sides is separately fixed at A type keel
On the Embeded nut (38) on grid A, B sides.
7. floor-heating type Modular Floor according to claim 1, it is characterised in that:The lace unit top (47) is provided with flower
Side tenon head (27), the size of the lace tenon (27) matches with the size of the positioning tongue-and-groove (21) of modular unit (45), institute
Lace tenon (27) inside and top are stated provided with logical provided with floor heating cable above floor heating water pipe groove (11) or lace tenon (27)
Groove (12), the water-heating type lace unit top (47) is provided with U-shaped floor heating water pipe groove (11).
8. the floor-heating type Modular Floor according to claim 1 or 7, it is characterised in that:The parquets panel (10) or lace
Panel (16) is combined into by equal, the different block of several piece thickness, seamless spliced, institute between its internal adjacent block
Block is stated for wooden unit or jade or stone or glass blocks or organic matter block.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201510643272.8A CN105113759B (en) | 2015-10-08 | 2015-10-08 | Floor-heating type Modular Floor and its component |
PCT/CN2016/099231 WO2017059764A1 (en) | 2015-10-08 | 2016-09-18 | Modular heating floor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201510643272.8A CN105113759B (en) | 2015-10-08 | 2015-10-08 | Floor-heating type Modular Floor and its component |
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CN105113759A CN105113759A (en) | 2015-12-02 |
CN105113759B true CN105113759B (en) | 2017-07-18 |
Family
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CN201510643272.8A Expired - Fee Related CN105113759B (en) | 2015-10-08 | 2015-10-08 | Floor-heating type Modular Floor and its component |
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CN (1) | CN105113759B (en) |
WO (1) | WO2017059764A1 (en) |
Families Citing this family (16)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105113759B (en) * | 2015-10-08 | 2017-07-18 | 李承军 | Floor-heating type Modular Floor and its component |
CN107401772A (en) * | 2017-08-30 | 2017-11-28 | 苏州卡尔玛智能暖居科技有限公司 | A kind of carbon fiber heating system and its installation method |
CN108149885B (en) * | 2017-12-30 | 2023-08-15 | 浙江亚厦装饰股份有限公司 | Floor heating assembly and paving method thereof |
CN108360789B (en) * | 2018-04-16 | 2024-06-04 | 广东金意陶陶瓷集团有限公司 | Electric heating ceramic tile with long service life and manufacturing method |
CN109989551B (en) * | 2019-04-12 | 2024-02-02 | 中国建筑设计研究院有限公司 | Standard ground module and house body |
IT202000001453A1 (en) | 2020-01-24 | 2021-07-24 | Pta Srl | SYSTEM OF RADIANT PANELS OR MODULAR SOLAR PANELS |
CN111878876A (en) * | 2020-06-06 | 2020-11-03 | 南京威克希尔建设工程有限公司 | Floor heating system convenient to improve indoor rate of heating |
CN111794523A (en) * | 2020-06-18 | 2020-10-20 | 杭州通达集团有限公司 | Floor installation method at water floor heating position |
CN111980357A (en) * | 2020-09-17 | 2020-11-24 | 明德倍适(天津)科技有限公司 | Keel assembly and floor heating structure |
CN112814327A (en) * | 2021-01-04 | 2021-05-18 | 胡益安 | Anti-deformation wood floor |
CN113017334A (en) * | 2021-05-11 | 2021-06-25 | 青岛庆友石墨烯科技有限公司 | Production process of graphene water heating mattress |
CN113339871B (en) * | 2021-06-28 | 2024-09-06 | 浙江亚厦装饰股份有限公司 | Floor heating water pipe installation fixing structure and installation method thereof |
CN113789931A (en) * | 2021-08-03 | 2021-12-14 | 北京永创众信建筑设计有限公司 | Building ground energy-saving heat-insulating structure |
CN113719876B (en) * | 2021-09-07 | 2024-09-06 | 浙江亚厦装饰股份有限公司 | Solid-laid dry floor heating structure and installation method |
CN114017842B (en) * | 2021-10-25 | 2023-03-21 | 金螳螂精装科技(苏州)有限公司 | Modular installation design structure of pressure-sensitive temperature-control electric floor heating |
CN114541683B (en) * | 2022-02-23 | 2024-06-07 | 深圳市品尚工程有限公司 | Large-specification sheet paving structure and construction method thereof |
Family Cites Families (15)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2214467Y (en) * | 1995-03-14 | 1995-12-06 | 孙义善 | Splicing type raised floor |
GB2312994A (en) * | 1996-05-08 | 1997-11-12 | T T H Ltd | Cross-over for cable trunking |
JP3764584B2 (en) * | 1998-04-16 | 2006-04-12 | 大阪瓦斯株式会社 | Heating floor construction method |
CN1223742C (en) * | 2003-09-02 | 2005-10-19 | 程崇钧 | Floor decorated by floor tiles and assembling method |
CN2688810Y (en) * | 2004-01-09 | 2005-03-30 | 李俊山 | Mosaic wooden floor |
CN201087525Y (en) * | 2007-10-11 | 2008-07-16 | 金月华 | Assembled floor |
CN201416252Y (en) * | 2009-01-22 | 2010-03-03 | 杨建忠 | Irregular joggling wood floor block and parquet wood floor assembly and parquet wood floor thereof |
JP2014070329A (en) * | 2012-09-27 | 2014-04-21 | Asahi Woodtec Corp | Overlaying floor material for reform |
CN203257047U (en) * | 2013-04-11 | 2013-10-30 | 彭志军 | Floor of solid wood spliced board |
CN203755599U (en) * | 2014-03-14 | 2014-08-06 | 吕美荣 | Floor heating floor |
CN203846728U (en) * | 2014-04-29 | 2014-09-24 | 上海材道工艺品有限公司 | Heating solid wood block floor |
CN104100011A (en) * | 2014-07-29 | 2014-10-15 | 天津达因建材有限公司 | Toilet floor heating waterproof construction method and toilet floor heating waterproof system |
CN204662860U (en) * | 2015-04-16 | 2015-09-23 | 浙江汇德木业有限公司 | A kind of ground heating floor |
CN205046806U (en) * | 2015-10-08 | 2016-02-24 | 李承军 | Warm up section mould piece floor and subassembly thereof |
CN105113759B (en) * | 2015-10-08 | 2017-07-18 | 李承军 | Floor-heating type Modular Floor and its component |
-
2015
- 2015-10-08 CN CN201510643272.8A patent/CN105113759B/en not_active Expired - Fee Related
-
2016
- 2016-09-18 WO PCT/CN2016/099231 patent/WO2017059764A1/en active Application Filing
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CN105113759A (en) | 2015-12-02 |
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