CN202048620U - Far-infrared heat energy floor - Google Patents

Far-infrared heat energy floor Download PDF

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Publication number
CN202048620U
CN202048620U CN2011201545731U CN201120154573U CN202048620U CN 202048620 U CN202048620 U CN 202048620U CN 2011201545731 U CN2011201545731 U CN 2011201545731U CN 201120154573 U CN201120154573 U CN 201120154573U CN 202048620 U CN202048620 U CN 202048620U
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CN
China
Prior art keywords
socket
far
substrate
conductive core
floor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2011201545731U
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Chinese (zh)
Inventor
高建忠
汪小锋
毕玉春
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
JIANGSU ETING WOODWORK CO Ltd
Original Assignee
JIANGSU ETING WOODWORK CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by JIANGSU ETING WOODWORK CO Ltd filed Critical JIANGSU ETING WOODWORK CO Ltd
Priority to CN2011201545731U priority Critical patent/CN202048620U/en
Application granted granted Critical
Publication of CN202048620U publication Critical patent/CN202048620U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a far-infrared heat energy floor, comprising a substrate, wherein trough tenons are arranged on the circumferential walls of the substrate; a far-infrared radiation geothermal membrane is closely clung to the inner part of the substrate; the far-infrared radiation geothermal membrane is provided with electrode plates that are arranged at two sides of the substrate respectively along the length direction; a socket with a jack or an insertion slot is fixed on an electrode seat; the socket is externally provided with an insulating sleeve; the insulating sleeve of the socket is closely clung to the substrate; the assembling holes arranged at two ends of the substrate in the length direction are communicated with the jack or the insertion slot of the socket respectively; a conducting part comprises a conductor and two conducting core columns arranged at two ends of the conductor; and the two conducting core columns of the conducting part are inserted in the jack or the insertion slot of the adjacent sockets of the two jointed substrates respectively. The far-infrared heat energy floor has the advantages that the structure is simple, the conducting parts between the floors can be connected with each other reliably, the construction efficiency can be improved, and the operation is reliable in improving construction efficiency.

Description

The far-infrared heat energy floor
Technical field
The utility model relates to a kind of far-infrared heat energy floor, belongs to technical field of floor.
Background technology
Along with the reform of the raising day by day, particularly housing commercialization of people's economic life level, seeking new heating system, it is indoor that the low-temp radiating geothermal heating comes to be installed in office and dwelling house etc. more.And far-infrared radiation ground hotting mask is through processing last hot pressing on insulation polyester film by special composite conducting carbon fiber, metal current-carrying bar, be different from traditional electrothermal wire heating, has the planar heating of radiation, heat-transfer area is big, it is fast and even to conduct heat, than electric wire floor construction characteristics easily, the application in Electrical heating floor is also more and more.Present disclosed Electrical heating floor is that far-infrared radiation underground heat mould is connected in the substrate, and each floor is fixed with two copper electrodes respectively near two ends, the link of this copper electrode is arranged on the bottom surface on floor, each copper electrode is connected with the metal current-carrying bar end of far-infrared radiation ground hotting mask, each connects on the copper electrode that the lead two ends are welded on every adjacent block floor, so that far-infrared radiation ground hotting mask forms the parallel conductance loop, in the hotting mask energising back heating of far-infrared radiation ground, and by the floor heating space.But install for laying on present floor, the floor periphery is by the mutual clamping of chase mortise, wire bonds is when two copper electrodes, can occur some rosin joints inevitably, in the use, the floor is after using, floor vibration or be subjected to climate change, the floor can produce distortion, thus easily cause the solder joint between copper electrode and the lead to come off, and influence being connected between lead and the copper electrode.In addition, lead is positioned at the outside, floor, in case lead and copper electrode solder joint come off, lead will be thrown off copper electrode, reduces the functional reliability on floor.In addition, there is not insulating barrier between electric wire and the copper electrode, in the heating process repeatedly on floor, the moisture of bottom, floor can't in time be discharged again, easily there is steam the junction of copper electrode and lead, make the resistance of blank area increase, cause the blank area hot-spot, this has also reduced the reliability of floor work.Moreover, in work progress, need the scene by the welding of the copper electrode on lead and adjacent two floors, be difficult on the one hand guaranteeing welding reliability, also increased the engineering time on the other hand, the reduction efficiency of construction.
Summary of the invention
The purpose of this utility model provides a kind of simple in structure, and the electric-conductor between each floor connects reliable, the far-infrared heat energy floor that can improve efficiency of construction.
The utility model is that the technical scheme that achieves the above object is: a kind of far-infrared heat energy floor, comprise substrate, have chase mortise on the wall around the substrate, be closely fitted with far-infrared radiation ground hotting mask in the substrate, it is characterized in that: described far-infrared radiation ground hotting mask is respectively equipped with electrode tip holder along the substrate length direction in both sides, socket with jack or slot is fixed on the electrode tip holder, the outside of socket has insulation sleeve, the insulation sleeve and the substrate of socket fit tightly, the installing hole that the substrate two ends are provided with along its length is with the jack or the slot of socket communicate separately, electric-conductor comprises conductor and is fixed on the conductive core pole at conductor two ends that two conductive core poles of electric-conductor are plugged on respectively in the jack or slot of the two substrates adjacent outlet that engages.
The utility model is respectively equipped with electrode tip holder in the both sides of far-infrared radiation ground hotting mask, and socket is fixed with on the electrode tip holder, the outside of socket has insulation sleeve and substrate fits tightly, make the electrode tip holder and the socket of far-infrared radiation ground hotting mask all be arranged in the substrate, even if the floor produces vibration or when can be out of shape by the climate change floor, the electrode tip holder and the socket of far-infrared radiation ground hotting mask deform simultaneously, so can guarantee that socket and electrode tip holder closely close, far-infrared radiation ground hotting mask is reliably generated heat.The utility model is connected with adjacent socket by the conductive core pole on the electric-conductor, and the socket outside is provided with insulation sleeve, socket and conductive core pole are connected structure, not only simple in structure, the electric-conductor between each floor is connected reliably, again by the exposed area of insulation sleeve with the minimizing socket, reduce the heating phenomenon of joint part, only need direct plug-in mounting in the construction, swift to operate, convenient, improve efficiency of construction.
Description of drawings
Below in conjunction with accompanying drawing embodiment of the present utility model is described in further detail.
Fig. 1 is the structural representation on the utility model far-infrared heat energy floor.
Fig. 2 is the sectional structure schematic diagram of the A-A of Fig. 1.
Fig. 3 is the structural representation of electric-conductor.
Fig. 4 is the another kind of structural representation on the utility model far-infrared heat energy floor.
Fig. 5 is the B-B sectional structure schematic diagram of Fig. 4.
Fig. 6 is the another kind of structural representation of electric-conductor.
Wherein: 1-substrate, 11-panel, 12-moist-proof board, 2-far-infrared radiation ground hotting mask, 3-electrode tip holder, 4-socket, 5-insulation sleeve, 6-conductive core pole, 61-elasticity notch, 7-insulating base, 8-conductor.
The specific embodiment
See shown in Fig. 1~6, far-infrared heat energy of the present utility model floor, comprise substrate 1, have chase mortise on the wall around the substrate 1, this substrate 1 can adopt the solid wood composite board of splicing, bamboo fibre composite plate or fiber composite plate, interconnect by chase mortise and adjacent substrate 1 on the wall around the substrate 1, can be shown in Fig. 1~2 and 4~5, this substrate 1 top also can closely connected panel 11, this panel 11 adopts abrasion-proof paper or/and facing paper makes, and the closely connected moist-proof board 12 in bottom surface, as adopt balance paper etc., be closely fitted with far-infrared radiation ground hotting mask 2 in the substrate 1, and far-infrared radiation ground hotting mask 2 is respectively equipped with electrode tip holder 3 along substrate 1 length direction in both sides, socket 4 with jack or slot is fixed on the electrode tip holder 3, the outside of socket 4 has insulation sleeve 5, the insulation sleeve 5 and the substrate 1 of socket 4 fit tightly, the installing hole that substrate 1 two ends are provided with along its length is with the jack or the slot of socket 4 communicate separately, when making substrate 1, can with far-infrared radiation ground hotting mask 2 and socket 4 in substrate 1, electrode tip holder 3 and socket 4 can be changed with the variation of substrate 1.The utility model electric-conductor comprises conductor 8 and is fixed on the conductive core pole 6 at conductor 8 two ends, this conductor 8 can adopt spiral outside to have the conductive electric wire or the outside bus or the conductive plate with insulating barrier of insulating barrier, and two conductive core poles 6 of electric-conductor are plugged on respectively in the jack or slot of two substrates 1 adjacent outlet 4 that engages, and socket 4 by each substrate 1 and electric-conductor reliably conduct electricity the far-infrared radiation ground hotting mask 2 in each substrate 1.
See shown in Fig. 2,4 that electrode tip holder 3 every sides of far-infrared radiation of the present utility model ground hotting mask 2 are provided with two, and each electrode tip holder 3 is arranged on the bottom surface of far-infrared radiation ground hotting mask 2.See shown in Fig. 1~3, the top of socket 4 of the present utility model has conductive seat, conductive seat on the socket 4 is welded on the electrode tip holder 3, insulation sleeve 5 is coated on the outside of socket 4, and conductive core pole 6 rear portions are fixed with insulating base 7, front middle part is provided with horizontal elasticity notch 61, two conductive core poles 6 connect by conductor 8, conductive core pole 6 is inserted in the jack of socket 4, and conductive core pole 6 is connected reliably with socket 4 by the elasticity of conductive core pole 6, insulating base 7 on the conductive core pole 6 joins with socket 4 end faces, when conductive core pole 6 is installed in the jack of socket 4, spacing by insulating base on the conductive core pole 67 and socket 4 end faces, and socket 4 end faces are insulated.
See shown in Fig. 4~6, socket 4 of the present utility model is for having the elasticity holder of slot, one face down bonding of elasticity holder is connected on the electrode tip holder 3, elasticity holder top is welded on the electrode tip holder 3, and insulation sleeve 5 is coated on the outside of socket 4, conductive core pole 6 rear portions in the form of sheets have insulating base 7, two conductive core poles 6 connect by conductor 8, conductive core pole 6 is inserted in the elasticity holder, elasticity by the elasticity holder clamps conductive core pole 6, and the insulating base 7 on the conductive core pole 6 joins with socket 4 end faces, when conductive core pole 6 is installed in the jack of socket 4, spacing by insulating base on the conductive core pole 67 and socket 4 end faces, and socket 4 end faces are insulated.

Claims (4)

1. far-infrared heat energy floor, comprise substrate (1), substrate (1) has chase mortise on the wall all around, be closely fitted with far-infrared radiation ground hotting mask (2) in the substrate (1), it is characterized in that: described far-infrared radiation ground hotting mask (2) is respectively equipped with electrode tip holder (3) along substrate (1) length direction in both sides, socket (4) with jack or slot is fixed on the electrode tip holder (3), the outside of socket (4) has insulation sleeve (5), the insulation sleeve (5) of socket (4) fits tightly with substrate (1), the installing hole that substrate (1) two ends are provided with along its length is with the jack or the slot of socket (4) communicate separately, electric-conductor comprises conductor (8) and is fixed on the conductive core pole (6) at conductor (8) two ends that two conductive core poles (6) of electric-conductor are plugged on respectively in the jack or slot of two substrates (1) adjacent outlet (4) that engages.
2. far-infrared heat energy according to claim 1 floor is characterized in that: the every side of electrode tip holder (3) of described far-infrared radiation ground hotting mask (2) is provided with two, and each electrode tip holder (3) is arranged on the bottom surface of far-infrared radiation ground hotting mask (2).
3. far-infrared heat energy according to claim 1 floor, it is characterized in that: the conductive seat on the described socket (4) is welded on the electrode tip holder (3), insulation sleeve (5) is coated on the outside of socket (4), the fixing hungry insulating base (7) in conductive core pole (6) rear portion, front middle part are provided with horizontal elasticity notch (61), conductive core pole (6) is inserted in the jack of socket (4), and the insulating base (7) on the conductive core pole (6) joins with socket (4) end face.
4. far-infrared heat energy according to claim 1 floor, it is characterized in that: described socket (4) is for having the elasticity holder of slot, one face down bonding of elasticity holder is connected on the electrode tip holder (3), insulation sleeve (5) is coated on the outside of socket (4), conductive core pole in the form of sheets (6) rear portion has insulating base (7), conductive core pole (6) is inserted in the elasticity holder, and the insulating base (7) on the conductive core pole (6) joins with socket (4) end face.
CN2011201545731U 2011-05-16 2011-05-16 Far-infrared heat energy floor Expired - Fee Related CN202048620U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011201545731U CN202048620U (en) 2011-05-16 2011-05-16 Far-infrared heat energy floor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011201545731U CN202048620U (en) 2011-05-16 2011-05-16 Far-infrared heat energy floor

Publications (1)

Publication Number Publication Date
CN202048620U true CN202048620U (en) 2011-11-23

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ID=44988927

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011201545731U Expired - Fee Related CN202048620U (en) 2011-05-16 2011-05-16 Far-infrared heat energy floor

Country Status (1)

Country Link
CN (1) CN202048620U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102954524A (en) * 2012-11-23 2013-03-06 江苏怡天木业有限公司 Insulated far infrared heat floor board
CN106522506A (en) * 2016-12-27 2017-03-22 南京林业大学 Safe and rapid circuit connecting structure and method for heating floor
CN106567522A (en) * 2015-10-09 2017-04-19 江苏怡天木业有限公司 Energy-saving heating floor

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102954524A (en) * 2012-11-23 2013-03-06 江苏怡天木业有限公司 Insulated far infrared heat floor board
CN106567522A (en) * 2015-10-09 2017-04-19 江苏怡天木业有限公司 Energy-saving heating floor
CN106522506A (en) * 2016-12-27 2017-03-22 南京林业大学 Safe and rapid circuit connecting structure and method for heating floor
CN106522506B (en) * 2016-12-27 2022-03-29 南京林业大学 Safe and quick connection structure and connection method for heating floor circuit

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20111123

Termination date: 20180516