CN201476150U - Far infrared health-care heating plate - Google Patents

Far infrared health-care heating plate Download PDF

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Publication number
CN201476150U
CN201476150U CN2009201546489U CN200920154648U CN201476150U CN 201476150 U CN201476150 U CN 201476150U CN 2009201546489 U CN2009201546489 U CN 2009201546489U CN 200920154648 U CN200920154648 U CN 200920154648U CN 201476150 U CN201476150 U CN 201476150U
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China
Prior art keywords
layer
far infrared
insulating barrier
heating plate
copper foil
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Expired - Fee Related
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CN2009201546489U
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Chinese (zh)
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王军
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Individual
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Individual
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Priority to CN2009201546489U priority Critical patent/CN201476150U/en
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Publication of CN201476150U publication Critical patent/CN201476150U/en
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Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a far infrared health-care heating plate which is in a rectangle on the whole, and has the technical key points that the rectangular heating plate is provided with an insulating layer, a far infrared heating layer, an insulated isolation layer, a conductive shielding film, an insulating layer and an anion releasing layer from top to bottom, wherein the two sides of the far infrared heating layer are connected with a pair of copper foil current-carrying strips in parallel; any of the two ends of the length of the copper foil current-carrying strips inside an insulating bonding layer can be taken as a position for installing a connecting lead wiring card. By adopting the conductive shielding film, the electrostatic field induced by the surface of the heating plate can be completely shielded in the high temperature damp environment; and particularly, the anion releasing layer is added on the surface of the insulating layer, and the anion releasing layer is heated when in far infrared low temperature heating so as to release a great quantity of anions which are good for the human health, so that the far infrared health-care heating plate has the function of health protection. The far infrared health-care heating plate is simple in structure, lower in cost, safe, damp-proof and convenient for construction and installation, is mainly applicable to the heating of buildings such as houses, shops, hotels, greenhouses and the like, and has the advantages of energy conservation, safety, health protection, high thermal efficiency, wide application scope and the like.

Description

A kind of far infrared health care heating plate
Technical field
The utility model belongs to the indoor heating technical field, relates in particular to a kind of far infrared health care heating plate.
Traditional heating plant adopts fire coal, gas fired-boiler or devices such as electric heater, air-conditioning usually.As everyone knows, its shortcoming is: bulky, and energy consumption height, contaminated environment.At present, the far infrared heating plate that occurs on the market need not fuel, environmental protection and energy saving, and save the space, shortcoming is: use mid and far infrared heating layer surface induction voltage height in the environment of high temperature, humidity, have hidden danger; If the employing electric field shielding, then the secondary difficulty of construction is big, the input cost height; And exist the single problem of function of use.
Summary of the invention
The purpose of this utility model is in order to overcome the defective of above-mentioned prior art, a kind of not only energy-saving and environmental protection are provided, save the space, and performance to be safe and reliable, health care, good effect for purifying air, the far infrared health care heating plate of easy construction.
The purpose of this utility model is to realize like this; A kind of far infrared health care heating plate, it is characterized in that: described rectangle heating plate is provided with insulating barrier, far infrared heating layer, dielectric isolation layer, conductive shield film, insulating barrier and anion releasing layer from top to bottom, in far infrared heating layer both sides, the a pair of Copper Foil current-carrying of parallel connection bar, be respectively the wiring card installation site on the Copper Foil carrier strip in frame insulation adhesive layer region, this is equivalent to be connected to two leads at far infrared heating layer two ends to Copper Foil current-carrying bar.
It is shaped as the rectangle that area is slightly less than the insulating barrier area described far infrared heating layer, and the far infrared heating layer is placed in the middle, is arranged on insulating barrier below, leaves width around the insulating barrier and be 10 millimeters frame.
Outer rim and the extension concordant of described Copper Foil stream bar length direction with the outer rim of far infrared heating layer both sides width, its length equates with the bond length of rectangle insulating barrier, in far infrared heating layer and dielectric isolation layer and the corresponding space of Copper Foil current-carrying bar inner edge, be filled with the insulation adhesive layer.
The width of described dielectric isolation layer equates with the width of far infrared heating layer and covers a Copper Foil current-carrying bar and far infrared heating layer, be not insulated on the Copper Foil current-carrying bar of separation layer covering, be coated with the conduction tack coat, the conductive shield film that width and length is equated by the conduction tack coat with the far infrared heating layer is fixed on Copper Foil current-carrying bar and the dielectric isolation layer, form shield loop, dielectric isolation layer is withstand voltage to be not less than 1000 volts.
Described insulating barrier and anion releasing layer pressing one, be arranged on the conductive shield film, its area equates that with the area of last layer insulating the insulating barrier tack coat around the upper and lower insulating barrier in the frame region is as the insulated enclosure band, and the insulating barrier length direction is printed with shear line.
Described insulating barrier upper and lower surface all can be provided with the anion releasing layer, and insulating barrier all adopts epoxy resin or PE polyester film.
The utility model is owing to adopted the conductive shield film, make that the electric field of the heating plate surface induction in high temperature, wet environment is shielded fully, avoided the injury of induction high voltage (can reach 100V), prevented that simultaneously when heating energising from producing electric spark and causing short circuit or open circuit human body; Got rid of hidden danger.Particularly increase the anion releasing layer at surface of insulating layer, the anion releasing layer is heated and discharges the anion that is of value to health in a large number in the heating of far infrared low temperature, makes far infrared heating plate have the new function of health-care physiotherapeutic.
The utility model compared with prior art has tangible advantage and good effect.The utility model is simple in structure, and cost is lower, and safety is moistureproof, and construction install convenience mainly is applicable to housing room, the hotel, shop, and building heatings such as greenhouse and green house of vegetables have energy-saving and environmental protection, safe healthcare, thermal efficiency height, advantages such as applied range.
Description of drawings
Fig. 1 is a front view of the present utility model;
Fig. 2 is the B-B profile of Fig. 1;
Fig. 3 is the A-A profile of Fig. 1.
1 is that insulating barrier 2 is anion releasing layer for insulation adhesive layer 10 for insulating barrier 11 for conductive shield film 9 for conduction tack coat 8 for dielectric isolation layer 7 for insulation adhesive layer 6 for Copper Foil current-carrying bar 5 for far infrared heating layer 3.4 among the figure.
The specific embodiment
The utility model is described in further detail below in conjunction with accompanying drawing
As shown in drawings, the utility model is by insulating barrier 1,10, Copper Foil current-carrying bar 3,4 far infrared heating layers 2, and dielectric isolation layer 6, conductive shield film 8, anion releasing layer 11, insulation adhesive layer 5,9, conduction tack coat 7 is formed.Be shaped as the rectangle thin plate, length and width, thick size can be 500~600 * 200~210 * 0.2~0.5 millimeter.From Fig. 2 .3 as seen, its cross section is a sandwich construction.Far infrared heating layer 2 adopts carbon ink conductive heating layer or electric conduction of carbon fiber heating layer.It is shaped as the rectangle that area is slightly less than insulating barrier 1 area.The length of far infrared heating layer 2 and width all length and the width than insulating barrier 1 are little 20 millimeters, and far infrared heating layer 2 is placed on insulating barrier 1 below between two parties.Leave width around the insulating barrier 1 and be 10 millimeters frame.Concordant with the outer rim of far infrared heating layer 2 both sides width and extend as the outer rim of Copper Foil current-carrying bar 3,4 length directions of power line zero line, live wire respectively, its length equates with the bond length of rectangle insulating barrier 1, is filled with insulation adhesive layer 5 in far infrared heating layer 2 and dielectric isolation layer 6 and the corresponding space of Copper Foil current-carrying bar 3,4 inner edges.The width of dielectric isolation layer 6 equates with the width of far infrared heating layer 2 and covers Copper Foil current-carrying bar 4 and far infrared heating layer 2, be not insulated on the Copper Foil current-carrying bar 3 that separation layer 6 covers and be coated with conduction tack coat 7, be fixed on Copper Foil current-carrying bar 3 and the dielectric isolation layer 6 by conduction tack coat 7 conductive shield films 8, form shield loop, dielectric isolation layer 6 adopts the high pressure resistant insulation polyester material, and it is withstand voltage to be not less than 1000 volts.
Because conductive shield film 8 electrically connects by conduction tack coat 7 and Copper Foil current-carrying bar 3, make that the electric charge that goes out in vertical electric field ionization is shielded fully, avoids responding to the injury of high voltage to human body after 2 energising of far infrared heating layer.
Insulating barrier 10 and anion releasing layer 11 pressing one, be arranged on the conductive shield film 8, its area equates with insulating barrier 1 area, frame around insulating barrier 1 and the insulating barrier 10, be filled with insulation adhesive layer 9, the insulation adhesive layer 9 around insulating barrier 1 and the insulating barrier 10 in the frame region is as the insulated enclosure band.The insulating barrier length direction is printed with shear line, can rationally shear and use according to the different demands of construction site when producing in enormous quantities.Also can make the stripe-arrangement form when far infrared heating layer 2 is made, save material.
In order to strengthen far-infrared physiotherapy and function of health care, can also adopt the insulating barrier upper and lower surface to be equipped with anion releasing layer 11 (not shown), insulating barrier 1,10 all adopts existing epoxy resin or PE polyester film.
During lay anion releasing layer 11 surfaces outwardly, during far infrared health care heating plate energising heat release, the anion releasing layer is heated and fully discharges the anion of favourable health, thus the purpose that reaches health care and purify air.

Claims (6)

1. far infrared health care heating plate, it is characterized in that: described rectangle heating plate is provided with insulating barrier (1), far infrared heating layer (2), dielectric isolation layer (6), conductive shield film (8), insulating barrier (10) from top to bottom, reaches anion releasing layer (11), in far infrared heating layer (2) both sides, the a pair of Copper Foil current-carrying of parallel connection bar (3,4) is respectively the wiring card installation site on the Copper Foil current-carrying bar (3,4) in frame insulation adhesive layer region.
2. heating plate according to claim 1, it is characterized in that: it is shaped as the rectangle that area is slightly less than insulating barrier (1) area described far infrared heating layer (2), far infrared heating layer (2) is placed in the middle, be arranged on insulating barrier (1) below, it is 10 millimeters frame that insulating barrier (1) leaves width all around.
3. heating plate according to claim 1, it is characterized in that: and the extension concordant of the outer rim of described Copper Foil current-carrying bar (3,4) length direction with the outer rim of far infrared heating layer (2) both sides width, its length equates with the bond length of rectangle insulating barrier (1), is filled with insulation adhesive layer (5) in far infrared heating layer (2) and dielectric isolation layer (6) and Copper Foil current-carrying bar (3,4) the corresponding space of inner edge.
4. heating plate according to claim 3, it is characterized in that: the width of described dielectric isolation layer (6) equates with the width of far infrared heating layer (2) and covers Copper Foil current-carrying bar (4) and far infrared heating layer (2), be not insulated on the Copper Foil current-carrying bar (3) that separation layer (6) covers and be coated with conduction tack coat (7), be fixed on Copper Foil current-carrying bar (3) and the dielectric isolation layer (6) by tack coat (7) conductive shield film (8), form shield loop, dielectric isolation layer (6) is withstand voltage to be not less than 1000 volts.
5. according to claim 1 or 2 or 3 described heating plates, it is characterized in that: described insulating barrier (10) and anion releasing layer (11) pressing one, be arranged on the conductive shield film (8), its area equates with the area of insulating barrier (1), the insulation adhesive layer (9) in the frame region is as the insulated enclosure band all around for insulating barrier (1) insulating barrier (10), and insulating barrier (1) length direction is printed with shear line.
6. heating plate according to claim 5 is characterized in that: described insulating barrier (1,10) upper and lower surface is equipped with anion releasing layer (11), and insulating barrier (1,10) all adopts epoxy resin or PE polyester film.
CN2009201546489U 2009-05-18 2009-05-18 Far infrared health-care heating plate Expired - Fee Related CN201476150U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201546489U CN201476150U (en) 2009-05-18 2009-05-18 Far infrared health-care heating plate

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Application Number Priority Date Filing Date Title
CN2009201546489U CN201476150U (en) 2009-05-18 2009-05-18 Far infrared health-care heating plate

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CN201476150U true CN201476150U (en) 2010-05-19

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102661008A (en) * 2012-05-31 2012-09-12 周东雪 Ha-NTP functional fireproof insulation board for outer wall and inner wall and manufacture method of Ha-NTP functional fireproof insulation board
WO2017097241A1 (en) * 2015-12-10 2017-06-15 淄博环能海臣环保技术服务有限公司 Electrostatic dust-sucking and air-purifying clamped electrothermal film-sandwiched glass floor for underfloor heating
CN106996587A (en) * 2017-03-15 2017-08-01 浙江庆元赛博电子科技有限公司 The integrating device of Far infrared carbon fiber heating furred ceiling

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102661008A (en) * 2012-05-31 2012-09-12 周东雪 Ha-NTP functional fireproof insulation board for outer wall and inner wall and manufacture method of Ha-NTP functional fireproof insulation board
WO2017097241A1 (en) * 2015-12-10 2017-06-15 淄博环能海臣环保技术服务有限公司 Electrostatic dust-sucking and air-purifying clamped electrothermal film-sandwiched glass floor for underfloor heating
CN106996587A (en) * 2017-03-15 2017-08-01 浙江庆元赛博电子科技有限公司 The integrating device of Far infrared carbon fiber heating furred ceiling

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100519

Termination date: 20130518