CN1124908A - Far-infrared conduction film electric heater - Google Patents

Far-infrared conduction film electric heater Download PDF

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Publication number
CN1124908A
CN1124908A CN 93112735 CN93112735A CN1124908A CN 1124908 A CN1124908 A CN 1124908A CN 93112735 CN93112735 CN 93112735 CN 93112735 A CN93112735 A CN 93112735A CN 1124908 A CN1124908 A CN 1124908A
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CN
China
Prior art keywords
electric heater
far
base material
conduction film
infrared
Prior art date
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Granted
Application number
CN 93112735
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Chinese (zh)
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CN1050963C (en
Inventor
胡行方
田静芬
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.)
KELING SCIENCE AND TECHNOLOGY INDUSTRY Co Ltd SHANGHAI
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KELING SCIENCE AND TECHNOLOGY INDUSTRY Co Ltd SHANGHAI
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.)
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Publication date
Application filed by KELING SCIENCE AND TECHNOLOGY INDUSTRY Co Ltd SHANGHAI filed Critical KELING SCIENCE AND TECHNOLOGY INDUSTRY Co Ltd SHANGHAI
Priority to CN93112735A priority Critical patent/CN1050963C/en
Publication of CN1124908A publication Critical patent/CN1124908A/en
Application granted granted Critical
Publication of CN1050963C publication Critical patent/CN1050963C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The electric heater is made up by plating large-area electrically conductive film on non-metal substrate by magnetically controlled sputtering or vacuum plating and features high and uniform surficial temp. up to 150-300 deg.C, real far infrared heating and high thermal efficiency.

Description

Far-infrared conduction film electric heater
The present invention relates to a kind of conduction film electric heater, be specifically related to a kind of magnetron sputtering or the far-infrared conduction film electric heater of the even lining of vacuum coating method on various non-metallic substrates of utilizing.
Electric heater in the market, widespread usage is a kind of twines heating wire on ceramic burner, put the devitrified glass cover then or make the heating technology of thermal source with the quartz halogen lamp heating tube.The electric heater of this form, because burner is in work under the high temperature, therefore the wavelength of the infrared radiation of being launched is shorter; And the burner thermal radiation also must so not only the heat efficiency is low for this heating technique, and be difficult to reach the far wavelength of " really " by arriving heated object or person body after the reflector reflection.
Also having a class electric heater on the market is to adopt graphite or the metal coating type conducting film as main conductive material, various shortcoming such as this conducting film ubiquity serviceability is poor, the life-span short, resistance uniformity and repeatability control difficulty.
In recent years, still have a class to introduce the so-called wall-hanging electric heating device of assembling abroad, they mainly are to be base material with the enamel plate, adopt metal such as pyrolytic coating method spraying aluminium to be the strip Electric radiant Heating Film.This strip Electric radiant Heating Film is owing to the heating of aluminising place, and the aluminising place does not generate heat, and causes the Electric radiant Heating Film heating inhomogeneous, and local temperature is higher.So this strip enamel Electric radiant Heating Film is very high to the quality requirement of enamel plate, and this strip enamel Electric radiant Heating Film is also very high to production Technology (pyrolytic coating) requirement of heating film self, thereby this warmer fails to produce at home and popularize always.
The purpose of this invention is to provide a kind of real far-infrared electric heater even, that the heat efficiency is high that generates heat.
The present invention be by a kind of with magnetron sputtering or vacuum coating method, the electric heater of lining conductive metal film on various non-metallic substrates.It comprises conductive film, base material and electrode, and described conductive film lining material can be selected from various metals such as aluminium, chromium or nickel, also can be selected from nickel-chromium, iron-chromium-aluminium or is the various alloy materials of base with nickel-chromium.Conductive metal film of the present invention is to adopt mode lining that large tracts of land evenly adds plating on the nonmetallic materials base material of various sizes size, and is equipped with electrode and just forms electric heater of the present invention.
The non-metallic substrate of far-infrared conduction film electric heater of the present invention can be selected from enamel, devitrified glass, pottery or plastics etc.
The present invention adopts coating technique large tracts of land on enamel plate or other non-metallic substrate such as magnetron sputtering or vacuum coating evenly to add plating electric heating metal film, makes various electrothermal devices such as warmer.The metallic film electric heater that this large tracts of land adds plating has following advantage:
1. to reach large tracts of land even for the surface temperature of heater, and the degree of heat can be controlled between 150-300 ℃, realizes real Far-infrared Heating, the absolute flames of anger, and the combustible materials such as timber, cotton that are difficult for igniting.
2. be Far-infrared Heating owing to conductive film of the present invention is resulting, the heat efficiency height of Far-infrared Heating, and because electric heater of the present invention evenly adds the plating conducting film in high radiation substrate (for example enamel plate) one side comprehensively, utilize the hemisphere infrared emanation coefficient little (<0.30) of conducting film and the hemisphere infrared emanation rate of surface (front) material (for example enamel) big (>0.85), therefore radiant heat mainly passes through the front to external radiation, so the efficiency of heating surface is high especially.
3. the present invention adopts advanced coating process such as magnetron sputtering, makes Electric radiant Heating Film have the highest uniformity and process controllability.This film also can be cut apart by partition, carries out series and parallel and fetches the heating power of regulating heating film and adapt to various supply voltages; Also can use power and temperature requirement, control the heating power of Electric radiant Heating Film by change metal ingredient, thickness according to difference.
4. Electric radiant Heating Film of the present invention in 150-300 ℃ of temperature ranges useful life more than 5000 hours.
Fig. 1 is the primary structure schematic diagram of conduction film electric heater of the present invention: wherein 1 is the surperficial non-metallic substrate that scribbles far-infrared conduction film of the present invention, and 2 is electrode, and 3 is lead.Lead is connected in power supply.
Embodiment 1
Base material: 35 * 45cm 2The enamel plate
Coating process: magnetron sputtering
Device: JT12 magnetic control sputtering device
Target (wt%) Ni80% Cr20%
Parameter: sputtering voltage 500-700V
Sputtering current 25-40A
Sputter gas Ar
The plated film mode: large tracts of land evenly adds plating
Heater power control: 1000-1500W embodiment 2:
Base material: 35 * 45cm 2The enamel plate
Coating process: magnetron sputtering
Device: JT12 magnetic control sputtering device
Target: 1Cr18Ni9Ti steel alloy
Parameter: sputtering voltage 500-700V
Sputtering current 25-40A
Sputter gas Ar
The plated film mode: large tracts of land evenly adds plating
Heater power control: 1000-1500W embodiment 3:
Base material: 35 * 45cm 2Microcrystal glass plate
Coating process: magnetron sputtering
Other all technologies and Properties Control etc. are all with embodiment 2.Embodiment 4:
Base material: polyimide plate 35 * 45cm 2
Coating process: magnetron sputtering
Target: Al
Properties Control: heating power 500-750W
Other: are with embodiment 1 embodiment 5:
Base material: ceramic wafer 28 * 28cm 2
Coating process: magnetron sputtering
Target: Ni
Other: are with embodiment 1 embodiment 6:
Base material: simple glass 35 * 60cm 2
Coating process: vacuum coating
Device: vacuum coating equipment KD-700
Evaporation source material: Al silk φ 1m/m
Evaporation thermal source: three groups of helical tungsten filamens
Electric current 60A
Power 50W * 3
The plated film mode: large tracts of land evenly adds plating
Heater power control: 300-500W

Claims (5)

  1. One kind with magnetron sputtering or vacuum coating method lining the far-infrared conduction film electric heater on various non-metallic substrates, it comprises conductive film, base material and electrode, it is characterized in that:
    (1) this conductive film lining material can be selected from various metals such as aluminium, chromium or nickel, also can be selected from nickel-chromium or is the various alloy materials of base with nickel-chromium;
    (2) this conductive metal film is to adopt large tracts of land evenly to add the mode lining of plating on the nonmetallic materials base material.
  2. 2. a far-infrared conduction film electric heater as claimed in claim 1 is characterized in that its base material is an enamel.
  3. 3. a far-infrared conduction film electric heater as claimed in claim 1 is characterized in that its base material is devitrified glass or simple glass.
  4. 4. a far-infrared conduction film electric heater as claimed in claim 1 is characterized in that its base material is pottery.
  5. 5. a far-infrared conduction film electric heater as claimed in claim 1 is characterized in that its base material is plastics.
CN93112735A 1993-12-31 1993-12-31 Far-infrared conduction film electric heater Expired - Fee Related CN1050963C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN93112735A CN1050963C (en) 1993-12-31 1993-12-31 Far-infrared conduction film electric heater

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN93112735A CN1050963C (en) 1993-12-31 1993-12-31 Far-infrared conduction film electric heater

Publications (2)

Publication Number Publication Date
CN1124908A true CN1124908A (en) 1996-06-19
CN1050963C CN1050963C (en) 2000-03-29

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN93112735A Expired - Fee Related CN1050963C (en) 1993-12-31 1993-12-31 Far-infrared conduction film electric heater

Country Status (1)

Country Link
CN (1) CN1050963C (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100442945C (en) * 2001-04-13 2008-12-10 投资与合伙公司 Method for producing heating radiating boards
CN101724815B (en) * 2009-12-16 2011-08-17 苏州爱迪尔自动化设备有限公司 Method for preparing energy-saving heating films
CN104799580A (en) * 2015-05-15 2015-07-29 上海隆美实业有限公司 Intelligent-heating insulation rotary table for dining table
CN106102192A (en) * 2016-07-07 2016-11-09 许永根 A kind of conductive electrothermal cloth

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1072700A (en) * 1991-11-22 1993-06-02 尹维平 A kind of thin-thick film compound electro-thermal coatings

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100442945C (en) * 2001-04-13 2008-12-10 投资与合伙公司 Method for producing heating radiating boards
CN101724815B (en) * 2009-12-16 2011-08-17 苏州爱迪尔自动化设备有限公司 Method for preparing energy-saving heating films
CN104799580A (en) * 2015-05-15 2015-07-29 上海隆美实业有限公司 Intelligent-heating insulation rotary table for dining table
CN106102192A (en) * 2016-07-07 2016-11-09 许永根 A kind of conductive electrothermal cloth

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Publication number Publication date
CN1050963C (en) 2000-03-29

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Granted publication date: 20000329

Termination date: 20101231