CN107214008A - The method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film - Google Patents

The method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film Download PDF

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Publication number
CN107214008A
CN107214008A CN201710394847.6A CN201710394847A CN107214008A CN 107214008 A CN107214008 A CN 107214008A CN 201710394847 A CN201710394847 A CN 201710394847A CN 107214008 A CN107214008 A CN 107214008A
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China
Prior art keywords
spray gun
pipe
liquid
cooling water
gas
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Pending
Application number
CN201710394847.6A
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Chinese (zh)
Inventor
江福兴
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Guangxi New Energy Co Ltd Connaught Connaught
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Guangxi New Energy Co Ltd Connaught Connaught
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Application filed by Guangxi New Energy Co Ltd Connaught Connaught filed Critical Guangxi New Energy Co Ltd Connaught Connaught
Priority to CN201710394847.6A priority Critical patent/CN107214008A/en
Publication of CN107214008A publication Critical patent/CN107214008A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/16Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas incorporating means for heating or cooling the material to be sprayed
    • B05B7/1606Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas incorporating means for heating or cooling the material to be sprayed the spraying of the material involving the use of an atomising fluid, e.g. air

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  • Nozzles (AREA)
  • Other Surface Treatments For Metallic Materials (AREA)

Abstract

A kind of method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film, comprises the following steps:Spray gun is made, spray gun is made up of pipette tips and gun barrel;Pipette tips use titanium rod, are prepared with the mode of turn-milling cutting;It is divided into gas-liquid cutting atomization duct, secondary pressure gas-liquid mixed atomization cavity, circular big jet hole inside lance head;Body of spray gun rifle is prepared using titanium tube;Provided with three capillary titanium tubes inside gun barrel, wherein one is liquid pipe, and one is tracheae, and one is cooling water inlet pipe, liquid pipe in titanium tube capillary and tracheae are welded on being connected with body on the fluid apertures of this side and stomata of lance head, and plating Nano semiconductor Electric radiant Heating Film is carried out to electrothermal tube using spray gun;Nozzle is by the way of low pressure high atomization, it is therefore intended that reduced as far as possible because a large amount of high pressure gas take away the surface temperature of spraying plating workpiece in metallization process, using two grades of gas-liquid mixed decompression sides, less than 40 degree cooling waters are passed through to the cooling water inlet pipe of tubular body;The nano electroheating film of power stability is formed on the madial wall of body.The stability of inner membrane tubular Nano semiconductor electrothermal film heating pipe power can be improved, extends the service life of nano electroheating film.

Description

The method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film
Technical field
The present invention relates to electrothermal tube, and in particular to a kind of method that Nano semiconductor Electric radiant Heating Film is plated inside electrothermal tube.
Background technology
At present, air atomization spray gun must be all used in nano electroheating film plated film scheme, but gun design is bad general It is difficult to which spraying plating goes out stable nano electroheating film.What plated film production unit was used is all high one-level pressure-air atomizing lance.It has Following shortcoming:One group of pressure-air atomizing lance in use, because pressure air too power is excessive, is generally higher than 0.4Mpa, so in spraying plating nano electroheating film, can influence spraying plating part quickly to cool down, so as to influence the micro of effective steady resistance Semiconductor dopant material feeding foot and density are not enough, cause the stability of plated nano electroheating film bad.
The content of the invention
It is an object of the present invention to for existing technology drawbacks described above there is provided a kind of electrothermal tube plate Nano semiconductor electric heating The method of film;The stability of inner membrane tubular Nano semiconductor electrothermal film heating pipe power can be improved, the life-span of nano electroheating film is more It is long.
A kind of method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film is provided, comprised the following steps:Spray gun is made, spray gun is by rifle Head and gun barrel composition;Spray gun preparation method is as follows:
Pipette tips use titanium rod, are prepared with the mode of turn-milling cutting;It is divided into gas-liquid cutting atomization duct, secondary inside lance head Depressurize gas-liquid mixed atomization cavity, circular big jet hole;Body of spray gun rifle is prepared using titanium tube;
Spray gun pipette tips are freezed using titanium welding wire with gun barrel and formed, and the weld bond that freezes is full weld;
Provided with three capillary titanium tubes inside gun barrel, wherein one is liquid pipe, one is tracheae, and one is that cooling water is intake Pipe, liquid pipe in titanium tube capillary and tracheae are welded on being connected with body on the fluid apertures of this side and stomata of lance head, and entirely For full weld, it is impossible to have solder skip or trachoma, the other end of liquid pipe and tracheae then can be by way of embedding fluid sealant and spray sealing ring The other end of gun barrel body is feed end connection, and is extended outside pipe end, for being connected with tracheal cartilages;
Cooling water inlet pipe in pipe is that titanium tube or resistant to elevated temperatures PP are managed, and is connected with the inlet opening of the feed end of spray gun, so Linked together again with outside cooling water inlet pipe afterwards;The feed end of casing also opens a cooling water apopore simultaneously, and cooling water goes out Water hole is connected with the outlet pipe of cooling water;
Plating Nano semiconductor Electric radiant Heating Film is carried out to electrothermal tube using spray gun;Nozzle is by the way of low pressure high atomization, purpose It is in metallization process to reduce because a large amount of high pressure gas take away the surface temperature of spraying plating workpiece as far as possible, is subtracted using two grades of gas-liquid mixeds Pressure scheme;
By compressed gas and by syringe pump transmission come micro liquid stop by after the atomization mixing for the first time of tiny pipeline Depressurized again into larger gas-liquid mixed cavity, after decompression mixing, then by larger nozzle exit orifice secondary pressure ejection Nozzle exterior, makes a spraying plating liquid atomization material thinner, the pressure used using relatively low air pressure by the special construction of spray tip The pressure of contracting gas is lower,
Less than 40 degree cooling waters are passed through to the cooling water inlet pipe of tubular body;Power stability is formed on the madial wall of body Nano electroheating film.
The method of electrothermal tube plating Nano semiconductor Electric radiant Heating Film has the following advantages that:Nano electroheating film film plating process includes spray gun Prepare material and process program used:Gun design is low pressure high atomization scheme, and gun body material therefor is pure titanium metal Material, tubular body is using less than 40 degree cooling water cooling schemes.
Spray gun prepares raw materials for pure titanium material, and reason is that the coating liquid used in nano electroheating film plated film is acidification Work material, at high temperature with stronger corrosivity, common stainless steel material very corrosion-vulnerable, it is impossible to stable to use.Spray gun Adopted elongated tubular spray gun, the pipette tips of spray gun are prepared using titanium rod turn-milling cutting, and body of spray gun rifle is prepared using titanium tube, spray gun pipette tips and Gun barrel is freezed using titanium welding wire and formed, and the weld bond that freezes is to have three capillary titanium tubes inside full weld, gun body, wherein one is liquid pipe, One is tracheae, and one is cooling water inlet pipe, and the liquid pipe in titanium tube capillary is welded on connecting with body for lance head with tracheae Connect in the fluid apertures and stomata of this side, and be all full weld, it is impossible to have solder skip or trachoma, otherwise cause spray gun to work entirely.And The other end of liquid pipe and tracheae then sealing ring can with the other end of spray gun body be that feed end connects by way of embedding fluid sealant Connect, and extend outside pipe end, it is standby to be connected with tracheal cartilages.Cooling water inlet pipe in pipe is also titanium tube or resistant to elevated temperatures PP Pipe, and be connected with the inlet opening of the feed end of spray gun, then linked together again with outside cooling water inlet pipe.The charging of casing A cooling water apopore is also opened in end simultaneously, and cooling water apopore is connected with the outlet pipe of cooling water.
Spray tip uses low pressure high atomization scheme, it is therefore intended that reduced as far as possible due to a large amount of high pressure gas bands in metallization process The surface temperature of spraying plating workpiece is walked, the small 0.3Mpa of the air compression gas-pressure that this programme is used, the scheme of use is two grades of gas Liquid mixing decompression schedule.Compressed gas and by syringe pump transmission come micro liquid stop be atomized for the first time by tiny pipeline it is mixed Enter larger gas-liquid mixed cavity decompression after conjunction again after decompression mixing, then subtract again by larger nozzle exit orifice is secondary Press jetting nozzle outside, thus can by relatively low air pressure by the special construction of spray tip can make spraying plating liquid be atomized Material is thinner, and the pressure of the compressed gas used is lower, really realizes the power stability of nano electroheating film, and the life-span is longer.
Embodiment
A kind of method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film is provided, provided with following steps:
Spray gun is made, spray gun is made up of pipette tips and gun barrel;Spray gun preparation method is as follows:
Pipette tips use titanium rod, are prepared with the mode of turn-milling cutting;It is divided into gas-liquid cutting atomization duct, secondary inside lance head Depressurize gas-liquid mixed atomization cavity, circular big jet hole;Body of spray gun rifle is prepared using titanium tube;Spray gun pipette tips are welded with gun barrel using titanium Silk, which freezes, to be formed, and the weld bond that freezes is full weld;
Provided with three capillary titanium tubes inside gun barrel, wherein one is liquid pipe, one is tracheae, and one is that cooling water is intake Pipe, liquid pipe in titanium tube capillary and tracheae are welded on being connected with body on the fluid apertures of this side and stomata of lance head, and entirely For full weld, it is impossible to have solder skip or trachoma, the other end of liquid pipe and tracheae then can be by way of embedding fluid sealant and spray sealing ring The other end of gun barrel body is feed end connection, and is extended outside pipe end, for being connected with tracheal cartilages;
Cooling water inlet pipe in pipe is that titanium tube or resistant to elevated temperatures PP are managed, and is connected with the inlet opening of the feed end of spray gun, so Linked together again with outside cooling water inlet pipe afterwards;The feed end of casing also opens a cooling water apopore simultaneously, and cooling water goes out Water hole is connected with the outlet pipe of cooling water;
Plating Nano semiconductor Electric radiant Heating Film is carried out to electrothermal tube using spray gun;Nozzle is by the way of low pressure high atomization, purpose It is in metallization process to reduce because a large amount of high pressure gas take away the surface temperature of spraying plating workpiece as far as possible, is subtracted using two grades of gas-liquid mixeds Pressure scheme;
By compressed gas and by syringe pump transmission come micro liquid stop by after the atomization mixing for the first time of tiny pipeline Depressurized again into larger gas-liquid mixed cavity, after decompression mixing, then by larger nozzle exit orifice secondary pressure ejection Nozzle exterior, makes a spraying plating liquid atomization material thinner, the pressure used using relatively low air pressure by the special construction of spray tip The pressure of contracting gas is lower,
Less than 40 degree cooling waters are passed through to the cooling water inlet pipe of tubular body;Power stability is formed on the madial wall of body Nano electroheating film.
Spray gun prepares raw materials for pure titanium material, and reason is that the coating liquid used in nano electroheating film plated film is acidification Work material, at high temperature with stronger corrosivity, common stainless steel material very corrosion-vulnerable, it is impossible to stable to use.Spray gun Adopted elongated tubular spray gun, the pipette tips of spray gun are prepared using titanium rod turn-milling cutting, and body of spray gun rifle is prepared using titanium tube, spray gun pipette tips and Gun barrel is freezed using titanium welding wire and formed, and the weld bond that freezes is to have three capillary titanium tubes inside full weld, gun body, wherein one is liquid pipe, One is tracheae, and one is cooling water inlet pipe, and the liquid pipe in titanium tube capillary is welded on connecting with body for lance head with tracheae Connect in the fluid apertures and stomata of this side, and be all full weld, it is impossible to have solder skip or trachoma, otherwise cause spray gun to work entirely.And The other end of liquid pipe and tracheae then sealing ring can with the other end of spray gun body be that feed end connects by way of embedding fluid sealant Connect, and extend outside pipe end, it is standby to be connected with tracheal cartilages.Cooling water inlet pipe in pipe is also titanium tube or resistant to elevated temperatures PP Pipe, and be connected with the inlet opening of the feed end of spray gun, then linked together again with outside cooling water inlet pipe.The charging of casing A cooling water apopore is also opened in end simultaneously, and cooling water apopore is connected with the outlet pipe of cooling water.
Spray tip uses low pressure high atomization scheme, it is therefore intended that reduced as far as possible due to a large amount of high pressure gas bands in metallization process The surface temperature of spraying plating workpiece is walked, the small 0.3Mpa of the air compression gas-pressure that this programme is used, the scheme of use is two grades of gas Liquid mixing decompression schedule.Compressed gas and by syringe pump transmission come micro liquid stop be atomized for the first time by tiny pipeline it is mixed Enter larger gas-liquid mixed cavity decompression after conjunction again after decompression mixing, then subtract again by larger nozzle exit orifice is secondary Press jetting nozzle outside, thus can by relatively low air pressure by the special construction of spray tip can make spraying plating liquid be atomized Material is thinner, and the pressure of the compressed gas used is lower, really realizes the power stability of nano electroheating film, and the life-span is longer.

Claims (1)

1. a kind of method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film, it is characterised in that:Comprise the following steps:
A1, making spray gun, spray gun are made up of pipette tips and gun barrel;Spray gun preparation method is as follows:
Pipette tips use titanium rod, are prepared with the mode of turn-milling cutting;It is divided into gas-liquid cutting atomization duct, secondary pressure inside lance head Gas-liquid mixed atomization cavity, circular big jet hole;Body of spray gun rifle is prepared using titanium tube;
Spray gun pipette tips are freezed using titanium welding wire with gun barrel and formed, and the weld bond that freezes is full weld;
Provided with three capillary titanium tubes inside gun barrel, wherein one is liquid pipe, one is tracheae, and one is cooling water inlet pipe, titanium Liquid pipe in pipe capillary and tracheae are welded on being connected with body on the fluid apertures of this side and stomata of lance head, and are all full The other end of weldering, it is impossible to have solder skip or trachoma, liquid pipe and tracheae then can be by way of embedding fluid sealant and lance tube sealing ring The other end of body is feed end connection, and is extended outside pipe end, for being connected with tracheal cartilages;
Cooling water inlet pipe in pipe is that titanium tube or resistant to elevated temperatures PP are managed, and is connected with the inlet opening of the feed end of spray gun, Ran Houzai Linked together with outside cooling water inlet pipe;The feed end of casing also opens a cooling water apopore, cooling water apopore simultaneously It is connected with the outlet pipe of cooling water;
A2, using spray gun to electrothermal tube carry out plating Nano semiconductor Electric radiant Heating Film;Nozzle is by the way of low pressure high atomization, and purpose exists Reduce because a large amount of high pressure gas take away the surface temperature of spraying plating workpiece, depressurized using two grades of gas-liquid mixeds as far as possible in metallization process Mode;
A3, by compressed gas and by syringe pump transmission come micro liquid stop it is laggard by the atomization mixing for the first time of tiny pipeline Enter larger gas-liquid mixed cavity to depressurize again, after decompression mixing, then by larger nozzle exit orifice secondary pressure ejection spray Outside mouth, make a spraying plating liquid atomization material thinner by the special construction of spray tip using relatively low air pressure, the compression used The pressure of gas is lower,
A4, the cooling water inlet pipe to tubular body are passed through less than 40 degree cooling waters;Power stability is formed on the madial wall of body Nano electroheating film.
CN201710394847.6A 2017-05-30 2017-05-30 The method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film Pending CN107214008A (en)

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CN201710394847.6A CN107214008A (en) 2017-05-30 2017-05-30 The method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film

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CN201710394847.6A CN107214008A (en) 2017-05-30 2017-05-30 The method that electrothermal tube plates Nano semiconductor Electric radiant Heating Film

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113969397A (en) * 2021-10-15 2022-01-25 浙江生波智能装备有限公司 Coating control method of novel vacuum coating equipment

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10328586A (en) * 1997-05-30 1998-12-15 Tokyu Constr Co Ltd Mixing and spraying method and mixing and spraying nozzle
JPH1122391A (en) * 1997-06-30 1999-01-26 Onoda Co Method for spraying fresh concrete and its spray nozzle device
US6032872A (en) * 1998-05-11 2000-03-07 Dupre; Herman K. Apparatus and method for making snow
CN101355831A (en) * 2007-07-27 2009-01-28 刘占友 Method for producing transparent high-temperature electric heating membrane pipe with self-constant temperature
CN101759372A (en) * 2009-12-31 2010-06-30 中国科学院广州能源研究所 Integrative ultrasonic spray pyrolysis large-area wide-temperature zone coating device
CN102274807A (en) * 2011-08-05 2011-12-14 长沙理工大学 Spray cooling nozzle for grinding processing
CN102769944A (en) * 2012-07-10 2012-11-07 王俊利 Glassed steel tin oxide thin-film heating tube
CN103204635A (en) * 2013-04-25 2013-07-17 江福兴 Inner cavity film coating technique of pipe fittings
CN103657385A (en) * 2012-09-10 2014-03-26 杨建华 Double-atomization spray gun for SNCR (selective non-catalytic reduction) denitration system

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10328586A (en) * 1997-05-30 1998-12-15 Tokyu Constr Co Ltd Mixing and spraying method and mixing and spraying nozzle
JPH1122391A (en) * 1997-06-30 1999-01-26 Onoda Co Method for spraying fresh concrete and its spray nozzle device
US6032872A (en) * 1998-05-11 2000-03-07 Dupre; Herman K. Apparatus and method for making snow
CN101355831A (en) * 2007-07-27 2009-01-28 刘占友 Method for producing transparent high-temperature electric heating membrane pipe with self-constant temperature
CN101759372A (en) * 2009-12-31 2010-06-30 中国科学院广州能源研究所 Integrative ultrasonic spray pyrolysis large-area wide-temperature zone coating device
CN102274807A (en) * 2011-08-05 2011-12-14 长沙理工大学 Spray cooling nozzle for grinding processing
CN102769944A (en) * 2012-07-10 2012-11-07 王俊利 Glassed steel tin oxide thin-film heating tube
CN103657385A (en) * 2012-09-10 2014-03-26 杨建华 Double-atomization spray gun for SNCR (selective non-catalytic reduction) denitration system
CN103204635A (en) * 2013-04-25 2013-07-17 江福兴 Inner cavity film coating technique of pipe fittings

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113969397A (en) * 2021-10-15 2022-01-25 浙江生波智能装备有限公司 Coating control method of novel vacuum coating equipment

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Application publication date: 20170929