WO2017152692A1 - 一种空气净化电风扇 - Google Patents

一种空气净化电风扇 Download PDF

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Publication number
WO2017152692A1
WO2017152692A1 PCT/CN2016/111985 CN2016111985W WO2017152692A1 WO 2017152692 A1 WO2017152692 A1 WO 2017152692A1 CN 2016111985 W CN2016111985 W CN 2016111985W WO 2017152692 A1 WO2017152692 A1 WO 2017152692A1
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WO
WIPO (PCT)
Prior art keywords
fan
air
plasma
conductive
motor
Prior art date
Application number
PCT/CN2016/111985
Other languages
English (en)
French (fr)
Inventor
徐宝安
Original Assignee
淄博环能海臣环保技术服务有限公司
徐宝安
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 淄博环能海臣环保技术服务有限公司, 徐宝安 filed Critical 淄博环能海臣环保技术服务有限公司
Publication of WO2017152692A1 publication Critical patent/WO2017152692A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/30Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by ionisation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L9/00Disinfection, sterilisation or deodorisation of air
    • A61L9/16Disinfection, sterilisation or deodorisation of air using physical phenomena
    • A61L9/22Ionisation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D25/00Pumping installations or systems
    • F04D25/02Units comprising pumps and their driving means
    • F04D25/08Units comprising pumps and their driving means the working fluid being air, e.g. for ventilation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/002Details, component parts, or accessories especially adapted for elastic fluid pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/02Selection of particular materials
    • F04D29/023Selection of particular materials especially adapted for elastic fluid pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/70Suction grids; Strainers; Dust separation; Cleaning
    • F04D29/701Suction grids; Strainers; Dust separation; Cleaning especially adapted for elastic fluid pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/70Suction grids; Strainers; Dust separation; Cleaning
    • F04D29/701Suction grids; Strainers; Dust separation; Cleaning especially adapted for elastic fluid pumps
    • F04D29/703Suction grids; Strainers; Dust separation; Cleaning especially adapted for elastic fluid pumps specially for fans, e.g. fan guards
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/14Structural association with mechanical loads, e.g. with hand-held machine tools or fans

Definitions

  • the present invention relates to an air purifying electric fan, and more particularly to an efficient and safe air purifying electric fan, and to an air purifying device.
  • the existing electric fan only has a blowing function. Therefore, it is only used in the days of enthusiasm, and the utilization rate is not high, but it takes up space.
  • the air purifier generally has the functions of removing smoke, removing odor, removing bacteria and negative ions, but has no blowing function. In polluted air, negative ions adsorb or agglomerate dust and bacteria and become heavy ions, which are harmful to the human body. Moreover, the air circulation efficiency is low, so that the ozone concentration gradient is large and the utilization is insufficient. And the negative ion generator, or plasma generator, has a single use and takes up space.
  • the present invention aims to provide an air purifying electric fan which not only can efficiently remove the air purifying function of solid pollutants and gaseous pollutants in the air, but also has the air blowing function of the electric fan. It can speed up air circulation and is an electric fan with high safety factor and high cost performance with air purification function.
  • An air purifying electric fan includes a casing, a fan, a fan motor, a fan guard, and a plasma high voltage electric generator.
  • Air purification The fan motor stator of the fan is connected to the casing, the fan guard is mounted on the casing and the stator of the fan motor, and the rotor main shaft of the fan motor is connected with the fan to form a ventilation fan.
  • the stator of the fan motor is connected to the casing, the fan guard is mounted on the casing and the stator of the fan motor, the rotor main shaft of the fan motor is connected with the fan and the variable wind direction device, and the casing and the stator of the fan motor are connected with the base to form an electric fan.
  • a plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • the air inlet of the air inlet side fan guard is provided with a plasma generator electrically insulated from the fan guard, the motor, the fan, and the base.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generating pole is connected to the high voltage negative electrode.
  • the plasma generator pole is integrated with the inlet side fan shroud, or a split combination.
  • the fan is a plasma collecting electrode electrically insulated from the fan shroud, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high voltage generator are electrically connected to the fan through a brush.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan shroud, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged. Air with a large amount of negative ions and ozone, sucked by a high-voltage positively charged plasma collecting electrode fan, air and a positively charged plasma collecting electrode fan, violent collision contact discharge, killing bacterial viruses, decomposing organic matter, and bringing The adsorption of various pollutants of negative ions is trapped on the fins of the fan, the air is purified, and the purified air is discharged through the shield.
  • the air purifying fan reaches a certain amount of ash, the plasma generating pole, the plasma collecting electrode fan, and the fan guard are cleaned and restored.
  • An air purifying electric fan includes a casing, a fan, a fan motor, a conductive grid, a fan shroud, and a plasma high voltage electric generator.
  • the fan motor stator of the air purifying electric fan is connected with the casing, the fan shroud is mounted on the casing and the stator of the fan motor, and the rotor main shaft of the fan motor is connected with the fan to form a ventilation fan.
  • the stator of the fan motor is connected to the casing, the fan guard is mounted on the casing and the stator of the fan motor, the rotor main shaft of the fan motor is connected with the fan, the variable wind direction device, the casing and the stator of the fan motor Connected to the base to form an electric fan.
  • the plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • the air inlet of the air inlet side fan guard is provided with a plasma generator electrically insulated from the fan guard, the motor, the fan, and the base.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generating pole is connected to the high voltage negative electrode.
  • the plasma generator pole is integrated with the inlet side fan shroud, or a split combination.
  • the fan is a plasma collecting electrode electrically insulated from the fan shroud, the plasma generating pole, the base, the motor, and the ground, and the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high voltage generator are electrically connected to the fan through a brush.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the conductive grid is an electrostatic induction collecting electrode electrically insulated from the fan shroud, the plasma generating pole, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or the conductive grid is wrapped on the surface of the metal material.
  • the composite conductive film material is made of.
  • the conductive grid is integrated with the outlet side fan guard, or the split combination is set.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan shroud, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged. Air with a large amount of negative ions and ozone, sucked by a high-voltage positively charged plasma collecting electrode fan, air and a positively charged plasma collecting electrode fan, violent collision contact discharge, killing bacterial viruses, decomposing organic matter, and bringing The adsorption of various contaminants of negative ions is trapped on the fins of the fan, and the air is purified first.
  • the air After the air is pressurized by the plasma collecting electrode fan with high voltage positive electricity, the air enters the conductive grid, and the oppositely charged surface is induced on the conductive grid to further adsorb various pollutants and realize the air.
  • the purified air is discharged through the shield.
  • the conductive grid is electrically isolated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the daughter collects the electrodes.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the inlet side fan shroud, or the conductive grid is electrically insulated and separated from the inlet side fan shroud.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan is an electrostatic induction collecting electrode electrically insulated from the fan guard, the plasma generating pole, the base, the motor, the ground, the fan is an electric conductor fan, the fan is made of a metal material, or the fan is wrapped on a surface of the metal material Made of electrical insulating material, or made of plastic material as the substrate, coated with metal or carbon material film on the substrate, or the fan is made of composite conductive material, or the fan is made of plastic electrically insulating substrate, composite conductive Made of film material.
  • the fan is turned on, the fan starts to rotate, the wind first passes through the fan guard, and then passes through the plasma generating pole with high-voltage negative electricity.
  • the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes each air Contaminants are also negatively charged.
  • Air with a large amount of negative ions and ozone is adsorbed by a high-voltage positively charged plasma collecting electrode conductive grid, air and a positively charged plasma collecting electrode conductive grid, violent collision contact discharge, killing bacterial virus, decomposing organic matter , and the adsorption of various pollutants with negative ions is trapped on the conductive grid, and the air is purified first.
  • the air After the air is purified by the positive electrode conductive grid, the air enters the conductive fan, and the negatively charged surface is induced on the conductive fan to further adsorb various pollutants, thereby realizing the second purification of the air, and the purified air passes through the protection.
  • the cover is discharged.
  • the air purifying fan reaches a certain amount of ash, the plasma generating pole, the plasma collecting electrode conductive grid, the conductive fan, and the fan guard are cleaned and restored.
  • An air purifying electric fan includes a casing, a fan, a fan motor, a conductive grid, a fan shroud, and a plasma high voltage electric generator.
  • the fan motor stator of the air purifying electric fan is connected to the casing, the fan shroud is mounted on the casing and the stator of the fan motor, and the rotor main shaft of the fan motor is connected with the fan to form a ventilation fan.
  • the stator of the fan motor is connected to the casing, the fan guard is mounted on the casing and the stator of the fan motor, the rotor main shaft of the fan motor is connected with the fan and the variable wind direction device, and the casing and the stator of the fan motor are connected with the base to form an electric fan.
  • the plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • the inner air inlet of the air inlet side fan guard is provided with a plasma electrically insulated from the fan guard, the motor, the fan, and the base Extremely occurring.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generating pole is connected to the high voltage negative electrode.
  • the plasma generating pole is integrally provided with the inlet side fan shroud, or is provided in a separate combination.
  • the fan is an electrostatic induction collecting electrode that is electrically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the fan is an electric conductor fan, the fan is made of a metal material, or the fan is made of a metal insulating material coated on the surface of the metal material, or the plastic material is used as a substrate, and the metal or carbon material film layer is coated on the substrate.
  • the fan is made of a composite conductive material, or the fan is made of a plastic electrically insulating substrate, and is made of a composite conductive film material.
  • the conductive fan is disposed after the plasma generating electrode and before the plasma collecting electrode.
  • the conductive grid is a plasma collecting electrode that is electrically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the outlet side fan shroud, or the conductive grid is electrically insulated from the outlet side fan shroud.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan guard, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged. Air with a large amount of negative ions and ozone enters the conductive fan and induces a positively charged surface on the surface of the conductive fan adjacent to the plasma generating pole, absorbing negative contaminants.
  • a negatively charged surface On the other side of the conductive fan, on the surface of the conductive fan adjacent to the positively-charged plasma collecting electrode conductive grid, a negatively charged surface is induced to adsorb positively charged various pollutants to achieve primary purification of the air. .
  • the plasma After the air is purified by the conductive fan induction collecting electrode, the plasma enters the conductive grid of the plasma collecting electrode with high voltage positive electricity, the air and the positively charged plasma collecting electrode conductive grid, violent collision contact discharge, killing the bacterial virus
  • the organic matter is decomposed, and various pollutants with negative ions are adsorbed and trapped on the conductive grid to further purify the secondary air.
  • the conductive grid is electrostatically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • Inductive collecting electrode the conductive grid is made of a metal material, or the conductive grid is made of a metal insulating material coated on the surface of the metal material, or the plastic material is used as a substrate, and the metal or carbon material layer is coated on the substrate.
  • the conductive grid or the conductive grid is made of a composite conductive material, or the conductive grid is made of a plastic electrically insulating substrate and made of a composite conductive film material.
  • the conductive grid is integrated with the inlet side fan shroud, or a split combination.
  • the fan is a plasma collecting electrode electrically insulated from the fan shroud, the plasma generating pole, the base, the motor, and the ground, and the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the absolute value of the high voltage negative electrode voltage of the plasma high piezoelectric generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan shroud, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged. Air with a large amount of negative ions and ozone enters the conductive grid, and on the surface of the conductive grid adjacent to the plasma generating pole, a positively charged surface is induced to absorb various negative contaminants. On the other side of the conductive grid, on the surface of the conductive grid adjacent to the positively charged plasma collecting electrode conductive fan, a negatively charged surface is induced to adsorb positively charged various pollutants to achieve air Primary purification.
  • the conductive fan is connected to the plasma collecting electrode with high-voltage positive electricity, and the air and the positively-charged plasma collecting electrode conductive fan violently collide with the contact discharge to kill the bacterial virus.
  • the organic matter is decomposed, and various pollutants with negative ions are adsorbed and trapped on the conductive fan to further purify the secondary air.
  • An air purifying electric fan includes a casing, a fan, a fan motor, a conductive grid, a fan shroud, and a plasma high voltage electric generator.
  • the fan motor stator of the air purifying electric fan is connected with the casing, the fan shroud is mounted on the casing and the stator of the fan motor, and the rotor main shaft of the fan motor is connected with the fan to form a ventilation fan.
  • the stator of the fan motor is connected to the casing, and the fan guard is mounted on the casing of the fan motor and
  • the rotor main shaft of the fan motor is connected with the fan and the variable wind direction device, and the casing and the stator of the fan motor are connected with the base to form an electric fan.
  • the plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • the air inlet of the air inlet side fan guard is provided with a plasma generator electrically insulated from the fan guard, the motor, the fan, and the base.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generating pole is connected to the high voltage negative electrode.
  • the plasma generator pole is integrated with the inlet side fan shroud, or a split combination.
  • the conductive grid is a plasma collecting electrode that is electrically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the inlet side fan shroud, or the conductive grid is electrically insulated from the inlet side fan shroud.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the fan is a plasma collecting electrode electrically insulated from the fan shroud, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the cathode of the plasma high-voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the absolute value of the high voltage negative electrode voltage of the plasma high piezoelectric generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan shroud, and then passes through a plasma generating pole with a high-voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged. Air with a large amount of negative ions and ozone is adsorbed by a high-voltage positively charged plasma collecting electrode conductive grid, air and a positively charged plasma collecting electrode conductive grid, violent collision contact discharge, killing bacterial virus, decomposing organic matter , and the adsorption of various pollutants with negative ions is trapped on the conductive grid, and the air is purified first.
  • the air After the air is purified by the positive electrode conductive grid, the air enters the conductive fan, the air and the negatively charged plasma collecting electrode fan, violently collide, kill the bacteria virus, decompose the organic matter, and pollute the various ions with positive ions.
  • the adsorption of the substance is trapped on the fins of the fan, and the air is further purified, and the purified air is passed. Pass through the shield.
  • the fan is a plasma collecting electrode that is electrically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the fan is an electrical conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high-voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the conductive fan and the positive electrode of the plasma high voltage generator are electrically connected to the conductive fan through a brush.
  • the conductive grid is a plasma collecting electrode that is electrically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material.
  • the conductive grid is electrically insulated from the inlet side fan shroud, or the conductive grid is electrically insulated from the inlet side fan shroud.
  • the conductive grid is electrically connected to the negative electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan shroud, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged. Air with a large amount of negative ions and ozone, and a collector fan with high-voltage positive electricity, violent collision contact discharge, killing bacteria and viruses, decomposing organic matter, and trapping various pollutants with negative ions on the conductive fan, air Get primary purification.
  • the air flowing through the conductive fan continues to travel, and the negatively charged plasma collecting electrode conductive grid, contact discharge, further killing the bacterial virus, decomposing the organic matter, and bringing the positive
  • the adsorption of various contaminants of ions is trapped on the conductive grid, and the air is discharged through the shield after being further purified by the negative electrode conductive grid.
  • An air purifying electric fan includes a casing, a fan, a fan motor, a side conductive grid, a fan shroud, and a plasma high voltage electric generator.
  • the fan motor stator of the air purifying electric fan is connected with the casing, the fan shroud is mounted on the casing and the stator of the fan motor, and the rotor main shaft of the fan motor is connected with the fan to form a ventilation fan.
  • the stator of the fan motor is connected to the casing, and the fan guard is mounted on the casing of the fan motor
  • the rotor main shaft of the fan motor is connected with the fan and the variable wind direction device, and the casing and the stator of the fan motor are connected with the base to form an electric fan.
  • the plasma high voltage generator is a generator that is connected to a power source and is capable of generating positive and negative high voltage power.
  • the air inlet of the air inlet side fan guard is provided with a plasma generator electrically insulated from the fan guard, the motor, the fan, and the base.
  • the plasma generation extremely includes a metal needle array electrode, a wire mesh electrode, a wire, a zigzag type, a thorn type or a fish bone type structure electrode.
  • the plasma generating pole is connected to the high voltage negative electrode.
  • the plasma generator pole is integrated with the inlet side fan shroud, or a split combination.
  • the one side conductive grid is a plasma collecting electrode electrically insulated from the fan shroud, the plasma generating pole, the base, the motor, and the ground.
  • One side of the conductive grid is made of a composite electrically insulating film layer on one side of the metal material surface, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on one side of the substrate, or one side conductive mesh
  • the grid is made of a composite electrically insulating film layer on one side of the composite conductive material.
  • One side of the conductive grid is electrically insulated from the inlet side fan shroud, or one side of the conductive grid and the inlet side fan shroud are electrically insulated and separated.
  • One side of the conductive grid is adjacent to the plasma generating pole and has an electrically insulating film layer, and one side of the conductive grid is electrically connected to the negative electrode of the plasma high voltage electric generator, and passes through the electrically insulating film layer on the adjacent side of the plasma generating pole Static electricity induces a positive electrode layer.
  • the fan is a plasma collecting electrode electrically insulated from the fan shroud, the plasma generating pole, the base, the motor, and the ground.
  • the fan is an electric conductor fan, and the fan is electrically insulated from the rotor shaft of the motor.
  • the fan and the positive electrode of the plasma high voltage generator are electrically connected to the fan through a brush.
  • the fan is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the fan is made of a composite conductive material, or the fan is a plastic electrically insulating substrate. Made of a composite conductive film material.
  • the absolute value of the high voltage negative electrode voltage of the plasma high piezoelectric generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan shroud, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged.
  • the air with a large amount of negative ions and ozone is electrically insulated by a conductive grid layer on one side of the plasma adjacent to the side of the plasma, and is electrostatically induced by a positively charged film layer.
  • the collector electrode with high voltage and negative charge is electrically conductive.
  • the conductive side of the grid absorbs positively charged contaminants, repels negatively charged contaminants, and the air is primarily cleaned.
  • the fan is a plasma collecting electrode that is electrically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the fan is a conductive fan on one side, and one side of the conductive fan is electrically insulated from the rotor shaft of the motor.
  • One side of the conductive fan is made of a composite electric insulating film layer on one side of the metal material, or the fan is made of a composite electric insulating film layer on one side of the composite conductive material.
  • the conductive fan is adjacent to the plasma generating pole, and is electrically insulated with an electrically insulating film layer.
  • the conductive fan is electrically connected to the negative electrode of the plasma high-voltage electric generator, and is electrically insulated by an electrically insulating film layer of the conductive fan on the adjacent side of the plasma generating pole. A positive electrode film layer.
  • the conductive fan and the cathode of the plasma high-voltage generator are electrically connected to the conductive fan through a brush.
  • the conductive grid is a plasma collecting electrode that is electrically insulated from the fan shroud, the plasma generator, the base, the motor, and the ground.
  • the conductive grid is made of a metal material, or a plastic material is used as a substrate, and a metal or carbon material film layer is coated on the substrate, or the conductive grid is made of a composite conductive material, or the conductive grid is plastic.
  • the electrically insulating substrate is made of a composite conductive film material.
  • the conductive grid is electrically insulated from the outlet side fan shroud, or the conductive grid is electrically insulated from the outlet side fan shroud.
  • the conductive grid is electrically connected to the positive electrode of the plasma high voltage generator.
  • the absolute value of the high voltage negative electrode voltage of the plasma high voltage generator is higher than the absolute value of the high voltage positive electrode voltage.
  • the fan When the fan is turned on, the fan starts to rotate, the wind first passes through the fan guard, and then passes through a plasma generating pole with a high voltage negative voltage, the plasma generating pole discharges the air, ionizes the air, fills the air with negative ions, and makes the air
  • the various contaminants in the process are also negatively charged. Air with a large amount of negative ions and ozone, an electrically insulating film layer compounded on the side adjacent to the plasma, electrostatically induced positively charged film layer, conductive electrode side with high-voltage negative collector electrode, positively charged with adsorption Contaminants, repel negatively charged contaminants, and the air is primary cleaned.
  • the air flowing through the conductive fan continues to travel, and the positively charged plasma collecting electrode conductive grid violently collides with the contact discharge, further kills the bacterial virus, decomposes the organic matter, and adsorbs and traps various pollutants with negative ions.
  • the air is discharged through the shield after further purification through the positive electrode conductive grid.
  • An air purifying electric fan, the motor rotor shaft and the fan main shaft connecting the end, is provided with a permanent magnet toothed disc, or a toothed disc made of ferromagnetic material, the fan main shaft is connected to the end, The gingival disc corresponding to the permanent magnet toothed disc of the motor rotor shaft, the fan spindle connecting the end gingival disc, the gingival disc made of ferromagnetic material, or the guillotine disc made of permanent magnet material.
  • the permanent magnet toothed disc of the motor rotor shaft and the fan spindle connecting end permanent magnet toothed disc are connected to the suction surface, and are provided with an electrically insulating material layer.
  • An air purifying electric fan, the plasma collecting electrode fan, the brush connected to the positive electrode of the plasma high voltage electric generator is made of graphite material, the brush passes through the spring, or the ferromagnetic material is arranged in the brush. It is electrically connected to the fan spindle by suction.
  • An air purifying electric fan, the wind side fan shroud is provided with a ferromagnetic material, or a buckle made of a permanent magnet, and a plasma generating pole is provided with a card on the inlet side fan shroud
  • the corresponding ferromagnetic material, or the buckle made of the permanent magnet, the plasma generating pole and the air inlet side fan guard are combined by the female snap snap.
  • An air purifying electric fan wherein a positive and negative ion generator is installed in a base, and a positive and negative ion generator is provided with a metal shield and grounded.
  • the moving head device is driven by the fan motor or driven by a separate moving head motor.
  • the fan is moved by a conventional shifting device and a clutch device to realize the fan moving head.
  • the fan guard is made of plastic, made of metal, and the fan shield made of metal is grounded.
  • the motor is wrapped in the fan shroud, and the fan side air inlet side fan shroud is fixed on the stator casing of the motor, and the outer edge of the fan side air outlet side fan shroud is passed through the outer edge of the fan air inlet side fan shroud Connected.
  • the stator core of the motor is grounded.
  • An air purifying electric fan comprising an axial flow fan, a cross flow fan, and a centrifugal fan.
  • the fan is a plastic electrically insulating substrate, and the composite conductive film material thereon is an evaporated metal film or a composite carbon material film.
  • the electric fan is provided with a button or remote control including a total switch, a wind regulation, a wind direction, a fixed ion, and a negative ion generator.
  • the remote control includes a mobile phone that is remotely controlled via a wireless network.
  • the air purifying electric fan designed by the invention passes through multiple forced reactions, the plasma is fully used, and the air circulation speed is fast, the dust removal efficiency is high, the function of the fan is provided, and the cost performance is high.
  • DRAWINGS 1 is a schematic structural view of a first embodiment of an air purifying electric fan according to the present invention
  • FIG. 2 is a schematic structural view of a second embodiment of an air purifying electric fan according to the present invention.
  • FIG. 3 is a schematic structural view of a third embodiment of an air purifying electric fan according to the present invention.
  • FIG. 4 is a schematic structural view of a fourth embodiment of an air purifying electric fan according to the present invention.
  • FIG. 5 is a schematic structural view of a fifth embodiment of an air purifying electric fan according to the present invention.
  • FIG. 6 is a schematic structural view of a sixth embodiment of an air purifying electric fan according to the present invention.
  • FIG. 7 is a schematic structural view of a seventh embodiment of an air purifying electric fan according to the present invention.
  • FIG. 8 is a schematic structural view of an eighth embodiment of an air purifying electric fan according to the present invention.
  • FIG. 9 is a schematic structural view of a ninth embodiment of an air purifying electric fan according to the present invention.
  • the conductive fan 6 starts to rotate, and the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulating bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that The air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone is sucked by the plasma collecting electrode 6 with high-voltage positive electricity, the conductive fan 6 and a large number of negative ions The air in the violent collision with the ozone gas contacts the discharge, kills the bacterial virus, decomposes the organic matter, and traps the various pollutants with negative ions on the conductive fan 6, and the air is purified, and the purified air passes through the fan outlet cover net 5 discharge. When the air purifying fan reaches a certain amount of ash, the plasma generating electrode, the plasma collecting electrode fan, and the fan guard are cleaned and restored.
  • the conductive fan 6 When the fan is turned on, the conductive fan 6 starts to rotate, and the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulating bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that The air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone is sucked by the plasma collecting electrode 6 with high-voltage positive electricity, the conductive fan 6 with a large amount The air of negative ions and ozone violently collides with the contact discharge, kills the bacterial virus, decomposes the organic matter, and traps the various pollutants with negative ions on the conductive fan 6, and the air is purified first; the air passes through the plasma with high voltage positive After the collecting electrode fan is pressurized, the air enters the conductive grid 15 to induce a surface opposite to the charged grid 15 to further adsorb various pollutants, thereby achieving the second purification of the air,
  • the conductive fan 6 starts to rotate, and the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulating bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that The air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone is adsorbed by the plasma collecting electrode conductive grid 15 with high-voltage positive electricity, air and positively charged plasma.
  • the body collects the conductive grid 15 of the electrode, violently collides with the contact discharge, kills the bacterial virus, decomposes the organic matter, and traps the various contaminants with negative ions on the conductive grid 15 to obtain primary purification; the air is electrically conducted through the positive electrode After the grid 15 is cleaned, it enters the conductive fan 6, induces a negatively charged surface on the conductive fan 6, further adsorbs various pollutants, and realizes the second purification of the air, and the purified air passes through the fan outlet cover. 5 discharge. When the air purifying fan reaches a certain amount of ash, the plasma generating electrode, the plasma collecting electrode fan, and the fan guard are cleaned and restored.
  • the conductive fan 6 starts to rotate, and the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulating bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that The air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone is sucked by the conductive fan 6 and induced on the surface of the conductive fan 6 adjacent to the plasma generating pole.
  • the conductive fan 6 starts to rotate, the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulating bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that The air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone enters the conductive grid 15 and is exposed on the surface of the conductive grid 15 adjacent to the plasma generating pole.
  • a positively charged surface is adsorbed to absorb negatively charged contaminants; on the other side of the electrically conductive grid, on the surface of the electrically conductive grid 15 adjacent to the positively charged plasma collecting electrode conductive fan 6, the strip is induced
  • the negatively charged surface absorbs the positively charged various pollutants to achieve primary purification of the air; the air is purified by the conductive grid 15 inductive collecting electrode, and then enters the plasma collecting electrode with high-voltage positive electricity to conduct the conductive fan 6, air and belt Positively charged plasma collecting electrode conductive fan 6, violent collision contact discharge, killing bacterial virus, decomposing organic matter, and carrying negative ions
  • the adsorption of various pollutants is trapped on the conductive fan 6, and the secondary purification of the air is further realized; the purified air is discharged through the fan outlet hood 5 .
  • the air purifying fan reaches a certain amount of ash, the plasma generating pole, the plasma collecting electrode conductive grid, the conductive fan, and the fan guard are cleaned and restored.
  • the sixth embodiment of the air purifying electric fan of the present invention operates as follows:
  • the conductive fan 6 starts to rotate, the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulated bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that The air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone is adsorbed by the plasma collecting electrode conductive grid 15 with high-voltage positive electricity, air and positively charged plasma.
  • the body collects the conductive grid 15 of the electrode, violently collides with the contact discharge, kills the bacterial virus, decomposes the organic matter, and traps the various contaminants with negative ions on the conductive grid 15 to obtain primary purification; the air is electrically conducted through the positive electrode After the grid 15 is cleaned, it enters the conductive fan 6, the air and the negatively charged plasma collecting electrode fan 6, violently collide with each other, kills the bacterial virus, decomposes the organic matter, and traps the various pollutants with positive ions in the fan. On the fins 6, the air is further purified; the purified air It is discharged through the fan outlet cover net 5. When the air purifying fan reaches a certain amount of ash, the plasma generating pole, the plasma collecting electrode fan, and the fan guard are cleaned and restored.
  • the conductive fan 6 starts to rotate, and the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulating bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that
  • the air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone, and the collector electrode 6 with high-voltage positive electricity, violent collision contact discharge, killing bacterial virus, decomposition
  • the organic matter, and the adsorption of various pollutants with negative ions are trapped on the conductive fan 6, and the air is purified first; after the air is purified by the positive electrode conductive fan 6, the air flowing through the conductive fan 6 continues to travel, and the negatively charged plasma
  • the body collects the electrode conductive grid 15, contacts the discharge, further kills the bacterial virus, decomposes the organic matter, and traps the various pollutants with positive ions on the conductive grid 15, and the air is further purified through the negative electrode
  • the eighth embodiment of an air purifying electric fan of the present invention operates as follows:
  • the conductive fan 6 starts to rotate, the wind passes through the fan inlet hood 4, enters the plasma generating pole electrically insulated bracket 11, and the plasma generating pole discharge wire 7 discharges the air, ionizing the air, so that The air is filled with negative ions, and the various pollutants in the air are also negatively charged; the air with a large amount of negative ions and ozone is electrically insulated by a conductive grid 15 on the side adjacent to the plasma generating pole, electrostatic induction The positively charged membrane layer is adsorbed, and the conductive side of the conductive grid 15 on the side of the collector electrode with high voltage and negative charge adsorbs positively charged contaminants, repels negatively charged contaminants, and the air is primary purified; The air of the conductive grid 15 and the positively charged plasma collecting electrode conductive fan 6 violently collide with the contact discharge, kill the bacterial virus, decompose the organic matter, and adsorb the various pollutants with negative ions on the conductive fan 6, the air After further purification by the
  • the conductive fan 6 starts to rotate, and the wind passes through the fan inlet hood 4 to enter the plasma.
  • the electric pole electrically insulated bracket 11, the plasma generating pole discharge wire 7 discharges air, ionizes the air, fills the air with negative ions, and causes various pollutants in the air to also be negatively charged; air with a large amount of negative ions and ozone is An electrically insulating film layer laminated on the side of the conductive fan 6 adjacent to the plasma generating pole, electrostatically induced positively charged film layer adsorbed, with a high-voltage negatively-charged collecting electrode on the side of the conductive fan 6 to adsorb positively charged contaminants, repulsion band Negatively charged contaminants, the air is primary cleaned; the air flowing through the conductive fan 6 continues to travel, and the positively charged plasma collecting electrode conductive grid 15 violently collides with the discharge, further killing the bacterial virus, decomposing the organic matter, and The adsorption of various contaminants with negative ions is trapped on the conductive grid

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Abstract

一种空气净化风扇,包括机壳(1)、风扇(6)、风扇电机(9)、风扇护罩和等离子高压电产生器(13),开启风扇(6),风扇(6)开始旋转,风经过风扇护罩,再经过带高压负电的等离子体发生极,等离子体发生极对空气放电,电离空气,电离后的空气被带高压正电的等离子体收集电极风扇(6)吸入,将带负离子的污染物吸附在风扇(6)上,空气得到净化。该风扇不仅具有空气净化功能,还具有吹风功能。

Description

说明书 发明名称:一种空气净化电风扇 技术领域
[0001] 本发明涉及一种空气净化电风扇, 尤其涉及一种高效安全的空气净化电风扇, 还涉及空气净化装置。
背景技术
[0002] 目前, 人类经常活动的室内环境经受着各种各样的污染, 它们已经影响到了我 们生活的方方面面。 有些污染会造成人们头晕、 恶心等症状, 从而严重影响人 们的工作效率。 尤其是有机污染、 细菌污染和 PM2.5的污染, 对人们生活质量的 提高产生了严重的阻碍。 现有的电风扇只具有吹风功能。 因此, 只在天热吋使 用, 利用率不高, 但却占据空间。 而空气净化器, 一般具有除烟尘、 脱异味、 除细菌及负离子发生等作用, 但无吹风功能。 在污染的空气中, 负离子吸附或 凝聚尘埃、 细菌而成为重负离子, 对人体有害无益。 而且空气循环效率低, 使 得臭氧浓度梯度大, 利用不充分。 且负离子发生器, 或等离子体发生器用途单 一, 占用空间。
技术问题
[0003] 现有的电风扇只具有吹风功能。 因此, 只在天热吋使用, 利用率不高, 但却占 据空间。 而空气净化器, 一般具有除烟尘、 脱异味、 除细菌及负离子发生等作 用, 但无吹风功能。
问题的解决方案
技术解决方案
[0004] 针对现有产品技术的不足, 本发明旨在提供一种空气净化电风扇, 其不仅能够 高效去除空气中的固态污染物和气态污染物的空气净化功能, 还具有电风扇的 吹风功能, 可加快空气循环, 是一种安全系数高、 性价比高具有空气净化功能 的电风扇。
[0005] 本发明解决其技术问题所采用的另一种技术方案是: 一种空气净化电风扇, 包 括机壳、 风扇、 风扇电机、 风扇护罩、 等离子高压电产生器。 一种空气净化电 风扇的风扇电机定子与机壳连接, 风扇护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇连接组成换气电风扇。 或风扇电机的定子与机壳连 接, 风扇护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇、 变风向装置连接, 风扇电机的机壳和定子与机座连接组成电风扇。
[0006] 等离子高压电产生器为与电源连接, 能产生正负高压电的产生器。 进风侧风扇 护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘的等离子体 发生极。 等离子体发生极为包括金属针状阵列电极, 金属丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极。 等离子体发生极, 与高压负电极连接。 等 离子体发生极与进风侧风扇护罩一体设置, 或分体组合设置。
[0007] 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收 集电极, 风扇为电导体风扇, 风扇与电机的转子转轴电绝缘连接。 风扇与等离 子高压电产生器正极, 通过电刷与风扇电连接。 等离子高压电产生器的高压负 电极电压的绝对值, 高于高压正电极电压的绝对值。 风扇为包括金属材料制成 , 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复 合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成。
[0008] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 被带高压正 电的等离子体收集电极风扇吸入, 空气和带正电的等离子体收集电极风扇, 猛 烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸 附截留在风扇的翅片上, 空气得到净化, 净化的空气通过护罩排出。 当空气净 化电风扇达到一定积灰量吋, 对等离子体发生极、 等离子体收集电极风扇、 风 扇护罩进行清洗还原。
[0009] 一种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 导电网栅、 风扇护罩、 等 离子高压电产生器。 一种空气净化电风扇的风扇电机定子与机壳连接, 风扇护 罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇连接组成换气 电风扇。 或风扇电机的定子与机壳连接, 风扇护罩安装在风扇电机的机壳和定 子上, 风扇电机的转子主轴与风扇、 变风向装置连接, 风扇电机的机壳和定子 与机座连接组成电风扇。
[0010] 等离子高压电产生器为与电源连接, 能产生正负高压电的产生器。 进风侧风扇 护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘的等离子体 发生极。 等离子体发生极为包括金属针状阵列电极, 金属丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极。 等离子体发生极, 与高压负电极连接。 等 离子体发生极与进风侧风扇护罩一体设置, 或分体组合设置。
[0011] 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收 集电极, 风扇为电导体风扇, 风扇与电机的转子转轴电绝缘连接。 风扇与等离 子高压电产生器正极, 通过电刷与风扇电连接。 等离子高压电产生器的高压负 电极电压的绝对值, 高于高压正电极电压的绝对值。 风扇为包括金属材料制成 , 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复 合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成。
[0012] 导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的静电感 应收集电极, 导电网栅为包括金属材料制成, 或导电网栅为金属材料表面上包 裹电绝缘材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层 制成, 或导电网栅为复合导电材料制成, 或导电网栅为塑胶电绝缘基材上, 复 合导电薄膜材料制成。 导电网栅与出风侧风扇护罩一体设置, 或分体组合设置
[0013] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 被带高压正 电的等离子体收集电极风扇吸入, 空气和带正电的等离子体收集电极风扇, 猛 烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸 附截留在风扇的翅片上, 空气得到初级净化。
[0014] 空气在经过带高压正电的等离子体收集电极风扇增压之后, 空气进入导电网栅 , 在导电网栅上感应出与之带相反电荷的表面, 进一步吸附各种污染物, 实现 空气的第二次净化, 净化的空气通过护罩排出。
[0015] 或导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离 子体收集电极。 导电网栅为包括金属材料制成, 或将塑胶材料作为基材, 在基 材上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料制成, 或导电网 栅为塑胶电绝缘基材上, 复合导电薄膜材料制成。 导电网栅与进风侧风扇护罩 电绝缘一体设置, 或导电网栅与进风侧风扇护罩电绝缘分体组合设置。 导电网 栅与等离子高压电产生器正极电连接。 等离子高压电产生器的高压负电极电压 的绝对值, 高于高压正电极电压的绝对值。
[0016] 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的静电感应收 集电极, 风扇为电导体风扇, 风扇为包括金属材料制成, 或风扇为金属材料表 面上包裹电绝缘材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材 料膜层制成, 或风扇为复合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合 导电薄膜材料制成。 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过 带高压负电的等离子体发生极, 等离子体发生极对空气放电, 电离空气, 使空 气充满负离子, 并使空气中的各种污染物也带负电荷。 带有大量负离子和臭氧 的空气, 被带高压正电的等离子体收集电极导电网栅吸附, 空气和带正电的等 离子体收集电极导电网栅, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电网栅上, 空气得到初级净化。
[0017] 空气在经过正电极导电网栅净化之后, 进入导电风扇, 在导电风扇上感应出带 负电荷的表面, 进一步吸附各种污染物, 实现空气的第二次净化, 净化的空气 通过护罩排出。 当空气净化电风扇达到一定积灰量吋, 对等离子体发生极、 等 离子体收集电极导电网栅、 导电风扇、 风扇护罩进行清洗还原。
[0018] 一种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 导电网栅、 风扇护罩、 等 离子高压电产生器。 一种空气净化电风扇的风扇电机定子与机壳连接, 风扇护 罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇连接组成换气 电风扇。 或风扇电机的定子与机壳连接, 风扇护罩安装在风扇电机的机壳和定 子上, 风扇电机的转子主轴与风扇、 变风向装置连接, 风扇电机的机壳和定子 与机座连接组成电风扇。
[0019] 等离子高压电产生器为与电源连接, 能产生正负高压电的产生器。 进风侧风扇 护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘的等离子体 发生极。 等离子体发生极为包括金属针状阵列电极, 金属丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极。 等离子体发生极, 与高压负电极连接。 等 离子体发生极与进风侧风扇护罩一体设置, 或分体组合设置。
[0020] 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的静电感应收 集电极。 风扇为电导体风扇, 风扇为包括金属材料制成, 或风扇为金属材料表 面上包裹电绝缘材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材 料膜层制成, 或风扇为复合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合 导电薄膜材料制成。 导电风扇设于等离子体发生极之后, 等离子体收集电极之 前。
[0021] 导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子 体收集电极。 导电网栅为包括金属材料制成, 或将塑胶材料作为基材, 在基材 上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料制成, 或导电网栅 为塑胶电绝缘基材上, 复合导电薄膜材料制成。 导电网栅与出风侧风扇护罩电 绝缘一体设置, 或导电网栅与出风侧风扇护罩电绝缘分体组合设置。 导电网栅 与等离子高压电产生器正极电连接。 等离子高压电产生器的高压负电极电压的 绝对值, 高于高压正电极电压的绝对值。
[0022] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 进入导电风 扇, 在与等离子体发生极相邻的导电风扇表面上, 感应出带正电荷的表面, 吸 附带负电的各种污染物。 在导电风扇另一侧, 与带正电的等离子体收集电极导 电网栅相邻的导电风扇表面上, 感应出带负电荷的表面, 吸附带正电的各种污 染物, 实现空气的初级净化。
[0023] 空气经过导电风扇感应收集电极净化后, 进入带高压正电的等离子体收集电极 导电网栅, 空气和带正电的等离子体收集电极导电网栅, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电网栅 上, 进一步实现空气的二次净化。
[0024] 或导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的静电 感应收集电极, 导电网栅为包括金属材料制成, 或导电网栅为金属材料表面上 包裹电绝缘材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜 层制成, 或导电网栅为复合导电材料制成, 或导电网栅为塑胶电绝缘基材上, 复合导电薄膜材料制成。 导电网栅与进风侧风扇护罩一体设置, 或分体组合设 置。
[0025] 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收 集电极, 风扇为电导体风扇, 风扇与电机的转子转轴电绝缘连接。 风扇与等离 子高压电产生器正极, 通过电刷与风扇电连接。 风扇为包括金属材料制成, 或 将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合导 电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成。 等离子高 压电产生器的高压负电极电压的绝对值, 高于高压正电极电压的绝对值。
[0026] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 进入导电网 栅, 在与等离子体发生极相邻的导电网栅表面上, 感应出带正电荷的表面, 吸 附带负电的各种污染物。 在导电网栅的另一侧, 与带正电的等离子体收集电极 导电风扇相邻的导电网栅表面上, 感应出带负电荷的表面, 吸附带正电的各种 污染物, 实现空气的初级净化。
[0027] 空气经过导电网栅感应收集电极净化后, 进入带高压正电的等离子体收集电极 导电风扇, 空气和带正电的等离子体收集电极导电风扇, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电风扇 上, 进一步实现空气的二次净化。
[0028] 当空气净化电风扇达到一定积灰量吋, 对等离子体发生极、 等离子体收集电极 导电网栅、 导电风扇、 风扇护罩进行清洗还原。
[0029] 一种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 导电网栅、 风扇护罩、 等 离子高压电产生器。 一种空气净化电风扇的风扇电机定子与机壳连接, 风扇护 罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇连接组成换气 电风扇。 或风扇电机的定子与机壳连接, 风扇护罩安装在风扇电机的机壳和定 子上, 风扇电机的转子主轴与风扇、 变风向装置连接, 风扇电机的机壳和定子 与机座连接组成电风扇。
[0030] 等离子高压电产生器为与电源连接, 能产生正负高压电的产生器。 进风侧风扇 护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘的等离子体 发生极。 等离子体发生极为包括金属针状阵列电极, 金属丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极。 等离子体发生极, 与高压负电极连接。 等 离子体发生极与进风侧风扇护罩一体设置, 或分体组合设置。
[0031] 导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子 体收集电极。 导电网栅为包括金属材料制成, 或将塑胶材料作为基材, 在基材 上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料制成, 或导电网栅 为塑胶电绝缘基材上, 复合导电薄膜材料制成。 导电网栅与进风侧风扇护罩电 绝缘一体设置, 或导电网栅与进风侧风扇护罩电绝缘分体组合设置。 导电网栅 与等离子高压电产生器正极电连接。
[0032] 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收 集电极, 风扇为电导体风扇, 风扇与电机的转子转轴电绝缘连接。 风扇与等离 子高压电产生器负极, 通过电刷与风扇电连接。 风扇为包括金属材料制成, 或 将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合导 电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成。 等离子高 压电产生器的高压负电极电压的绝对值, 高于高压正电极电压的绝对值。
[0033] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 被带高压正 电的等离子体收集电极导电网栅吸附, 空气和带正电的等离子体收集电极导电 网栅, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种 污染物吸附截留在导电网栅上, 空气得到初级净化。
[0034] 空气在经过正电极导电网栅净化之后, 进入导电风扇, 空气和带负电的等离子 体收集电极风扇, 猛烈碰撞接触, 杀死细菌病毒, 分解有机物, 并将带正离子 的各种污染物吸附截留在风扇的翅片上, 空气得到进一步净化, 净化的空气通 过护罩排出。
[0035] 或风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体 收集电极。 风扇为电导体风扇, 风扇与电机的转子转轴电绝缘连接。 风扇与等 离子高压电产生器正极, 通过电刷与风扇电连接。 风扇为包括金属材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合 导电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成。 导电风 扇与等离子高压电产生器正极, 通过电刷与导电风扇电连接。
[0036] 导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子 体收集电极。 导电网栅为包括金属材料制成, 或将塑胶材料作为基材, 在基材 上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料制成。 导电网栅与 进风侧风扇护罩电绝缘一体设置, 或导电网栅与进风侧风扇护罩电绝缘分体组 合设置。 导电网栅与等离子高压电产生器负极电连接。 等离子高压电产生器的 高压负电极电压的绝对值, 高于高压正电极电压的绝对值。
[0037] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 与带高压正 电的收集电极导电风扇, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并 将带负离子的各种污染物吸附截留在导电风扇上, 空气得到初级净化。
[0038] 空气在经过正电极导电风扇净化之后, 流经导电风扇的空气继续行进, 和带负 电的等离子体收集电极导电网栅, 接触放电, 进一步杀死细菌病毒, 分解有机 物, 并将带正离子的各种污染物吸附截留在导电网栅上, 空气在经过负电极导 电网栅进一步净化之后, 通过护罩排出。
[0039] 当空气净化电风扇达到一定积灰量吋, 对等离子体发生极、 导电风扇收集电极 、 导电网栅收集电极、 风扇护罩进行清洗还原。
[0040] 一种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 一侧导电网栅、 风扇护罩 、 等离子高压电产生器。 一种空气净化电风扇的风扇电机定子与机壳连接, 风 扇护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇连接组成 换气电风扇。 或风扇电机的定子与机壳连接, 风扇护罩安装在风扇电机的机壳 和定子上, 风扇电机的转子主轴与风扇、 变风向装置连接, 风扇电机的机壳和 定子与机座连接组成电风扇。
[0041] 等离子高压电产生器为与电源连接, 能产生正负高压电的产生器。 进风侧风扇 护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘的等离子体 发生极。 等离子体发生极为包括金属针状阵列电极, 金属丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极。 等离子体发生极, 与高压负电极连接。 等 离子体发生极与进风侧风扇护罩一体设置, 或分体组合设置。
[0042] 一侧导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等 离子体收集电极。 一侧导电网栅为金属材料表面一侧上复合电绝缘膜层制成, 或将塑胶材料作为基材, 在基材一侧上涂覆金属或碳材料膜层制成, 或一侧导 电网栅为复合导电材料一侧上复合电绝缘膜层制成。 一侧导电网栅与进风侧风 扇护罩电绝缘一体设置, 或一侧导电网栅与进风侧风扇护罩电绝缘分体组合设 置。 一侧导电网栅与等离子体发生极相邻侧复合有电绝缘膜层, 一侧导电网栅 与等离子高压电产生器负极电连接, 通过电绝缘膜层, 在等离子体发生极相邻 侧静电感应出正电膜层。
[0043] 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收 集电极, 风扇为电导体风扇, 风扇与电机的转子转轴电绝缘连接。 风扇与等离 子高压电产生器正极, 通过电刷与风扇电连接。 风扇为包括金属材料制成, 或 将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合导 电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成。 等离子高 压电产生器的高压负电极电压的绝对值, 高于高压正电极电压的绝对值。
[0044] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 被与等离子 体发生极相邻侧复合的一侧导电网栅电绝缘膜层, 静电感应出的带正电荷的膜 层吸附, 带高压负电的收集电极一侧导电网栅的导电一侧, 吸附带正电荷的污 染物, 排斥带负电荷的污染物, 空气得到初级净化。
[0045] 流经导电网栅的空气和带正电的等离子体收集电极导电风扇, 猛烈碰撞接触放 电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电 风扇上, 空气在经过正电极导电风扇进一步净化之后, 通过护罩排出。
[0046] 或风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体 收集电极。 风扇为一侧导电风扇, 一侧导电风扇与电机的转子转轴电绝缘连接 。 一侧导电风扇为金属材料一侧表面复合电绝缘膜层制成, 或风扇为复合导电 材料一侧表面复合电绝缘膜层制成。 导电风扇与等离子体发生极相邻侧, 复合 有电绝缘膜层, 导电风扇与等离子高压电产生器负极电连接, 通过导电风扇的 电绝缘膜层, 在等离子体发生极相邻侧, 静电感应出正电膜层。 导电风扇与等 离子高压电产生器负极, 通过电刷与导电风扇电连接。
[0047] 导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子 体收集电极。 导电网栅为包括金属材料制成, 或将塑胶材料作为基材, 在基材 上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料制成, 或导电网栅 为塑胶电绝缘基材上, 复合导电薄膜材料制成。 导电网栅与出风侧风扇护罩电 绝缘一体设置, 或导电网栅与出风侧风扇护罩电绝缘分体组合设置。 导电网栅 与等离子高压电产生器正极电连接。 等离子高压电产生器的高压负电极电压的 绝对值, 高于高压正电极电压的绝对值。
[0048] 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子 体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使 空气中的各种污染物也带负电荷。 带有大量负离子和臭氧的空气, 被与等离子 体发生极相邻侧复合的电绝缘膜层, 静电感应出的带正电荷的膜层吸附, 带高 压负电的收集电极导电风扇侧, 吸附带正电荷的污染物, 排斥带负电荷的污染 物, 空气得到初级净化。
[0049] 流经导电风扇的空气继续行进, 和带正电的等离子体收集电极导电网栅, 猛烈 碰撞接触放电, 进一步杀死细菌病毒, 分解有机物, 并将带负离子的各种污染 物吸附截留在导电网栅上, 空气在经过正电极导电网栅进一步净化之后, 通过 护罩排出。
[0050] 当空气净化电风扇达到一定积灰量吋, 对等离子体发生极、 静电感应导电风扇 收集电极、 导电网栅收集电极、 风扇护罩进行清洗还原。 [0051] 一种空气净化电风扇, 其电机转子转轴与风扇主轴连接端头, 为设有的永久磁 铁齿楞盘, 或为铁磁材料制成的齿楞盘, 风扇主轴连接端头, 为与电机转子转 轴的永久磁铁齿楞盘对应的齿楞盘, 风扇主轴连接端头齿楞盘, 为铁磁材料制 成的齿楞盘, 或为永久磁铁材料制成齿楞盘。 电机转子转轴的永久磁铁齿楞盘 与风扇主轴连接端头永久磁铁齿楞盘的连接吸合面上, 设有电绝缘材料层。
[0052] 一种空气净化电风扇, 其等离子体收集电极风扇, 与等离子高压电产生器正极 连接的电刷为石墨材料制成, 电刷通过弹簧, 或电刷内设有铁磁材料, 通过吸 合与风扇主轴贴合电连接。
[0053] 一种空气净化电风扇, 其进风侧风扇护罩上设有铁磁材料, 或永久磁铁制成的 卡扣, 等离子体发生极上, 设有与进风侧风扇护罩上卡扣对应的铁磁材料, 或 永久磁铁制成的卡扣, 等离子体发生极与进风侧风扇护罩, 通过子母卡扣吸合 分体组合。
[0054] 一种空气净化电风扇, 其正负离子发生器安装于机座内, 正负离子发生器设有 金属屏蔽罩, 并接地。 摇头装置为风机电机带动, 或为独设的摇头电机带动, 通过常规的变速装置和离合装置带动风扇, 实现风扇摇头。 风扇护罩包括塑胶 制成, 金属制成, 金属制成的风扇护罩接地。 电机包裹在风扇护罩内, 风扇的 进风侧风扇护罩固定在电机的定子外套上, 风扇的出风侧风扇护罩的外边沿, 通过卡扣与风扇进风侧风扇护罩的外边沿相连。 电机定子铁芯接地。
[0055] 一种空气净化电风扇, 其风扇包括轴流风扇, 贯流风扇, 离心式风扇。 风扇为 塑胶电绝缘基材, 其上复合的导电薄膜材料为蒸镀的金属薄膜, 或为复合的碳 材料薄膜。 电风扇设有包括总幵关、 风力调节, 风向, 定吋, 负离子发生器幵 关的按键或遥控器。 遥控器包括通过无线网络遥控的手机。
发明的有益效果
有益效果
[0056] 本发明设计的空气净化电风扇通过多重强制反应,等离子体被充分使用, 而且空 气循环速度快, 除尘效率高, 具有风扇的功能, 性价比高。
对附图的简要说明
附图说明 [0057] 图 1是本发明一种空气净化电风扇第 1种实施例的结构示意图;
[0058] 图 2是本发明一种空气净化电风扇第 2种实施例的结构示意图;
[0059] 图 3是本发明一种空气净化电风扇第 3种实施例的结构示意图;
[0060] 图 4是本发明一种空气净化电风扇第 4种实施例的结构示意图;
[0061] 图 5是本发明一种空气净化电风扇第 5种实施例的结构示意图;
[0062] 图 6是本发明一种空气净化电风扇第 6种实施例的结构示意图;
[0063] 图 7是本发明一种空气净化电风扇第 7种实施例的结构示意图;
[0064] 图 8是本发明一种空气净化电风扇第 8种实施例的结构示意图;
[0065] 图 9是本发明一种空气净化电风扇第 9种实施例的结构示意图。
[0066] 图中: 1风扇机壳、 2风扇进风罩、 3风扇出风罩、 4风扇进风罩护网、 5风扇出 风罩护网、 6导电风扇、 7等离子体发生极放电丝、 8电绝缘永久磁铁齿楞盘连接 器、 9风扇电机、 10电刷、 11等离子体发生极电绝缘支架、 12风扇轴、 13等离子 体高压产生器、 14风扇底座、 15导电网栅。
[0067] 具体实施方式
[0068] 本发明一种空气净化电风扇第 1种实施例的运行过程如下:
[0069] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 被带高压正电的等离子体收集电极导电风扇 6吸入, 导电风扇 6与带有大量 负离子和臭氧的空气猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带 负离子的各种污染物吸附截留在导电风扇 6上, 空气得到净化, 净化后的空气通 过风扇出风罩护网 5排出。 当空气净化电风扇达到一定积灰量吋, 对等离子体发 生极、 等离子体收集电极风扇、 风扇护罩进行清洗还原。
[0070] 本发明一种空气净化电风扇第 2种实施例的运行过程如下:
[0071] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 被带高压正电的等离子体收集电极导电风扇 6吸入, 导电风扇 6与带有大量 负离子和臭氧的空气猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带 负离子的各种污染物吸附截留在导电风扇 6上, 空气得到初级净化; 空气在经过 带高压正电的等离子体收集电极风扇增压之后, 空气进入导电网栅 15, 在导电 网栅 15上感应出与之带相反电荷的表面, 进一步吸附各种污染物, 实现空气的 第二次净化, 净化后的空气通过风扇出风罩护网 5排出。 当空气净化电风扇达到 一定积灰量吋, 对等离子体发生极、 等离子体收集电极风扇、 风扇护罩进行清 洗还原。
[0072] 本发明一种空气净化电风扇第 3种实施例的运行过程如下:
[0073] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 被带高压正电的等离子体收集电极导电网栅 15吸附, 空气和带正电的等离 子体收集电极导电网栅 15, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电网栅 15上, 空气得到初级净化; 空 气在经过正电极导电网栅 15净化之后, 进入导电风扇 6, 在导电风扇 6上感应出 带负电荷的表面, 进一步吸附各种污染物, 实现空气的第二次净化, 净化后的 空气通过风扇出风罩护网 5排出。 当空气净化电风扇达到一定积灰量吋, 对等离 子体发生极、 等离子体收集电极风扇、 风扇护罩进行清洗还原。
[0074] 本发明一种空气净化电风扇第 4种实施例的运行过程如下:
[0075] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 被导电风扇 6吸入, 在与等离子体发生极相邻的导电风扇 6表面上, 感应出 带正电荷的表面, 吸附带负电的各种污染物; 在导电风扇 6另一侧, 与带正电的 等离子体收集电极导电网栅 15相邻的导电风扇 6表面上, 感应出带负电荷的表面 , 吸附带正电的各种污染物, 实现空气的初级净化; 空气经过导电风扇 6感应收 集电极净化后, 进入带高压正电的等离子体收集电极导电网栅 15, 空气和带正 电的等离子体收集电极导电网栅 15, 猛烈碰撞接触放电, 杀死细菌病毒, 分解 有机物, 并将带负离子的各种污染物吸附截留在导电网栅 15上, 进一步实现空 气的二次净化; 净化后的空气通过风扇出风罩护网 5排出。 当空气净化电风扇达 到一定积灰量吋, 对等离子体发生极、 等离子体收集电极风扇、 风扇护罩进行 清洗还原。
[0076] 本发明一种空气净化电风扇第 5种实施例的运行过程如下:
[0077] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 进入导电网栅 15, 在与等离子体发生极相邻的导电网栅 15表面上, 感应出 带正电荷的表面, 吸附带负电的各种污染物; 在导电网栅的另一侧, 与带正电 的等离子体收集电极导电风扇 6相邻的导电网栅 15表面上, 感应出带负电荷的表 面, 吸附带正电的各种污染物, 实现空气的初级净化; 空气经过导电网栅 15感 应收集电极净化后, 进入带高压正电的等离子体收集电极导电风扇 6, 空气和带 正电的等离子体收集电极导电风扇 6, 猛烈碰撞接触放电, 杀死细菌病毒, 分解 有机物, 并将带负离子的各种污染物吸附截留在导电风扇 6上, 进一步实现空气 的二次净化; 净化后的空气通过风扇出风罩护网 5排出。 当空气净化电风扇达到 一定积灰量吋, 对等离子体发生极、 等离子体收集电极导电网栅、 导电风扇、 风扇护罩进行清洗还原。
[0078] 本发明一种空气净化电风扇第 6种实施例的运行过程如下:
[0079] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 被带高压正电的等离子体收集电极导电网栅 15吸附, 空气和带正电的等离 子体收集电极导电网栅 15, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电网栅 15上, 空气得到初级净化; 空 气在经过正电极导电网栅 15净化之后, 进入导电风扇 6, 空气和带负电的等离子 体收集电极风扇 6, 猛烈碰撞接触, 杀死细菌病毒, 分解有机物, 并将带正离子 的各种污染物吸附截留在风扇的翅片 6上, 空气得到进一步净化; 净化后的空气 通过风扇出风罩护网 5排出。 当空气净化电风扇达到一定积灰量吋, 对等离子体 发生极、 等离子体收集电极风扇、 风扇护罩进行清洗还原。
[0080] 本发明一种空气净化电风扇第 7种实施例的运行过程如下:
[0081] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 与带高压正电的收集电极导电风扇 6, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电风扇 6上, 空气得到初 级净化; 空气在经过正电极导电风扇 6净化之后, 流经导电风扇 6的空气继续行 进, 和带负电的等离子体收集电极导电网栅 15, 接触放电, 进一步杀死细菌病 毒, 分解有机物, 并将带正离子的各种污染物吸附截留在导电网栅 15上, 空气 在经过负电极导电网栅 15进一步净化之后, 通过风扇出风罩护网 5排出。 当空气 净化电风扇达到一定积灰量吋, 对等离子体发生极、 导电风扇收集电极、 导电 网栅收集电极、 风扇护罩进行清洗还原。
[0082] 本发明一种空气净化电风扇第 8种实施例的运行过程如下:
[0083] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 被与等离子体发生极相邻侧复合的一侧导电网栅 15电绝缘膜层, 静电感应 出的带正电荷的膜层吸附, 带高压负电的收集电极一侧导电网栅 15的导电一侧 , 吸附带正电荷的污染物, 排斥带负电荷的污染物, 空气得到初级净化; 流经 导电网栅 15的空气和带正电的等离子体收集电极导电风扇 6, 猛烈碰撞接触放电 , 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电风 扇 6上, 空气在经过正电极导电风扇进一步净化之后, 通过风扇出风罩护网 5排 出。 当空气净化电风扇达到一定积灰量吋, 对等离子体发生极、 等离子体收集 电极风扇、 风扇护罩进行清洗还原。
[0084] 本发明一种空气净化电风扇第 9种实施例的运行过程如下:
[0085] 当幵启风扇, 导电风扇 6幵始旋转, 风通过风扇进风罩护网 4, 进入等离子体发 生极电绝缘支架 11, 等离子体发生极放电丝 7对空气放电, 电离空气, 使空气充 满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空 气, 被与等离子体发生极相邻导电风扇 6侧复合的电绝缘膜层, 静电感应出的带 正电荷的膜层吸附, 带高压负电的收集电极导电风扇 6侧, 吸附带正电荷的污染 物, 排斥带负电荷的污染物, 空气得到初级净化; 流经导电风扇 6的空气继续行 进, 和带正电的等离子体收集电极导电网栅 15, 猛烈碰撞接触放电, 进一步杀 死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导电网栅 15 上, 空气在经过正电极导电网栅 15进一步净化之后, 通过风扇出风罩护网 5排出 。 当空气净化电风扇达到一定积灰量吋, 对等离子体发生极、 导电风扇收集电 极、 导电网栅收集电极、 风扇护罩进行清洗还原。

Claims

权利要求书
[权利要求 1] 一种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 风扇护罩、 等离 子高压电产生器; 其特征是: 风扇电机的定子与机壳连接, 风扇护罩 安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇连接组 成换气电风扇; 或风扇电机的定子与机壳连接, 风扇护罩安装在风扇 电机的机壳和定子上, 风扇电机的转子主轴与风扇、 变风向装置连接 , 风扇电机的机壳和定子与机座连接组成电风扇; 等离子高压电产生 器为与电源连接, 能产生正负高压电的产生器; 进风侧风扇护罩的内 侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘的等离子体 发生极; 等离子体发生极为包括金属针状阵列电极, 金属丝网状电极 , 线状、 锯齿型、 芒刺型或鱼骨型结构电极; 等离子体发生极, 与高 压负电极连接; 等离子体发生极与进风侧风扇护罩一体设置, 或分体 组合设置; 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地 电绝缘的等离子体收集电极, 风扇为电导体风扇, 风扇与电机的转子 转轴电绝缘连接; 风扇与等离子高压电产生器正极, 通过电刷与风扇 电连接; 等离子高压电产生器的高压负电极电压的绝对值, 高于高压 正电极电压的绝对值; 风扇为包括金属材料制成, 或将塑胶材料作为 基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合导电材料 制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成; 当幵启 风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离 子体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负 离子, 并使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧 的空气, 被带高压正电的等离子体收集电极风扇吸入, 空气和带正电 的等离子体收集电极风扇, 猛烈碰撞接触放电, 杀死细菌病毒, 分解 有机物, 并将带负离子的各种污染物吸附截留在风扇的翅片上, 空气 得到净化, 净化的空气通过护罩排出; 当空气净化电风扇达到一定积 灰量吋, 对等离子体发生极、 等离子体收集电极风扇、 风扇护罩进行 清洗还原。
[权利要求 2] —种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 导电网栅、 风扇 护罩、 等离子高压电产生器; 其特征是: 风扇电机的定子与机壳连接 , 风扇护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与 风扇连接组成换气电风扇; 或风扇电机的定子与机壳连接, 风扇护罩 安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇、 变风 向装置连接, 风扇电机的机壳和定子与机座连接组成电风扇; 等离子 高压电产生器为与电源连接, 能产生正负高压电的产生器; 进风侧风 扇护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘 的等离子体发生极; 等离子体发生极为包括金属针状阵列电极, 金属 丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极; 等离子体发 生极, 与高压负电极连接; 等离子体发生极与进风侧风扇护罩一体设 置, 或分体组合设置; 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收集电极, 风扇为电导体风扇, 风扇与 电机的转子转轴电绝缘连接; 风扇与等离子高压电产生器正极, 通过 电刷与风扇电连接; 等离子高压电产生器的高压负电极电压的绝对值
, 高于高压正电极电压的绝对值; 风扇为包括金属材料制成, 或将塑 胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复 合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制 成; 导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电 绝缘的静电感应收集电极, 导电网栅为包括金属材料制成, 或导电网 栅为金属材料表面上包裹电绝缘材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料制 成, 或导电网栅为塑胶电绝缘基材上, 复合导电薄膜材料制成; 导电 网栅与出风侧风扇护罩一体设置, 或分体组合设置; 当幵启风扇, 风 扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子体发生 极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并 使空气中的各种污染物也带负电荷; 带有大量负离子和臭氧的空气, 被带高压正电的等离子体收集电极风扇吸入, 空气和带正电的等离子 体收集电极风扇, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在风扇的翅片上, 空气得到初级 净化; 空气在经过带高压正电的等离子体收集电极风扇增压之后, 空 气进入导电网栅, 在导电网栅上感应出与之带相反电荷的表面, 进一 步吸附各种污染物, 实现空气的第二次净化, 净化的空气通过护罩排 出; 或导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地 电绝缘的等离子体收集电极; 导电网栅为包括金属材料制成, 或将塑 胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或导电网栅 为复合导电材料制成, 或导电网栅为塑胶电绝缘基材上, 复合导电薄 膜材料制成; 导电网栅与进风侧风扇护罩电绝缘一体设置, 或导电网 栅与进风侧风扇护罩电绝缘分体组合设置; 导电网栅与等离子高压电 产生器正极电连接; 等离子高压电产生器的高压负电极电压的绝对值 , 高于高压正电极电压的绝对值; 风扇为与风扇护罩、 等离子体发生 极、 机座、 电机、 大地电绝缘的静电感应收集电极, 风扇为电导体风 扇, 风扇为包括金属材料制成, 或风扇为金属材料表面上包裹电绝缘 材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层 制成, 或风扇为复合导电材料制成, 或风扇为塑胶电绝缘基材上, 复 合导电薄膜材料制成; 当幵启风扇, 风扇幵始旋转, 风先经过风扇护 罩, 再经过带高压负电的等离子体发生极, 等离子体发生极对空气放 电, 电离空气, 使空气充满负离子, 并使空气中的各种污染物也带负 电荷; 带有大量负离子和臭氧的空气, 被带高压正电的等离子体收集 电极导电网栅吸附, 空气和带正电的等离子体收集电极导电网栅, 猛 烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种 污染物吸附截留在导电网栅上, 空气得到初级净化; 空气在经过正电 极导电网栅净化之后, 进入导电风扇, 在导电风扇上感应出带负电荷 的表面, 进一步吸附各种污染物, 实现空气的第二次净化, 净化的空 气通过护罩排出; 当空气净化电风扇达到一定积灰量吋, 对等离子体 发生极、 等离子体收集电极导电网栅、 导电风扇、 风扇护罩进行清洗 还原。
[权利要求 3] —种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 导电网栅、 风扇 护罩、 等离子高压电产生器; 其特征是: 风扇电机的定子与机壳连接 , 风扇护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与 风扇连接组成换气电风扇; 或风扇电机的定子与机壳连接, 风扇护罩 安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇、 变风 向装置连接, 风扇电机的机壳和定子与机座连接组成电风扇; 等离子 高压电产生器为与电源连接, 能产生正负高压电的产生器; 进风侧风 扇护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘 的等离子体发生极; 等离子体发生极为包括金属针状阵列电极, 金属 丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极; 等离子体发 生极, 与高压负电极连接; 等离子体发生极与进风侧风扇护罩一体设 置, 或分体组合设置; 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的静电感应收集电极, 风扇为电导体风扇, 风扇为 包括金属材料制成, 或风扇为金属材料表面上包裹电绝缘材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风 扇为复合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜 材料制成; 导电风扇设于等离子体发生极之后, 等离子体收集电极之 前; 导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电 绝缘的等离子体收集电极; 导电网栅为包括金属材料制成, 或将塑胶 材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或导电网栅为 复合导电材料制成, 或导电网栅为塑胶电绝缘基材上, 复合导电薄膜 材料制成; 导电网栅与出风侧风扇护罩电绝缘一体设置, 或导电网栅 与出风侧风扇护罩电绝缘分体组合设置; 导电网栅与等离子高压电产 生器正极电连接; 等离子高压电产生器的高压负电极电压的绝对值, 高于高压正电极电压的绝对值; 当幵启风扇, 风扇幵始旋转, 风先经 过风扇护罩, 再经过带高压负电的等离子体发生极, 等离子体发生极 对空气放电, 电离空气, 使空气充满负离子, 并使空气中的各种污染 物也带负电荷; 带有大量负离子和臭氧的空气, 进入导电风扇, 在与 等离子体发生极相邻的导电风扇表面上, 感应出带正电荷的表面, 吸 附带负电的各种污染物; 在导电风扇另一侧, 与带正电的等离子体收 集电极导电网栅相邻的导电风扇表面上, 感应出带负电荷的表面, 吸 附带正电的各种污染物, 实现空气的初级净化; 空气经过导电风扇感 应收集电极净化后, 进入带高压正电的等离子体收集电极导电网栅, 空气和带正电的等离子体收集电极导电网栅, 猛烈碰撞接触放电, 杀 死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截留在导 电网栅上, 进一步实现空气的二次净化; 或导电网栅为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的静电感应收集电极, 导 电网栅为包括金属材料制成, 或导电网栅为金属材料表面上包裹电绝 缘材料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜 层制成, 或导电网栅为复合导电材料制成, 或导电网栅为塑胶电绝缘 基材上, 复合导电薄膜材料制成; 导电网栅与进风侧风扇护罩一体设 置, 或分体组合设置; 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收集电极, 风扇为电导体风扇, 风扇与 电机的转子转轴电绝缘连接; 风扇与等离子高压电产生器正极, 通过 电刷与风扇电连接; 风扇为包括金属材料制成, 或将塑胶材料作为基 材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合导电材料制 成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成; 等离子高 压电产生器的高压负电极电压的绝对值, 高于高压正电极电压的绝对 值; 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压 负电的等离子体发生极, 等离子体发生极对空气放电, 电离空气, 使 空气充满负离子, 并使空气中的各种污染物也带负电荷; 带有大量负 离子和臭氧的空气, 进入导电网栅, 在与等离子体发生极相邻的导电 网栅表面上, 感应出带正电荷的表面, 吸附带负电的各种污染物; 在 导电网栅的另一侧, 与带正电的等离子体收集电极导电风扇相邻的导 电网栅表面上, 感应出带负电荷的表面, 吸附带正电的各种污染物, 实现空气的初级净化; 空气经过导电网栅感应收集电极净化后, 进入 带高压正电的等离子体收集电极导电风扇, 空气和带正电的等离子体 收集电极导电风扇, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物 , 并将带负离子的各种污染物吸附截留在导电风扇上, 进一步实现空 气的二次净化; 当空气净化电风扇达到一定积灰量吋, 对等离子体发 生极、 等离子体收集电极导电网栅、 导电风扇、 风扇护罩进行清洗还 原。
[权利要求 4] 一种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 导电网栅、 风扇 护罩、 等离子高压电产生器; 其特征是: 风扇电机的定子与机壳连接 , 风扇护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与 风扇连接组成换气电风扇; 或风扇电机的定子与机壳连接, 风扇护罩 安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇、 变风 向装置连接, 风扇电机的机壳和定子与机座连接组成电风扇; 等离子 高压电产生器为与电源连接, 能产生正负高压电的产生器; 进风侧风 扇护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电绝缘 的等离子体发生极; 等离子体发生极为包括金属针状阵列电极, 金属 丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极; 等离子体发 生极, 与高压负电极连接; 等离子体发生极与进风侧风扇护罩一体设 置, 或分体组合设置; 导电网栅为与风扇护罩、 等离子体发生极、 机 座、 电机、 大地电绝缘的等离子体收集电极; 导电网栅为包括金属材 料制成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制 成, 或导电网栅为复合导电材料制成, 或导电网栅为塑胶电绝缘基材 上, 复合导电薄膜材料制成; 导电网栅与进风侧风扇护罩电绝缘一体 设置, 或导电网栅与进风侧风扇护罩电绝缘分体组合设置; 导电网栅 与等离子高压电产生器正极电连接; 风扇为与风扇护罩、 等离子体发 生极、 机座、 电机、 大地电绝缘的等离子体收集电极, 风扇为电导体 风扇, 风扇与电机的转子转轴电绝缘连接; 风扇与等离子高压电产生 器负极, 通过电刷与风扇电连接; 风扇为包括金属材料制成, 或将塑 胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复 合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制 成; 等离子高压电产生器的高压负电极电压的绝对值, 高于高压正电 极电压的绝对值; 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过带高压负电的等离子体发生极, 等离子体发生极对空气放电, 电离空气, 使空气充满负离子, 并使空气中的各种污染物也带负电荷 ; 带有大量负离子和臭氧的空气, 被带高压正电的等离子体收集电极 导电网栅吸附, 空气和带正电的等离子体收集电极导电网栅, 猛烈碰 撞接触放电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染 物吸附截留在导电网栅上, 空气得到初级净化; 空气在经过正电极导 电网栅净化之后, 进入导电风扇, 空气和带负电的等离子体收集电极 风扇, 猛烈碰撞接触, 杀死细菌病毒, 分解有机物, 并将带正离子的 各种污染物吸附截留在风扇的翅片上, 空气得到进一步净化, 净化的 空气通过护罩排出; 或风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收集电极; 风扇为电导体风扇, 风扇与 电机的转子转轴电绝缘连接; 风扇与等离子高压电产生器正极, 通过 电刷与风扇电连接; 风扇为包括金属材料制成, 或将塑胶材料作为基 材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合导电材料制 成, 或风扇为塑胶电绝缘基材上, 复合导电薄膜材料制成; 导电风扇 与等离子高压电产生器正极, 通过电刷与导电风扇电连接; 导电网栅 为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子 体收集电极; 导电网栅为包括金属材料制成, 或将塑胶材料作为基材 , 在基材上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料 制成; 导电网栅与进风侧风扇护罩电绝缘一体设置, 或导电网栅与进 风侧风扇护罩电绝缘分体组合设置; 导电网栅与等离子高压电产生器 负极电连接; 等离子高压电产生器的高压负电极电压的绝对值, 高于 高压正电极电压的绝对值; 当幵启风扇, 风扇幵始旋转, 风先经过风 扇护罩, 再经过带高压负电的等离子体发生极, 等离子体发生极对空 气放电, 电离空气, 使空气充满负离子, 并使空气中的各种污染物也 带负电荷; 带有大量负离子和臭氧的空气, 与带高压正电的收集电极 导电风扇, 猛烈碰撞接触放电, 杀死细菌病毒, 分解有机物, 并将带 负离子的各种污染物吸附截留在导电风扇上, 空气得到初级净化; 空 气在经过正电极导电风扇净化之后, 流经导电风扇的空气继续行进, 和带负电的等离子体收集电极导电网栅, 接触放电, 进一步杀死细菌 病毒, 分解有机物, 并将带正离子的各种污染物吸附截留在导电网栅 上, 空气在经过负电极导电网栅进一步净化之后, 通过护罩排出; 当 空气净化电风扇达到一定积灰量吋, 对等离子体发生极、 导电风扇收 集电极、 导电网栅收集电极、 风扇护罩进行清洗还原。
[权利要求 5] —种空气净化电风扇, 包括机壳、 风扇、 风扇电机、 一侧导电网栅、 风扇护罩、 等离子高压电产生器; 其特征是: 风扇电机的定子与机壳 连接, 风扇护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主 轴与风扇连接组成换气电风扇; 或风扇电机的定子与机壳连接, 风扇 护罩安装在风扇电机的机壳和定子上, 风扇电机的转子主轴与风扇、 变风向装置连接, 风扇电机的机壳和定子与机座连接组成电风扇; 等 离子高压电产生器为与电源连接, 能产生正负高压电的产生器; 进风 侧风扇护罩的内侧进风口处, 设有与风扇护罩、 电机、 风扇、 机座电 绝缘的等离子体发生极; 等离子体发生极为包括金属针状阵列电极, 金属丝网状电极, 线状、 锯齿型、 芒刺型或鱼骨型结构电极; 等离子 体发生极, 与高压负电极连接; 等离子体发生极与进风侧风扇护罩一 体设置, 或分体组合设置; 一侧导电网栅为与风扇护罩、 等离子体发 生极、 机座、 电机、 大地电绝缘的等离子体收集电极; 一侧导电网栅 为金属材料表面一侧上复合电绝缘膜层制成, 或将塑胶材料作为基材
, 在基材一侧上涂覆金属或碳材料膜层制成, 或一侧导电网栅为复合 导电材料一侧上复合电绝缘膜层制成; 一侧导电网栅与进风侧风扇护 罩电绝缘一体设置, 或一侧导电网栅与进风侧风扇护罩电绝缘分体组 合设置; 一侧导电网栅与等离子体发生极相邻侧复合有电绝缘膜层, 一侧导电网栅与等离子高压电产生器负极电连接, 通过电绝缘膜层, 在等离子体发生极相邻侧静电感应出正电膜层; 风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收集电极, 风 扇为电导体风扇, 风扇与电机的转子转轴电绝缘连接; 风扇与等离子 高压电产生器正极, 通过电刷与风扇电连接; 风扇为包括金属材料制 成, 或将塑胶材料作为基材, 在基材上涂覆金属或碳材料膜层制成, 或风扇为复合导电材料制成, 或风扇为塑胶电绝缘基材上, 复合导电 薄膜材料制成; 等离子高压电产生器的高压负电极电压的绝对值, 高 于高压正电极电压的绝对值; 当幵启风扇, 风扇幵始旋转, 风先经过 风扇护罩, 再经过带高压负电的等离子体发生极, 等离子体发生极对 空气放电, 电离空气, 使空气充满负离子, 并使空气中的各种污染物 也带负电荷; 带有大量负离子和臭氧的空气, 被与等离子体发生极相 邻侧复合的一侧导电网栅电绝缘膜层, 静电感应出的带正电荷的膜层 吸附, 带高压负电的收集电极一侧导电网栅的导电一侧, 吸附带正电 荷的污染物, 排斥带负电荷的污染物, 空气得到初级净化; 流经导电 网栅的空气和带正电的等离子体收集电极导电风扇, 猛烈碰撞接触放 电, 杀死细菌病毒, 分解有机物, 并将带负离子的各种污染物吸附截 留在导电风扇上, 空气在经过正电极导电风扇进一步净化之后, 通过 护罩排出; 或风扇为与风扇护罩、 等离子体发生极、 机座、 电机、 大 地电绝缘的等离子体收集电极; 风扇为一侧导电风扇, 一侧导电风扇 与电机的转子转轴电绝缘连接; 一侧导电风扇为金属材料一侧表面复 合电绝缘膜层制成, 或风扇为复合导电材料一侧表面复合电绝缘膜层 制成; 导电风扇与等离子体发生极相邻侧, 复合有电绝缘膜层, 导电 风扇与等离子高压电产生器负极电连接, 通过导电风扇的电绝缘膜层 , 在等离子体发生极相邻侧, 静电感应出正电膜层; 导电风扇与等离 子高压电产生器负极, 通过电刷与导电风扇电连接; 导电网栅为与风 扇护罩、 等离子体发生极、 机座、 电机、 大地电绝缘的等离子体收集 电极; 导电网栅为包括金属材料制成, 或将塑胶材料作为基材, 在基 材上涂覆金属或碳材料膜层制成, 或导电网栅为复合导电材料制成, 或导电网栅为塑胶电绝缘基材上, 复合导电薄膜材料制成; 导电网栅 与出风侧风扇护罩电绝缘一体设置, 或导电网栅与出风侧风扇护罩电 绝缘分体组合设置; 导电网栅与等离子高压电产生器正极电连接; 等 离子高压电产生器的高压负电极电压的绝对值, 高于高压正电极电压 的绝对值; 当幵启风扇, 风扇幵始旋转, 风先经过风扇护罩, 再经过 带高压负电的等离子体发生极, 等离子体发生极对空气放电, 电离空 气, 使空气充满负离子, 并使空气中的各种污染物也带负电荷; 带有 大量负离子和臭氧的空气, 被与等离子体发生极相邻侧复合的电绝缘 膜层, 静电感应出的带正电荷的膜层吸附, 带高压负电的收集电极导 电风扇侧, 吸附带正电荷的污染物, 排斥带负电荷的污染物, 空气得 到初级净化; 流经导电风扇的空气继续行进, 和带正电的等离子体收 集电极导电网栅, 猛烈碰撞接触放电, 进一步杀死细菌病毒, 分解有 机物, 并将带负离子的各种污染物吸附截留在导电网栅上, 空气在经 过正电极导电网栅进一步净化之后, 通过护罩排出; 当空气净化电风 扇达到一定积灰量吋, 对等离子体发生极、 静电感应导电风扇收集电 极、 导电网栅收集电极、 风扇护罩进行清洗还原。
[权利要求 6] 根据权利要求 1、 2、 3、 4或 5所述的一种空气净化电风扇, 其特征是
: 电机转子转轴与风扇主轴连接端头, 为设有的永久磁铁齿楞盘, 或 为铁磁材料制成的齿楞盘, 风扇主轴连接端头, 为与电机转子转轴的 永久磁铁齿楞盘对应的齿楞盘, 风扇主轴连接端头齿楞盘, 为铁磁材 料制成的齿楞盘, 或为永久磁铁材料制成齿楞盘; 电机转子转轴的永 久磁铁齿楞盘与风扇主轴连接端头永久磁铁齿楞盘的连接吸合面上, 设有电绝缘材料层。
[权利要求 7] 根据权利要求 1、 2、 3、 4或 5所述的一种空气净化电风扇, 其特征是
: 等离子体收集电极风扇, 与等离子高压电产生器正极连接的电刷为 石墨材料制成, 电刷通过弹簧, 或电刷内设有铁磁材料, 通过吸合与 风扇主轴贴合电连接。
[权利要求 8] 根据权利要求 1、 2、 3、 4或 5所述的一种空气净化电风扇, 其特征是 : 进风侧风扇护罩上设有铁磁材料, 或永久磁铁制成的卡扣, 等离子 体发生极上, 设有与进风侧风扇护罩上卡扣对应的铁磁材料, 或永久 磁铁制成的卡扣, 等离子体发生极与进风侧风扇护罩, 通过子母卡扣 吸合分体组合。
[权利要求 9] 根据权利要求 1、 2、 3、 4或 5所述的一种空气净化电风扇, 其特征是 : 正负离子发生器安装于机座内, 正负离子发生器设有金属屏蔽罩, 并接地; 摇头装置为风机电机带动, 或为独设的摇头电机带动, 通过 常规的变速装置和离合装置带动风扇, 实现风扇摇头; 风扇护罩包括 塑胶制成, 金属制成, 金属制成的风扇护罩接地; 电机包裹在风扇护 罩内, 风扇的进风侧风扇护罩固定在电机的定子外套上, 风扇的出风 侧风扇护罩的外边沿, 通过卡扣与风扇进风侧风扇护罩的外边沿相连 ; 电机定子铁芯接地。
[权利要求 10] 根据权利要求 1、 2、 3、 4或 5所述的一种空气净化电风扇, 其特征是 : 风扇包括轴流风扇, 贯流风扇, 离心式风扇; 风扇为塑胶电绝缘基 材, 其上复合的导电薄膜材料为蒸镀的金属薄膜, 或为复合的碳材料 薄膜; 电风扇设有包括总幵关、 风力调节, 风向, 定吋, 负离子发生 器幵关的按键或遥控器; 遥控器包括通过无线网络遥控的手机。
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CN107854775A (zh) * 2017-11-19 2018-03-30 烟台海灵健康科技有限公司 一种带电机风扇的便携式等离子体治疗仪
CN109351479A (zh) * 2018-10-26 2019-02-19 刘彦恺 一种新型多功能静电除尘器
CN111715010A (zh) * 2019-03-21 2020-09-29 北京康孚科技股份有限公司 轴流旋风凝并式空气过滤方法和装置
CN111043084B (zh) * 2020-01-02 2021-09-17 杜颖威 一种建筑消防用快速排烟装置

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2660192Y (zh) * 2003-05-08 2004-12-01 黎绍均 负氧离子电扇
CN2741661Y (zh) * 2004-09-24 2005-11-23 佛山市美的日用家电集团有限公司 空气清新机
KR101179402B1 (ko) * 2010-04-02 2012-09-05 주식회사 동우미디어 팬 필터 유닛에 의하여 공기 정화 기능을 갖는 엘리베이터
JP2014196852A (ja) * 2013-03-29 2014-10-16 パナソニック株式会社 ファンフィルターユニットとそれを用いたクリーンルーム
CN104791272A (zh) * 2015-04-13 2015-07-22 金陵科技学院 一种空气净化电风扇
CN105782085A (zh) * 2016-03-06 2016-07-20 淄博环能海臣环保技术服务有限公司 一种空气净化电风扇

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU3700089A (en) * 1988-06-23 1990-01-04 Constantinos J. Joannou Ceiling mounted air cleaner
NZ233812A (en) * 1990-05-25 1992-10-28 John Matthew Farrelly Two integrated fans for air extraction or circulation
JP2005172406A (ja) * 2003-12-08 2005-06-30 Makoto Fukada 卓上型涼風扇
KR20050069967A (ko) * 2005-06-14 2005-07-05 채구연 선풍기용 자가발전 공기정화기
CN102039012A (zh) * 2009-10-26 2011-05-04 吴福吉 随身空气净化器
CN202170899U (zh) * 2011-07-29 2012-03-21 安徽皖投力天世纪空气净化系统工程有限公司 装有净化器的排气扇
CN104185737B (zh) * 2012-04-09 2016-08-24 夏普株式会社 送风机
CN204629829U (zh) * 2015-05-26 2015-09-09 杭州盛大高科技机电有限公司 一种带制氧模块的室内用空气净化机
CN204987303U (zh) * 2015-07-31 2016-01-20 孙剑 一种消烟净味空气净化装置

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2660192Y (zh) * 2003-05-08 2004-12-01 黎绍均 负氧离子电扇
CN2741661Y (zh) * 2004-09-24 2005-11-23 佛山市美的日用家电集团有限公司 空气清新机
KR101179402B1 (ko) * 2010-04-02 2012-09-05 주식회사 동우미디어 팬 필터 유닛에 의하여 공기 정화 기능을 갖는 엘리베이터
JP2014196852A (ja) * 2013-03-29 2014-10-16 パナソニック株式会社 ファンフィルターユニットとそれを用いたクリーンルーム
CN104791272A (zh) * 2015-04-13 2015-07-22 金陵科技学院 一种空气净化电风扇
CN105782085A (zh) * 2016-03-06 2016-07-20 淄博环能海臣环保技术服务有限公司 一种空气净化电风扇

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107575422A (zh) * 2017-09-22 2018-01-12 杭州江南电机股份有限公司 一种消毒柜专用风机
CN114200222A (zh) * 2021-11-13 2022-03-18 国网辽宁省电力有限公司阜新供电公司 高压直流输电线路空间电荷测量装置

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