CN201756451U - Ozone generation device - Google Patents

Ozone generation device Download PDF

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Publication number
CN201756451U
CN201756451U CN2010202909228U CN201020290922U CN201756451U CN 201756451 U CN201756451 U CN 201756451U CN 2010202909228 U CN2010202909228 U CN 2010202909228U CN 201020290922 U CN201020290922 U CN 201020290922U CN 201756451 U CN201756451 U CN 201756451U
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CN
China
Prior art keywords
dielectric tube
sealing
shaped
radiator
voltage electrode
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2010202909228U
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Chinese (zh)
Inventor
史金阳
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Individual
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Individual
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Publication date
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Priority to CN2010202909228U priority Critical patent/CN201756451U/en
Application granted granted Critical
Publication of CN201756451U publication Critical patent/CN201756451U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Oxygen, Ozone, And Oxides In General (AREA)

Abstract

An ozone generation device mainly solves the problems of easy looseness and breakage due to hard connection of an ozone dielectric body and radiating fins in the prior art. The ozone generation device comprises a radiator in which an arc-shaped groove is formed; and a dielectric tube matched with the arc-shaped groove is included. A flexible material layer covers the dielectric tube, a diversion inner core is installed in the dielectric tube, and a spiral high-voltage electrode is arranged on the diversion inner core; and a bolt is fixed at one end of the high-voltage electrode and is fixedly connected with a sealed fixed head A after penetrating a sealing cap, a sealed fixed head B with an air outlet is inserted in the other end of the dielectric tube, and a sealing cap is arranged between the sealed fixed head A and the sealed fixed head B. The structure of the product is reasonable, and the problems of axially moving, rotation and sealing of the dielectric tube are solved. Especially, since the flexible material layer covers the dielectric tube, the gap between the dielectric tube and the radiator is convenient to adjust, so that the damage of the dielectric tube caused by overtightness of fixing of the radiator is avoided; and at the same time, the combination between the dielectric tube and the radiator is tighter, and the radiating effect and the ozone generation efficiency are improved.

Description

A kind of ozone generating-device
Technical field
The utility model relates to a kind of water and air that is used for to be handled, and also can be used for the ozone generating-device that chemical process is handled.Exactly be a kind of tubular type ozone generating-device, belong to environmental protection and water treatment technology field.
Background technology
Existing ozone generating-device because its ozone dielectric substance is divided into rigid the contact with convergence part between radiator element or the radiator, exist easily become flexible, the problem of cracky.Connect fixingly for the manufacturer that addresses this problem just sticks with glue ozone dielectric substance and radiator element or radiator, this has caused again safeguards difficultly, has strengthened use cost.
Summary of the invention
The purpose of this utility model is to remedy the deficiencies in the prior art, and provides a kind of rational in infrastructure, and the simple novel pipe ozone generating-device of dismounting.For achieving the above object, the utility model adopts following technical proposals, and a kind of ozone generating-device comprises scatterer (1), and scatterer is shaped on arc groove in (1), and being complementary with arc groove is provided with dielectric tube (7).Dielectric tube (7) is coated with flexible material layer (8); Water conservancy diversion inner core (6) is housed in the dielectric tube (7), and water conservancy diversion inner core (6) is provided with spiral high voltage electrode (5), and an end of high voltage electrode (5) is fixed with bolt and passes seal cap (4) and fixedly connected with sealing and fixing end A (2).
Above-mentioned sealing and fixing end A (2) is provided with sealing filled chamber (9), limit base (10) and sealing chamber (12) in it; Be shaped on intake interface (11) on it; Be shaped on fixing feet (13) under it, fixing feet (13) is fixedlyed connected with scatterer (1).The other end of dielectric tube (7) inserts the sealing and fixing termination B (3) that is shaped on the air outlet, is provided with seal cap (4) therebetween.
Above-mentioned seal cap (4) is shaped on positive seal projection (14) and negative-pressure sealing projection (15) on it, is shaped on the fixedly pickup groove (16) of dielectric tube (7) in it.
Principle of work and using method: when oxygen enters the dielectric tube inwall from the inlet mouth of termination, spirrillum high voltage electrode and inner water conservancy diversion inner core and the sealed at both ends chamber that fixedly termination constituted thereof, be applied to the heat conduction that the high-frequency high-voltage current on the spirrillum high voltage electrode is twined by dielectric tube wall and dielectric tube outer wall by the high-voltage connection terminal on the sealing end A, the earth polar that conductive flexible material and metal heat sink constituted produces corona discharge between the pitch of spirrillum high voltage electrode.The oxygen that enters from inlet mouth is between the pitch of spirrillum high voltage electrode, and to the outlet side corkscrew motion, Oxygen Flow is when the corona zone from inlet end, and oxygen is decomposed into Sauerstoffatom earlier and then is converted into ozone and is exported by the air outlet.Shape moves because oxygen and ozone are spinned in chamber, so oxygen and the ozone residence time in chamber prolongs, the transformation efficiency of ozone is improved.By the heat conduction that heat that corona discharge produced is twined through dielectric tube and dielectric tube outer wall, conductive flexible material is delivered to metal heat sink, has reduced the temperature in the chamber, thereby has reduced the thermolysis of ozone.
Ozone is extremely strong oxygenant, is widely used in air, the bactericidal purifying of water and chemical industry, the process control of environmental protection.Because ozone is converted to oxygen after decomposing, so be called as green oxygenant.
The utility model is rational in infrastructure, has adopted the sealing termination and the seal cap of this product, has well solved moving axially after dielectric tube is fixed by scatterer, rotates and sealing problem.Particularly dielectric tube has adopted heat conduction, conductive and flexible material layer outward, be convenient to adjust the gap between dielectric tube and scatterer, avoided dielectric tube because the dielectric pipe fracture that scatterer fixed tension is caused, make between dielectric tube and the scatterer bonded tightr simultaneously, increase radiating effect, improved efficiency of ozone generation.Utilize the product easy accessibility of this ozone generating-device made, reduced the production of product, the operation and maintenance cost.Can be widely used in the purifying treatment of water and air.
Description of drawings
Fig. 1 is a structural representation of the present utility model.
Fig. 2 is the front view of sealing and fixing end A among Fig. 1.
Fig. 3 be Fig. 2 A-A to sectional view.
Fig. 4 is the vertical view of Fig. 2.
Fig. 5 is the front view of seal cap among Fig. 1.
Fig. 6 be Fig. 5 A-A to sectional view.
Fig. 7 is another embodiment of the present utility model.
Embodiment
Embodiment 1
With reference to Fig. 1-6, a kind of ozone generating-device comprises scatterer 1, is shaped on arc groove in the scatterer 1, and being complementary with arc groove is provided with dielectric tube 7, and dielectric tube 7 is coated with flexible material layer 8; Water conservancy diversion inner core 6 is housed in the dielectric tube 7, and water conservancy diversion inner core 6 is provided with spiral high voltage electrode 5, and an end of high voltage electrode 5 is fixed with bolt and passes seal cap 4 and fixedly connected with sealing and fixing end A 2.
Above-mentioned sealing and fixing end A 2 is provided with sealing filled chamber 9, limit base 10 and sealing chamber 12 in it; Be shaped on intake interface 11 on it; Be shaped on fixing feet 13 under it, fixing feet 13 is fixedlyed connected with scatterer 1.The other end of dielectric tube 7 inserts the sealing and fixing termination B3 that is shaped on the air outlet, is provided with seal cap 4 therebetween.
Above-mentioned seal cap 4 is shaped on positive seal projection 14 and negative-pressure sealing projection 15 on it, is shaped on the fixedly pickup groove 16 of dielectric tube 7 in it.
Embodiment 2
With reference to Fig. 7, a kind of ozone generating-device comprises heating panel 17, is shaped on arc groove in the heating panel 17, and being complementary with arc groove is provided with dielectric tube 7, and dielectric tube 7 is coated with flexible material layer 8; Water conservancy diversion inner core 6 is housed in the dielectric tube 7, and water conservancy diversion inner core 6 is provided with spiral high voltage electrode 5, and an end of high voltage electrode 5 is fixed with bolt and passes seal cap 4 and fixedly connected with sealing and fixing end A 2.The other end of dielectric tube 7 inserts the sealing and fixing termination B3 that is shaped on the air outlet, is provided with seal cap 4 therebetween.
Can fix scatterer tabular or spiral or multiple shape such as aliform or curved body on the above-mentioned heating panel 17.

Claims (3)

1. an ozone generating-device comprises scatterer (1), and scatterer is shaped on arc groove in (1), and being complementary with arc groove is provided with dielectric tube (7), it is characterized in that: described dielectric tube (7) is coated with flexible material layer (8); Water conservancy diversion inner core (6) is housed in the dielectric tube (7), water conservancy diversion inner core (6) is provided with spiral high voltage electrode (5), one end of high voltage electrode (5) is fixed with bolt and passes seal cap (4) and fixedly connected with sealing and fixing end A (2), the other end of dielectric tube (7) inserts the sealing and fixing termination B (3) that is shaped on the air outlet, is provided with seal cap (4) therebetween.
2. ozone generating-device as claimed in claim 1 is characterized in that: above-mentioned sealing and fixing end A (2) is provided with sealing filled chamber (9), limit base (10) and sealing chamber (12) in it; Be shaped on intake interface (11) on it; Be shaped on fixing feet (13) under it, fixing feet (13) is fixedlyed connected with scatterer (1).
3. ozone generating-device as claimed in claim 1 is characterized in that: above-mentioned seal cap (4) is shaped on positive seal projection (14) and negative-pressure sealing projection (15) on it, is shaped on the fixedly pickup groove (16) of dielectric tube (7) in it.
CN2010202909228U 2010-08-13 2010-08-13 Ozone generation device Expired - Fee Related CN201756451U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010202909228U CN201756451U (en) 2010-08-13 2010-08-13 Ozone generation device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010202909228U CN201756451U (en) 2010-08-13 2010-08-13 Ozone generation device

Publications (1)

Publication Number Publication Date
CN201756451U true CN201756451U (en) 2011-03-09

Family

ID=43643720

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010202909228U Expired - Fee Related CN201756451U (en) 2010-08-13 2010-08-13 Ozone generation device

Country Status (1)

Country Link
CN (1) CN201756451U (en)

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

Granted publication date: 20110309

Termination date: 20130813