CN208390242U - Mesh-type anode electrostatic cleaner - Google Patents

Mesh-type anode electrostatic cleaner Download PDF

Info

Publication number
CN208390242U
CN208390242U CN201821486106.7U CN201821486106U CN208390242U CN 208390242 U CN208390242 U CN 208390242U CN 201821486106 U CN201821486106 U CN 201821486106U CN 208390242 U CN208390242 U CN 208390242U
Authority
CN
China
Prior art keywords
mesh
type anode
plate
air
mesh plate
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.)
Active
Application number
CN201821486106.7U
Other languages
Chinese (zh)
Inventor
束云峰
陈方
赵颏宇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangsu Xinhuanneng Environment Protection Engineering Co Ltd
Original Assignee
Jiangsu Xinhuanneng Environment Protection Engineering Co Ltd
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 Jiangsu Xinhuanneng Environment Protection Engineering Co Ltd filed Critical Jiangsu Xinhuanneng Environment Protection Engineering Co Ltd
Priority to CN201821486106.7U priority Critical patent/CN208390242U/en
Application granted granted Critical
Publication of CN208390242U publication Critical patent/CN208390242U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Electrostatic Separation (AREA)

Abstract

The utility model discloses a kind of mesh-type anode electrostatic cleaners, including electric precipitator ontology, air flow inlet and air stream outlet is respectively set in the two sides of the electric precipitator ontology, orthogonal direction in the electric precipitator ontology with air current flow direction is staggered cathode linear array and mesh-type anode assemblies, the mesh-type anode assemblies include the mesh plate of end plate and the setting of two block gaps, the end plate is set to the air-flow upstream side of mesh plate and is fixedly connected in the side of the mesh plate, and the mesh plate surface is equipped with several through-holes.The mesh-type anode electrostatic cleaner can make part dust power loss after entering mesh-type anode assemblies inside, reduce reentrainment of dust caused by rapping.

Description

Mesh-type anode electrostatic cleaner
Technical field
The utility model relates to a kind of electrostatic precipitator, more particularly, to a kind of mesh-type anode electrostatic cleaner.
Background technique
Electric precipitator is mainly used in the industries such as electric power metallurgy for trapping to flue dust in air-flow, reaches purifying gas flow Purpose, belong to environmental protection equipment.Electric precipitator mainly includes ontology, setting in intrinsic cathode line and dust anode, is led to The static electric field of dust anode generation of cathode line is crossed to dust.The dust anode of existing electric precipitator generally uses plate knot Structure, dust-contained airflow are flowed along dust anode surface extending direction, are adsorbed using electrostatic absorption principle in dust anode surface.Usually Cathode line and dust anode interlaced arrangement, the positive and negative two sides of dust anode adsorb dust, exist in the dust of dust anode surface It is detached under the action of rapping with anode plate, then dust falls under gravity into ash cellar.
Rapping after traditional dust anode dust, will lead to dust and comes back in air-flow, is i.e. reentrainment of dust.This part powder Dirt particle has certain probability that can continue to move toward export direction with air-flow in dropping process.It will have a direct impact on dedusting repeatedly Efficiency, and increase electric precipitator energy consumption.
Utility model content
In view of the drawbacks of the prior art, the utility model provides a kind of mesh-type anode electrostatic cleaner, to reduce vibration The reentrainment of dust of dust after beating.
Technical solutions of the utility model are as follows: a kind of mesh-type anode electrostatic cleaner, including electric precipitator ontology, described Air flow inlet and air stream outlet is respectively set in the two sides of electric precipitator ontology, and the electric precipitator ontology is interior with air current flow direction Orthogonal direction be staggered cathode linear array and mesh-type anode assemblies, the mesh-type anode assemblies include end plate and two pieces Spaced mesh plate, the end plate are set to the air-flow upstream side of mesh plate and in the fixed companies in the side of the mesh plate It connects, the mesh plate surface is equipped with several through-holes.
Further, the mesh plate is arranged in parallel and mesh plate surface extending direction is parallel to air current flow direction.
Further, the through-hole aperture of the mesh plate is not more than 2mm, the percent opening 30%~70% of the mesh plate.
Further, the top surface, bottom surface and air stream outlet side of the mesh-type anode assemblies are uncovered structure.
Further, the spacing of two pieces of mesh plates of the mesh-type anode assemblies is gradually increased along air current flow direction.
The advantages of technical solution provided by the utility model is: dust can pass through mesh and enter in mesh plate Between, while dust can fall after mesh plate surface power loss as conventional anode plate.But part dust is in effect of inertia Under across mesh plate through-hole, enter the centre of two layers of mesh plate, fall after power loss among two layers of mesh plate.Its advantage master It is to enter the dust among two layers of mesh plate after its inner surface power loss, the dust to fall off under rapping effect can be in net It falls, and is not easily accessed in the higher electric field of flow velocity in cellular type anode assemblies inner space, to effectively prevent secondary raise The problem of dirt.
Detailed description of the invention
Fig. 1 is 1 mesh-type anode electrostatic cleaner overlooking structure diagram of embodiment.
Fig. 2 is mesh plate structural schematic diagram.
Fig. 3 is 2 mesh-type anode electrostatic cleaner overlooking structure diagram of embodiment.
Specific embodiment
Below with reference to embodiment, the utility model is described in further detail, but not as the restriction to the utility model.
Incorporated by reference to shown in Fig. 1 and Fig. 2, mesh-type anode electrostatic cleaner involved in the present embodiment includes electric precipitator sheet Body 101, electric precipitator ontology 101 are cavity, and air flow inlet 102 and air stream outlet 103, air flow inlet is respectively set in two sides 102 along airflow direction be divergent structure, air stream outlet 103 along airflow direction be tapered configuration.It is set inside electric precipitator ontology 101 Electrostatic field is set to capture dust in air-flow, specifically similarly to the prior art, with air-flow in electric precipitator ontology 101 The orthogonal direction of flow direction is staggered cathode linear array and mesh-type anode assemblies.That is, gentle with air flow inlet Outflux is left and right directions, and the ash bucket of electric precipitator is lower section, then in the front-rear direction of electric precipitator ontology 101 successively one every one Cathode linear array and mesh-type anode assemblies are set.The structure of cathode linear array is that more cathode lines are arranged in air current flow direction 104, electrostatic field is formed with mesh-type anode assemblies.Mesh-type anode assemblies include the net of end plate 105 and the setting of two block gaps Orifice plate 106, end plate 105 are set to the air-flow upstream side of mesh plate 106 and are fixedly connected with the side of mesh plate 106, mesh Plate 106 is arranged in parallel and 106 surface extending direction of mesh plate is parallel to air current flow direction.As shown in Figure 1, mesh plate 106 with End plate 105 constitutes c-type structure of the opening towards air stream outlet, is come with the virtual rectangular parallelepiped structure that mesh-type anode assemblies are constituted It sees, the left side of cuboid is end plate 105, and front and rear sides face is mesh plate 106, and the top and bottom of cuboid and by side is Sky, at uncovered structure.106 surface of mesh plate is equipped with several through-holes 107, and 107 aperture of through-hole is not more than 2mm, and mesh plate 106 is opened Porosity 30%~70%.Dust-contained airflow is by cathode line 104 after entering electric precipitator ontology 101, and part of it is in mesh plate 106 outside power loss falls, and another part enters power loss whereabouts between two pieces of mesh plates 106 after then passing through through-hole 107.Therefore make It obtains dust a part and accumulates in side of the mesh plate 106 towards cathode line 104, another portion accumulates in mesh plate 106 towards another The side of mesh plate 106, and then in rapping, the dust stratification in 106 inside of mesh plate will fall between two pieces of mesh plates 106, can It avoids enter into cathode line 104 and mesh-type anode assemblies forms and form reentrainment of dust in electrostatic field.
As a preferred embodiment, mesh-type anode electrostatic involved in the present embodiment removes incorporated by reference to shown in Fig. 3 Dirt device includes electric precipitator ontology 201, and electric precipitator ontology 201 is cavity, and air flow inlet 202 and air-flow is respectively set in two sides Outlet 203, air flow inlet 202 are divergent structure along airflow direction, and air stream outlet 203 is tapered configuration along airflow direction.Electricity removes Electrostatic field is arranged inside dirt device ontology 201 to capture dust in air-flow, specifically similarly to the prior art, in electric precipitation Orthogonal direction in device ontology 201 with air current flow direction is staggered cathode linear array and mesh-type anode assemblies.Namely It says, using air flow inlet and air stream outlet as left and right directions, the ash bucket of electric precipitator is lower section, then in electric precipitator ontology 201 Front-rear direction is successively one every a setting cathode linear array and mesh-type anode assemblies.The structure of cathode linear array is flowed in air-flow More cathode lines 204 are arranged in direction, form electrostatic field with mesh-type anode assemblies.Mesh-type anode assemblies include end plate 205 With two block gaps setting mesh plate 206, end plate 205 be set to the air-flow upstream side of mesh plate 206 and with mesh plate 206 Side is fixedly connected, two pieces of non-parallel settings of mesh plate 206, but the spacing of two pieces of mesh plates 206 along air current flow direction by It is cumulative big.As shown in figure 3, mesh plate 206 and end plate 205 constitute opening towards air stream outlet opening flaring c-type structure. 206 surface of mesh plate is equipped with several through-holes 207, and 207 aperture of through-hole is not more than 2mm, and the percent opening 30% of mesh plate 207~ 70%.Dust-contained airflow is after entering electric precipitator ontology 201 by cathode line, outside power loss of the part of it in mesh plate 206 It falls, another part enters power loss whereabouts between two pieces of mesh plates 206 after then passing through through-hole 207.So that dust is a part of Side of the mesh plate 206 towards cathode line 204 is accumulated in, another portion accumulates in one of mesh plate 206 towards another mesh plate 206 Side, and then in rapping, the dust stratification in 206 inside of mesh plate will fall between two pieces of mesh plates 206, can avoid entering cathode line 204 form formation reentrainment of dust in electrostatic field with mesh-type anode assemblies.Since the spacing of two pieces of mesh plates 206 is flowed along air-flow Direction is gradually increased, and is in divergent structure, can make to enter two pieces of mesh plates 206 by controlling the flaring angle of two pieces of mesh plates 206 Between the dust amount of being optimal, make electric precipitator whole efficiency improve.

Claims (5)

1. a kind of mesh-type anode electrostatic cleaner, which is characterized in that including electric precipitator ontology, the electric precipitator ontology Air flow inlet and air stream outlet is respectively set in two sides, is interlocked in the electric precipitator ontology with the orthogonal direction of air current flow direction Cathode linear array and mesh-type anode assemblies are set, and the mesh-type anode assemblies include the mesh of end plate and the setting of two block gaps Plate, the end plate are set to the air-flow upstream side of mesh plate and are fixedly connected in the side of the mesh plate, the mesh plate Surface is equipped with several through-holes.
2. mesh-type anode electrostatic cleaner according to claim 1, which is characterized in that the mesh plate be arranged in parallel and Mesh plate surface extending direction is parallel to air current flow direction.
3. mesh-type anode electrostatic cleaner according to claim 1, which is characterized in that the through-hole aperture of the mesh plate No more than 2mm, the percent opening 30%~70% of the mesh plate.
4. mesh-type anode electrostatic cleaner according to claim 1, which is characterized in that the mesh-type anode assemblies Top surface, bottom surface and air stream outlet side are uncovered structure.
5. mesh-type anode electrostatic cleaner according to claim 1, which is characterized in that the mesh-type anode assemblies The spacing of two pieces of mesh plates is gradually increased along air current flow direction.
CN201821486106.7U 2018-09-12 2018-09-12 Mesh-type anode electrostatic cleaner Active CN208390242U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821486106.7U CN208390242U (en) 2018-09-12 2018-09-12 Mesh-type anode electrostatic cleaner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821486106.7U CN208390242U (en) 2018-09-12 2018-09-12 Mesh-type anode electrostatic cleaner

Publications (1)

Publication Number Publication Date
CN208390242U true CN208390242U (en) 2019-01-18

Family

ID=65129804

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821486106.7U Active CN208390242U (en) 2018-09-12 2018-09-12 Mesh-type anode electrostatic cleaner

Country Status (1)

Country Link
CN (1) CN208390242U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111939710A (en) * 2020-09-03 2020-11-17 中钢集团天澄环保科技股份有限公司 Top vertical air intake electrostatic fabric filter

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111939710A (en) * 2020-09-03 2020-11-17 中钢集团天澄环保科技股份有限公司 Top vertical air intake electrostatic fabric filter

Similar Documents

Publication Publication Date Title
CN103566695B (en) Enhanced coupled-mode embedded type electrostatic-bag integrated dust collector
CN102327724B (en) Electric-bag composite dust collector
CN101310822A (en) Lens electric-bag complex dust collector
CN101934249A (en) High-efficiency electrostatic precipitator
CN202844811U (en) Electric-bag combined dust collection device
CN104606997A (en) Electrostatic filtering deduster
CN208390242U (en) Mesh-type anode electrostatic cleaner
CN202238313U (en) Electric bag composite dust catcher
CN203075796U (en) Skewed gas flow type electrostatic fabric filter
CN201067663Y (en) Novel electric-bag composite type dust remover
CN102824804B (en) Skewed gas flow electric bag composite dust remover
CN202387346U (en) Lenticular electric bag compound dust remover
CN206868433U (en) A kind of electric dust collector with sorting function
CN206935019U (en) Electric bag integrated dust collector
CN109277197A (en) A kind of high-pressure electrostatic precipitation method and apparatus
CN201596439U (en) Electric bag composite dust collector
CN102198426B (en) Multiple combined apparatus for air flow distribution board of electrostatic precipitator
CN106111337B (en) A gas-solid two-phase splitting device for gas and dust suppression at the tail end of an electrostatic precipitator
CN107930854A (en) A kind of electric precipitator flows into device of air
CN2507563Y (en) Magnetic controlled electrostatic duster
CN2933542Y (en) High-concentration electric-bag compound dust collector
CN202387558U (en) Dual flow velocity high-efficiency electrostatic precipitator
CN203577563U (en) Electric-bag compound dust remover
CN202052627U (en) Electric field dust-collecting device for electric dust collector
CN205269907U (en) Filtration formula electrostatic precipitator

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant