See how a wood-burning stove integrates electrostatic dust separation by using smoke deflection
See how electrostatic filtration and cryogenic adsorption separate helium-3 from lunar regolith
See how positioning sleeves on support columns maintain uniform 1-3mm spacing between metal pla
See how adjustable discharge electrode angles reduce residual ion adhesion and improve dust col
See how removing the outer frame and using fixing grooves with thermal cutting reduces module t
See how phase-shifted AC magnetic fields and electron curtains repel and charge lunar dust to p
See how electron emitter bars create electron curtains that charge and repel lunar regolith dus
See how planar integration of charging and collection electrodes reduces device thickness and s
See how AC voltage sterilization at variable temperatures eliminates bacteria on dust-collectio
See how a separator film with protrusions maintains electrode spacing in electrostatic dust fil
See how spaced electrical conductors on a planar carrier create controlled fields that damage v
See how a reversible brush array with symmetrical connections enables 180-degree rotation for u
See how a rotatable brush array enables upstream or downstream electrode positioning in a singl
See how needle-shaped ionization electrodes with insulating coatings replace fragile wires to r
See how a shielding electrode shaped to the duct cross-section reduces electromagnetic emission
See how a ground electrode inside the fixing member shields the electric field, prevents chargi
See how a belt-type electric dust collector uses rollers, electrode plates, and a cleaning mech
See how fixing members with blocking portions position electrification plates and wires accurat
See how rectangular columnar electrification spaces with segmented conductive plates maximize a
See how a transverse wall deflects liquid flow away from insulating holders to prevent dielectr
See how a conductive inner core with non-conductive overmold prevents carbon deposits and elect
See how an integrated electrification electrode with formed holes eliminates cutting waste, ens
See how a carbon fiber electrode with protective case and stabilization device prevents electri
See how a conductive holding device with guide geometry serves as both electrode support and co
See how a continuously bent insulating sheet integrates positive and negative electrodes to sim
See how fine conductive fiber electrodes with segmented protrusions reduce ozone and electromag
See how segmented emitter and collector electrodes enable plastic chamber walls, reducing weigh
See how extending emitter and collector electrodes inward from the chamber wall enables lightwe
See how inclined turning flow paths increase effective electric field length in coiled electrod
See how conductive paste electrode connections reduce resistance and spark risk in electric dus
See how a tubular carrier element with upper and lower rings guides air flow to plasma electrod
See how resistive center screens, aerodynamic cowling, and dielectric support frames reduce arc
A transversal wall redirects liquid on the collecting wall to prevent capillary bridging, preserving corona-electrode insulation in humid gas cleaning.
A conductive core with an insulating overmold helps field charger pins resist carbon deposits, maintain grounding, and improve wet-condition air cleaning.
Removing the fragile glass tube and using metal electrodes cuts corona discharge, lowers energy use, and extends bipolar ionizer service life.
Charged ions sanitize the hand dryer air stream and nearby surfaces without HEPA filter replacement, clogging, or airflow loss.
Removable dielectric filter units with door interlocks and discharge shorting cut HVAC maintenance effort while preserving particle capture.
An electric field on a planar air-permeable filter body neutralizes viruses without fine mesh, cutting air resistance and energy use.
An upstream ionizer and layered electret filter keep vehicle particle filtration effective over service life while limiting pressure loss.
Corona ionization and a layered electret-conductive filter maintain particle capture while keeping cabin-air pressure drop low over service life.
A switchable ground unit removes surplus ions during discharge, preventing non-conductor electrification without adding separate ground electrodes.
A two-frame ionization module stabilizes the discharge tip, prevents frame damage, and maintains dust collection efficiency.
A reinforced tip holder and segmented frame stabilize the discharge tip and high-voltage cable to protect ion generation and dust collection efficiency.
Insulating projection supports reshape the emitter-collector field to suppress continuous arcing while preserving compact, efficient ionic wind flow.
Stacked dust plates, spacers, fixed separators, and end insulation simplify electrostatic dust collector production while cutting time and cost.
A plastic-fit electrode assembly replaces welding to cut dust filter weight, simplify maintenance, and speed collecting electrode replacement.
A laminated electrode-insulation sheet spreads the electric field to capture fine dust safely in tight material-processing spaces.
A spun-yarn electrode with protruding metal fibers charges aerosols while reducing ozone, contamination, and manufacturing complexity.
A nested stove ESP channel keeps particle capture effective while reducing bulk, limiting ash-driven discharge, and easing cleaning.
A charged flow guide upstream of the combustor traps particulate matter before it clogs cooling passages and damages turbine components.
A front discharge electrode and adsorption field charge and capture particles before DPF treatment, cutting backpressure and improving removal efficiency.
Angled, groove-sealed electrode heads spread discharge across the frame interior while cutting thickness and maintenance in electrostatic filter assemblies.
Support parts isolate discharge and counter electrodes to stop dust-built conduction paths and maintain electric dust collector performance.
The conductive layer connects to an external power source to sustain particle capture as electrostatic charge declines during filter aging.
Positively charged flow guides trap negatively charged particles upstream, keeping combustor cooling passages clear while maintaining airflow efficiency.
High- and low-voltage plate spacing with local shielding helps prevent arcing while maintaining reliable air purification.
An automatic cleaning ball removes pollutants and moisture from ion-box plates, extending maintenance cycles and reducing arcing risk.
By exposing the dust collection surface, this air purifier captures pollutants directly without internal air ducts or chambers.
Segmented joining secures corona discharge brushes against shifting during water or air cleaning, preserving charge and collection performance.
Alternating conductive plastic electrode units integrate insulation to limit corona discharge, simplify assembly, and maintain dust removal.
A rigid insulation layer and conductive layer reduce corrosion, weight, and tip discharge in electrostatic purification.
Perforated repulsion electrode generates localized electric fields to charge particles for efficient capture in gas flow purification systems.
Sealing cardboard electrofilter edge sections with varnish prevents moisture penetration that reduces separating capacity during wet cleaning operations.
Merging discharge and cleaning functions reduces mechanical complexity while maintaining high dust removal effectiveness.
Notched racks with adhesive slots support filter plates and supply voltage, preventing accidental coupling between plates of different potentials.
An electrostatic precipitating apparatus integrates discharge and grounded electrodes with a washing water supply to remove fine droplets from cooling tower exhaust.
A horizontal electrostatic precipitator uses internal partition walls and passage switching members to control gas flow through distinct collection zones.
Segmented electrostatic filter curtains attach to channel walls to prevent collapse in horizontal passages without increasing manufacturing complexity.
A dust collecting tower uses corona discharge electrodes to capture particulates without mechanical filters.
A modular electrostatic flotage trapping device uses a detachable collector cassette with one-touch connection for rapid assembly and disassembly.
Flexible wire discharge electrodes with a cable pull system and rotary drive remove deposits from collecting electrodes without mechanical vibrations.
An integrated electrode support uses an insulative layer around the conductor to prevent electrical charge leakage caused by dirt and moisture accumulation.
A modular precipitation tube bundle system uses detachable press-fit connections to assemble large wet electrostatic precipitator components on-site.
A corona ground element with projections retains the corona plate while establishing a separate voltage potential for pre-ionization.
Segmented electric dust collection assembly separates electrification apparatus and collector for independent maintenance.
Conductive plates insert into concave frame slots to simplify assembly, reducing spacing between plates and improving purification efficiency.
Hinged receiving means connect electrodes to housing terminals, eliminating high voltage safety risks during maintenance.
Segmenting the installation frame into upper and lower parts simplifies coupling without damaging rigidity, preventing discharge tip escape.
Segmented electrodes with dual transformers apply differential voltage to suppress sparking and back corona while increasing particle collection efficiency.
Conductive coating patterns on wrinkle-shaped filter media generate electrostatic repulsion between adjacent bent parts.