See how positioning motor and battery at opposite ends of a hand vacuum's longitudinal axis imp
See how a segmented partition element with multiple ring gaps prevents liquid droplets from rea
See how interior-to-exterior pressure equalization converts harmful Joule-Thomson cooling into
See how asymmetric positioning of motor and battery at opposite ends balances hand vacuum weigh
See how positioning the motor assembly and energy storage at opposite ends of a hand vacuum cle
See how a passive dust collector uses natural convection currents to separate fine particles wi
See how a dry filtration dust collector uses passive airflow and HEPA filters to replace wet sc
See how a horizontal cyclonic separator achieves over 99% particulate capture in a compact form
See how a vertical cyclone separator with dip pipe uses centrifugal force and gravity to separa
See how a pressure-equalizing vessel enables disposable plastic cartridges to withstand high-pr
See how a cylindrical chamber with tangential inlet and intercepting disc induces swirling moti
See how a cyclone separator positions the dirt collection chamber exterior to and surrounding t
See how a reflux portion creates a pressure gradient to guide low-density particles into a wast
See how a vertical cyclone separator with tangential thrust jet nozzle achieves 95% gas separat
See how a cyclone-based centrifugal separator handles high coolant flow rates to prevent degas
A Joule-Thomson cooling loop chills supercritical fluid streams so disposable cartridges can handle higher pressure with less organic solvent.
See how an asymmetric exit ridge with a sharp tangential edge disrupts vortex formation at the
See how an inclined pistol grip handle positions the cyclonic dirt collector to open away from
See how angled, asymmetrically positioned cyclones prevent dirt outlet obstruction in robotic v
A rotating disc separates dirt by centrifugal action, cutting pressure drop and separator size while maintaining handheld vacuum cleaning efficiency.
See how charged droplets in vortical airflow enable electrostatic vapor separation, reducing de
See how an axial cyclone with two curved flow paths simplifies refrigerant separation, reduces
See how multiple tangential inlets around the cyclone perimeter reduce hand vacuum height while
See how an intermediary adapter frame with tapered receptacle enables efficient stacking of con
See how a docking station uses momentum separators and staggered cyclone arrays to automate dir
See how an adjustable cyclone separator maintains constant particle separation while reducing p
See how a tapered rectifying plate narrows toward the outlet to increase flow velocity and swir
See how nested first-stage and second-stage cyclone separators with spiral channels improve dus
See how a low-profile cyclonic separator integrated into a bucket lid reduces height, minimizes
See how a box-shaped cyclone housing with flat surfaces and integrated couplers enables stackin
See how a cyclone filter replaces traditional lint screens, using centrifugal airflow separatio
See how a dual-chamber cyclone separator continuously discharges dirt particles into separate r
See how nested second cyclones inside a first cyclone reduce dust collector height while mainta
See how a dual-circuit chiller subcools liquefied CO2 to prevent pump cavitation and reduce org
See how a positioning device within the cyclone chamber stabilizes the collection element to im
See how integrated guide vanes and outer walls eliminate assembly gaps in axial cyclones, impro
See how a non-closed annular dust collecting chamber surrounds the negative pressure device par
See how a cyclone rice separator with dynamic valve sealing enables automatic rice input in pre
See how a rotating disc separator uses centrifugal force to prevent clogging and reduce pressur
See how a dual-stage cyclonic separator extends the dirt chamber vertically into shroud space t
See how a two-stage cyclonic separator uses variable cross-section geometry and frusto-conical
See how parallel cyclone chambers with sideways dirt outlets and a radial plenum reduce filter
See how onboard dewatering with pre-screen and vibratory screen separates water from spoil mate
See how optimized baffle angles and dimensional ratios prevent dirt re-entrainment and enhance
See how oil draining holes in the curved inflow pipe use centrifugal force and gravity to disch
An internal airflow guiding member strengthens spiral flow and dust settling, improving industrial dust filtering with a simpler cyclone structure.
Dual dirt outlets in a cyclonic hand vacuum keep collection capacity and airflow stable when the cleaner is used at different angles.
Airfoil-shaped vertical louvers deflect dirt from the exhaust flow, boosting cyclone separation and reducing debris in outlet air.
Radiused and angled wall junctures smooth cyclone airflow, reducing eddy currents and back pressure while maintaining particle separation.
A base inlet duct and nested dirt chambers shorten airflow paths in a cyclonic separator, improving separation efficiency, airwatts, and compactness.
Angled sweeper-header holes, a curved velocity plate, and an air bleed cut turbulence and power use while maintaining particulate removal.
Cyclonic separation with liquid injection captures wet material and fine dust without filter clogging, preserving suction in wet and dry cleaning.
Partitioned passageways behind shroud holes keep multi-stage cyclonic separation compact while reducing blockage, stagnation, and particle re-entrainment.
A convex cyclone body widens near the air discharge to cut airflow speed, reducing pressure loss, noise, and suction motor power.
Negative-pressure airflow moves a compartment plate to compact cyclone-collected dust, reducing emptying frequency and dust spread during cleaning.
Nested first, second, and third cyclone chambers improve fine particle separation while keeping the vacuum cleaner dust separator compact.
Lower second-cyclone inlets and guided airflow raise rotary force, improving minute dust separation and collection efficiency.
Separate passageways behind the shroud through-holes compact a multi-stage cyclone while reducing stagnation, blockage, and dust carryover.
A two-catch vacuum dust chamber keeps the detachment release hidden until the emptying catch is opened, preventing spills and user error.
Cyclonic flow and a sleeved magnet separate magnetic and non-magnetic debris from heating water, reducing blockages and pump damage.
A frusto-conical cyclone and movable scraper remove snow from cooled air under positive pressure, preventing blockages and air infiltration.
Juxtaposed dual filters and cyclone fins improve debris separation, limit dirt re-entrainment, and simplify filter replacement.
Flattened and curved cyclone walls keep cross-sectional area steady, avoiding flow pinch points while preserving dirt capacity and separation efficiency.
A divided chamber and raised outlet tube separate liquid water from hydrogen recirculation flow, reducing blockage and stabilizing fuel cell voltage.
Swirl-induced centrifugal separation removes dust from battery pack vent gas, reducing dust scattering and helping contain sparks.
Static and dynamic classification narrow rare earth magnet powder to 2-8 μm, cutting reactive fines and coarse particles that weaken remanence.
Elastic lath brushes support a lightweight washer head, cleaning solar panels effectively while avoiding panel damage and heavy hydraulics.
Cleaning gas creates upward airflow to clear filter and cyclone deposits, preserving fine particle analyzer sensitivity without disassembly.
Static and dynamic classification narrow rare-earth magnet powder to 1-10 µm, cutting reactive fines and coarse particles that weaken remanence.
Dynamic and static classification narrow rare earth magnet powder to 2-8 µm, cutting reactive fines and improving remanence and coercivity.
Assembly jaws on the support frame let one operator quickly secure or remove the dust collection bucket without sacrificing connection reliability.
A swirling trap separates inner and outer flow paths to capture rust and discharge air bubbles for continuous fluid cleaning.
A vacuum, cyclonic separator, and linked canister door capture cutting debris and auto-empty the bin to keep blind cutting reliable on-site.
A reservoir-integrated hydrocyclone removes metal particles from welding coolant, protecting positive displacement pumps and reducing maintenance.
A cylindrical member around the cyclone discharge port guides liquid downward to cut impact at the liquid level and suppress foam during foreign matter separation.
An air-layered cyclone with a gas-liquid separation tube and inner-wall holes suppresses foaming while improving foreign matter removal from machining fluids.
An expanding discharge pipe and chip pusher remove chips continuously while preserving vacuum stability and preventing back-suction.
A curved apex discharge geometry reshapes vortex flow to improve 100-1000 μm particle classification and sharpen underflow-overflow separation.
A movable powder collection region and built-in lighting speed cyclone cleaning during color changes while reducing residual powder defects.
A vortex finder and dome induce cyclonic flow to separate sand and water from oil and gas more effectively in fracking fluids.
Direct heater-to-pot airflow cuts duct heat and windage loss, while cyclone chaff separation and fast cooling support compact roasting.
A spiral-channel vortex separator with integrated sand washing maintains solids removal across changing production rates while reducing erosion and disposal issues.
A conductive resin separator splits fiber waste from air and drains static charge to reduce exterior discharge, attachment, and maintenance.
Buoyancy-driven draining and vortex separation remove moisture continuously while preventing contaminant backflow in compressed air lines.
A movable rod adjusts cyclone inlet area online to handle changing well flow, maintain sand separation efficiency, and avoid nozzle swaps.
A ring of cyclone separators boosts oil mist separation in less space while reducing pressure loss and filter cleaning needs.
Swirling coolant through a centrifugal separator removes trapped gas and air pockets, improving vehicle cooling performance and reducing manual bleeding.
Swirling coolant through an inlet accelerator and centrifugal separator removes trapped gas, reducing blockages, coolant loss, and component damage.
End-of-manifold flushing adds counterflow and turbulence in multi-hydro-cyclone rows to prevent deposits, reduce clogging, and sustain purification throughput.
Acoustic shock waves in a vacuum acceleration channel dry and disinfect wet material without heat, cutting transport weight while preserving quality.
Circumferential electrodes in the hydrocyclone cone track conductivity changes to detect roping early and extend stable cluster operation.
Internal edges disturb hydrocyclone flow to free wall-trapped particles, re-mix slurry, and improve classification accuracy.
A shared feed chamber and routed outlet lines make multi-hydrocyclone fiber cleaning more compact while keeping suspension distribution uniform.
Angled tangential inlets create a compact cyclone that removes turbine particles with minimal pressure loss and helps prevent cooling-passage clogging.
Angled tangential entry ports create a compact cyclone that removes particles from turbine cooling gas with minimal pressure drop.
Tangential entry ports and nested particle traps separate contaminants from turbine cooling air while avoiding the high pressure drop of larger separators.
A core tube baffle blocks short-circuit and centripetal flows in a cyclone separator, improving 1-10 μm particle capture with lower pressure drop.