Segmented auger devices induce radial flow to increase reductant residency time and improve nitrogen oxide reduction without expanding axial packaging space.
Multi-hole plate emulsion formation increases throughput to meet market demand while maintaining particle size uniformity.
A compact sterilizer uses micro bubble ozone water and ultrasonic energy to clean dental tools.
A Venturi initiator injection nozzle creates a turbulent mixing zone to disperse chemical agents into process fluids.
A one-piece cast mixer merges guide blades and a central core, eliminating retaining rings and reducing assembly complexity.
A variable control fragrance dispensing system blends multiple liquid components through a shared mixing chamber and spray head.
A cavitation reactor system destroys bacteria and oxidizes heavy metals in contaminated fluids.
A diagnostic assay cartridge separates plasma from whole blood using a filtration membrane and delivers reagents via pressurized fluid flow.
Segmented solid plates with outward protrusions divert flow to generate turbulence, improving mixing homogeneity while minimizing pressure loss in duct systems.
Segmented fins and pads agitate fluids within a removable insert, resolving the trade-off between high foam generation efficiency and complex device structure.
An axisymmetric confined impinging jet mixer aligns inlet and outlet tubes to create uniform fluid pathlengths.
A vehicle washing system produces large droplets of a liquid-gas mixture for cleaning surfaces.
A cleaning nozzle ejects a gas-liquid mixture to dislodge stuck residues, resolving the trade-off between high cleaning speed and thorough removal capability.
Angled T-bar grid generates uniform turbulence intensity in cascade wind tunnel airflow.
A planar micro-channel reactor mixes fluids through diverging and joining branch channels.
A hand-held dispenser uses a slide valve mechanism to regulate water and chemical flow rates through independent passageways.
A shot peening apparatus weakens swirl flow with a hindering mechanism, maintaining a horizontal liquid level to resolve low-center suction issues.
Offset fluid mixer outlets create shearing flow and longitudinal vortices, reducing thermal stratification and pressure losses in combustion chambers.
Hydraulic pressure drives a piston to dispense aromatic liquid, decoupling flow consistency from variable water supply pressure.
Helical heating channels raise reducing agent pressure and temperature to drive injection, preventing cavitation risks in exhaust aftertreatment systems.
A stationary wafer mixer uses a cone module and baffles to deflect fluid streams.
Acute angle positioning of lateral tubes prevents liquid leakage and inhibits vortical flow to enhance mixing efficiency in venturi apparatuses.
A mixer assembly uses an internal box with deflector walls to divert exhaust gas flow around a baffle outlet.
Segmented rotating shaft with bendable connection parts reduces bending moment and prevents breakage under high centrifugal acceleration.
Segmented DEF injection across multiple mixer locations reduces solid deposit formation risk while maintaining NOx emission compliance.
A side-mounted nozzle assembly projects fluid horizontally across sloped floors to remove sludge without damaging tank integrity.
A vertical gasification chamber uses a swirling flow device to guide hot gases downward and separate urea droplets from chamber walls.
Jet mixing eliminates mechanical wear and downtime by replacing slicing units with hydraulic shear forces for continuous operation.
A submersible actuator drives a high shear mixer inside a reaction chamber for effective polymer dilution.
A bubble generating mechanism uses collision parts to segment a flow channel into multiple passage regions for efficient micro-bubble production.
Offset vortex cavity axis transforms narrow annular water inlet into crescent shape for improved fluid flow.
A toroidal cylinder guides exhaust gas flow to swirl inside a mixing device, preventing urea deposits.
Parallel mixers with shut-off valves maintain turbulent mixing at low pipe flow rates by adjusting individual channel injection.
Parallel flow channels merge to create turbulence for thorough reactant mixing while minimizing flow resistance.
A source container uses a flow restricting member to create a barrier surface that elongates gas flow distance and ensures uniform vapour precursor delivery.
Concentric injection ports mix lipid and aqueous solutions to reduce processing time and waste in continuous liposome manufacturing.
A seeding device hood deflects airflow to separate tracer particles by diameter using a collision surface.
A microbubble pump system uses a Venturi injector to mix gas and liquid efficiently without orifices.
A vortex mixing apparatus pre-wets dry gel compositions in a dedicated chamber to form a hydrated concentrate before injection into base fluid.
An injection mixer uses an adjustable annular protrusion to stir fluids without internal blades.
A flow straightener parallelizes mixed gas streams entering a compressor to reduce swirl and pressure losses.
A tapered insert device mixes fuel and air before injection into engine cylinders.
A variable pressure device uses a Venturi tube to dissolve carbon dioxide in beverages without excessive agitation.
Automated parameter setting for continuous foam production adjusts conveyor speed and fall plate positions to match reactive mixture rise profiles.
A closure cap system with a mixing chamber and disk prevents leakage in thixotropic fluid containers.
A fluid mixing device uses crossing channels and via holes to produce solutions with different concentrations.
A vortex mixing nozzle directs pressurized fluid through a specialized aperture to induce rotational flow within the chamber.
A fluid mixing device uses a tapering main chamber and premixing space to create a Venturi effect for efficient mixing.