Alginate hydrogel captures cells using branched PEG binding agents for targeted isolation in microfluidic devices.
Parallel air gap eductors mix diluent and concentrate to enable high flow liquid dispensing without elevation constraints.
A dual-pump delivery system mixes gel precursors at a dosing head to dispense stemming material into blast holes.
A coaxial mixing module injects urea solution into a static mixer within an internal duct to achieve efficient dispersion.
Interleaved deflector blades join via uncut transverse strips, eliminating labor-intensive welding while maintaining structural strength.
Segmented nozzles deliver small droplets for evaporation and large droplets for penetration, resolving deposit formation in the mixing chamber.
Offset nozzle cavitation exfoliates graphite in water, eliminating chemical contamination and defects while maintaining structural integrity.
A beverage dispenser injects nitrogen gas into concentrate using a pulsating Venturi fitting to enhance mixing and texture.
Pivoting spray nozzles retract from the fiber stream when idle, reducing glue contamination risk while maintaining continuous gluing operation.
A pressure-driven inversion device dilutes water-in-oil polymer lattices into homogeneous solutions.
Hydrodynamic cavitation removes heavy metals and bacteria without significant pressure drop, maintaining fluid circulation efficiency.
A colloidal mixing mill recirculates cementitious slurry through a high-shear rotor to achieve uniform particle hydration.
A vehicle wash bubble emitter plenum uses aerating media to forcefully project bubbles onto car exteriors.
Atomizer mixing chamber combines treatment fluids through multi-stage cups with holes to ensure uniform seed coating and reduce waste.
A foam generation device uses a sieve section to reduce air bubble size in cleaning agents.
Vertical silos store large chemical volumes to reduce refilling time while managing corrosive vapors with integrated scrubbers.
A two-media spray nozzle atomizes liquid into a flat droplet pattern to moisten absorbent material in industrial mixers.
Segmented dual chambers and venturi eductor maintain high free available chlorine concentration while preventing calcium carbonate deposits.
Tangential inlet conduits create spontaneous fluid circulation in the mixing chamber, eliminating batch-to-batch reproducibility variations.
Pre-foaming fibrinogen with air prevents clogging during high-thrombin mixing, enabling complete sealing and faster tissue healing.
A centrifugal microfluidic mixing chamber redirects fluid flows to land at the same point on a mixing surface.
Integrating the inlet nozzle, suction chamber, and outlet nozzle into a single molded unit removes dead zones and connection points that trap material deposits.
A Resonance Enhanced Microjet nozzle converts steady fluid jets into high-frequency pulsed streams using acoustic resonance mechanisms.
Horizontal water spray volatilizes trihalomethanes in a portable unit, eliminating dead spots and complex air circulation systems.
Segmented mixer with adjustable length accommodates varying DOC and SCR positions, improving fluid mixing efficiency.
Segmented fuel inlets resolve airflow restrictions during high load weak fuel gas operation.
Acute nozzle angle and varying passage areas accelerate exhaust flow, carrying urea solution to mitigate crystalline deposit accumulation on mounting bosses.
Pressurized blast tubes replace mechanical agitation to reduce turbulence and recover fine particles without excessive frother.
A fluid delivery device uses suction to draw chemicals into pressurized pipes without auxiliary pumps.
Stationary conduit isolates rotating shaft from wastewater solids, preventing rag buildup that reduces mixing efficiency.
Variable diameter sections in the mixing tube create turbulence that improves homogeneity while preventing dripping during application.
Replacing complex mechanical pumps with thermal bubble actuation reduces device weight and manufacturing cost while enabling precise droplet control.
Sub-sonic steam injection prevents cavitation and erosion in viscous slurries, extending component lifespan while maximizing heat transfer efficiency.
Curved flow channels minimize eddy currents, reducing vibrations and noise while maintaining accurate flow measurement.
A polylactic acid polymerization reactor uses a magnetic induction element to agitate viscous melt.
An integrated rotor-stator pump merges mixing and pumping functions to resolve the trade-off between uniform particle distribution and device complexity.
A variable diameter venturi system adjusts flow passage dimensions via a deformable ring and collar mechanism to optimize watercraft propulsion.
A premixing device uses inner bulging portions to squeeze air flow paths and generate negative pressure for fuel gas outflow.
A GMK reactor structures fluid flow through an inverse taper and washers to generate cavitation for nanoscale substance dispersion.
A sprayer unit uses a winged inlet to introduce rotational motion within the mixing chamber for uniform distribution.
Upstream secondary gas injection into motive liquid creates a low-pressure region that increases inducted gas flow while maintaining back pressure limits.
A wet atomizer stabilizes pressure by blocking external air ingress through a check valve, ensuring reproducible processing of high-viscosity raw materials.
Tapered inserts with surface ribs reduce turbulence in carbonated water lines, ensuring consistent CO2 concentration.
A beverage dispenser injects pressurized ambient air through a porous sparger into mixed fluids.
A multi-stage split-flow emulsifier mixes oil and water phases through high-pressure injection without mechanical shearing.
Vertical movement of the inner vessel alters annulus clearance, resolving trade-offs between variable flow handling and high gas volume fraction performance.
Recirculation system maintains homogeneous mica suspension to prevent filling equipment contamination and reduce cleaning downtime.
A microfluidic device uses angled obstacle arrays to deflect particles by size for precise antigen-specific T cell isolation.
Dual-volume reactor with high-speed secondary homogenization yields narrow particle size distribution and high solids content.
Segmented mixing elements divide the treatment chamber to direct flow through perforated ports, resolving non-uniform distribution in dual-flow systems.